Novel mud pump buoy platform

By designing a hollow frame and a top tightening assembly to fix the float, and combining the wire crimping mechanism to stabilize the wire connection, the problems of floating barrel deformation and unstable connection are solved, and the safety of the float barrel is achieved through multiple use and operation.

CN223225616UActive Publication Date: 2025-08-15CHINA RAILWAY FIRST GROUP FIFTH ENGINEERING CO LTD +2
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Patent Information

Application Number
CN202422765281.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-08-15
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing floats are prone to bumping and deformation during transportation and use, resulting in a decrease in the load-bearing capacity of the mud pump, and the unstable connection between the mud pump and the wires, which poses a risk of loosening.

Method used

A fixing mechanism including a hollow frame and a removable sealing door is designed, equipped with a top tightening assembly and a wire crimping mechanism for accommodating and fixing floats of different sizes, preventing bumps and deformation, and clamping the wires through elastic members to ensure stable connection.

Benefits of technology

It improves the service life of the float and the stability of the mud pump, ensures the stable connection between the wires and the mud pump, and ensures the smooth progress and safety of operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel mud pump buoy platform which comprises a platform body used for installing a mud pump, the platform body is provided with at least two fixing mechanisms, each fixing mechanism comprises a hollow frame used for containing a buoy, the hollow frame is provided with a detachable sealing door, and the hollow frame is provided with a jacking assembly capable of enabling the buoy in the hollow frame to abut against the inner side face of the hollow frame. A plurality of supporting legs are arranged at the bottom end of the hollow frame at intervals, the platform is provided with a plurality of hanging rings used for being connected with a traction rope and a lifting hook, and the platform is provided with a wire pressing mechanism used for pressing an electric wire connected to the slurry pump. The jacking assembly prevents the hollow frame and the buoys from colliding with each other when the buoys of different sizes, specifications and materials are transferred and stored and mud is placed into the buoy platform, the hollow frame prevents the buoys from making direct contact with the ground when the buoy platform is transferred, and deformation of the buoys is reduced. The wire pressing mechanism is operated to press the electric wire connected to the slurry pump, so that the electric wire is pressed by the wire pressing mechanism, and the electric wire is prevented from being loosened from the slurry pump when being stressed.
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Description

Technical Field

[0001] The utility model relates to the technical field of mud pumps, in particular to a novel mud pump buoy platform. Background Art

[0002] In pile foundation construction and sewage disposal operations, mud pumps are often used for directionally transporting mud. A Chinese utility model patent with authorization publication number CN207079572U discloses a mud pool pumping and drainage device for pile foundation construction, which uses plastic and iron barrels as floats. The inventor discovered that using discarded plastic or oil barrels as floats on construction sites effectively recycles waste and conserves resources. However, these barrels, because their contents have been dumped, are susceptible to bumps and bumps during transportation and storage on uneven surfaces, causing deformation or damage. This reduces the load-bearing capacity of the mud pump. A damaged float, when floating in the mud, poses a risk of tipping over, making the pump unusable multiple times and requiring a new platform to support the pump. Furthermore, as the float rises and falls with the mud level while the mud pump is floating in the mud, the contact area between the pump and the electrical wiring may become loose due to stress. There is an urgent need for a new type of mud pump buoy platform that can ensure the service life of the buoy and ensure the stable connection between the mud pump and the wire. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a novel mud pump buoy platform which can ensure the service life of the buoy and ensure the stable connection between the mud pump and the electric wire.

[0004] In order to solve the above technical problems, the utility model includes a platform for installing a mud pump, the platform is provided with at least two fixing mechanisms, the fixing mechanism includes a hollow frame for accommodating a float, the hollow frame is provided with a detachable sealing door, the hollow frame is provided with a tightening assembly that can make the float in the hollow frame press against the inner side of the hollow frame, a plurality of supporting feet are arranged at intervals at the bottom end of the hollow frame, the platform is provided with a plurality of hanging rings for connecting traction ropes and hooks, and the platform is provided with a wire pressing mechanism for pressing the wires connected to the mud pump.

