Vehicle-mounted 3D glass packaging and transferring equipment and working method thereof

By designing a combined structure of transfer cover and transfer box, along with protective sponge and pin locking system, the problems of incomplete protection and inconvenient access to vehicle-mounted 3D glass during transportation were solved, achieving stable and efficient glass transfer.

CN115973255BActive Publication Date: 2025-11-11凯盛科技股份有限公司
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Patent Information

Application Number
CN202211698255.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-28
Publication Date
2025-11-11
Estimated Expiration
2042-12-28

AI Technical Summary

Technical Problem

Existing vehicle-mounted 3D glass packaging and transfer devices do not provide thorough protection during transportation, which can easily damage the glass surface. They are also inconvenient to use, require additional tools, and involve complicated procedures.

Method used

A packaging transfer device including a transfer top cover and a transfer box was designed. The transfer box is embedded with protective sponge and is stably stacked and fixed by connecting bolts and pins. It is equipped with a handle for easy movement and a side door for easy access.

Benefits of technology

It effectively protects the 3D glass in vehicles from damage during transportation, has high stability, is easy to operate, reduces the risk of glass damage, and improves transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a kind of vehicle 3D glass packaging transfer equipment and its working method, including transport cart, and a plurality of transfer assemblies for packaging and transferring vehicle 3D glass are provided side by side on transport cart, and the transfer assembly includes transfer top cover and transfer box, the two sides of transfer top cover are rotatably connected with transfer side plate, and the two sides of transfer box close to transfer side plate are provided with a plurality of connecting clamping slots, and the side wall of transfer side plate close to transfer box is provided with a plurality of connecting clamping bolts, the upper side of transfer box is fixedly connected with butt plug at four corners, and the two ends of transfer top cover and transfer box are embedded with first plug for fixing butt plug, and the first plug is fixed butt plug, keep the close connection between transfer top cover and transfer box, each transfer box is fixed by transfer side plate, protect each vehicle 3D glass from being damaged, so that multiple transfer boxes form a whole, it is convenient to transfer.
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Description

Technical Field

[0001] This invention relates to the field of automotive parts logistics packaging technology, specifically to an on-board 3D glass packaging and transfer device and its working method. Background Technology

[0002] As competition in the automotive market intensifies, automakers are constantly upgrading their vehicle configurations, with widths expected to reach over 1500mm, requiring high precision in manufacturing processes.

[0003] Patent document CN107161483B discloses a packaging and transfer device for a panoramic sunroof of an automobile. The main structure of the device is a frame structure, with left and right support and limiting mechanisms and upper and lower limiting mechanisms respectively set on the left and right sides of the frame structure, and front and rear limiting mechanisms set at the front and rear ends of the frame structure. The front end of the frame structure is provided with a movable door to facilitate loading the sunroof. The beneficial effects of the above patent are that it can be reused and recycled throughout the sunroof supply chain. Compared with disposable packaging at the factory, the cost per unit is reduced by 25.78% compared with the cost of cardboard boxes. At the same time, there is no sorting action in the process, which improves the quality of parts and further reduces costs. The structure is relatively simple and easy to operate. The internal frame adopts an automatic flipping structure to meet the requirements of robotic arms for picking up parts and improve the efficiency of personnel operation. The outer panel is made of PU dustproof and rainproof cloth for dust and rain protection, making it safe and convenient to use.

[0004] The above-mentioned device has the following shortcomings: When in use, the device supports the vehicle-mounted 3D glass through a frame structure, which does not provide thorough protection for the vehicle-mounted 3D glass. During transportation, floating particles can easily damage the surface of the vehicle-mounted 3D glass. Furthermore, when handling the vehicle-mounted 3D glass, the device can also easily damage the surface of the vehicle-mounted 3D glass. In addition, the device is not convenient to handle the vehicle-mounted 3D glass, requiring the use of other tools, which is a rather cumbersome process. Summary of the Invention

[0005] The purpose of this invention is to address the aforementioned problems and shortcomings by providing a vehicle-mounted 3D glass packaging and transfer device and its operating method, thereby improving overall work efficiency.

