Alumina plate placing rack

By designing a multi-layer support structure and an auxiliary locking assembly, the problems of sagging and deformation in the alumina plate placement rack are solved, achieving stable support and efficient clamping of the alumina plate, thereby improving the service life and working efficiency of the alumina plate.

CN223878438UActive Publication Date: 2026-02-06HENAN GUANGHENG ALUMINUM CO LTD
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Patent Information

Application Number
CN202520600552.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-06
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing alumina plate placement racks are prone to causing the plates to sag and deform, affecting processing accuracy and potentially causing the oxide film to be crushed or scratched.

Method used

An alumina plate placement rack was designed, which adopts a multi-layer support structure and an auxiliary locking assembly, including a support side plate, a cross plate, an auxiliary locking assembly and a central support structure. Precise adjustment is achieved by a servo motor driving a lead screw and a slider system, which enhances clamping force and stability.

Benefits of technology

It effectively prevents the aluminum oxide plate from sagging and deforming due to its own weight, improves load-bearing capacity and stability, ensures flatness, reduces the risk of sliding and falling, extends service life and improves work efficiency.

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Abstract

The utility model discloses an aluminum oxide plate containing frame which comprises two side plates, the bottoms of the two side plates are connected with a bottom plate through locking sets, and at least two layers of supporting structures are arranged between the two side plates. The supporting structure comprises two supporting side plates, a transverse plate, an auxiliary locking set, a middle supporting structure and a clamping plate. By designing the middle supporting structure, the center area of the aluminum oxide plate is effectively supported, and drooping and deformation caused by self weight of the aluminum oxide plate are prevented. The bearing capacity and the stability of the aluminum oxide plate are improved, the flatness of the aluminum oxide plate in the using process is ensured, the service life is prolonged, and the overall working efficiency is improved. In addition, an auxiliary locking set is additionally arranged, additional clamping force is provided for the clamping plates, the fixing effect on the aluminum oxide plate is further enhanced, and the risk that the aluminum oxide plate slides and falls in the carrying and storing process is reduced.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of alumina plate production, in particular to an alumina plate placing rack. BACKGROUND

[0002] The alumina plate (also known as an anodic alumina plate) is an aluminum alloy plate with a surface subjected to electrochemical oxidation treatment, and has unique properties and wide applications.

[0003] As shown in the "alumina plate placing rack with clamping and positioning" with the announcement number CN218536808U, a first support plate and a second support plate are arranged on the upper surface of the base on both sides, and the outer parts of two adjacent gears are connected with a belt. This clamping method on both sides only can easily cause the plate to sag, resulting in plastic deformation of the plate, affecting the subsequent machining precision, and the bending stress generated by the sagging can increase the contact point pressure of the plate and the support, and if a buffer material is not used, the oxide film can be crushed or scratched. Therefore, the application provides an alumina plate placing rack to solve such problems. SUMMARY

[0004] The technical problem to be solved by the application is to overcome the defects of the prior art and provide an alumina plate placing rack which can effectively solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: an alumina plate placing rack, comprising side plates, the number of the side plates is two, the bottom of the two side plates is connected with a bottom plate through a locking group, and not less than two layers of support structures are arranged between the two side plates.

[0006] The support structure comprises a support side plate, a horizontal plate, an auxiliary locking group, a middle support structure and a clamping plate, the number of the support side plates is two, the upper surface of the support side plate is provided with the clamping plate, the support side plate is fixed on the side plate, the end of the support side plate away from the side plate is vertically provided with the horizontal plate, the auxiliary locking group is arranged between the two horizontal plates, and the auxiliary locking group is arranged at the front and rear ends of the horizontal plate.

[0007] Further, the middle support structure comprises a support seat, a distance adjusting plate, a support plate and a fixing group, one end of the horizontal plate is provided with the support seat, the end of the support seat away from the horizontal plate is slidably connected with the distance adjusting plate, the upper surface of the distance adjusting plate is provided with the support plate, and the bottom of the support seat is provided with the fixing group.

[0008] Further, the fixed group comprises locking holes, insertion rods, push plates, locking springs, pull plates and mounting frames, two rows of locking holes are formed on the distance adjusting plate, the number of each row of locking holes is not less than two, the bottom of the support base is provided with a mounting frame, the lower side of the mounting frame is provided with a pull plate, the upper surface of the pull plate is provided with two insertion rods, the upper ends of the insertion rods penetrate the mounting frame and the support base and are inserted into the locking holes of the support plate, locking springs are arranged on the outer sides of the insertion rods, the locking springs are arranged in the mounting frame, and the upper surfaces of the locking springs are connected with the push plates, and the push plates are fixed on the insertion rods.

