Glass clamping structure and laminated glass transfer equipment with same

By designing a glass clamping structure including mounting beams, end connection mechanisms and limiting mechanisms, the problems of insufficient restraint of existing material frames and fixed partitions are solved, stable separation of adjacent laminated glass and the applicability of glass of various specifications are achieved, and the safety and production efficiency of glass transport are improved.

CN222892704UActive Publication Date: 2025-05-23XINYI GLASS (MAANSHAN) CO LTD
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Patent Information

Application Number
CN202520643742.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-05-23
Estimated Expiration
2035-04-08

AI Technical Summary

Technical Problem

The existing laminated glass frit racks are insufficiently bound, which leads to the laminated glass easily shaking during the transport process, causing adjacent laminated glass or laminated glass to collide with the components and damage. At the same time, the partitions of the existing material racks are fixed and cannot be adapted to various types of laminated glass.

Method used

A glass clamping structure is designed, including mounting beams, end connection mechanisms and limit mechanisms. The mounting beam is equipped with a mounting rod and a partition plate. The partition plate and spacer sleeve on the mounting rod are separated and limited to ensure that the glass is stable and fixed during transportation.

Benefits of technology

Through the use of multiple partitions, the separation of adjacent laminated glass is achieved, avoiding collision and damage between glasses. At the same time, through the setting of the end connection mechanism, the scope of application of the glass clamping structure is improved, making it easier to clamp and transport glass of different specifications.

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Abstract

The utility model relates to the field of glass production equipment, in particular to a glass clamping structure and laminated glass transfer equipment with the glass clamping structure, which comprises a mounting cross beam, and a limiting mechanism for limiting glass is further arranged on the mounting cross beam; the limiting mechanism comprises a hanging rod arranged on the mounting cross beam; the hanging rod is sleeved with a plurality of partition plates; the two ends of the hanging rod are respectively connected with the side surface of the mounting cross beam through an end connecting plate; according to the glass clamping structure disclosed by the utility model, the adjacent laminated glass can be separated through the use of the plurality of separation plates, so that the glass can be prevented from being scratched by mutual collision in the transportation process through the operation mode, and organic gas generated by the glass due to high temperature and high pressure can be conveniently discharged when the glass enters a high-pressure kettle for processing subsequently.
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Description

Technical Field

[0001] The utility model relates to the field of glass production equipment, in particular to a glass clamping structure and laminated glass transfer equipment with the glass clamping structure. Background Art

[0002] The production process of laminated glass generally includes several major processes such as glass cutting, lamination and high-pressure forming.

[0003] High pressure forming is a key step, which is usually carried out in an autoclave after the laminated glass is placed on a rack.

[0004] At present, most of the racks for placing laminated glass have relatively single functions and are insufficient in restraining the laminated glass. In addition, there are no partitions between adjacent glasses. During transportation, the laminated glass is prone to shaking, resulting in damage to adjacent laminated glasses or laminated glass and adjacent components colliding with each other.

[0005] Meanwhile, although some racks have partitions, the positions of the partitions are relatively limited and cannot be adapted to various types of laminated glass, resulting in a wide variety of racks.

[0006] The existing patent 201020206130.8 provides a double-layer rack in a laminated glass autoclave, disclosing a double-layer rack with key pin holes and adjustable upper and lower layers; however, when placing the upper layer of glass on the rack, it can only be placed on the rack. Since the upper layer is higher, it is difficult to place the glass on the rack and it is inconvenient to use.

[0007] Therefore, in order to improve or solve at least one of the above problems, it is necessary to optimize the design of the existing rack structure. Utility Model Content

[0008] The utility model aims to provide a glass clamping structure which can be applied to a laminated glass transfer device and can realize the separation and limiting of adjacent laminated glasses on the transfer device.

[0009] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0010] The glass clamping structure comprises a mounting crossbeam, and an end connection mechanism for fixing the glass clamping structure is provided at the end of the mounting crossbeam;

[0011] The mounting crossbeam is also provided with a limiting mechanism for limiting the position of the glass;

[0012] The end connection mechanism comprises a hook joint arranged at the end of the mounting crossbeam; a fastener is arranged on the hook joint;

[0013] The limiting mechanism comprises a hanging rod arranged on the mounting crossbeam; a plurality of partition plates are sleeved on the hanging rod;

[0014] The two ends of the hanging rod are respectively connected to the side surface of the installation beam through an end connecting plate.

