Efficient stainless steel mounting clamp

By designing automatic drive stainless steel mounting fixtures, efficient splicing and fixing of stainless steel pipes of different diameters and specifications is achieved, solving the problems of poor adaptability and manual adjustment of traditional fixtures, and improving work efficiency and accuracy.

CN223172844UActive Publication Date: 2025-08-01SHANGHAI XINHE METAL TECH CO LTD
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Patent Information

Application Number
CN202422332924.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-08-01
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

Traditional stainless steel pipe installation fixtures cannot adapt to different diameter specifications, and require manual adjustment during splicing, resulting in high labor intensity and difficult to ensure accuracy.

Method used

Adopting a design including base, mobile seat, fixing seat, clamping assembly and compression assembly, the automatic splicing and fixing of stainless steel pipes is achieved through a motor-driven threaded rod, adapting to different diameter specifications, and simplifying loading and unloading operations through a rolling shaft.

Benefits of technology

It improves the splicing efficiency and accuracy of stainless steel pipes, reduces labor intensity, and realizes adaptive clamping and fixing of different diameter specifications, simplifying the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of clamps, particularly relates to an efficient stainless steel mounting clamp, and aims to solve the problems that labor intensity is high and precision is difficult to guarantee due to the fact that clamping and fixing of different diameter specifications cannot be achieved and manual adjustment is needed during splicing in the prior art, the efficient stainless steel mounting clamp comprises a base, and a notch is formed in the top of the base. Two sliding blocks are symmetrically and fixedly arranged on the top of the base, the tops of the two sliding blocks are slidably connected with the same movable seat, the movable seat can rapidly move back and forth through the first driving assembly, and therefore two stainless steel pipes can be conveniently spliced, and the working efficiency is improved; through cooperative use of the two clamping assemblies and the two pressing assemblies, stainless steel pipes can be clamped and fixed, clamping and fixing of different diameter specifications can be achieved, feeding and discharging are more convenient and faster through a rolling shaft, manual operation is reduced, and the labor intensity is lowered.
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Description

Technical Field

[0001] The utility model relates to the technical field of fixtures, in particular to an efficient stainless steel installation fixture. Background Technique

[0002] The stainless steel pipe is a hollow long steel bar, which is widely used as a pipeline for transporting fluids, such as oil, natural gas, water, gas, steam, etc. In addition, when the bending resistance and torsional strength are the same, the weight is lighter, so it is also widely used in the manufacture of mechanical parts and engineering structures. During the processing and installation of stainless steel pipes, installation fixtures are indispensable tools.

[0003] Traditional installation fixtures are often designed to fix stainless steel pipes of a certain diameter specification and cannot adapt to clamping and fixing of various different diameter specifications. Moreover, when splicing two stainless steel pipes, manual adjustment of the position is required, which not only has a large labor intensity but also is difficult to ensure accuracy. Therefore, we propose an efficient stainless steel installation fixture to solve the above problems. Content of the Utility Model

[0004] The purpose of the utility model is to solve the disadvantages in the prior art that it is impossible to clamp and fix different diameter specifications and manual adjustment is required during splicing, resulting in a large labor intensity and difficult to ensure accuracy, and to propose an efficient stainless steel installation fixture.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] An efficient stainless steel installation fixture, including a base, a notch is opened at the top of the base, two sliders are symmetrically and fixedly arranged at the top of the base, the top of the two sliders is slidably connected with the same moving seat, and the bottom of the moving seat extends into the notch. A fixed seat is fixedly arranged at the top of the base. First grooves are opened at the tops of the moving seat and the fixed seat. The fixture further includes:

[0007] A first driving component, which is arranged on the base and is used to move the moving seat back and forth to facilitate the splicing of two steel materials;

[0008] Two groups of clamping components, which are respectively arranged on the corresponding moving seat and fixed seat and are used to clamp the steel materials;

[0009] Two groups of pressing components, which are respectively arranged on the tops of the corresponding moving seat and fixed seat and are used to cooperate with the clamping components to fix the steel materials.

[0010] In a possible design, the first driving component includes a first threaded rod. Both ends of the first threaded rod are rotatably connected to the inner walls on both sides of the notch. The first threaded rod penetrates through the moving seat and is threadedly connected to the moving seat. One end of the first threaded rod penetrates through the base and extends to the outside of the base. A first motor is fixedly connected to one side of the base, and the output end of the first motor is fixedly connected to the first threaded rod.

