Clamp for stainless steel production

By designing a clamp with a sliding frame and rotating clamping components, the problems of clamping length and diameter adaptability and debris splashing in stainless steel pipe clamps were solved, achieving flexible clamping and cleaning effects, and improving processing efficiency and safety.

CN118046339BActive Publication Date: 2026-05-08江苏正驰不锈钢有限公司
View PDF 6 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
江苏正驰不锈钢有限公司
Filing Date
2024-03-14
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing stainless steel pipe clamps have limitations when clamping stainless steel pipes of different lengths and diameters, and it is difficult to control the flying debris during processing.

Method used

A fixture is designed that includes a sliding frame, a rotating clamping assembly, a surrounding plate, a cleaning assembly, and a receiving assembly. The position of the clamping assembly is adjusted by moving the sliding frame and driving the screw. The surrounding plate prevents debris from splashing. The cleaning assembly cleans the outer wall of the pipe, and the receiving assembly collects the debris.

Benefits of technology

It enables flexible clamping of stainless steel pipes of different lengths and diameters, preventing debris from splashing and effectively cleaning the outer wall of the pipe, thus improving processing efficiency and safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118046339B_ABST
    Figure CN118046339B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of stainless steel production clamp, and disclose a kind of clamp for stainless steel production, including rotary clamping assembly, rotary clamping assembly is provided with two, one of rotary clamping assembly is installed in the top of sliding frame, another rotary clamping assembly is installed in the top of fixed frame, screw is installed between two rotary clamping assemblies, and the sliding frame is driven by screw;The present application is set by the setting of sliding frame, by rotating screw, sliding frame is driven to move, when the stainless steel pipeline of different length is clamped, by adjusting sliding frame, so as to adjust two rotary clamping assemblies, shorter stainless steel pipeline, rotary clamping assembly is adjusted to the clamping of closer distance, and longer stainless steel pipeline is directly through the inside of two rotary clamping assemblies.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of stainless steel production fixtures and equipment, specifically a fixture for stainless steel production. Background Technology

[0002] Stainless steel pipe is a hollow, long, round steel material, widely used in industrial pipelines for petroleum, chemical, medical, food, light industry, and machinery, as well as in mechanical structural components. Furthermore, it is lighter in weight while maintaining the same bending and torsional strength, making it widely used in the manufacture of mechanical parts and engineering structures.

[0003] Application number 201910119674.6 discloses a stainless steel pipe rotary clamp, including an operating table, baffles correspondingly arranged on both sides of the operating table, and a screw rotatably mounted on the baffles; a fixing mechanism is provided at one end of the screw facing the center of the operating table, and a handwheel is provided at the other end; the fixing mechanism includes a positioning cover fixed on the screw and a positioning post provided in the center of the positioning cover. This invention is simple to operate and easy to use. The stainless steel pipe can be fixed by rotating the handwheel, greatly reducing the labor intensity of workers and improving their work efficiency. By setting a fixing mechanism on the screw, this clamp can not only clamp and fix the stainless steel pipe, but also, through the turntable rotatably mounted on the positioning post, allow the steel pipe to easily rotate with the turntable after being clamped and fixed on the support bar by the clamping components, thus facilitating the next processing operation and greatly improving the processing efficiency of the stainless steel pipe.

[0004] While this setup can not only clamp and fix the stainless steel pipe, but also allow the steel pipe to easily rotate with the turntable mounted on the positioning column after being clamped and fixed to the support bar, thus facilitating the next processing operation and greatly improving the processing efficiency of the stainless steel pipe, this setup relies on clamping the end of the stainless steel pipe for holding and flipping. The stainless steel pipe has an unpredictable shape, and the clamping device has certain limitations when the stainless steel pipe is long or short. Summary of the Invention

[0005] The purpose of this invention is to provide a fixture for stainless steel production to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the present invention is achieved through the following technical solution:

[0007] The present invention is a fixture for stainless steel production, including a base, the base including a bottom plate, a sliding groove provided on the upper surface of the bottom plate, a fixing frame installed on the upper surface of the bottom plate, and a sliding frame slidably connected to the sliding groove.