[0015] Each of the partition plates is provided with a limiting groove for limiting position.

[0016] Each of the partition plates can move on the hanging rod along the axial direction of the hanging rod; a plurality of spacer rings are also arranged on the hanging rod; and a spacer ring is arranged between adjacent partition plates.

[0017] The spacer ring is connected to the hanging rod through a threaded portion. The hanging rod is provided with an external thread, and the spacer ring is provided with an internal thread. The spacer ring can move along the axial direction of the hanging rod.

[0018] The hanging rod is plugged into the end connecting plate, and the end connecting plate is provided with a through hole; the hanging rod is connected to the end connecting plate through a thread.

[0019] Each of the partition plates is provided with a protective cover.

[0020] A laminated glass transfer device comprises a trolley body, on which the glass clamping structure is arranged; the trolley body comprises a basic frame, on which a longitudinal frame is arranged;

[0021] At least two glass clamping structures are arranged on the longitudinal frame at intervals;

[0022] The basic frame is provided with a roller structure on one side away from the longitudinal frame.

[0023] The longitudinal frame is located in the middle of the base frame; glass clamping structures are arranged on opposite sides of the longitudinal frame; and at least two glass clamping structures are arranged at intervals on each side of the longitudinal frame.

[0024] The longitudinal frame comprises a basic frame, on which a plurality of sleeve columns are arranged; the end connection mechanism in the glass clamping structure is connected to the sleeve columns.

[0025] Each of the sleeve columns is provided with a plurality of limiting holes; the fasteners in the end connection mechanism are inserted into the limiting holes.

[0026] The advantages of the utility model are:

[0027] The utility model discloses a glass clamping structure and laminated glass transfer equipment with the glass clamping structure.

[0028] The glass clamping structure disclosed by the utility model can separate adjacent laminated glasses by using a plurality of partition plates. Such an operation mode can not only prevent the glasses from colliding with each other and scratching the glasses during transportation, but also facilitate the discharge of organic gases generated by the glass due to high temperature and high pressure when it enters the autoclave for subsequent processing.

[0029] At the same time, the utility model can change the longitudinal height of the glass clamping structure on the trolley body through the arrangement of the end connection mechanism, thereby improving the application scope of the utility model to a certain extent.

[0030] The transfer equipment equipped with the glass clamping structure has the glass clamping structure arranged on both sides of the longitudinal frame. Therefore, in subsequent use, the lower glass can be loaded on both sides of the transfer equipment, which is convenient for operators to load the glass.

[0031] At the same time, the glass can be arranged and placed on both sides of the transfer equipment, which can make full use of the space of the autoclave and significantly increase the number of glasses processed each time; increasing the loading capacity means that more glass can be processed in the same time, thereby improving the overall glass production efficiency; in addition, the utility model can make full use of the capacity of the autoclave, reduce the idle time of the equipment, and improve the utilization rate of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] The following is a brief description of the contents expressed in each of the drawings of the utility model specification and the marks in the drawings:

[0033] Figure 1 It is a structural schematic diagram of the glass clamping structure in the utility model.

[0034] Figure 2 It is a structural schematic diagram of the partition plate in the utility model.

[0035] Figure 3 It is a structural schematic diagram of the middle spacer ring sleeve of the utility model.

[0036] Figure 4 It is a structural schematic diagram of the arrangement of the partition plate, the hanging rod and the spacing ring sleeve in the utility model.

[0037] Figure 5 It is a structural schematic diagram of the utility model when the hook rod is connected with the spacing ring sleeve.

[0038] Figure 6 It is a structural schematic diagram of the utility model when the connecting rod is provided with external threads.

[0039] Figure 7 This is a first-view structural schematic diagram of the utility model in which two glass clamping structures are provided on one side of the platform body.

