Transfer device for stainless steel pipe machined parts

By introducing electric telescopic legs and a power-assisted guiding mechanism into the stainless steel pipe transfer device, combined with limiting components, the problems of stainless steel pipes falling during the transfer process and manual placement are solved, realizing automated transfer and placement.

CN223546802UActive Publication Date: 2025-11-14ZHAOQING HONGWANG METAL IND
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Patent Information

Application Number
CN202423100027.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-14
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing stainless steel pipe parts are prone to falling off during transportation and require manual placement, resulting in high labor intensity.

Method used

By employing electric telescopic legs and a power-assisted guiding mechanism, combined with limit components, the stainless steel pipes can be automatically lifted and moved, reducing the risk of falling and eliminating the need for manual operation.

Benefits of technology

This effectively prevents stainless steel pipes from falling during transportation, reduces manual labor intensity, and achieves automated transportation and placement.

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Abstract

The utility model discloses a transfer device for stainless steel pipe machined parts. The device has the beneficial effects that on one hand, the stainless steel pipe machined parts can be effectively prevented from sliding off from the placing seat in the transferring process under the action of the limiting assembly, and on the other hand, the stainless steel pipe machined parts can be placed on the placing seat after being transferred to the appointed placing frame under the action of the power-assisted guiding and conveying mechanism and the electric telescopic legs. Firstly, stainless steel pipes are lifted to a specified placing height through electric telescopic legs, then one end of a stainless steel pipe machined part is made to directly face the placing position on an external placing frame, then all power-assisted rolling wheels in all corresponding placing grooves are made to rotate synchronously under the action of a motor, a gear shaft and a driven gear, and the stainless steel pipes are placed on the stainless steel pipe machined part. Therefore, the stainless steel pipes which are not limited after being transferred can be automatically transferred to the corresponding placing frames, the tedious operation of manual lifting and placing is omitted, and the labor intensity of workers in the transferring process of the stainless steel pipe machined parts is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of stainless steel pipe processing technology, specifically to a transfer device for stainless steel pipe processing parts. Background Technology

[0002] After stainless steel pipes are processed, in order to avoid the accumulation of processed parts at the processing equipment, the processed stainless steel pipe parts need to be transported to the corresponding storage location in a timely manner.

[0003] Current stainless steel workpiece transfer devices mainly consist of a mobile vehicle, a push handle mounted on the vehicle, and a placement seat mounted on the vehicle. While this type of transfer device can facilitate the transfer of stainless steel pipe workpieces, it has several drawbacks. First, because the workpieces are placed directly in the placement slots on the placement seat, they are prone to falling during transfer due to the vehicle's bumps and tilting. Second, after arriving at the transfer location, the workpieces still need to be manually lifted and moved to their corresponding placement racks, resulting in high labor intensity during the transfer process. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] The technical problem to be solved by this utility model is to provide a transfer device for stainless steel pipe processing parts that can effectively limit the movement of stainless steel pipe processing parts during the transfer process and automatically transfer the stainless steel pipe processing parts to the placement rack after reaching the transfer position through lifting and assisted conveying.

[0006] (II) Technical Solution

[0007] This utility model is achieved through the following technical solution: This utility model proposes a transfer device for stainless steel pipe processing parts, including a movable base. An electric telescopic leg is installed at each of the four corners of the upper end of the movable base. The telescopic parts of the four electric telescopic legs are connected to a placement seat. The placement seat has placement slots, and each placement slot contains a power-assisted guiding mechanism. The power-assisted guiding mechanism includes a motor, power-assisted rollers, driven gears, and gear shafts. Two sets of limiting components are also installed on the upper side of the placement seat. The limiting components include an elastic band, hanging rings, and hooks. Each placement slot contains at least four power-assisted rollers. One end of the axle of each power-assisted roller is connected to a driven gear. The gear shaft is installed inside the placement seat, and each gear shaft meshes with a corresponding driven gear. The power output end of the motor is connected to the corresponding gear shaft. A hook is connected to each end of the elastic band, and hanging rings are installed on the two long side walls of the placement seat at the connection points with the hooks.

