Storage structure and conductor plate transfer tool
By adopting partition design and protective pads in the storage structure of the conductor plate, the problem of thin conductor plates being easily damaged during transportation is solved, and safe transportation and cost control of the conductor plates are achieved.
Patent Information
- Application Number
- CN202423071365.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Thin conductor plates are easily bumped or hit during transportation and circulation, causing deformation or damage.
The storage structure adopts a partition design, and the conductor plates are isolated one by one through separators and storage slots to avoid collisions with each other. Wood materials are used to reduce the collision strength and protective pads are added to fix the conductor plates.
The transportation safety of the conductor plate is improved, the surface of the conductor plate is protected, and the production cost is reduced.
Smart Images

Figure CN223421287U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of busbar transportation, in particular to a storage structure and a conductor plate transport tool. Background Art
[0002] The thin conductor plate in the sliding rail busbar is a key electrical component. Its structural characteristics include a surrounding copper busbar conductor arrangement, a continuous central channel, and continuous slots at the bottom. This allows for densely arranged sockets or full access to branch circuits. This design allows the thin conductor plate to be flexibly connected and powered at any point in the sliding rail busbar system, achieving plug-and-play functionality and enabling online insertion and removal of plug-in boxes without powering down.
[0003] Due to the special structural design of the sliding rail busbar, the thin conductor plate is only 1.0mm thick and slender. During transportation and circulation, it is easy to be bumped, hit, or even deformed, which may cause damage to the conductor plate or even scrapping. Utility Model Content
[0004] In view of the problem that the existing thin conductive plates are easily knocked, bumped, or even deformed during transportation and circulation, the present utility model is proposed.
[0005] Therefore, the purpose of the present invention is to provide a storage structure which adopts a partition design to store the conductor plates one by one to avoid collision and friction between them.
[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: a storage structure, which includes a separator, and the separator is provided in several groups; any of the separators is provided with several groups of storage slots, and the storage slots are separated and stored in two adjacent conductor plates; the axes of the storage slots in two adjacent groups of separators coincide or are parallel.
[0007] As a preferred solution of the storage structure of the present invention, the storage slot completely penetrates the partition, and the two ends of the storage slot in the length direction are the first contact end and the second contact end.
[0008] As a preferred solution of the storage structure of the present invention, the outer side walls of the partition body adjacent to the openings at both ends of the storage slot are the first abutting wall and the second abutting wall.
[0009] As a preferred solution of the storage structure described in the present invention, when the axes of the storage grooves in two adjacent groups of partitions coincide, the first contact end of one group of storage grooves is aligned with the second contact end of the other group of storage grooves, and the first abutment walls and the second abutment walls of the two groups of partitions coincide with each other.
[0010] As a preferred solution of the storage structure of the present invention, when the axes of the storage slots in two adjacent groups of separators are parallel, the first abutting wall of one group of separators abuts against the second abutting wall of the other group of separators.
[0011] As a preferred solution of the storage structure of the present invention, baffles are formed between the storage slots, the bottoms of all the storage slots in the same group of separators are flush, and form a separator bottom wall; the baffles are movably fixed to the separator bottom wall, and the baffles can move in the width direction of both sides of the separator.
[0012] As a preferred solution of the storage structure of the present invention, several groups of protective pads are also fitted on the wall of one side of the storage slot, and the protective pads are placed on both sides of the conductor plate; the end faces of the protective pads on the same side are aligned.
[0013] In order to solve the above technical problems, the utility model also provides the following technical solutions: a conductor plate transfer tool, which includes the above-mentioned storage structure and a transfer box. The top of the transfer box is open and has a accommodating space inside. Several groups of cross bars are arranged in the transfer box, and brackets are also fixed to the outer walls at both ends of the transfer box; the separator is movably installed on the cross bar.
[0014] As a preferred solution of the conductor plate transfer tooling of the present invention, several groups of cross bars are arranged in layers, forming a placement layer between two adjacent layers, and the separator can be placed in the placement layer; several groups of card slots are opened on the top of the cross bar, and the bottom end of the separator can be fitted and connected in the card slot.