[0040] Figure 8 This is a second perspective structural schematic diagram of the utility model in which two glass clamping structures are provided on one side of the stand body.

[0041] Fig. 9 This is a top view of two glass clamping structures respectively arranged on both sides of the stand body in the utility model.

[0042] The marks in the above figure are:

[0043] 1. Glass clamping structure, 2. Mounting beam, 3. Partition plate, 31. Limiting trough, 4. End connecting plate, 5. Hanging rod, 51. External thread, 6. Spacer ring, 7. Trolley body, 71. Basic gantry, 72. Longitudinal frame, 721. Basic frame, 722. Socket column, 723. Limiting hole, 8. Roller structure, 9. End connecting mechanism. DETAILED DESCRIPTION

[0044] The specific implementation methods of the present utility model will be further explained in detail below by describing the optimal embodiments with reference to the accompanying drawings.

[0045] Glass clamping structure: The glass clamping structure 1 disclosed in the utility model is mainly used in conjunction with the trolley body 7, and its main function is to separate, isolate and limit the clamped glass placed on the trolley body 7.

[0046] In the present invention, the glass clamping structure 1 mainly includes a mounting crossbeam 2. The mounting crossbeam 2 is the main frame of the entire glass clamping structure 1 and plays the role of bearing and connecting other components.

[0047] It provides basic support for the entire clamping structure, ensuring that the glass can be stably fixed on the transfer equipment during the transfer process.

[0048] In the utility model, an end connection mechanism 9 for fixing the glass clamping structure 1 is provided at the end of the mounting beam 2; the end connection mechanism 9 includes a hanging joint arranged at the end of the mounting beam 2; a fastener is provided on the hanging joint; the function of the end connection mechanism 9 is to fix the glass clamping structure 1 on the trolley body 7 of the transfer equipment to ensure that the glass clamping structure 1 will not loosen or fall off during the transfer process.

[0049] The specific design of the end connection mechanism 9 is as follows: a hanging joint is arranged at the end of the mounting beam 2 for connecting the trolley body 7 .

[0050] The design of the hanging joint can be adjusted according to the specific structure of the trolley body 7, for example, by using a connecting sleeve, a hook, etc.

[0051] Fasteners are installed on the hook joint to further enhance the firmness of the connection.

[0052] The fasteners may be bolts, nuts, buckles or other mechanical connectors to ensure the stability of the mounting of the hook joint on the trolley body 7 .

[0053] In the utility model, a limiting mechanism for limiting the position of the glass is also provided on the mounting beam 2; the limiting mechanism includes a hanging rod 5 arranged on the mounting beam 2; a plurality of partition plates 3 are sleeved on the hanging rod 5; the two ends of the hanging rod 5 are respectively connected to the side of the mounting beam 2 through an end connecting plate 4; the function of the limiting mechanism is to separate and limit the glass to prevent the glass from shaking or shifting during transportation.

[0054] In the present invention, the hanging rod 5 is installed on the installation beam 2. Generally, the hanging rod 5 and the installation beam 2 are arranged at intervals. The hanging rod 5 is mainly used to install the partition plate 3 and the spacing ring sleeve 6.

[0055] The partition plates 3 are sleeved on the hanging rods 5 to separate the glass; adjacent partition plates 3 cooperate with each other to achieve the clamping and separation of glass with different thicknesses.

[0056] The end connecting plate 4 is used to connect the hanging rod 5 and the mounting crossbeam 2.

[0057] The end connecting plate 4 can be welded to the mounting cross beam 2, or can be connected to the mounting cross beam 2 in a detachable manner. A suitable connection method can be selected.

[0058] In addition, in the present invention, the end connecting plate 4 can be connected to the hanging rod 5 by welding, and for the convenience of disassembly and assembly, the following threaded connection can also be adopted.

[0059] Furthermore, in the present invention, each of the partition plates 3 is provided with a limiting groove 31 for limiting position; the setting of the limiting groove 31 forms a step platform on the partition plate 3, and the step platform can be snapped onto the upper edge of the glass, playing a good installation and positioning role.