[0005] After adopting the above structure, the operator disassembles the sealing door and inserts the buoy into the hollow frame, then installs the sealing door on the hollow frame. By operating the tightening assembly, the buoy is pressed against the inner side of the hollow frame. The tightening assembly prevents the hollow frame and the buoy of different sizes and materials from colliding with each other when transporting, storing, and adding mud to the buoy platform, and also ensures the stability of the buoy platform when adding mud. The hollow frame prevents the buoy from directly contacting the ground when transporting the buoy platform, reducing the deformation of the buoy. The sealing door and tightening assembly can also prevent the buoy from escaping from the hollow frame, ensuring the service life of the buoy and the stability of the buoy platform. The wire pressing mechanism is operated to press the wire connected to the mud pump, so that the wire is pressed by the wire pressing mechanism, preventing the wire from loosening from the mud pump when under stress, which not only ensures the smooth operation but also improves the safety of the operation. The buoy platform is provided with reliable support by providing support legs. By tying the towing rope to the hanging ring, the operator drags the towing rope to adjust the position of the buoy platform and the mud pump in the mud; by hanging the hook on the hanging ring, the operator can use the lifting equipment to lift the buoy platform and conveniently transport the buoy platform.

[0006] Furthermore, the hollow frame includes several support arms, the upper portions of which are fixed to the platform and arranged downwardly as a whole. The lower portions of the support arms are connected to a rib plate, which is fixed to several annular ribs. The axial extension direction of the annular ribs is parallel to the extension direction of the rib plate. An annular rib located at the end of the rib plate is provided with a bottom rib staggered with the annular ribs. The sealing door is detachably connected to the annular rib away from the bottom rib. Two adjacent annular ribs are connected by several guard plates, which are spaced circumferentially along the annular ribs. The support feet are provided at the bottom ends of the guard plates located below. By providing the annular ribs, buoys of different sizes, specifications, and materials can be reliably accommodated. By providing the guard plates, not only the connection strength of the annular ribs is guaranteed, but also reliable protection is provided for the buoys within the hollow frame. By providing the bottom ribs, the buoys are prevented from escaping from the side of the hollow frame opposite the sealing door.

[0007] Furthermore, the outer side of the sealing door is provided with a plurality of first lugs, and a plurality of guard plates between the two annular ribs near the sealing door are provided with second lugs corresponding one to one with the first lugs. The first lugs are screwed with first screws passing through the second lugs, and the first screws are screwed with two nuts for clamping the second lugs. By providing the first lugs, second lugs, first screws, and nuts, tightening the nuts can release the nuts from clamping the second lugs, thereby separating the sealing door. Tightening the nuts not only allows for quick removal and installation of the sealing door and the hollow frame, but also allows the spacing between the sealing door and the hollow frame to be adjusted by tightening the first screws and nuts, thereby accommodating buoys of different lengths.

[0008] Furthermore, the sealing door is provided with cross-shaped reinforcement ribs, which ensure the structural strength of the sealing door.

[0009] Furthermore, the tightening assembly includes a tightening block mounted on an upper guard plate, a contact arc plate provided on the outer surface of the buoy, and a second screw threadedly connected to the tightening block, the bottom end of which can abut against the contact arc plate. The provision of the contact arc plate allows the bottom end of the second screw to abut against the contact arc plate, preventing the second screw from directly contacting the buoy and causing deformation of the buoy.

[0010] Furthermore, the wire pressing mechanism includes a base provided on the platform, the base being provided with a first fixed platform, the first fixed platform being fixedly connected to a wire clamping seat, the top of the wire clamping seat being in the shape of a downwardly concave arc, the first fixed platform being provided with a second fixed platform, the second fixed platform being elastically connected to a wire clamping movable seat located above the wire clamping seat via an elastic member, the bottom of the wire clamping movable seat being in the shape of an upwardly concave arc. By providing the wire pressing mechanism, the wire clamping seat and the wire clamping movable seat can clamp the wires connected to the mud pump, and by providing the elastic member, the spacing between the wire clamping seat and the wire clamping movable seat can be adjusted, which not only adapts to wires of different outer diameters but also facilitates operation by operators.

