Semiconductor transfer metal plastic carrier

By designing a semiconductor transport metal-plastic carrier with foldable side and end plate assemblies, ratchet tensioners and anti-slip buffer pads, the difficulties in transporting and storing tubular parts are solved, and stable and low-cost warehousing and transportation are achieved. It is suitable for applications inside and outside semiconductor thermal field accessories factories.

CN223315504UActive Publication Date: 2025-09-09SUZHOU LIANGCAI LOGISTICS TECH
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Patent Information

Application Number
CN202422638158.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-09
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

Existing transfer vehicles are not suitable for the transportation and storage of tubular parts, resulting in high transportation and transfer costs, and the fixing process is time-consuming and labor-intensive.

Method used

A semiconductor transfer metal-plastic carrier was designed. It adopts foldable side and end plate assemblies, combined with ratchet tensioners and anti-slip cushions to fix and protect tubular parts. It is equipped with a wire-side transfer wooden pallet and stacking structure to achieve stable and convenient operation.

Benefits of technology

It achieves stable transportation and storage of tubular parts, reduces manual operation time and transportation costs, is suitable for in-factory storage and out-of-factory transportation of semiconductor thermal field accessories, reduces space occupancy, and supports multiple recycling uses.

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Abstract

The utility model provides a semiconductor transfer metal plastic carrier which comprises a box bottom assembly, side plate assemblies capable of being folded inwards are arranged on the left side and the right side of the box bottom assembly, end plate assemblies capable of being folded inwards are arranged at the front end and the rear end of the box bottom assembly, and detachable box top assemblies are arranged at the tops of the side plate assemblies and the top of the end plate assemblies in a sealed mode. The box bottom assembly, the box top assembly, the side plate assemblies and the end plate assemblies are all formed by assembling frames and sealing plates. A line edge transfer wood tray used for placing the tubular parts is arranged on the box bottom assembly in the carrier, and a forklift forking space is reserved between the bottom of the line edge transfer wood tray and the box bottom assembly; the box bottom assembly is further provided with a ratchet tensioner, and the ratchet tensioner and the line edge transfer wood tray can be fixed to the box bottom assembly together in the axial direction of the tubular part. According to the carrier, multi-direction adjustment is achieved through connection of multiple sections of hinges, manual operation and occupied field are reduced, loading and unloading are directly conducted through a forklift, and off-site transportation can be met through cooperation with a ratchet tensioner; the carrier can be folded inwards, so that the recovery cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of circulation carriers, in particular to a semiconductor transport metal plastic carrier. Background Art

[0002] Semiconductor thermal field accessories include tubular parts of various sizes. During transportation or storage, these parts are difficult to fix due to their shape, and workers need to spend a lot of time fixing the parts. The structure of existing transfer vehicles is not suitable for the transportation or storage of tubular parts, resulting in high transportation and transfer costs. Utility Model Content

[0003] The technical problem to be solved by the present invention is: in order to overcome the deficiencies in the prior art, the present invention provides a semiconductor transport metal plastic carrier.

[0004] The technical solution adopted by the utility model to solve the technical problem is: a semiconductor transport metal plastic carrier, including a box bottom assembly, the left and right sides of the box bottom assembly are provided with side panel assemblies that can be folded inwards, the front and rear ends are provided with end panel assemblies that can be folded inwards, and the tops of the side panel assemblies and the end panel assemblies are sealed with a detachable box top assembly, and the box bottom assembly, box top assembly, side panel assemblies and end panel assemblies are all assembled by using a frame and a sealing plate;

[0005] A line-side transfer wooden pallet for placing tubular parts is provided on the bottom assembly of the box inside the carrier, and a forklift pick-up space is left between the bottom of the line-side transfer wooden pallet and the bottom assembly;

[0006] The box bottom assembly is also provided with at least two ratchet tensioners, which can fix the tubular part and the line-edge transfer wooden pallet to the box bottom assembly along the axial direction.