[0060] The limiting groove 31 is a special structure on the partition plate 3, usually a recessed notch. In the utility model, the limiting groove 31 is required to be below the partition plate 3. When in use, the glass is arranged in the limiting groove 31 of the partition plate 3; the limiting groove 31 is used to fit tightly with the edge of the glass.

[0061] Its main function is to prevent the glass from shaking or shifting during transportation by means of physical limitation.

[0062] The limiting groove 31 can fit tightly with the edge of the glass to ensure that the glass remains stable during the clamping process and will not loosen or shift due to external forces (such as vibration, impact, etc.).

[0063] This is especially important for laminated glass, because laminated glass is usually composed of multiple layers of glass. Once it shifts during transportation, the adhesive layer between the glasses may be damaged, affecting product quality.

[0064] Furthermore, in the present invention, each of the partition plates 3 can be moved along the axial direction of the hanging rod 5 on the hanging rod 5; the hanging rod 5 is also provided with a plurality of spacer rings 6; a spacer ring 6 is provided between adjacent partition plates 3; the partition plates 3 are not fixed on the hanging rod 5, but can slide freely in the length direction (axial direction) of the hanging rod 5; this design has the following important significance: adapting to different specifications of glass: by moving the position of the partition plates 3, the spacing between adjacent partition plates 3 can be adjusted to adapt to different thicknesses of glass. For example, when thicker glass needs to be clamped, the spacing between the partition plates 3 can be increased; when thinner glass is clamped, the spacing can be reduced; this adjustability enables the clamping structure to be applicable to a variety of different specifications of glass, without the need to design a dedicated clamping device for each specification of glass, which greatly improves the versatility and economy of the equipment.

[0065] In actual use, the operator can quickly adjust the position of the partition plate 3 according to the thickness of the glass without complicated disassembly and installation processes, thereby improving work efficiency.

[0066] The spacer ring 6 plays a good role in separation and limitation, preventing adjacent partition plates 3 from being too close.

[0067] The spacer ring 6 is located between adjacent partition plates 3 , and can be connected to the hanging rod 5 (may be a threaded connection or other fixing methods) to fix the partition plate 3 at a set position to prevent the partition plate 3 from sliding on the hanging rod 5 .

[0068] This ensures the stability of the glass during the clamping process and prevents the glass from being loosened or damaged due to displacement of the partition plate 3 .

[0069] The spacing ring 6 can ensure that the spacing between adjacent partition plates 3 remains consistent, thereby ensuring the uniform distribution of the glass in the clamping structure; this is particularly important for laminated glass, because laminated glass is usually composed of multiple layers of glass, and the spacing between each layer of glass needs to be kept consistent to ensure the uniformity of the bonding layer and product quality.

[0070] The spacer ring 6 can also play a protective role, reduce direct collision between the partition plates 3, and extend the service life of the partition plates 3 and the hanging rod 5.

[0071] Further, in the present invention, the spacer sleeve 6 is connected to the hanging rod 5 through a threaded portion, the hanging rod 5 is provided with an external thread 51, and the spacer sleeve 6 is provided with an internal thread; the spacer sleeve 6 can move axially along the hanging rod 5; the hanging rod 5 is provided with an external thread 51, which is the basic part of the threaded connection; the pitch and thread shape of the external thread 51 need to be designed according to actual needs to ensure the stability and reliability of the connection; the spacer sleeve 6 is provided with an internal thread matching the external thread 51 of the hanging rod 5; this design allows the spacer sleeve 6 to be tightly combined with the hanging rod 5 through the thread to achieve a firm connection; due to the characteristics of the threaded connection, the spacer sleeve 6 can move axially on the hanging rod 5, and its position on the hanging rod 5 can be adjusted by rotating the spacer sleeve 6. This adjustability allows the clamping structure to adapt to glass of different thicknesses, and the spacing between the partition plates 3 can be adjusted according to actual needs.

[0072] The threaded connection has high stability and can effectively prevent the spacer ring 6 from loosening or sliding on the hanging rod 5 .

