Pipeline transportation device with auxiliary structure

By designing a pipeline transportation device with auxiliary structures, and utilizing the cooperation of limiting grooves and sliders, the problems of left-right movement and up-down jumping of pipelines during transportation are solved, thereby improving stability and safety and adapting to the transportation needs of different quantities of pipelines.

CN223950158UActive Publication Date: 2026-02-27SHANXI INSTALLATION GRP CO LTD
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Patent Information

Application Number
CN202520355728.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-02-27
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Traditional pipeline transportation equipment is prone to lateral movement during bumpy rides, leading to collision damage. Inadequate limiting and fixing mechanisms cause vertical bouncing. Poor versatility makes it difficult to adjust the number of pipelines, affecting transportation efficiency and safety.

Method used

The pipeline transportation device adopts an auxiliary structure, including a fixed base plate and an auxiliary pressure block. Through the cooperation of the limiting movement chute and the slider, the left and right and up and down limiting fixation of the pipeline can be achieved to meet the needs of transporting different quantities of pipelines.

Benefits of technology

It improves the stability and safety of pipeline transportation, avoids movement caused by bumps, enhances the versatility and adaptability of the equipment, and ensures stability and safety during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a pipeline transportation device with an auxiliary structure, and relates to the technical field of pipeline transportation, the pipeline transportation device comprises a fixed bottom plate and an auxiliary pressing block, the left side and the right side of the top end surface of the fixed bottom plate are respectively provided with a matched insertion slot a, and the two matched insertion slots a are communicated through a limiting moving chute a; the auxiliary abutting block is of an isosceles trapezoid block structure, and a limiting movable sliding block is fixedly installed on the bottom end face of the auxiliary abutting block and can be in sliding insertion fit with the limiting movable sliding groove a. By means of movement adjustment of an auxiliary abutting block, abutting fixing can be achieved in cooperation with a pipeline, limiting fixing of the left-right position of the pipeline is achieved, matched installation of a locking top plate and a fixing bottom plate is combined, meanwhile, limiting fixing of the up-down position of the pipeline is achieved, and the problems that according to a traditional pipeline conveying device, the pipeline is prone to moving left and right, and mutual collision damage is caused are solved. And the pipeline jumps up and down to cause part abrasion due to imperfect up-and-down limiting and fixing.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pipeline transportation technical field, especially pipeline transportation device with auxiliary structure. BACKGROUND

[0002] In the field of long-distance pipeline construction, the transportation of pipelines is a crucial link in the entire construction process. Long-distance pipelines often involve a large number of long-distance pipeline transportation, and the characteristics of the pipelines themselves determine that they face many challenges during transportation.

[0003] On the one hand, the traditional pipeline transportation device is prone to left and right movement during transportation due to factors such as road bumps and driving vibrations. This not only may cause the pipelines to collide with each other, resulting in damage to the surface of the pipelines and affecting the quality and service life of the pipelines, but in extreme cases, the large movement of the pipelines may even cause instability of the transportation vehicle, posing a safety hazard.

[0004] On the other hand, the existing transportation device is not perfect in terms of limiting and fixing the up and down position of the pipeline. During transportation, especially when passing through poor road sections, the pipeline is prone to up and down movement. Frequent up and down movement will cause the connection between the pipeline and the transportation device to bear additional stress, accelerating the wear and tear of the components, and may also affect the installation accuracy of the pipeline, increasing the difficulty and cost of subsequent construction.

[0005] In addition, most current pipeline transportation devices have poor versatility, such as the design of an arc-shaped slot for temporary loading of pipelines. This fixed structure cannot be flexibly adjusted according to different transportation needs. In actual construction, the number of pipelines transported each time may vary, but the existing transportation devices often cannot be adjusted accordingly according to the specific number of pipelines, resulting in low transportation efficiency and failing to fully meet the diversified construction needs. CONTENT OF THE UTILITY MODEL

[0006] The utility model relates to a pipeline transportation device with auxiliary structure, which solves the problem of traditional pipeline transportation devices being affected by road bumps and other factors, causing the pipelines to move left and right and collide with each other, and the up and down limiting and fixing being imperfect, causing the pipelines to jump up and down and affecting the installation accuracy, and the poor versatility making it difficult to flexibly adjust the number of pipelines according to transportation needs, resulting in low transportation efficiency.

