Assembled cover type pipe clamp

By designing the assembled cover-type pipe card that is snapped into each other with the first snap structure and the second snap structure, the problem of inconvenience in the locking connection of the existing pipe card bolts is solved, and the rapid and stable pipe card installation is achieved, and the installation efficiency and safety are improved.

CN223203867UActive Publication Date: 2025-08-08GUANG DONG SHENLIAN INDUSTRIAD CO LTD
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Patent Information

Application Number
CN202420911220.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-28
Publication Date
2025-08-08
Estimated Expiration
2034-04-28

AI Technical Summary

Technical Problem

The existing pipe card is connected by bolt locking, which is inconvenient to installation, especially when working at high altitudes, and has safety risks of inadequate tightening.

Method used

The assembled cover-type tube card design is adopted that snaps into each other with the first snap structure and the second snap structure, eliminating the bolt fastening step and achieving rapid installation through the snap connection.

Benefits of technology

Improves installation efficiency, reduces operational complexity and safety risks, and ordinary operators can easily complete connections, reducing operational errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of pipeline fittings, and discloses an assembled cover type pipe clamp which comprises a lower pipe clamp and an upper pipe clamp arranged corresponding to the lower pipe clamp. First buckle structures are arranged at the two ends of the lower pipe clamp respectively, second buckle structures corresponding to the first buckle structures are arranged at the two ends of the upper pipe clamp respectively, and the first buckle structures and the second buckle structures are buckled with each other. According to the utility model, the pipe clamp can be installed more quickly, so that the whole pipe clamp is fastened more firmly, the combination is more flexible and standard, the installation and the operation are simpler and more convenient, special tools or skills are not needed, common operators can also complete the connection easily, and the operation complexity and possible operation errors are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipeline accessories, in particular to an assembled cover type pipe clamp. Background Art

[0002] Existing pipe clamps are composed of two separate parts (an upper pipe clamp and a lower pipe clamp), which are connected by a bolt locking method. For example, in a combined pipe clamp with patent number "CN 212107224 U", the upper pipe clamp covers the lower pipe clamp and is connected by a bolt locking method. This requires a lot of time to perform bolt tightening operations during use of the pipe clamp, resulting in inconvenient installation of the upper and lower pipe clamps, especially during high-altitude operations. Frequent tightening operations greatly increase working time and costs, reduce production efficiency, and when the upper and lower pipe clamps are connected by bolt locking methods, the operator may fail to tighten them properly, which may easily lead to safety hazards. Utility Model Content

[0003] The main purpose of this application is to provide an assembled cover type pipe clamp, which aims to solve the technical problem that the existing upper pipe clamp and the lower pipe clamp are connected by bolt locking.

[0004] In order to achieve the above-mentioned purpose, the utility model proposes an assembled cover type pipe clamp, comprising a lower pipe clamp and an upper pipe clamp arranged corresponding to the lower pipe clamp;

[0005] Both ends of the lower tube clamp are respectively provided with a first buckle structure, and both ends of the upper tube clamp are respectively provided with a second buckle structure corresponding to the first buckle structure, and the first buckle structure and the second buckle structure are buckled with each other.

[0006] Furthermore, the second buckle structure includes a locking hook body and a locking piece, the locking hook body is connected to the upper tube clamp, the locking piece is connected to one end of the locking hook body away from the upper tube clamp, and the locking piece, the locking hook body and the upper tube clamp are an integrated piece.

[0007] Furthermore, a locking surface and an inclined wedge surface are provided on the locking member, the locking surface intersects with the top surface of the lock hook body, the inclined wedge surface intersects at an end of the locking surface away from the top surface of the lock hook body, and the distance between the inclined wedge surface and the lock hook body gradually decreases from the locking surface toward the free end of the lock hook body.

[0008] Furthermore, the lower pipe clamp includes a pipe clamp body, and the pipe clamp body is an arc-shaped clamp ring with an arc greater than or equal to 180 degrees.

