Hydraulic puller adjusting device
By designing a hydraulic pulling adjustment device, the hydraulic pulling adjustment is achieved using the load-bearing beam and adjustment components, which solves the safety hazards and low efficiency caused by manual lifting, and improves safety and efficiency.
Patent Information
- Application Number
- CN202422422342.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-08
AI Technical Summary
During the replacement of the motor, existing hydraulic pulling horses require manual lifting and adjustment, resulting in personnel fatigue, low efficiency and safety hazards.
A hydraulic pulling adjustment device is designed, including a load-bearing beam, a first and a second connecting member and an adjustment component. By adjusting the distance between the connecting member and the load-bearing beam, the hydraulic pulling adjustment is achieved.
Improve the safety and adjustment efficiency of hydraulic pulling horses, and reduce labor and time costs.
Smart Images

Figure CN223239613U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of hydraulic pullers, and in particular to a hydraulic puller adjustment device. Background Art
[0002] At present, when replacing the motor coupler of the team's retreat line fan, a hydraulic puller is needed to remove the motor coupler. In the process of connecting the hydraulic puller to the motor coupler, the position of the hydraulic puller needs to be adjusted. The existing hydraulic puller adjustment method is often to have multiple people lift the hydraulic puller to adjust the position of the hydraulic puller. However, due to the heavy weight of the hydraulic puller and the long adjustment time for the hydraulic puller's claws, the staff who lift the hydraulic puller are prone to fatigue and cannot ensure the stable lifting of the hydraulic puller, which affects the adjustment efficiency of the hydraulic puller and easily causes the hydraulic puller to fall, resulting in safety accidents. Utility Model Content
[0003] The present disclosure aims to solve at least one of the technical problems existing in the prior art or related art.
[0004] To this end, the present disclosure provides a hydraulic puller adjustment device;
[0005] In view of this, according to an embodiment of the present disclosure, a hydraulic puller adjustment device is proposed, comprising:
[0006] load-bearing beams;
[0007] a first connecting member for detachably connecting to a lifting point located on the hydraulic pulling claw seat;
[0008] A second connecting member is used for detachably connecting to a side of the puller shaft of the hydraulic puller close to the pull claw;
[0009] An adjusting assembly is provided on the load-bearing beam, and the adjusting assembly is connected to the first connecting member and the second connecting member;
[0010] The adjusting component is used to adjust the distance between the first connecting member and the load-bearing beam, and the adjusting component is used to adjust the distance between the second connecting member and the load-bearing beam.
[0011] In one possible embodiment, the adjustment component includes:
[0012] Supports, along the extension direction of the load-bearing beam, a plurality of supports are spaced apart on the load-bearing beam;
[0013] a first adjusting portion, disposed on the support and connected to the first connecting member, the first adjusting portion being used to adjust the distance between the first connecting member and the load-bearing beam;
[0014] a second adjusting portion, disposed on the support and connected to the second connecting member, the second adjusting portion being used to adjust the distance between the second connecting member and the load-bearing beam;
[0015] Wherein, the first adjusting portion is connected to at least two supports, and / or the second connecting portion is connected to at least two supports.
[0016] In a feasible embodiment, the first adjustment unit includes:
[0017] The first adjusting rod is provided with a hole in the support along the extension direction of the load-bearing beam, and the first adjusting rod is rotatably inserted into the hole;
[0018] A first rope, one end of the first rope is connected to the first adjusting rod, and the other end of the first rope is connected to the first connecting piece.
[0019] In a feasible embodiment, the second adjustment unit includes:
[0020] a second adjusting rod, the second adjusting rod being rotatably disposed in the hole;
[0021] A second rope, one end of the second rope is connected to the second adjusting rod, and the other end of the second rope is connected to the first connecting piece.
[0022] In a feasible implementation manner, the first adjusting rod and the second adjusting rod are an integrated structure.