[0073] This stability is particularly important for the glass clamping structure 1, because the glass may be subjected to vibration or impact during transportation, and a stable connection can ensure the safety of the glass: the installation and disassembly of the threaded connection are relatively simple, and the operator can quickly complete the installation and position adjustment of the spacer ring sleeve 6 manually or with tools, thereby improving operational efficiency.

[0074] At the same time, in order to facilitate the loading of glass, the external thread 51 on the hanging rod 5 in the utility model is a segmented thread structure. Specifically, the area where the partition plate 3 is located may not be provided with the external thread 51, and the external thread 51 is provided in the spacing ring area.

[0075] Furthermore, in the utility model, the hanging rod 5 is plugged into the end connecting plate 4, and the end connecting plate 4 is provided with a through hole; the hanging rod 5 is connected to the end connecting plate 4 by threads; the hanging rod 5 is installed on the end connecting plate 4 by plugging; this design allows the hanging rod 5 to be easily inserted or pulled out of the end connecting plate 4, which is convenient for installation and disassembly; the end connecting plate 4 is provided with a through hole, and the hanging rod 5 is inserted into the end connecting plate 4 through this hole; the size and shape of the through hole need to match the outer diameter of the hanging rod 5 to ensure that the hanging rod 5 can be stably inserted and maintained in the correct position; the hanging rod 5 is connected to the end connecting plate 4 by threads; this connection method not only provides a firm fixing effect, but also allows the hanging rod 5 to be rotated to adjust its position on the end connecting plate 4, thereby realizing a fine-tuning function.

[0076] Specifically, in the utility model, the outer surface of the hook rod 5 is provided with an external thread 51, and the through hole on the end connecting plate 4 is provided with an internal thread.

[0077] Furthermore, in the present invention, each of the partition plates 3 is provided with a protective cover; in the present invention, the protective cover plays a basic isolation and protection role to avoid rigid collision between the partition plate 3 and the glass.

[0078] The main function of the protective cover is to protect the glass from being scratched or damaged; during the glass clamping and transportation process, the edge of the glass may come into contact with the partition plate 3, and the protective cover can reduce the damage to the glass caused by such contact.

[0079] The protective sleeve can increase the friction between the partition plate 3 and the glass, prevent the glass from sliding on the partition plate 3, and further improve the clamping stability.

[0080] The softness of the protective cover allows it to adapt to glass of different shapes and sizes, and the protective cover can provide good protection even if the edges of the glass are not completely regular.

[0081] The protective cover can be made of polyimide fiber cloth or aramid fiber cloth; of course, other materials can also be used. The protective cover is required to have the characteristics of high temperature resistance, high pressure resistance and corrosion resistance as much as possible while achieving the isolation and protection function.

[0082] A laminated glass transfer device comprises a trolley body 7, on which the glass clamping structure 1 is provided; the trolley body 7 comprises a basic frame 71, on which a longitudinal frame 72 is provided; at least two glass clamping structures 1 are spaced apart on the longitudinal frame 72; a roller structure 8 is provided on the side of the basic frame 71 away from the longitudinal frame 72; the transfer device loaded with the glass clamping structure 1, because the glass clamping structures 1 are arranged on both sides of the longitudinal frame 72, can realize the loading operation of the lower glass on both sides of the transfer device during subsequent use, so that it is convenient for operators to load the glass.

[0083] At the same time, the glass can be arranged and placed on both sides of the transfer equipment, which can make full use of the space of the autoclave and significantly increase the number of glasses processed each time; increasing the loading capacity means that more glass can be processed in the same time, thereby improving the overall glass production efficiency; in addition, the utility model can make full use of the capacity of the autoclave, reduce the idle time of the equipment, and improve the utilization rate of the equipment.

[0084] In the present invention, the trolley body 7 is the main structure of the transfer equipment, which mainly includes a basic frame 71, a longitudinal frame 72 and a roller structure 8.

[0085] The basic stand 71 is used to support the entire device, the longitudinal stand 72 is used to install the glass clamping structure 1, and the roller structure 8 is used to realize the movement of the device.

[0086] The roller structure 8 includes four roller mechanisms, each of which includes a track roller to facilitate the subsequent pushing of the transfer equipment to move it.

