Stainless steel material box deformation repairing device

By designing a stainless steel box deformation repair device, the width and length repair plates are used to hammer the side of the box, which solves the gap problem caused by box deformation, realizes the regeneration and use of the box, and reduces production costs.

CN223264543UActive Publication Date: 2025-08-26HENAN HUANGHE WHIRLWIND CO LTD
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Patent Information

Application Number
CN202422397311.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-08-26
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The stainless steel box is deformed due to bumps during the diamond screening process, causing gaps between adjacent box, increasing replacement costs and production costs.

Method used

A stainless steel box deformation repair device is designed, including pillars and cutting boards. The cutting board is equipped with a width repair plate and a length repair plate, which is used to hammer each side of the material box to repair its flatness, and ensure the repaired verticality through reinforcement plates and baffles.

Benefits of technology

Repair the deformation of stainless steel box, ensure its recycling, and reduce the production cost of the diamond screening process.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223264543U_ABST
    Figure CN223264543U_ABST
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Abstract

The utility model relates to a deformation repairing device for a stainless steel material box. The deformation repairing device for the stainless steel material box comprises a supporting column and a cutting board. The cutting board is fixedly connected to the top ends of the supporting columns and comprises a width repairing board and a length repairing board. The width repairing plate and the length repairing plate are horizontally arranged; the width of the width repairing plate is matched with the width of a box opening of the stainless steel material box. The width of the length repairing plate is matched with the length of a box opening of the stainless steel material box. The width repairing plate is used for repairing the flatness of the side face where the width size of the stainless steel material box is located; the length repairing plate is used for repairing the flatness of the side face where the length size of the stainless steel material box is located. In this way, deformation of the stainless steel material box can be repaired, the stainless steel material box can be recycled, and the production cost of the diamond screening process is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of diamond screening, in particular to a stainless steel material box deformation repair device. Background Art

[0002] Diamond screening is a critical step in the production of synthetic diamonds, grading diamonds of varying sizes, shapes, and qualities. Diamonds of varying sizes, shapes, and qualities can meet diverse needs. Vibratory screening is a common diamond screening method and the operating principle of the most common diamond screening machine on the market. A diamond screening machine consists of a vibrating motor and a screen. The motor drives the screen to vibrate, causing the diamonds to roll and fall onto the screen for screening. Stainless steel hoppers are placed at the output of the diamond screening machine to collect the diamond particles of varying grades. When using stainless steel hoppers, several are typically arranged in a row, with adjacent hoppers tightly packed together, leaving no gaps to prevent diamond particles from entering the gaps between adjacent hoppers. When removing the diamond particles, the entire row of hoppers must be removed at once, which inevitably causes them to collide with each other. Furthermore, workers often gently tap the hoppers to ensure that the diamond particles are completely released. This impact inevitably deforms the hoppers themselves, creating gaps between adjacent hoppers. The current solution is to replace the deformed stainless steel box, which increases the production cost of the diamond screening process. Utility Model Content

[0003] The purpose of the utility model is to solve the above problems and provide a stainless steel material box deformation repair device.

[0004] The technical solution of the present utility model is: a stainless steel material box deformation repair device includes a pillar and an anvil; the anvil is fixedly connected to the top of the pillar, and is used to hammer the various sides of the stainless steel material box to repair the stainless steel material box; the anvil includes a width repair plate and a length repair plate; the width repair plate and the length repair plate are both horizontally arranged, and are respectively used to repair the width and length directions of the box opening of the stainless steel material box; the width of the width repair plate matches the width of the box opening of the stainless steel material box; the stainless steel material box is inserted on the width repair plate so that the top surface of the width repair plate corresponds to the side where the width dimension of the stainless steel material box is located; then the side where the width dimension of the stainless steel material box is located is hammered to repair its flatness; the width of the length repair plate matches the length of the box opening of the stainless steel material box; the stainless steel material box is inserted on the length repair plate so that the top surface of the length repair plate corresponds to the side where the length dimension of the stainless steel material box is located; then the side where the length dimension of the stainless steel material box is hammered to repair its flatness.

[0005] Preferably, the length of the width repair plate is ≥ the depth of the stainless steel box, so that all areas on the side where the width dimension of the stainless steel box is located can be repaired; the length of the length repair plate is ≥ the depth of the stainless steel box, so that all areas on the side where the length dimension of the stainless steel box is located can be repaired.

[0006] Preferably, length baffles extend downward from both ends of the width repair plate; the length baffle is arranged perpendicular to the width repair plate, and cooperates with the side where the length dimension of the stainless steel material box is located, ensuring that the side where the length dimension of the stainless steel material box after repair is located is perpendicular to the side where the width dimension of the stainless steel material box is located; width baffles extend downward from both ends of the length repair plate; the width baffle is arranged perpendicular to the length repair plate, and cooperates with the side where the width dimension of the stainless steel material box is located, ensuring that the side where the width dimension of the stainless steel material box after repair is located is perpendicular to the side where the length dimension of the stainless steel material box is located.

