A conveying device for steel pipe production

CN224783190UActive Publication Date: 2026-09-22JIANGSU LUQIAO METAL TECH CO LTD
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Patent Information

Application Number
CN202522423241.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-14
Publication Date
2026-09-22
Estimated Expiration
2035-11-14

AI Technical Summary

Benefits of technology

[0011]本实用新型中,所述的一种钢管生产用传送装置,通过设置电机二驱动传动轴在框体内旋转,从而带动多组锥齿轮一转动,因锥齿轮一与相对应锥齿轮二相啮合,从而传动多组锥齿轮二带动相应输送轮在轮座内同步转动,从而实现对钢管的连续输送,灵活调整钢管的输送效率,适应不同生产节奏或不同规格钢管的输送需求,提升装置的通用性和生产灵活性;

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Abstract

The utility model discloses a conveying device for steel pipe production belongs to steel pipe production equipment technical field, it includes: work table, the top of work table is provided with wheel seat, intermittent conveying subassembly and installation frame, the inside rotatory mounting of wheel seat has multiple sets of conveying wheels, intermittent conveying subassembly includes: support plate, four groups of support and multiple sets of support, and one side fixed mounting of support plate has motor no.
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Description

Technical Field

[0001] This utility model relates to the technical field of steel pipe production equipment, and in particular to a conveying device for steel pipe production. Background Technology

[0002] In the steel pipe manufacturing industry, the conveying device is a key link connecting various production processes, and its performance directly affects production efficiency and product quality.

[0003] Traditional conveying devices lack protective measures for steel pipes during transport. Because the pipes are cylindrical, they are prone to rolling and slipping during transport, leading to deviations in their conveying position. This not only affects the accuracy of subsequent processing steps but may also cause safety accidents. Furthermore, in most cases, pipe transport can only be controlled by starting and stopping the drive components. However, due to inertia, the pipes often fail to stop precisely at the expected position, easily causing collisions and squeezing between pipes, resulting in scratches, deformation, and other damage to the pipe surface, affecting product quality. Therefore, we propose a conveying device for steel pipe production to solve this problem. Utility Model Content

[0004] The purpose of this utility model is to provide a conveying device for steel pipe production to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A conveying device for steel pipe production includes: a workbench, a wheel seat, an intermittent conveying assembly, and a mounting frame on the top of the workbench; multiple sets of conveying wheels are rotatably installed inside the wheel seat; the intermittent conveying assembly includes: a support plate, four sets of brackets, and multiple sets of supports; a motor is fixedly installed on one side of the support plate, and a sector gear is fixedly installed on the output end of the motor; pulleys are rotatably installed inside the two adjacent sets of brackets, and a transmission belt is driven to the outside of the two sets of pulleys; multiple sets of supports are arranged outside the conveyor belt, and a transmission gear is fixedly installed on one side of one set of pulleys; a movable plate is slidably installed inside the mounting frame, and four sets of guide rods are fixedly installed on one side of the movable plate; a baffle is fixedly installed at one end of each of the four sets of guide rods; and four sets of buffer springs are arranged between the baffle and the mounting frame.

[0006] Preferably, a frame is fixedly installed on one side of the wheel seat, a drive shaft is rotatably installed inside the frame, and multiple sets of bevel gears are fixedly installed on the outside of the drive shaft. A bevel gear is fixedly installed on one end of each of the multiple sets of conveying wheels.

[0007] Preferably, the four sets of guide rods are slidably mounted on one side of the mounting frame, and the four sets of buffer springs are sleeved on the outside of the corresponding guide rods.

[0008] Preferably, a second motor is fixedly installed on one side of the frame, and one end of the transmission shaft is fixedly installed on the output end of the second motor.

[0009] Preferably, the multiple sets of bevel gear one mesh with the corresponding bevel gear two, and the multiple sets of bevel gear one and bevel gear two are all disposed in the frame.

[0010] Preferably, the sector gear meshes with the transmission gear, and a rubber pad is provided on one side of the baffle.