[0023] In a feasible embodiment, the adjustment component further includes:
[0024] The rotating handle is arranged at an end of the first adjusting rod away from the second adjusting rod.
[0025] In a feasible embodiment, along the extension direction of the load-bearing beam, the distance between the connection point of the first rope and the first adjusting rod and the connection point of the second rope and the second adjusting rod is less than or equal to the length of the puller shaft.
[0026] In a feasible embodiment, the second connecting member is a lifting ring, which is used to be sleeved on the puller shaft.
[0027] In a feasible implementation, it further includes:
[0028] a supporting column, one end of the load-bearing beam being connected to the supporting column;
[0029] The support base is provided with a support column.
[0030] In a feasible implementation, it further includes:
[0031] Wheel bodies, with multiple wheel bodies spaced apart and arranged on a side of the support base away from the support column;
[0032] The locking member is arranged on the wheel body, and has an unlocked state and a locked state. When the locking member is in the unlocked state, the wheel body can rotate relative to the support seat. When the locking member is in the locked state, the locking member restricts the rotation of the wheel body.
[0033] Compared with the prior art, the present disclosure includes at least the following beneficial effects: the hydraulic puller adjustment device provided by the embodiment of the present disclosure includes a load-bearing beam, a first connecting member, a second connecting member and an adjusting assembly, wherein the adjusting assembly is arranged on the load-bearing beam, the first connecting member and the second connecting member are both connected to the adjusting assembly, the adjusting assembly can adjust the distance between the first connecting member and the load-bearing beam, and the adjusting assembly can also adjust the distance between the second connecting member and the load-bearing beam; in actual application, the first connecting member and the second connecting member are both detachably connected to the hydraulic puller, the first connecting member is connected to the lifting point on the claw seat of the hydraulic puller, the second connecting member is connected to the puller shaft of the hydraulic puller, and the second connecting member is located on the side of the puller shaft of the hydraulic puller close to the pulling claw, by adjusting the distance between the first connecting member and the load-bearing beam and the distance between the second connecting member and the load-bearing beam through the adjusting assembly, the distance between the hydraulic puller and the load-bearing beam can be adjusted, thereby realizing the position adjustment of the hydraulic puller in the height direction.
[0034] The hydraulic puller adjustment device described in the present disclosure, and other advantages, objectives and features of the present disclosure will be reflected in part through the following description, and will also be understood by those skilled in the art through research and practice of the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the exemplary embodiments below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present disclosure. Throughout the drawings, like reference symbols are used to denote similar components. In the drawings:
[0036] Figure 1 A schematic structural diagram of a hydraulic puller adjustment device according to an embodiment of the present disclosure.
[0037] in, Figure 1 The corresponding relationship between the reference numerals and component names is as follows:
[0038] Load beam 100, first connecting member 200, second connecting member 300, adjustment assembly 400;
[0039] Support 410, first adjustment portion 420, second adjustment portion 430, rotating handle 440;
[0040] A first adjusting rod 421, a first rope 422, a second adjusting rod 431, and a second rope 432;
[0041] Support column 500, support base 600. DETAILED DESCRIPTION
[0042] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0043] like Figure 1 As shown, according to an embodiment of the present disclosure, a hydraulic puller adjustment device is proposed, including: a load-bearing beam 100; a first connecting member 200, which is used to be detachably connected to a lifting point located at a hydraulic puller claw seat; a second connecting member 300, which is used to be detachably connected to a side of the puller shaft of the hydraulic puller close to the claw; an adjusting component 400, which is arranged on the load-bearing beam 100, and the adjusting component 400 is connected to the first connecting member 200 and the second connecting member 300; wherein, the adjusting component 400 is used to adjust the distance between the first connecting member 200 and the load-bearing beam 100, and the adjusting component 400 is used to adjust the distance between the second connecting member 300 and the load-bearing beam 100.