[0009] Furthermore, the first snap-fit structure is an outwardly extending snap-fit seat, and an assembly hole for the second snap-fit structure to pass through is provided on the snap-fit seat.

[0010] Furthermore, the upper pipe clamp includes an arc segment and connecting segments located at both ends of the arc segment and connected to the locking hook body. The bottom surface of the connecting segment away from the arc segment and the top surface of the clamping seat away from the pipe clamp body are parallel to each other.

[0011] Furthermore, the lower pipe clamp also includes a pipe clamp base, which includes a connecting column and a bottom plate. The connecting column is connected to the pipe clamp body, and the bottom plate is connected to the end of the connecting column away from the pipe clamp body. A first through hole is provided on the pipe clamp body, which passes through the pipe clamp body and the connecting column, and a second through hole is provided on the bottom plate. The aperture of the first through hole is larger than the aperture of the second through hole.

[0012] Furthermore, the pipe clamp base further includes connecting walls located at both ends of the bottom plate, and the connecting walls are symmetrically arranged at both ends of the connecting column and are tangent to the outer circle of the pipe clamp body.

[0013] Furthermore, a clamping block is provided on one of the connecting walls, a sliding groove is provided in the clamping block, and a sliding block is provided on the other connecting wall, and the sliding block is provided corresponding to the sliding groove.

[0014] Furthermore, the assembly hole includes a first orifice and a second orifice corresponding to the first orifice, the first orifice is located at an end of the clamping seat away from the pipe clamp body, the second orifice is located at an end of the clamping seat away from the upper pipe clamp, and the extension direction width of the first orifice is greater than the extension direction width of the second orifice.

[0015] Beneficial effects:

[0016] The utility model can install the pipe clamp more quickly by interlocking the first clip structure and the second clip structure with each other. The connection can be completed by only interlocking the first clip structure of the lower pipe clamp and the second clip structure of the upper pipe clamp, which saves the time-consuming bolt tightening step. Compared with the bolt connection, the first clip structure and the second clip structure are interlocked, so that the entire pipe clamp is tighter, and the combination is more flexible and standard. The installation and operation are simpler and do not require special tools or skills. Ordinary operators can also easily complete the connection, reducing the complexity of operation and possible operating errors. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is an overall schematic diagram of an assembled cover-type pipe clamp according to an embodiment of the present invention;

[0018] Figure 2 This is an embodiment of the utility model Figure 1 A local schematic diagram of point A;

[0019] Figure 3 This is an overall schematic diagram of the lower pipe clamp of one embodiment of the utility model;

[0020] Figure 4 This is an embodiment of the utility model Figure 3 AA cross-sectional view.

[0021] in:

[0022] 1. Lower tube clamp; 2. Upper tube clamp; 3. First buckle structure; 4. Second buckle structure; 5. Assembly hole;

[0023] 10. Pipe clamp body; 11. Pipe clamp base;

[0024] 110, connecting column; 111, bottom plate; 112, first through hole; 113, second through hole; 114, connecting wall; 115, clamping block; 116, slide groove; 117, slider;

[0025] 20. Arc segment; 21. Connecting segment;

[0026] 40. Lock hook body; 41. Locking member; 42. Locking surface; 43. Inclined wedge surface.

[0027] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0028] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0029] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like, indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operate in a specific direction, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present invention, "multiple" means two or more, unless otherwise clearly and specifically defined.

[0030] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to mechanical connections, direct connections, or indirect connections through an intermediate medium; they may refer to internal communication between two components or the interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.

[0031] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0032] Reference Figure 1-Figure 2 This embodiment provides an assembled cover type pipe clamp, comprising a lower pipe clamp 1 and an upper pipe clamp 2 corresponding to the lower pipe clamp 1;

[0033] The two ends of the lower tube clamp 1 are respectively provided with a first snap-fit structure 3, and the two ends of the upper tube clamp 2 are respectively provided with a second snap-fit structure 4 corresponding to the first snap-fit structure 3, and the first snap-fit structure 3 and the second snap-fit structure 4 are buckled with each other.