[0006] The technical problem solved by this invention is:

[0007] (1) When the above device is used, it supports the vehicle 3D glass through the frame structure, which does not provide thorough protection for the vehicle 3D glass. During transportation, floating particles may easily cause damage to the surface of the vehicle 3D glass. Furthermore, when the vehicle 3D glass is handled, the above device may also cause damage to the surface of the vehicle 3D glass.

[0008] (2) The above device is not convenient to use when taking out the vehicle 3D glass. Other tools are required to take it out, and the steps are relatively complicated.

[0009] The objective of this invention can be achieved through the following technical solution: a vehicle-mounted 3D glass packaging and transfer device, comprising a transport trolley, on which several transfer components for packaging and transferring vehicle-mounted 3D glass are arranged side by side, the transfer components comprising a transfer top cover and a transfer box, both sides of the transfer top cover being rotatably connected to transfer side plates, both sides of the transfer box near the transfer side plates being provided with several connecting slots, and several connecting bolts passing through the side wall of the transfer side plate near the transfer box, the connecting bolts being rotatably connected to the transfer side plate, and four docking pins being fixedly connected to the four corners of the upper side of the transfer box, and first pins for fixing the docking pins being embedded inside the transfer top cover and both ends of the transfer box.

[0010] As a further embodiment of the invention, the transfer cover and the transfer box are both adapted to the vehicle 3D glass and are elongated in shape. Several transfer boxes are provided, and several transfer boxes are stacked side by side on the underside of the transfer cover. Several connecting slots are provided and are evenly distributed at equal intervals. Several connecting bolts are evenly distributed in a rectangular array, and the connecting bolts and connecting slots are engaged one-to-one.

[0011] As a further embodiment of the invention, a mounting groove is provided in the middle of the upper surface of the transfer box, and a protective sponge is fixedly filled in the mounting groove. A holding groove for holding the vehicle 3D glass is provided in the middle of the protective sponge, and several equally spaced and evenly distributed grooves are provided on the protective sponge at the edge of the holding groove.

[0012] As a further aspect of the invention, each end of the transfer box has a mating slot that is fitted and connected to the mating pin, and two mating slots are arranged side by side in each end of the transfer box.

[0013] As a further aspect of the invention, a limiting groove for installing the first pin is provided between each pair of docking slots and on the end face of the transfer box. The two limiting grooves on each side of the transfer box are centrally symmetrically arranged, and each pair of first pins are centrally symmetrically arranged under the limiting groove. The first pin is installed in the limiting groove through a limiting bracket, and the first pin is slidably connected to the limiting groove.

[0014] As a further aspect of the invention, each side of the transfer box is fixedly connected with a limiting block that limits the first pin, the limiting groove passes through the docking slot, and the first pin passes through the corresponding docking pin.

[0015] As a further aspect of the invention, the top outer surface of the transfer cover is provided with several symmetrical mounting slots, and each mounting slot is rotatably connected to a handle.

[0016] As a further aspect of the invention, two side doors are installed on one side of the transport trolley, and the two side doors are fixed to each other by a second latch.

[0017] A method for operating a vehicle-mounted 3D glass packaging transfer device includes the following steps:

[0018] Step 1: The 3D glass in the vehicle is placed in several transfer boxes, the 3D glass is restrained by the holding slots, and the 3D glass is protected by protective foam.

[0019] Step 2: Stack the transport boxes containing the vehicle 3D glass into several vertical columns and place them under the transport cover. Insert the docking pins into the docking slots accordingly, and then push the first pin to fix the docking pins.