[0007] The utility model provides a pipeline transportation device with auxiliary structure, specifically includes: fixed bottom plate and auxiliary resistance pressure piece, the fixed bottom plate is rectangular board structure, and fixed bottom plate top end face left and right sides each is equipped with one rectangular groove structure's cooperation and inserts the slot a, and cooperation and inserts the slot a through fixed bottom plate front end surface and rear end surface, two cooperation and inserts the slot a through one isosceles trapezoidal groove structure's limit removal sliding slot a intercommunication, and limit removal sliding slot a through fixed bottom plate top end surface, the auxiliary resistance pressure piece is isosceles trapezoidal block structure, and auxiliary resistance pressure piece bottom end surface fixedly installed one isosceles trapezoidal block structure's limit removal sliding block, and limit removal sliding block can with limit removal sliding slot a sliding insertion cooperation, the limit removal sliding block width is consistent with cooperation and inserts the slot a's width.

[0008] Further, the auxiliary resistance pressure piece top end face front and back sides are each provided with a receiving groove in a circular groove structure, and a threaded locking hole penetrating the bottom end surface of the auxiliary resistance pressure piece is formed at the inner end bottom surface of the receiving groove; a locking bolt is threadedly installed in the threaded locking hole, and when the threaded locking hole is threadedly installed in the threaded locking hole, the head end of the locking bolt is located inside the receiving groove.

[0009] Further, the fixed bottom plate top end face left and right sides adjacent edge parts are each provided with an installation fixed hole penetrating the bottom end surface thereof; the fixed bottom plate top end face adjacent four edge angle parts are each fixedly installed with a cooperation and insertion stud; a locking top plate in a rectangular plate structure is arranged above the fixed bottom plate, and a cooperation and insertion hole penetrating the top end surface thereof is formed at the bottom end surface of the locking top plate adjacent four edge angle parts; the four cooperation and insertion holes are respectively slidingly inserted with the four cooperation and insertion studs, and a locking nut is threadedly installed on each of the four cooperation and insertion studs.

[0010] Further, the locking top plate is in a rectangular plate structure, and a cooperation and insertion slot b in a rectangular groove structure is formed at each of the left and right sides of the bottom end surface of the locking top plate, and the cooperation and insertion slot b penetrates the front end surface and the rear end surface of the locking top plate; the two cooperation and insertion slots b are interconnected through a limit removal sliding groove b in an isosceles trapezoidal groove structure, and the limit removal sliding groove b penetrates the bottom end surface of the locking top plate.

[0011] Further, the limit removal sliding block is slidingly inserted with the limit removal sliding groove b; the limit removal sliding block width is consistent with the cooperation and insertion slot b width; the left end surface and the right end surface of the auxiliary resistance pressure piece are each fixedly bonded with a rubber contact pad.

[0012] The utility model provides a pipeline transportation device with auxiliary structure, and has the following beneficial effects:

[0013] The utility model discloses through the assembly type installation of auxiliary pressure block, make staff can be placed according to the required transportation quantity of pipeline, flexible selection number cooperation's auxiliary pressure block is installed, can satisfy the diversified pipeline transportation quantity demand, improved the versatility and adaptability of device, through the movement adjustment of auxiliary pressure block, can cooperate with the pipeline and realize the close -fitted fixing, realize the position limiting fixing of pipeline left and right position, guarantee the stability in the pipeline transportation process, and it will not move left and right because of bumping etc. Factor and pipeline, and the application also combines the cooperation installation of locking top plate and fixed bottom plate, also realizes the position limiting fixing of pipeline upper and lower position simultaneously, avoids in the transportation process, because of bumping etc. Factor and pipeline upper and lower movement, double close -fitted guarantee transportation stability, significantly improved the stability and security in the pipeline transportation process. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the drawings of the embodiment will be briefly introduced below.

