CN219175924U - Integral shaping protection device of construction elevator material transferring platform - Google Patents
Integral shaping protection device of construction elevator material transferring platform Download PDFInfo
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- CN219175924U CN219175924U CN202223020832.9U CN202223020832U CN219175924U CN 219175924 U CN219175924 U CN 219175924U CN 202223020832 U CN202223020832 U CN 202223020832U CN 219175924 U CN219175924 U CN 219175924U
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- 239000000463 material Substances 0.000 title claims abstract description 24
- 238000007493 shaping process Methods 0.000 title abstract description 8
- 230000001681 protective effect Effects 0.000 claims description 21
- 238000013461 design Methods 0.000 claims description 4
- 230000001012 protector Effects 0.000 claims description 2
- 238000009434 installation Methods 0.000 abstract description 4
- 230000009286 beneficial effect Effects 0.000 abstract description 2
- 238000004873 anchoring Methods 0.000 description 18
- 230000001788 irregular Effects 0.000 description 3
- 238000009435 building construction Methods 0.000 description 2
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- 238000005553 drilling Methods 0.000 description 2
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- 229910000831 Steel Inorganic materials 0.000 description 1
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B50/00—Energy efficient technologies in elevators, escalators and moving walkways, e.g. energy saving or recuperation technologies
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Abstract
The utility model discloses an integral shaping protection device for a material transferring platform of a construction lifter, which comprises an upper floor slab and a lower floor slab and is characterized in that: the upper floor slab and the lower floor slab on all be fixed with the crossbeam that encorbelments that is located the left and right sides, be fixed with flexible pole setting between the crossbeam that encorbelments of the upper and lower floor slab of homonymy, be connected with the guard gate of upper portion's connection horizontal pole and lower part between the flexible pole setting of left and right sides, be fixed with the construction passageway board between the crossbeam that encorbelments of the left and right sides of lower floor slab. The utility model has the beneficial effects that: all components are manufactured in a standardized way in a factory by adopting modulization and assembly, so that the cost is low and the quality is reliable; the protection measures of the material transferring platform of the construction lifter are realized, and the safety of personnel and material transferring is ensured; simple structure, on-the-spot equipment, dismantlement are swift convenient, and overall structure is firm after the installation.
Description
Technical Field
The utility model belongs to the technical field of building construction, and particularly relates to an integral shaping protection device for a material transferring platform of a construction lifter.
Background
The construction elevator is a common vertical transportation machine in building construction, and the safety protection of the passage opening of the elevator material conveying platform is an important facility for safety protection in the operation process of the elevator. The traditional elevator safety protection adopts steel pipes to erect, which is labor-consuming and is easily affected by human factors to cause irregular erection. In recent years, research and trial are made on the aspects of shaping design, mounting of a frame-free body, automatic closing of the protective door and the like of the protective door of the construction elevator in the industry, and the shaping application is basically realized in the current industry only in terms of the protective door. However, the integrated design of a protection frame body, a material transferring platform, a protection door, an unloading device and the like does not appear in the domestic industry at present. At present, the safety protection of the elevator still has the problems of scattered components, large manual consumption, irregular erection and the like.
Disclosure of Invention
The utility model aims at: the utility model provides an integral finalized protection device for a material transferring platform of a construction lifter, which solves the problems of scattered components, large manual consumption and irregular erection of the material transferring platform of the existing construction lifter.
The aim of the utility model is achieved by the following technical scheme:
integral design protector of construction elevator changes material platform, including upper floor and lower floor, its characterized in that: the upper floor slab and the lower floor slab on all be fixed with the crossbeam that encorbelments that is located the left and right sides, be fixed with flexible pole setting between the crossbeam that encorbelments of the upper and lower floor slab of homonymy, be connected with the guard gate of upper portion's connection horizontal pole and lower part between the flexible pole setting of left and right sides, be fixed with the construction passageway board between the crossbeam that encorbelments of the left and right sides of lower floor slab.
Further, the floor slab comprises a first floor and a second floor slab, cantilever beams positioned on the left side and the right side are fixed on the second floor slab, telescopic vertical rods are fixed between the cantilever beams of the second floor slab and the first floor slab, and a connecting cross rod on the upper portion and a protective door on the lower portion are connected between the telescopic vertical rods on the left side and the right side.
Furthermore, the outer end of the cantilever beam is flush with the telescopic upright rod relatively, and the construction channel plate is a standard channel plate positioned on the inner side of the protective door.