[0020] Step 3: Then rotate the transport side panel to connect the connecting bolts to the corresponding connecting slots, and rotate the connecting bolts. Through the corresponding engagement of the connecting bolts and connecting slots, the transport side panel fixes each transport box. The handle makes it easy for users to move the entire transport assembly containing the vehicle 3D glass.

[0021] The beneficial effects of this invention are:

[0022] (1) When multiple automotive 3D glass needs to be packaged and transported, the automotive 3D glass is placed in several transport boxes. Then, the transport boxes containing the automotive 3D glass are stacked into several vertical columns and placed under the transport top cover. When stacking, the stacked transport boxes are kept tightly connected and aligned by the docking pins. Then, the docking pins are fixed by the first pin to keep the transport top cover and the transport boxes and the adjacent transport boxes tightly connected. Then, the transport side plate is rotated to connect the connecting bolts to the corresponding connecting slots. The connecting bolts are rotated and the corresponding engagement of the connecting bolts and the connecting slots is achieved by fixing each transport box through the transport side plate. This not only further stabilizes each automotive 3D glass and protects each automotive 3D glass from damage, but also makes multiple transport boxes form a whole, which is convenient for transport.

[0023] (2) The 3D glass in the vehicle is limited by the holding slot, and the 3D glass in the vehicle is protected by the protective sponge. The elasticity of the protective sponge is used to limit the 3D glass in the vehicle, so as to keep the 3D glass in the vehicle stable and avoid shaking. The groove makes it convenient for users to take out the 3D glass in the vehicle. When several transfer boxes containing 3D glass in the vehicle are stacked together, the docking pin is inserted into the docking slot. Then the first pin is pushed so that the first pin passes through the corresponding docking pin, thereby completing the fixation of the first pin and the docking pin. Then the first pin is limited by the limiting block near the docking pin, so as to keep the first pin firmly fixed to the docking pin, thereby keeping the transfer top cover and several transfer boxes stably stacked and assembled. The handle makes it convenient for users to move the entire transfer component containing 3D glass in the vehicle. The two side doors are fixed to each other by the second pin, so as to make it convenient for users to take out the transfer component from the transport cart. Attached Figure Description

[0024] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings.

[0025] Figure 1 This is a top view of the overall structure of the present invention;

[0026] Figure 2 This is a side view of the overall structure of the transfer component of the present invention;

[0027] Figure 3 This is a three-dimensional view of the overall structure of the transfer box of the present invention;

[0028] Figure 4 for Figure 3 Enlarged view of region A in the middle;

[0029] Figure 5 This is a side view of the internal structure of the end face of the transfer box of the present invention;

[0030] In the diagram: 1. Transport trolley; 2. Transfer assembly; 3. Transfer top cover; 4. Transfer side panel; 5. Transfer box; 6. First pin; 7. Connecting bolt; 8. Connecting slot; 9. Docking pin; 10. Mounting slot; 11. Protective sponge; 12. Container slot; 13. Groove; 14. Limiting slide; 15. Limiting bracket; 16. Limiting block; 17. Docking slot; 18. Mounting groove; 19. Handle; 20. Side door; 21. Second pin. Detailed Implementation

[0031] To further illustrate the technical means and effects of the present invention in achieving its intended purpose, the following detailed description of the specific implementation methods, structures, features, and effects of the present invention, in conjunction with the accompanying drawings and preferred embodiments, is provided below.