[0007] Furthermore, in order to realize the folding of the side panel assembly and to open it for loading parts, the side panel assembly includes a bottom crossbeam, side columns, two left and right groups of folding doors, a first hinge, a second hinge, a third hinge and a locking member. The side columns are two, which are vertically arranged at the left and right ends of the bottom crossbeam and fixedly connected to the bottom crossbeam; the bottom crossbeam is hinged to the outer edge of the box bottom assembly through a plurality of first hinges; two groups of folding doors are arranged on the bottom crossbeam, each group of folding doors includes a fixed door panel and a movable door panel, and the The outer side of the fixed door panel is hinged to the side column through multiple hinges, and its position is fixed relative to the bottom crossbeam. The outer bottom sliding of the movable door panel is set on the bottom crossbeam and can slide relative to the bottom crossbeam. The opposite sides of the fixed door panel and the movable door panel are hinged through multiple hinges. When the movable door panel slides to the outermost side along the bottom crossbeam, the fixed door panel and the movable door panel fold and overlap; when the two sets of folding doors are closed, two upper and lower locking members are provided at the junction of the movable door panels on both sides, and the locking members can lock the folding doors on both sides to each other.

[0008] Preferably, the first hinge, the second hinge and the third hinge are all hinges.

[0009] Preferably, the locking member is a spring latch.

[0010] Furthermore, to prevent the tubular parts from being damaged during transport, the frame of the box bottom assembly is equipped with anti-skid cushioning pads. These cushioning pads not only reduce vibration but also increase friction between the tubular parts and the edge transport pallet, thereby ensuring stability.

[0011] Preferably, the anti-slip buffer pad is a rubber pad with a thickness of 3 mm.

[0012] Preferably, the sealing plate is made of a honeycomb PP plate. The honeycomb PP plate has a honeycomb structure inside, which can reduce the weight of the carrier while ensuring strength.

[0013] Furthermore, a stacking structure is provided at the four corners of the carrier, and the stacking structure includes stacking columns, stacking corners, stacking caps and stacking horseshoe feet. There are four stacking columns, which are vertically arranged at the four corners of the carrier, and the stacking corners are arranged at the lower ends of the stacking columns, and the stacking corners are fixedly connected to the box bottom assembly, and the lower ends of the stacking columns and the stacking corners are detachably connected by fasteners (for example, screws, bolts, etc.). When the fasteners are in a disassembled state, the stacking columns can be folded toward the inside of the carrier relative to the stacking corners; the stacking caps are arranged at the top of the stacking columns, and the stacking horseshoe feet are arranged at the bottom of the stacking corners, and the bottom of the stacking horseshoe feet is provided with grooves that can accommodate the stacking caps; in the stacking state, the stacking caps of the lower carrier are embedded in the grooves of the stacking horseshoe feet of the upper carrier, thereby realizing positioning between the carriers and ensuring the stability of the stacking.

[0014] Furthermore, in order to facilitate stacking and lifting, a fixed lifting buckle is provided on the inner side of the frame of the box bottom assembly.

[0015] To enhance the stability and support strength of the carrier, a support portion is further provided at the bottom of the frame of the bottom assembly. Preferably, the support portion is composed of a strip plate and short columns. The strip plate forms a U-shaped frame, and the short columns are vertically arranged within the U-shaped frame. The bottom of the strip plate is fixed to the U-shaped frame, and the top is connected to the bottom surface of the frame of the bottom assembly. The support portion increases the contact area with the bottom, making the carrier more stable.

[0016] The beneficial effects of the present invention are as follows: the present invention provides a semiconductor transport metal plastic carrier, (1) which realizes multi-directional adjustment and folding through multi-section hinge connection, reduces manual operation and site occupation, and the line-side transport wooden pallet meets the needs of direct forklift loading and unloading of products, and can be folded and recycled when recycled, reducing the occupied space; (2) the carrier is suitable for the current in-factory storage of semiconductor thermal field accessories, and can meet the needs of off-site transportation with the help of ratchet tensioners; (3) the side components of the carrier can be folded open to meet the needs of single-person operation in the factory, and at the same time, the carrier can be folded inward to reduce recycling costs; (4) the use of an iron frame and a honeycomb PP sealing plate in combination meets the needs of dust-proof transport, and at the same time, effectively reduces the weight of the entire pallet, saves transportation costs, and the carrier accessories can be recycled; (5) the carrier can be simultaneously expanded to other off-factory transport packaging structures of similar tubular parts. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] Figure 1 It is a structural schematic diagram of the semiconductor transport metal plastic carrier of the utility model.

[0019] Figure 2 yes Figure 1Schematic diagram of the structure of the hidden part of the sealing plate of the semiconductor transport metal plastic carrier.

