WO2018155381A1 - Composant, et montre, bijou, sac, accessoire, étiquette et fermeture à glissière muni(e) dudit composant - Google Patents
Composant, et montre, bijou, sac, accessoire, étiquette et fermeture à glissière muni(e) dudit composant Download PDFInfo
- Publication number
- WO2018155381A1 WO2018155381A1 PCT/JP2018/005753 JP2018005753W WO2018155381A1 WO 2018155381 A1 WO2018155381 A1 WO 2018155381A1 JP 2018005753 W JP2018005753 W JP 2018005753W WO 2018155381 A1 WO2018155381 A1 WO 2018155381A1
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- WO
- WIPO (PCT)
- Prior art keywords
- single crystal
- component
- light
- inclined surface
- light emitting
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45C—PURSES; LUGGAGE; HAND CARRIED BAGS
- A45C3/00—Flexible luggage; Handbags
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44C—PERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
- A44C27/00—Making jewellery or other personal adornments
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- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45C—PURSES; LUGGAGE; HAND CARRIED BAGS
- A45C13/00—Details; Accessories
- A45C13/08—Decorative devices for handbags or purses
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- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45C—PURSES; LUGGAGE; HAND CARRIED BAGS
- A45C5/00—Rigid or semi-rigid luggage
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- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B37/00—Cases
- G04B37/14—Suspending devices, supports or stands for time-pieces insofar as they form part of the case
- G04B37/1486—Arrangements for fixing to a bracelet
- G04B37/1493—Arrangements for fixing to a bracelet by means of a feather spring (Barette á ressort)
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- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B39/00—Watch crystals; Fastening or sealing of crystals; Clock glasses
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K19/00—Record carriers for use with machines and with at least a part designed to carry digital markings
- G06K19/06—Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code
- G06K19/08—Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code using markings of different kinds or more than one marking of the same kind in the same record carrier, e.g. one marking being sensed by optical and the other by magnetic means
- G06K19/10—Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code using markings of different kinds or more than one marking of the same kind in the same record carrier, e.g. one marking being sensed by optical and the other by magnetic means at least one kind of marking being used for authentication, e.g. of credit or identity cards
- G06K19/14—Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the kind of the digital marking, e.g. shape, nature, code using markings of different kinds or more than one marking of the same kind in the same record carrier, e.g. one marking being sensed by optical and the other by magnetic means at least one kind of marking being used for authentication, e.g. of credit or identity cards the marking being sensed by radiation
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- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B45/00—Time pieces of which the indicating means or cases provoke special effects, e.g. aesthetic effects
Definitions
- the present invention relates to a component and a wristwatch, jewelry, bag, jewelry, tag, fastener, and the like equipped with the component.
- counterfeit products The damage caused by counterfeit products is spreading year by year on various luxury products such as famous brand watches, jewelry, bags, jewelry and related products.
- Counterfeit goods can cause significant damage to companies. For example, if low-priced counterfeit goods circulate, it can lead not only to the loss of genuine sales opportunities but also to the failure of business models. In addition, if bad reputation spreads by bad imitation products, it may lose the trust of the brand image that has been nurtured over the years.
- Patent Document 1 is disclosed.
- Patent Document 1 discloses a symbol information protection device which has a transparent plate fixed to a watch case part and can read symbol information through this plate.
- the symbol information includes a manufacturing mark or a trademark indicating the origin of the wristwatch, and these symbol information are sandwiched between the transparent plate and the case part of the wristwatch so as to be bonded so as not to be peeled off. Therefore, it is said that a wristwatch purchaser can visually confirm whether the symbol information is authentic.
- Patent Document 1 Although the protective device described in Patent Document 1 has an anti-counterfeiting effect, it has not been considered at all to add a decorative property necessary for a wristwatch.
- Patent Document 2 is cited as a prior art for adding decorativeness separately to a wristwatch.
- Patent Document 2 discloses a watch glass having a two-layer structure in which two transparent glass plates are stacked one above the other as a watch glass excellent in color and decoration by causing a light emitting portion to emit light freely. .
- the two glass plates are bonded together with a transparent adhesive, and a light emitting portion is further provided between these glass plates. Since this light emitting part emits light in response to ultraviolet light having a wavelength of 350 to 420 nm or 254 to 365 nm, a watch glass excellent in color and decoration is realized.
