Auxiliary frame facilitating transfer of quartz ingots
By designing an auxiliary frame that facilitates the transfer of quartz ingots, and utilizing drive and limit components to achieve efficient clamping and ejection of quartz ingots, the problem of low unloading efficiency in existing technologies is solved. This design is applicable to quartz plates of different thicknesses and improves transfer efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-03-06
AI Technical Summary
The current quartz ingot transfer process has low unloading efficiency, especially when removing quartz plates, which is inconvenient and requires manual pushing out one by one, resulting in low efficiency.
An auxiliary frame for easy transfer of quartz ingots was designed. A drive assembly drives multiple clamping plates to slide left and right along a guide rod to clamp the quartz plates. A limiting assembly holds the quartz plates from the rear and a control assembly pushes the quartz plates out, achieving manual pushing out without the need for manual intervention.
It improves the unloading efficiency of quartz ingots, is applicable to quartz plates of different thicknesses, expands the scope of application, and makes the removal of quartz plates more efficient.
Smart Images

Figure CN223973009U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of quartz ingot processing technology, and in particular to an auxiliary frame that facilitates the transfer of quartz ingots. Background Technology
[0002] Quartz ingots are a material with high thermal stability, high hardness and good optical properties. The production of quartz ingots mainly involves mining, crushing, grinding, purification and smelting. In the smelting process, high-purity quartz is melted at high temperature and then cooled and solidified into block objects. Depending on the use and processing method, quartz ingots can be produced in different shapes and sizes.
[0003] In the production of quartz plates, it is often necessary to transfer the quartz plates between two processes. For example, the quartz plates need to be transferred when they enter the polishing process after forming and cooling, before cutting after polishing, and before packaging after cutting. For example, a quartz plate transfer frame disclosed in Chinese Patent CN222409150U can clamp and fix the quartz plates between the clamps. When the transfer is bumpy, it can effectively prevent the quartz plates from falling and being damaged, and the use effect is good. However, this transfer frame is not convenient for removing quartz plates. It requires manual pushing out the quartz plates one by one, resulting in low unloading efficiency. Therefore, we propose an auxiliary frame that facilitates the transfer of quartz ingots. Utility Model Content
[0004] The purpose of this invention is to provide an auxiliary frame that facilitates the transfer of quartz ingots and has the effect of convenient unloading.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an auxiliary frame for facilitating the transfer of quartz ingots, comprising a base plate, two side plates mounted on the base plate, a guide rod connecting the two side plates, multiple clamping plates equidistantly distributed and sleeved on the outside of the guide rod and slidably connected to the top of the base plate, a scissor-type telescopic frame connecting the multiple clamping plates and the left side plate, and a drive assembly mounted on the side plate to drive the multiple clamping plates to slide left and right. The clamping plates are provided with rectangular holes, and a limit assembly is movably installed in the rectangular holes. The clamping plates are also provided with a control assembly that drives the limit assembly to slide back and forth.
[0006] By adopting the above technical solution, the quartz plates to be transferred are placed sequentially between the left side plate and the clamping plate, as well as between two adjacent clamping plates (no clamping plate is placed between the rightmost clamping plate and the right side plate). The drive assembly drives multiple clamping plates to slide left and right along the guide rod, clamping the quartz plates to prevent them from falling. The limiting assembly can hold the quartz plates from the rear. When it is necessary to remove the quartz plates, the control assembly controls the limiting assembly to move forward and push the quartz plates out. There is no need to manually push out the quartz plates one by one, resulting in higher unloading efficiency.
[0007] A further feature of this invention is that the scissor-type telescopic frame is composed of multiple support rods hinged together, with the leftmost support rod hinged to the left side plate and the remaining support rods hinged to the clamping plate.
[0008] By adopting the above technical solution, the support rod can be extended or retracted between two adjacent clamping plates and between the left side plate and the clamping plate, and cooperate with the clamping plates to fix the quartz plate.
[0009] A further feature of this invention is that the drive assembly includes a threaded rod rotatably connected between two side plates and passing through multiple clamping plates, a motor mounted on one of the side plates to drive the threaded rod to rotate, a through hole in the clamping plate, and a threaded sleeve mounted on the rightmost through hole.
[0010] A further feature of this invention is that the threaded sleeve is threadedly connected to the outside of the threaded rod.
[0011] By adopting the above technical solution, the motor starts and drives the threaded rod to rotate. When the threaded rod rotates, the threaded sleeve moves back and forth, causing the rightmost clamping plate to move. Multiple clamping plates are connected by a scissor-type telescopic frame, which allows multiple clamping plates to move left and right along the guide rod, clamping the quartz plate to prevent it from falling.
[0012] A further feature of this invention is that the limiting assembly includes a limiting sleeve plate movably installed in a rectangular hole, a limiting plate movably installed inside the limiting sleeve plate and extending to the outside of the limiting sleeve plate, and a spring installed inside the limiting sleeve plate and connected to the limiting plate.
[0013] A further feature of this invention is that the diameter of the limiting plate extending to the outside of the limiting sleeve is greater than the diameter of the rectangular hole.
