Adjustable pump pipe fixing support
By designing an adjustable pump pipe fixing bracket and utilizing the collaborative work of multiple components, efficient clamping of pump pipes of different sizes is achieved, solving the problem of needing to replace the fixing bracket in the existing technology and reducing construction costs and time.
Patent Information
- Application Number
- CN202520009990.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Existing pump pipe fixing brackets need to be removed and replaced when dealing with pump pipes of different sizes, which increases construction time and costs.
An adjustable pump tube fixing bracket was designed. Through the cooperation of a first displacement component, a second displacement component, a clamping component, a driving component, and a positioning component, the clamping component can move and be positioned in multiple directions to adapt to pump tubes of different sizes.
It achieves efficient clamping of pump pipes of different sizes, reducing the time and cost of manually replacing the fixed bracket.
Smart Images

Figure CN223768269U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of pump pipe fixing brackets, and more specifically, it relates to an adjustable pump pipe fixing bracket. Background Technology
[0002] When dealing with pump pipes of different sizes, conventional pump pipe fixing brackets require first removing the original fixing bracket and then installing a fixing bracket corresponding to the size of the pump pipe to clamp it. This not only requires the corresponding construction personnel to replace the fixing brackets, wasting construction time, but also requires preparing multiple fixing brackets, increasing construction costs.
[0003] For the reasons mentioned above, how to clamp pump tubes of different sizes is the problem that this application addresses. Utility Model Content
[0004] To address the shortcomings of existing technologies, an adjustable pump tube fixing bracket is provided, which can clamp pump tubes of different sizes.
[0005] To achieve the above objectives, the following technical solution is provided:
[0006] An adjustable pump pipe fixing bracket, characterized in that it includes a first displacement component, a second displacement component, a clamping component, a driving component, and a positioning component. The sliding end of the first displacement component is connected to the second displacement component, the clamping component is connected to the sliding end of the second displacement component, the driving component is connected to the fixed end of the second displacement component and is used to drive the clamping component to move, and the positioning component is connected to the fixed end of the first displacement component.
[0007] During operation, the clamping component moves to a predetermined clamping position on the first displacement component, the driving component drives the clamping component to move, and the clamping component moves to a predetermined clamping position on the second displacement component. The clamping component and the positioning component cooperate with each other to clamp the pump tube.
[0008] In a further optimization of this utility model, the first displacement component includes a first base and a first slide rail, and the second displacement component includes a second base;
[0009] The first slide rail is fixedly connected to the first base, and the second base is slidably connected to the first slide rail.
[0010] In a further optimization of this utility model, the second displacement component also includes a second slide rail, and the clamping component includes a sliding block;
[0011] The second slide rail is fixedly connected to the second base, and the sliding block is slidably connected to the second slide rail. The sliding direction of the first slide rail and the sliding direction of the second slide rail are set perpendicular to each other.
[0012] In a further optimization of this utility model, the clamping assembly also includes a cover plate, an insert plate, a pressure plate, a first contact member, and a first through hole disposed on the cover plate;
[0013] The insert plate is fixedly connected to the sliding block, the cover plate is installed above the insert plate and fixedly connected to the sliding block, the pressure plate is located above the insert plate and is used to cooperate with the insert plate to clamp the pump pipe, and the first contact member passes through the first through hole to abut against the pressure plate.
[0014] A further optimization of this utility model is that the positioning component includes a positioning plate and a positioning groove disposed on the positioning plate;
[0015] The positioning plate is fixedly connected to the first base, and the positioning groove is used to accommodate the insert plate;
[0016] When the insert plate is inserted into the positioning groove, the positioning groove restricts the movement of the second base on the first slide rail.
[0017] A further optimization of this utility model is that the driving component includes a fixed plate, a second abutting member, and a second through hole disposed on the fixed plate;
[0018] The fixing plate is fixedly installed on the side of the second base away from the positioning plate, and the second abutting member passes through the second through hole to abut the sliding block.
[0019] A further optimization of this utility model includes a first thread disposed on the inner surface of the first through hole, a second thread disposed on the inner surface of the second through hole, a third thread disposed on the outer surface of the first abutting member, and a fourth thread disposed on the outer surface of the second abutting member.
[0020] The first thread is connected to the third thread, and the second thread is connected to the fourth thread.
[0021] In a further optimization of this utility model, the end of the first contact member away from the pressure plate is provided with a groove for rotation, and the end of the second contact member away from the sliding block is provided with a groove for rotation.
[0022] In a further optimization of this utility model, the end of the first contact member away from the pressure plate is provided with a protrusion for rotation, and the end of the second contact member away from the sliding block is provided with a protrusion for rotation.