[0044] According to the hydraulic puller adjustment device proposed in the embodiment of the present disclosure, it includes a load-bearing beam 100, a first connecting member 200, a second connecting member 300 and an adjustment component 400, wherein the adjustment component 400 is arranged on the load-bearing beam 100, the first connecting member 200 and the second connecting member 300 are both connected to the adjustment component 400, and the adjustment component 400 can adjust the distance between the first connecting member 200 and the load-bearing beam 100, and the adjustment component 400 can also adjust the distance between the second connecting member 300 and the load-bearing beam 100; in actual application, the first connecting member 200 and the second connecting member The parts 300 are detachably connected to the hydraulic puller, the first connecting part 200 is connected to the lifting point on the claw seat of the hydraulic puller, the second connecting part 300 is connected to the puller shaft of the hydraulic puller, and the second connecting part 300 is located on the side of the puller shaft of the hydraulic puller close to the pull claw. By adjusting the distance between the first connecting part 200 and the load-bearing beam 100 and the distance between the second connecting part 300 and the load-bearing beam 100 through the adjustment component 400, the distance between the hydraulic puller and the load-bearing beam 100 can be adjusted, thereby realizing the position adjustment of the hydraulic puller in the height direction.
[0045] It can be understood that when a hydraulic puller is needed, the hydraulic puller can be placed on the site, the hydraulic puller adjustment device can be moved above the hydraulic puller, and the first connecting member 200 and the second connecting member 300 can be adjusted through the adjustment component 400 to move in a direction away from the load-bearing beam 100, that is, the first connecting member 200 and the second connecting member 300 can be moved in a direction close to the hydraulic puller, until the first connecting member 200 and the second connecting member 300 can be connected to the hydraulic puller. After the first connecting member 200 and the second connecting member 300 are connected to the hydraulic puller, the first connecting member 200 and the second connecting member 300 are adjusted through the adjustment component 400 to move in a direction close to the load-bearing beam 100, so that the adjustment component 400 can lift the hydraulic puller through the first connecting member 200 and the second connecting member 300, and move the hydraulic puller to a position convenient for connection with the motor.
[0046] It should be noted that in traditional technology, manual lifting is often used to adjust the position of the hydraulic puller so that the hydraulic puller can stably grasp the motor handle. However, due to the heavy weight of the hydraulic puller and the long adjustment time required for the hydraulic puller's claws, it is relatively laborious to manually lift the hydraulic puller. The lifter is also prone to fatigue and cannot stably lift the hydraulic puller. On the one hand, this affects the adjustment efficiency of the hydraulic puller. On the other hand, there are also major safety hazards. It is very easy for the hydraulic puller to slip due to insufficient manpower, causing damage to the hydraulic puller. In the process of falling, the hydraulic puller is also very likely to injure the lifter, leading to the occurrence of safety accidents. In addition, since the motor handle is also heavy, when the motor handle is pulled off by the hydraulic puller, the hydraulic puller and the motor handle will fall under the action of gravity. It is difficult to overcome the gravity of the hydraulic puller and the motor handle by manual lifting, resulting in the hydraulic puller and the motor handle being very likely to injure the lifter. Compared with the prior art, the hydraulic puller adjustment device proposed in the embodiment of the present disclosure, based on the aforementioned setting, can achieve smooth adjustment of the hydraulic puller, avoid safety accidents, improve the safety of the use of the hydraulic puller, and is also beneficial to improving the adjustment efficiency of the hydraulic puller, reducing labor costs and time costs.
[0047] In some examples, such as Figure 1As shown, the adjustment assembly 400 includes: a support 410, a plurality of supports 410 are arranged at intervals on the load-bearing beam 100 along the extension direction of the load-bearing beam 100; a first adjustment portion 420, arranged on the support 410, connected to the first connecting member 200, and the first adjustment portion 420 is used to adjust the distance between the first connecting member 200 and the load-bearing beam 100; a second adjustment portion 430, arranged on the support 410, connected to the second connecting member 300, and the second adjustment portion 430 is used to adjust the distance between the second connecting member 300 and the load-bearing beam 100; wherein, the first adjustment portion 420 is connected to at least two supports 410, and / or the second connecting portion is connected to at least two supports 410.