- the light emitting layer is provided on the entire surface of the watch glass. Therefore, it is necessary to provide the light emitting part separately from the watch glass, which causes an increase in manufacturing cost and hinders development to other products. Therefore, the decorativeness could not be further improved while ensuring the anti-counterfeit effect with the minimum configuration of the light emitting portion.
- the present invention has been made in view of the above problems, and is capable of improving decorativeness while suppressing manufacturing costs, has an anti-counterfeit effect, and can be deployed to other products, and the components
- the purpose is to provide watches, jewelry, bags, accessories, tags, fasteners, and the like equipped with.
- the component of the present invention is composed of at least a first member, and the first member is formed of any one of sapphire single crystal, ruby single crystal, glass, and diamond single crystal, and at least a part of the side surface.
- the luminescent material is arranged over the entire circumference, and the luminescent material emits light when irradiated with the special light source light or in the dark.
- the wristwatch, jewelry, bag, jewelry, tag, and fastener of the present invention are characterized in that each color light emitting component is provided.
- the light emitting material that emits light from the special light source light can be selected from RGB (Red / Green / Blue) three primary colors or a combination thereof.
- RGB Red / Green / Blue
- the component exhibits the color tone of the luminescent color of the luminescent material when irradiated with the special light source light.
- Ruby single crystals are light pink in the first place.
- this ruby single crystal also referred to as pink sapphire
- the ruby single crystal itself emits light with an increased pink color and emits light simultaneously from the light emitting material when illuminated with a special light source. Therefore, these emission colors are mixed and a part of the emission from the components is optically synthesized.
- the luminescent material is arranged over at least a part or the entire circumference of the side surface, so that the arrangement portion of the luminescent material is suppressed to the side surface at the minimum while the special light source light is irradiated.
- Light emission by emission from the side surface can be realized. Therefore, when the special light source light is not irradiated, it is a single component having no colorless and transparent characteristics. However, when the special light source light is irradiated, it can be observed as if the side surface emits light. Therefore, it is possible to greatly improve the decorativeness of the parts while minimizing the arrangement or configuration of the light emitting material, and to improve both the identification and recognition as a characteristic part while suppressing the manufacturing cost of the parts. It becomes possible to make it.
- the light emitting part only on the side surface of the part, it is possible to make it difficult to detect the presence or absence of a light emitting material for preventing counterfeiting by simply looking at the part from the plane. Further, by using the light emission of the light emitting material for the authenticity determination of the component, it is possible to enhance the forgery prevention effect of the component. Depending on the type of light-emitting material, light is emitted in each unique color, and the entire part shines characteristically in that color.
- the parts according to the present invention can be expanded to other products.
- the luminescent color of the luminescent material can improve the decorativeness of the brand image of the product with the parts, and it can also be used for authenticity determination, so forgery of these genuine products A prevention effect is also obtained.
- FIG. 5 is a side view of the component of FIG. 4.
- FIG. 5 is a partial explanatory view showing a state where characters are observed from an inclined surface in the component of FIG. 4.
- FIG. 8 is a side view of the component of FIG. 7.
- FIG. 10 is a side view of the component of FIG. 9.
- FIG. 10 is a partial explanatory diagram illustrating a state where characters are observed from an inclined surface in the component of FIG. 9.
- the first feature of the present embodiment is composed of at least a first member, and the first member is formed of any one of sapphire single crystal, ruby single crystal, glass, and diamond single crystal.
- the light emitting material is arranged at least partly or around the entire circumference, and the light emitting material emits light when illuminated with a special light source light or in the dark.
- the second feature is that the first member is a plate-like member, the planar shape is circular or irregular, and a groove is formed over the entire circumference of the side surface, and the light emitting material is disposed inside the groove. It is a part that is.
- the luminescent material is arranged over at least a part or the entire circumference of the side surface, so that the arrangement portion of the luminescent material is suppressed to the side surface at the minimum while the special light source light is irradiated from the side surface. It is possible to realize light emission by emitting light. Therefore, when the special light source light is not irradiated, it is a single component having no colorless and transparent characteristics, but when the special light source light is irradiated, it can be observed as if the side surface emits light. Therefore, it is possible to improve the decorativeness of the component even with the minimum arrangement or configuration of the light emitting material, and it is possible to improve both the identification recognition and the decorativeness while suppressing the manufacturing cost of the component.