[0008] Furthermore, the bottom of the placement groove facing the assist roller is a hollow structure, the top of the assist roller extends out of the bottom of the placement groove, and a gap is reserved between the assist roller and the hollow structure at the bottom of the placement groove.

[0009] By adopting the above technical solution, the hollow structure design of the placement groove allows the assisting roller to be conveniently installed in the placement groove, while ensuring that the top of the assisting roller can contact the placed stainless steel pipe processing part.

[0010] Furthermore, the driven gear is a bevel gear, and the gear shaft consists of a rotating shaft and a bevel gear mounted on the rotating shaft.

[0011] By adopting the above technical solution, the gear shaft can be reliably connected to the driven gear under the action of the bevel gear.

[0012] Furthermore, the axle of the assist roller is rotatably connected to the placement seat, and the placement seat has a hollow structure located at the gear shaft.

[0013] By adopting the above technical solution, the rotating installation connection makes it more convenient for the assist roller to rotate relative to the placement seat.

[0014] Furthermore, the elastic band is connected to the hook by binding, and the hanging ring is welded to the placement seat.

[0015] By adopting the above technical solution, the elastic band has good elasticity. When the stainless steel pipe processing part is placed on the placement groove, the hanging rings at both ends of the elastic band can be connected to the corresponding hanging rings to press and limit the stainless steel pipe processing part on the placement groove under the action of the tightened elastic band.

[0016] Furthermore, a push handle is welded to one side of the upper end of the mobile base, an operation panel is installed on one side of the top of the push handle, and a storage battery is also installed on the upper end of the mobile base located on the side of the push handle.

[0017] By adopting the above technical solution, the push handle can be held by hand to enable flexible movement and use of the device, and the battery can ensure the normal power supply and operation of the motor.

[0018] Furthermore, the control panel is electrically connected to both the motor and the battery.

[0019] By adopting the above technical solution, the operation panel mainly controls the circuit to make the motor work in an orderly manner.

[0020] (III) Beneficial Effects

[0021] Compared with the prior art, this utility model has the following advantages:

[0022] To address the current problem of stainless steel workpiece transfer devices, which mainly consist of a mobile carriage, a push handle mounted on the carriage, and a placement seat mounted on the carriage, this type of transfer device, while enabling convenient transfer of stainless steel pipe workpieces, suffers from several drawbacks. Firstly, because the workpieces are placed directly in the placement slots on the placement seat, they are prone to falling during transport due to the carriage's bumps and tilting. Secondly, upon arrival at the transfer location, the workpieces still require manual lifting and placement onto the corresponding racks, resulting in high labor intensity during transfer. This invention addresses this issue by installing two sets of limiting components consisting of elastic bands, hooks, and hanging rings on the placement seat, which can... During the transfer process, the stainless steel pipe parts are effectively prevented from slipping off the placement base. A power-assisted guiding mechanism, consisting of a motor, assisting rollers, driven gears, and gear shafts, is installed in each placement slot on the placement base. Electric telescopic legs are also installed on the underside of the placement base. After the stainless steel pipe parts are transferred to the designated placement rack, the electric telescopic legs first lift the stainless steel pipes to the designated placement height, ensuring one end of the stainless steel pipe is facing the placement position on the external rack. Then, the motor, gear shaft, and driven gears cause the assisting rollers in the corresponding placement slots to rotate synchronously, automatically transferring the transferred, unconstrained stainless steel pipes to the corresponding placement racks. This eliminates the tedious manual lifting and placement operations, reducing the labor intensity of manual handling during the transfer of stainless steel pipe parts. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of a transfer device for processing stainless steel pipe parts according to the present invention;

[0024] Figure 2 This is a left sectional view of the placement seat in the transfer device for stainless steel pipe processing parts described in this utility model;

[0025] Figure 3 This is a top view of the placement seat in the transfer device for processing stainless steel pipe parts according to the present invention.

