A metal pipe fitting installation end support base
Patent Information
- Application Number
- CN202522270255.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0003]本实用新型针对现有技术中金属管件端头支撑不稳定、安装精度低的问题,为此提供了一种通过结构优化实现稳定支撑的金属管件安装用端头支撑座
[0019]通过上述技术方案,本实用新型实现了对金属管件端头的稳定支撑,有效避免了安装过程中因支撑不稳定导致的精度降低问题。采用丝杆与螺纹筒的配合实现了精确的位置调节,提升了安装效率。通过调节弹簧和抵接轮的弹性支撑系统,适应不同直径的金属管件主体,增强了设备的通用性。
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Figure CN224649259U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pipe fitting installation technology, specifically to an end support for installing metal pipe fittings. Background Technology
[0002] In the field of pipe fitting installation technology, end support of metal pipe fittings is a crucial step in ensuring installation accuracy and stability. With the development of industrial technology, the requirements for metal pipe fitting installation are constantly increasing, especially under complex working conditions. How to achieve reliable end support for pipe fittings has become an urgent technical problem to be solved. Currently, various devices exist for end support of metal pipe fittings. These devices typically achieve pipe positioning and support through simple fixing structures or support components. Although these technologies address the basic support needs in pipe fitting installation to some extent, they still have many shortcomings in practical applications. For example, existing support devices have poor adaptability, making it difficult to meet the installation requirements of pipe fittings of different specifications. Furthermore, complex adjustment steps are often required during operation, leading to low work efficiency. In addition, some devices lack sufficient stability during support, easily shifting or loosening due to external interference or the inherent characteristics of the pipe fittings, thus affecting the overall installation quality. More importantly, existing support devices often lack flexible adjustment capabilities when facing special installation scenarios, limiting their applicability. Therefore, developing a metal pipe end support device that combines high adaptability, stability, and ease of operation has become an important research direction in the current technical field. This utility model aims to propose an improved solution to address the above-mentioned problems, in order to meet the diverse needs of modern pipe installation technology. Utility Model Content
[0003] This invention addresses the problems of unstable end support and low installation accuracy of metal pipe fittings in existing technologies by providing an end support base for metal pipe fitting installation that achieves stable support through structural optimization. The support base adopts a modular design, with precise cooperation between components to achieve efficient support for the ends of metal pipe fittings.
[0004] This utility model provides an end support for installing metal pipe fittings, including a mounting plate, a vertical plate, a slide rail, a sliding plate, a guide slider, a guide rail, a lead screw, a threaded cylinder, a connecting plate, a driving slider, a chamfered surface, a connecting seat, a support wheel, an extension plate, a support plate, a connecting block, a rotating arm, a pulley, a sliding inclined surface, a rotating block, an adjusting spring, and a stop wheel. The mounting plate serves as the foundation of the overall structure, with a vertically fixed vertical plate on it. The vertical plate supports the slide rail and forms the main support frame. The slide rail is disposed on the surface of the vertical plate and extends along its length. The slide rail and the sliding plate cooperate through the guide slider to ensure smooth and non-deviationic movement of the sliding plate on the slide rail.
[0005] Furthermore, the sliding plate is equipped with a guide rail, and a lead screw is installed inside the guide rail. The lead screw is connected to the connecting plate through a threaded cylinder, forming a precision adjustment mechanism. One end of the lead screw is equipped with a driving device, which rotates the lead screw to move the threaded cylinder along the lead screw axis, thereby driving the connecting plate to adjust its position. The connecting plate is fixedly connected to the driving slider, and the driving slider changes position as the connecting plate moves to accommodate metal pipe ends of different sizes.
[0006] Specifically, the drive slider is provided with a chamfered bevel. The inclination angle of the chamfered bevel is determined according to actual usage requirements to ensure that the metal pipe body can be easily placed and removed. A connecting seat is provided on the chamfered bevel, and a support wheel is mounted on the connecting seat. The support wheel directly contacts the metal pipe body, providing stable support force. The support wheel is connected to the support plate through an extension plate. The length of the extension plate is designed to extend the support range and enhance the stability of the overall structure.