[0034] In the above embodiment, the assembled cover-type pipe clamp includes a lower pipe clamp 1 and an upper pipe clamp 2, which are used to fix and support the pipeline system. The upper pipe clamp 2 is arranged corresponding to the lower pipe clamp 1 and the two are split parts. When maintenance, replacement or adjustment is required, only a part of them needs to be operated without having to disassemble the entire pipe clamp, which improves maintenance efficiency and reduces production costs; the upper pipe clamp 2 and the lower pipe clamp 1 are arc-shaped structures, and two first snap-fit structures 3 are respectively provided at the two ends of the lower pipe clamp 1, and two second snap-fit structures 4 are respectively provided at the two ends of the upper pipe clamp 2, wherein the two first snap-fit structures 3 are symmetrically arranged at the two ends of the lower pipe clamp 1, and the two second snap-fit structures 4 are symmetrically arranged at the two ends of the upper pipe clamp 2, and the first snap-fit structures 3 and the second snap-fit structures 4 correspond to each other, so that the installer can more easily determine the position of the two structures and ensure that the installation of the two ends is uniform and aligned. The invention relates to a method for fastening the pipe clamp to a tube structure 1 and a tube system 2. The method further comprises the steps of: firstly, fastening the first and second fastening structures 3 and 4, and fastening the first and second fastening structures 4 to a tube structure 2. The method further comprises the steps of: first, fastening the second and second fastening structures 3 and 4, and fastening the first and second fastening structures 3 and 4 to a tube structure 2;

[0035] Reference Figure 1-Figure 2 In one embodiment, the second buckle structure 4 includes a locking hook body 40 and a locking member 41, the locking hook body 40 is connected to the upper tube clamp 2, the locking member 41 is connected to one end of the locking hook body 40 away from the upper tube clamp 2, and the locking member 41, the locking hook body 40 and the upper tube clamp 2 are an integrated part.

[0036] In the above embodiment, the second snap-fit structure 4 includes a locking hook body 40 and a locking member 41, wherein the locking hook body 40 is interconnected with the upper tube clamp 2, and the locking hook body 40 is connected to the middle of the end of the upper tube clamp 2, and the locking member 41 is connected to the end of the locking hook body 40 away from the upper tube clamp 2, so that the locking member 41, the locking hook body 40 and the upper tube clamp 2 are integrated, ensuring that there are no connection points and seams between the entire upper tube clamp 2 and the second snap-fit structure 4, thereby improving the overall stability of the structure, reducing connecting parts such as bolts and their fastening operations, reducing assembly costs, and thus reducing time costs.

[0037] Reference Figure 1-Figure 2In one embodiment, a locking surface 42 and an inclined wedge surface 43 are provided on the locking member 41, the locking surface 42 intersects with the top surface of the lock hook body 40, the inclined wedge surface 43 intersects at the end of the locking surface 42 away from the top surface of the lock hook body 40, and the distance between the inclined wedge surface 43 and the lock hook body 40 gradually decreases from the locking surface 42 toward the free end of the lock hook body 40.

[0038] In the above embodiment, the locking member 41 protrudes from the top surface of the lock hook body 40, so that a locking surface 42 and an inclined wedge surface 43 are formed on the locking member 41, wherein the locking surface 42 intersects with the top surface of the lock hook body 40, and one end of the inclined wedge surface 43 and the locking surface 42 are away from the end of the top surface of the lock hook body 40, wherein the angle of intersection is less than or equal to 90 degrees, and the end of the inclined wedge surface 43 away from the locking surface 42 extends in a direction away from the locking surface 42 so as to be connected to the free end of the lock hook body 40, and the place where the inclined wedge surface 43 is connected to the free end of the lock hook body 40 forms an arc chamfer, which helps to realize the connection from the lock hook body 40 to the inclined wedge surface 43. 3, avoids stress concentration and damage caused by accidental collision to the connection between the inclined wedge surface 43 and the lock hook body 40, and helps to maintain the integrity and strength of the second snap structure 4. In addition, the distance between the inclined wedge surface 43 and the lock hook body 40 gradually decreases from the locking surface 42 toward the free end of the lock hook body 40, so that the locking member 41 and the free end of the lock hook body 40 form a "V" shape structure, which helps to reduce the friction resistance between the locking member 41 and the first snap structure 3 during the snapping process, making the snapping process smoother, reducing the force required during operation, and reducing the wear of the first snap structure 3 and the locking member 41, thereby extending the service life.