[0026] The annotations in the attached figures are explained as follows:

[0027] 1. Placement seat; 2. Placement slot; 3. Control panel; 4. Push handle; 5. Electric telescopic leg; 6. Battery; 7. Movable base; 8. Limiting component; 8011. Elastic band; 802. Hook; 803. Hanging ring; 9. Power-assisted guiding mechanism; 901. Motor; 902. Power-assisted roller; 903. Driven gear; 904. Gear shaft. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0029] like Figures 1-3 As shown, a transfer device for stainless steel pipe processing parts in this embodiment includes a movable base 7. An electric telescopic leg 5 is installed at each of the four corners of the upper end of the movable base 7. The telescopic parts of the four electric telescopic legs 5 are connected to a placement seat 1. The placement seat 1 has placement slots 2, and each placement slot 2 contains a power-assisted guiding mechanism 9. The power-assisted guiding mechanism 9 includes a motor 901, power-assisted rollers 902, driven gears 903, and gear shafts 904. Two sets of limiting components 8 are also installed on the upper side of the placement seat 1. The limiting components 8 include an elastic band 8011, a hanging ring 803, and a hook 802. Each placement slot 2 contains at least four power-assisted rollers 902. One end of the axle of each power-assisted roller 902 is connected to a driven gear 903. The gear shafts 904 are installed in the placement seat 1, and each gear shaft 904 meshes with a corresponding driven gear 903. The power output end of the motor 901 is connected to the corresponding gear shaft 904. When the device moves to the stainless steel pipe processing part placement rack position, the placement seat 1 is first raised to the specified height by the electric telescopic leg 5. Then, the gear shaft 904 is driven by the motor 901 so that the stainless steel pipe processing part in the placement groove 2 is moved to the placement position on the placement rack by the assist roller 902 during the rotation of the gear shaft 904. The elastic band 8011 is connected to a hook 802 at both ends. The two long side walls of the placement seat 1 are equipped with hanging rings 803 connected to the hooks 802. The elastic band 8011 has good elasticity. After the stainless steel pipe processing part is placed on the placement groove 2, the stainless steel pipe processing part on the placement groove 2 can be pressed and limited by connecting the hooks at both ends of the elastic band 8011 to the corresponding hanging rings 803 under the action of the taut elastic band 8011.

[0030] like Figures 1-3 As shown in this embodiment, the bottom of the placement groove 2 is hollow, directly opposite the assisting roller 902. The top of the assisting roller 902 extends out of the bottom of the corresponding placement groove 2, and a gap is reserved between the assisting roller 902 and the hollow structure at the bottom of the placement groove 2. The hollow structure design of the placement groove 2 allows the assisting roller 902 to be conveniently installed in the placement groove 2, while ensuring that the top of the assisting roller 902 can contact the stainless steel pipe processing part after placement.

[0031] like Figures 1-3As shown, in this embodiment, the driven gear 903 is a bevel gear, and the gear shaft 904 consists of a rotating shaft and a bevel gear mounted on the rotating shaft. Under the action of the bevel gear, the gear shaft 904 can reliably connect with the driven gear 903. The axle of the assisting roller 902 is rotatably connected to the placement seat 1. The placement seat 1 has a hollow structure located at the gear shaft 904. The rotatable installation method makes it more convenient for the assisting roller 902 to rotate relative to the placement seat 1. In this embodiment, the elastic band 8011 and the hook 802 are connected by binding, and the hanging ring 803 is welded to the placement seat 1.

[0032] like Figures 1-3 As shown, in this embodiment, a push handle 4 is welded to one side of the upper end of the movable base 7. An operation panel 3 is installed on one side of the top of the push handle 4. A storage battery 6 is also installed on the upper end of the movable base 7 located on one side of the push handle 4. Holding the push handle 4 allows for flexible movement and use of the device. The storage battery 6 ensures that the motor 901 is powered on and works normally. The operation panel 3 is electrically connected to both the motor 901 and the storage battery 6. The operation panel 3 mainly controls the motor 901 to work in an orderly manner by controlling the on / off state of the circuit.