[0023] This technical solution has the following beneficial effects: clamping pump pipes of different sizes. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural diagram of an adjustable pump pipe fixing bracket.
[0025] Figure 2 This is a front view of the adjustable pump pipe fixing bracket.
[0026] Figure 3This is a schematic diagram of the left cross-section of the adjustable pump pipe fixing bracket.
[0027] Figure 4 This is a right-side cross-sectional view of the adjustable pump pipe mounting bracket.
[0028] Reference numerals: 1. First displacement assembly; 11. First base; 12. First slide rail; 2. Second displacement assembly; 21. Second base; 22. Second slide rail; 3. Clamping assembly; 31. Sliding block; 32. Cover plate; 33. Insert plate; 34. Pressure plate; 35. First abutment; 351. Third thread; 36. First through hole; 361. First thread; 4. Drive assembly; 41. Fixing plate; 42. Second abutment; 421. Fourth thread; 43. Second through hole; 431. Second thread; 5. Positioning assembly; 51. Positioning plate; 52. Positioning groove. Detailed Implementation
[0029] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Identical components are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "upper," and "lower" used in the following description refer to directions in the accompanying drawings, and the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.
[0030] Reference Figure 1-4 As shown, the adjustable pump tube fixing bracket includes a first displacement component 1, a second displacement component 2, a clamping component 3, a driving component 4, and a positioning component 5. The sliding end of the first displacement component 1 is connected to the second displacement component 2, the clamping component 3 is connected to the sliding end of the second displacement component 2, the driving component 4 is connected to the fixed end of the second displacement component 2 and is used to drive the clamping component 3 to move, and the positioning component 5 is connected to the fixed end of the first displacement component 1.
[0031] During operation, the clamping component 3 moves to the predetermined clamping position on the first displacement component 1, the driving component 4 drives the clamping component 3 to move, and the clamping component 3 moves to the predetermined clamping position on the second displacement component 2. The clamping component 3 and the positioning component 5 cooperate with each other to clamp the pump pipe.
[0032] When clamping pump tubes of different sizes, the pump tube is placed on the clamping assembly 3. The clamping assembly 3 first performs initial clamping on the pump tube. The clamping assembly 3 moves laterally through the first displacement assembly 1. The driving assembly 4 drives the clamping assembly 3 to move longitudinally through the second displacement assembly 2. Through the lateral and longitudinal movements of the first displacement assembly 1 and the second displacement assembly 2, the clamping assembly 3 and the positioning assembly 5 cooperate to clamp the pump tube in all directions, thereby clamping pump tubes of different sizes.
[0033] In the existing technology, conventional pump pipe fixing brackets have the following drawbacks that prevent them from being used. When dealing with pump pipes of different sizes, it is necessary to replace the fixing bracket with one that corresponds to the size of the pump pipe and adjust the fixing position of the fixing bracket in order to clamp the pump pipe. Now, this device has the functions of adjusting the clamping distance and adjusting the fixing position, which can clamp pump pipes of different sizes, reducing the time and cost of manually replacing fixing brackets.
[0034] In the optimization, the first displacement component 1 includes a first base 11 and a first slide rail 12, and the second displacement component 2 includes a second base 21;
[0035] The first slide rail 12 is fixedly connected to the first base 11, and the second base 21 is slidably connected to the first slide rail 12.
[0036] The first base 11 is provided with four through holes. The first base 11 is fixed to the wall or the ground through the four through holes using expansion bolts of at least grade 8.8 16. Alternatively, the first base 11 can be fixed to the wall or the ground by using pre-embedded parts and expansion bolts in combination. Both connection methods use shock-absorbing rubber rings for shock resistance. The second base 21 moves through the first slide rail 12. The movement of the second base 21 drives the clamping assembly 3 to move.
[0037] In the optimization, the second displacement component 2 also includes a second slide rail 22, and the clamping component 3 includes a sliding block 31;
[0038] The second slide rail 22 is fixedly connected to the second base 21, and the sliding block 31 is slidably connected to the second slide rail 22. The sliding direction of the first slide rail 12 and the sliding direction of the second slide rail 22 are perpendicular to each other.
[0039] The sliding block 31 moves along the fixed trajectory of the second slide rail 22, and the clamping component 3 moves laterally and longitudinally along the trajectory on the first slide rail 12 and the second slide rail 22, so that the clamping component 3 and the positioning component 5 cooperate to clamp the pump tube.