[0039] Reference Figure 1-Figure 2 In one embodiment, the lower pipe clamp 1 includes a pipe clamp body 10, and the pipe clamp body 10 is an arc-shaped clamp ring with an arc greater than or equal to 180 degrees.

[0040] In the above embodiment, the lower pipe clamp 1 includes a pipe clamp body 10, wherein the pipe clamp body 10 is a non-enclosed structure with an opening formed in the direction close to the upper pipe clamp 2, and the pipe clamp body 10 is preferably an arc-shaped clamp ring with an arc greater than or equal to 180 degrees, which helps to provide a larger contact area, making the contact between the pipe clamp and the pipeline system closer, and can increase the clamping force of the pipe clamp on the pipeline system, improve the fixation, and effectively prevent the pipeline system from shaking and loosening during use.

[0041] Reference Figure 1-Figure 2 In one embodiment, the first snap-fit structure 3 is an outwardly extending snap-fit seat, and an assembly hole 5 for the second snap-fit structure 4 to pass through is provided on the snap-fit seat.

[0042] In the above embodiment, the first snap-fit structure 3 is two snap-fit seats, and the snap-fit seats extend outward in the direction away from the opening of the pipe clamp body 10, so that the two snap-fit seats are connected to the two ends of the pipe clamp body 10 and their top surfaces are located on the same horizontal plane, so that the force applied to the connection between the snap-fit seats and the pipe clamp body 10 can be more evenly distributed on the pipe clamp body 10, which helps to reduce local stress concentration and improve the stability and durability of the connection. In addition, a through assembly hole 5 is provided on the connecting seat for the second snap-fit structure 4 to pass through so that it is snapped on the connecting seat, so that the second snap-fit structure 4 is inserted into the assembly hole 5 and snap-fitted with the first snap-fit structure 3. The assembly hole 5 can provide an accurate positioning point to ensure that the second snap-fit structure 4 can be accurately inserted and snapped on the connecting seat, which can ensure the stability and reliability of the snap-fit connection, while limiting the movement of the second snap-fit structure 4 to avoid the snap-fit connection from being offset or loosened.

[0043] Reference Figure 1-Figure 2 In one embodiment, the upper pipe clamp 2 includes an arc segment 20 and connecting segments 21 located at both ends of the arc segment 20 and connected to the locking hook body 40. The bottom surface of the connecting segment 21 away from the arc segment 20 and the top surface of the clamping seat away from the pipe clamp body 10 are parallel to each other.

[0044] In the above embodiment, the upper pipe clamp 2 includes an arc segment 20 and a connecting segment 21, wherein the diameter of the arc segment 20 is the same as the diameter of the pipe clamp body 10, the connecting segment 21 is located at both ends of the arc segment 20 and is connected to the locking hook body 40, and the bottom surfaces of the connecting segments 21 at both ends are located on the same horizontal plane, so that the bottom surface of the connecting segment 21 away from the arc segment 20 and the top surface of the clamping seat away from the pipe clamp body 10 are parallel to each other. When the upper pipe clamp 2 is buckled onto the lower pipe clamp 1, the connecting segment 21 fits tightly together with the clamping seat, which helps to reduce the gap at the connection and prevent the connection from being loose or unstable due to the gap.

[0045] Reference Figures 1-4 In one embodiment, the lower pipe clamp 1 also includes a pipe clamp base 11, and the pipe clamp base 11 includes a connecting column 110 and a bottom plate 111. The connecting column 110 is connected to the pipe clamp body 10, and the bottom plate 111 is connected to the end of the connecting column 110 away from the pipe clamp body 10. A first through hole 112 is provided on the pipe clamp body 10, which passes through the pipe clamp body 10 and the connecting column 110, and a second through hole 113 is provided on the bottom plate 111. The aperture of the first through hole 112 is larger than the aperture of the second through hole 113.