[0033] The specific implementation process of this embodiment is as follows: During the transfer, the processed stainless steel pipe parts are first placed on the placement groove 2 and limited by the elastic band 8011. Then, the device is moved to the placement rack for placing stainless steel pipe parts, and the placement seat 1 is raised to the designated height by the electric telescopic leg 5. Then, the gear shaft 904 is driven by the motor 901 so that the stainless steel pipe parts in the placement groove 2 are moved to the placement position on the placement rack by the assist roller 902 during the rotation of the gear shaft 904. Under the action of the above-mentioned transfer device, not only can the stainless steel pipe parts be effectively prevented from slipping off the placement seat 1 during the transfer process by the limiting component 8, but also, under the action of the guiding mechanism and the electric telescopic leg 5, after the stainless steel pipe parts are transferred to the designated placement rack, the stainless steel pipes that have been released from the limit are automatically transferred to the corresponding placement rack by the assisted movement, saving the tedious operation of manual lifting and placement and reducing the labor intensity of the stainless steel pipe parts during the transfer process.

[0034] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A transfer device for processing stainless steel pipe parts, characterized in that: The system includes a movable base (7), with an electric telescopic leg (5) installed at each of the four corners of the upper end of the movable base (7). The telescopic parts of the four electric telescopic legs (5) are connected to a placement seat (1). The placement seat (1) has a placement groove (2). Each placement groove (2) is equipped with a power-assisted guiding mechanism (9). The power-assisted guiding mechanism (9) includes a motor (901), a power-assisted roller (902), a driven gear (903), and a gear shaft (904). Two sets of limiting components (8) are also installed on the upper side of the placement seat (1). The limiting components (8) include an elastic band (8011), a hanging ring (803), and a hook (802). The placement slot (2) contains at least four auxiliary rollers (902), and one end of the axle of each auxiliary roller (902) is connected to a driven gear (903). The gear shaft (904) is installed in the placement seat (1), and each gear shaft (904) meshes with the corresponding driven gear (903). The power output end of the motor (901) is connected to the corresponding gear shaft (904). The elastic band (8011) is connected to a hook (802) at both ends, and the hanging ring (803) is installed on the two long side walls of the placement seat (1) at the connection part with the hook (802).

2. The transfer device for stainless steel pipe processing parts according to claim 1, characterized in that: The bottom of the placement groove (2) is hollow, directly opposite the assist roller (902). The top of the assist roller (902) extends out of the bottom of the placement groove (2), and a gap is reserved between the assist roller (902) and the hollow structure at the bottom of the placement groove (2).

3. The transfer device for stainless steel pipe processing parts according to claim 1, characterized in that: The driven gear (903) is a bevel gear, and the gear shaft (904) consists of a rotating shaft and a bevel gear mounted on the rotating shaft.

4. The transfer device for stainless steel pipe processing parts according to claim 3, characterized in that: The axle of the assist roller (902) is rotatably connected to the placement seat (1), and the placement seat (1) has a hollow structure located at the gear shaft (904).

5. The transfer device for stainless steel pipe processing parts according to claim 1, characterized in that: The elastic band (8011) is connected to the hook (802) by binding, and the hanging ring (803) is welded to the placement seat (1).

6. The transfer device for stainless steel pipe processing parts according to claim 1, characterized in that: A push handle (4) is welded to one side of the upper end of the mobile base (7). An operation panel (3) is installed on one side of the top of the push handle (4). A storage battery (6) is also installed on the upper end of the mobile base (7) on one side of the push handle (4).

7. A transfer device for stainless steel pipe processing parts according to claim 6, characterized in that: The operation panel (3) is electrically connected to the motor (901) and the battery (6).