[0011] In a possible design, the fixing component includes two first clamping blocks. Both first clamping blocks are slidably connected to the inner walls on both sides of the first groove, and the sides of the two first clamping blocks close to each other are provided with beveled surfaces in an arc shape. The same second threaded rod is rotatably connected to the inner walls on both sides of the first groove. The second threaded rod penetrates through the two first clamping blocks respectively, and the thread on the second threaded rod is a double-threaded rod with opposite threads. The two first clamping blocks are respectively sleeved on the positive and negative threaded sections of the second threaded rod in a threaded manner. A second driving component for driving the second threaded rod to rotate is connected to one side of the moving seat.

[0012] In a possible design, the second driving component includes a second motor. The second motor is fixedly arranged on one side of the moving seat. One end of the second threaded rod penetrates through the moving seat and extends to the outside of the moving seat. The output end of the second motor is fixedly connected to the second threaded rod.

[0013] In a possible design, the pressing component includes a support column. The support column is fixedly arranged on the top of the moving seat. A second groove is formed on the side of the support column close to the first clamping block. A moving arm is slidably connected to the inner walls on both sides of the second groove. The same third threaded rod is rotatably connected to the top inner wall and the bottom inner wall of the second groove. The bottom end of the third threaded rod threadedly penetrates through the moving arm. A second clamping block is fixedly connected to the bottom of the moving arm. A third motor is fixedly connected to the top of the support column. The top end of the third threaded rod penetrates through the support column and extends to the outside. The output end of the third motor is fixedly connected to the third threaded rod.

[0014] In a possible design, two rolling shafts for facilitating the loading and unloading of steel are symmetrically and rotatably connected to the top of the base.

[0015] In this application, first, the stainless steel pipes to be spliced are placed on the rolling shafts on the base. Through the rotation of the rolling shafts, the stainless steel pipes can be conveniently moved to the position between the moving seat and the fixed seat. Then, the second motor is started. The second motor drives the second threaded rod to rotate. Since the thread on the second threaded rod is a double-threaded rod with opposite threads, the two first clamping blocks on the second threaded rod will move towards or away from each other, thereby realizing the clamping of the stainless steel pipes.

[0016] Then start the third motor, drive the third threaded rod to rotate through the third motor, and make the moving arm move downward in the second groove, thereby driving the second clamping block to press the top of the stainless steel pipe, and fix the stainless steel pipe by the three-point contact of the two first clamping blocks and the second clamping block to ensure the stability and accuracy of the stainless steel pipe during the splicing process.

[0017] Next, the first motor is started. The first motor drives the first threaded rod to rotate, and makes the moving seat move along the notch direction under the guidance of the slider, thereby driving the stainless steel pipe clamped on the moving seat to approach the stainless steel pipe on the fixed seat to complete the splicing of the stainless steel pipe. After the splicing of the stainless steel pipe is completed, start the second motor again to make the two first clamping blocks move away from each other. At the same time, start the third motor to make the second clamping block move upward to release the stainless steel pipe. Finally, through the rotation of the rolling shaft, move the spliced stainless steel pipe out of the fixture to complete the entire processing process.

[0018] Beneficial effects:

[0019] In the present utility model, for the efficient stainless steel installation fixture, through the automatic drive of the first drive assembly, the moving seat can move back and forth quickly, thus facilitating the splicing of two stainless steel pipes and greatly improving the work efficiency;

[0020] In the present utility model, for the efficient stainless steel installation fixture, through the coordinated use of two sets of clamping assemblies and two sets of pressing assemblies, not only can the stainless steel pipe be clamped and fixed, effectively preventing displacement and deformation during the splicing process, but also it can adapt to the clamping and fixing of different diameter specifications;

[0021] In the present utility model, for the efficient stainless steel installation fixture, through the design of the rolling shaft, the loading and unloading of the stainless steel pipe are more convenient and fast, reducing manual operation and lowering the labor intensity;

[0022] In the present utility model, through the first drive assembly, the moving seat can move back and forth quickly, thus facilitating the splicing of two stainless steel pipes and improving the work efficiency. Through the coordinated use of two sets of clamping assemblies and two sets of pressing assemblies, not only can the stainless steel pipe be clamped and fixed, but also it can adapt to the clamping and fixing of different diameter specifications. Through the rolling shaft, the loading and unloading are more convenient and fast, reducing manual operation and lowering the labor intensity. Description of the drawings

[0023] Figure 1 It is a three-dimensional structure diagram of an efficient stainless steel installation fixture proposed by the present utility model;

[0024] Figure 2 It is a three-dimensional structure diagram of the base of an efficient stainless steel installation fixture proposed by the present utility model;

[0025] Figure 3 A partially sectional three-dimensional structural schematic diagram of the fixing component of an efficient stainless steel installation fixture proposed by the present utility model.