[0015] As a preferred solution of the conductor plate transfer tooling of the present invention, the bracket includes vertical rods symmetrically fixed to the outer wall of the transfer box, and support rods can be detachably fixed between the bottom ends of the vertical rods, forming a lifting space between the support rods.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] By opening storage slots in the partition, the original flat-plate stacking and transportation is changed to orderly storage according to position and space, which greatly improves the transportation safety of the conductor plates. In particular, after the surface treatment of the conductor plates, it has a good protective effect on the surface. The partition body is made of wood material, which can reduce the collision strength while reducing the material production cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative work. Among them:
[0019] Figure 1 It is a schematic diagram of the overall structure of the storage structure of the present utility model.
[0020] Figure 2 This is a cross-sectional view of the separator of the storage structure of the present invention.
[0021] Figure 3 This is a schematic diagram of the placement of the separators of the storage structure of the present invention.
[0022] Figure 4 This is a schematic diagram of the structure of a single group of separators of the storage structure of the present utility model.
[0023] Figure 5 This is a schematic diagram of the storage slot alignment of the storage structure of the present invention.
[0024] Figure 6 This is a schematic diagram of the protective pad structure of the storage structure of the utility model.
[0025] Figure 7 This is a schematic diagram of the installation of the baffle of the storage structure of the present invention.
[0026] Figure 8 This is a schematic diagram of the conductor plate structure of the storage structure of the present invention.
[0027] Figure 9 The utility model is a structural schematic diagram of a storage tank of the storage structure.
[0028] Figure 10 This is a schematic diagram of the second structure of the storage slot of the storage structure of the utility model.
[0029] Figure 11 This is a schematic diagram of the third structure of the storage slot of the storage structure of the utility model.
[0030] Figure 12 This is the overall structural diagram of the conductor plate transfer tooling of the present invention.
[0031] Figure 13 This is a schematic diagram of the crossbar distribution of the conductor plate transfer tooling of the present invention.
[0032] Figure 14 This is a schematic diagram of the crossbar structure of the conductor plate transfer tooling of the present invention.
[0033] Figure 15This is a schematic diagram of the bracket structure of the conductor plate transfer tooling of the present invention. DETAILED DESCRIPTION
[0034] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings.
[0035] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0036] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.
[0037] Furthermore, the present invention is described in detail with reference to schematic diagrams. For ease of illustration, when describing embodiments of the present invention, cross-sectional views of device structures may be partially enlarged and not to scale. Furthermore, the schematic diagrams are merely illustrative and should not limit the scope of protection of the present invention. Furthermore, in actual production, three-dimensional dimensions, including length, width, and depth, should be included.
[0038] Example 1
[0039] Reference Figures 1 to 9 , which is the first embodiment of the present invention, provides a storage structure, which includes a separator 100, and the separator 100 is provided with several groups; a plurality of storage slots 101 are opened on any separator 100, and the storage slots 101 isolate and store two adjacent conductive plates 102; the axes A of the storage slots 101 in two adjacent groups of separators 100 coincide or are parallel.
[0040] The separator 100 can be made of metal, wood, plastic or other materials. In this example, wood is preferred because of its low production cost and soft texture, which can greatly reduce the collision strength between the conductor plate 102 and the separator 100.
[0041] Furthermore, the separator 100 can be a flat or vertical rectangular structure. If a vertical structure is adopted, the conductor plate 102 needs to be placed vertically in the storage slot 101. At this time, the lower end of the conductor plate 102 needs to bear its own weight and there is a risk of bending.
[0042] Further, the embodiment preferably adopts a flat-lying rectangular structure, and the conductor plate 102 only needs to be placed horizontally in the storage groove 101 and be in full contact with the storage groove 101, thereby avoiding the problem of deformation of the conductor plate 102.
[0043] The storage groove 101 completely penetrates the partition body 100, and the two ends of the storage groove 101 in the length direction are a first contact end 101a and a second contact end 101b.
