Wire bunching structure of hydraulic machine
Through the design of the hydraulic press harness structure and the use of the adjustment unit and the lifting ring and hook system, the individual maintenance and replacement of the hydraulic press connecting lines and the stable harness are achieved, which solves the problem of cumbersome maintenance process in the existing technology and improves maintenance efficiency and harness stability.
Patent Information
- Application Number
- CN202422429623.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-09
AI Technical Summary
When the existing hydraulic press harness structure is used to repair or replace the connecting wires, the entire harness plate needs to be popped up, causing the connecting wires that do not need to be repaired to spread out, which increases the complexity of the maintenance work.
A hydraulic press harness structure was designed, including a base plate, a movable plate, an adjustment unit, a telescopic rod, an upper pressure bar, a spring, and a lifting ring. The movable plate was driven downward by the adjustment unit to contract the telescopic rod and the spring, thereby squeezing and fixing the connecting wires. The connecting wires can then be individually repaired and replaced through the lifting ring and the hook.
It realizes the independent repair and replacement of any connecting wire without affecting the wiring status of other connecting wires, simplifies the repair process, adapts to the wiring requirements of connecting wires of different diameters, and improves the stability and convenience of the wiring.
Smart Images

Figure CN223442945U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure belongs to the technical field of hydraulic machine equipment, and particularly relates to a hydraulic machine wire bundling structure. BACKGROUND
[0002] The hydraulic machine wire bundling structure refers to a device specially used for arranging, organizing and managing the hydraulic pipes, cables or other connecting wires inside the hydraulic machine, aiming to bundle the connecting wires together to ensure their neat and orderly arrangement and effectively avoid the confusion, entanglement or damage among the connecting wires.
[0003] The design of the hydraulic machine wire bundling structure can improve work efficiency, reduce maintenance cost and enhance the reliability of the equipment; through the use of the wire bundling structure, the operating personnel can more easily identify the individual connecting wires for maintenance and repair work, and it also helps to reduce the possibility of accidental incidents.
[0004] For example, the Chinese patent with the application number CN202321027289.7 discloses a hydraulic machine wire bundling structure, which includes a hydraulic device comprising: a hydraulic machine body provided with a platform at the top; an electrical cabinet provided on the top of the hydraulic machine body; an oil tank provided on the top of the hydraulic machine body; the top of the hydraulic machine body is provided with a fixing assembly, the fixing assembly includes: a wire bundling plate provided on the top of the hydraulic machine body; the worker walks on the platform between the oil tank and the electrical cabinet, the connecting wires between the two pass through the wire bundling plate and are hidden between the groove one and the wire bundling plate, avoiding tripping the worker by the connecting wires, and the wire bundling plate can be moved up and down on the groove one, and the spring is arranged to cooperate with the clamping block and the clamping groove structure, so that the wire bundling plate can be hidden inside the platform, and when the connecting wires need to be replaced and checked, the wire bundling plate can be popped up.
[0005] However, when one or several connecting wires fixed by the wire bundling structure in the above-mentioned patent need to be repaired and replaced, the entire wire bundling plate must be popped up, and after the wire bundling plate is popped up, all the connecting wires fixed by the wire bundling plate are scattered, and after the connecting wires that do not need to be repaired and replaced are scattered, not only does it cause interference to the repair and replacement work, but also the connecting wires that do not need to be replaced need to be repositioned and bundled, making the repair and replacement work more tedious. Practical new type content
[0006] In view of the deficiencies of the prior art, the purpose of the present disclosure is to provide a hydraulic machine wire bundling structure, which solves the problem that it is not convenient to individually repair and replace any one or several connecting wires among the constrained multiple connecting wires in the prior art.
[0007] The purpose of the present disclosure can be achieved by the following technical solutions:
[0008] The hydraulic machine beam line structure comprises a bottom plate:
[0009] The upper end surface of the bottom plate is provided with a groove, and the bottom plate is provided with a moving plate directly above the bottom plate.
[0010] The lower end surface of the moving plate is fixed with a plurality of parallel arranged telescopic rods, the telescopic rods are vertically placed downward, the lower end of the telescopic rod is fixed with an upper pressing strip, the telescopic rod is provided with a spring, the both ends of the spring are fixed with the moving plate and the upper pressing strip, and the spring is always in compression state.