[0048] In the above technical solution, the adjustment assembly 400 includes a support 410, a first adjustment part 420 and a second adjustment part 430, wherein the support 410 is arranged on the load-bearing beam 100, the first adjustment part 420 and the second adjustment part 430 are arranged on the support 410, the number of the supports 410 is multiple, and along the extension direction of the load-bearing beam 100, multiple supports 410 are arranged at intervals on the load-bearing beam 100, the first adjustment part 420 is connected to the first connecting member 200, and the first adjustment part 420 can adjust the distance between the first connecting member 200 and the load-bearing beam 100, the second adjustment part 430 is connected to the second connecting member 300, and the second adjustment part 430 can adjust the distance between the second connecting member 300 and the load-bearing beam 100, so that the first adjustment part 420 and the second adjustment part 430 can adjust the position and angle of the hydraulic puller by cooperating with each other.
[0049] It can be understood that the first adjustment part 420 is connected to at least two supports 410, which can ensure the connection stability between the first adjustment part 420 and the load-bearing beam 100, so that the first adjustment part 420 can stably lift the hydraulic puller and reduce the probability of safety accidents.
[0050] It can be understood that the second adjustment part 430 is connected to at least two supports 410, which can ensure the connection stability between the second adjustment part 430 and the load-bearing beam 100, so that the second adjustment part 430 can stably lift the hydraulic puller and reduce the probability of safety accidents.
[0051] It is understandable that the first adjustment portion 420 can be connected to at least two supports 410, and the second adjustment portion 430 is also connected to at least two supports 410. The specific effects are not described here in detail.
[0052] In some examples, such as Figure 1As shown, the first adjustment part 420 includes: a first adjustment rod 421, along the extension direction of the load-bearing beam 100, the support 410 is provided with a channel, and the first adjustment rod 421 is rotatably passed through the channel; a first rope 422, one end of the first rope 422 is connected to the first adjustment rod 421, and the other end of the first rope 422 is connected to the first connecting member 200.
[0053] In the above technical solution, the first adjusting part 420 includes a first adjusting rod 421 and a first rope 422, wherein one end of the first rope 422 is connected to the first adjusting rod 421, and a channel is opened on the support 410 along the extension direction of the load-bearing beam 100, and the first adjusting rod 421 is passed through the channel. The first adjusting rod 421 can rotate relative to the support 410, so that as the first adjusting rod 421 rotates, the first rope 422 will gradually be wound around the first adjusting rod 421 or gradually unwound from the wound state, and the other end of the first rope 422 is connected to the first connecting member 200. In actual application, as the first rope 422 is gradually wound around the first adjusting rod 421, the first connecting member 200 will drive the hydraulic puller to rise, and as the first rope 422 is gradually unwound from the first adjusting rod 421, the hydraulic puller will gradually fall under the action of gravity.
[0054] It is understandable that the first rope 422 is connected to the first connecting member 200. During the adjustment process of the hydraulic puller, manual lifting can also be used to assist in the connection of the hydraulic puller. At this time, the first rope 422 can provide safety guarantees to ensure the personal safety of the staff.
[0055] It can be understood that, along the height direction, the support 410 can be arranged above the load-bearing beam 100, and a through hole can be opened on the load-bearing beam 100, and the first rope 422 is passed through the through hole, so as to ensure the positional relationship between the first rope 422 and the load-bearing beam 100, and avoid changes in the positional relationship between the first rope 422 and the load-bearing beam 100 due to different winding states of the first rope 422 on the first adjusting rod 421. Further, when the hydraulic puller is connected to the first connecting member 200, the position change between the hydraulic puller and the load-bearing beam 100 can be made more controllable, which is more conducive to the connection between the hydraulic puller and the motor.