[0044] The outer side wall adjacent to the opening of the two ends of the partition body 100 and the storage groove 101 is a first abutting wall B and a second abutting wall C.
[0045] When the axes A of the storage grooves 101 in the two adjacent groups of partition bodies 100 coincide, the first contact end 101a of one group of storage grooves 101 is aligned with the second contact end 101b of the other group of storage grooves 101, and the first abutting wall B and the second abutting wall C of the two groups of partition bodies 100 coincide with each other, respectively.
[0046] It should be noted that, for the sake of convenience, the axes A of different partition bodies 100 can be distinguished as a first line A1, a second line A2, and a third line A3, and the like.
[0047] Referring to Figure 3 When the second line A2 and the third line A3 coincide, the first contact end 101a and the second contact end 101b of the two groups of partition bodies 100 are aligned at the ends.
[0048] In this case, if the conductor plate 102 is relatively short, it only needs to be placed in the shorter partition body 100, and a blocking piece can be placed at the junction of the left and right groups of partition bodies 100 to isolate the conductor plates 102 on both sides and prevent the end portions of the conductor plates 102 from colliding with each other.
[0049] If the conductor plate 102 is relatively long, the conductor plate 102 can be placed in the upper longer partition body 100 to achieve full coverage of the conductor plate 102.
[0050] When the axes A of the storage grooves 101 in the two adjacent groups of partition bodies 100 are parallel, the first abutting wall B of one group of partition bodies 100 abuts against the second abutting wall C of the other group of partition bodies 100.
[0051] Further, in this case, the partition bodies 100 are laid side by side to increase the number of storage grooves 101 so as to transport more conductor plates 102.
[0052] The storage grooves 101 form a baffle 101c, and the bottoms of all the storage grooves 101 in the same group of partition bodies 100 are flush and form a partition bottom wall D.
[0053] The baffle 101 c is movably fixed to the partition bottom wall D, and the baffle 101 c can move in the width direction of both sides of the partition body 100 .
[0054] Further, refer to Figure 7 Slideways can be opened at both ends of the upper surface of the partition bottom wall D, and the baffle 101c can be slidably engaged in the slideway to achieve the adjustable distance between the two baffles 101c to adapt to the storage of conductor plates 102 of different widths.
[0055] A plurality of groups of protection pads 103 are also fitted on one side wall of the storage slot 101 . The protection pads 103 are placed on both sides of the conductor plate 102 . The end faces of the protection pads 103 on the same side are aligned.
[0056] Reference Figure 6 The protective pad 103 can be bubble cotton, sponge or foam plastic. In this embodiment, bubble cotton is used. When the conductor plate 102 is narrow, in order to prevent the conductor plate 102 from shaking during transportation, the protective pad 103 can be filled on both sides of the conductor plate 102 to fix the conductor plate 102.
[0057] Furthermore, in this embodiment, the cross-sectional shape of the conductor plate 102 can be roughly divided into a rectangle, an isosceles trapezoid, an “L” shape, or an “I” shape.
[0058] Reference Figure 9 When the cross-sectional shape of the conductor plate 102 is a rectangle or an isosceles trapezoid, the cross-sectional shape of the storage slot 101 can be a convex shape or a rectangle.
[0059] Furthermore, when a storage slot 101 with a "convex" shape is used, even if the isosceles trapezoidal conductor plate 102 slides left and right during transportation, the wider slot at the bottom can adapt to the shape of the conductor plate 102, avoiding excessive squeezing of the conductor plate 102 by the baffles 101c on both sides, and the narrower slot at the top can also preliminarily fix the upper half of the conductor plate 102, ensuring stable transportation of the conductor plate 102.
[0060] When a rectangular storage slot 101 is used, the rectangular or isosceles trapezoidal conductor plate 102 can also be fixed in the storage slot 101 under the action of the protective pad 103 .
[0061] Furthermore, the rectangular storage slot 101 can reduce the difficulty of slotting and reduce the manufacturing cost.