[0008] The rotating clamping assembly has two components, one of which is mounted on the top of the sliding frame and the other is mounted on the top of the fixed frame.

[0009] A screw is installed between the two rotating clamping assemblies, and the screw drives one of the sliding frames.

[0010] Furthermore, the rotating clamping assembly includes an outer ring frame, with two outer ring frames respectively mounted on the top of the sliding frame and the fixed frame. A rotating ring body is rotatably connected to the inner wall of the outer ring frame. Several limiting holes are provided on the outer wall of the outer ring frame. A fixed rod is fixedly connected to the outer wall of the rotating ring body. A limiting plate is fixedly connected to the end of the fixed rod away from the rotating ring body. A limiting rod is slidably connected to the outer wall of the fixed rod. The end of the limiting rod away from the fixed rod is inserted into the inside of the limiting hole. The purpose of this arrangement is that when it is necessary to flip the clamped stainless steel pipe, the sliding limiting rod moves out of the limiting hole, thereby rotating the rotating ring body and driving the stainless steel pipe to rotate.

[0011] Furthermore, the rotating ring body has four sliding grooves inside, and springs are installed inside the sliding grooves. Sliding rods are slidably connected inside the sliding grooves, and the sliding rods extend through the sliding grooves to the inner center of the rotating ring body. A locking block is installed at the end of the sliding rod away from the spring. The purpose of this arrangement is to adjust the locking block by the contraction and sliding of the spring and the sliding rod to accommodate pipes of different diameters.

[0012] Furthermore, four surrounding plates are installed on the outside of the two rotating clamping assemblies. The four surrounding plates form two sets, and the two sets of surrounding plates slide against each other. The purpose of this arrangement is to prevent debris from splashing to both sides of the equipment during the processing of stainless steel pipes. The surrounding plates are arc-shaped, and the debris falls upward along the surrounding plates onto the receiving assembly.

[0013] Furthermore, a cleaning assembly is installed between the two enclosures. There are two cleaning assemblies, each consisting of a connecting rod, a friction block, and a ring. The two connecting rods are connected to the outer wall of the ring and are distributed on both sides of the ring. The ring is connected to the enclosure through the connecting rods. The purpose of this arrangement is to install the cleaning assembly and the enclosure.

[0014] Furthermore, the connecting rod has a movable groove inside, a first spring is installed inside the movable groove, and a second sliding rod is slidably connected inside the movable groove. The second sliding rod extends to the inner center of the ring body, and a friction block is installed at the end of the second sliding rod away from the first spring. The purpose of this arrangement is to allow the first spring and the second sliding rod to cooperate in extension and retraction to adapt to the width of the stainless steel pipe. When the pipe passes through, the friction block cleans the outer wall of the stainless steel pipe.

[0015] Furthermore, a sliding groove is provided on the upper surface of the base plate, and the bottom of the sliding frame is slidably connected to the inner side of the sliding groove. The screw extends through the sliding frame to the inside of the fixed frame. The screw is threadedly connected to the sliding frame and rotatably connected to the fixed frame. The purpose of this arrangement is to drive the sliding frame to move by rotating the screw. When clamping stainless steel pipes of different lengths, the two rotating clamping components can be adjusted by adjusting the sliding frame to adapt to different stainless steel pipe lengths.

[0016] Furthermore, a receiving assembly is installed on the outer wall of the sliding frame. The receiving assembly includes an arc-shaped plate. A second connecting rod is fixedly connected to the outer wall of the sliding frame. A fixed block is rotatably connected to the end of the second connecting rod away from the sliding frame. The arc-shaped plate is installed on the top of the fixed block. Several protrusions are installed on the lower surface of the arc-shaped plate. The lower surface of the arc-shaped plate is connected to the upper surface of the second connecting rod through a second spring. The purpose of this arrangement is to push the arc-shaped plate to move during the movement of the sliding frame. The protrusions cooperate with the vibrating element to shake. The second spring is used to reset the arc-shaped plate and the second connecting rod.