[0056] In some examples, such as Figure 1 As shown, the second adjustment part 430 includes: a second adjustment rod 431, which is rotatably inserted into the channel; a second rope 432, one end of the second rope 432 is connected to the second adjustment rod 431, and the other end of the second rope 432 is connected to the first connecting member 200.
[0057] In the above technical solution, the second adjustment part 430 includes a second adjustment rod 431 and a second rope 432, wherein one end of the second rope 432 is connected to the second adjustment rod 431, and the second adjustment rod 431 is passed through a channel located on the support 410. The second adjustment rod 431 can rotate relative to the support 410, so that as the second adjustment rod 431 rotates, the second rope 432 will gradually be wound around the second adjustment rod 431 or gradually unwound from the wound state, and the other end of the second rope 432 is connected to the second connecting member 300. In actual application, as the second rope 432 is gradually wound around the second adjustment rod 431, the second connecting member 300 will drive the hydraulic puller to rise, and as the second rope 432 is gradually unwound from the second adjustment rod 431, the hydraulic puller will gradually fall under the action of gravity; at the same time, due to the characteristics of the rope itself, the mutual cooperation of the first rope 422 and the second rope 432 can enable the hydraulic puller to be adjusted to a certain position in the horizontal direction, so that the hydraulic puller can be more convenient to connect with the motor.
[0058] It can be understood that, along the height direction, the support 410 can be arranged above the load-bearing beam 100, and a through hole can be opened on the load-bearing beam 100, and the second rope 432 is passed through the through hole, so as to ensure the positional relationship between the second rope 432 and the load-bearing beam 100, and avoid changes in the positional relationship between the second rope 432 and the load-bearing beam 100 due to the different winding states of the second rope 432 on the second adjusting rod 431. Further, when the hydraulic puller is connected to the second connecting member 300, the position change between the hydraulic puller and the load-bearing beam 100 can be made more controllable, which is more conducive to the connection between the hydraulic puller and the motor.
[0059] In some examples, such as Figure 1 As shown, the first adjustment rod 421 and the second adjustment rod 431 are an integrated structure.
[0060] In the above technical solution, the first adjusting rod 421 and the second adjusting rod 431 can adopt an integrated structure, so that rotating the first adjusting rod 421 can synchronously rotate the second adjusting rod 431, and rotating the second adjusting rod 431 can synchronously rotate the first adjusting rod 421. In actual application, by rotating the first adjusting rod 421 or the second adjusting rod 431, the hydraulic puller can be raised or lowered as a whole, so that the hydraulic puller reaches a position suitable for installation. Due to the characteristics of the first rope 422 and the second rope 432 themselves, the staff can directly fine-tune the position of the hydraulic puller to achieve a stable connection between the hydraulic puller and the motor.
[0061] It can be understood that the diameters of the first adjusting rod 421 and the second adjusting rod 431 are the same, so that the rotation rates of the first rope 422 and the second rope 432 can be the same, and the lengths of the first rope 422 and the second rope 432 can be selected according to the actual situation of the hydraulic puller so that the hydraulic puller is always suitable for the connection angle during the rising or falling process.
[0062] In some examples, such as Figure 1 As shown, the adjustment assembly 400 further includes: a rotating handle 440 , which is disposed at an end of the first adjustment rod 421 away from the second adjustment rod 431 .
[0063] In the above technical solution, the adjustment assembly 400 includes a rotating handle 440, which is arranged on the first adjustment rod 421 and is located at one end away from the second adjustment rod 431. In actual application, the motor handle can be arranged on the side where the second adjustment rod 431 is located, so that it is more convenient to operate the first adjustment rod 421 and the second adjustment rod 431 by rotating the handle 440.
[0064] In some examples, such as Figure 1 As shown, along the extension direction of the load-bearing beam 100 , the distance between the connection point of the first rope 422 and the first adjustment rod 421 and the connection point of the second rope 432 and the second adjustment rod 431 is less than or equal to the length of the puller shaft.