[0009] Further, the auxiliary locking group comprises guide rods, limiting plates, sliding groove holes and auxiliary springs, one end of each of the cross plates is provided with a guide rod, the guide rods extend into the other cross plates and are connected with the limiting plates, the inner sides of the other cross plates are provided with sliding groove holes for sliding of the limiting plates, and the outer sides of the guide rods are provided with auxiliary springs, and the auxiliary springs are arranged in the sliding groove holes of the cross plates.

[0010] Further, the locking group comprises a rotating shaft, a fixed plate, a lead screw, a moving block, sliding groups and a servo motor, the bottom of the side plate is provided with the moving block and two sliding groups, the moving block is connected with the lead screw through a lead screw nut, the two lead screws are symmetrically arranged, a rotating shaft is arranged between the two lead screws, the end of the lead screw away from the rotating shaft is connected with the bottom plate through the fixed plate, and the lead screw is rotationally connected with the fixed plate, one of the lead screws penetrates the fixed plate and is connected with the power output shaft of the servo motor, and the servo motor is mounted on the fixed plate through a motor mounting seat.

[0011] Further, the moving block is arranged between the two sliding groups, and the sliding group comprises a sliding block and a sliding rail, the sliding block is fixed at the bottom of the side plate, the sliding rail is slidably connected to the bottom of the sliding block, and the sliding rail is fixed on the bottom plate.

[0012] Further, the lower surface of the clamping plate is upwardly inclined near the cross plate to form a clamping surface.

[0013] Further, the side plate is in the shape of an inverted "T", and the bottom of the bottom plate is provided with four universal wheels.

[0014] Compared with the prior art, the central support structure is designed to effectively support the central region of the aluminum oxide plate, prevent it from sagging and deforming due to its own weight, improve the carrying capacity and stability of the aluminum oxide plate, ensure the flatness of the aluminum oxide plate during use, thereby prolonging the service life and improving the overall work efficiency. In addition, the auxiliary locking group is additionally arranged to provide additional clamping force for the clamping plate, further strengthen the fixing effect of the aluminum oxide plate, and reduce the risk of sliding and falling of the aluminum oxide plate during transportation and storage. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The structure of the present application is shown in the schematic diagram;

[0016] Figure 2 It is a structural schematic view of the local part of the application;

[0017] Figure 3 It is a top view of the application;

[0018] Figure 4 It is Figure 3 It is a local enlarged view of A in the middle;

[0019] Figure 5 It is a structural schematic view of the middle support structure of the part.

[0020] In the figure: 1 side plate, 2 locking group, 3 rotating shaft, 4 fixed plate, 5 screw rod, 6 moving block, 7 sliding group, 8 servo motor, 9 sliding block, 10 sliding rail, 11 bottom plate, 12 support structure, 13 support side plate, 14 cross plate, 15 auxiliary locking group, 16 guide rod, 17 limit plate, 18 sliding groove hole, 19 auxiliary spring, 20 middle support structure, 21 clamping plate, 22 support seat, 23 distance adjusting plate, 24 support plate, 25 fixed group, 26 locking hole, 27 insertion rod, 28 push plate, 29 locking spring, 30 pull plate, 31 mounting frame. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, not all the embodiments. Based on the embodiments in the application (for the convenience of description and understanding, the following is described with reference to the drawings in the embodiments of the application). All other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the scope of protection of the application. Figure 1 The upper side is described as the upper side.).

[0022] Please refer to Figures 1-5 The application provides an alumina plate placing rack technical scheme: an alumina plate placing rack, comprising side plates 1, the number of side plates 1 is two, and the bottom of the two side plates 1 is connected with a bottom plate 11 through a locking group 2.

[0023] Specifically, the side plate 1 is in inverted "T" shape, the bottom of the bottom plate 11 is provided with four universal wheels, the universal wheels mentioned can realize 360-degree free rotation, which makes the placing rack can be easily moved and positioned in different directions, so as to facilitate workers to adjust the position of the placing rack according to the needs.