[0017] Furthermore, a vibrating element is installed on the inner side of the fixed frame. The vibrating element includes a third spring and a steel ball. The steel ball is connected to the outer wall of the fixed frame through the third spring. An inclined block is installed on the outer wall of the fixed frame away from the receiving component. A collection box is installed on the outer wall of the bottom plate close to the fixed frame. An inclined block is installed on the side of the fixed frame close to the collection box. The bottom of the inclined block is inclined towards the collection box. The purpose of this arrangement is that when the arc plate moves towards the collection box, the inclined block presses down on the arc plate, causing the arc plate to tilt towards the collection box. At the same time as tilting, it vibrates with the steel ball and the third spring, shaking off the debris on the outer wall of the arc plate.

[0018] The present invention has the following beneficial effects:

[0019] (1) The present invention uses a sliding frame to drive the sliding frame to move by rotating the screw. When clamping stainless steel pipes of different lengths, the two rotating clamping components are adjusted by adjusting the sliding frame. For shorter stainless steel pipes, the rotating clamping components are adjusted to a closer distance for clamping, while for longer stainless steel pipes, they pass directly through the interior of the two rotating clamping components.

[0020] (2) The present invention prevents debris from splashing to both sides of the equipment during the processing of stainless steel pipes by setting up the enclosure. The enclosure is set in an arc shape, and the debris falls upward along the enclosure onto the receiving component.

[0021] (3) The present invention adjusts the width of the stainless steel pipe by setting the cleaning component and the extension and retraction of the first spring and the second sliding rod. When the pipe passes through, the friction block cleans the outer wall of the stainless steel pipe.

[0022] (4) By setting up the receiving component, the present invention pushes the arc plate to move during the movement of the sliding frame. The set protrusion works with the vibrating component to shake. The second spring is used to reset between the arc plate and the second connecting rod. When the arc plate moves towards the collection box, the inclined block presses down on the arc plate, and the arc plate tilts towards the collection box. While tilting, it shakes with the steel ball and the third spring, shaking off the debris on the outer wall of the arc plate.

[0023] Of course, any product implementing this invention does not necessarily need to achieve all of the above advantages at the same time. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 This is a schematic diagram of the rotating clamping structure of the present invention;

[0027] Figure 3 This is a schematic diagram of the enclosure structure of the present invention;

[0028] Figure 4 This is a schematic diagram of the cleaning structure of the present invention;

[0029] Figure 5 This is a schematic diagram of the receiving structure of the present invention;

[0030] Figure 6 This is a schematic diagram of the base plate structure of the present invention;

[0031] Figure 7 This is a schematic diagram of the receiving structure of the present invention;

[0032] The attached diagram lists the components represented by each number as follows:

[0033] In the diagram: 1. Base; 101. Base plate; 102. Sliding groove; 103. Fixing frame; 2. Rotating clamping assembly; 201. Outer ring frame; 202. Rotating ring body; 203. Fixing rod; 204. Limiting plate; 205. Limiting rod; 206. Spring; 207. Sliding rod; 208. Locking block; 209. Limiting hole; 3. Enclosure plate; 4. Cleaning assembly; 401. Connecting rod; 402. Spring; 403. Second sliding rod; 404. Friction block; 405. Ring body; 5. Screw; 6. Collection box; 7. Receiving assembly; 701. Arc plate; 702. Protrusion; 703. Second connecting rod; 704. Second spring; 705. Fixing block; 8. Sliding frame; 9. Vibrating component; 10. Inclined block. Detailed Implementation

[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0035] Please see Figure 1 - Figure 7 As shown, the present invention is a fixture for stainless steel production, including a base 1, the base 1 including a base plate 101, a sliding groove 102 provided on the upper surface of the base plate 101, a fixing frame 103 installed on the upper surface of the base plate 101, and a sliding frame 8 slidably connected to the sliding groove 102.