[0015] The drawings in the following description only relate to some embodiments of the utility model, and are not limited to the utility model.

[0016] In the drawings:

[0017] Figure 1 The top end axon structure schematic diagram of the application is shown;

[0018] Figure 2 The bottom end axon structure schematic diagram of the application is shown;

[0019] Figure 3 The top end axon structure schematic diagram of the application is shown in the split state;

[0020] Figure 4 The bottom end axon structure schematic diagram of the application is shown in the split state;

[0021] Figure 5 The cross section structure schematic diagram of the application is shown;

[0022] Figure 6 The structure schematic diagram of the application is shown in the middle locking bolt removal state; Figure 5

[0023] List of reference signs

[0024] 1, fixed bottom plate, 101, cooperation plug -in slot a, 102, limit movement sliding slot a, 103, installation fixed hole site, 104, cooperation plug -in stud, 105, locking nut;

[0025] 2, locking top plate, 201, cooperation plug -in slot b, 202, limit movement sliding slot b, 203, cooperation plug -in hole site;

[0026] ​3, auxiliary pressing block; 301, rubber contact pad; 302, locking bolt; 303, limit moving sliding block; 304, storage groove; 305, threaded locking through hole. DETAILED DESCRIPTION

[0027] To make the purpose, technical scheme and advantages of the utility model clearer, the technical scheme of the utility model will be described clearly and completely below in combination with the drawings of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the described embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0028] Embodiment: please refer to Figures 1 to 6 :

[0029] The utility model provides a pipeline transportation device with auxiliary structure, include: fixed bottom plate 1 and auxiliary pressing block 3, fixed bottom plate 1 is rectangular plate structure, and the left and right sides of fixed bottom plate 1 top end face each is provided with one rectangular groove structure cooperation and inserts the slot a101, and cooperation and inserts the slot a101 through fixed bottom plate 1 front end face and rear end face, two cooperation and inserts the slot a101 are connected through one isosceles trapezoidal groove structure limit moving sliding groove a102, and limit moving sliding groove a102 passes through fixed bottom plate 1 top end face, auxiliary pressing block 3 is isosceles trapezoidal block structure, and auxiliary pressing block 3 bottom end face is fixedly installed with one isosceles trapezoidal block structure limit moving sliding block 303, and limit moving sliding block 303 can slide and insert with limit moving sliding groove a102, and limit moving sliding block 303 width is consistent with the width of cooperation and inserts the slot a101, and the front and rear sides of auxiliary pressing block 3 top end face are each provided with one circular groove structure storage groove 304, and the inner end bottom surface axial part of storage groove 304 is provided with threaded locking through hole 305 that passes through auxiliary pressing block 3 bottom end face, and threaded locking through hole 305 is installed with locking bolt 302 in screw thread, when the stud bottom end of locking bolt 302 and fixed bottom plate 1 top end face are closely attached, the head end of locking bolt 302 is located in the inside of storage groove 304.

[0030] In this embodiment, a mounting hole 103 penetrating the bottom surface of the fixed base plate 1 is provided on both the left and right sides of the top surface adjacent to the edge; a mating stud 104 is fixedly installed at the four corners of the top surface of the fixed base plate 1; a locking top plate 2 with a rectangular plate structure is provided directly above the fixed base plate 1, and a mating hole 203 penetrating the top surface of the locking top plate 2 is provided at the four corners of the bottom surface of the locking top plate 2; the four mating holes 203 are respectively slidably inserted into the four mating studs 104, and a locking nut 105 is threaded on each of the four mating studs 104, locking the top plate 2. The locking top plate 2 has a rectangular plate structure. On each of the left and right sides of its bottom surface, there is a rectangular groove for insertion. The grooves extend through the front and rear surfaces of the locking top plate 2. The two grooves are connected by an isosceles trapezoidal sliding groove b202, which extends through the bottom surface of the locking top plate 2. A sliding block 303 can slide and engage with the sliding groove b202. The width of the sliding block 303 is the same as the width of the groove b201. A rubber contact pad 301 is fixedly adhered to both the left and right ends of the auxiliary pressing block 3.