[0062] Example 2
[0063] Reference Figures 1 to 8 and Figure 10, which is the second embodiment of the present utility model, which is different from the first embodiment in that: a storage structure is provided, which includes a separator 100, and the separator 100 is provided with several groups; several groups of storage slots 101 are opened on any separator 100, and the storage slots 101 isolate and store two adjacent conductive plates 102; the axes A of the storage slots 101 in two adjacent groups of separators 100 coincide or are parallel.
[0064] The separator 100 can be made of metal, wood, plastic or other materials. In this example, wood is preferred because of its low production cost and soft texture, which can greatly reduce the collision strength between the conductor plate 102 and the separator 100.
[0065] Furthermore, the separator 100 can be a flat or vertical rectangular structure. If a vertical structure is adopted, the conductor plate 102 needs to be placed vertically in the storage slot 101. At this time, the lower end of the conductor plate 102 needs to bear its own weight and there is a risk of bending.
[0066] Furthermore, this embodiment preferably adopts a flat rectangular structure, and the conductor plate 102 only needs to be placed horizontally in the storage slot 101 and fully contact the storage slot 101, thereby avoiding the problem of deformation of the conductor plate 102.
[0067] The storage groove 101 completely penetrates the separator 100 , and two ends of the storage groove 101 in the length direction are a first contact end 101 a and a second contact end 101 b .
[0068] The outer side walls of the partition 100 and adjacent to the openings at both ends of the storage tank 101 are the first abutting wall B and the second abutting wall C.
[0069] When the axes A of the storage slots 101 in two adjacent groups of separators 100 coincide, the first contact end 101a of one group of storage slots 101 is aligned with the second contact end 101b of the other group of storage slots 101, and the first abutment walls B and the second abutment walls C of the two groups of separators 100 coincide with each other.
[0070] It should be noted that, for the sake of convenience, the axes A of different separators 100 may be divided into a first line A1 , a second line A2 , a third line A3 , and so on.
[0071] Reference Figure 3 When the second line A2 and the third line A3 in the image are coincident, the first contact ends 101a and the second contact ends 101b of the two groups of separators 100 are aligned.
[0072] In this case, if the conductor plate 102 is shorter, it only needs to be placed on the shorter separator 100. In addition, a blocking member can be placed at the junction of the left and right sets of separators 100 to isolate the conductor plates 102 on both sides and prevent the ends of the conductor plates 102 from colliding with each other.
[0073] If the conductor plate 102 is relatively long, the conductor plate 102 may be placed in the upper, longer separator 100 to achieve full coverage of the conductor plate 102 .
[0074] When the axes A of the storage grooves 101 in two adjacent groups of separators 100 are parallel, the first abutting walls B of one group of separators 100 abut against the second abutting walls C of the other group of separators 100 .
[0075] Furthermore, in this case, the separators 100 are laid side by side to increase the number of storage slots 101 so as to transport more conductor plates 102 .
[0076] Baffles 101 c are formed between the storage grooves 101 , and the bottoms of all the storage grooves 101 in the same group of separators 100 are flush with each other, forming a partition bottom wall D.
[0077] The baffle 101 c is movably fixed to the partition bottom wall D, and the baffle 101 c can move in the width direction of both sides of the partition body 100 .
[0078] Further, refer to Figure 7 Slideways can be opened at both ends of the upper surface of the partition bottom wall D, and the baffle 101c can be slidably engaged in the slideway to achieve the adjustable distance between the two baffles 101c to adapt to the storage of conductor plates 102 of different widths.
[0079] A plurality of groups of protection pads 103 are also fitted on one side wall of the storage slot 101 . The protection pads 103 are placed on both sides of the conductor plate 102 . The end faces of the protection pads 103 on the same side are aligned.
[0080] Reference Figure 6 The protective pad 103 can be bubble cotton, sponge or foam plastic. In this embodiment, bubble cotton is used. When the conductor plate 102 is narrow, in order to prevent the conductor plate 102 from shaking during transportation, the protective pad 103 can be filled on both sides of the conductor plate 102 to fix the conductor plate 102.