[0011] In this utility model, a conveying device for steel pipe production is provided. By setting a second motor to drive the transmission shaft to rotate within the frame, multiple sets of bevel gears rotate. Since the first bevel gear meshes with the corresponding second bevel gear, the multiple sets of second bevel gears drive the corresponding conveying wheels to rotate synchronously within the wheel seat, thereby realizing continuous conveying of steel pipes, flexibly adjusting the conveying efficiency of steel pipes, adapting to the conveying needs of different production rhythms or different specifications of steel pipes, and improving the versatility and production flexibility of the device. This utility model features a reasonable structural design. The baffle acts as a barrier and limiter for the steel pipe. The impact force generated by the steel pipe against the baffle is transmitted through the baffle to the guide rod and the moving plate, causing the moving plate to slide within the mounting frame. Simultaneously, the buffer spring compresses, and the elastic force of the buffer spring buffers the impact force, preventing damage to the steel pipe due to violent collisions. The rubber pad on one side of the baffle further enhances the buffering effect. A motor drives a sector gear to rotate. Because the sector gear meshes with the transmission gear, when the sector gear meshes with the transmission gear, it drives the corresponding pulley to rotate, thereby coordinating with the conveyor belt to make the two sets of pulleys rotate synchronously. This causes multiple sets of supports to move with the conveyor belt, thus driving the steel pipe forward. When the sector gear disengages from the transmission gear, the conveyor belt stops moving, realizing intermittent conveying of the steel pipe. This facilitates processing or inspection operations during the pause, avoids rigid contact between the steel pipe and the baffle, protects the surface of the steel pipe from damage, and precisely adjusts the ratio of conveying and pause time to adapt to the rhythm requirements of different processing or inspection processes. This reduces errors caused by dynamic conveying and improves production efficiency and automation. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of a conveying device for steel pipe production proposed in this utility model. Figure 2 This is a cross-sectional structural schematic diagram of a conveying device for steel pipe production proposed in this utility model; Figure 3 for Figure 2 A magnified view of part A in the middle; Figure 4 for Figure 2 A magnified view of part B in the middle section; Figure 5This is a three-dimensional structural diagram of an intermittent conveying component of a conveying device for steel pipe production proposed in this utility model.

[0013] In the diagram: 1. Workbench; 2. Wheel seat; 3. Conveyor wheel; 4. Frame; 5. Motor 1; 6. Intermittent conveyor assembly; 601. Support plate; 602. Motor 2; 603. Sector gear; 604. Transmission gear; 605. Bracket; 606. Pulley; 607. Conveyor belt; 608. Support; 7. Mounting frame; 8. Baffle; 9. Drive shaft; 10. Bevel gear 1; 11. Bevel gear 2; 12. Guide rod; 13. Moving plate; 14. Buffer spring. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0015] Reference Figure 1-5 A conveying device for steel pipe production includes: a workbench 1, a wheel seat 2, an intermittent conveying assembly 6, and a mounting frame 7 on the top of the workbench 1; multiple sets of conveying wheels 3 are rotatably installed inside the wheel seat 2; the intermittent conveying assembly 6 includes: a support plate 601, four sets of brackets 605, and multiple sets of supports 608; a motor 5 is fixedly installed on one side of the support plate 601; a sector gear 603 is fixedly installed on the output end of the motor 5; pulleys 606 are rotatably installed inside the two adjacent sets of brackets 605; a transmission belt is driven on the outer side of the two sets of pulleys 606; multiple sets of supports 608 are arranged on the outer side of the conveyor belt 607; a transmission gear 604 is fixedly installed on one side of one set of pulleys 606; a movable plate 13 is slidably installed inside the mounting frame 7; four sets of guide rods 12 are fixedly installed on one side of the movable plate 13; a baffle 8 is fixedly installed at one end of the four sets of guide rods 12; and four sets of buffer springs 14 are arranged between the baffle 8 and the mounting frame 7.

[0016] In this embodiment, a frame 4 is fixedly installed on one side of the wheel seat 2, and a drive shaft 9 is rotatably installed inside the frame 4. Multiple sets of bevel gears 10 are fixedly installed on the outside of the drive shaft 9, and bevel gears 21 are fixedly installed on one end of each set of conveying wheels 3. The rotational motion of the drive shaft 9 is efficiently transmitted to the conveying wheels 3, realizing the vertical conversion of power and adapting to the structural layout requirements of the device.

[0017] In this embodiment, four sets of guide rods 12 are slidably installed on one side of the mounting frame 7, and four sets of buffer springs 14 are sleeved on the outside of the corresponding guide rods 12 to ensure the stability of the buffering effect.

[0018] In this embodiment, a second motor 602 is fixedly installed on one side of the frame 4, and one end of the transmission shaft 9 is fixedly installed on the output end of the second motor 602, which reduces power loss and failure risk.

[0019] In this embodiment, multiple sets of bevel gears 10 mesh with corresponding bevel gears 21. Both sets of bevel gears 10 and bevel gears 21 are arranged inside the frame 4 to ensure that all conveying wheels 3 rotate synchronously and to ensure the stability of steel pipe conveying.