[0024] Further, the locking group 2 comprises a rotating shaft 3, a fixed plate 4, a lead screw 5, a moving block 6, a sliding group 7 and a servo motor 8. The bottom of the side plate 1 is provided with the moving block 6 and two sliding groups 7. The moving block 6 is connected with the lead screw 5 through a lead screw nut. The two lead screws 5 are symmetrically arranged. The rotating shaft 3 is arranged between the two lead screws 5. The end of the lead screw 5 away from the rotating shaft 3 is connected with the bottom plate 11 through the fixed plate 4, and the lead screw 5 is rotationally connected with the fixed plate 4. One of the lead screws 5 penetrates through the fixed plate 4 and is connected with the power output shaft of the servo motor 8. The servo motor 8 is installed on the fixed plate 4 through a motor mounting seat.

[0025] Specifically, the number of fixed plates 4 is three, two of which are located on the two sides and the other is in the middle, to ensure the structural stability. The middle fixed plate 4 is connected with the rotating shaft 3 through a bearing, to facilitate the rotating shaft 3 to rotate stably under stress. The two side fixed plates 4 support the two lead screws 5, to enhance the rigidity and stability of the overall structure.

[0026] More specifically, the two lead screws 5 are symmetrically arranged, and the thread directions thereof are opposite, to ensure that the two moving blocks 6 move synchronously, thereby realizing the stable opening and closing of the side plates 1. The servo motor 8 adjusts the position of the moving block 6 by precisely controlling the rotation of the lead screw 5, and then precisely adjusts the distance between the side plates 1, to meet the placement requirements of aluminum oxide plates of different sizes.

[0027] Further, the moving block 6 is arranged between the two sliding groups 7. The sliding group 7 comprises a sliding block 9 and a sliding rail 10. The sliding block 9 is fixed at the bottom of the side plate. The sliding rail 10 is slidably connected to the bottom of the sliding block 9, and is fixed on the bottom plate 11.

[0028] Specifically, the sliding rail 10 is made of high-strength material, to ensure that it does not deform after long-term use. The surface of the sliding block 9 is coated with a wear-resistant coating, to reduce friction and improve the smoothness of movement. The overall design aims to improve the durability and operational convenience of the placement rack. Through the precise cooperation of the sliding rail 10 and the sliding block 9, the moving block 6 moves stably along the sliding rail 10 under the drive of the servo motor 8, to realize the synchronous opening and closing of the side plates 1, ensure that the placement rack remains stable when carrying heavy objects, and improve work efficiency.

[0029] In this way, power can be transmitted to the lead screw 5 through the servo motor 8, to drive the moving block 6 to precisely move the side plate 1 and the sliding block 9 on the sliding rail 10, thereby controlling the position of the two side plates 1 and ensuring that the clamping plate 21 can clamp and fix the aluminum oxide plate.

[0030] There are no less than two layers of support structures 12 arranged between the two side plates 1.

[0031] Specifically, the number of layers of the support structure 12 is seven, and each layer is uniformly spaced. The support structure 12 is made of high-strength steel, to ensure the load-bearing capacity. The support structure 12 is fixed on the inner side of the side plate 1 through bolts, to enhance the overall stability and facilitate the placement and fixation of aluminum oxide plates of different thicknesses.

[0032] The support structure 12 comprises two support side plates 13, a cross plate 14, an auxiliary locking group 15, a middle support structure 20 and a clamping plate 21, the upper surface of the support side plate 13 is provided with the clamping plate 21, and the support side plate 13 is fixed on the side plate 1, the end of the support side plate 13 away from the side plate 1 is vertically provided with the cross plate 14, the auxiliary locking group 15 is arranged between the two cross plates 14, and the front and rear ends of the cross plate 14 are both provided with the auxiliary locking group 15.

[0033] Specifically, the upper surfaces of the support side plate 13, the cross plate 14 and the middle support structure 20 are at the same height, so as to facilitate supporting the aluminum oxide plate, and the surface can be provided with a non-slip pad to enhance the friction and prevent the aluminum oxide plate from sliding.

[0034] Further, the middle support structure 20 comprises a support seat 22, a distance adjusting plate 23, a support plate 24 and a fixing group 25, the support seat 22 is arranged at one end of the cross plate 14, the end of the support seat 22 away from the cross plate 14 is slidably connected with the distance adjusting plate 23, the upper surface of the distance adjusting plate 23 is provided with the support plate 24, and the bottom of the support seat 22 is provided with the fixing group 25.

