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CN102530385B - Adjustable columnar container - Google Patents

Adjustable columnar container Download PDF

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Publication number
CN102530385B
CN102530385B CN 201110444631 CN201110444631A CN102530385B CN 102530385 B CN102530385 B CN 102530385B CN 201110444631 CN201110444631 CN 201110444631 CN 201110444631 A CN201110444631 A CN 201110444631A CN 102530385 B CN102530385 B CN 102530385B
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hole
array
diameter
circle
square
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CN102530385A (en
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王春阳
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Rugao Packing Food Machinery Co ltd
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Abstract

The invention relates to an adjustable columnar container which comprises a container body, a chuck mechanism and a bottom cover and is characterized in that the container body is a cube; taking a point on the top surface of the cube as a coordinate, a single array with N through holes in an X direction at spacing distance of C is arrayed, and a square array of M single arrays with N through holes in the X direction at spacing distance of C is arrayed in a Y direction at spacing distance of D; on the bottom surface, the circle centre of each through hole is taken as the centre to circumferentially array four rectangular grooves; a stepped columnar groove is formed by respectively stretching and cutting two circles towards the top side, wherein the two circles take the circle center of each through hole as the center and have two different diameters which are larger than the diameters of the through holes; the chuck mechanism comprises four chuck jaws and thread disks; the bottom cover is a square board on which the through holes corresponding to the container body are arrayed; and the through hole diameter on the bottom cover is greater than the maximum diameter of a polygonal groove of the thread disk.

Description

可调柱形体容器Adjustable cylindrical container

技术领域technical field

本发明涉及一种适用于圆柱形体的管理、储存的装具,尤其涉及一种电池及试验室圆柱形体的管理、储存的容器。The invention relates to a device suitable for the management and storage of cylindrical bodies, in particular to a container for the management and storage of batteries and laboratory cylindrical bodies.

背景技术Background technique

目前,在圆柱形电池的检测中多采用开架式和压床式检测。而开架式的检测是靠人工一个一个的检测,效率低;而目前使用的是托盘,在检测及储存的过程中散热、通风效果差,且一种托盘只能装一种规格型号的电池,功能单一,对于不同型号规格的电池管理、储存需要不同规格的托盘,即使是可储存两种不规格电池的托盘也是使用繁锁,实用性差,基本无法正常使用,本发明不仅增加了散热、通风空间,而且可实现各种不同规格的圆柱形体的管理、储存,而且调节方便,实现了一个可调柱形体容器多功能的性能。At present, open-frame and press-type testing are mostly used in the testing of cylindrical batteries. However, the open-frame inspection relies on manual inspection one by one, which is inefficient; while the trays are currently used, which have poor heat dissipation and ventilation effects during the inspection and storage process, and one tray can only hold one type of battery. The function is single, and trays of different specifications are required for battery management and storage of different models and specifications. Even trays that can store two types of batteries with different specifications are also complicated to use, which is poor in practicability and basically cannot be used normally. The invention not only increases heat dissipation and ventilation space, and can realize the management and storage of cylindrical bodies of various specifications, and is convenient to adjust, realizing the multifunctional performance of an adjustable cylindrical body container.

发明内容Contents of the invention

本发明的目的是提供一种可调柱形体容器。The object of the present invention is to provide an adjustable cylindrical container.

为实现上述目的,本发明采用的技术方案为:To achieve the above object, the technical solution adopted in the present invention is:

一种可调柱形体容器,包括:容器体,卡盘机构与底盖三部分组成。An adjustable cylindrical container is composed of three parts: a container body, a chuck mechanism and a bottom cover.