[0011] Furthermore, the elastic member includes a column passing through the second fixed platform and a compression spring, the bottom end of the column is connected to the wire clamping movable seat, the compression spring is installed on the column, the top end of the compression spring is against the bottom end of the second fixed platform and the bottom end is against the top end of the wire clamping movable seat, and the upper part of the column is screwed with a lifting handle whose maximum outer diameter is greater than the diameter of the column. By setting the compression spring, the column and the lifting handle as elastic members, the column limits the position of the compression spring, and the lifting handle facilitates the operator to lift the column upward, thereby improving the convenience of operation. When the operator pulls the lifting handle upward, the distance between the wire clamping movable seat and the wire clamping fixed seat increases, and the wire can be inserted. After the operator lets go, the reset rebound of the compression spring can make the wire clamping movable seat move downward to cooperate with the wire clamping fixed seat to complete the elastic clamping of the wire. The elastic performance of the compression spring can also prevent the wire clamping movable seat and the wire clamping fixed seat from crushing the wire.

[0012] Furthermore, the fixing mechanism comprises four parts, which are equidistantly arranged on the front, rear, left and right sides of the platform. The four fixing mechanisms arranged on the front, rear, left and right sides of the platform can provide stable support at the four corners of the platform, ensuring smooth operation.

[0013] In summary, the utility model has the advantages of reasonable structure, convenient operation, etc. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the structure of the utility model from a top view;

[0015] Figure 2 yes Figure 1 A partial enlarged view of area A in the middle;

[0016] Figure 3 It is a three-dimensional structural diagram of the utility model;

[0017] Figure 4 yes Figure 3 A partial enlarged view of area B in the middle;

[0018] Figure 5 is a structural diagram of the fixing mechanism, the second lug, the first screw and the nut;

[0019] Figure 6 This is a schematic diagram of the main structure of the wire pressing mechanism;

[0020] In the figure: 1. Platform; 2. Float; 21. Contact arc plate; 3. Fixing mechanism; 31. Hollow frame; 311. Support arm; 312. Rib plate; 313. Annular rib; 314. Bottom rib; 315. Guard plate; 32. Door closure; 321. First lug; 322. Reinforcement rib; 33. Clamping assembly; 331. Clamping block; 332. Second screw; 34. Support foot; 4. Hanging ring; 5. Wire pressing mechanism; 51. Base; 52. First fixed platform; 53. Wire clamping fixed seat; 54. Second fixed platform; 55. Elastic member; 551. Column; 552. Compression spring; 553. Lifting handle; 56. Wire clamping movable seat; 6. Second lug; 7. First screw; 71. Nut. DETAILED DESCRIPTION

[0021] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. These drawings are simplified schematic diagrams that only illustrate the basic structure of the present invention in a schematic manner, and therefore only show the components related to the present invention. For ease of understanding, Figure 1 The top is the front side of the utility model. Figure 1 The bottom is the rear side of the utility model. Figure 1 The left side is the left side of the utility model, Figure 1 The right side is the right side of the utility model, Figure 3 The upper part is the upper part of the present invention. Figure 3 The bottom is the bottom of the present invention.