Furthermore, the outer end of the cantilever beam extends out relative to the telescopic upright rod, and a cantilever diagonal bracing is arranged between the outer end of the cantilever beam and the telescopic upright rod, and the construction channel plate is a standard channel plate positioned at the inner side of the protective door and an extension channel plate positioned at the outer side of the protective door.
Further, the telescopic vertical rod comprises a lower loop bar and an upper loop bar, the lower loop bar is sleeved with the upper loop bar, and the length of the lower loop bar is sleeved with the upper loop bar through an adjusting hole and an anchor bolt.
Further, for the flexible pole setting between upper and lower floor slab, the top of going up the loop bar is the top cover of cover on the crossbeam of encorbelmenting, and the bottom of lower loop bar is detained the bottom knot of setting on the top cover of crossbeam of encorbelmenting, and crossbeam, top cover and the bottom knot of encorbelmenting are as an organic whole through anchor bolt connection.
Further, for the flexible pole setting between one deck ground and the two-deck floor, the top of last loop bar is the top cover of cover on the crossbeam of encorbelmenting, and the bottom of lower loop bar is the bottom plate of establishing subaerial, and the crossbeam of encorbelmenting passes through anchor bolt with the top cover and connects as an organic wholely.
Further, the protection door comprises a left door plate and a right door plate, wherein the left door plate is hinged with the left telescopic upright rod, the right door plate is hinged with the right telescopic upright rod, and the left door plate is connected with the right door plate through a bolt.
Furthermore, the cantilever beam is fixed on the floor slab through an anchoring piece, the anchoring piece comprises an embedded plate and an anchoring seat, an anchoring bolt penetrates through the embedded plate in the floor slab to be connected with the anchoring seat, and the rear end of the cantilever beam is sleeved in the anchoring seat.
Furthermore, both ends of the cantilever diagonal bracing are diagonal buckles buckled on the telescopic vertical rod or the cantilever cross beam.
The utility model realizes the following functions: the method is mainly used for protecting a material transferring platform of the construction lifter, and is divided into two modes of overhanging and non-overhanging according to the distance between the construction lifter and the wall, wherein overhanging is suitable for the person with a larger distance from the wall, and the overhanging length is manufactured in a modularized mode and is selected according to the distance from the wall. The cantilever diagonal bracing only belongs to cantilever type, and cantilever type cross beams without cantilever type are different in construction channel plate structures.
The utility model has the beneficial effects that:
1) All components are manufactured in a standardized way in a factory by adopting modulization and assembly, and the cost is low and the quality is reliable.
2) The protection measures of the material transferring platform of the construction lifter are realized, and the safety of personnel and material transferring is ensured.
3) Simple structure, on-the-spot equipment, dismantlement are swift convenient, and overall structure is firm after the installation.
The foregoing inventive subject matter and various further alternatives thereof may be freely combined to form a plurality of alternatives, all of which are employable and claimed herein; and the utility model can be freely combined between the (non-conflicting choices) choices and between the choices and other choices. Various combinations will be apparent to those skilled in the art from a review of the present disclosure, and are not intended to be exhaustive or all of the present disclosure.
Drawings
Fig. 1 is a schematic structural diagram of embodiment 1.
Fig. 2 is a structural exploded view of the standard layer of example 1.
Fig. 3 is a structural exploded view of the bottom layer of example 1.
Fig. 4 is a schematic structural diagram of embodiment 2.
Fig. 5 is a structural exploded view of the standard layer of example 2.
Fig. 6 is a structural exploded view of the bottom layer of example 2.
In the figure: 1-telescopic vertical rods, 2-overhanging cross beams, 3-connecting cross rods, 4-protective doors, 5-anchoring pieces, 6-anchoring bolts, 7-standard channel plates, 8-overhanging diagonal braces and 9-extension channel plates; 11-lower loop bar, 12-upper loop bar, 13-bottom plate, 14-bottom buckle, 15-top sleeve, 16-adjusting hole, 31-end buckle, 41-left door plate, 42-right door plate, 43-bolt, 51-embedded plate, 52-anchor seat and 81-oblique buckle.
Detailed Description
The following non-limiting examples illustrate the utility model.