根据所述的一种可调柱形体容器,其特征是:所述的容器体为一方形体,在方形体的顶面上的一个点为坐标,分别向X轴方向以间距C阵列有N个通孔的单排阵列和Y轴方向以间距D阵列有M个通孔的单排阵列的方形阵列;在方形体的顶面上靠近任何一相对的两条边的位置分别凸起E个块状体;在方形体顶面方形阵列的通孔的相对的面为底面;在底面上,以每个通孔的圆心为中心圆周阵列有四个矩形体槽,以每个通孔的圆心为中心的两个大于通孔直径的直径大小不同的两个圆形,分别向顶面方向拉伸切除不同距离的圆柱体,直径小的圆形的拉伸切除的距离大于直大的圆形的拉伸切除的距离,形成一台阶式圆柱体槽。卡盘机构包括四个卡爪和丝盘,卡爪为方形体,在方形体的底面留有螺旋丝槽,在侧面靠近底面连接处凸起一个台阶;丝盘为直径大小不同的两个圆柱体同轴心配合,相邻的面重合并固定连接成的台阶式圆柱体,台阶式圆柱体的中心有一通孔,在大直径圆柱体有通孔的面上以通孔的圆心为中心向通孔的另一面拉伸切割一多边形体槽,在直径大的圆柱体的圆周面为齿轮,在直径小的圆柱体向外的面上留有螺旋丝槽。底盖为一方形板,在板上与容器体相对应的阵列有通孔,底盖上的通孔直径大于丝盘多边形体槽的最大对角线。According to the adjustable cylindrical container, it is characterized in that: the container body is a square body, a point on the top surface of the square body is the coordinate, and there are N arrays in the X-axis direction at a distance C. A single-row array of through-holes and a square array of single-row arrays of M through-holes arranged at a distance D in the Y-axis direction; E blocks are respectively raised on the top surface of the square near any two opposite sides shape body; the opposite face of the through hole of the square array on the top surface of the square body is the bottom surface; on the bottom surface, four rectangular body grooves are arranged in a circle centered on the center of each through hole, and the center of circle of each through hole is The two circles with different diameters in the center that are larger than the diameter of the through hole are stretched to the top surface to cut away the cylinders at different distances, and the stretching and cutting distance of the circle with a small diameter is greater than that of the straight and large circle. Extrudes the distance of the cut, forming a stepped cylindrical slot. The chuck mechanism includes four claws and a wire reel. The claws are square, with a spiral thread groove left on the bottom of the square, and a step protrudes from the side near the connection of the bottom; the wire reels are two cylinders with different diameters. The body is cooperating with the axis, and the adjacent surfaces overlap and are fixedly connected to form a stepped cylinder. There is a through hole in the center of the stepped cylinder, and the center of the through hole is the center on the surface of the large diameter cylinder with the through hole. The other side of the through hole is stretched and cut with a polygonal body groove, a gear is formed on the circumferential surface of the cylinder with a large diameter, and a spiral thread groove is left on the outward surface of the cylinder with a small diameter. The bottom cover is a square plate, on which there are through holes corresponding to the container body, and the diameter of the through holes on the bottom cover is larger than the maximum diagonal line of the polygonal groove of the silk reel.

根据所述的可调柱形体容器,其特征是:所述的四个卡爪分别放在容器体底面每个通孔上的四个矩形体槽内,卡爪的底面与容器体的底面方向一致,卡爪在侧面靠近底面连接处凸起的一个台阶向着通孔圆心;丝盘安装在以每个通孔的圆心为中心的两个大于通孔直径的直径大小不同的两个圆形拉伸切除不同距离的台阶式圆柱体槽内,丝盘的直径小的圆柱体向外的面上留有的螺旋丝槽分别与四个卡爪的螺旋丝槽螺旋配合,各通孔之间的圆心距为丝盘上的齿轮齿轮配合的中心距时,各丝盘上的齿轮齿轮配合。底盖与容器体的底面固定连接,底盖上阵列的通孔与容器体上阵列的通孔相对应。According to the adjustable cylindrical container, it is characterized in that: the four claws are respectively placed in four rectangular grooves on each through hole on the bottom surface of the container body, and the bottom surface of the claws is in the same direction as the bottom surface of the container body. Consistent, a step protruding from the joint of the claw on the side close to the bottom surface faces the center of the through hole; In the stepped cylinder grooves with different distances cut off by stretching, the spiral grooves left on the outward surface of the small diameter cylinder of the wire reel are respectively matched with the spiral grooves of the four claws. When the center distance is the center distance of the gear gears on the wire reel, the gears on each wire reel are matched. The bottom cover is fixedly connected with the bottom surface of the container body, and the arrayed through holes on the bottom cover correspond to the arrayed through holes on the container body.

根据所述的可调柱形体容器,其特征是:所述的向X轴方向以间距C阵列有N个通孔,其中C为相连的两个丝盘的齿轮齿轮配合时的中心距,N为1个以上。According to the adjustable cylindrical container, it is characterized in that: there are N through holes arrayed at a distance C in the X-axis direction, where C is the center distance between the gears of the two connected wire reels when the gears are matched, N 1 or more.