[0081] Furthermore, in this embodiment, the cross-sectional shape of the conductor plate 102 can be roughly divided into a rectangle, an isosceles trapezoid, an “L” shape, or an “I” shape.
[0082] Compared with Example 1, further, referring to Figure 10 When the cross-sectional shape of the conductor plate 102 is “L”-shaped, the cross-sectional shape of the storage slot 101 may also be “L”-shaped.
[0083] Furthermore, the storage slot 101 can adopt a positive "L" shape or an inverted "L" shape. It should be noted that, regardless of whether it is a positive "L" shape or an inverted "L" shape, the vertical slot width is wider than the folded surface of the conductor plate 102, which facilitates the vertical placement of the conductor plate 102 in the storage slot 101.
[0084] When the storage slot 101 is in a positive "L" shape, the bent end of the conductor plate 102 is located at the bottom of the storage slot 101. At this time, the center of gravity of the conductor plate 102 is lower, and the overall weight of the conductor plate 102 is at the bottom of the storage slot 101, which can make the conductor plate 102 more stable in the storage slot 101.
[0085] Furthermore, the protective pad 103 is inserted into the vertical groove of the positive “L”-shaped groove to fill the empty space and further fix and protect the conductor plate 102.
[0086] When the storage slot 101 adopts an inverted "L" shape, the protective pad 103 needs to be inserted into the vertical slot first, and then the conductor plate 102 is inserted upside down into the storage slot 101. This can protect the conductor plate 102 in advance and confine the protective pad 103 in the storage slot 101 to prevent it from falling out, providing stable protection.
[0087] Example 3
[0088] Reference Figures 1 to 8 and Figure 11 , which is the third embodiment of the present utility model, which is different from the second embodiment in that: a storage structure is provided, which includes a separator 100, and the separator 100 is provided with several groups; several groups of storage slots 101 are opened on any separator 100, and the storage slots 101 isolate and store two adjacent conductive plates 102; the axes A of the storage slots 101 in two adjacent groups of separators 100 coincide or are parallel.
[0089] The separator 100 can be made of metal, wood, plastic or other materials. In this example, wood is preferred because of its low production cost and soft texture, which can greatly reduce the collision strength between the conductor plate 102 and the separator 100.
[0090] Furthermore, the separator 100 can be a flat or vertical rectangular structure. If a vertical structure is adopted, the conductor plate 102 needs to be placed vertically in the storage slot 101. At this time, the lower end of the conductor plate 102 needs to bear its own weight and there is a risk of bending.
[0091] Furthermore, this embodiment preferably adopts a flat rectangular structure, and the conductor plate 102 only needs to be placed horizontally in the storage slot 101 and fully contact the storage slot 101, thereby avoiding the problem of deformation of the conductor plate 102.
[0092] The storage groove 101 completely penetrates the separator 100 , and two ends of the storage groove 101 in the length direction are a first contact end 101 a and a second contact end 101 b .
[0093] The outer side walls of the partition 100 and adjacent to the openings at both ends of the storage tank 101 are the first abutting wall B and the second abutting wall C.
[0094] When the axes A of the storage slots 101 in two adjacent groups of separators 100 coincide, the first contact end 101a of one group of storage slots 101 is aligned with the second contact end 101b of the other group of storage slots 101, and the first abutment walls B and the second abutment walls C of the two groups of separators 100 coincide with each other.
[0095] It should be noted that, for the sake of convenience, the axes A of different separators 100 may be divided into a first line A1 , a second line A2 , a third line A3 , and so on.
[0096] Reference Figure 3 When the second line A2 and the third line A3 in the image are coincident, the first contact ends 101a and the second contact ends 101b of the two groups of separators 100 are aligned.
[0097] In this case, if the conductor plate 102 is shorter, it only needs to be placed on the shorter separator 100. In addition, a blocking member can be placed at the junction of the left and right sets of separators 100 to isolate the conductor plates 102 on both sides and prevent the ends of the conductor plates 102 from colliding with each other.