[0031] The working principle of this embodiment:

[0032] The fixed base plate 1 is installed on the placement platform of the pipeline transport vehicle, and the stud fasteners that are fixedly connected to the placement platform are inserted through the mounting holes 103 and locked by the nut locking parts to realize the fixed installation operation of the fixed base plate 1 and the placement platform.

[0033] Before transporting and placing the pipelines, workers can select the appropriate number of auxiliary pressure blocks 3 based on the quantity of pipelines to be transported and placed, and then install them with the fixed base plate 1 and the locking top plate 2. The specific operation is as follows:

[0034] When the auxiliary pressing block 3 is installed with the fixed base plate 1, first align the limiting sliding block 303 with the mating slot a101 and insert it, and then align it with the limiting sliding groove a102 and insert it. Thus, the auxiliary pressing block 3 and the fixed base plate 1 are installed by the limiting sliding groove a102 and the limiting sliding block 303.

[0035] When the auxiliary pressing block 3 is installed in conjunction with the locking top plate 2, first align the limiting sliding block 303 with the mating slot b201 and insert it, and then align it with the limiting sliding groove b202 and insert it. Thus, the auxiliary pressing block 3 and the locking top plate 2 are installed in conjunction through the limiting sliding groove b202 and the limiting sliding block 303.

[0036] Firstly, by the limiting sliding insertion fit of the limiting moving sliding groove a102 and the limiting moving sliding block 303, the spacing between the two adjacent auxiliary pressing blocks 3 is adjusted along the fixed bottom plate 1, then the pipeline to be transported is placed on the fixed bottom plate 1 between the two auxiliary pressing blocks 3, then the two auxiliary pressing blocks 3 can be continuously adjusted to make the rubber contact pads 301 of the two auxiliary pressing blocks 3 tightly adhere to the outer circumferential surface of the pipeline, then the locking bolt 302 is twisted and tightened along the threaded locking hole 305 by the tool matched with the locking bolt 302, so that the bottom end of the threaded shank of the locking bolt 302 tightly adheres to the top end face of the fixed bottom plate 1, thereby achieving the locking and fixing of the position of the auxiliary pressing block 3 which tightly adheres to the outer circumferential surface of the pipeline, and the position of the pipeline is assisted and tightly pressed by the auxiliary pressing block 3, so that the left and right movement of the pipeline caused by bumping and other factors during transportation is avoided.

[0037] Then, by the limiting sliding insertion fit of the limiting moving sliding groove b202 and the limiting moving sliding block 303, the spacing between the two adjacent auxiliary pressing blocks 3 is adjusted along the locking top plate 2, so that the auxiliary pressing blocks 3 do not collide with the pipeline during subsequent matching installation, then the four matching insertion hole positions 203 of the locking top plate 2 are respectively aligned with the four matching insertion threaded studs 104 of the fixed bottom plate 1 and are matched and inserted, until the bottom end face of the locking top plate 2 contacts the pipeline, at this time the position of the locking top plate 2 can be limited and fixed by twisting the locking nut 105 along the matching insertion threaded stud 104 by the tool, thereby limiting and fixing the position of the pipeline, so that the up and down movement of the pipeline caused by bumping and other factors during transportation is avoided.

[0038] Then, the auxiliary pressing blocks 3 matched and installed with the locking top plate 2 can be continuously moved, so that the rubber contact pads 301 of the two adjacent auxiliary pressing blocks 3 tightly adhere to the outer circumferential surface of the pipeline, then the locking bolt 302 is twisted and tightened along the threaded locking hole 305 by the tool matched with the locking bolt 302, so that the bottom end of the threaded shank of the locking bolt 302 tightly adheres to the bottom end face of the locking top plate 2, thereby achieving the locking and fixing of the position of the auxiliary pressing block 3 which tightly adheres to the outer circumferential surface of the pipeline, and the position of the pipeline is assisted and tightly pressed by the auxiliary pressing block 3, and the left and right movement of the pipeline caused by bumping and other factors during transportation is avoided by the up and down matching and tightly pressed auxiliary pressing blocks 3.