[0007] Furthermore, the support plate is equipped with a connecting block, which is hinged to the rotating arm. One end of the rotating arm is equipped with a pulley, which is guided to move along a sliding ramp. The surface of the sliding ramp is treated to reduce frictional resistance and ensure smooth pulley movement. A rotating block is also provided on the sliding ramp, connected to one end of an adjusting spring. The other end of the adjusting spring is connected to an abutment wheel, forming an elastic support system. The design parameters of the adjusting spring are based on actual usage needs, enabling it to provide a constant support force within a certain range, thereby adapting to metal pipe bodies of different diameters.
[0008] The rotating block and the pulley are connected by a sliding ramp, the geometry of which is optimized to ensure the pulley can move along a predetermined trajectory. An adjusting spring engages with a contact wheel via the rotating block, and the contact wheel, under the action of the adjusting spring, remains in contact with the metal pipe body, providing additional support.
[0009] Furthermore, a guide rail is provided between the slide rail and the upright plate. The design of the guide rail increases the connection strength between the slide rail and the upright plate, thereby improving the stability of the overall structure. In addition, a threaded cylinder is provided between the drive slider and the lead screw. The pitch of the threaded cylinder can be adjusted precisely according to actual use requirements.
[0010] In particular, the technical solution of this utility model also includes the following detailed optimizations: a chamfered bevel is provided between the support wheel and the metal pipe body, and the geometry of the chamfered bevel is designed to ensure that the metal pipe body can be easily placed and removed. A guide slider is provided between the slide rail and the sliding plate, and the number and distribution of the guide sliders are based on actual usage needs to ensure that the sliding plate moves smoothly and without deviation on the slide rail.
[0011] S1. The mounting plate is fixed to the workbench, the upright plate is vertically mounted on the mounting plate, and the slide rail is set on the surface of the upright plate.
[0012] S2. The sliding plate cooperates with the slide rail through guide sliders. The number and distribution of guide sliders are determined according to actual usage needs to ensure that the sliding plate moves smoothly and without deviation on the slide rail.
[0013] S3. A guide rail is installed on the sliding plate, and a lead screw is installed inside the guide rail. The lead screw is connected to the connecting plate through a threaded cylinder to form a precise adjustment mechanism.
[0014] S4. The connecting plate is fixedly connected to the drive slider. The drive slider changes position as the connecting plate moves to accommodate metal pipe ends of different sizes.
[0015] S5. A chamfered bevel is provided on the drive slider, a connecting seat is provided on the chamfered bevel, and a support wheel is installed on the connecting seat.
[0016] S6. The support wheel is connected to the support plate via an extension plate. The length of the extension plate is designed to extend the support range and enhance the stability of the overall structure.
[0017] S7. A connecting block is provided on the support plate. The connecting block is hinged to the rotating arm. A pulley is provided at one end of the rotating arm. The pulley guides its movement path through a sliding inclined plane.
[0018] S8. A rotating block is set on the sliding inclined surface. The rotating block is connected to one end of the adjusting spring, and the other end of the adjusting spring is connected to the abutment wheel to form an elastic support system.
[0019] Through the above technical solution, this utility model achieves stable support for the end of metal pipe fittings, effectively avoiding the problem of reduced accuracy caused by unstable support during installation. The use of a lead screw and threaded cylinder enables precise position adjustment, improving installation efficiency. The elastic support system of adjusting springs and abutment wheels adapts to metal pipe fittings of different diameters, enhancing the versatility of the equipment.
[0020] The beneficial effects of this utility model are as follows: through reasonable structural design and optimized configuration, the metal pipe fitting end support has high stability and precision, which can significantly improve installation efficiency and accuracy. It has a compact structure, is easy to operate, and is suitable for various metal pipe fitting installation scenarios, possessing strong practicality and promotional value. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0022] Figure 1A schematic diagram of the overall structure provided for an embodiment of this utility model; Figure 2 Provided for the embodiments of this utility model Figure 1 A schematic diagram of the disassembled structure; Figure 3 Provided for the embodiments of this utility model Figure 2 A schematic diagram of a partial structure; Figure 4 Provided for the embodiments of this utility model Figure 3 A schematic diagram of the structure at point A in the middle.