[0087] The glass clamping structure 1 is installed on the longitudinal frame 72 and is used to fix and transport the laminated glass.

[0088] The base frame 71 serves as the basic frame 721 of the entire device and is usually made of steel structure to have high strength and stability.

[0089] The roller structure 8 is installed on the side of the base frame 71 away from the longitudinal frame 72 to realize the movement of the equipment; the roller structure 8 can adopt a single wheel or double wheel design, depending on the weight of the equipment and the use environment.

[0090] The vertical stand 72 is usually arranged in the middle of the base frame 71 and is used to install the glass clamping structure 1. The vertical stand 72 can be designed in a single layer or double layer to improve the space utilization of the equipment.

[0091] The glass clamping structure 1 comprises a mounting crossbeam 2, an end connection mechanism 9 and a limiting mechanism.

[0092] The mounting crossbeam 2 is used for mounting the partition plate 3 and the hanging rod 5, the end connection mechanism 9 is used for fixing the clamping structure, and the limiting mechanism is used for limiting the position of the glass.

[0093] The partition plates 3 are used to separate the glass. Each partition plate 3 is provided with a protective cover, which can be made of polytetrafluoroethylene (PTFE), titanium alloy or other high temperature resistant and corrosion resistant materials.

[0094] The hanging rod 5 and the end connecting plate 4: the hanging rod 5 is used to install the partition plate 3 and the spacing ring sleeve 6, and the end connecting plate 4 is used to connect the hanging rod 5 and the installation beam 2.

[0095] Furthermore, in the utility model, the longitudinal frame 72 is located in the middle of the basic frame 71; glass clamping structures 1 are provided on opposite sides of the longitudinal frame 72; at least two glass clamping structures 1 are provided on each side of the longitudinal frame 72; the longitudinal frame 72 is located in the middle of the basic frame 71; this design enables the longitudinal frame 72 to be arranged in the center of the basic frame 71, so as to better balance the center of gravity of the equipment and improve the stability of the equipment.

[0096] Glass clamping structures 1 are provided on both sides of the longitudinal frame 72 .

[0097] This symmetrical layout not only improves space utilization, but also enables the equipment to process more glass at the same time, thereby improving production efficiency.

[0098] There are at least two clamping structures on each side of the longitudinal frame 72: at least two glass clamping structures 1 are arranged at intervals on each side of the longitudinal frame 72; the intervals between the clamping structures can be adjusted according to the size and shape of the glass; this flexibility enables the device to adapt to glass of various specifications, further improving the versatility and practicality of the device.

[0099] By arranging a plurality of glass clamping structures 1 on both sides of the longitudinal frame 72, the equipment can process more glass at the same time, thereby significantly improving production efficiency.

[0100] The longitudinal stand 72 is located in the middle of the base frame 71. This symmetrical layout helps to balance the center of gravity of the equipment and improve the stability of the equipment during transportation.

[0101] The intervals between the clamping structures can be adjusted according to the size of the glass, so that the device can adapt to glass of different specifications, thereby improving the versatility and flexibility of the device.

[0102] The symmetrical layout and the spaced-apart clamping structures fully utilize the space of the equipment, reduce space waste, and enable the equipment to process more glass in a limited space.

[0103] Furthermore, in the utility model, the longitudinal frame 72 includes a basic frame 721, and a plurality of socket columns 722 are provided on the basic frame 721; the end connection mechanism 9 in the glass clamping structure 1 is connected to the socket columns 722; the basic frame 721 is the core part of the longitudinal frame 72, and plays the role of supporting and connecting other components; the basic frame 721 is arranged along the longitudinal direction, and the basic frame 721 usually adopts a steel structure, which has high strength and stability.

[0104] A plurality of sleeve columns 722 are provided on the base frame 721 , and the sleeve columns 722 are used to install the glass clamping structure 1 .

[0105] The design of the sleeve column 722 allows the glass clamping structure 1 to be adjusted in height as needed, thereby adapting to glasses of different heights.