[0098] If the conductor plate 102 is relatively long, the conductor plate 102 may be placed in the upper, longer separator 100 to achieve full coverage of the conductor plate 102 .
[0099] When the axes A of the storage grooves 101 in two adjacent groups of separators 100 are parallel, the first abutting walls B of one group of separators 100 abut against the second abutting walls C of the other group of separators 100 .
[0100] Furthermore, in this case, the separators 100 are laid side by side to increase the number of storage slots 101 so as to transport more conductor plates 102 .
[0101] Baffles 101 c are formed between the storage grooves 101 , and the bottoms of all the storage grooves 101 in the same group of separators 100 are flush with each other, forming a partition bottom wall D.
[0102] The baffle 101 c is movably fixed to the partition bottom wall D, and the baffle 101 c can move in the width direction of both sides of the partition body 100 .
[0103] Further, refer to Figure 7 Slideways can be opened at both ends of the upper surface of the partition bottom wall D, and the baffle 101c can be slidably engaged in the slideway to achieve the adjustable distance between the two baffles 101c to adapt to the storage of conductor plates 102 of different widths.
[0104] A plurality of groups of protection pads 103 are also fitted on one side wall of the storage slot 101 . The protection pads 103 are placed on both sides of the conductor plate 102 . The end faces of the protection pads 103 on the same side are aligned.
[0105] Reference Figure 6 The protective pad 103 can be bubble cotton, sponge or foam plastic. In this embodiment, bubble cotton is used. When the conductor plate 102 is narrow, in order to prevent the conductor plate 102 from shaking during transportation, the protective pad 103 can be filled on both sides of the conductor plate 102 to fix the conductor plate 102.
[0106] Furthermore, in this embodiment, the cross-sectional shape of the conductor plate 102 can be roughly divided into a rectangle, an isosceles trapezoid, an “L” shape, or an “I” shape.
[0107] Compared to the second embodiment, further, when the cross-section of the conductor plate 102 is substantially in the shape of an I, the cross-section of the storage slot 101 may be in a symmetrical rectangular structure or an arc structure.
[0108] Furthermore, these two structures are not only easy to process, but can also completely cover the conductor plate 102 . The protective pads 103 are symmetrically arranged on both sides of the conductor plate 102 to prevent the side walls of the conductor plate 102 from being excessively impacted.
[0109] The storage slot 101 with an arc structure can provide a wider space, which can allow the conductor plate 102 to drive the protective pad 103 to shake slightly, and there is displacement buffer space when encountering a larger impact.
[0110] Example 4
[0111] Reference Figures 1 to 15 , which is the fourth embodiment of the present utility model. This embodiment is different from the third embodiment in that it provides a conductor plate transfer tool, which includes the storage structure in the above embodiment and also includes a transfer box 200. The top of the transfer box 200 is open and there is an accommodating space K inside. Several groups of cross bars 201 are arranged in the transfer box 200, and brackets 202 are also fixed to the outer walls at both ends of the transfer box 200; the separator 100 is movably installed on the cross bars 201.
[0112] Among them, the transfer box 200 is made of metal or wood. In order to improve the service life, this embodiment is preferably made of aluminum alloy, which is light in weight but high in strength. The cross bar 201 is preferably made of wood, which can ensure the support strength while also ensuring the softness of its surface.
[0113] Several groups of cross bars 201 are arranged in layers, and a placement layer E is formed between two adjacent layers. The separator 100 can be placed in the placement layer E.
[0114] The accommodating space K is divided into several groups of placement layers E by the crossbar 201 to place the separator 100. Figure 13The separators 100 can be spliced and placed in the placement layer E, or a whole separator 100 can be placed in the placement layer E, which can be determined according to the length and number of the transported conductor plates 102.
[0115] The top of the crossbar 201 is provided with a plurality of slots 201 a , and the bottom end of the separator 100 can be engaged in the slots 201 a .