[0026] In the figure: 1, base; 2, moving seat; 3, fixed seat; 4, first threaded rod; 5, first motor; 6, first clamping block; 7, second threaded rod; 8, second motor; 9, support column; 10, moving arm; 11, second clamping block; 12, third threaded rod; 13, third motor; 14, rolling shaft. Specific embodiments

[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.

[0028] Embodiment 1

[0029] Referring to Figures 1-3 , a fixture includes a base 1. A notch is provided at the center of the top of the base 1, and the notch penetrates through the top and bottom of the base 1. Two sliders are symmetrically and fixedly arranged on both sides of the top of the base 1. A moving seat 2 is slidably connected to the tops of these two sliders. The bottom of the moving seat 2 extends into the notch and can slide along the notch direction inside the notch. A fixed seat 3 is fixedly arranged at the center of the top of the base 1. First grooves are provided at the tops of the moving seat 2 and the fixed seat 3 for accommodating steel materials and clamping them.

[0030] In order to realize the reciprocating movement of the moving seat 2, a first driving component is provided. The first driving component includes a first threaded rod 4. The two ends of the first threaded rod 4 are respectively rotatably connected to the inner walls of both sides of the notch. The first threaded rod 4 penetrates through the moving seat 2 and is threadedly connected to the moving seat 2. One end of the first threaded rod 4 penetrates through the base 1 and extends to the outside of the base 1. A first motor 5 is fixedly connected to one side of the base 1. The output end of the first motor 5 is fixedly connected to the first threaded rod 4. When the first motor 5 is started, it will drive the first threaded rod 4 to rotate, thereby driving the moving seat 2 to move along the notch direction under the guidance of the sliders.

[0031] In order to clamp the steel, a set of clamping components are respectively arranged on the moving seat 2 and the fixed seat 3. The clamping component includes two first clamping blocks 6. Both of the two first clamping blocks 6 are slidably connected to the inner walls on both sides of the first groove. And the sides of the two first clamping blocks 6 close to each other are arranged as inclined planes with arcs, so as to better adapt to the shape of the steel. A second threaded rod 7 is rotatably connected to the inner walls on both sides of the first groove. The second threaded rod 7 respectively penetrates through the two first clamping blocks 6, and the threads on the second threaded rod 7 are double-threaded with opposite directions. The two first clamping blocks 6 are respectively sleeved on the threaded sections with opposite threads of the second threaded rod 7. One side of the moving seat 2 is connected with a second driving component for driving the second threaded rod 7 to rotate. When the second driving component is started, it will drive the second threaded rod 7 to rotate, and then drive the two first clamping blocks 6 to move towards or away from each other, realizing the clamping or releasing of the steel.

[0032] The second driving component includes a second motor 8. The second motor 8 is fixedly arranged on one side of the moving seat 2. One end of the second threaded rod 7 penetrates through the moving seat 2 and extends to the outside of the moving seat 2. The output end of the second motor 8 is fixedly connected with the second threaded rod 7. When it is necessary to clamp the steel, start the second motor 8 to drive the second threaded rod 7 to rotate, and then drive the two first clamping blocks 6 to move towards each other, realizing the clamping of the steel.

[0033] In order to cooperate with the clamping component to fix the steel, a set of pressing components are respectively arranged on the tops of the moving seat 2 and the fixed seat 3. The pressing component includes a support column 9. The support column 9 is fixedly arranged on the top of the moving seat 2 or the fixed seat 3. A second groove is formed on the side of the support column 9 close to the first clamping block 6. A moving arm 10 is slidably connected to the inner walls on both sides of the second groove. A third threaded rod 12 is rotatably connected to the top inner wall and the bottom inner wall of the second groove. The bottom end of the third threaded rod 12 threadedly penetrates through the moving arm 10. A second clamping block 11 is fixedly connected to the bottom of the moving arm 10 for pressing the steel. A third motor 13 is fixedly connected to the top of the support column 9. The top end of the third threaded rod 12 penetrates through the support column 9 and extends to the outside. The output end of the third motor 13 is fixedly connected with the third threaded rod 12. When it is necessary to press the steel, start the third motor 13 to drive the third threaded rod 12 to rotate, and then drive the moving arm 10 to move up and down in the second groove, realizing the pressing of the steel.

[0034] This application can be used in the field of stainless steel installation technology, and can also be used in other fields applicable to this application.

