Square tube conveying device

By designing a square tube conveying device, and utilizing auxiliary components, fixing components, and control components, the automatic cutting and conveying of square tubes is achieved, solving the problem of high labor intensity caused by manually delivering them to the punching machine and improving punching efficiency.

CN224102309UActive Publication Date: 2026-04-10CHANGZHOU WUJIN TIANMA WELDED PIPE MASCH ROOM EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU WUJIN TIANMA WELDED PIPE MASCH ROOM EQUIP CO LTD
Filing Date
2023-12-20
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

After the square tubes are cut, they need to be manually sent to the punching machine for punching, which is labor-intensive and consumes a lot of manpower, reducing the efficiency of punching work.

Method used

Design a square tube conveying device, including a frame, a placement plate, a sliding plate, a cutting machine, a support block, and a punching machine. Through the cooperation of auxiliary components, fixing components, and control components, the cutting and conveying process of square tubes is completed automatically, reducing manual operation.

Benefits of technology

It reduces labor intensity, saves manpower, and improves the efficiency of punching square tubes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a square tube conveying device, and belongs to the field of square tube machining, the square tube conveying device comprises a rack, a placing plate, a sliding plate, a cutting machine, a supporting block and a punching machine are arranged on the rack, the placing plate, the sliding plate and the supporting block all slide relative to the rack, a square tube is placed on the placing plate, and an auxiliary assembly is arranged on the placing plate; the cutting machine is installed on the rack and used for cutting the square tube, a limiting plate is fixedly connected to the sliding plate, the square tube abuts against the limiting plate, a fixing assembly is arranged on the sliding plate, and the fixing assembly is used for enabling the square tube to be located on the sliding plate and relatively fixed. The supporting block can move to abut against the square tube, the supporting block moves close to or away from the sliding plate, and the punching machine is installed on the rack. The supporting block moves to abut against the square pipe and drives the square pipe to move away from the sliding plate, the square pipe is moved to the punching machine to be punched, and the square pipe does not need to be manually moved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of square tube processing, in particular to a square tube conveying device. BACKGROUND

[0002] Square tube is a kind of square tube, that is, steel tube with equal side length, which is rolled from strip steel after process treatment. Square tube is formed by unwrapping, flattening, coiling and welding of strip steel into round tube, and then rolling the round tube into square tube, and then cutting into the required length. During the processing of square tube, punching is needed on the square tube. In actual operation, an operator cuts a square tube into multiple square tubes of the same length, then carries the cut square tubes to the punching machine, and punches the two ends of the cut square tube by the punching machine.

[0003] The above related technology has the following defects: after cutting, the square tube needs to be manually sent to the punching machine for punching, which is high in labor intensity and consumes manpower, and reduces the punching work efficiency of the square tube. CONTENT OF THE UTILITY MODEL

[0004] In order to improve the problem that after cutting, the square tube needs to be manually sent to the punching machine for punching, which is high in labor intensity and consumes manpower, the present application provides a square tube conveying device.

[0005] The square tube conveying device provided by the present application adopts the following technical scheme:

[0006] A square tube conveying device, comprising a rack, a placing plate, a sliding plate, a cutting machine, a supporting block and a punching machine are arranged on the rack, the placing plate, the sliding plate and the supporting block are relatively slidably connected with the rack, the placing plate is used for placing the square tube, an auxiliary assembly is arranged on the placing plate, the auxiliary assembly is used for relatively fixing the square tube on the placing plate, the cutting machine is installed on the rack, the cutting machine is used for cutting the square tube, a limiting plate is fixedly connected to the sliding plate, the square tube abuts against the limiting plate, a fixing assembly is arranged on the sliding plate, the fixing assembly is used for relatively fixing the square tube on the sliding plate, the supporting block is movable to abut against the square tube, the supporting block moves close to or away from the sliding plate, and the punching machine is installed on the rack.

[0007] By adopting the above technical scheme, when the square tube needs to be processed, the operator moves the square tube to the placement plate, and the square tube is relatively fixed on the placement plate through the auxiliary assembly. Then the placement plate can drive the square tube to move, so that the square tube abuts against the limiting plate. At this time, the cutting machine shears the square tube into a square tube with a specific length. The square tube is relatively fixed on the sliding plate through the fixing assembly. Then the sliding plate drives the square tube to move to a suitable position, and the supporting block abuts against the square tube and moves the square tube away from the sliding plate to move the square tube to the puncher for punching. The square tube does not need to be manually moved, the labor intensity is low, the manpower is saved, and the punching work efficiency of the square tube is improved.