- the light emitting part the side surface of the part, it is possible to make it difficult to detect the presence or absence of the light emitting material as a countermeasure against forgery simply by looking at the part from the plane. Further, by using the light emission of the light emitting material for the authenticity determination of the component, it is possible to enhance the forgery prevention effect of the component.
- the special light source light emits light in the ultraviolet region (250 nm to 365 nm) or emits light in the infrared region (780 nm or more).
- the planar shape of the member means that the planar shape of the component is any of a square, a rectangle, an ellipse, a polygon having three or more vertices, and a star. Further, the polygon having three or more vertices includes a planar shape in which each vertex is rounded and rounded.
- the third feature is that the first member is a plate-like member, the planar shape is circular or irregular, and recesses are formed at least 12 locations every 30 ° over the entire circumference of the side surface. This is a part in which a light emitting material is arranged.
- the position of the time character (or hour mark, hour marker, index) on the dial face can be determined by the light emission of the light emitting material by using the part as a watch window material. It is possible to easily identify the user. Therefore, both the decorativeness and the visibility of the wristwatch can be achieved.
- the fourth feature is that a second member is further provided, the second member is formed of any one of sapphire single crystal, ruby single crystal, glass, and diamond single crystal, and the second member is plate-shaped.
- the planar shape of the member is circular or irregular, and an inclined surface is formed on the entire circumference of the peripheral edge of the second member, and the first member and the second member are formed with the inclined surface as a non-bonding surface.
- the first member and the second member have the same planar shape of the bonding surfaces, and any one of letters, figures, and symbols is the first member or the second member.
- the light emitting material is arranged in the concave portion, and the width of the inclined surface is the height dimension of any of characters, figures or symbols The above is the part.
- the characters, figures or symbols include all characters such as alphabets, hiragana, katakana, kanji, numbers, kanji numerals, symbols, and brand logos.
- the figure also includes basic figures such as circles, triangles, and rectangles, more complicated geometric patterns, or trademarks indicating brands and manufacturers.
- the height dimension of any character, figure, or symbol refers to a height dimension in which all characters, figures, or symbols can be accommodated when a plurality of characters, figures, or symbols are formed. Shall.
- the fifth feature is that a second member is further provided, the second member is formed of any one of sapphire single crystal, ruby single crystal, glass, and diamond single crystal, and the second member is plate-shaped.
- the planar shape of the member is circular or irregular, and an inclined surface is formed on the entire circumference of the peripheral edge of the second member, and the first member and the second member are thick with the inclined surface as a non-bonding surface.
- the first member and the second member have the same planar shape of the bonding surfaces, and any one of characters, figures, and symbols is the first member or the second member.
- the member is formed in a concave shape on at least one of the bonding surfaces of each other, the light emitting material is disposed in the concave portion, and the width of the inclined surface is greater than the height dimension of any of characters, figures or symbols
- the inclined surface consists of cut surfaces formed every 30 ° over the entire circumference, The ridgeline where the cut faces meet is a part that is aligned with the recess in the thickness direction.
- the part as a window material for a wristwatch, when the part is viewed from the plane direction, it can be observed as if the ridge line is emitted by the light emission of the light emitting material. It becomes possible for the user to more easily identify the position of the time character on the dial. Therefore, it is possible to further achieve both the decorativeness and the visibility of the wristwatch.
- the sixth feature is that a wristwatch, jewelry, bag, jewelry, tag, and fastener equipped with any of the above-mentioned parts are used.
- the parts according to the present invention can be developed to other products.
- the parts according to the present invention can be used for other products.
- the light emission of the light emitting material can improve the decorativeness of the product including the components, and the light emission can also be used for authenticity determination, so that the forgery prevention effect of these products can be obtained.
- the light emitting material that emits light from the special light source can be selected from the three primary colors RGB or a combination of the colors.
- the first or second member is a colorless and transparent sapphire single crystal, glass, or diamond single crystal, the component exhibits the color tone of the luminescent color of the luminescent material when irradiated with the special light source light.
- the ruby single crystal used for the first member or the second member has a light pink color in the first place.
- this ruby single crystal also referred to as pink sapphire
- the ruby single crystal itself emits light with an increased pink color and emits light simultaneously from the light emitting material when illuminated with a special light source. Therefore, these emission colors are mixed and a part of the emission from the components is optically synthesized.