[0011] The upper end surface of the upper pressing strip is fixedly connected with a lifting ring, the lower end surface of the moving plate is provided with a plurality of lifting hooks, the upper end of the lifting hook is rotatably connected with the lower end surface of the moving plate through a hinge piece, the number of the lifting hook and the lifting ring is equal and one-to-one corresponding, and when the telescopic rod is completely retracted, the lifting ring can be hooked on the corresponding lifting hook.
[0012] The above technical scheme has the following principles and effects:
[0013] The connecting lines required for the hydraulic machine are placed in the groove, the moving plate is lowered to continuously approach the bottom plate through the adjusting unit, the upper pressing strip contacts the connecting line, then the moving plate continues to press down, so that the telescopic rod and the spring are retracted, at this time, the upper pressing strip is pushed by the spring force to extrude and fix the connecting line, thereby realizing the bundling of the connecting line on the hydraulic machine.
[0014] When any connecting line below the upper pressing strip needs to be repaired and replaced, the corresponding upper pressing strip can be pushed up, and the corresponding lifting hook can be hooked on the lifting ring by rotating, so that the purpose of conveniently repairing and replacing one or several connecting lines is achieved, and the repairing and replacing process does not affect the bundling of other connecting lines.
[0015] The lower end surface of the upper pressing strip is provided with a first clamping groove coaxially placed thereon, and the cross section of the first clamping groove along the axial direction is in the shape of an isosceles triangle.
[0016] The groove is fixed with a plurality of lower pressing strips, the number of the lower pressing strips and the upper pressing strips is equal and one-to-one corresponding, the upper end surface of the lower pressing strip is provided with a second clamping groove coaxially placed with the first clamping groove, the cross section of the second clamping groove along the axial direction is in the shape of an isosceles triangle, and the corresponding second clamping groove is located directly below the corresponding first clamping groove.
[0017] The upper pressing strip and the lower pressing strip are made of elastic rubber material.
[0018] The adjusting unit comprises a pair of threaded holes formed in the upper end face of the bottom plate, the two threaded holes are respectively located on the two sides of the groove, a pair of vertical downward placed rotating shafts are rotationally connected to the moving plate, the rotating shafts correspond to the threaded holes one by one, and the lower end circumferential wall of each rotating shaft is provided with threaded teeth matched with the threaded hole;
[0019] The upper end of each rotating shaft is fixedly connected with a rotating handle, the diameter of the rotating handle is larger than that of the rotating shaft, and the rotating handle is provided with an anti-skid groove;
[0020] The telescopic rods are located at the center positions of the upper ends of the corresponding upper pressing strips, the lifting eyes on any upper pressing strip are provided as two symmetrically placed ones about the central axis of the telescopic rod, and the lifting hooks of the moving plate at the positions of the corresponding upper pressing strips are correspondingly provided as two symmetrically placed ones.
[0021] The nouns, conjunctions or adjective parts involved in the above technical solutions are explained as follows:
[0022] Fixed connection: refers to the process of connecting two separate profiles or parts into a complex part or component by using fasteners such as screws, bolts and rivets.
[0023] Rotary hinge: usually two or more metal plates or tubular objects are fixed together by a pin or shaft to realize the function of relative rotation.