[0065] In the above technical solution, along the extension direction of the load-bearing beam 100, the distance between the connection point of the first rope 422 and the first adjusting rod 421 and the connection point of the second rope 432 and the second adjusting rod 431 is less than or equal to the length of the puller shaft. Such a setting is conducive to ensuring that the first rope 422 and the second rope 432 provide stable pulling force to the hydraulic puller, and is conducive to preventing the second rope 432 from driving the second connecting member 300 to separate from the puller shaft of the hydraulic puller.
[0066] It can be understood that, along the height direction, if the support 410 can be set above the load-bearing beam 100 and a through hole can be opened on the load-bearing beam 100, the through hole should be opened directly below the connection between the first rope 422 and the first adjusting rod 421 and directly below the connection between the second rope 432 and the second adjusting rod 431, thereby reducing the shear force of the through hole on the first rope 422 or the second rope 432, which is conducive to ensuring the reliability of the first rope 422 and the second rope 432.
[0067] In some examples, such as Figure 1 As shown, the second connecting member 300 is a lifting ring, which is used to be sleeved on the puller shaft.
[0068] In the above technical solution, the second connecting member 300 is a lifting ring, which can be directly mounted on the puller shaft, thereby making the connection between the second connecting member 300 and the puller shaft of the hydraulic puller more convenient.
[0069] In some examples, such as Figure 1 As shown, it also includes: a support column 500, one end of the load-bearing beam 100 is connected to the support column 500; and a support base 600, the support column 500 is arranged on the support base 600.
[0070] In the above technical solution, the hydraulic puller adjustment device also includes a support column 500 and a support seat 600. The support column 500 is connected to one end of the load-bearing beam 100, and the support column 500 is arranged on the support seat 600, so that the support seat 600 can provide support force for the support column 500 and the load-bearing beam 100. In actual application, the motor coupler can be arranged at one end of the load-bearing beam 100 away from the support column 500. During the connection process of the hydraulic puller and the motor coupler, it can be ensured that there is no obstruction between the hydraulic puller and the motor coupler, which makes it easier for the staff to connect the hydraulic puller and the motor coupler stably.
[0071] It is understandable that the support seat 600 can be a U-shaped seat, and the support column 500 is set in the middle position of the U-shaped seat, so as to leave space for the motor adapter to facilitate the connection between the hydraulic puller and the motor adapter.
[0072] In some examples, it also includes: a wheel body, a plurality of wheel bodies are spaced apart and arranged on the side of the support seat 600 away from the support column 500; a locking member is arranged on the wheel body, and the locking member has an unlocked state and a locked state. When the locking member is in the unlocked state, the wheel body can rotate relative to the support seat 600, and when the locking member is in the locked state, the locking member restricts the rotation of the wheel body.
[0073] In the above technical solution, the hydraulic puller adjustment device also includes a wheel body and a locking member. Multiple wheel bodies are arranged at intervals on the support seat 600, and the wheel body is located on the side of the support seat 600 away from the support column 500. The wheel body can improve the maneuverability of the hydraulic puller adjustment device, and the locking member is arranged on the wheel body. In actual application, when the hydraulic puller adjustment device needs to be moved, the locking member can be adjusted to an unlocked state so that the hydraulic puller adjustment device can be moved in position through the wheel body. When the hydraulic puller needs to be operated, the locking member can be adjusted to a locked state to limit the rotation of the wheel body, so that the position of the hydraulic puller adjustment device is more fixed, which is conducive to improving the stability during the hydraulic puller adjustment process.
[0074] In the present disclosure, the terms "first", "second", and "third" are used for descriptive purposes only and are not to be understood as indicating or implying relative importance; the term "plurality" refers to two or more, unless otherwise expressly defined. Terms such as "installed", "connected", "connected", and "fixed" should be understood in a broad sense. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; "connected" can mean a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in the present disclosure can be understood according to the specific circumstances.