- the component 1 according to the present embodiment is composed of at least the first member 2 as shown in FIGS.
- FIG. 1 is a plan view
- FIGS. 2 and 3 are both side views
- a configuration form of the arrangement of the light emitting material 5 on the side surface 2s of the first member 2 of the component 1 is shown as an example. (Hereinafter, simply referred to as “member 2” as necessary).
- the outer shape of the member 2 is formed into a circular plate shape.
- the member 2 is formed of any of sapphire single crystal, ruby single crystal, diamond single crystal, or glass. This material is formed into a circular plate by grinding and polishing.
- the transmittance of the material forming the member 2 only needs to satisfy a predetermined value (for example, 80% or more) in the wavelength range of 400 nm to 800 nm, for example, when the transmittance is measured with a spectrophotometer.
- Each material forming the member 2 may be manufactured using a known method.
- a sapphire single crystal or a ruby single crystal one grown and grown by the EFG (Edge-defined Film-fed. Growth) method, the Kilopros method, the Chocraslky method, the Bernoulli method, the vertical Bridgman method or the like is used.
- a diamond single crystal may be formed by an epitaxial method.
- the crystal plane orientation may be, for example, the surface 2a-2a having the c-plane, but is not limited to the c-plane, and is not limited to the r-plane, a-plane, or m-plane.
- a desired crystal plane may be used as the surface.
- the planar shape of the member 2 may be a circular round shape as shown in FIG. 1 or an irregular shape not shown.
- the planar shape of the member 2 means that the planar shape is any of a square, a rectangle, an ellipse, a polygon having three or more vertices, and a star, for example. Further, when forming into a polygon having three or more vertices, each vertex may be rounded to change to a planar shape in which rounded corners are combined.
- a wide inclined surface 2d is formed over the entire outer peripheral edge of the upper surface 2a of the member 2.
- the inclined surface 2d is formed with a width W2d on the entire circumference of the outer peripheral edge at a constant inclination angle ⁇ with respect to the surface 2a.
- the inclination angle ⁇ is set to about 20 degrees with respect to the surface 2a.
- the light emitting material 5 is arranged over at least a part or the entire circumference of the side surface 2s of the member 2.
- a groove 2b is formed over the entire circumference of the side surface 2s as one form of the arrangement location of the light emitting material 5, and the light emitting material 5 is disposed inside the groove 2b. It becomes a form.
- the shape of the groove 2b can be set to a desired shape such as a rectangular shape, a V-groove shape, or an arc shape, and the shape of the groove 2b in FIG. 3 is that the V-groove is formed with an opening angle of 60 °,
- the bottom of the V groove has a shape formed into an arc shape of R0.2 mm.
- the light emitting material 5 is disposed in the groove 2b formed in the side surface 2s.
- the luminescent material 5 phosphors that emit light in the ultraviolet region (250 nm to 365 nm), visible light region (above 365 nm to less than 780 nm), or infrared region (780 nm or more), phosphors, or Luminescent glass is used.
- the phosphor (phosphor) include inorganic pigments and sulfide pigments of alumina oxide, and examples of the phosphor include fluorescent ink.
- the light source 5 is caused to emit light by irradiating the component 1 formed in this way with a special light source light from the outside.
- a special light source light from the outside.
- Special light sources include so-called black lights, ultraviolet light that emits light in the ultraviolet region with a wavelength of around 365 nm or 250 nm to 365 nm, or ultraviolet light emitting diodes (LEDs), and infrared light that emits light in the infrared region of 780 nm or more.
- LEDs ultraviolet light emitting diodes
- the groove 2b portion emits colored light by the light emitting material 5.
- the luminous body 5 is a phosphorescent body (phosphor)
- the fluorescent color continues to be emitted due to the disappearance of the excitation light when placed in the dark.
- the groove 2b emits light having a specific wavelength such as an ultraviolet region of 254 nm to 365 nm, a visible light region of more than 365 nm to less than 780 nm, or an infrared region of 780 nm or more, depending on the material constituting the light emitting material 5.
- a specific wavelength such as an ultraviolet region of 254 nm to 365 nm, a visible light region of more than 365 nm to less than 780 nm, or an infrared region of 780 nm or more, depending on the material constituting the light emitting material 5.