[0040] In the optimization, the clamping assembly 3 also includes a cover plate 32, an insert plate 33, a pressure plate 34, a first abutting member 35, and a first through hole 36 provided on the cover plate 32;
[0041] The insert plate 33 is fixedly connected to the sliding block 31. The cover plate 32 is installed above the insert plate 33 and is fixedly connected to the sliding block 31. The pressure plate 34 is located above the insert plate 33 and is used to cooperate with the insert plate 33 to clamp the pump tube. The first contact member 35 passes through the first through hole 36 and abuts against the pressure plate 34.
[0042] The sliding block 31 moves on the second slide rail 22, and the sliding block 31 drives the insert plate 33 to move. After moving to the predetermined position, it cooperates with the positioning component 5 to clamp the pump tube. The insert plate 33 provides vertical support force to the pump tube. When needed, the movement of the sliding block 31 can also drive the pump tube to move and move the first abutment 35. The first abutment 35 abuts the pressure plate 34 and moves it down, so that the pressure plate 34 abuts the pump tube. The pressure plate 34 and the insert plate 33 cooperate to clamp the pump tube.
[0043] In the optimization, the positioning component 5 includes a positioning plate 51 and a positioning groove 52 disposed on the positioning plate 51;
[0044] The positioning plate 51 is fixedly connected to the first base 11, and the positioning groove 52 is used to accommodate the insert plate 33.
[0045] When the insert plate 33 is inserted into the positioning groove 52, the positioning groove 52 restricts the second base 21 from moving on the first slide rail 12.
[0046] During the optimization process, multiple positioning slots 52 are provided.
[0047] The second base 21 moves on the first slide rail 12. The second base 21 moves to the position of one of the multiple positioning slots 52. The sliding block 31 moves on the second slide rail 22, driving the insert plate 33 to move into the positioning slot 52. The positioning plate 51, the sliding block 31, the pressure plate 34 and the insert plate 33 cooperate to clamp the pump tube. When the pump tube cannot move, the position of the pump tube swing can be selected for clamping. The position selection allows for a better clamping selection of the pump tube.
[0048] In the optimization, the drive component 4 includes a fixing plate 41, a second abutment 42, and a second through hole 43 disposed on the fixing plate 41;
[0049] The fixing plate 41 is fixedly installed on the side of the second base 21 away from the positioning plate 51, and the second abutting member 42 passes through the second through hole 43 to abut the sliding block 31.
[0050] When force is applied to the second abutment 42, the second abutment 42 pushes the sliding block 31 to move on the second slide rail 22, so that the sliding block 31 and the positioning plate 51 clamp the pump pipe.
[0051] In the optimization, the first thread 361 is provided on the inner surface of the first through hole 36, the second thread 431 is provided on the inner surface of the second through hole 43, the third thread 351 is provided on the outer surface of the first abutment 35, and the fourth thread 421 is provided on the outer surface of the second abutment 42.
[0052] The first thread 361 is threadedly connected to the third thread 351, and the second thread 431 is threadedly connected to the fourth thread 421.
[0053] The rotational motion is converted into linear motion by the thread, and the vertical force is converted into a component force along the inclined plane by the inclined plane principle, thereby reducing the actual force required and achieving precise displacement control. This allows the first contact 35 to precisely control the distance between the pressure plate 34 and the pump pipe, and the second contact 42 to precisely control the distance between the sliding block 31 and the positioning plate 51. The first thread 361 and the third thread 351 prevent the reaction force of the pressure plate 34 from causing the first contact 35 to displace, and the second thread 431 and the third thread 351 prevent the reaction force of the sliding block 31 from causing the second contact 42 to displace.
[0054] In the optimization, the end of the first contact member 35 away from the pressure plate 34 is provided with a groove for rotation, and the end of the second contact member 42 away from the sliding block 31 is provided with a groove for rotation.
[0055] The groove can be driven by a flathead screwdriver, a Phillips screwdriver, and an Allen wrench. By rotating the first contact 35 and the second contact 42 with the tools, the first contact 35 can be made to contact the pressure plate 34 more tightly, and the second contact 42 can be made to contact the sliding block 31 more tightly, thereby clamping the pump tube more tightly.
[0056] In the optimization, the end of the first contact member 35 away from the pressure plate 34 is provided with a protrusion for rotation, and the end of the second contact member 42 away from the sliding block 31 is provided with a protrusion for rotation.
[0057] In addition to using grooves, protrusions can also be used as a medium for practical tools. Protrusions can be made using socket wrenches, box wrenches, or adjustable wrenches. By rotating the first contact member 35 and the second contact member 42 with the tools, the first contact member 35 can be made to contact the pressure plate 34 more tightly, and the second contact member 42 can be made to contact the sliding block 31 more tightly, thereby clamping the pump tube more tightly.