[0035] Specifically, the upper surfaces of the support plate 24 and the support seat 22 are flush with the upper surface of the cross plate 14, facilitating supporting the aluminum oxide plate, the distance adjusting plate 23 can slide along the support seat 22, and the fixing group 25 is locked to realize distance adjustment of the support plate 24, adapt to aluminum oxide plates of different widths, and ensure stable support.

[0036] Further, the fixing group 25 comprises locking holes 26, insertion rods 27, a push plate 28, locking springs 29, a pull plate 30 and a mounting frame 31, two rows of locking holes 26 are formed in the distance adjusting plate 23, the number of each row of locking holes 26 is not less than two, the bottom of the support seat 22 is provided with the mounting frame 31, the pull plate 30 is arranged below the mounting frame 31, the upper surface of the pull plate 30 is provided with two insertion rods 27, the upper ends of the insertion rods 27 penetrate through the mounting frame 31 and the support seat 22 and are inserted into the locking holes 26 of the support plate 24, the outer sides of the insertion rods 27 are provided with the locking springs 29, the locking springs 29 are arranged in the mounting frame 31, the upper surfaces of the locking springs 29 are connected with the push plate 28, and the push plate 28 is fixed on the insertion rods 27.

[0037] Specifically, the locking springs 29 are arranged to apply an upward elastic force to the push plate 28, so as to ensure that the insertion rods 27 are tightly inserted into the locking holes 26, prevent the support plate 24 from loosening, and improve the stability of the overall structure, and the pull plate 30 is arranged to pull the pull plate 30, so that the insertion rods 27 drive the push plate 28 to press the locking springs 29, so that the insertion rods 27 are pulled out of the locking holes 26 of the distance adjusting plate 23, thereby facilitating workers to slide the distance adjusting plate 23 to adjust the position of the support plate 24.

[0038] Further, the auxiliary locking set 15 comprises a guide rod 16, a limiting plate 17, a sliding slot hole 18 and an auxiliary spring 19, one of the horizontal plates 14 is provided with the guide rod 16 at one end, the guide rod 16 extends into the other horizontal plate 14 and is connected with the limiting plate 17, the other horizontal plate 14 is provided with the sliding slot hole 18 for sliding of the limiting plate 17, and the guide rod 16 is provided with the auxiliary spring 19 outside, and the auxiliary spring 19 is arranged in the sliding slot hole 18 of the horizontal plate 14.

[0039] Specifically, the stable sliding structure between the two horizontal plates 14 is formed by the guide rod 16, the limiting plate 17 and the sliding slot hole 18, and the inward elastic force of the limiting plate 17 is applied by the auxiliary spring 19, so that the guide rod 16 is tightly embedded in the sliding slot hole 18, the clamping and fixing force of the clamping plate 21 on the aluminum oxide plate is improved, the displacement of the aluminum oxide plate during processing is prevented, and the safety and reliability of the overall device are further improved.

[0040] Further, the lower surface of the clamping plate 21 is inclined upward near the horizontal plate 14 to form a clamping surface, and the clamping surface forms a certain angle with the supporting side plate 13, so as to facilitate the fixing of the aluminum oxide plate.

[0041] In use: the position of the supporting plate 24 in the middle supporting structure 20 is adjusted according to the width of the aluminum oxide plate, the pull plate 30 is pulled, the push plate 28 is driven by the inserting rod 27 to extrude the locking spring 29, so that the inserting rod 27 is pulled out of the locking hole 26 of the distance adjusting plate 23, so as to facilitate the worker to slide the distance adjusting plate 23 to adjust the position of the supporting plate 24, when the adjustment is completed, the locking spring 29 returns to the original state, the inserting rod 27 is reinserted into the locking hole 26, and the supporting plate 24 is stable, the whole device structure is compact, and the operation is simple and efficient.

[0042] Then the aluminum oxide plate is placed on the supporting side plate 13, the horizontal plate 14, the supporting seat 22 and the supporting plate 24, and then the servo motor 8 is started, the power is transmitted to the lead screw 5 by the servo motor 8, the moving block 6 is driven to drive the side plate 1 and the sliding block 9 to move accurately on the sliding rail 10, so as to control the position of the two side plates 1, and ensure that the clamping plate 21 can clamp and fix the aluminum oxide plate.