[0008] Preferably, the auxiliary assembly comprises a first auxiliary plate, a second auxiliary plate, an auxiliary block and an auxiliary piece. The first auxiliary plate and the second auxiliary plate are fixedly connected with the placement plate. An auxiliary groove is formed between the first auxiliary plate and the second auxiliary plate. The auxiliary groove is used for placing the square tube. The auxiliary block is relatively slidable with the first auxiliary plate. The auxiliary block can be slid to abut against the square tube. A through hole is formed in the first auxiliary plate for the auxiliary block to pass through. The auxiliary piece is used for controlling the movement of the auxiliary block.

[0009] Preferably, the auxiliary piece is an auxiliary cylinder. The auxiliary cylinder is installed on the placement plate. The piston rod of the auxiliary cylinder is fixedly connected with the auxiliary block.

[0010] By adopting the above technical scheme, the square tube is moved to the placement plate and located in the auxiliary groove. The auxiliary groove can provide a placement area for the square tube. The piston rod of the auxiliary cylinder can drive the auxiliary block to move, so that the auxiliary block passes through the through hole in the first auxiliary plate and abuts against the square tube. The square tube is moved to abut against the second auxiliary plate under the action of the auxiliary block, so that the square tube is relatively fixed on the placement plate. The placement plate can drive the square tube to move, so that the square tube is sheared.

[0011] Preferably, the fixing assembly comprises a fixing frame, a fixing block and a fixing piece. The fixing frame is fixedly connected with the sliding plate. The fixing block is relatively slidable with the fixing frame. The fixing block can be slid to abut against the square tube. The fixing piece is used for controlling the sliding of the fixing block.

[0012] Preferably, the fixing piece is a fixing cylinder. The fixing cylinder is installed on the fixing frame. The piston rod of the fixing cylinder is fixedly connected with the fixing block.

[0013] By adopting the above technical scheme, the square tube is moved to the sliding plate and abuts against the limiting plate, and then the cutting machine shears the square tube. After the cutting machine shears, the piston rod of the fixing cylinder can drive the fixing block to move, so that the fixing block abuts against the square tube. The fixing block can apply a force to the square tube, so that the square tube is relatively fixed on the sliding plate. The sliding plate can drive the square tube to move, so that the square tube is punched.

[0014] Preferably, the support block is provided with an embedding groove for embedding the square tube, and the groove bottom of the embedding groove abuts against the square tube.

[0015] By using the above technical scheme, when the support block abuts against the square tube, the square tube can be embedded in the embedding groove, the embedding groove can limit the square tube, and the possibility of sliding of the square tube on the support block is reduced, thereby facilitating the movement of the support block and the square tube.

[0016] Preferably, the rack is provided with a control assembly for controlling the sliding of the support block, the control assembly comprises a control frame, a control plate and a control member, the control frame is slidably connected with the rack, the control plate is fixedly connected with the control frame, a plurality of control plates are arranged in the length direction of the control frame, the support block slides relative to the control plate, and the control member is used for controlling the movement of the support block towards or away from the control plate.

[0017] Preferably, the control member is a control cylinder, the control cylinder is installed on the control plate, and the piston rod of the control cylinder is fixedly connected with the support block.

[0018] By using the above technical scheme, when the support block needs to slide, the sliding of the control frame can drive the sliding of the control plate, and the sliding of the control plate can drive the movement of the support block, so that the support block drives the square tube to perform the punching work; the control cylinder can control the movement of the support block towards or away from the control plate, so that the support block supports the square tube to move and then puts down the square tube, thereby facilitating the movement of the square tube to the puncher for punching work.

[0019] In summary, the present application has at least one of the following beneficial technical effects:

[0020] 1. By arranging the placement plate, the sliding plate and the support block, when the square tube needs to be processed, the operator moves the square tube to the placement plate, and fixes the square tube on the placement plate through the auxiliary assembly, then the placement plate drives the square tube to move, so that the square tube abuts against the limiting plate, at this time the cutting machine cuts the square tube into a specific length, and the square tube is fixed on the sliding plate through the fixing assembly, then the sliding plate drives the square tube to move to a suitable position, the support block abuts against the square tube and drives the square tube to move away from the sliding plate, so that the square tube is moved to the puncher for punching, without manual movement of the square tube, the labor intensity is low, the manpower is saved, and the punching work efficiency of the square tube is improved.