[0020] Figure 3 It is a schematic diagram of the structure of the side panel assembly after the folding door is opened.

[0021] Figure 4 This is a schematic diagram of the structure of tubular parts after packaging (with the sealing plate hidden).

[0022] Figure 5 It is a structural diagram of the carrier transport stacking state.

[0023] Figure 6 This is a schematic diagram of the vehicle being folded and recovered into the box after use.

[0024] Figure 7 This is a schematic diagram of the vehicle recovery and stacking status.

[0025] In the figure: 1. Box bottom assembly, 2. Side panel assembly, 2.1. Bottom crossbeam, 2.2. Folding door, 2.21. Fixed door panel, 2.22. Movable door panel, 2.3. First hinge, 2.4. Second hinge, 2.5. Third hinge, 2.6. Locking part, 3. End plate assembly, 4. Box top assembly, 5. Forklift fork picking space, 6. Frame, 7. Closing plate, 8. Ratchet tensioner, 9. Line-edge transfer wooden pallet, 10. Stacking cap, 11. Stacking horseshoe foot, 12. Stacking column, 13. Stacking cast angle, 14. Anti-slip cushion, 15. Support part, 16. Fixed hook, 17. Tubular parts. DETAILED DESCRIPTION

[0026] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating the basic structure of the present invention only in a schematic manner. They therefore only show components relevant to the present invention, and directions and references (e.g., up, down, left, right, etc.) are intended solely to facilitate the description of features in the drawings. The following detailed description is therefore not to be taken in a limiting sense, and the scope of the claimed subject matter is defined solely by the appended claims and their equivalents.

[0027] like Figure 1As shown, the present invention is a semiconductor transport metal plastic carrier, comprising a bottom assembly 1, with side panel assemblies 2 that can be folded inwards provided on the left and right sides of the bottom assembly 1, and end panel assemblies 3 that can be folded inwards provided on the front and rear ends, and a removable top assembly 4 sealed on the top of the side panel assembly 2 and the end panel assembly 3. The bottom assembly 1, the top assembly 4, the side panel assembly 2, and the end panel assembly 3 are all assembled using a frame 6 and a sealing plate 7. The frame 6 is preferably made of angle steel or profiles. The frame 6 used to connect the bottom crossbeam 2.1 on the bottom assembly 1 is made of angle steel to facilitate the inward folding of the folding door 2.2 and avoid interference at the bottom crossbeam 2.1; the sealing plate 7 is made of a honeycomb PP board. The honeycomb PP board has a honeycomb structure inside, which can reduce the weight of the carrier while ensuring strength.

[0028] like Figure 2 As shown, the box bottom assembly 1 inside the carrier is provided with a wire-edge transfer wooden pallet 9 for placing tubular parts 17, and a forklift picking space 5 is left between the bottom of the wire-edge transfer wooden pallet 9 and the box bottom assembly 1; the box bottom assembly 1 is also provided with at least two ratchet tensioners 8, which can fix the tubular part 17 and the wire-edge transfer wooden pallet 9 on the box bottom assembly 1 along the axial direction.