根据所述的可调柱形体容器,其特征是:所述的向Y轴方向以间距D阵列有M个通孔,其中D为相连的两个丝盘的齿轮齿轮配合时的中心距、大于丝盘的齿轮的齿顶圆直径,M为1个以上。According to the adjustable cylindrical container, it is characterized in that: there are M through holes arrayed at a distance D in the direction of the Y axis, wherein D is the center distance between the gears of the two connected wire reels when the gears are matched, greater than The diameter of the addendum circle of the gear of the reel, M is one or more.

根据所述的可调柱形体容器,其特征是:所述的在方形体的顶面上靠近任何一相对应的两条边的位置分别凸起E个块状体,其中E为1个以上。According to the adjustable cylindrical container, it is characterized in that: E block-shaped bodies protrude from the top surface of the square body close to any corresponding two sides, wherein E is more than one .

本发明的有益效果是:The beneficial effects of the present invention are:

1、本可调柱形体容器增大了散热、通风空间,使散热、通风效果更好。1. The adjustable cylindrical container increases the heat dissipation and ventilation space, so that the heat dissipation and ventilation effects are better.

2、本可调柱形体容器可实现各种不同规格的圆柱形体的管理、储存,而且调节方便快速。2. The adjustable cylindrical body container can realize the management and storage of various cylindrical bodies with different specifications, and the adjustment is convenient and fast.

3、本可调柱形体容器可实现各种不同规格的圆柱形体在同一容器的管理。3. The adjustable cylindrical body container can realize the management of various cylindrical bodies of different specifications in the same container.

4、使用本可调柱形体容器可节约时间,降低成本,提高效率。4. Using the adjustable cylindrical container can save time, reduce cost and improve efficiency.

附图说明Description of drawings

图1为本发明的结构示意图。Fig. 1 is a structural schematic diagram of the present invention.

图2为本发明中容器体、卡爪和丝盘装配示意图。Fig. 2 is a schematic diagram of the assembly of the container body, claws and wire reel in the present invention.

图3为本发明中卡爪和丝盘配合三维示意图。Fig. 3 is a three-dimensional schematic diagram of the cooperation between the claw and the wire reel in the present invention.

图4为本发明的具体实施例一的底面示意图。FIG. 4 is a schematic bottom view of Embodiment 1 of the present invention.

图5为本发明中具体实施例二的底面示意图。Fig. 5 is a schematic bottom view of the second embodiment of the present invention.

图6为本发明中调节扳手三维示意图。Fig. 6 is a three-dimensional schematic diagram of the adjusting wrench in the present invention.

附图中:1、容器体的块状体;2、卡爪;3、丝盘;4、底盖;5、容器体;6、台阶式圆柱体槽;7、容器体通孔;8、矩形体槽;9、丝盘多边形体槽。In the accompanying drawings: 1. Block body of container body; 2. Claws; 3. Wire disc; 4. Bottom cover; 5. Container body; 6. Stepped cylindrical groove; 7. Through hole of container body; 8. Rectangular body groove; 9, silk disk polygonal body groove.

具体实施方式Detailed ways

下面结合附图和具体实施例一对本发明作进一步说明:The present invention will be further described below in conjunction with accompanying drawing and specific embodiment:

本发明为一种可调柱形体容器,如图1、2、3、4、6所示,包括:容器体,卡盘机构与底盖三部分组成。The present invention is an adjustable cylindrical container, as shown in Figures 1, 2, 3, 4 and 6, comprising: a container body, a chuck mechanism and a bottom cover.