[0021] 2. By setting the control components, when the support block needs to slide, the sliding of the control frame can drive the sliding of the control plate, and the sliding of the control plate can drive the support block to move, so that the support block can drive the square tube to perform punching work; the control cylinder can control the support block to move closer to or further away from the control plate, so that after the support block supports the square tube to move, the square tube is put down, so that the square tube can be moved to the punching machine for punching work. Attached Figure Description

[0022] Figure 1 This is a schematic diagram illustrating the overall structure of the square tube conveying device in the embodiments of this application.

[0023] Figure 2 This is a schematic diagram illustrating the overall structure of the placement plate and auxiliary components in the embodiments of this application.

[0024] Figure 3 This is a schematic diagram illustrating the overall structure of the sliding plate and the fixing component in the embodiments of this application.

[0025] Figure 4 This is a schematic diagram illustrating the overall structure of the support block and control components in the embodiments of this application.

[0026] Explanation of reference numerals in the attached drawings: 1. Frame; 2. Placement plate; 3. Sliding plate; 31. Limiting plate; 4. Support block; 41. Embedding groove; 5. Auxiliary component; 51. First auxiliary plate; 511. Auxiliary groove; 52. Second auxiliary plate; 53. Auxiliary block; 54. Auxiliary cylinder; 6. Fixing component; 61. Fixing frame; 62. Fixing block; 63. Fixing cylinder; 7. Control component; 71. Control frame; 72. Control plate; 73. Control cylinder. Detailed Implementation

[0027] The following is in conjunction with the appendix Figures 1-4 This application will be described in further detail.

[0028] This application discloses a square tube conveying device, such as... Figure 1 As shown, the device includes a frame 1, on which a placement plate 2, a sliding plate 3, and a cutting machine are mounted. The placement plate 2 and the sliding plate 3 slide relative to the frame 1. The cutting machine is mounted on the frame 1 and located between the placement plate 2 and the sliding plate 3. The cutting machine can cut square tubes.

[0029] like Figure 1 and 2As shown, the square tube is placed on the placing plate 2, and the placing plate 2 is close to or away from the cutting machine; the square tube is placed on the sliding plate 3, and the sliding plate 3 is close to or away from the cutting machine, and the placing plate 2 and the sliding plate 3 are controlled by the rodless cylinder. In actual operation, the operator moves the square tube to the placing plate 2, the placing plate 2 can drive the square tube to move towards the cutting machine, the cutting machine can cut the square tube, and the sliding plate 3 can drive the cut square tube to move, so as to facilitate the punching work of the cut square tube.

[0030] As shown in Figure 2 The placing plate 2 is provided with an auxiliary assembly 5 for relatively fixing the square tube on the placing plate 2, and the auxiliary assembly 5 includes a first auxiliary plate 51, a second auxiliary plate 52, an auxiliary block 53 and an auxiliary cylinder. The first auxiliary plate 51 and the second auxiliary plate 52 are fixedly connected with the placing plate 2, and the auxiliary groove 511 is formed between the first auxiliary plate 51 and the second auxiliary plate 52. The auxiliary block 53 and the first auxiliary plate 51 slide relative to each other, and the first auxiliary plate 51 is provided with a through hole for the auxiliary block 53 to pass through. The auxiliary cylinder 54 is fixedly installed on the placing plate 2, the piston rod of the auxiliary cylinder 54 is fixedly connected with the auxiliary block 53, and the auxiliary cylinder 54 can drive the auxiliary block 53 to move to abut against the square tube. When the square tube needs to be processed, the operator can place the square tube in the auxiliary groove 511, and then the piston rod of the auxiliary cylinder 54 can drive the auxiliary block 53 to move, so that the auxiliary block 53 passes through the through hole in the first auxiliary plate 51 and abuts against the square tube. The auxiliary block 53 can apply a force to the square tube, so that the square tube abuts against the second auxiliary plate 52, thereby relatively fixing the square tube in the auxiliary groove 511, facilitating the movement of the placing plate 2 to drive the square tube, and facilitating the cutting work of the square tube.