[0036] Rotary clamping assembly 2, there are two of them, one of which is installed on the top of the sliding frame 8, and the other is installed on the top of the fixed frame 103;

[0037] A screw 5 is installed between the two rotating clamping assemblies 2, and the screw 5 drives one of the sliding frames 8.

[0038] The rotating clamping assembly 2 includes an outer ring frame 201. Two outer ring frames 201 are respectively installed on the top of the sliding frame 8 and the fixed frame 103. A rotating ring body 202 is rotatably connected to the inner wall of the outer ring frame 201. Several limiting holes 209 are opened on the outer wall of the outer ring frame 201. A fixed rod 203 is fixedly connected to the outer wall of the rotating ring body 202. A limiting plate 204 is fixedly connected to the end of the fixed rod 203 away from the rotating ring body 202. A limiting rod 205 is slidably connected to the outer wall of the fixed rod 203. The end of the limiting rod 205 away from the fixed rod 203 is inserted into the inside of the limiting hole 209. The purpose of this arrangement is that when it is necessary to flip the clamped stainless steel pipe, the sliding limiting rod 205 moves out of the inside of the limiting hole 209, thereby rotating the rotating ring body 202 and driving the stainless steel pipe to rotate.

[0039] The rotating ring 202 has four sliding grooves inside. A spring 206 is installed inside the sliding groove. A sliding rod 207 is slidably connected inside the sliding groove. The sliding rod 207 extends through the sliding groove to the inner center of the rotating ring 202. A locking block 208 is installed at the end of the sliding rod 207 away from the spring 206. The purpose of this arrangement is to adjust the locking block 208 by the contraction and sliding of the spring 206 and the sliding rod 207 to accommodate pipes of different diameters.

[0040] Four surrounding plates 3 are installed on the outside of the two rotating clamping components 2. The four surrounding plates 3 form two groups, and the two groups of surrounding plates 3 slide against each other. The purpose of this setting is to prevent the debris from splashing to both sides of the equipment when processing stainless steel pipes. The surrounding plates 3 are arc-shaped, and the debris falls upward along the surrounding plates 3 onto the receiving component 7.

[0041] A cleaning assembly 4 is installed between the two enclosure panels 3. There are two cleaning assemblies 4. The cleaning assembly 4 includes a connecting rod 401, a friction block 404, and a ring body 405. The two connecting rods 401 are connected to the outer wall of the ring body 405. The two connecting rods 401 are distributed on both sides of the ring body 405. The ring body 405 is connected to the enclosure panel 3 through the connecting rods 401. The purpose of this arrangement is to install the cleaning assembly 4 and the enclosure panel 3.

[0042] The connecting rod 401 has a moving groove inside, and a first spring 402 is installed inside the moving groove. A second sliding rod 403 is slidably connected inside the moving groove. The second sliding rod 403 extends to the inner center of the ring 405. A friction block 404 is installed at the end of the second sliding rod 403 away from the first spring 402. The purpose of this arrangement is to allow the first spring 402 and the second sliding rod 403 to cooperate in telescopic coordination to adapt to the width of the stainless steel pipe. When the pipe passes through, the friction block 404 cleans the outer wall of the stainless steel pipe.

[0043] The upper surface of the base plate 101 is provided with a sliding groove 102. The bottom of the sliding frame 8 is slidably connected to the inner side of the sliding groove 102. The screw 5 extends through the sliding frame 8 to the inside of the fixed frame 103. The screw 5 is threadedly connected to the sliding frame 8 and rotatably connected to the fixed frame 103. The purpose of this arrangement is to drive the sliding frame 8 to move by rotating the screw 5. When clamping stainless steel pipes of different lengths, the two rotating clamping components 2 can be adjusted by adjusting the sliding frame 8 to adapt to different stainless steel pipe lengths.