根据所述的一种可调柱形体容器,其特征是:所述的容器体5为一方形体,在方形体的顶面上的一个点为坐标,分别向X轴方向以间距C阵列有N个通孔7的单排阵列和Y轴方向以间距D阵列有M个向X轴方向以间距C阵列有N个通孔的单排阵列的方形阵列通孔;在方形体的顶面靠近任何一相对的两条边的位置分别凸起E个块状体1;在方形体顶面上方形阵列的通孔7的相对的面为底面;在底面上,以每个通孔7的圆心为中心圆周阵列有四个矩形体槽8,以每个通孔7的圆心为中心的两个大于通孔7直径的直径大小不同的两个圆形,分别向顶面方向拉伸切除不同距离的圆柱体,直径小的圆形的拉伸切除的距离大于直大的圆形的拉伸切除的距离,形成一台阶式圆柱体槽6。卡盘机构包括四个卡爪2和丝盘3,卡爪2为方形体,在方形体的底面留有螺旋丝槽,在侧面靠近底面连接处凸起一个台阶;丝盘3为直径大小不同的两个圆柱体同轴心配合,相邻的面重合并固定连接成的台阶式圆柱体,台阶式圆柱体的中心有一通孔,在大直径圆柱体有通孔的面上以通孔的圆心为中心向通孔的另一面拉伸切割一多边形体槽9,在直径大的圆柱体的圆周面为齿轮,在直径小的圆柱体向外的面上留有螺旋丝槽。底盖4为一方形板,在板上与容器体相对应的阵列有通孔,底盖4上的通孔直径大于丝盘多边形体槽的最大对角线。According to the adjustable cylindrical container, it is characterized in that: the container body 5 is a square body, a point on the top surface of the square body is the coordinate, and there are N A single row array of 7 through holes and a square array through hole in a single row array of N through holes in a single row array with a pitch D array in the Y-axis direction; The positions of the two opposite sides respectively protrude E blocks 1; the opposite face of the through holes 7 of the square array on the top surface of the square body is the bottom face; on the bottom face, the center of circle of each through hole 7 is There are four rectangular grooves 8 in the central circle array, and two circles with different diameters larger than the diameter of the through hole 7 are centered on the center of each through hole 7, and are stretched to the top surface to cut off different distances. For the cylinder, the distance of the stretched cutout of the circle with small diameter is greater than the distance of stretched cutout of the straight and large circle, forming a stepped cylinder groove 6 . The chuck mechanism includes four claws 2 and a wire reel 3. The claws 2 are square, and a spiral groove is left on the bottom of the square, and a step protrudes from the side near the connection of the bottom; the wire reels 3 have different diameters. The two cylinders are matched with the center of the shaft, and the adjacent surfaces overlap and are fixedly connected to form a stepped cylinder. There is a through hole in the center of the stepped cylinder, and the through hole is formed on the surface of the large diameter cylinder with the through hole The center of circle is that the other side of the center stretches and cuts a polygonal body groove 9 toward the through hole. The circumferential surface of the large diameter cylinder is a gear, and a helical thread groove is left on the outward surface of the small diameter cylinder. Bottom cover 4 is a square plate, and the array corresponding to container body has through hole on the plate, and the diameter of the through hole on the bottom cover 4 is greater than the maximum diagonal line of silk disk polygonal body groove.

根据所述的可调柱形体容器,其特征是:所述的四个卡爪2分别放在容器体5底面每个通孔7上的四个矩形体槽内,卡爪2的底面与容器体5的底面方向一致,卡爪2在侧面靠近底面连接处凸起的一个台阶向着通孔7圆心;丝盘3安装在以每个通孔7的圆心为中心的两个大于通孔7直径的直径大小不同的两个圆形拉伸切除不同距离的台阶式圆柱体槽6内,丝盘3的直径小的圆柱体向外的面上留有的螺旋丝槽分别与四个卡爪2的螺旋丝槽螺旋配合,各通孔7之间的圆心距为两个丝盘3上的齿轮齿轮配合的中心距时,各丝盘3上的齿轮齿轮配合。底盖4与容器体5的底面固定连接,底盖4上阵列的通孔与容器体5上阵列的通孔7相对应。According to the adjustable cylindrical container, it is characterized in that: the four claws 2 are respectively placed in four rectangular body grooves on each through hole 7 on the bottom surface of the container body 5, and the bottom surface of the claws 2 is in contact with the container body. The direction of the bottom surface of the body 5 is consistent, and a step protruding from the joint of the claw 2 on the side near the bottom surface faces the center of the through hole 7; Two circles with different diameters are stretched and cut away from the stepped cylindrical grooves 6 at different distances, and the spiral grooves left on the outer surface of the small-diameter cylinder of the wire reel 3 are connected with the four claws 2 respectively. The helical thread groove spiral fits, and when the center-to-center distance between each through hole 7 is the center-to-center distance that the gears on the two wire reels 3 cooperate, the gears on each wire reel 3 cooperate. The bottom cover 4 is fixedly connected to the bottom surface of the container body 5 , and the arrayed through holes on the bottom cover 4 correspond to the arrayed through holes 7 on the container body 5 .