[0043] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An alumina plate holder characterized by: The utility model provides a kind of supporting structure of two-layered supporting structure, including side plate (1), the quantity of the side plate (1) is two, two side plate (1) bottom is connected with bottom plate (11) by locking group (2), and not less than two layers of support structure (12) are provided between two side plate (1); Support structure (12) includes support side plate (13), horizontal plate (14), auxiliary locking group (15), middle support structure (20) and clamping plate (21), the quantity of the support side plate (13) is two, the upper surface of support side plate (13) is provided with clamping plate (21), and support side plate (13) is fixed on side plate (1), and the end of support side plate (13) away from side plate (1) is vertically provided with horizontal plate (14), and auxiliary locking group (15) is provided between two horizontal plate (14), and the front and rear ends of horizontal plate (14) are provided with auxiliary locking group (15).

2. The alumina plate holder of claim 1, wherein: The middle support structure (20) includes support seat (22), distance adjusting plate (23), support plate (24) and fixed group (25), and one end of the horizontal plate (14) is provided with the support seat (22), the end of the support seat (22) away from the horizontal plate (14) is slidably connected with the distance adjusting plate (23), the upper surface of the distance adjusting plate (23) is provided with the support plate (24), and the bottom of the support seat (22) is provided with the fixed group (25).

3. An alumina plate holder according to claim 2, wherein: The fixed group (25) includes locking hole (26), plug rod (27), push plate (28), locking spring (29), pull plate (30) and mounting frame (31), two rows of locking holes (26) are formed in the distance adjusting plate (23), and the number of each row of locking holes (26) is not less than two, the bottom of the support seat (22) is provided with the mounting frame (31), the pull plate (30) is arranged below the mounting frame (31), the upper surface of the pull plate (30) is provided with two plug rods (27), the upper end of the plug rod (27) penetrates the mounting frame (31) and the support seat (22) and is inserted into the locking hole (26) of the support plate (24), the locking spring (29) is arranged outside the plug rod (27), the locking spring (29) is arranged in the mounting frame (31), and the upper surface of the locking spring (29) is connected with the push plate (28), and the push plate (28) is fixed on the plug rod (27).

4. The alumina plate holder of claim 1, wherein: The auxiliary locking group (15) includes guide rod (16), limiting plate (17), sliding slot hole (18) and auxiliary spring (19), one end of one of the horizontal plate (14) is provided with the guide rod (16), the guide rod (16) is connected with the limiting plate (17) by extending into the other horizontal plate (14), the sliding slot hole (18) is formed in the other horizontal plate (14) to facilitate the sliding of the limiting plate (17), the auxiliary spring (19) is arranged outside the guide rod (16), and the auxiliary spring (19) is arranged in the sliding slot hole (18) of the horizontal plate (14).

5. The alumina plate holder of claim 1, wherein: The locking group (2) comprises a rotating shaft (3), a fixed plate (4), a screw rod (5), a moving block (6), a sliding group (7) and a servo motor (8), the bottom of the side plate (1) is provided with the moving block (6) and two sliding groups (7), the moving block (6) is connected with the screw rod (5) through a screw rod nut, the two screw rods (5) are symmetrically arranged, the rotating shaft (3) is arranged between the two screw rods (5), the end, away from the rotating shaft (3), of the screw rod (5) is connected with the bottom plate (11) through the fixed plate (4), and the screw rod (5) is rotationally connected with the fixed plate (4), one of the screw rods (5) penetrates through the fixed plate (4) and is connected with the power output shaft of the servo motor (8), and the servo motor (8) is installed on the fixed plate (4) through a motor mounting seat.

6. An alumina plate holder according to claim 5, wherein: The moving block (6) is arranged between the two sliding groups (7), the sliding group (7) comprises a sliding block (9) and a sliding rail (10), the sliding block (9) is fixed at the bottom of the side plate, the bottom of the sliding block (9) is slidingly connected with the sliding rail (10), and the sliding rail (10) is fixed on the bottom plate (11).

7. The alumina plate holder of claim 1, wherein: The lower surface of the clamping plate (21) is inclined upward to form a clamping surface near the horizontal plate (14).

8. The alumina plate holder of claim 1, wherein: The side plate (1) is in an inverted T shape, and the bottom plate (11) is provided with four universal wheels at the bottom.

Citation Information

Patent Citations

  • Alumina plate placing rack with clamping and positioning functions

    CN218536808U