[0023] Explanation of reference numerals in the attached figures: 1. Mounting plate; 2. Vertical plate; 3. Slide rail; 4. Sliding plate; 5. Guide slider; 6. Guide rail; 7. Lead screw; 8. Threaded cylinder; 9. Connecting plate; 10. Drive slider; 11. Chamfered bevel; 12. Connecting seat; 13. Support wheel; 14. Extension plate; 15. Support plate; 16. Connecting block; 17. Rotating arm; 18. Pulley; 19. Sliding bevel; 20. Rotating block; 21. Adjusting spring; 22. Abutment wheel; 23. Pipe body. Detailed Implementation
[0024] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0025] This utility model provides an end support for installing metal pipe fittings, combined with the attached... Figure 1 To be continued Figure 4 The specific implementation method is described in detail below. This support base achieves efficient and stable support for the ends of metal pipe fittings through a modular design. Its structure includes a mounting plate 1, a vertical plate 2, a slide rail 3, a sliding plate 4, a guide slider 5, a guide rail 6, a lead screw 7, a threaded cylinder 8, a connecting plate 9, a drive slider 10, a chamfered bevel 11, a connecting seat 12, a support wheel 13, an extension plate 14, a support plate 15, a connecting block 16, a rotating arm 17, a pulley 18, a sliding bevel 19, a rotating block 20, an adjusting spring 21, and an abutment wheel 22. The specific functions and operating principles of each component are described in detail below.
[0026] Mounting plate 1, as the foundation of the overall structure, is fixed to the workbench to ensure the stability of the entire device during operation. Vertical plate 2 is fixed to mounting plate 1, supporting slide rail 3 and forming the main support frame. Slide rail 3 is located on the surface of vertical plate 2 and extends along its length, providing a track for the sliding plate 4. The sliding plate 4 engages with slide rail 3 via guide sliders 5. The number and distribution of guide sliders 5 are determined according to actual usage needs to ensure smooth and non-deviation-free movement of the sliding plate 4 on the slide rail 3. The design of the sliding plate 4 allows operators to adjust its position according to actual needs, thus accommodating metal pipe bodies 23 of different sizes.
[0027] A guide rail 6 is provided on the sliding plate 4, and a lead screw 7 is installed inside the guide rail 6. The lead screw 7 is connected to the connecting plate 9 through a threaded cylinder 8, forming a precision adjustment mechanism. A driving device is provided at one end of the lead screw 7. The driving device rotates the lead screw 7 to move the threaded cylinder 8 along the axial direction of the lead screw 7, thereby driving the connecting plate 9 to adjust its position. The connecting plate 9 is fixedly connected to the driving slider 10. The driving slider 10 changes position as the connecting plate 9 moves to accommodate metal pipe fittings of different sizes. This design achieves precise positioning of the metal pipe fitting ends, significantly improving installation accuracy.
[0028] The drive slider 10 is provided with a chamfered bevel 11. The inclination angle of the chamfered bevel 11 is determined according to actual usage requirements to ensure that the metal pipe body 23 can be easily placed and removed. A connecting seat 12 is provided on the chamfered bevel 11, and a support wheel 13 is installed on the connecting seat 12. The support wheel 13 directly contacts the metal pipe body 23, providing stable support force. The support wheel 13 is connected to the support plate 15 through an extension plate 14. The length of the extension plate 14 is designed to extend the support range and enhance the stability of the overall structure. A connecting block 16 is provided on the support plate 15. The connecting block 16 is hinged to the rotating arm 17. One end of the rotating arm 17 is provided with a pulley 18, and the pulley 18 is guided to move through a sliding bevel 19.