[0032] Please see Figure 1-5 As shown: A vehicle-mounted 3D glass packaging and transfer device includes a transport trolley 1. Several transfer components 2 for packaging and transferring vehicle-mounted 3D glass are arranged side-by-side on the transport trolley 1. Each transfer component 2 includes a transfer top cover 3 and transfer boxes 5. Several transfer boxes 5 are arranged side-by-side and stacked under the transfer top cover 3. Transfer side plates 4 are rotatably connected to both sides of the transfer top cover 3. Several connecting slots 8 are provided on both sides of each transfer box 5 near the transfer side plates 4. The connecting slots 8 are numerous and evenly distributed at equal intervals. Several connecting bolts 7 are installed on the side wall of the transport side plate 4 near the transport box 5. The connecting bolts 7 are evenly distributed in a rectangular array, and the connecting bolts 7 and the connecting slots 8 are engaged one-to-one. The connecting bolts 7 are rotatably connected to the transport side plate 4. The four corners of the upper side of the transport box 5 are fixedly connected with docking pins 9 for docking between the transport boxes 5. The transport top cover 3 and the transport box 5 are both adapted to the vehicle 3D glass and are slender. The two ends of the transport top cover 3 and the transport box 5 are both embedded with first pins 6 for fixing the docking pins 9.

[0033] In this embodiment, when multiple automotive 3D glass units need to be packaged and transported, several transport boxes 5 are used to hold the automotive 3D glass units. Then, the transport boxes 5 containing the automotive 3D glass units are stacked into several vertical columns and placed under the transport top cover 3. During stacking, the connecting pins 9 are used to keep the stacked transport boxes 5 tightly connected and aligned. Then, the connecting pins 9 are fixed by the first pin 6 to keep the transport top cover 3 and the transport boxes 5, as well as the adjacent transport boxes 5, tightly connected. Then, the transport side plate 4 is rotated to connect the connecting bolts 7 to the corresponding connecting slots 8. The connecting bolts 7 are rotated, and the corresponding engagement between the connecting bolts 7 and the connecting slots 8 is achieved by the transport side plate 4 to fix each transport box 5. This not only further stabilizes each automotive 3D glass unit and protects it from damage, but also allows multiple transport boxes 5 to form a whole, facilitating transport.

[0034] The upper surface of the transfer box 5 has a mounting groove 10 in the middle, and a protective sponge 11 is fixedly filled in the mounting groove 10. The protective sponge 11 has a holding groove 12 in the middle for holding the vehicle 3D glass. Several equally spaced and evenly distributed grooves 13 are formed on the protective sponge 11 at the edge of the holding groove 12. In use, the holding groove 12 limits the vehicle 3D glass, the protective sponge 11 protects the vehicle 3D glass, and the elasticity of the protective sponge 11 limits the vehicle 3D glass to keep it stable and prevent shaking. The grooves 13 make it convenient for the user to take out the vehicle 3D glass.

[0035] Each end of the transfer box 5 has a docking slot 17 that is fitted and connected to the docking pin 9. There are two docking slots 17 arranged side by side in each end of the transfer box 5. Between each pair of docking slots 17 and on the end face of the transfer box 5, there is a limiting groove 14 for installing the first pin 6. The two limiting grooves 14 on the side of each end of the transfer box 5 are centrally symmetrically arranged, and each pair of first pins 6 are centrally symmetrically arranged under the limiting groove 14. The first pin 6 is installed in the limiting groove 14 through the limiting bracket 15, and the first pin 6 is slidably connected to the limiting groove 14. Each side of each end of the transfer box 5 is fixedly connected with a limiting block 16 for limiting the first pin 6. The limiting groove 14 passes through the docking slot 17, and the first pin 6 passes through the corresponding docking pin 9.

[0036] During operation, when several transport boxes 5 containing automotive 3D glass are stacked together, the docking pins 9 are inserted into the docking slots 17 accordingly. Then, the first pin 6 is pushed so that it passes through the corresponding docking pin 9, thereby completing the fixation of the first pin 6 and the docking pin 9. Subsequently, the first pin 6 is limited by the limiting block 16 near the docking pin 9 to keep the first pin 6 firmly fixed to the docking pin 9, thereby maintaining the stable stacking and assembly of the transport top cover 3 and several transport boxes 5.

[0037] The top outer surface of the transfer cover 3 has several symmetrical mounting slots 18, and each mounting slot 18 is rotatably connected to a handle 19, which allows the user to move the entire transfer assembly 2 containing the vehicle 3D glass.