[0020] In this embodiment, the sector gear 603 meshes with the transmission gear 604, and a rubber pad is provided on one side of the baffle 8 to prevent the surface of the steel pipe from being scratched or damaged by the rigid baffle 8.

[0021] In this embodiment, during use, the drive shaft 9 is driven to rotate inside the frame 4 by starting the second motor 602, thereby driving multiple sets of bevel gears 10 to rotate. Since the first bevel gear 10 meshes with the corresponding second bevel gear 11, the multiple sets of second bevel gears 11 are driven to drive the corresponding conveying wheel 3 to rotate synchronously inside the wheel seat 2, thereby realizing the continuous conveying of the steel pipe. When the steel pipe is delivered to the support 608 and comes into contact with the baffle 8, the baffle 8 will block and limit the steel pipe. The impact force generated by the steel pipe on the baffle 8 will be transmitted through the baffle 8 to the guide rod 12 and the moving plate 13, causing the moving plate 13 to slide within the mounting frame 7. At the same time, the buffer spring 14 is squeezed, and the elastic force of the buffer spring 14 will buffer the impact force and prevent the steel pipe from being damaged by violent collision. The rubber pad on one side of the baffle 8 also further enhances the buffering effect. Subsequently, the starting motor 5 drives the sector gear 603 to rotate. Since the sector gear 603 meshes with the transmission gear 604, when the sector gear 603 meshes with the transmission gear 604, it drives the corresponding pulley 606 to rotate, thereby cooperating with the conveyor belt 607 to make the two sets of pulleys 606 rotate synchronously, so that multiple sets of supports 608 move with the conveyor belt 607, thereby driving the steel pipe forward. When the sector gear 603 disengages from the transmission gear 604, the conveyor belt 607 stops moving, realizing the intermittent conveying of the steel pipe, which facilitates processing or inspection operations during the pause.

[0022] The foregoing has provided a detailed description of a conveying device for steel pipe production according to this utility model. Specific embodiments have been used to illustrate the principle and implementation of this utility model. The descriptions of these embodiments are only intended to aid in understanding the method and core concept of this utility model. It should be noted that those skilled in the art can make various improvements and modifications to this utility model without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A conveying device for steel pipe production, characterized in that, include: A workbench (1) is provided with a wheel seat (2), an intermittent conveying assembly (6), and a mounting frame (7) on its top. Multiple sets of conveying wheels (3) are rotatably mounted inside the wheel seat (2). The intermittent conveying assembly (6) includes a support plate (601), four sets of brackets (605), and multiple sets of supports (608). A motor (5) is fixedly mounted on one side of the support plate (601). A sector gear (603) is fixedly mounted on the output end of the motor (5). Pulleys are rotatably mounted inside the two adjacent sets of brackets (605). 606), a transmission belt is installed on the outer side of the two sets of pulleys (606), and multiple sets of supports (608) are set on the outer side of the conveyor belt (607). A transmission gear (604) is fixedly installed on one side of one set of pulleys (606). A movable plate (13) is slidably installed inside the mounting frame (7). Four sets of guide rods (12) are fixedly installed on one side of the movable plate (13). A baffle (8) is fixedly installed at one end of the four sets of guide rods (12). Four sets of buffer springs (14) are provided between the baffle (8) and the mounting frame (7).

2. The conveying device for steel pipe production according to claim 1, characterized in that, A frame (4) is fixedly installed on one side of the wheel seat (2). A drive shaft (9) is rotatably installed inside the frame (4). Multiple sets of bevel gears (10) are fixedly installed on the outside of the drive shaft (9). A bevel gear (11) is fixedly installed on one end of each of the multiple sets of conveying wheels (3).

3. The conveying device for steel pipe production according to claim 1, characterized in that, The four sets of guide rods (12) are slidably installed on one side of the mounting frame (7), and the four sets of buffer springs (14) are sleeved on the outside of the corresponding guide rods (12).

4. A conveying device for steel pipe production according to claim 2, characterized in that, A second motor (602) is fixedly installed on one side of the frame (4), and one end of the transmission shaft (9) is fixedly installed on the output end of the second motor (602).

5. A conveying device for steel pipe production according to claim 2, characterized in that, Multiple sets of bevel gear one (10) mesh with corresponding bevel gear two (11), and multiple sets of bevel gear one (10) and bevel gear two (11) are all arranged in the frame (4).

6. The conveying device for steel pipe production according to claim 1, characterized in that, The sector gear (603) meshes with the transmission gear (604), and a rubber pad is provided on one side of the baffle (8).