[0046] In the above embodiment, the lower pipe clamp 1 also includes a pipe clamp base 11, wherein the pipe clamp base 11 includes a connecting column 110 and a bottom plate 111, and the connecting column 110 is located between the pipe clamp body 10 and the bottom plate 111, so that one end of the connecting column 110 is connected to the pipe clamp body 10, and the end of the connecting column 110 away from the pipe clamp body 10 is connected to the bottom plate 111, and the pipe clamp body 10, the connecting column 110 and the bottom plate 111 are integrated to form an integral structure, thereby improving the stability and bearing capacity of the entire pipe clamp, helping to withstand more pressure and vibration from the pipeline system, and ensuring the firmness and reliability of the connection between the pipe clamp and the pipeline system; in addition, a first through hole 112 is provided on the pipe clamp body 10, and the first through hole 112 is provided on the pipe clamp body 10. The hole 112 passes through the pipe clamp body 10 and the connecting column 110, making it a channel for accommodating fasteners such as bolts. A second through hole 113 is provided on the bottom plate 111, and the centers of the first through hole 112 and the second through hole 113 are located on the same axis, wherein the aperture of the first through hole 112 is larger than the aperture of the second through hole 113. When the pipe clamp base 11 is fixedly connected to the wall or the bottom surface by the fastener, the end of the fastener away from the ground is tightly attached to the bottom plate 111 between the first through hole 112 and the second through hole 113, making the installation process more precise and convenient, while increasing the tightness and stability of the pipe clamp base 11 connected to the wall or the ground, and reducing the possibility of loosening due to vibration or external force during use.

[0047] Reference Figures 1-4 In one embodiment, the pipe clamp base 11 further includes connecting walls 114 located at both ends of the bottom plate 111 . The connecting walls 114 are symmetrically arranged at both ends of the connecting column 110 and are tangent to the outer circle of the pipe clamp body 10 .

[0048] In the above embodiment, the pipe clamp base 11 also includes a connecting wall 114, wherein the connecting wall 114 is located at the two ends of the length direction of the bottom plate 111, so that the connecting wall 114 connects the pipe clamp body 10, the connecting column 110 and the bottom plate 111 respectively, and the connecting wall 114, the pipe clamp body 10, the connecting column 110 and the bottom plate 111 are an integrated part. In addition, the connecting wall 114 is symmetrically arranged at both ends of the connecting column 110, and the connecting wall 114 extends toward the pipe clamp body 10, so that the end of the connecting wall 114 away from the bottom plate 111 is tangent to the outer circle of the pipe clamp body 10. The connecting wall 114 is used to tightly combine the various components into one, thereby effectively enhancing the stability and bearing capacity of the overall structure of the lower pipe clamp 1.

[0049] Reference Figures 1-4 , refer to Figure 1-Figure 3In one embodiment, a clamping block 115 is provided on one of the connecting walls 114 , a sliding groove 116 is provided in the clamping block 115 , and a slider 117 is provided on the other connecting wall 114 , and the slider 117 is provided corresponding to the sliding groove 116 .

[0050] In the above embodiment, a clamping block 115 integrally connected to the connecting wall 114 is provided on the connecting wall 114 at one end of the bottom plate 111. The clamping block 115 extends along the entire width direction of the connecting wall 114, and the clamping block 115 is located between the intersection of the clamping block 115 and the pipe clamp body 10 and the bottom plate 111. In addition, a slide groove 116 is provided in the clamping block 115. The slide groove 116 extends along the entire length direction of the clamping block 115, and the slide groove 116 is preferably T-shaped, so that the part of the slide groove 116 close to the connecting column 110 is arc-shaped, and the other part is a rectangular slide groove 116 mouth connected to the arc-shaped opening, further at the bottom plate 111. A slider 117 is provided on the connecting wall 114 at the other end away from the clamping block 115, wherein the positions of the slider 117 and the slide groove 116 are arranged to correspond to each other, so that the slider 117 is also T-shaped corresponding to the shape of the slide groove 116. When multiple assembled cover-type pipe clamps are spliced, the slider 117 and the slide groove 116 are connected to each other to form multiple radially connected pipe clamp assemblies as needed, which helps to flexibly combine the forms to adapt to different usage scenarios. In addition, through the mutual connection between the slider 117 and the slide groove 116, the splicing of the pipe clamp assemblies becomes simple and intuitive, without the need for complicated tools or operations, thereby reducing the time and labor costs during the splicing process.