[0029] The surface of the sliding ramp 19 is treated to reduce frictional resistance and ensure smooth movement of the pulley 18. A rotating block 20 is provided on the sliding ramp 19, connected to one end of an adjusting spring 21, and the other end of the adjusting spring 21 is connected to an abutment wheel 22, forming an elastic support system. The design parameters of the adjusting spring 21 are based on actual usage needs, enabling it to provide a constant support force within a certain range, thus adapting to metal pipe bodies 23 of different diameters. The sliding ramp 19 is located between the rotating block 20 and the pulley 18, and its geometry is optimized to ensure that the pulley 18 can move along a predetermined trajectory. The adjusting spring 21 cooperates with the abutment wheel 22 through the rotating block 20. Under the action of the adjusting spring 21, the abutment wheel 22 always maintains contact with the metal pipe body 23, providing additional support force.
[0030] A guide rail 6 is provided between the slide rail 3 and the vertical plate 2. The design of the guide rail 6 increases the connection strength between the slide rail 3 and the vertical plate 2, thereby improving the stability of the overall structure. In addition, a threaded cylinder 8 is provided between the drive slider 10 and the lead screw 7. The pitch of the threaded cylinder 8 is adjusted according to actual usage requirements to achieve precise position adjustment. The precision machining of the threaded cylinder 8 ensures that the lead screw 7 can accurately transmit power during rotation, thereby enabling fine adjustment of the metal pipe end.
[0031] A chamfered bevel 11 is provided between the support wheel 13 and the metal pipe body 23. The geometry of the chamfered bevel 11 is designed to ensure that the metal pipe body 23 can be easily placed and removed. The design of the chamfered bevel 11 takes into account the shape characteristics of the metal pipe body 23, avoiding jamming during placement or removal. A guide slider 5 is provided between the slide rail 3 and the sliding plate 4. The number and distribution of the guide sliders 5 are determined according to actual usage needs to ensure that the sliding plate 4 moves smoothly and without deviation on the slide rail 3. The uniformity of the distribution of the guide sliders 5 is optimized to ensure that the sliding plate 4 remains stable in any position.
[0032] The working principle of this utility model is as follows: S1, the mounting plate 1 is fixed on the workbench to ensure the stability of the overall structure. S2, the upright plate 2 is vertically installed on the mounting plate 1, and the slide rail 3 is set on the surface of the upright plate 2. S3, the sliding plate 4 cooperates with the slide rail 3 through the guide slider 5. The number and distribution of the guide slider 5 are determined according to actual usage needs to ensure that the sliding plate 4 moves smoothly and without deviation on the slide rail 3. S4, a guide rail 6 is set on the sliding plate 4, and a lead screw 7 is set inside the guide rail 6. The lead screw 7 is connected to the connecting plate 9 through the threaded cylinder 8 to form a precise adjustment mechanism. S5, the connecting plate 9 is fixedly connected to the drive slider 10. The drive slider 10 changes position as the connecting plate 9 moves to adapt to the ends of metal pipes of different sizes. S6, a chamfered bevel 11 is set on the drive slider 10, and a connecting seat 12 is set on the chamfered bevel 11. A support wheel 13 is installed on the connecting seat 12. S7, the support wheel 13 is connected to the support plate 15 through the extension plate 14. The length of the extension plate 14 is designed to extend the support range and enhance the stability of the overall structure. S8, A connecting block 16 is provided on the support plate 15. The connecting block 16 is hinged to the rotating arm 17. A pulley 18 is provided at one end of the rotating arm 17. The pulley 18 is guided to move through the sliding inclined plane 19. S9, A rotating block 20 is provided on the sliding inclined plane 19. The rotating block 20 is connected to one end of the adjusting spring 21. The other end of the adjusting spring 21 is connected to the abutment wheel 22, forming an elastic support system.