[0058] In the optimization, the pitch of the third thread 351 at the end furthest from the groove is greater than the pitch at the end closest to the groove, and the pitch of the fourth thread 421 at the end furthest from the groove is greater than the pitch at the end closest to the groove.
[0059] When clamping the pump tube, firstly, the first contact member 35 and the second contact member 42 are rotated with a coarse pitch, so that the pressure plate 34 contacts the pump tube more quickly and the sliding block 31 contacts the pump tube more quickly. Then, the first contact member 35 and the second contact member 42 are rotated with a fine pitch, so that the pressure plate 34 contacts the pump tube more tightly and the sliding block 31 contacts the pump tube more tightly.
[0060] In the optimization, the pitch of the third thread 351 at the end furthest from the protrusion is greater than the pitch at the end closest to the protrusion, and the pitch of the fourth thread 421 at the end furthest from the protrusion is greater than the pitch at the end closest to the protrusion.
[0061] When clamping the pump tube, firstly, the first contact member 35 and the second contact member 42 are rotated with a coarse pitch, so that the pressure plate 34 contacts the pump tube more quickly and the sliding block 31 contacts the pump tube more quickly. Then, the first contact member 35 and the second contact member 42 are rotated with a fine pitch, so that the pressure plate 34 contacts the pump tube more tightly and the sliding block 31 contacts the pump tube more tightly.
[0062] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. An adjustable pump pipe fixing bracket, characterized in that, The utility model provides a pump pipe clamping device, including first displacement component, second displacement component, clamping component, drive component, positioning component, the sliding end of first displacement component is connected with second displacement component, clamping component is connected with the sliding end of second displacement component, drive component is connected with the fixed end of second displacement component, and is used to drive clamping component to move, positioning component is connected with the fixed end of first displacement component, When working, clamping component moves to the predetermined clamping position on first displacement component, drive component drives clamping component to move, clamping component moves to the predetermined clamping position on second displacement component, and clamping component cooperates with positioning component and is used for clamping pump pipe.
2. The adjustable pump tube securement fixture of claim 1, wherein, The first displacement component includes a first base and a first slide rail, and the second displacement component includes a second base. The first slide rail is fixedly connected with the first base, and the second base is slidably connected with the first slide rail.
3. The adjustable pump tube securement fixture of claim 2, wherein, The second displacement component further includes a second slide rail, and the clamping component includes a sliding block. The second slide rail is fixedly connected with the second base, the sliding block is slidably connected with the second slide rail, and the sliding direction of the first slide rail is perpendicular to the sliding direction of the second slide rail.
4. The adjustable pump tube securement fixture of claim 3, wherein, The clamping component further includes a cover plate, an insertion plate, a pressing plate, a first abutting member, and a first through hole provided on the cover plate. The insertion plate is fixedly connected with the sliding block, the cover plate is installed above the insertion plate and is fixedly connected with the sliding block, the pressing plate is arranged above the insertion plate and is used for clamping the pump pipe in cooperation with the insertion plate, and the first abutting member abuts against the pressing plate through the first through hole.
5. The adjustable pump tube securement fixture of claim 4, wherein, The positioning component includes a positioning plate and a positioning groove provided on the positioning plate. The positioning plate is fixedly connected with the first base, and the positioning groove is used for accommodating the insertion plate. When the insertion plate is inserted into the positioning groove, the positioning groove limits the movement of the second base on the first slide rail.
6. The adjustable pump tube securement fixture of claim 4 or 5, wherein, The drive component includes a fixed plate, a second abutting member, and a second through hole provided on the fixed plate. The fixed plate is fixedly installed on the side of the second base away from the positioning plate, and the second abutting member abuts against the sliding block through the second through hole.
7. The adjustable pump tube securement fixture of claim 6, wherein, A first thread is arranged on the inner surface of the first through hole, a second thread is arranged on the inner surface of the second through hole, a third thread is arranged on the outer surface of the first abutting member, and a fourth thread is arranged on the outer surface of the second abutting member. The first thread is threadedly connected with the third thread, and the second thread is threadedly connected with the fourth thread.
8. The adjustable pump tube securement fixture of claim 7, wherein, An end of the first abutting member away from the pressing plate is provided with a groove for rotation, and an end of the second abutting member away from the sliding block is provided with a groove for rotation.
9. The adjustable pump tube securement fixture of claim 7, wherein, An end of the first abutting member away from the pressing plate is provided with a protrusion for rotation, and an end of the second abutting member away from the sliding block is provided with a protrusion for rotation.