[0007] Furthermore, the anvil also includes reinforcing rib plate A and reinforcing rib plate B; one end of reinforcing rib plate A is connected to the bottom of the length repair plate, and the other end is connected to the inner wall of the width baffle to strengthen the connection strength between the length repair plate and the reinforcing rib plate A; one end of reinforcing rib plate B is connected to the bottom of the width repair plate, and the other end is connected to the inner wall of the length baffle to strengthen the connection strength between the width repair plate and the reinforcing rib plate B.

[0008] Furthermore, there are several reinforcing rib plates A, which are evenly distributed along the length direction of the length repair plate, so that the width baffle is evenly reinforced; there are several reinforcing rib plates B, which are evenly distributed along the length direction of the width repair plate, so that the length baffle is evenly reinforced.

[0009] Furthermore, the extension length of the length baffle is equivalent to the extension length of the width baffle; the anvil also includes a blocking plate; the two ends of the blocking plate are respectively connected to the end of the length baffle and the end of the width baffle, so that the length baffle and the width baffle are connected into one, thereby increasing the structural stability of the anvil.

[0010] Furthermore, the extension length of the width baffle matches the width of the box opening of the stainless steel box, so that the entire area of ​​the side where the width dimension of the repaired stainless steel box is located is perpendicular to the entire area of ​​the side where the length dimension of the stainless steel box is located.

[0011] Preferably, the lower end of the support is vertically fixed with a base plate to expand the contact area with the ground and increase the supporting stability of the repair device.

[0012] Furthermore, the pillar includes a top rib plate and a bottom rib plate; there are several bottom rib plates distributed around the circumference of the pillar; one end of the bottom rib plate is connected to the side wall of the pillar, and the other end is connected to the bottom plate, thereby increasing the connection strength between the lower end of the pillar and the bottom plate; there are several top rib plates distributed around the circumference of the pillar; one end of the top rib plate is connected to the side wall of the pillar, and the other end is connected to the bottom of the anvil, thereby increasing the connection strength between the upper end of the pillar and the anvil.

[0013] Preferably, the upper end of the pillar is fixedly connected to the end of the length repair plate; the length repair plate and the width repair plate are arranged on both sides of the pillar so that the center of gravity of the anvil is as close as possible to the top of the pillar, thereby increasing the support stability of the repair device.

[0014] Preferably, the support is a solid cylinder to enhance its own structural strength and ensure the support stability of the cutting board.

[0015] The beneficial effects of the present invention are as follows: the stainless steel box deformation repair device of the present invention has the following advantages:

[0016] (1) The width repair plate of the utility model is used to repair the flatness of the side of the stainless steel material box where the width dimension is located; the length repair plate is used to repair the flatness of the side of the stainless steel material box where the length dimension is located; this can repair the deformation of the stainless steel material box, so that the stainless steel material box can be recycled and the production cost of the diamond screening process can be reduced;

[0017] (2) The length baffle of the utility model can ensure that the side of the stainless steel material box where the length dimension is located after the repair is perpendicular to the side of the stainless steel material box where the width dimension is located; the width baffle can ensure that the side of the stainless steel material box where the width dimension is located after the repair is perpendicular to the side of the stainless steel material box where the length dimension is located. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a diagram showing the use of a stainless steel box deformation repair device of the utility model;

[0019] Figure 2 yes Figure 1 The main view;

[0020] Figure 3 yes Figure 2 AA section view;

[0021] Figure 4 yes Figure 2 BB cross-sectional view;

[0022] Figure 5 yes Figure 2 CC cross-sectional view;

[0023] Figure 6 yes Figure 2 DD cross-sectional view;

[0024] In the figure: 0. Stainless steel material box, 1. Pillar, 11. Bottom plate, 12. Top rib plate, 13. Bottom rib plate, 2. Anvil, 21. Width repair plate, 22. Length repair plate, 23. Reinforcement rib plate A, 24. Reinforcement rib plate B, 25. Blocking plate, 26. Length baffle, 27. Width baffle. DETAILED DESCRIPTION

[0025] Example 1: See Figure 1-6 , a stainless steel material box deformation repair device includes a pillar 1 and an anvil 2; the anvil 2 is fixedly connected to the top of the pillar 1, and is used to hammer the various sides of the stainless steel material box 0 to repair the stainless steel material box 0; the anvil 2 includes a width repair plate 21 and a length repair plate 22; the width repair plate 21 and the length repair plate 22 are both horizontally arranged and used to repair the width and length directions of the box opening of the stainless steel material box 0 respectively; the width of the width repair plate 21 matches the box opening width of the stainless steel material box 0; the stainless steel material box 0 is inserted on the width repair plate 21, so that the top surface of the width repair plate 21 corresponds to the side where the width dimension of the stainless steel material box 0 is located; then hammer the side where the width dimension of the stainless steel material box 0 is located to repair its flatness; the width of the length repair plate 22 matches the box opening length of the stainless steel material box 0; the stainless steel material box 0 is inserted on the length repair plate 22, so that the top surface of the length repair plate 22 corresponds to the side where the length dimension of the stainless steel material box 0 is located; then hammer the side where the length dimension of the stainless steel material box 0 is located to repair its flatness.