- the light emitting material 5 By arranging the light emitting material 5 over the entire circumference of the side surface 2s, light emission can be confirmed along the outline of the outer peripheral edge when the component 1 is viewed from the planar direction as shown in FIG. Furthermore, it is possible to realize light emission by emission from the side surface 2s when the special light source light is irradiated while suppressing the arrangement portion of the light emitting material 5 to the minimum side surface 2s. Therefore, when the special light source light is not irradiated, it is a single component 1 having no colorless and transparent characteristics. However, when the special light source light is irradiated, the side surface 2s emits light, and the ring-shaped light emission along the outline line is shown in FIG. Observable from the direction. Therefore, the decorativeness of the part 1 can be improved while the arrangement or configuration of the light-emitting material 5 is minimal, and both the identification recognition and the decorativeness can be improved while suppressing the manufacturing cost of the part 1. Become.
- the light emitting part the side surface 2s of the component 1
- the light emission of the light emitting material 5 for the authenticity determination of the component 1, it becomes possible to enhance the forgery prevention effect of the component 1.
- the light emitting material 5 that emits light by the special light source light can select the light emission colors of RGB three primary colors or a combination thereof.
- the member 2 is a colorless and transparent sapphire single crystal, glass, or diamond single crystal
- the component 1 exhibits the color tone of the luminescent color of the luminescent material 5 when irradiated with the special light source light.
- the crystal material is light pink in the first place.
- this ruby single crystal also called pink sapphire
- the ruby single crystal itself emits light with an increased pink color and emits light from the light emitting material 5 at the same time when the special light source light is irradiated. Therefore, these emission colors are mixed and a part of the emission from the component 1 is optically synthesized.
- the inclined surface 2d may be similarly provided along the peripheral edge of the outer periphery.
- Example 2 Next, components according to Embodiment 2 of the present invention will be described with reference to FIGS. In addition, the same number is attached
- the component 6 of Example 2 is comprised by the 1st member 2 and the 2nd member 3 as shown in FIG.4 and FIG.5, and the 1st member 2 and the 2nd member 3 are bonded together.
- ing. 4 is a plan view
- FIG. 5 is a side view (hereinafter simply referred to as “member 2” and “member 3” as necessary).
- the planar shape of the two members 2 and 3 is circular as shown in FIG. 4 or an irregular shape not shown.
- the planar shapes of the members 2 and 3 are formed in the same shape. Therefore, the planar shapes of the bonding surfaces of the members 2 and 3 are the same.
- the inclined surface 3b is formed over the entire circumference of the outer periphery of the member 3. Using the surface on which the inclined surface 3b is formed as a non-bonding surface, the two members 2 and 3 are stacked and bonded together in the thickness direction, whereby the component 6 is formed.
- the member 3 is also formed of any of sapphire single crystal, ruby single crystal, diamond single crystal, or glass, and is formed by grinding and polishing such a material.
- the transmittance of the material forming the member 3 may also satisfy a predetermined value (for example, 80% or more) in the wavelength range of 400 nm to 800 nm, for example, when the transmittance is measured with a spectrophotometer.
- the crystal plane orientation may be, for example, the surface 2a, 3a or the bonding surface having the c plane, but is not limited to the c plane.
- A-plane, m-plane, etc. a desired crystal plane may be used as the surface.
- the recesses 2c are formed at a total of 12 locations every 30 ° over the entire circumference of the side surface 2s of the member 2, and the light emitting material 5 (not shown) is disposed inside the recesses 2c. 4 and 5, the illustration of the light emitting material 5 is omitted for the sake of easy viewing.
- the recess 2c can be set to a diameter of about 0.5 mm and a depth in the radial direction of the member 2 of about 0.15 mm.
- the light emitting material 5 is disposed on at least a part of the side surface 2 s so that the portion where the light emitting material 5 is disposed is at least the side surface. While suppressing to only 2 s, it is possible to realize light emission by emission from the side surface 2 s when the special light source light is irradiated. Therefore, when the special light source light is not irradiated, it is a single component 6 having no colorless and transparent features. However, when the special light source light is irradiated, the side surface 2s emits light, and pinpoint light emission can be observed in the recess 2c. . Accordingly, the decorativeness of the component 6 can be improved while the arrangement or configuration of the light emitting material 5 is minimal, and both the identification recognition and the decorativeness can be improved while suppressing the manufacturing cost of the component 6. Become.