Example 1:
referring to figures 1-3, the integral shaping protection device of the material transferring platform of the construction elevator comprises a first floor, a second floor, an N floor, an N+1 floor, a top floor, a telescopic upright 1, a cantilever beam 2, a connecting cross rod 3, a protection door 4, an anchor 5, an anchor bolt 6 and a standard channel plate 7.
For the space between the first floor and the second floor, the cantilever beams 2 positioned at the left side and the right side are fixed on the second floor, the telescopic vertical rods 1 are fixed between the cantilever beams 2 of the second floor and the first floor, the telescopic vertical rods 1 are fixed by utilizing the cantilever beams 2, and the telescopic vertical rods 1 at the two sides form a main body frame.
The upper connecting cross rod 3 and the lower protective door 4 are connected between the left and right telescopic vertical rods 1. The connecting cross rod 3 is used for strengthening the structural strength between the telescopic upright rods 1 at two sides. The protective door 4 protects the construction hoist, and the protective door 4 is opened when personnel or materials pass through.
For the space between the N floor (lower floor) and the N+1 floor (upper floor), overhanging beams 2 positioned on the left side and the right side are fixed on the upper floor and the lower floor, telescopic vertical rods 1 are fixed between the overhanging beams 2 of the upper floor and the lower floor on the same side, and similarly, the telescopic vertical rods 1 are fixed by using the overhanging beams 2, and the telescopic vertical rods 1 on the two sides form a main body frame.
The upper connecting cross rod 3 and the lower protective door 4 are connected between the telescopic vertical rods 1 at the left side and the right side. The connecting cross rod 3 is used for strengthening the structural strength between the telescopic upright rods 1 at two sides. The protective door 4 protects the construction hoist, and the protective door 4 is opened when personnel or materials pass through.
And a construction passage plate is fixedly welded between the cantilever beams 2 on the left side and the right side of the lower floor slab, and the construction passage plate realizes the walking and passing between the floor slab and the lifter of personnel or vehicles. The outer end of the cantilever beam 2 is flush with the telescopic upright 1, and the construction channel plate is a standard channel plate 7 positioned on the inner side of the protective door 4. Therefore, the embodiment forms a frame without an overhanging structure and is suitable for occasions where the lifter is close to the wall.
The telescopic vertical rod 1 comprises a lower loop bar 11 and an upper loop bar 12, the upper end of the lower loop bar 11 is sleeved into the lower end of the upper loop bar 12, the lower loop bar 11 and the upper loop bar 12 are matched in a sleeved mode, and the telescopic length of the telescopic vertical rod 1 can be adjusted by means of the matched in a sleeved mode so as to meet different floor distances.
The length is adjusted and sleeved between the lower loop bar 11 and the upper loop bar 12 through the adjusting holes 16 and the anchor bolts 6, a plurality of adjusting holes 16 are formed in the lower loop bar 11 and the upper loop bar 12, the adjusting holes 16 at different positions are opposite, then the anchor bolts 6 penetrate through the adjusting holes 16 to be locked, and the fixing of the telescopic vertical bars 1 with different elongation can be realized.
For the telescopic vertical rod 1 between the first floor and the second floor. The top of the upper loop bar 12 is provided with a top loop 15 sleeved on the overhanging beam 2, and the overhanging beam 2, the bottom buckle 14 and the top loop 15 are connected into a whole through the anchor bolt 6. The bottom of the lower loop bar 11 is a bottom plate 13 arranged on the ground, and the bottom plate 13 is used for supporting on the ground, so that the supporting force of the telescopic vertical bar 1 is maintained. The bottom plate 13 is welded with the lower loop bar 11, and the top sleeve 15 is welded with the upper loop bar 12.
For the telescopic upright 1 between the upper floor and the lower floor, the top of the upper loop bar 12 is a top loop 15 sleeved on the overhanging beam 2, the bottom of the lower loop bar 11 is a bottom buckle 14 buckled on the top loop 15 of the overhanging beam 2, and the overhanging beam 2, the top loop 15 and the bottom buckle 14 are connected into a whole through the anchoring bolt 6. The telescopic vertical rods 1 on the upper layer and the lower layer are connected into a whole by using a buckling and sleeving combined connection mode, so that the stability of the whole frame is improved. The bottom buckle 14 is welded with the lower loop bar 11, and the top sleeve 15 is welded with the upper loop bar 12.
The both ends of connecting horizontal pole 3 are welded end knot 31, and end knot 31 detains and establishes on the lower loop bar 11 of flexible pole setting 1, then wears to establish anchor bolt 6 and realize locking, and connecting horizontal pole 3 has strengthened the joint strength between the flexible pole setting 1.
