Protection assembly for cement pipeline transportation

By designing protective components for cement pipeline transportation and using support mechanisms to separate the pipelines, the problems of pipeline collision and unstable loading and unloading during transportation are solved, and safe and reliable transportation and loading and unloading are achieved.

CN223238400UActive Publication Date: 2025-08-19GANZHOU RONGXIE BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202422782143.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-08-19
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Cement pipelines are prone to collision during transportation, unstable loading and unloading, and pose safety risks.

Method used

A protective component for cement pipeline transportation is designed, including a connecting plate and a support mechanism. The support mechanism is composed of a plug rod, a rubber block and a support plate. The support plate is a right-angle triangle or isosceles triangle structure. The rubber block matches the slot and is fixed by limit bolts and screws to ensure the stable position of the support mechanism.

Benefits of technology

Effectively avoid pipes colliding with each other during transportation, and the support mechanism does not move during loading and unloading, improving transportation safety and loading and unloading stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pipeline transportation, and discloses a protection assembly for cement pipeline transportation, which comprises a connecting plate, and a plurality of supporting mechanisms are arranged on the front side of the connecting plate; a rectangular groove is formed in the rear side of the connecting plate, a plurality of inserting grooves communicated with the rectangular groove are evenly formed in the front side of the connecting plate, each inserting groove is of a rectangular structure, the supporting mechanism comprises an inserting rod penetrating through the inserting grooves, the rear end of each inserting rod is connected with a rubber block, and the front end of each inserting rod is connected with a supporting plate. The length and the width of the rubber block are larger than the length and the width of the inserting groove, the section structures of the supporting plate are of a right triangle structure and an isosceles triangle structure respectively, the inclined face of the supporting plate of the right triangle structure is of an inwards-concave curved face structure, and the inclined face of the supporting plate of the isosceles triangle structure is of a concave curved face structure. And the equilateral inclined surface of the support plate with the isosceles triangle structure is of a concave curved surface structure. Compared with the prior art, the utility model has the advantages that the pipe body is separated, and the pipeline is safely assembled and disassembled.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipeline transportation, in particular to a protection component for cement pipeline transportation. Background Art

[0002] Cement pipe, also known as cement pressure pipe or reinforced concrete pipe, is a pre-installed pipe made of cement and steel bars using the centrifugal force of electric poles. It can be used as a water pipe in urban construction, for sewage discharge, flood control and drainage, as well as water pipes and farmland wells used in some special factories and mines.

[0003] After production, cement pipes need to be transported by vehicle to the area where they need to be laid. To prevent damage and ensure their quality, appropriate protective devices are required during transportation. Existing protective device components generally consist of wire ropes, chains, and rubber pads. These tools securely secure the pipes to the transport vehicle, while cushioning materials such as rubber pads are placed to reduce vibration. However, existing protective devices still have the following shortcomings:

[0004] 1. There are gaps between the pipes, and there is a situation where the cement pipes squeeze and collide with each other due to changes in vehicle speed;

[0005] 2. Pipeline loading and unloading are often achieved using lifting devices, while protective components only use rubber pads to support and limit the pipelines during loading and unloading. The rubber pads are prone to movement, resulting in unstable loading and unloading and posing safety risks. Utility Model Content

[0006] 1. Technical Problems Solved

[0007] The technical problem to be solved by the utility model is that the pipe bodies are easy to collide with each other, the disassembly is unstable, and there is a safety risk.

[0008] 2. Technical Solution

[0009] In order to solve the above technical problems, the technical solution provided by the present invention is as follows: a protective assembly for cement pipeline transportation, comprising a connecting plate, wherein a plurality of supporting mechanisms are provided on the front side of the connecting plate;

[0010] The rear side of the connecting plate is provided with a rectangular groove, and the front side of the connecting plate is evenly provided with a plurality of slots communicating with the rectangular groove. The slots are rectangular structures. The supporting mechanism includes a rod passing through the slot. The rear end of the rod is connected to a rubber block, and the front end is connected to the support plate.

[0011] The length and width of the rubber block are greater than the length and width of the slot. The cross-sectional structures of the support plate are of two types, namely a right-angled triangle structure and an isosceles triangle structure. The inclined surface of the support plate of the right-angled triangle structure is a concave curved surface structure, and the inclined surface of the equal sides of the support plate of the isosceles triangle structure is a concave curved surface structure.

[0012] As an improvement, limiting bolts are respectively inserted into the front corners of the connecting plate.

[0013] As an improvement, the width of the rubber block in the front-to-back direction is equal to the height of the rectangular groove, and the front end of the insertion rod extends out of the connecting plate.