[0039] In this paper, the following points need to be noted:

[0040] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the usual design.

[0041] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0042] The above merely provides the specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure.

Claims

1. A pipe transport device with an auxiliary structure, characterized in that, Include: Fixed bottom plate (1) and auxiliary resistance block (3), the fixed bottom plate (1) is rectangular plate structure, fixed bottom plate (1) top end face left and right sides each set up one rectangular groove structure cooperation plug slot a (101), and cooperation plug slot a (101) penetrates the front end face and rear end face of fixed bottom plate (1); two cooperation plug slot a (101) is connected through one isosceles trapezoidal groove structure limit movement sliding groove a (102), and limit movement sliding groove a (102) penetrates the top end face of fixed bottom plate (1); The auxiliary resistance block (3) is isosceles trapezoidal block structure, the auxiliary resistance block (3) bottom end face is fixedly installed with one isosceles trapezoidal block structure limit movement sliding block (303), limit movement sliding block (303) can be slidably inserted with limit movement sliding groove a (102); The width of limit movement sliding block (303) is consistent with the width of cooperation plug slot a (101).

2. A pipeline transport apparatus with auxiliary structures according to claim 1, characterized in that, The top end face of the auxiliary resistance block (3) is provided with a receiving groove (304) on the front and rear sides, and a threaded locking hole (305) is formed in the inner end bottom surface of the receiving groove (304) and penetrates the bottom end surface of the auxiliary resistance block (3); The threaded locking hole (305) is internally threaded with a locking bolt (302), and when the threaded locking hole (305) is internally threaded with a locking bolt (302), the threaded locking hole (305) is internally threaded with a locking bolt (302), and the threaded locking bolt (302) is internally threaded with a locking bolt (302). When the threaded locking bolt (302) is in close contact with the top end surface of the fixed bottom plate (1), the head end of the locking bolt (302) is located inside the receiving groove (304).

3. A pipeline transport apparatus having auxiliary structures as defined in claim 2, wherein, The top end face of the fixed bottom plate (1) is provided with an installation fixed hole (103) on the left and right sides adjacent to the edge portion and penetrating the bottom end surface; The top end face of the fixed bottom plate (1) is fixedly installed with four cooperation plug-in studs (104) adjacent to the four edge angles; A locking top plate (2) is provided above the fixed bottom plate (1), and the locking top plate (2) is provided with four cooperation plug-in holes (203) penetrating the top end surface adjacent to the four edge angles; Four cooperation plug-in holes (203) are respectively slidably inserted with four cooperation plug-in studs (104), and four cooperation plug-in studs (104) are respectively slidably inserted with four cooperation plug-in studs (104).

4. A pipeline transport apparatus having auxiliary structures as defined in claim 3, wherein, The locking top plate (2) is rectangular plate structure, locking top plate (2) bottom end face left and right sides each set up one rectangular groove structure cooperation plug slot b (201), and cooperation plug slot b (201) penetrates the front end face and rear end face of locking top plate (2); Two cooperation plug slot b (201) is connected through one isosceles trapezoidal groove structure limit movement sliding groove b (202), and limit movement sliding groove b (202) penetrates the bottom end face of locking top plate (2).

5. A pipeline transport apparatus having auxiliary structures as defined in claim 4, wherein, The limit movement sliding block (303) can be slidably inserted with the limit movement sliding groove b (202); The width of the limit movement sliding block (303) is also consistent with the width of the cooperation plug slot b (201); The left end face and the right end face of the auxiliary resistance block (3) are fixedly bonded with a rubber contact pad (301).