[0031] As shown in Figure 1 and 3As shown, the sliding plate 3 is fixedly connected with a limiting plate 31, and the square tube can be moved to abut against the limiting plate 31 under the driving of the placing plate 2, and the cutting machine can cut the square tube after the square tube is moved to abut against the limiting plate 31. The sliding plate 3 is provided with a fixing assembly 6, and the fixing assembly 6 is used for relatively fixing the square tube on the sliding plate 3. The fixing assembly 6 comprises a fixing frame 61, a fixing block 62 and a fixing member. The fixing frame 61 is fixedly connected with the sliding plate 3, and the fixing block 62 slides relative to the fixing frame 61. The sliding direction of the fixing block 62 is the vertical direction, and the fixing block 62 can be slid to abut against the square tube. The fixing member is a fixing cylinder 63, which is fixedly installed on the fixing frame 61, and the piston rod of the fixing cylinder 63 is fixedly connected with the fixing block 62. When the square tube needs to be cut, the placing plate 2 drives the square tube to move close to the cutting machine, and the sliding plate 3 drives the limiting plate 31 to move close to the cutting machine. When the placing plate 2 drives the square tube to move to abut against the limiting plate 31, the cutting machine cuts the square tube. Then, the piston rod of the fixing cylinder 63 drives the fixing block 62 to move, so that the fixing block 62 applies a force to the square tube, thereby relatively fixing the cut square tube on the sliding plate 3, facilitating the movement of the sliding plate 3 with the cut square tube, and thereby facilitating the punching work of the square tube.

[0032] As shown in Figure 1 and 4 The rack 1 is further provided with a supporting block 4 and a punching machine. The punching machine is installed on the rack 1 and slides relative to the rack 1. The punching machine moves through a cylinder and moves close to or away from the rack 1, and can perform punching work on the square tube. The supporting block 4 slides relative to the rack 1 and slides close to or away from the punching machine. The supporting block 4 is provided with an embedding groove 41 for embedding the square tube. The bottom of the embedding groove 41 abuts against the square tube. The rack 1 is provided with a control assembly 7 for controlling the sliding of the supporting block 4. After the sliding plate 3 drives the cut square tube to move to a suitable position, the control assembly 7 drives the supporting block 4 to move, so that the supporting block 4 drives the square tube on the sliding plate 3 to move close to the punching machine. The square tube can be embedded in the embedding groove 41, and the embedding groove 41 can limit the square tube to reduce the possibility of the square tube falling off the supporting block 4. When the square tube moves to the punching machine, the punching machine moves close to the rack 1 under the action of the cylinder, and the two ends of the square tube are punched. After the punching is completed, the punching machine moves away from the rack 1 under the action of the cylinder, and the supporting block 4 drives the punched square tube to move away from the punching machine, thereby facilitating the storage of the operator.

[0033] As shown in Figure 4As shown, the control assembly 7 comprises a control frame 71, control plates 72 and control members, the control frame 71 is slidingly connected with the rack 1, and the control frame 71 slides towards or away from the sliding plate 3. The control frame 71 moves by an electric sliding table. The control plates 72 are fixedly connected with the control frame 71, and a plurality of control plates 72 are arranged along the length direction of the control frame 71. The support blocks 4 slide relative to the control plates 72, the sliding plate 3 is provided with a gap slot for the support blocks 4 to pass through, and two support blocks 4 are arranged on one control plate 72. The control member is a control cylinder 73, which is fixedly installed on the control plate 72, the piston rod of the control cylinder 73 is fixedly connected with the support block 4, and the extension direction of the piston rod of the control cylinder 73 is a vertical direction. When the sliding plate 3 drives the square tube to move to a suitable position, the control cylinder 73 drives the support block 4 to move, so that the support block 4 passes through the gap slot to support the square tube, thereby lifting the square tube upward. Then the cylinder drives the movement of the control frame 71, the control frame 71 drives the movement of the control plate 72, and the control plate 72 drives the movement of the control cylinder 73, thereby driving the movement of the square tube above the sliding plate 3, so that the square tube on the sliding plate 3 moves close to the punch to facilitate the punching work of the square tube.

[0034] The implementation principle of the square tube conveying device in the embodiment of the present application is as follows:

[0035] When the square tube needs to be processed, the operator moves the square tube into the auxiliary groove 511, the auxiliary cylinder 54 can drive the auxiliary block 53 to make the auxiliary block 53 pass through the through hole on the first auxiliary plate 51 and abut against the square tube, the auxiliary block 53 applies a force to the square tube, so that the square tube abuts against the second auxiliary plate 52, thereby relatively fixing the square tube on the placing plate 2. The placing plate 2 is moved to make the placing plate 2 drive the square tube to abut against the limiting plate 31. Then the cutting machine shears the square tube, the fixed cylinder 63 drives the movement of the fixed block 62, so that the fixed block 62 applies a force to the sheared square tube, thereby relatively fixing the square tube and the sliding plate 3. Then the sliding plate 3 drives the sheared square tube to a suitable position.