The protection door 4 comprises a left door plate 41 and a right door plate 42, wherein the left door plate 41 is hinged with the left lower loop bar 11 through a hinge, the right door plate 42 is hinged with the right lower loop bar 11 through a hinge, and the left door plate 41 is connected with the right door plate 42 through a bolt 43. When personnel or materials pass, the bolt 43 is pulled out, then the left door plate 41 and the right door plate 42 are opened, and when the elevator runs, the bolt 43 is inserted to realize edge protection.
The cantilever beam 2 is fixed on the floor slab through an anchoring piece 5, the anchoring piece 5 comprises an embedded plate 51 and an anchoring seat 52, and an anchoring bolt 6 penetrates through the embedded plate 51 in the floor slab to be connected with the anchoring seat 52, so that the anchoring seat 52 is fixed on the floor slab. The rear end of the cantilever beam 2 is sleeved in the anchor seat 52, and the cantilever beam 2 and the anchor seat 52 are locked by the anchor bolt 6, so that the cantilever beam 2 is fixedly installed.
The bottom layer installation flow comprises the following steps: preparation, paying off, drilling an anchoring hole (or embedded bolt), installing a telescopic vertical rod (lower sleeve rod), installing a two-layer cantilever beam, installing a telescopic vertical rod (upper sleeve rod), fixing the vertical rod, installing a cantilever diagonal bracing (with cantilever), installing a connecting cross rod, installing a construction elevator door, and paving a bottom layer channel plate.
N layer (N > 1) installation flow: preparing, paying off, drilling an anchoring hole (or embedded bolt) on an n+1th floor slab, installing an N-th telescopic vertical rod (lower loop bar), installing an overhanging beam and an anchoring piece on the n+1th floor slab, installing an N-th telescopic vertical rod (upper loop bar), fixing the vertical rod, installing an N+1th overhanging diagonal brace (overhanging type), installing an N-th connecting cross rod, installing an N-th construction elevator door, and paving an N-th channel plate.
Example 2:
referring to fig. 4 to 6, the integral shaping protection device for the material transferring platform of the construction elevator comprises a first floor, a second floor, an N floor, an N+1 floor, a top floor, a telescopic upright 1, a cantilever beam 2, a connecting cross rod 3, a protection door 4, an anchor 5, an anchor bolt 6, a standard channel plate 7, a cantilever diagonal bracing 8 and an extension channel plate.
The outer end of the cantilever beam 2 extends out relative to the telescopic vertical rod 1, a cantilever diagonal bracing 8 is arranged between the outer end of the cantilever beam 2 and the telescopic vertical rod 1, and the outer end of the cantilever beam 2 is reinforced and supported by the cantilever diagonal bracing 8. The construction passageway plate is a standard passageway plate 7 positioned on the inner side of the protective door 4 and an extension passageway plate 9 positioned on the outer side of the protective door 4. The present embodiment thus constitutes a frame with overhanging structure, suitable for use in places where the elevator is far from the wall, to extend the channel span of the channel plate 9.
The two ends of the cantilever diagonal bracing 8 are provided with diagonal buckles 81 which are buckled on the telescopic vertical rod 1 or the cantilever beam 2, the diagonal buckles 81 are welded at the two ends of the cantilever diagonal bracing 8, and the cantilever beam 2 and the upper sleeve rod 12 are locked by using the anchor bolts 6, so that the cantilever diagonal bracing 8 is supported and fixed.
Other structures and installation processes are the same as those of embodiment 1.
The foregoing basic embodiments of the utility model, as well as other embodiments of the utility model, can be freely combined to form numerous embodiments, all of which are contemplated and claimed. In the scheme of the utility model, each selection example can be arbitrarily combined with any other basic example and selection example.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.
Claims (10)
1. Integral design protector of construction elevator changes material platform, including upper floor and lower floor, its characterized in that: the upper floor slab and the lower floor slab on all be fixed with cantilever beams (2) that are located the left and right sides, be fixed with flexible pole setting (1) between cantilever beams (2) of the upper and lower floor slab of homonymy, be connected with connection horizontal pole (3) and the guard gate (4) of lower part on upper portion between flexible pole setting (1) of the left and right sides, be fixed with construction passageway board between cantilever beams (2) of the left and right sides of lower floor slab.