[0014] By adopting the above technical solution, when multiple clamping plates move left and right along the guide rod, the distance between two adjacent clamping plates increases or decreases. The limiting plate can change the distance between the limiting plate and the limiting sleeve plate by the elastic force of the spring. When clamping quartz plates of different thicknesses, the limiting component can limit the quartz plate from the rear, making it more widely applicable.
[0015] A further feature of this invention is that the control assembly includes a lead screw rotatably connected within a rectangular hole and extending to the front side of the clamping plate, and a handle mounted on the lead screw.
[0016] A further feature of this invention is that the limiting sleeve is threadedly connected to the outside of the handle.
[0017] By adopting the above technical solution, the handle drives the lead screw to rotate, which causes the limiting sleeve to move back and forth. When removing the quartz plate, it can be pushed out by the limiting plate, eliminating the need for manual pushing out one by one, thus improving the unloading efficiency.
[0018] A further feature of this invention is that a groove is provided on the base plate, and a slider that moves within the groove is installed at the bottom of the clamping plate.
[0019] By adopting the above technical solution, it is beneficial to improve the stability of the clamping plate moving on the base plate.
[0020] A further feature of this invention is that the limiting plate is also provided with rollers, and there are two rollers located on the upper and lower sides of the rectangular hole.
[0021] By adopting the above technical solution, the limiting plate can make the quartz plate move more smoothly when it moves back and forth to push it out.
[0022] The beneficial effects of this utility model are:
[0023] 1. The handle drives the lead screw to rotate, which causes the limit sleeve to move back and forth. When removing the quartz plate, it can be pushed out by the limit plate, eliminating the need for manual pushing out one by one, thus improving the unloading efficiency.
[0024] 2. When multiple clamping plates move left and right along the guide rod, the distance between two adjacent clamping plates increases or decreases. The limiting plate can change the distance between the limiting plate and the limiting sleeve plate by the elastic force of the spring. When clamping quartz plates of different thicknesses, the limiting component can limit the quartz plate from the rear, making it more widely applicable. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the structure of this utility model;
[0027] Figure 2 This is a schematic diagram of the limiting component and control component of this utility model;
[0028] Figure 3 This is a structural schematic diagram of the limiting component of this utility model.
[0029] In the diagram, 1. Base plate; 2. Side plate; 3. Guide rod; 4. Clamping plate; 5. Scissor-type telescopic frame; 6. Drive assembly; 61. Threaded rod; 62. Motor; 63. Through hole; 64. Threaded sleeve; 7. Rectangular hole; 8. Limiting assembly; 81. Limiting sleeve plate; 82. Limiting plate; 83. Spring; 9. Control assembly; 91. Lead screw; 92. Handle; 10. Slide groove; 11. Slider. Detailed Implementation
[0030] The technical solution of this utility model will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0031] Please see Figure 1-3 This utility model provides an auxiliary frame for facilitating the transfer of quartz ingots, including a base plate 1, two side plates 2 mounted on the base plate 1, a guide rod 3 connecting the two side plates 2, multiple clamping plates 4 equidistantly distributed and sleeved on the outside of the guide rod 3 and slidably connected to the top of the base plate 1, a scissor-type telescopic frame 5 connecting the multiple clamping plates 4 and the left side plate 2, and a drive assembly 6 mounted on the side plate 2 to drive the multiple clamping plates 4 to slide left and right. The clamping plates 4 have rectangular holes 7, and a limit assembly 8 is movably installed in the rectangular holes 7. The clamping plates 4 are also provided with a control assembly 9 that drives the limit assembly 8 to slide back and forth.
[0032] The quartz plates to be transferred are placed sequentially between the left side plate 2 and the clamping plate 4, as well as between two adjacent clamping plates 4 (no clamping plate is placed between the rightmost clamping plate 4 and the right side plate 2). The drive assembly 6 drives multiple clamping plates 4 to slide left and right along the guide rod 3 to clamp the quartz plates and prevent them from falling. The limiting assembly 8 can hold the quartz plates from the rear. When it is necessary to remove the quartz plates, the control assembly 9 controls the limiting assembly 8 to move forward and push out the quartz plates. There is no need to manually push out the quartz plates one by one, which improves the unloading efficiency.
[0033] The scissor-type telescopic frame 5 is composed of multiple support rods that are hinged together. The leftmost support rod is hinged to the left side plate 2, and the remaining support rods are hinged to the clamping plate 4, so that the support rods can be extended or retracted between two adjacent clamping plates 4 and between the left side plate 2 and the clamping plate 4, and cooperate with the clamping plate 4 to fix the quartz plate.