- the component 6 as a window material for a wristwatch, it is possible to easily identify the position of the time character (or hour mark, hour marker, index) on the dial face by the light emission of the light emitting material 5. Become. Therefore, both the decorativeness and the visibility of the wristwatch can be achieved.
- any one of characters, figures and symbols is formed in a concave shape on at least one of the bonding surfaces of the two members 2 and 3.
- the letter 4 consisting of alphabets A to E is formed in a concave shape on the bonding surface of the member 3.
- the characters, graphics, or symbols include all characters such as alphabets, hiragana, katakana, kanji, numbers, kanji numerals, symbols, and brand logos.
- the figure includes a basic figure such as a circle, a triangle, or a rectangle, a more complicated geometric pattern, or a trademark indicating a brand or a manufacturer.
- the concave formation of the characters 4, figures and symbols may be performed by laser scanning.
- the material of the members 2 and 3 is more preferably a sapphire single crystal, a ruby single crystal, or a diamond single crystal.
- a combination of the members 2 and 3 either a combination of colorless sapphire single crystals or a combination in which one side is changed to a ruby single crystal having a pink color may be used.
- the combination of sapphire single crystals is cheaper in terms of material cost.
- a ruby single crystal is used for one member, it is preferable to use a ruby single crystal, which is a material suitable for laser scanning, for the member 3 on the upper surface side.
- the light emitting material 5 is also disposed in a concave portion such as the character 4. Therefore, the light having a specific wavelength emitted from any of the characters 4, figures, and symbols is reflected on the surface 2a of the member 2 and the surface 3a of the member 3, or part of the light is adhesive and the member.
- the light is emitted from the inclined surface 3b while being repeatedly reflected at the boundary surface 2 or 3.
- the surface 2a, the inclined surface 3b, and the surface 3a are mirror-polished so that the surface roughness Ra is 0.1 ⁇ m or less. Ra may be measured with a surface roughness measuring machine. Accordingly, any of the characters 4, figures and symbols is visually observed from the inclined surface 3b as shown in FIG. 6 by the emission of light from the inclined surface 3b.
- the width W3b of the inclined surface 3b is set to be equal to or greater than the height dimension T4 of the character 4 (or any of the figure and symbol). Further, the inclination angle ⁇ of the inclined surface 3b is set to about 20 degrees with respect to the surface 3a of the member 3.
- the height dimension T4 refers to a height dimension in which all characters, figures, or symbols can be accommodated when a plurality of letters, figures, or symbols are formed.
- the inclined surface 3b is formed on the entire periphery of the peripheral portion of the member 2, it is possible to visually observe the characters 4, figures or symbols from the inclined surface 3b even if the component 6 is viewed from any angle. It becomes. Therefore, the decorativeness of the component 6 can be further improved.
- the members 2 and 3 are laminated by an adhesive so as to overlap each other in the thickness direction so that their external shapes coincide with each other.
- the material of the adhesive is not limited as long as the members 2 and 3 can be fixed in an overlapped state.
- an ultraviolet curable resin can be used.
- an adhesive having a viscosity close to water (20 cps at 20 ° C.) may be spread between the members 2 and 3 by using a capillary phenomenon and bonded together. .
- the transmittance of the adhesive only needs to satisfy a predetermined value (for example, 80% or more) in the wavelength range of 400 nm to 800 nm, for example, when the transmittance is measured with a spectrophotometer. At the time of bonding, attention should be paid so that no foreign matter or bubbles are mixed into the bonding surface.
- the component 6 by configuring the component 6 with the members 2 and 3 of the same material, the physical properties such as the thermal expansion coefficient and the lattice constant can be made the same, and the occurrence of bending and warping in the component 6 can be suppressed. Become.
- character 4 (or figure, symbol) may be formed in a concave shape on the bonding surface of the member 2.
- the two members 2 and 3 do not necessarily have the same planar shape, and the shapes thereof may be different from each other.
- the inclined surface 3b may be provided along the peripheral edge of the outer periphery.
- Example 3 Next, with reference to FIG.7 and FIG.8, the component which concerns on Example 3 of this invention is demonstrated.
- the same number is attached
- the component 7 of Example 3 is composed of one member 2 and the inclined surface 2d formed over the entire circumference of the outer peripheral edge of the member 2 is formed every 30 ° over the entire circumference. This is a point composed of the cut surface 2e. Furthermore, the ridgeline 2f where the cut surfaces 2e meet is aligned with the recess 2c in the thickness direction of the component 7.