[0029] like Figure 2 and Figure 3As shown, the side panel assembly 2 includes a bottom crossbeam 2.1, a side column, two left and right groups of folding doors 2.2, a first hinge 2.3, a second hinge 2.4, a third hinge 2.5 and a locking member 2.6. The side columns are two, which are vertically arranged at the left and right ends of the bottom crossbeam 2.1 and fixedly connected to the bottom crossbeam 2.1; the bottom crossbeam 2.1 is made of a square tube, and the bottom crossbeam 2.1 is hinged to the outer edge of the box bottom assembly 1 through a plurality of first hinges 2.3; the two groups of folding doors 2.2 are arranged on the bottom crossbeam 2.1, and each group of folding doors 2.2 includes a fixed door panel 2.21 and a movable door panel 2.22. The outer side of the fixed door panel 2.21 is hinged to the side column through a plurality of hinges, and its position is fixed relative to the bottom crossbeam 2.1. The outer bottom of the movable door panel 2.22 is slidingly arranged on the bottom crossbeam 2.1 and can slide relative to the bottom crossbeam 2.1. The fixed door panel 2.21 and the movable door panel 2.22 are hinged on the opposite side by multiple hinges. When the movable door panel 2.22 slides to the outermost side along the bottom crossbeam 2.1, the fixed door panel 2.21 and the movable door panel 2.22 are folded and overlapped; when the two sets of folding doors 2.2 are closed, two upper and lower locking members 2.6 are provided at the junction of the movable door panels 2.22 on both sides, and the locking members 2.6 can lock the folding doors 2.2 on both sides to each other; multiple locking members (not shown in the figure) are also provided between the bottom of the folding door 2.2 and the bottom crossbeam 2.1 to lock the folding door 2.2 to the bottom crossbeam 2.1 to prevent it from folding inward. Preferably, the first hinge 2.3, the second hinge 2.4, and the third hinge 2.5 are all hinges, and the first hinge 2.3 and the third hinge 2.5 are arranged on the outside of the side panel assembly 2, and the second hinge 2.4 (shown by the dotted line in the figure) is arranged on the inside of the fixed door panel 2.21 and the movable door panel 2.22. Preferably, the locking member 2.6 is a spring latch. In order to prevent the tubular parts 17 from being damaged in appearance during transportation, the frame 6 of the bottom assembly 1 is provided with an anti-slip cushioning pad 14. On the one hand, the anti-slip cushioning pad 14 can play a role in vibration reduction and buffering, and on the other hand, it can also increase the friction between the tubular parts 17 and the edge transfer wooden pallet 9, thereby ensuring stability. Preferably, the anti-slip cushioning pad 14 is a rubber pad with a thickness of 3 mm.

[0030] like Figure 2As shown, stacking structures are further provided at the four corners of the carrier, and the stacking structures include stacking columns 12, stacking corners 13, stacking caps 10 and stacking horseshoe feet 11. There are four stacking columns 12, which are vertically arranged at the four corners of the carrier. The stacking corners 13 are arranged at the lower ends of the stacking columns 12, and the stacking corners 13 are fixedly connected to the box bottom assembly 1. The lower ends of the stacking columns 12 and the stacking corners 13 are detachably connected by fasteners (for example, screws, bolts, etc.). When the fasteners are in the disassembled state, the stacking columns 12 can be folded toward the inside of the carrier relative to the stacking corners 13; the stacking caps 10 are set on the top of the stacking columns 12, and the stacking horseshoe feet 11 are set at the bottom of the stacking corners 13, and the bottom of the stacking horseshoe feet 11 is provided with a groove that can accommodate the stacking caps 10; in the stacking state, the stacking caps 10 of the lower carrier are embedded in the grooves of the stacking horseshoe feet 11 of the upper carrier, thereby achieving positioning between the carriers and ensuring the stability of the stack. In order to facilitate stacking and lifting, a fixed hanging buckle 16 is provided on the inner side of the frame 6 of the box bottom assembly 1. The bottom of the frame 6 of the box bottom assembly 1 is also provided with a support portion 15. Preferably, the support portion 15 is composed of a strip plate and short columns. The strip plate is a U-shaped frame. The short columns are vertically arranged in the U-shaped frame, and the bottom is fixed to the U-shaped frame. The top is connected to the bottom surface of the frame 6 of the box bottom assembly 1. The support portion 15 increases the contact area with the bottom, making the carrier more stable.

[0031] How it works:

[0032] like Figure 4 and Figure 5 As shown, during storage and transportation, the folding doors 2.2 are first folded open to the left and right. Then, the tubular parts 17 are placed on the line transfer wooden pallet 9. The line transfer wooden pallet 9 is placed into the carrier by a forklift. The folding doors 2.2 of the side panel assembly 2 are then closed and locked with the locking members 2.6. The carriers loaded with parts are then stacked using a lifting mechanism, facilitating transportation and storage while reducing space usage.

[0033] like Figure 6 and Figure 7 As shown, when recycling, the connecting pieces between the side columns and the stacking columns 12 are removed, and then the side panel assembly 2 is folded inwardly onto the box bottom assembly 1. Then, the box top assembly 4 is placed on top of the side panel assembly 2, and then the fasteners between the stacking columns 12 and the stacking angles 13 are removed, so that the end plate assembly 3 can be folded inwardly and pressed onto the box top assembly 4. Then, the lifting mechanism is used to stack the folded carrier into a stack. Figure 7 When it needs to be used again, it can be opened in reverse and fixed to be recycled.