[0026] Compared with the prior art, the width repair plate 21 of the present invention is used to repair the flatness of the side of the stainless steel material box 0 where the width dimension is located; the length repair plate 22 is used to repair the flatness of the side of the stainless steel material box 0 where the length dimension is located; this can repair the deformation of the stainless steel material box 0, so that the stainless steel material box 0 can be recycled, reducing the production cost of the diamond screening process.

[0027] The end face of the width repair plate 21 and the top face of the width repair plate 21 are perpendicular to each other, and are used to clamp the side where the length dimension of the stainless steel material box 0 is located when hammering, which is beneficial for making the side where the width dimension of the stainless steel material box 0 is located after the repair and the side where the length dimension of the stainless steel material box 0 is located in a perpendicular state to each other; the end face of the length repair plate 22 and the top face of the length repair plate 22 are perpendicular to each other, and are used to clamp the side where the width dimension of the stainless steel material box 0 is located when hammering, which is beneficial for making the side where the length dimension of the stainless steel material box 0 is located after the repair and the side where the width dimension of the stainless steel material box 0 is located in a perpendicular state to each other.

[0028] The length of the width repair plate 21 is ≥ the depth of the stainless steel material box 0, so that the entire area of ​​the side where the width dimension of the stainless steel material box 0 is located can be repaired; the length of the length repair plate 22 is ≥ the depth of the stainless steel material box 0, so that the entire area of ​​the side where the length dimension of the stainless steel material box 0 is located can be repaired.

[0029] Length baffles 26 extend downward from both ends of the width repair plate 21; the length baffle 26 is arranged perpendicular to the width repair plate 21, and cooperates with the side where the length dimension of the stainless steel material box 0 is located, ensuring that the side where the length dimension of the stainless steel material box 0 is located after the repair is perpendicular to the side where the width dimension of the stainless steel material box 0 is located; width baffles 27 extend downward from both ends of the length repair plate 22; the width baffle 27 is arranged perpendicular to the length repair plate 22, and cooperates with the side where the width dimension of the stainless steel material box 0 is located, ensuring that the side where the width dimension of the stainless steel material box 0 is located after the repair is perpendicular to the side where the length dimension of the stainless steel material box 0 is located.

[0030] The anvil 2 also includes a reinforcing rib plate A 23 and a reinforcing rib plate B 24; one end of the reinforcing rib plate A 23 is connected to the bottom of the length repair plate 22, and the other end is connected to the inner wall of the width baffle 27 to strengthen the connection strength between the length repair plate 22 and the reinforcing rib plate A 23; one end of the reinforcing rib plate B 24 is connected to the bottom of the width repair plate 21, and the other end is connected to the inner wall of the length baffle 26 to strengthen the connection strength between the width repair plate 21 and the reinforcing rib plate B 24.

[0031] There are several reinforcing rib plates 23, which are evenly distributed along the length direction of the length repair plate 22, so that the width baffle 27 is evenly reinforced; there are 8 reinforcing rib plates 23 in this embodiment; there are 4 on each side of the length repair plate 22; there are several reinforcing rib plates 24, which are evenly distributed along the length direction of the width repair plate 21, so that the length baffle 26 is evenly reinforced; there are 6 reinforcing rib plates 24 in this embodiment; there are 3 on each side of the width repair plate 21.

[0032] Several reinforcing rib plates A 23 are symmetrically arranged relative to the length repair plate 22, and the width baffles 27 on both sides of the length repair plate 22 are increased to obtain the same degree of structural reinforcement; several reinforcing rib plates B 24 are symmetrically arranged relative to the width repair plate 21, and the length baffles 26 on both sides of the width repair plate 21 are increased to obtain the same degree of structural reinforcement.

[0033] The extension length of the length baffle 26 is equivalent to the extension length of the width baffle 27; the anvil 2 also includes a blocking plate 25; the two ends of the blocking plate 25 are respectively connected to the end of the length baffle 26 and the end of the width baffle 27, so that the length baffle 26 and the width baffle 27 are connected into one, increasing the structural stability of the anvil 2.