[0044] A receiving assembly 7 is installed on the outer wall of the sliding frame 8. The receiving assembly 7 includes an arc-shaped plate 701. A second connecting rod 703 is fixedly connected to the outer wall of the sliding frame 8. A fixing block 705 is rotatably connected to the end of the second connecting rod 703 away from the sliding frame 8. The arc-shaped plate 701 is installed on the top of the fixing block 705. Several protrusions 702 are installed on the lower surface of the arc-shaped plate 701. The lower surface of the arc-shaped plate 701 is connected to the upper surface of the second connecting rod 703 through a second spring 704. The purpose of this arrangement is to push the arc-shaped plate 701 to move during the movement of the sliding frame 8. The protrusions 702 cooperate with the vibrating element 9 to vibrate. The second spring 704 is used to reset the arc-shaped plate 701 and the second connecting rod 703.

[0045] A vibrating element 9 is installed on the inner side of the fixed frame 103. The vibrating element 9 includes a third spring and a steel ball. The steel ball is connected to the outer wall of the fixed frame 103 through the third spring. An inclined block 10 is installed on the outer wall of the fixed frame 103 away from the receiving component 7. A collection box 6 is installed on the outer wall of the bottom plate close to the fixed frame 103. An inclined block 10 is installed on the side of the fixed frame 103 close to the collection box 6. The bottom of the inclined block 10 is inclined towards the side of the collection box 6. The purpose of this arrangement is that when the arc plate 701 moves towards the collection box 6, the inclined block 10 presses down on the arc plate 701, and the arc plate 701 tilts towards the collection box 6. At the same time as tilting, it vibrates with the steel ball and the third spring, shaking off the debris on the outer wall of the arc plate 701.

[0046] In use, the clamping block 208 is adjusted by the contraction and sliding of the spring 206 and the sliding rod 207 to accommodate pipes of different diameters. The sliding frame 8 is moved by rotating the screw 5. When clamping stainless steel pipes of different lengths, the two rotating clamping components 2 are adjusted by adjusting the sliding frame 8. For shorter stainless steel pipes, the rotating clamping components 2 are adjusted to a closer distance for clamping, while longer stainless steel pipes pass directly through the interior of the two rotating clamping components 2. When it is necessary to flip the clamped stainless steel pipe, the sliding limit rod 205 moves out of the limit hole 209, thereby rotating the rotating ring 202 and causing the stainless steel pipe to rotate. The surrounding plate prevents debris from falling during the processing of the stainless steel pipe. The debris splashes to both sides of the equipment. The enclosure 3 is arc-shaped, and the debris falls upward along the enclosure 3 onto the receiving assembly 7. The extension and retraction of the first spring 402 and the second sliding rod 403 adapt to the width of the stainless steel pipe. When the pipe passes through, the friction block 404 cleans the outer wall of the stainless steel pipe. During the movement of the sliding frame 8, the arc plate 701 is pushed to move. The set protrusion 702 works with the vibrating component 9 to shake. The second spring 704 is used to reset between the arc plate 701 and the second connecting rod 703. When the arc plate 701 moves towards the collection box 6, the inclined block 10 presses down on the arc plate 701, and the arc plate 701 tilts towards the collection box 6. At the same time as tilting, it shakes with the steel ball and the third spring, shaking off the debris on the outer wall of the arc plate 701.

[0047] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to specific implementations. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.