根据所述的可调柱形体容器,如图1、2、4、6所示,可调柱形体容器在使用时,使用者将某一规格的电池放入可调柱形体容器的阵列的一个通孔内,将调节扳手放进丝盘3的多边形体槽9内,旋转调节扳手,调节扳手带动丝盘3旋转,因丝盘3上螺旋丝槽分别与四个卡爪2的螺旋丝槽螺旋配合,所以丝盘3驱动四个卡爪2向着通孔7圆心移动,当移动到接触到电池圆周表面,四个卡爪2在侧面靠近底面连接处凸起的台阶托住电池,调节至可轻松将电池放进、拿出为宜,因各通孔7之间的圆心距为丝盘3上的齿轮齿轮配合的中心距时,各丝盘3上的齿轮齿轮配合,所以只需调节一个,就可将整个可调柱形体容器通孔7内电池位的大小调节一致。电池放入后,通孔内四个卡爪2的侧面与通孔内壁有一定距离,这样在通孔内壁与电池外圆形成了一个管状间隙,风通过这个间隙、丝盘3上的通孔、底盖4上的通孔流出,从而更好的起到散热、通风效果。According to the adjustable cylindrical container, as shown in Figures 1, 2, 4, and 6, when the adjustable cylindrical container is in use, the user puts a battery of a certain specification into one of the arrays of the adjustable cylindrical container. In the through hole, put the adjusting wrench into the polygonal groove 9 of the wire reel 3, rotate the adjusting wrench, and the adjusting wrench will drive the wire reel 3 to rotate, because the helical grooves on the wire reel 3 are connected with the helical grooves of the four jaws 2 respectively. Spiral fit, so the wire reel 3 drives the four claws 2 to move toward the center of the through hole 7. When it moves to touch the circumferential surface of the battery, the four claws 2 hold the battery on the side protruding steps near the bottom connection, and adjust to It is advisable to easily put the battery in and take it out, because when the center distance between the through holes 7 is the center distance of the gears on the wire reels 3, the gears on each wire reel 3 cooperate, so only need to adjust One, the size of the battery position in the through hole 7 of the whole adjustable cylindrical body container can be adjusted to be consistent. After the battery is put in, there is a certain distance between the sides of the four claws 2 in the through hole and the inner wall of the through hole, so that a tubular gap is formed between the inner wall of the through hole and the outer circle of the battery. 1. The through holes on the bottom cover 4 flow out, so as to better achieve the effect of heat dissipation and ventilation.

下面结合附图和具体实施例二对本发明作进一步说明:The present invention will be further described below in conjunction with accompanying drawing and specific embodiment two:

本发明为一种可调柱形体容器,如图5、6所示,其中D为大于丝盘的齿轮的齿顶圆直径时,每次调节电池位大小,只能调节可调柱形体容器上一列通孔7内电池位的大小,这样可实现一个可调柱形体容器同时管理、储存多种规格的电池。The present invention is an adjustable cylindrical container, as shown in Figures 5 and 6, wherein D is larger than the diameter of the addendum circle of the gear of the wire reel, each time the size of the battery position is adjusted, only the adjustable cylindrical container can be adjusted. The size of the battery positions in a row of through holes 7 can realize an adjustable cylindrical container to simultaneously manage and store batteries of various specifications.

上面所述的实施例仅仅是对本发明的优选实施方式进行描述,并非对本发明的构思和保护范围进行限定,在不脱离本发明设计构思的前提下,本领域中普通工程技术人员对本发明的技术方案作出的各种变型和改进,均应落入本发明的保护范围。The above-described embodiments are only described to the preferred implementation of the present invention, and are not intended to limit the concept and protection scope of the present invention. Various modifications and improvements made in the scheme should fall within the protection scope of the present invention.