[0034] The extension length of the width baffle 27 matches the box opening width of the stainless steel material box 0, so that the entire area of ​​the side where the width dimension of the repaired stainless steel material box 0 is located is perpendicular to the entire area of ​​the side where the length dimension of the stainless steel material box 0 is located.

[0035] The lower end of the support 1 is vertically fixed with a bottom plate 11 to expand the contact area with the ground and increase the supporting stability of the repair device.

[0036] The pillar 1 includes a top rib 12 and a bottom rib 13; there are several bottom ribs 13, which are distributed around the circumference of the pillar 1; one end of the bottom rib 13 is connected to the side wall of the pillar 1, and the other end is connected to the bottom plate 11, increasing the connection strength between the lower end of the pillar 1 and the bottom plate 11; there are 3 bottom ribs 13 in this embodiment; there are several top ribs 12, which are distributed around the circumference of the pillar 1; one end of the top rib 12 is connected to the side wall of the pillar 1, and the other end is connected to the bottom of the anvil 2, increasing the connection strength between the upper end of the pillar 1 and the anvil 2; there are 2 top ribs 12 in this embodiment.

[0037] The working principle of this embodiment is: the stainless steel material box 0 is inserted on the length repair plate 22, so that the top surface of the length repair plate 22 corresponds to the side where the length dimension of the stainless steel material box 0 is located; then the side where the length dimension of the stainless steel material box 0 is located is hammered to repair its flatness; the stainless steel material box 0 is inserted on the width repair plate 21, so that the top surface of the width repair plate 21 corresponds to the side where the width dimension of the stainless steel material box 0 is located; then the side where the width dimension of the stainless steel material box 0 is hammered to repair its flatness.

[0038] Example 2: Example 2 is basically the same as Example 1, and the similarities are not repeated here. The difference is that the upper end of the pillar 1 is fixedly connected to the end of the length repair plate 22; the length repair plate 22 and the width repair plate 21 are arranged on both sides of the pillar 1, so that the center of gravity of the anvil 2 is as close as possible to the top of the pillar 1, thereby increasing the support stability of the repair device.

[0039] The support 1 is a solid cylinder, which strengthens its own structural strength and ensures the supporting stability of the cutting board 2.

Claims

1. A stainless steel box deformation repair device, characterized in that: It includes a pillar and an anvil; the anvil is fixed to the top of the pillar, and includes a width repair plate and a length repair plate; the width repair plate and the length repair plate are both arranged horizontally; the width of the width repair plate matches the width of the box opening of the stainless steel material box; the width of the length repair plate matches the length of the box opening of the stainless steel material box.

2. The stainless steel box deformation repair device according to claim 1, characterized in that: The length of the width repair plate ≥ the depth of the stainless steel box; the length of the length repair plate ≥ the depth of the stainless steel box.

3. The stainless steel box deformation repair device according to claim 1, characterized in that: Length baffles are extended downward from both ends of the width repair plate; the length baffle is arranged perpendicular to the width repair plate; width baffles are extended downward from both ends of the length repair plate; the width baffle is arranged perpendicular to the length repair plate.

4. The stainless steel box deformation repair device according to claim 3, characterized in that: The anvil also includes reinforcing rib plate A and reinforcing rib plate B; one end of reinforcing rib plate A is connected to the bottom of the length repair plate, and the other end is connected to the inner wall of the width baffle; one end of reinforcing rib plate B is connected to the bottom of the width repair plate, and the other end is connected to the inner wall of the length baffle.

5. The stainless steel box deformation repair device according to claim 4, characterized in that: There are several reinforcing rib plates A, which are evenly distributed along the length direction of the length repair plate; there are several reinforcing rib plates B, which are evenly distributed along the length direction of the width repair plate.

6. The stainless steel box deformation repair device according to claim 3, characterized in that: The extension length of the length baffle is equal to the extension length of the width baffle; the anvil also includes a blocking plate; the two ends of the blocking plate are respectively connected to the end of the length baffle and the end of the width baffle.

7. The stainless steel box deformation repair device according to claim 1, characterized in that: The lower end of the support is vertically fixed with a base plate.

8. The stainless steel box deformation repair device according to claim 7, characterized in that: The pillar includes a top rib and a bottom rib; there are several bottom ribs distributed around the circumference of the pillar; one end of the bottom rib is connected to the side wall of the pillar, and the other end is connected to the bottom plate; there are several top ribs distributed around the circumference of the pillar; one end of the top rib is connected to the side wall of the pillar, and the other end is connected to the bottom of the anvil.

9. The stainless steel box deformation repair device according to claim 1, characterized in that: The upper end of the pillar is fixedly connected to the end of the length repair plate; the length repair plate and the width repair plate are arranged on both sides of the pillar.

10. The stainless steel box deformation repair device according to claim 1, characterized in that: The support is a solid cylinder.