Claims

1. A fixture for stainless steel production, characterized in that, include: The base (1) includes a base plate (101), the upper surface of the base plate (101) is provided with a sliding groove (102), a fixing frame (103) is installed on the upper surface of the base plate (101), and a sliding frame (8) is slidably connected to the sliding groove (102). Rotary clamping assembly (2), two of which are provided, one of which is mounted on the top of the sliding frame (8) and the other of which is mounted on the top of the fixed frame (103); A screw (5) is installed between the two rotating clamping assemblies (2), and the screw (5) drives the sliding frame (8); The bottom of the sliding frame (8) is slidably connected to the inside of the sliding groove (102). The screw (5) extends through the sliding frame (8) to the inside of the fixed frame (103). The screw (5) is threadedly connected to the sliding frame (8) and rotatably connected to the fixed frame (103). A receiving assembly (7) is installed on the outer wall of the sliding frame (8). The receiving assembly (7) includes an arc plate (701). A second connecting rod (703) is fixedly connected to the outer wall of the sliding frame (8). A fixing block (705) is rotatably connected to one end of the second connecting rod (703) away from the sliding frame (8). The arc plate (701) is installed on the top of the fixing block (705). Several protrusions (702) are installed on the lower surface of the arc plate (701). The lower surface of the arc plate (701) is connected to the upper surface of the second connecting rod (703) through a second spring (704). A vibrating element (9) is installed on the inner side of the fixed frame (103). The vibrating element (9) includes a third spring and a steel ball. The steel ball is connected to the outer wall of the fixed frame (103) through the third spring. An inclined block (10) is installed on the outer wall of the fixed frame (103) away from the receiving assembly (7). A collection box (6) is installed on the outer wall of the bottom plate near the fixed frame (103). An inclined block (10) is installed on the side of the fixed frame (103) near the collection box (6). The bottom of the inclined block (10) is inclined toward the side of the collection box (6).

2. The stainless steel production fixture according to claim 1, characterized in that: The rotating clamping assembly (2) includes an outer ring frame (201), two outer ring frames (201) are respectively installed on the top of the sliding frame (8) and the fixed frame (103), a rotating ring body (202) is rotatably connected to the inner wall of the outer ring frame (201), a plurality of limiting holes (209) are opened on the outer wall of the outer ring frame (201), a fixed rod (203) is fixedly connected to the outer wall of the rotating ring body (202), a limiting plate (204) is fixedly connected to one end of the fixed rod (203) away from the rotating ring body (202), a limiting rod (205) is slidably connected to the outer wall of the fixed rod (203), and one end of the limiting rod (205) away from the fixed rod (203) is inserted into the inside of the limiting hole (209).

3. A fixture for stainless steel production according to claim 2, characterized in that: The rotating ring (202) has four sliding grooves inside. A spring (206) is installed inside the sliding groove of the rotating ring (202). A sliding rod (207) is slidably connected inside the sliding groove. The sliding rod (207) extends through the sliding groove to the inner center of the rotating ring (202). A locking block (208) is installed at the end of the sliding rod (207) away from the spring (206).

4. A fixture for stainless steel production according to claim 3, characterized in that: Four side plates (3) are mounted on the outer sides of the two rotating clamping assemblies (2), and the four side plates (3) form two groups, which slide against each other.

5. A stainless steel production fixture according to claim 4, characterized in that: A cleaning assembly (4) is installed between the two enclosures (3). There are two cleaning assemblies (4). The cleaning assembly (4) includes a connecting rod (401), a friction block (404), and a ring (405). The two connecting rods (401) are connected to the outer wall of the ring (405). The two connecting rods (401) are distributed on both sides of the ring (405). The ring (405) is connected to the enclosure (3) through the connecting rods (401).

6. A fixture for stainless steel production according to claim 5, characterized in that: The connecting rod (401) has a moving groove inside, a first spring (402) is installed inside the moving groove, and a second sliding rod (403) is slidably connected inside the moving groove. The second sliding rod (403) extends to the inner center of the ring (405), and the friction block (404) is installed at the end of the second sliding rod (403) away from the first spring (402).

Citation Information

Patent Citations

  • Stainless steel pipe rotation clamp

    CN109623699A

  • Face miller

    CN208629025U

  • Pipeline outer wall rust removing device

    CN212095811U

  • Rapid concrete unloader for constructional engineering

    CN220301806U

  • PCB (Printed Circuit Board) welding and overturning tool

    CN220312332U