[0022] Reference Figures 1 to 5The utility model includes a platform 1 for mounting a mud pump. The platform 1 is provided with at least two fixing mechanisms 3. When two fixing mechanisms 3 are provided, the two fixing mechanisms 3 are arranged on the platform 1 in a front-to-back or left-to-right symmetrical manner. The fixing mechanisms 3 include a hollow frame 31 for accommodating a buoy 2. The hollow frame 31 is provided with a detachable sealing door 32. The hollow frame 31 is provided with a tightening assembly 33 that enables the buoy 2 inside the hollow frame 31 to abut against the inner side of the hollow frame 31. A plurality of support legs 34 are provided at intervals at the bottom end of the hollow frame 31. Specifically, the hollow frame 31 includes several support arms 311 fixed to the platform 1 at the upper part and arranged downwardly as a whole. The lower parts of the several support arms 311 are commonly connected to a rib plate 312. The rib plate 312 is fixed to several annular ribs 313. The axis extension direction of the annular rib 313 is parallel to the extension direction of the rib plate 312. The axis extension direction of the annular rib 313 is a straight line from front to back or from back to front or from left to right or from right to left. The rib plate 312 is long and the extension direction of the rib plate 312 is from front to back or from back to front or from left to right or from right to left. In a straight line, facing backward or forward, or from left to right or from right to left, an annular rib 313 at the end of the rib plate 312 is provided with a bottom rib 314 interlaced with the annular rib 313. The sealing door 32 is detachably connected to the annular rib 313 away from the bottom rib 314. Two adjacent annular ribs 313 are connected by a plurality of guard plates 315. The guard plates 315 between the two adjacent annular ribs 313 are spaced circumferentially along the annular rib 313. The support legs 34 are located at the bottom ends of the guard plates 315 located below. The provision of the annular rib 313 allows for the reliable accommodation of buoys 2 of varying sizes, specifications, and materials. The provision of the guard plates 315 not only ensures the connection strength of the annular rib 313 but also provides reliable protection for the buoys 2 within the hollow frame 31. The provision of the bottom rib 314 prevents the buoys 2 from escaping from the side of the hollow frame 31 opposite the sealing door 32.

[0023] Reference Figures 1 to 5The outer side of the sealing door 32 is provided with several first lugs 321. Several guard plates 315, located between the two annular ribs 313 near the sealing door 32, are provided with second lugs 6 corresponding one to each of the first lugs 321. First screws 7 passing through the second lugs 6 are screwed to the first lugs 321, which in turn are screwed to two nuts 71 that clamp the second lugs 6. Tightening the nuts 71 releases the clamping force on the second lugs 6, thereby separating the sealing door 32. Tightening the nuts 71 not only facilitates quick removal and installation of the sealing door 32 from the hollow frame 31, but also allows adjustment of the distance between the sealing door 32 and the hollow frame 31 by tightening the first screws 7 and nuts 71 to accommodate floats 2 of varying lengths. In this embodiment, a fixing mechanism 3 houses two floats 2, which are made of metal or plastic. The sealing door 32 is provided with cross-shaped reinforcement ribs 322. The reinforcement ribs 322 ensure the structural strength of the sealing door 32. The tightening assembly 33 includes a tightening block 331 provided on the guard plate 315 located above, a contact arc plate 21 is provided on the outer surface of the pontoon 2, and the tightening block 331 is screwed with a second screw 332 whose bottom end can be against the contact arc plate 21. By providing the contact arc plate 21, the bottom end of the second screw 332 can be against the contact arc plate 21, preventing the second screw 332 from directly contacting the pontoon 2 and causing deformation of the pontoon 2. Preferably, the fixing mechanism 3 is provided with four pieces, and the four fixing mechanisms 3 are equidistantly arranged on the front, rear, left and right sides of the platform 1. By providing the four fixing mechanisms 3 on the front, rear, left and right sides of the platform 1, stable four-corner support can be provided to the platform 1, ensuring smooth operation.