[0024] The beneficial effects of the present disclosure are as follows:
[0025] 1. By adjusting the adjusting unit, when the moving plate is continuously lowered to approach the bottom plate, the upper pressing strip contacts the contact line, the moving plate is continuously pressed down, the telescopic rod and the spring are shrunk, at this time, the upper pressing strip is pushed by the spring elastic force, the upper pressing strip is extruded and fixed to the contact line, and the contact line of the hydraulic machine is bundled;
[0026] When any contact line below the upper pressing strip needs to be repaired and replaced, the corresponding upper pressing strip can be pushed up, and the corresponding hook can be hooked on the lifting eye, so that one or several contact lines can be repaired and replaced individually without affecting the bundling of other contact lines;
[0027] And by arranging the telescopic rod and the spring, different contact lines can be bundled at the same time according to the different shrinkage amounts of the telescopic rod, and different diameters of the contact lines can be bundled at the same time;
[0028] 2. By the cooperation of the upper pressing strip, the first clamping groove, the lower pressing strip and the second clamping groove, the contact line to be bundled can be placed in the second clamping groove, without the need to repeatedly adjust the placement position of the contact line, and the stability of the bundled line can be improved by the cooperation of the first clamping groove and the second clamping groove. BRIEF DESCRIPTION OF DRAWINGS
[0029] In order to more clearly illustrate the embodiments of the present disclosure or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0030] Fig. 1 is a schematic diagram of the overall structure of an embodiment of the present disclosure;
[0031] Fig. 2 This is a partial structural diagram of the upper pressure strip and the hook of an embodiment of the present disclosure;
[0032] Fig. 3 It is a partial structural diagram of the lower pressure bar and the hanging ring of an embodiment of the present disclosure. DETAILED DESCRIPTION
[0033] The following will be combined with the accompanying drawings in the embodiments of the present disclosure to clearly and completely describe the technical solutions in the embodiments of the present disclosure. Obviously, the embodiments described are only part of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present disclosure.
[0034] Combined here Figs. 1-3 An embodiment of a hydraulic press harness structure is described below. Specifically, the hydraulic press harness structure is constructed as a split structure, comprising a base plate 100, a movable plate 200, an adjustment unit, a telescopic rod 300, an upper pressure bar 400, a spring 500, a lifting ring 600, and a hook 700. When a connecting wire below any upper pressure bar 400 needs to be repaired or replaced, the corresponding upper pressure bar 400 can be pushed upward and the corresponding lifting hook 700 can be rotated to hook onto the lifting ring 600. This facilitates the individual repair and replacement of any one or more connecting wires, and the repair and replacement process does not affect the harnessing of other connecting wires.
[0035] Please refer to Figs. 1-3 , a hydraulic press harness structure, including a base plate 100:
[0036] A groove 101 is provided on the upper end surface of the bottom plate 100. A movable plate 200 is provided directly above the bottom plate 100. An adjustment unit is provided between the bottom plate 100 and the movable plate 200. The adjustment unit is used to drive the movable plate 200 to move up and down.
[0037] The lower end surface of the moving plate 200 is fixed with a plurality of telescopic rods 300 arranged side by side, the telescopic rods 300 are vertically placed downward, the lower end of each telescopic rod 300 is fixed with an upper pressing strip 400, a spring 500 is sleeved on the telescopic rod 300, the two ends of the spring 500 are fixed with the moving plate 200 and the upper pressing strip 400 respectively, and the spring 500 is always in a compressed state;
[0038] The upper end surface of the upper pressing strip 400 is fixedly connected with a lifting ring 600, the lower end surface of the moving plate 200 is provided with a plurality of lifting hooks 700, the upper end of each lifting hook 700 is rotationally connected with the lower end surface of the moving plate 200 through a hinge, the number of the lifting hooks 700 and the lifting rings 600 is equal and one-to-one corresponding, and when the telescopic rods 300 are completely retracted, the lifting ring 600 can be hooked on the corresponding lifting hook 700.
[0039] The moving plate 200 is usually made of metal materials such as stainless steel or wooden materials; when made of metal materials, the surface of the moving plate 200 can be subjected to surface treatment such as spraying and anodic oxidation to improve corrosion resistance and aesthetics.
[0040] The spring 500 can be made of high-quality spring steel, and the constant compression state is ensured by precise machining; the spring 500 is sleeved on the peripheral wall of the telescopic rod 300, and the diameter and spring coefficient of the spring 500 should be selected according to the needs to ensure that appropriate support and resilience are provided.
[0041] The lifting ring 600 and the lifting hook 700 are generally made of alloy steel materials subjected to strengthening treatment to ensure that the weight can be borne and not deformed for long-term use; the size and shape of the lifting hook 700 and the lifting ring 600 should be matched, so that when the telescopic rod 300 is completely retracted, the lifting hook 700 and the lifting ring 600 can be safely connected and provide stable support.
