一种管线减震拉杆工装
By designing adjustment and vibration damping sections, the problem of inconvenient adjustment of existing tooling was solved, achieving flexible adjustment and vibration damping effects, enhancing adaptability and practicality, and ensuring the safety and stability of the pipeline system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING WARBURG ENERGY DEV LTD
- Filing Date
- 2025-08-29
- Publication Date
- 2026-07-17
AI Technical Summary
Existing tie rod fixtures are not easy to adjust and cannot be flexibly adjusted according to actual working conditions, which affects the vibration reduction effect and reduces adaptability and practicality.
The design includes an adjustment section and a vibration damping section. The adjustment section achieves position adjustment through the cooperation of a disc and a cylindrical slide rod. The locking component is fixed by the engagement of a limit rod and a limit groove. The vibration damping section absorbs vibration energy through a connecting component and a vibration damping component, including a vibration damping spring and a damper to buffer vibration.
It enables flexible adjustment and adaptive modification of the tooling, which can adapt to different vibration environments, reduce the risk of loosening and breakage at pipeline connection points, and ensure the safety and stability of the pipeline system.
Smart Images

Figure CN224516134U_ABST
Abstract
Claims
1. A pipeline shock absorbing tie rod tooling comprising a pipe (111), characterized in that, Also includes: Adjustment section (2), wherein a plurality of adjustment sections (2) are provided, and the plurality of adjustment sections (2) are arranged in a linear array on the pipe (111); Vibration damping part (3), a plurality of vibration damping parts (3) are installed, and the plurality of vibration damping parts (3) are installed in a linear array on the pipe (111); The regulating unit (2) includes an regulating component (21) which is mounted on the pipe (111); as well as A locking component (22) is disposed above the pipe (111); The adjustment assembly (21) includes a circular box (211) disposed on the pipe (111). A disc (212) is rotatably connected to the inner wall of the circular box (211). A plurality of arc grooves (213) are provided on the disc (212). A cylindrical slide rod (214) is provided on the inner wall of each of the arc grooves (213). A plurality of guide grooves (215) are provided on the front side of the pipe (111). The plurality of guide grooves (215) are slidably connected to the plurality of cylindrical slide rods (214). Among them, the outer walls of several cylindrical slide rods (214) are in contact with the inner walls of several arc grooves (213).
2. The tooling of claim 1, wherein, The vibration damping part (3) includes a connecting assembly (31), and a plurality of the connecting assemblies (31) are arranged in a circumferential array on the pipe (111) and the circular box (211); and Vibration damping components (32) are provided in a plurality of them, and the plurality of vibration damping components (32) are arranged in a circumferential array between the circular box (211) and the pipe (111).
3. The tooling of claim 2, wherein, The locking assembly (22) includes a lever (221) fixedly connected to the outer wall of the disc (212). An L-shaped rod (222) is fixedly connected to the front side of the lever (221). A limit rod (223) passes through the L-shaped rod (222). A return spring (224) is fixedly connected to the inner wall of the L-shaped rod (222). The return spring (224) is sleeved on the limit rod (223). Limiting elements are provided on the disc (211) and the limit rod (223). The limiting rod (223) is slidably connected to the L-shaped rod (222).
4. The tooling of claim 3, wherein, The connecting assembly (31) includes a hinge block (311) rotatably connected to the outer wall of the corresponding cylindrical slide rod (214). A pull rod (312) is fixedly connected to the bottom of the hinge block (311). A hollow pull rod (313) is slidably connected to the outer wall of the pull rod (312). A flange connector (314) is fixedly connected to the bottom of the hollow pull rod (313). A connector is provided at the bottom of the cylindrical slide rod (214). Vibration damping components are provided on the pull rod (312) and the hollow pull rod (313). The flange connector (314) consists of two flanges connected by six bolts and nuts.
5. The tooling of claim 4, wherein, The vibration damping assembly (32) includes a vibration damping spring (321) sleeved on the outer wall of the tie rod (312). The top of the vibration damping spring (321) is fixedly connected to the tie rod (312), and the bottom of the vibration damping spring (321) is fixedly connected to the hollow tie rod (313). A damper (322) is provided inside the hollow tie rod (313), and the top of the damper (322) is fixedly connected to the tie rod (312). The bottom of the damper (322) is fixedly connected to the flange connector (314).
6. The tooling of claim 4 wherein, The limiting component includes a ring (225) fixedly connected to the outer wall of the limiting rod (223). The front side of the ring (225) is fixedly connected to the return spring (224). The front side of the round box (211) is provided with several limiting grooves (226). The rear side of the limiting rod (223) extends into the corresponding limiting groove (226). The rear extension of the limiting rod (223) contacts the inner wall of the corresponding limiting groove (226). The front side of the limiting rod (223) is fixedly connected with a handle (227). The rear side of the handle (227) contacts the round box (211). The round box (211) is provided with a sliding groove (228). The lever (221) extends to the outside of the round box (211) through the sliding groove (228). The inner wall of the sliding groove (228) is slidably connected to the lever (221). Among them, several limiting slots (226) are arranged in a circular array.
7. The tooling of claim 6 wherein, The connector includes an annular block (315) fixedly connected to the bottom of the cylindrical slide bar (214), a semi-circular block (316) passing through the annular block (315), a fixing block (317) fixedly connected to the bottom of the semi-circular block (316), and the bottom of the fixing block (317) fixedly connected to the round box (211). The outer wall of the semicircular block (316) is in contact with the inner wall of the annular block (315).