[0024] Reference Figures 1 to 6The platform 1 is provided with a number of hanging rings 4 for connecting traction ropes and hooks. The platform 1 is provided with a wire pressing mechanism 5 for pressing the wires connected to the mud pump. The wire pressing mechanism 5 includes a base 51 provided on the platform 1, the base 51 is provided with a first fixed platform 52, the first fixed platform 52 is fixedly connected with a wire clamping fixed seat 53, the top of the wire clamping fixed seat 53 is in the shape of an arc that is concave downwards, the first fixed platform 52 is provided with a second fixed platform 54, the second fixed platform 54 is elastically connected to a wire clamping movable seat 56 located above the wire clamping fixed seat 53 through an elastic member 55, the bottom of the wire clamping movable seat 56 is in the shape of an arc that is concave upwards. The wire clamping fixed seat 53 and the wire clamping movable seat 56 realize the clamping of the wires connected to the mud pump. By providing the elastic member 55, the distance between the wire clamping fixed seat 53 and the wire clamping movable seat 56 can be adjusted, which not only adapts to wires of different outer diameters but also facilitates operation by operators. The outer edge of the top of the wire clamp fixed seat 53 and the outer edge of the bottom of the wire clamp movable seat 56 can be provided with rounded corners to prevent cutting of the wires. The elastic member 55 includes a column 551 passing through the second fixed platform 54 and a compression spring 552. The bottom end of the column 551 is connected to the wire clamp movable seat 56. The compression spring 552 is installed on the column 551. The top of the compression spring 552 is against the bottom of the second fixed platform 54 and the bottom is against the top of the wire clamp movable seat 56. The upper part of the column 551 is screwed with a lifting handle 553 with a maximum outer diameter greater than the diameter of the column 551. By providing the compression spring 552, the column 551 and the lifting handle 553 as the elastic member 55, the column 551 limits the position of the compression spring 552. The lifting handle 553 facilitates the operator to lift the column 551 upward, improving the convenience of operation. When the operator pulls the lifting handle 553 upwards, the distance between the wire clamping movable seat 56 and the wire clamping fixed seat 53 increases, and the wire can be inserted. After the operator lets go, the compression spring 552 resets and rebounds to enable the wire clamping movable seat 56 to move downward to cooperate with the wire clamping fixed seat 53 to complete elastic clamping of the wire. The elastic performance of the compression spring 552 can also prevent the wire clamping movable seat 56 and the wire clamping fixed seat 53 from damaging the wire.

[0025] When the present invention is used, the operator disassembles the sealing door 32 and inserts the buoy 2 into the hollow frame 31, then installs the sealing door 32 on the hollow frame 31, and operates the tightening assembly 33 to make the buoy 2 rest against the inner side of the hollow frame 31. The tightening assembly 33 prevents the hollow frame 31 and the buoy 2 of different sizes and materials from colliding with each other when transporting, storing, and placing mud on the buoy platform, and also ensures the stability of the buoy platform when placing mud on the buoy platform; the hollow frame 31 prevents the buoy 2 from directly contacting the ground when transporting the buoy platform, reducing the deformation of the buoy 2; the sealing door 32 and the tightening assembly 33 can also prevent the buoy 2 from escaping from the hollow frame 31, ensuring the service life of the buoy 2 and the stability of the buoy platform. The wire pressing mechanism 5 is operated to press the wire pressing mechanism 5 on the wire connected to the mud pump, so that the wire is pressed by the wire pressing mechanism 5, preventing the wire from being loosened when stressed, not only ensuring the smooth operation but also improving the operation safety. The support legs 34 provide reliable support for the buoy platform. By tying a towing rope to the hanging ring 4, the operator drags the towing rope to adjust the position of the buoy platform and the mud pump in the mud. By hanging the hook on the hanging ring 4, the operator can use a lifting device to lift the buoy platform, making it easy to transport the buoy platform.

[0026] The above content is merely an example and explanation of the structure of the utility model. Technicians in this technical field may make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the structure of the utility model or exceed the scope defined by the claims of this patent, they should all fall within the scope of protection of the utility model.