[0042] The hydraulic cable binding structure can be arranged at the top, side wall or other suitable position of the hydraulic machine to better manage the connecting lines;
[0043] In use, the connecting lines required to be bound on the hydraulic machine are placed in the grooves 101, and the connecting lines are adjusted so that any connecting line is located directly below an upper pressing strip 400 and the connecting lines and the upper pressing strip 400 are coaxially placed; then the moving plate 200 is lowered continuously by adjusting the adjusting unit, and after the upper pressing strip 400 contacts the connecting lines, the moving plate 200 continues to press downward, so that the telescopic rod 300 and the spring 500 are retracted, at this time, the upper pressing strip 400 is pushed by the spring 500 to extrude and fix the connecting lines, thereby realizing the binding of the connecting lines on the hydraulic machine;
[0044] When any of the connection lines under the upper pressing strip 400 needs to be repaired and replaced, the corresponding upper pressing strip 400 can be pushed upwards, and the corresponding hook 700 is rotated to be hooked on the lifting ring 600, so that the repair and replacement of any one or several connection lines can be realized, and the repair and replacement process does not affect the bundling of other connection lines.
[0045] And through the setting of the telescopic rod 300 and the spring 500, when different connection lines are bundled, according to the different contraction amounts of the telescopic rod 300, the bundling of connection lines with different diameters can be realized at the same time.
[0046] In order to improve the stability of the bundled line and avoid the sliding of the connection line during the extrusion process of the connection line and the upper pressing strip 400, the lower end surface of the upper pressing strip 400 is provided with a first clamping groove 401 coaxially arranged, and the cross section of the first clamping groove 401 along the axial direction is in the shape of an isosceles triangle; when the upper pressing strip 400 contacts with the connection line, the two groove walls of the first clamping groove 401 are tangent to the peripheral wall of the connection line, which can limit and constrain the connection line and improve the stability of the bundled line.
[0047] In order to facilitate the coaxial arrangement of the connection line and the corresponding upper pressing strip 400, a plurality of lower pressing strips 800 are fixed in the groove 101, the number of the lower pressing strips 800 is equal to that of the upper pressing strips 400 and corresponds one-to-one, the upper end surface of each lower pressing strip 800 is provided with a second clamping groove 801 coaxially arranged with the first clamping groove 401, the cross section of the second clamping groove 801 along the axial direction is in the shape of an isosceles triangle, and the corresponding second clamping groove 801 is located directly below the corresponding first clamping groove 401; the connection line to be bundled can be placed in the second clamping groove 801, without the need for repeated adjustment of the placement position of the connection line, and the stability of the bundled line can be further improved through the setting of the second clamping groove 801.
[0048] In order to reduce the damage to the connection line during the bundling, the upper pressing strip 400 and the lower pressing strip 800 are made of elastic rubber material; at the same time, the upper pressing strip 400 and the lower pressing strip 800 made of elastic rubber material can increase the friction between them and the connection line, and improve the stability of the bundled connection.
[0049] The adjusting unit includes a pair of threaded holes 102 opened on the upper end surface of the bottom plate 100, and the two threaded holes 102 are located on both sides of the groove 101; a pair of vertical downwardly arranged rotating shafts 900 are rotatably connected to the moving plate 200, the rotating shafts 900 correspond to the threaded holes 102 one-to-one, and the lower end peripheral wall of each rotating shaft 900 is provided with a threaded tooth matched with the threaded hole 102; by rotating the rotating shaft 900, the rotating shaft 900 can be lifted and moved through the cooperation of the threaded tooth and the threaded hole 102, and the moving plate 200 rotatably connected to the rotating shaft 900 can be synchronously moved.
[0050] In order to facilitate the rotation of the rotating shaft 900, the rotating shaft 900 is fixed with a rotating handle 901 at the upper end, the rotating handle 901 is larger in diameter than the rotating shaft 900, and the rotating handle 901 is provided with an anti-skid groove; by rotating the rotating handle 901, the purpose of facilitating the rotation of the rotating shaft 900 is achieved.