[0014] As an improvement, the insertion rod is provided with a through hole between the left and right side walls on the front side of the connecting plate, the left and right side walls on the front side of the connecting plate are provided with vertical plates, and multiple through holes 2 that cooperate with the through hole are evenly provided between the left and right side walls of the vertical plate in the vertical direction, a screw rod is inserted between the through hole and the through hole 2, and nuts are threadedly sleeved on both ends of the screw rod.

[0015] As an improvement, the length of the screw is smaller than the left-right width of the connecting plate.

[0016] As an improvement, the side wall of the curved surface of the support plate is evenly provided with a plurality of notches along the length direction.

[0017] As an improvement, the support plate is made of hard rubber material.

[0018] 3. Beneficial Effects

[0019] The advantages of this utility model compared with the prior art are:

[0020] 1. Separate the pipes through the support mechanism so that they will not collide with each other during transportation;

[0021] 2. The support mechanism is installed on the connecting plate and is fixed in position to prevent movement during loading and unloading of the pipeline. This ensures that the support mechanism always plays a supporting and limiting role during loading and unloading of the pipeline, making loading and unloading safer. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 The utility model is a structural schematic diagram of a protective component for cement pipeline transportation.

[0023] Figure 2 This is a schematic diagram of the structure of a protective component for cement pipeline transportation in this utility model. Figure 2 .

[0024] Figure 3 The utility model is a schematic diagram of the explosion state structure of a protective component for cement pipeline transportation.

[0025] Figure 4 This is a front view of a protective component for cement pipeline transportation according to the present invention.

[0026] Figure 5 It is a right view of an explosion state of a protective component for cement pipeline transportation according to the utility model.

[0027] As shown in the figure: 1. Connecting plate; 2. Support mechanism; 3. Rectangular groove; 4. Slot; 5. Insert rod; 6. Rubber block; 7. Support plate; 8. Limit bolt; 9. Through hole; 10. Vertical plate; 11. Through hole 2; 12. Screw; 13. Nut; 14. Notch. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0029] Example 1

[0030] As attached Figure 1 , Attachment Figure 2 and attached Figure 3 As shown, a protective component for cement pipeline transportation includes a connecting plate 1, and limiting bolts 8 are respectively inserted at the front corners of the connecting plate 1 to connect and fix the connecting plate 1 to the transport vehicle. A plurality of supporting mechanisms 2 are provided on the front side of the connecting plate 1, and a rectangular groove 3 is provided on the rear side of the connecting plate 1. A plurality of slots 4 communicating with the rectangular groove 3 are evenly provided on the front side of the connecting plate 1, and the slots 4 are of rectangular structure. The supporting mechanism 2 includes an insertion rod 5 passing through the slot 4, and the rear end of the insertion rod 5 is connected to a rubber block 6, and the front end is connected to a support plate 7; the length and width of the rubber block 6 are greater than the length and width of the slot 4, and the cross-sectional structure of the support plate 7 is of two types, namely a right-angled triangle structure and an isosceles triangle structure. The inclined surface of the support plate 7 of the right-angled triangle structure is a concave curved surface structure, and the inclined surface of the equilateral side of the support plate 7 of the isosceles triangle structure is a concave curved surface structure.

[0031] Through the above structure, the support mechanism 2 is inserted into the connecting plate 1 through the insertion rod 5 through the slot 4. According to the size of the pipeline, the support mechanism 2 is installed in the corresponding position of the connecting plate 1, so that the support mechanism 2 can separate the pipelines. The pipelines are placed in the support mechanism 2 respectively, so that the pipelines will not collide with each other during transportation. The length and width of the rubber block 6 of the support mechanism 2 are greater than the length and width of the slot 4, so that the position of the support mechanism 2 is fixed after it is inserted and installed on the connecting plate 1, and manual disassembly is required to avoid movement during loading and unloading of the pipeline. When the pipeline is loaded and unloaded, the support mechanism 2 always plays a supporting and limiting role, and loading and unloading is safer.

[0032] Example 2

[0033] Based on the first embodiment, please refer to the attached Figure 4 and attached Figure 5

[0034] The width of the rubber block 6 in the front-to-back direction is equal to the height of the rectangular groove 3, and the front end of the insertion rod 5 extends out of the connecting plate 1; the insertion rod 5 is provided with a through hole 9 between the left and right side walls on the front side of the connecting plate 1, and the left and right side walls on the front side of the connecting plate 1 are provided with vertical plates 10, and a plurality of through holes 11 cooperating with the through holes 9 are evenly provided between the left and right side walls of the vertical plates 10 in the vertical direction, and a screw 12 is inserted between the through hole 9 and the through hole 11, and nuts 13 are threadedly connected at both ends of the screw 12; the length of the screw 12 is less than the left-right width of the connecting plate 1.