Claims (4)

1. an adjustable cylindrical body container comprises: container body, chuck mechanism and bottom three parts composition; It is characterized in that: described container body is a square body, and a point on the end face of square body is coordinate, with spacing C array the single array of N through hole and Y direction has the single array of M through hole with the space D array square array is arranged to X-direction respectively; On the end face of square body near the position on any one relative two a limits protruding E blocks respectively; Relative face at the through hole of square body end face square array is the bottom surface; On the bottom surface, circumference array has four cuboid grooves centered by the center of circle of each through hole, two centered by the center of circle of each through hole greater than two different circles of the diameter of through-hole diameter, stretch to the end face direction respectively and excise the cylinder of different distance, the distance of the stretching excision of the circle that diameter is little forms a step Column groove greater than the distance of the stretching excision of straight big circle; Chuck mechanism comprises four claws and silk dish, and claw is square body, leaves the taenidium groove in the bottom surface of square body, step of close junction, bottom surface projection in the side; The silk dish cooperates for two different cylinder concentrics of diameter, the step cylinder that adjacent face overlaps and is fixedly connected into, there is a through hole at the cylindrical center of step, have at large diameter cylinder on the face of through hole centered by the center of circle of through hole to the another side of the through hole cutting one polygonal body groove that stretches, be gear at the big cylindrical periphery of diameter, leave the taenidium groove at the outside face of the little cylinder of diameter; Bottom is a square plate, and corresponding with the container body onboard array has through hole, and the through-hole diameter on the bottom is greater than the maximum diagonal of silk dish polygonal body groove; Described four claws are placed on respectively in four cuboid grooves on each through hole of container body bottom surface, and the bottom surface of claw is consistent with the bottom surface direction of container body, claw in the side near a step of junction, bottom surface projection towards the through hole center of circle; Silk coils in two step Column grooves greater than two different circular excision different distance that stretch of the diameter of through-hole diameter that are installed in centered by the center of circle of each through hole, the taenidium groove that leaves on the outside face of the cylinder that the diameter of silk dish is little cooperates with the taenidium groove spiral of four claws respectively, when the distance of center circle between each through hole was the width between centers of two gear gears cooperations on the silk dish, the gear gear on each dish cooperated; Bottom is captiveed joint with the bottom surface of container body, on the bottom on the through hole of array and the container body through hole of array corresponding.
2. adjustable cylindrical body container according to claim 1, it is characterized in that: described have N through hole to X-direction with spacing C array, the width between centers when wherein C cooperates for the gear gear of two silk dishes linking to each other, N is more than 1.
3. adjustable cylindrical body container according to claim 1, it is characterized in that: described have M through hole to Y direction with the space D array, width between centers when wherein D cooperates for the gear gear of two silk dishes linking to each other, greater than the tip diameter of the gear of silk dish, M is more than 1.
4. adjustable cylindrical body container according to claim 1 is characterized in that: described on the end face of square body near the position on any one corresponding two a limits protruding E blocks respectively, wherein E is more than 1.
CN 201110444631 2011-12-23 2011-12-23 Adjustable columnar container Expired - Fee Related CN102530385B (en)

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Publication number Priority date Publication date Assignee Title
KR101655726B1 (en) * 2012-05-03 2016-09-07 쇼오트 아게 Method and device for treating containers and substances stored therein for medical, pharmaceutical or cosmetic applications
CN104648845B (en) * 2015-01-26 2016-07-20 王春阳 The board-like management container of lithium electric mortiser
CN108726170A (en) * 2018-06-13 2018-11-02 郑州幼儿师范高等专科学校 A kind of chemical products sampling feeding device for inspection

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US5826742A (en) * 1994-06-13 1998-10-27 Friedhelm Hermann Timpert Device and method for the transport of hazardous goods receptacles in containers
CN2501062Y (en) * 2001-09-18 2002-07-17 北京有色金属研究总院 Universal tray for detecting battery
CN101100230A (en) * 2007-08-13 2008-01-09 友达光电股份有限公司 Screw Carrier
CN102040044A (en) * 2009-10-16 2011-05-04 克罗内斯股份公司 Pack of several containers and method for the production of the pack

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Publication number Priority date Publication date Assignee Title
US5826742A (en) * 1994-06-13 1998-10-27 Friedhelm Hermann Timpert Device and method for the transport of hazardous goods receptacles in containers
CN2501062Y (en) * 2001-09-18 2002-07-17 北京有色金属研究总院 Universal tray for detecting battery
CN101100230A (en) * 2007-08-13 2008-01-09 友达光电股份有限公司 Screw Carrier
CN102040044A (en) * 2009-10-16 2011-05-04 克罗内斯股份公司 Pack of several containers and method for the production of the pack

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