[0051] The telescopic rods 300 are located at the center of the upper end surface of the corresponding upper pressing strips 400, the lifting rings 600 on any upper pressing strip 400 are symmetrically arranged about the center axis of the telescopic rod 300, and the lifting hooks 700 corresponding to the position of the upper pressing strip 400 are symmetrically arranged; the stability of the connection between the lifting hooks 700 and the lifting rings 600 can be improved.
[0052] In the description of the present specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are contained in at least one embodiment or example of the present disclosure. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0053] The basic principles, main features and advantages of the present disclosure are shown and described above. It should be understood by those skilled in the art that the present disclosure is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present disclosure. Without departing from the spirit and scope of the present disclosure, various changes and improvements can be made to the present disclosure, and these changes and improvements all fall within the scope of the claimed present disclosure.
Claims
1. A hydraulic press harness structure, comprising a bottom plate (100), characterized in that: A groove (101) is provided on the upper end surface of the bottom plate (100), a movable plate (200) is provided directly above the bottom plate (100), and an adjustment unit is provided between the bottom plate (100) and the movable plate (200), and the adjustment unit is used to drive the movable plate (200) to move up and down; A plurality of telescopic rods (300) arranged in parallel are fixed to the lower end surface of the movable plate (200), the telescopic rods (300) are placed vertically downward, an upper pressure strip (400) is fixed to the lower end of the telescopic rod (300), a spring (500) is sleeved on the telescopic rod (300), both ends of the spring (500) are respectively fixed to the movable plate (200) and the upper pressure strip (400), and the spring (500) is always in a compressed state; The upper end surface of the upper pressure strip (400) is fixedly connected with a lifting ring (600), and the lower end surface of the movable plate (200) is provided with a plurality of lifting hooks (700). The upper ends of the lifting hooks (700) are rotatably hinged to the lower end surface of the movable plate (200) through hinges. The number of the lifting hooks (700) and the lifting rings (600) are equal and one-to-one corresponding. When the telescopic rod (300) is fully retracted, the lifting rings (600) can be hooked on the corresponding lifting hooks (700).
2. The hydraulic press harness structure according to claim 1, characterized in that: The lower end surface of each upper pressure strip (400) is provided with a first clamping groove (401) coaxially arranged therewith, and the cross section of the first clamping groove (401) along its axial direction is in the shape of an isosceles triangle.
3. The hydraulic press harness structure according to claim 2, characterized in that: The groove (101) is fixed with a plurality of lower pressing strips (800), the number of the lower pressing strips (800) is equal to and corresponds to the upper pressing strips (400), and the upper end surface of each lower pressing strip (800) is provided with a second card slot (801) coaxially arranged with the first card slot (401), the cross section of the second card slot (801) along its axial direction is in the shape of an isosceles triangle, and each corresponding second card slot (801) is located directly below the corresponding first card slot (401).
4. The hydraulic press harness structure according to claim 3, characterized in that: The upper pressing strip (400) and the lower pressing strip (800) are both made of elastic rubber material.
5. The hydraulic press harness structure according to claim 4, characterized in that: The adjusting unit comprises a pair of threaded holes (102) opened on the upper end surface of the base plate (100), the two threaded holes (102) are respectively located on both sides of the groove (101), and a pair of rotating shafts (900) placed vertically downward are rotatably connected on the movable plate (200), the rotating shafts (900) correspond to the threaded holes (102) one by one, and the peripheral wall of the lower end of the rotating shaft (900) is provided with threaded teeth adapted to the threaded holes (102).
6. The hydraulic press harness structure according to claim 5, characterized in that: A turning handle (901) is fixed to the upper end of the rotating shaft (900), the diameter of the turning handle (901) is larger than the diameter of the rotating shaft (900), and an anti-slip groove is provided on the turning handle (901).
7. The hydraulic press harness structure according to claim 6, characterized in that: The telescopic rods (300) are all located at the center of the upper end surface of the corresponding upper pressure strip (400), the lifting rings (600) on any upper pressure strip (400) are set as two symmetrically placed about the central axis of the telescopic rod (300), and the hooks (700) of the movable plate (200) at the position corresponding to the upper pressure strip (400) are correspondingly set as two symmetrically placed.
Citation Information
Patent Citations
Hydraulic machine bunching structure
CN219686655U