[0034] Based on the above-mentioned ideal embodiment of the present invention, and in accordance with the above description, relevant personnel can make various changes and modifications without departing from the scope of the present invention. The technical scope of this utility model is not limited to the content of the specification, and its technical scope must be determined according to the scope of the claims.

Claims

1. A semiconductor transport metal plastic carrier, characterized by: The box bottom assembly comprises a box bottom assembly, the left and right sides of which are provided with inwardly foldable side panel assemblies, the front and rear ends of which are provided with inwardly foldable end panel assemblies, and the tops of the side panel assemblies and the end panel assemblies are sealed with a detachable box top assembly, and the box bottom assembly, box top assembly, side panel assemblies and end panel assemblies are all assembled by using a frame and a sealing plate; A line-side transfer wooden pallet for placing tubular parts is provided on the bottom assembly of the box inside the carrier, and a forklift pick-up space is left between the bottom of the line-side transfer wooden pallet and the bottom assembly; The box bottom assembly is also provided with at least two ratchet tensioners, which can fix the tubular part and the line-edge transfer wooden pallet to the box bottom assembly along the axial direction.

2. The semiconductor transport metal-plastic carrier according to claim 1, characterized in that: The side panel assembly includes a bottom crossbeam, a side column, two left and right folding doors, a first hinge, a second hinge, a third hinge and a locking member, and the side columns are two, which are vertically arranged at the left and right ends of the bottom crossbeam and fixedly connected to the bottom crossbeam; the bottom crossbeam is hinged on the outer edge of the box bottom assembly through multiple first hinges; the two groups of folding doors are arranged on the bottom crossbeam, and each group of folding doors includes a fixed door panel and a movable door panel, the outer side of the fixed door panel is hinged on the side columns through multiple hinges, and its position is fixed relative to the bottom crossbeam, and the outer bottom of the movable door panel is slidingly arranged on the bottom crossbeam and can slide relative to the bottom crossbeam, and the opposite side of the fixed door panel and the movable door panel is hinged by multiple hinges, and when the movable door panel slides to the outermost side along the bottom crossbeam, the fixed door panel and the movable door panel fold and overlap; when the two groups of folding doors are closed, the junction of the movable door panels on both sides is provided with two upper and lower locking members, and the locking members can lock the folding doors on both sides to each other.

3. The semiconductor transport metal-plastic carrier according to claim 2, characterized in that: The first hinge, the second hinge and the third hinge are all hinges.

4. The semiconductor transport metal-plastic carrier according to claim 2, wherein: The locking element adopts a spring latch.

5. The semiconductor transport metal-plastic carrier according to claim 1, wherein: The frames of the box bottom components are all provided with anti-skid buffer pads.

6. The semiconductor transport metal-plastic carrier according to claim 5, characterized in that: The anti-slip buffer pad is a rubber pad with a thickness of 3 mm.

7. The semiconductor transport metal-plastic carrier according to claim 1, wherein: The sealing plate is made of honeycomb PP plate.

8. The semiconductor transport metal-plastic carrier according to claim 1, wherein: The four corners of the carrier are also provided with a stacking structure, and the stacking structure includes stacking columns, stacking corners, stacking caps and stacking horseshoe feet. There are four stacking columns, which are vertically arranged at the four corners of the carrier. The stacking corners are arranged at the lower ends of the stacking columns, and the stacking corners are fixedly connected to the box bottom assembly. The lower ends of the stacking columns and the stacking corners are detachably connected by fasteners. When the fasteners are in a disassembled state, the stacking columns can be folded toward the inside of the carrier relative to the stacking corners; the stacking caps are arranged at the top of the stacking columns, and the stacking horseshoe feet are arranged at the bottom of the stacking corners, and the bottom of the stacking horseshoe feet is provided with grooves that can accommodate the stacking caps; in the stacking state, the stacking caps of the lower carrier are embedded in the grooves of the stacking horseshoe feet of the upper carrier.

9. The semiconductor transport metal-plastic carrier according to claim 1, wherein: A fixing buckle is provided on the inner side of the frame of the box bottom assembly.

10. The semiconductor transport metal-plastic carrier according to claim 1, wherein: The bottom of the frame of the box bottom assembly is also provided with a support portion.