- the inclined surface 2d is formed with a width W2d on the entire circumference of the outer peripheral edge at a constant inclination angle ⁇ with respect to the surface 2a.
- the component 7 in addition to the effects of the component 1 or the component 6, the component 7 is used as a window material of a wristwatch, so that the component 7 is planar (direction of FIG. 7).
- the component 7 is planar (direction of FIG. 7).
- Example 4 a component according to Embodiment 4 of the present invention will be described with reference to FIGS.
- the same number is attached
- the component 8 of the fourth embodiment includes the member 2 and the member 3, and the member 2 and the member 3 are bonded to each other.
- 9 is a plan view and FIG. 10 is a side view.
- the inclined surface 3b formed over the entire circumference of the outer peripheral edge of the member 3 is composed of cut surfaces 3c formed every 30 ° over the entire circumference. Furthermore, a total of 24 recesses 2c are formed every 15 ° over the entire circumference of the side surface 2s of the member 2. A ridge line 3d where the cut surfaces 3c meet each other is aligned with the recess 2c in the thickness direction of the component 8.
- the inclined surface 3b is formed with a width W3b on the entire circumference of the outer peripheral edge at a constant inclination angle ⁇ with respect to the surface 3a.
- the width W3b is set to be equal to or greater than the height dimension T4 of the character 4 (or any one of the figure and the symbol).
- the light emitting material 5 (not shown) is disposed inside the recess 2c.
- the illustration of the light emitting material 5 is omitted for the sake of easy viewing.
- the side surface 2s emits light when irradiated with the special light source light, and pinpoint light emission occurs in the recess 2c. It becomes possible to observe, and it becomes possible to improve both identification recognition and decoration while suppressing the manufacturing cost of the component 8.
- the member 3 is formed of any one of sapphire single crystal, ruby single crystal, diamond single crystal, or glass. Further, any one of characters, figures, and symbols is formed in a concave shape on at least one of the bonding surfaces of the two members 2 and 3. In the present embodiment, the letter 4 consisting of alphabets A to E is formed in a concave shape on the bonding surface of the member 3.
- the light-emitting material 5 is also disposed at a concave portion such as the letter 4. Therefore, the light having a specific wavelength emitted from any of the characters 4, figures, and symbols is reflected on the surface 2a of the member 2 and the surface 3a of the member 3, or part of the light is adhesive and the member. The light is emitted from the inclined surface 3b while being repeatedly reflected at the boundary surface 2 or 3, and is visually observed as shown in FIG.
- parts 1, 6, 7, and 8 By providing the above parts 1, 6, 7, and 8 in watches, jewelry, bags, accessories (rings, necklaces, earrings, bracelets, etc.), tags, or fasteners, parts 1, 6, 7, and 8 are available in other products. Can be deployed.
- the tag, fastener, etc. the parts 1, 6, 7, 8 according to the present invention can be used for other products. Accordingly, the light emission of the light emitting material 5 can improve the decorativeness of the product including the parts 1, 6, 7, and 8, and the light emission can also be used for authenticity determination. A prevention effect is also obtained.
- parts 1, 6, 7, and 8 are used as cover parts to protect the watch dial
- the external dimensions of parts 1, 6, 7, and 8 are about 2.2 mm in height and about 30 mm in diameter.
- the thickness of each of the members 2 and 3 may be set to about 33 mm, the thickness of about 1 mm to about 2 mm, and the widths W2d and W3b to about 2.5 mm.
- various dimensions can be set according to the specifications of the wristwatch, the jewelry, the bag, the accessory, the tag, and the fastener including the parts 1, 6, 7, and 8.
- the first to fourth embodiments can be variously changed depending on the technical idea, and for example, the component 6 can be formed by at least the member 2 alone. Further, the formation of the character 4 (or figure, symbol) is arbitrary and may not be formed.
- the outer shape of the member 2 is not limited to a plate-like member, and may be, for example, a ring shape.
- the light emitting material 5 may be arranged by forming the groove 2b or the recess 2c on the inner peripheral side surface of the ring.
- the light emitting material 5 or the ring member of the light emitting material may be disposed on the peripheral surface of one of the bonding surfaces of the members 2 and 3.
- the component 1 may be provided with the member 3, and the member 3 may be changed to a circular flat plate not having the inclined surface 2d while forming the inclined surface 3b as shown in FIG. .