2. The construction elevator material transfer platform integral type finalization protection device according to claim 1, wherein: the floor comprises a floor body and a floor body, wherein the floor body is provided with a first floor, a second floor is fixedly provided with overhanging beams (2) positioned at the left side and the right side, a telescopic upright (1) is fixedly arranged between the overhanging beams (2) of the floor body and the floor body, and a connecting cross rod (3) at the upper part and a protective door (4) at the lower part are connected between the telescopic upright (1) at the left side and the right side.
3. The construction elevator transfer platform integral type finalization protection device according to claim 1 or 2, wherein: the outer end of the cantilever beam (2) is flush with the telescopic upright rod (1), and the construction channel plate is a standard channel plate (7) positioned at the inner side of the protective door (4).
4. The construction elevator transfer platform integral type finalization protection device according to claim 1 or 2, wherein: the outer end of the cantilever beam (2) stretches out relative to the telescopic vertical rod (1), a cantilever diagonal bracing (8) is arranged between the outer end of the cantilever beam (2) and the telescopic vertical rod (1), and the construction channel plate is a standard channel plate (7) positioned at the inner side of the protective door (4) and an extension channel plate (9) positioned at the outer side of the protective door (4).
5. The construction elevator transfer platform integral type finalization protection device according to claim 1 or 2, wherein: the telescopic vertical rod (1) comprises a lower loop bar (11) and an upper loop bar (12), the lower loop bar (11) is sleeved with the upper loop bar (12), and the length of the lower loop bar (11) and the upper loop bar (12) is adjusted and sleeved through an adjusting hole (16) and an anchor bolt (6).
6. The construction elevator material transfer platform integral type finalization protection device according to claim 1, wherein: for telescopic pole setting (1) between upper and lower floor's slab, the top of going up loop bar (12) is top cover (15) of cover on overhanging crossbeam (2), and the bottom of lower loop bar (11) is detained and is established bottom knot (14) on top cover (15) of overhanging crossbeam (2), and overhanging crossbeam (2), top cover (15) and bottom knot (14) three are connected as an organic wholely through anchor bolt (6).
7. The construction elevator material transfer platform integral type finalization protection device according to claim 2, wherein: for telescopic pole setting (1) between one deck ground and two floors, the top of last loop bar (12) is for cover top cover (15) of establishing on cantilever beam (2), and the bottom of lower loop bar (11) is for establishing subaerial bottom plate (13), and cantilever beam (2) are connected as an organic wholely through anchor bolt (6) with top cover (15).
8. The construction elevator transfer platform integral type finalization protection device according to claim 1 or 2, wherein: the protective door (4) comprises a left door plate (41) and a right door plate (42), wherein the left door plate (41) is hinged with the left telescopic upright rod (1), the right door plate (42) is hinged with the right telescopic upright rod (1), and the left door plate (41) is connected with the right door plate (42) through a bolt (43).
9. The construction elevator transfer platform integral type finalization protection device according to claim 1 or 2, wherein: the cantilever beam (2) is fixed on a floor slab through an anchor piece (5), the anchor piece (5) comprises an embedded plate (51) and an anchor seat (52), an anchor bolt (6) penetrates through the embedded plate (51) in the floor slab to be connected with the anchor seat (52), and the rear end of the cantilever beam (2) is sleeved in the anchor seat (52).
10. The construction elevator material transfer platform integral type finalization protection device according to claim 4, wherein: the two ends of the cantilever diagonal bracing (8) are diagonal buckles (81) buckled on the telescopic vertical rod (1) or the cantilever cross beam (2).
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202223020832.9U CN219175924U (en) | 2022-11-14 | 2022-11-14 | Integral shaping protection device of construction elevator material transferring platform |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202223020832.9U CN219175924U (en) | 2022-11-14 | 2022-11-14 | Integral shaping protection device of construction elevator material transferring platform |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN115711044A (en) * | 2022-11-14 | 2023-02-24 | 中国五冶集团有限公司 | Integral regularization protector of material platform is changeed to construction elevator |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN115711044A (en) * | 2022-11-14 | 2023-02-24 | 中国五冶集团有限公司 | Integral regularization protector of material platform is changeed to construction elevator |
| CN115711044B (en) * | 2022-11-14 | 2025-08-19 | 中国五冶集团有限公司 | Integral shaping protection device of construction elevator material transferring platform |
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