[0035] Embodiment 2

[0036] Reference Figures 2-3, improved on the basis of Embodiment 1: An efficient stainless steel installation fixture, which is applied to the technical field of stainless steel installation. In this embodiment, two rolling shafts 14 are symmetrically and rotatably connected to the top of the base 1. These two rolling shafts 14 are located on both sides of the notch and are used to facilitate the feeding and discharging of steel. When feeding is required, the steel is placed on the rolling shafts 14, and through the rotation of the rolling shafts 14, the steel is moved to the clamping assembly for clamping. When discharging is required, the rolling shafts 14 are started again to move the spliced stainless steel pipe out of the fixture.

[0037] However, as is well known to those skilled in the art, the working principles and wiring methods of the first motor 5, the second motor 8, and the third motor 13 are common knowledge, and they all belong to conventional means or well-known common sense, so they will not be elaborated here. Those skilled in the art can make any selection according to their needs or convenience.

[0038] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.

Claims

1. An efficient stainless-steel installation fixture, comprising a base (1), a notch is formed in the top of the base (1), two sliders are symmetrically and fixedly arranged on the top of the base (1), the same moving seat (2) is slidably connected to the tops of the two sliders, and the bottom of the moving seat (2) extends into the notch, a fixed seat (3) is fixedly arranged on the top of the base (1), first grooves are formed in the tops of the moving seat (2) and the fixed seat (3), and it is characterized in that, The fixture further includes: A first driving component, which is arranged on the base (1) and is used to move the moving seat (2) back and forth to facilitate the splicing of two steel materials; Two groups of clamping components, which are respectively arranged on the corresponding moving seat (2) and fixed seat (3) and are used to clamp the steel materials; Two groups of pressing components, which are respectively arranged on the tops of the corresponding moving seat (2) and fixed seat (3) and are used to cooperate with the clamping components to fix the steel materials.

2. The high-efficiency stainless steel installation fixture according to claim 1, characterized in that The first driving component includes a first threaded rod (4), both ends of the first threaded rod (4) are rotatably connected to the inner walls on both sides of the notch, the first threaded rod (4) passes through the moving seat (2) and is threadedly connected to the moving seat (2), one end of the first threaded rod (4) passes through the base (1) and extends to the outside of the base (1), and a first motor (5) is fixedly connected to one side of the base (1), and the output end of the first motor (5) is fixedly connected to the first threaded rod (4).

3. An efficient stainless steel installation fixture according to claim 1, characterized in that, The fixing component includes two first clamping blocks (6), both of the two first clamping blocks (6) are slidably connected to the inner walls on both sides of the first groove, and the sides of the two first clamping blocks (6) close to each other are provided with bevel surfaces in a radian shape. The inner walls on both sides of the first groove are rotatably connected to the same second threaded rod (7), the second threaded rod (7) respectively passes through the two first clamping blocks (6), and the thread on the second threaded rod (7) is a double-threaded rod with opposite threads. The two first clamping blocks (6) are respectively threadedly sleeved on the positive and negative threaded sections of the second threaded rod (7), and a second driving component for driving the second threaded rod (7) to rotate is connected to one side of the moving seat (2).

4. The high-efficiency stainless steel installation fixture according to claim 3, characterized in that, The second driving component includes a second motor (8), the second motor (8) is fixedly arranged on one side of the moving seat (2), one end of the second threaded rod (7) passes through the moving seat (2) and extends to the outside of the moving seat (2), and the output end of the second motor (8) is fixedly connected to the second threaded rod (7).

5. An efficient stainless steel installation fixture according to claim 3, characterized in that, The pressing component includes a support column (9), the support column (9) is fixedly arranged on the top of the moving seat (2), a second groove is opened on the side of the support column (9) close to the first clamping block (6), a moving arm (10) is slidably connected to the inner walls on both sides of the second groove, the same third threaded rod (12) is rotatably connected to the top inner wall and the bottom inner wall of the second groove, the bottom end of the third threaded rod (12) threadedly penetrates the moving arm (10), a second clamping block (11) is fixedly connected to the bottom of the moving arm (10), a third motor (13) is fixedly connected to the top of the support column (9), the top end of the third threaded rod (12) passes through the support column (9) and extends to the outside, and the output end of the third motor (13) is fixedly connected to the third threaded rod (12).

6. An efficient stainless steel installation fixture according to claim 1, characterized in that, Two rolling shafts (14) for facilitating the loading and unloading of steel materials are symmetrically and rotatably connected to the top of the base (1).