[0116] During use, the card slot 201a can limit the separator 100 to prevent the separator 100 from sliding laterally during transportation.
[0117] Furthermore, the crossbar 201 located at the top layer can prevent the conductor plate 102 in the top layer separator 100 from falling from the top layer.
[0118] The bracket 202 includes vertical rods 202a symmetrically fixed to the outer wall of the transfer box 200. Support rods 202b are detachably fixed between the bottom ends of the vertical rods 202a, and a lifting space F is formed between the support rods 202b.
[0119] Furthermore, the vertical rod 202a and the supporting rod 202b are both made of aluminum alloy. During use, when the transfer tooling is placed on the factory floor as a whole, the transfer box 200 is suspended in the air as a whole. The staff can pass the rope or forklift fork through the lifting space F to facilitate the transfer box 200 to be lifted or hoisted.
[0120] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.
Claims
1. A storage structure, characterized in that: include, A separator (100), wherein the separator (100) is provided in a plurality of groups; Any of the separators (100) is provided with a plurality of storage slots (101), and the storage slots (101) are used to store two adjacent conductive plates (102) in isolation. The axes (A) of the storage slots (101) in two adjacent groups of separators (100) are coincident or parallel.
2. The storage structure according to claim 1, characterized in that: The storage groove (101) completely penetrates the separator (100), and the two ends of the storage groove (101) in the length direction are a first contact end (101a) and a second contact end (101b).
3. The storage structure according to claim 2, characterized in that: The outer side walls of the separator (100) and the storage tank (101) adjacent to the openings at both ends are the first abutting wall (B) and the second abutting wall (C).
4. The storage structure according to claim 3, characterized in that: When the axes (A) of the storage slots (101) in two adjacent groups of separators (100) coincide with each other, the first contact end (101a) of one group of storage slots (101) is aligned with the second contact end (101b) of the other group of storage slots (101), and the first abutting walls (B) and the second abutting walls (C) of the two groups of separators (100) coincide with each other.
5. The storage structure according to claim 3 or 4, characterized in that: When the axes (A) of the storage grooves (101) in two adjacent groups of separators (100) are parallel, the first abutting wall (B) of one group of separators (100) and the second abutting wall (C) of the other group of separators (100) abut against each other.
6. The storage structure according to claim 5, characterized in that: Baffles (101c) are formed between the storage slots (101), and the bottoms of all the storage slots (101) in the same group of separators (100) are flush with each other, forming a partition bottom wall (D); The baffle (101c) is movably fixed on the partition bottom wall (D), and the baffle (101c) can move in the width direction of both sides of the partition body (100).
7. The storage structure according to any one of claims 1 to 4 and 6, characterized in that: A plurality of groups of protective pads (103) are also provided on one side wall of the storage tank (101), and the protective pads (103) are placed on both sides of the conductor plate (102); The end faces of the protection pads (103) on the same side are aligned.
8. A conductor plate transfer tool, characterized by: The storage structure according to any one of claims 1 to 7 further comprises: A transfer box (200), the transfer box (200) is open at the top and has an accommodating space (K) inside. The transfer box (200) is provided with a plurality of groups of cross bars (201), and brackets (202) are fixed to the outer walls at both ends of the transfer box (200); The separator (100) is movably mounted on the crossbar (201).
9. The conductor plate transfer tool according to claim 8, characterized in that: A plurality of groups of crossbars (201) are arranged in layers, and a placement layer (E) is formed between two adjacent layers, and the separator (100) can be placed in the placement layer (E); The top of the crossbar (201) is provided with a plurality of groups of slots (201a), and the bottom end of the separator (100) can be engaged in the slots (201a).
10. The conductor plate transfer tool according to claim 9, characterized in that: The bracket (202) includes vertical rods (202a) symmetrically fixed to the outer wall of the transfer box (200), and support rods (202b) are detachably fixed between the bottom ends of the vertical rods (202a), and a lifting space (F) is formed between the support rods (202b).