[0038] Two side doors 20 are installed on one side of the transport trolley 1. The two side doors 20 are fixed to each other by a second latch 21, so that the user can easily take the transfer component 2 from the transport trolley 1.

[0039] A method for operating a vehicle-mounted 3D glass packaging and transfer device includes the following steps:

[0040] Step 1: The vehicle 3D glass is placed in several transfer boxes 5, the vehicle 3D glass is limited by the holding slot 12, the vehicle 3D glass is protected by the protective sponge 11, and the elasticity of the protective sponge 11 limits the vehicle 3D glass to maintain its stability. The groove 13 makes it convenient for users to take out the placed vehicle 3D glass.

[0041] Step 2: Then, stack the transport boxes 5 containing the vehicle 3D glass into several vertical columns and place them under the transport top cover 3. When stacking, the transport boxes 5 stacked together are kept tightly connected and aligned by the docking pins 9. The docking pins 9 are inserted into the docking slots 17 accordingly. Then, push the first pin 6 to fix the docking pin 9. Then, the first pin 6 is limited by the limiting block 16 near the docking pin 9 to keep the first pin 6 firmly fixed to the docking pin 9, thereby maintaining the stable stacking and assembly of the transport top cover 3 and several transport boxes 5.

[0042] Step 3: Then rotate the transfer side plate 4 to connect the connecting bolts 7 to the corresponding connecting slots 8, and rotate the connecting bolts 7. Through the corresponding engagement of the connecting bolts 7 and the connecting slots 8, the transfer side plate 4 fixes each transfer box 5. This not only further stabilizes each vehicle 3D glass and protects it from damage, but also makes multiple transfer boxes 5 form a whole for easy transfer. The handle 19 makes it easy for users to move the entire transfer component 2 containing the vehicle 3D glass, and to take the transfer component 2 from the transport trolley 1 and transport the transfer component 2 to each workstation.

[0043] When using this invention, if workers need to package and transport multiple automotive 3D glass units, they use several transport boxes 5 to hold the automotive 3D glass units. Then, the transport boxes 5 containing the automotive 3D glass units are stacked into several vertical columns and placed under the transport top cover 3. During stacking, the connecting pins 9 keep the stacked transport boxes 5 tightly connected and aligned. Then, the connecting pins 9 are fixed by the first pin 6 to maintain a tight connection between the transport top cover 3 and the transport boxes 5, as well as between adjacent transport boxes 5. Then, the transport side plate 4 is rotated to connect the connecting bolts 7 to the corresponding connecting slots 8. By rotating the connecting bolts 7 and the corresponding engagement of the connecting bolts 7 and the connecting slots 8, the transport side plate 4 fixes each transport box 5. This not only further stabilizes each automotive 3D glass unit and protects it from damage, but also allows multiple transport boxes 5 to form a whole, facilitating transport.

[0044] The 3D glass is positioned by the holding slot 12 and protected by the protective sponge 11. The elasticity of the protective sponge 11 helps to stabilize the 3D glass and prevent it from shaking. The groove 13 facilitates the user's access to the 3D glass. When several transfer boxes 5 containing 3D glass are stacked together, the docking pins 9 are inserted into the docking slots 17, and then the first pin 6 is pushed to pass through the corresponding docking slot. The first pin 6 and the docking pin 9 are fixed together by the connecting pin 9. Then, the first pin 6 is limited by the limiting block 16 near the docking pin 9 to keep the first pin 6 firmly fixed to the docking pin 9, thereby maintaining the stable stacking and assembly of the transfer top cover 3 and several transfer boxes 5. The handle 19 makes it convenient for the user to move the entire transfer component 2 containing the vehicle 3D glass. The two side doors 20 are fixed to each other by the second pin 21, so that the user can easily take the transfer component 2 from the transport cart 1.

[0045] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present invention. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.