[0036] When the sheared square tube moves to a suitable position, the control cylinder 73 drives the movement of the support block 4, the support block 4 supports the square tube on the sliding plate 3, and the control frame 71 drives the movement of the control plate 72, the control plate 72 drives the movement of the control cylinder 73, thereby moving the square tube on the sliding plate 3 close to the punch. When the square tube moves to the punch, the punch clamps the square tube under the action of the cylinder, and punches the two ends of the square tube. The punched square tube can move away from the punch under the action of the control frame 71 and the control cylinder 73, thereby facilitating the punching work of the subsequent square tube.

[0037] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application shall be covered within the protection scope of the present application.

Claims

1. A square tube conveying device, characterized by: The utility model provides a square tube cutting device, including frame (1), which is equipped with placing plate (2), sliding plate (3), cutting machine, support block (4) and puncher on frame (1), placing plate (2), sliding plate (3) and support block (4) all are relative sliding with frame (1), and the placing plate (2) is used for square tube to place, and the placing plate (2) is equipped with auxiliary assembly (5), and auxiliary assembly (5) is used for making square tube be relatively fixed on placing plate (2), and the cutting machine is installed on frame (1), and the cutting machine is used for square tube to cut, and the sliding plate (3) is fixedly connected with limiting plate (31), and square tube and limiting plate (31) abut, and the sliding plate (3) is equipped with fixed assembly (6), and fixed assembly (6) is used for making square tube be relatively fixed on sliding plate (3), and the support block (4) can be moved to abut with square tube, and the support block (4) moves close to or away from sliding plate (3), and the puncher is installed on frame (1).

2. A square tube conveying device according to claim 1, characterized in that: The auxiliary assembly (5) includes first auxiliary plate (51), second auxiliary plate (52), auxiliary block (53) and auxiliary piece, the first auxiliary plate (51) and second auxiliary plate (52) are all fixedly connected with the placing plate (2), the first auxiliary plate (51) and the second auxiliary plate (52) form auxiliary groove (511) between, the auxiliary groove (511) is used for square tube to place, the auxiliary block (53) and the first auxiliary plate (51) relatively slide, the auxiliary block (53) can slide to abut with square tube, the first auxiliary plate (51) is provided with the through hole that auxiliary block (53) passes through, and the auxiliary piece is used to control the movement of auxiliary block (53).

3. A square tube conveying device according to claim 2, wherein: The auxiliary piece is auxiliary cylinder (54), the auxiliary cylinder (54) is installed on the placing plate (2), and the piston rod of the auxiliary cylinder (54) is fixedly connected with the auxiliary block (53).

4. A square tube conveying device according to claim 1, characterized in that: The fixed assembly (6) includes fixed frame (61), fixed block (62) and fixing piece, the fixed frame (61) is fixedly connected with the sliding plate (3), the fixed block (62) and the fixed frame (61) relatively slide, the fixed block (62) can slide to abut with square tube, and the fixing piece is used to control the sliding of fixed block (62).

5. A square tube delivery device according to claim 4, wherein: The fixing piece is fixed cylinder (63), the fixed cylinder (63) is installed on the fixed frame (61), and the piston rod of the fixed cylinder (63) is fixedly connected with the fixed block (62).

6. A square tube delivery device according to claim 1, wherein: The support block (4) is provided with embedding groove (41), the embedding groove (41) is used for square tube to embed, and the groove bottom of embedding groove (41) abuts with square tube.

7. A square tube delivery device according to claim 1, wherein: The rack (1) is provided with a control assembly (7) for controlling the sliding of the support block (4), the control assembly (7) comprising a control frame (71), a control plate (72) and a control member, the control frame (71) and the rack (1) being in sliding connection, the control plate (72) and the control frame (71) being in fixed connection, the control plate (72) being provided with a plurality of control plates (72) arranged in an array along the length direction of the control frame (71), the support block (4) and the control plate (72) being in relative sliding, the control member being used for controlling the support block (4) to move close to or away from the control plate (72).

8. A square tube delivery device according to claim 7, wherein: The control member is a control cylinder (73), the control cylinder (73) being mounted on the control plate (72), the piston rod of the control cylinder (73) and the support block (4) being in fixed connection.