Claims

1. A new type of mud pump buoy platform, characterized by: The invention comprises a platform (1) for installing a mud pump, wherein the platform (1) is provided with at least two fixing mechanisms (3), wherein the fixing mechanism (3) comprises a hollow frame (31) for accommodating a buoy (2), wherein the hollow frame (31) is provided with a detachable sealing door (32), wherein the hollow frame (31) is provided with a tightening assembly (33) capable of causing the buoy (2) in the hollow frame (31) to abut against the inner side surface of the hollow frame (31), wherein a plurality of supporting legs (34) are arranged at intervals at the bottom end of the hollow frame (31), wherein the platform (1) is provided with a plurality of hanging rings (4) for connecting a traction rope and a hook, and wherein the platform (1) is provided with a wire pressing mechanism (5) for pressing an electric wire connected to the mud pump.

2. The novel mud pump buoy platform according to claim 1 is characterized by: The hollow frame (31) includes a plurality of support arms (311) whose upper portions are fixedly connected to the platform (1) and are arranged to be tilted downward as a whole. The lower portions of the plurality of support arms (311) are commonly connected to a rib plate (312). The rib plate (312) is fixedly connected to a plurality of annular ribs (313). The axial extension direction of the annular ribs (313) is parallel to the extension direction of the rib plate (312). An annular rib (313) located at the end of the rib plate (312) is provided with a bottom rib (314) staggered with the annular rib (313). The sealing door (32) is detachably connected to the annular rib (313) away from the bottom rib (314). Two adjacent annular ribs (313) are connected by a plurality of guard plates (315). The plurality of guard plates (315) are arranged at intervals along the circumference of the annular rib (313). The support foot (34) is provided at the bottom end of the guard plate (315) located below.

3. The novel mud pump buoy platform according to claim 2 is characterized by: The outer side surface of the sealing door (32) is provided with a plurality of first lugs (321), and a plurality of guard plates (315) between two annular ribs (313) close to the sealing door (32) are provided with second lugs (6) corresponding one to one with the first lugs (321). The first lugs (321) are screwed with first screws (7) passing through the second lugs (6), and the first screws (7) are screwed with two nuts (71) for clamping the second lugs (6).

4. The novel mud pump buoy platform according to claim 1 is characterized by: The sealing door (32) is provided with a cross-shaped reinforcement rib (322).

5. The novel mud pump buoy platform according to claim 2 is characterized by: The tightening assembly (33) includes a tightening block (331) provided on the upper guard plate (315), the outer surface of the buoy (2) is provided with a contact arc plate (21), and the tightening block (331) is screwed with a second screw (332) whose bottom end can abut against the contact arc plate (21).

6. The novel mud pump buoy platform according to claim 1 is characterized by: The wire pressing mechanism (5) comprises a base (51) provided on the platform (1), the base (51) being provided with a first fixed platform (52), the first fixed platform (52) being fixedly connected to a wire clamping fixed seat (53), the top end of the wire clamping fixed seat (53) being in the shape of an arc that is concave downwards, the first fixed platform (52) being provided with a second fixed platform (54), the second fixed platform (54) being elastically connected to a wire clamping movable seat (56) located above the wire clamping fixed seat (53) via an elastic member (55), the bottom end of the wire clamping movable seat (56) being in the shape of an arc that is concave upwards.

7. The novel mud pump buoy platform according to claim 6 is characterized by: The elastic member (55) includes a column (551) passing through the second fixed platform (54) and a compression spring (552), the bottom end of the column (551) is connected to the clamping movable seat (56), the compression spring (552) is installed on the column (551), the top end of the compression spring (552) is against the bottom end of the second fixed platform (54) and the bottom end is against the top end of the clamping movable seat (56), and the upper part of the column (551) is screwed with a lifting handle (553) whose maximum outer diameter is larger than the diameter of the column (551).

8. The novel mud pump buoy platform according to any one of claims 1 to 7, characterized in that: The fixing mechanisms (3) are provided with four pieces, and the four fixing mechanisms (3) are arranged at equal intervals from the platform (1) on the front side, the rear side, the left side and the right side of the platform (1).

Citation Information

Patent Citations

  • A mud pit pump drainage device for pile foundation construction

    CN207079572U