Claims

1. A vehicle-mounted 3D glass packaging and transfer device, comprising a transport trolley (1), characterized in that, The transport trolley (1) is provided with several transport components (2) for packaging and transporting vehicle-mounted 3D glass. The transport components (2) include a transport top cover (3) and a transport box (5). Both sides of the transport top cover (3) are rotatably connected to transport side plates (4). Both sides of the transport box (5) near the transport side plates (4) are provided with several connecting slots (8). Several connecting bolts (7) are provided on the side wall of the transport side plate (4) near the transport box (5). The connecting bolts (7) are rotatably connected to the transport side plate (4). The four corners of the upper side of the transport box (5) are fixedly connected with docking pins (9). The transport top cover (3) and both ends of the transport box (5) are embedded with first pins (6) for fixing docking pins (9). The transfer top cover (3) and the transfer box (5) are both adapted to the vehicle 3D glass and are slender. There are several transfer boxes (5), and several transfer boxes (5) are stacked side by side on the lower side of the transfer top cover (3). There are several connecting slots (8) and they are evenly distributed at equal intervals. Several connecting bolts (7) are evenly distributed in a rectangular array, and the connecting bolts (7) and the connecting slots (8) are connected one by one. The upper surface of the transfer box (5) is provided with an installation groove (10), and a protective sponge (11) is fixedly filled in the installation groove (10). A holding groove (12) for holding vehicle 3D glass is provided in the middle of the protective sponge (11). Several equally spaced and evenly distributed grooves (13) are provided on the protective sponge (11) at the edge of the holding groove (12). Each end of the transfer box (5) is provided with a docking slot (17) that is fitted and connected to the docking pin (9). There are two docking slots (17) arranged side by side in each end of the transfer box (5). Between each pair of docking slots (17) and on the end face of the transfer box (5), a limiting groove (14) for installing the first pin (6) is provided. The two limiting grooves (14) on each side of the transfer box (5) are centrally symmetrically arranged, and each pair of first pins (6) are centrally symmetrically arranged under the limiting groove (14). The first pin (6) is installed in the limiting groove (14) through the limiting bracket (15), and the first pin (6) is slidably connected to the limiting groove (14). Each side of the transfer box (5) is fixedly connected with a limiting block (16) to limit the first pin (6), the limiting groove (14) passes through the docking slot (17), and the first pin (6) passes through the corresponding docking pin (9). The working method of the vehicle-mounted 3D glass packaging and transfer equipment includes the following steps: Step 1: The vehicle 3D glass is placed in several transfer boxes (5), the vehicle 3D glass is limited by the holding slot (12), and the vehicle 3D glass is protected by the protective sponge (11). Step 2: Stack the transport box (5) containing the vehicle 3D glass into several vertical columns and place it under the transport top cover (3). Insert the docking pin (9) into the docking slot (17) accordingly, and then push the first pin (6) to fix the docking pin (9) through the first pin (6). Step 3: Then rotate the transfer side plate (4) to connect the connecting bolts (7) to the corresponding connecting slots (8) and rotate the connecting bolts (7). By connecting the connecting bolts (7) and the corresponding slots (8), the transfer side plate (4) can fix the transfer boxes (5). The handle (19) makes it convenient for the user to move the entire transfer assembly (2) containing the vehicle 3D glass.

2. The vehicle-mounted 3D glass packaging and transfer equipment according to claim 1, characterized in that, The top outer surface of the transfer cover (3) is provided with several symmetrical mounting slots (18), and each mounting slot (18) is rotatably connected to a handle (19).

3. The vehicle-mounted 3D glass packaging and transfer equipment according to claim 1, characterized in that, The transport trolley (1) has two side doors (20) installed on one side, and the two side doors (20) are fixed to each other by a second pin (21).

Citation Information

Patent Citations

  • A packaging and transfer device for a panoramic sunroof of a car

    CN107161483B

  • Transfer device for buffer piston rod

    CN217347867U