[0035] Through the above structure, the position of the support mechanism 2 is further fixed, so that after the support mechanism 2 is plugged into the connecting plate 1, a screw 12 is inserted between the through hole 9 and the second through hole 11 at the corresponding position for connection. The two ends of the screw 12 are fixed by tightening the nut 13, and the installation is firm. The length of the screw 12 is less than the left and right width of the connecting plate 1 to avoid protruding to the outside of the device.

[0036] The side wall of the curved surface of the support plate 7 is evenly provided with a plurality of notches 14 along the length direction; the support plate 7 is made of hard rubber material.

[0037] Through the above structure, the support plate 7 made of hard rubber plays a role in limiting and buffering the pipeline, and a recess 14 is provided on the support plate 7, so that a crane or the like can be inserted from the recess 14 when loading and unloading the pipeline, which is more convenient for loading and unloading.

[0038] The specific usage method is as follows: the support mechanism 2 is inserted into the connecting plate 1 through the slot 4 through the insertion rod 5. According to the size of the pipe, the support mechanism 2 is installed in the corresponding position of the connecting plate 1. The curved surfaces of the support plates 7 of the support mechanism 2 are all facing the pipe, which can be respectively attached to the pipe, so that the support mechanism 2 can separate the pipes so that the pipes will not collide with each other during transportation. The length and width of the rubber block 6 of the support mechanism 2 are greater than the length and width of the slot 4, so that the position of the support mechanism 2 is fixed after it is inserted and installed on the connecting plate 1. The screw 12 is inserted between the through hole 9 and the second through hole 11 at the corresponding position for connection. The two ends of the screw 12 are fixed by tightening the nut 13, so that the position of the support mechanism 2 is fixed and manual disassembly is required to avoid movement during loading and unloading of the pipe. The support mechanism 2 always plays a supporting and limiting role during loading and unloading of the pipe, and loading and unloading are safer. A notch 14 is provided on the support plate 7, which enables a crane to be inserted from the notch 14 when loading and unloading the pipe, which is more convenient for loading and unloading.

[0039] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0040] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

[0041] The above description of the present invention and its embodiments is non-limiting. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by the above, and does not deviate from the purpose of the present invention, without inventive design, a structure and embodiment similar to the technical solution should fall within the scope of protection of the present invention.

Claims

1. A protective assembly for cement pipeline transportation, comprising a connecting plate (1), wherein a plurality of supporting mechanisms (2) are provided on the front side of the connecting plate (1), characterized in that: The connecting plate (1) is provided with a rectangular groove (3) on the rear side, and a plurality of slots (4) communicating with the rectangular groove (3) are evenly provided on the front side of the connecting plate (1), wherein the slots (4) are rectangular structures, and the supporting mechanism (2) includes an insertion rod (5) passing through the slots (4), wherein the rear end of the insertion rod (5) is connected to a rubber block (6), and the front end is connected to a supporting plate (7); The length and width of the rubber block (6) are greater than the length and width of the slot (4). The cross-sectional structures of the support plate (7) are of two types, namely a right-angled triangle structure and an isosceles triangle structure. The inclined surface of the support plate (7) with the right-angled triangle structure is a concave curved surface structure, and the inclined surface of the equal sides of the support plate (7) with the isosceles triangle structure is a concave curved surface structure.

2. A cement pipeline transportation protection assembly according to claim 1, characterized in that: Limiting bolts (8) are respectively inserted at the front corners of the connecting plate (1).

3. The protective assembly for cement pipeline transportation according to claim 1, characterized in that: The width of the rubber block (6) in the front-to-back direction is equal to the height of the rectangular groove (3), and the front end of the insertion rod (5) extends out of the connecting plate (1).

4. A cement pipeline transportation protection assembly according to claim 3, characterized in that: The insertion rod (5) is provided with a through hole (9) between the left and right side walls on the front side of the connecting plate (1), and the left and right side walls on the front side of the connecting plate (1) are provided with a vertical plate (10). A plurality of through holes (11) that match the through hole (9) are evenly provided between the left and right side walls of the vertical plate (10) in the vertical direction. A screw rod (12) is inserted between the through hole (9) and the through hole (11), and nuts (13) are threadedly sleeved on both ends of the screw rod (12).

5. The protective assembly for cement pipeline transportation according to claim 4, characterized in that: The length of the screw rod (12) is smaller than the width of the connecting plate (1) in the left and right directions.

6. The protective assembly for cement pipeline transportation according to claim 1, characterized in that: The side wall of the curved surface of the support plate (7) is evenly provided with a plurality of notches (14) along the length direction.

7. The protective assembly for cement pipeline transportation according to claim 1, characterized in that: The support plate (7) is made of hard rubber material.