[0106] Furthermore, in the present invention, each of the sleeve columns 722 is provided with a plurality of limiting holes 723 ; the fasteners in the end connection mechanism 9 are inserted into the limiting holes 723 ; and the end connection mechanism 9 in the glass clamping structure 1 is connected to the sleeve columns 722 .

[0107] The end connection mechanism 9 is fixed to the sleeve column 722 by fasteners (such as bolts, nuts, etc.) to ensure the stability of the clamping structure.

[0108] Since a plurality of limiting holes 723 are provided on the sleeve column 722, the fasteners in the end connection mechanism 9 can be inserted into these limiting holes 723, thereby realizing the height adjustment of the glass clamping structure 1; this design enables the device to adapt to glasses of different heights, thereby improving the versatility and flexibility of the device.

[0109] The sleeve column 722 is a part of the longitudinal frame 72, and is used to install and support the glass clamping structure 1. Each sleeve column 722 is provided with a plurality of limiting holes 723, which provide fixing points for adjusting the height of the glass clamping structure 1.

[0110] The limiting holes 723 are small holes on the sleeve columns 722, which are used to cooperate with the fasteners in the end connection mechanism 9. These limiting holes 723 are usually distributed along the height direction of the sleeve columns 722, so that the glass clamping structure 1 can be adjusted to different heights as needed.

[0111] Obviously, the specific implementation of the present invention is not limited by the above-mentioned methods. As long as various non-substantial improvements are made using the method concept and technical solution of the present invention, they are all within the protection scope of the present invention.

Claims

1. Glass clamping structure, characterized in that: It comprises a mounting crossbeam, the end of which is provided with an end connection mechanism for fixing the glass clamping structure; The installation beam is also provided with a limiting mechanism for limiting the position of the glass; The end connection mechanism comprises a hook joint arranged at the end of the mounting crossbeam; a fastener is arranged on the hook joint; The limiting mechanism comprises a hanging rod arranged on the mounting crossbeam; a plurality of partition plates are sleeved on the hanging rod; The two ends of the hanging rod are respectively connected to the side surface of the installation beam through an end connecting plate.

2. The glass clamping structure according to claim 1, characterized in that: Each of the partition plates is provided with a limiting groove for limiting position.

3. The glass clamping structure according to claim 1, characterized in that: Each of the partition plates can move on the hanging rod along the axial direction of the hanging rod; a plurality of spacer rings are also arranged on the hanging rod; and a spacer ring is arranged between adjacent partition plates.

4. The glass clamping structure according to claim 3, characterized in that: The spacer ring is connected to the hanging rod through a threaded portion. The hanging rod is provided with an external thread, and the spacer ring is provided with an internal thread. The spacer ring can move along the axial direction of the hanging rod.

5. The glass clamping structure according to claim 1, characterized in that: The hanging rod is plugged into the end connecting plate, and the end connecting plate is provided with a through hole; the hanging rod is connected to the end connecting plate through a thread.

6. The glass clamping structure according to claim 1, characterized in that: Each of the partition plates is provided with a protective sleeve.

7. A laminated glass transfer device, characterized in that: It comprises a trolley body, on which the glass clamping structure according to any one of claims 1 to 6 is provided; the trolley body comprises a basic frame, on which a longitudinal frame is provided; At least two glass clamping structures are arranged on the longitudinal frame at intervals; The basic frame is provided with a roller structure on one side away from the longitudinal frame.

8. The laminated glass transfer device according to claim 7, characterized in that: The longitudinal frame is located in the middle of the base frame; glass clamping structures are arranged on opposite sides of the longitudinal frame; and at least two glass clamping structures are arranged at intervals on each side of the longitudinal frame.

9. The laminated glass transfer device according to claim 7, characterized in that: The longitudinal frame comprises a basic frame, on which a plurality of sleeve columns are arranged; the end connection mechanism in the glass clamping structure is connected to the sleeve columns.

10. The laminated glass transfer device according to claim 9, characterized in that: Each of the sleeve columns is provided with a plurality of limiting holes; the fasteners in the end connection mechanism are inserted into the limiting holes.

Citation Information

Patent Citations

  • Double-layer material rack in laminated glass autoclave

    CN201704215U