[0034] The drive assembly 6 includes a threaded rod 61 rotatably connected between two side plates 2 and passing through multiple clamping plates 4, a motor 62 mounted on one of the side plates 2 to drive the threaded rod 61 to rotate, a through hole 63 opened on the clamping plate 4, and a threaded sleeve 64 mounted on the rightmost through hole 63. The threaded sleeve 64 is threaded to the outside of the threaded rod 61. When the motor 62 starts, it drives the threaded rod 61 to rotate. When the threaded rod 61 rotates, the threaded sleeve 64 moves back and forth, causing the rightmost clamping plate 4 to move. The multiple clamping plates 4 are connected by a scissor-type telescopic frame 5, which allows the multiple clamping plates 4 to move left and right along the guide rod 3 to clamp the quartz plate and prevent it from falling.
[0035] The limiting component 8 includes a limiting sleeve 81 movably installed in the rectangular hole 7, a limiting plate 82 movably installed in the limiting sleeve 81 and extending to the outside of the limiting sleeve 81, and a spring 83 installed inside the limiting sleeve 81 and connected to the limiting plate 82. The diameter of the limiting plate 82 extending to the outside of the limiting sleeve 81 is larger than the diameter of the rectangular hole 7. When the multiple clamping plates 4 move left and right along the guide rod 3, the distance between two adjacent clamping plates 4 increases or decreases. The limiting plate 82 can change the distance from the limiting sleeve 81 to the limiting plate 82 by the elastic force of the spring 83. When clamping quartz plates of different thicknesses, the limiting component 8 can limit the quartz plates from the rear.
[0036] The control component 9 includes a lead screw 91 rotatably connected to the rectangular hole 7 and extending to the front side of the clamping plate 4, and a handle 92 mounted on the lead screw 91. The limiting sleeve 81 is threaded to the outside of the handle 92. The handle 92 drives the lead screw 91 to rotate, so that the limiting sleeve 81 drives the limiting plate 82 to move back and forth. When the quartz plate is removed, it can be pushed out by the limiting plate 82 without manual pushing out one by one, and the unloading efficiency is higher.
[0037] The base plate 1 has a sliding groove 10, and the bottom of the clamping plate 4 is equipped with a slider 11 that moves within the sliding groove 10, which helps to improve the stability of the clamping plate 4 moving on the base plate 1.
[0038] The limiting plate 82 is also equipped with rollers. There are two rollers located on the upper and lower sides of the rectangular hole 7. When the limiting plate 82 moves back and forth to push out the quartz plate, it can make the movement smoother.
Claims
1. An auxiliary frame for facilitating the transportation of quartz ingots, comprising a base plate (1), two side plates (2) mounted on the base plate (1), a guide rod (3) connecting the two side plates (2), a plurality of clamping plates (4) distributed at equal distances and sleeved on the outside of the guide rod (3) and slidably connected to the top of the base plate (1), a scissor-type telescopic frame (5) connecting the plurality of clamping plates (4) and the left side plate (2), and a driving assembly (6) mounted on the side plate (2) and driving the plurality of clamping plates (4) to slide left and right, characterized in that, The clamping plate (4) is provided with a rectangular hole (7), and a limiting assembly (8) is movably arranged in the rectangular hole (7); the clamping plate (4) is further provided with a control assembly (9) for driving the limiting assembly (8) to slide forward and backward.
2. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 1, wherein: The scissor-type telescopic frame (5) is formed by a plurality of supporting rods which are hingedly connected to each other; the leftmost supporting rod is hingedly connected to the left side plate (2), and the remaining supporting rods are hingedly connected to the clamping plate (4).
3. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 2, wherein: The driving assembly (6) comprises a threaded rod (61) which is rotatably connected between the two side plates (2) and passes through the plurality of clamping plates (4), a motor (62) which is arranged on one of the side plates (2) and drives the threaded rod (61) to rotate, a through hole (63) which is formed in the clamping plate (4), and a threaded sleeve (64) which is arranged on the rightmost through hole (63).
4. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 3, wherein: The threaded sleeve (64) is threadedly connected to the outside of the threaded rod (61).
5. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 4, wherein: The limiting assembly (8) comprises a limiting sleeve plate (81) which is movably arranged in the rectangular hole (7), a limiting plate (82) which is movably arranged in the limiting sleeve plate (81) and extends to the outside of the limiting sleeve plate (81), and a spring (83) which is arranged in the limiting sleeve plate (81) and connected to the limiting plate (82).
6. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 5, wherein: The diameter of the limiting plate (82) which extends to one side of the outside of the limiting sleeve plate (81) is greater than the diameter of the rectangular hole (7).
7. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 6, wherein: The control assembly (9) comprises a lead screw (91) which is rotatably connected in the rectangular hole (7) and extends to the front side of the clamping plate (4), and a handle (92) which is arranged on the lead screw (91).
8. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 7, wherein: The limiting sleeve plate (81) is threadedly connected to the outside of the handle (92).
9. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 8, wherein: The bottom plate (1) is provided with a sliding groove (10), and the bottom of the clamping plate (4) is provided with a sliding block (11) which is movably arranged in the sliding groove (10).
10. The auxiliary frame for facilitating the transportation of a quartz ingot according to claim 9, wherein: The limiting plate (82) is further provided with two rollers which are arranged on the upper and lower sides of the rectangular hole (7).
Citation Information
Patent Citations
Quartz plate transfer frame
CN222409150U