[0033] In practical applications, the technical solution of this utility model can be widely used in the installation of metal pipe fittings. For example, on an industrial production line, when end support is required for the metal pipe fitting body 23, the operator first fixes the mounting plate 1 on the workbench, and then places the metal pipe fitting body 23 on the support wheel 13. By rotating the lead screw 7, the slider 10 is driven to move along the slide rail 3 until the support wheel 13 is in close contact with the metal pipe fitting body 23. At this time, the adjusting spring 21 cooperates with the abutment wheel 22 through the rotating block 20 to ensure that the metal pipe fitting body 23 remains stable throughout the installation process. This design not only improves installation efficiency but also significantly reduces installation errors caused by unstable support.
[0034] This invention achieves stable support for the ends of metal pipe fittings through a reasonable structural design and optimized configuration. The use of a lead screw 7 and a threaded cylinder 8 enables precise position adjustment, improving installation efficiency. The elastic support system of adjusting spring 21 and abutment wheel 22 adapts to metal pipe fitting bodies 23 of different diameters, enhancing the equipment's versatility. The overall structure is compact, operation is simple, and it is suitable for various metal pipe fitting installation scenarios, possessing strong practicality and promotional value.
[0035] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. An end support for installing metal pipe fittings, characterized in that, The system includes a mounting plate (1), a vertical plate (2), a slide rail (3), a sliding plate (4), a guide slider (5), a guide rail (6), a lead screw (7), a threaded cylinder (8), a connecting plate (9), a drive slider (10), a chamfered bevel (11), a connecting seat (12), a support wheel (13), an extension plate (14), a support plate (15), a connecting block (16), a rotating arm (17), a pulley (18), a sliding bevel (19), a rotating block (20), an adjusting spring (21), and a contact wheel (22). The mounting plate (1) is the basic part of the overall structure. The vertical plate (2) is vertically fixed on the mounting plate (1). The slide rail (3) is set on the surface of the vertical plate (2) and extends along the length direction. The sliding plate (4) cooperates with the slide rail (3) through the guide slider (5). The sliding plate (4) is provided with a guide rail (6). The guide rail (6) contains... A lead screw (7) is provided, which is connected to a connecting plate (9) via a threaded cylinder (8). The connecting plate (9) is fixedly connected to a drive slider (10). The drive slider (10) is provided with a chamfered bevel (11). A connecting seat (12) is provided on the chamfered bevel (11). A support wheel (13) is installed on the connecting seat (12). The support wheel (13) is connected to a support plate (15) via an extension plate (14). A connecting block (16) is provided on the support plate (15). The connecting block (16) is hinged to a rotating arm (17). One end of the rotating arm (17) is provided with a pulley (18). The pulley (18) guides the movement path via a sliding bevel (19). A rotating block (20) is provided on the sliding bevel (19). The rotating block (20) is connected to one end of an adjusting spring (21). The other end of the adjusting spring (21) is connected to an abutment wheel (22).
2. The end support for installing metal pipe fittings according to claim 1, characterized in that, A guide slider (5) is provided between the slide rail (3) and the sliding plate (4). The number and distribution of the guide sliders (5) are determined according to actual usage needs to ensure that the sliding plate (4) moves smoothly and without deviation on the slide rail (3).
3. The end support for installing metal pipe fittings according to claim 2, characterized in that, The uniformity of the distribution of the guide slider (5) has been optimized to ensure that the sliding plate (4) remains stable in any position.
4. The end support for installing metal pipe fittings according to claim 1, characterized in that, One end of the lead screw (7) is provided with a driving device. The driving device rotates the lead screw (7) to make the threaded cylinder (8) move along the axial direction of the lead screw (7), thereby driving the connecting plate (9) to adjust its position.
5. The end support for installing metal pipe fittings according to claim 4, characterized in that, The pitch of the threaded cylinder (8) is adjusted precisely according to actual usage requirements.
6. The end support for installing metal pipe fittings according to claim 1, characterized in that, The design parameters of the adjusting spring (21) are based on actual usage needs, so that it can provide a constant support force within a certain range.
7. The end support for installing metal pipe fittings according to claim 6, characterized in that, The adjusting spring (21) cooperates with the abutting wheel (22) through the rotating block (20), and the abutting wheel (22) always keeps in contact with the metal pipe body (23).