- the member 7 may be provided with the member 3, and the member 3 may be changed to a circular flat plate having no inclined surface 3b while forming the inclined surface 3b as shown in FIG. .
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Adornments (AREA)
- Purses, Travelling Bags, Baskets, Or Suitcases (AREA)
Abstract
La présente invention aborde le problème de la réalisation d'un composant avec lequel il est possible d'améliorer l'aspect décoratif tout en supprimant le coût de fabrication, qui a également un effet de prévention de falsification et peut être développé dans d'autres produits ; et une montre, un bijou, un sac, un accessoire, une étiquette, une fermeture à glissière et objet similaire muni(e) du composant. La solution selon l'invention porte sur un composant qui est constitué d'au moins un premier élément (2), et le premier élément (2) est formé par l'un quelconque parmi un monocristal de saphir, un monocristal de rubis, du verre et un monocristal de diamant. En outre, un matériau émetteur de lumière (5) est disposé sur au moins une partie d'une surface latérale ou sur toute la circonférence, et le matériau émetteur de lumière est amené à émettre de la lumière lorsqu'il est irradié avec une lumière de source lumineuse spéciale ou dans l'obscurité.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CH01050/19A CH714611B1 (de) | 2017-02-23 | 2018-02-19 | Bauteil und Armbanduhr, Tasche und Schmuckgegenstand mit dem Bauteil. |
JP2019501311A JP7178101B2 (ja) | 2017-02-23 | 2018-02-19 | 腕時計の窓材又は腕時計のカバー部品及びその腕時計の窓材又は腕時計のカバー部品が備えられた腕時計 |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2017-031641 | 2017-02-23 | ||
JP2017031641 | 2017-02-23 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2018155381A1 true WO2018155381A1 (fr) | 2018-08-30 |
Family
ID=63252741
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2018/005753 Ceased WO2018155381A1 (fr) | 2017-02-23 | 2018-02-19 | Composant, et montre, bijou, sac, accessoire, étiquette et fermeture à glissière muni(e) dudit composant |
Country Status (3)
Country | Link |
---|---|
JP (1) | JP7178101B2 (fr) |
CH (1) | CH714611B1 (fr) |
WO (1) | WO2018155381A1 (fr) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021095605A1 (fr) * | 2019-11-12 | 2021-05-20 | アダマンド並木精密宝石株式会社 | Composant de montre-bracelet, montre-bracelet, et procédé de production de composant de montre-bracelet |
JP2022164940A (ja) * | 2021-04-18 | 2022-10-28 | 株式会社シンテック | 有刻印ダイヤモンド結晶体及びその製造方法 |
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- 2018-02-19 WO PCT/JP2018/005753 patent/WO2018155381A1/fr not_active Ceased
- 2018-02-19 CH CH01050/19A patent/CH714611B1/de unknown
- 2018-02-19 JP JP2019501311A patent/JP7178101B2/ja active Active
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JPH0239040U (fr) * | 1988-09-06 | 1990-03-15 | ||
US5414910A (en) * | 1991-07-29 | 1995-05-16 | Berman Pearl Button Company, Inc. | Decorative multi-part ornamentations having a collar element |
JPH0748532A (ja) * | 1993-08-06 | 1995-02-21 | Seiko Epson Corp | 夜光塗料付き装飾部材 |
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Publication number | Priority date | Publication date | Assignee | Title |
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WO2021095605A1 (fr) * | 2019-11-12 | 2021-05-20 | アダマンド並木精密宝石株式会社 | Composant de montre-bracelet, montre-bracelet, et procédé de production de composant de montre-bracelet |
JPWO2021095605A1 (fr) * | 2019-11-12 | 2021-05-20 | ||
JP7545744B2 (ja) | 2019-11-12 | 2024-09-05 | Orbray株式会社 | 腕時計部品、腕時計、及び腕時計部品の製造方法 |
JP2022164940A (ja) * | 2021-04-18 | 2022-10-28 | 株式会社シンテック | 有刻印ダイヤモンド結晶体及びその製造方法 |
Also Published As
Publication number | Publication date |
---|---|
JP7178101B2 (ja) | 2022-11-25 |
JPWO2018155381A1 (ja) | 2019-12-12 |
CH714611B1 (de) | 2022-04-29 |
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