[0075] In the description of the present disclosure, it is to be understood that the terms "up", "down", "left", "right", "front", "back", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present disclosure and simplifying the description, rather than indicating or implying that the device or unit referred to must have a specific direction, be constructed and operated in a specific direction, and therefore, cannot be understood as a limitation on the present disclosure.
[0076] Throughout this specification, terms such as "one embodiment," "some embodiments," and "specific embodiments" mean that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present disclosure. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0077] The above are merely preferred embodiments of the present disclosure and are not intended to limit the present disclosure. Those skilled in the art will readily appreciate that various modifications and variations of the present disclosure are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present disclosure shall be included within the scope of protection of the present disclosure.
Claims
1. A hydraulic puller adjustment device, characterized in that: include: load-bearing beams; a first connecting member for detachably connecting to a lifting point located on the hydraulic pulling claw seat; a second connecting member, configured to be detachably connected to a side of the puller shaft of the hydraulic puller close to the pull claw; an adjusting assembly, disposed on the load-bearing beam, the adjusting assembly being connected to the first connecting member and the second connecting member; Wherein, the adjustment component is used to adjust the distance between the first connecting member and the load-bearing beam, and the adjustment component is used to adjust the distance between the second connecting member and the load-bearing beam.
2. The hydraulic puller adjustment device according to claim 1, characterized in that: The adjustment component includes: Supports, along the extension direction of the load-bearing beam, a plurality of supports are spaced apart on the load-bearing beam; a first adjusting portion, provided on the support and connected to the first connecting member, the first adjusting portion being used to adjust the distance between the first connecting member and the load-bearing beam; a second adjusting portion, provided on the support and connected to the second connecting member, the second adjusting portion being used to adjust the distance between the second connecting member and the load-bearing beam; Wherein, the first adjusting portion is connected to at least two of the supports, and / or the second connecting portion is connected to at least two of the supports.
3. The hydraulic puller adjustment device according to claim 2, characterized in that: The first adjustment unit includes: A first adjusting rod is provided along the extension direction of the load-bearing beam, the support is provided with a hole, and the first adjusting rod is rotatably inserted into the hole; A first rope, one end of the first rope is connected to the first adjusting rod, and the other end of the first rope is connected to the first connecting member.
4. The hydraulic puller adjustment device according to claim 3, characterized in that: The second adjusting unit includes: a second adjusting rod rotatably disposed in the hole; A second rope, one end of the second rope is connected to the second adjusting rod, and the other end of the second rope is connected to the first connecting member.
5. The hydraulic puller adjustment device according to claim 4, characterized in that: The first adjusting rod and the second adjusting rod are an integrated structure.
6. The hydraulic puller adjustment device according to claim 5, characterized in that: The adjustment component also includes: The rotating handle is arranged at one end of the first adjusting rod away from the second adjusting rod.
7. The hydraulic puller adjustment device according to claim 4, characterized in that: Along the extension direction of the load-bearing beam, a distance between a connection point between the first rope and the first adjusting rod and a connection point between the second rope and the second adjusting rod is less than or equal to a length of the puller shaft.
8. The hydraulic puller adjustment device according to any one of claims 1 to 7, characterized in that: The second connecting member is a lifting ring, which is used to be sleeved on the puller shaft.
9. The hydraulic puller adjustment device according to any one of claims 1 to 7, characterized in that: Also includes: a support column, one end of the load-bearing beam being connected to the support column; A support seat, wherein the support column is arranged on the support seat.
10. The hydraulic puller adjustment device according to claim 9, characterized in that: Also includes: Wheel bodies, a plurality of the wheel bodies are spaced apart and arranged on a side of the support base away from the support column; A locking member is provided on the wheel body, and the locking member has an unlocked state and a locked state. When the locking member is in the unlocked state, the wheel body can rotate relative to the support seat. When the locking member is in the locked state, the locking member restricts the rotation of the wheel body.