[0051] Reference Figures 1-4 In one embodiment, the assembly hole 5 includes a first orifice and a second orifice corresponding to the first orifice, the first orifice is located at an end of the clamping seat away from the pipe clamp body 10, and the second orifice is located at an end of the clamping seat away from the upper pipe clamp 2, and the extension direction width of the first orifice is greater than the extension direction width of the second orifice.

[0052] In the above embodiment, the assembly hole 5 includes a first orifice and a second orifice, and the first orifice and the second orifice are respectively arranged at both ends of the entire assembly hole 5. The first orifice is located at the end of the clamping seat away from the pipe clamp body 10, so that it is located on the top surface of the clamping seat, and the second orifice is located at the end of the clamping seat away from the upper pipe clamp 2, so that it is located on the bottom surface of the clamping seat. The apertures of the first orifice and the second orifice are the same, but the width of the first orifice in the extension direction is greater than the width of the second orifice in the extension direction, so that the entire assembly hole 5 forms a first orifice and a second orifice parallel to each other. The trapezoidal shape ensures that when the second snap-fit structure 4 is snapped into the assembly hole 5, the larger width in the extension direction of the first hole helps the second snap-fit structure 4 to enter the assembly hole 5 more smoothly. Furthermore, since the width in the extension direction of the second hole is smaller, when the second snap-fit structure 4 passes through the second hole, the locking surface 42 of the locking piece 41 in the second snap-fit structure 4 presses against the bottom surface of the snap-fit seat, making it difficult for the second snap-fit structure 4 to slide out of the assembly hole 5, effectively enhancing the firmness of the connection between the upper pipe clamp 2 and the lower pipe clamp 1, and improving the stability of the entire pipe clamp structure.

[0053] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An assembled cover type pipe clamp, characterized in that: It includes a lower pipe clamp and an upper pipe clamp arranged corresponding to the lower pipe clamp; Both ends of the lower tube clamp are respectively provided with a first buckle structure, and both ends of the upper tube clamp are respectively provided with a second buckle structure corresponding to the first buckle structure, and the first buckle structure and the second buckle structure are buckled with each other, wherein the upper tube clamp and the lower tube clamp are separate parts; The second buckle structure includes a locking hook body and a locking piece, wherein the locking hook body is connected to the upper tube clamp, and the locking piece is connected to an end of the locking hook body away from the upper tube clamp, and the locking piece, the locking hook body and the upper tube clamp are an integral part; A locking surface and an inclined wedge surface are provided on the locking member, the locking surface intersects with the top surface of the lock hook body, the inclined wedge surface intersects at an end of the locking surface away from the top surface of the lock hook body, and the distance between the inclined wedge surface and the lock hook body gradually decreases from the locking surface toward the free end of the lock hook body.

2. The assembled cover type pipe clamp according to claim 1, characterized in that: The lower pipe clamp includes a pipe clamp body, and the pipe clamp body is an arc-shaped clamp ring with an arc greater than or equal to 180 degrees.

3. The assembled cover type pipe clamp according to claim 2, characterized in that: The first buckle structure is a buckle seat extending outward, and an assembly hole for the second buckle structure to pass through is provided on the buckle seat.

4. The assembled cover type pipe clamp according to claim 3, characterized in that: The upper pipe clamp includes an arc segment and connecting segments located at both ends of the arc segment and connected to the locking hook body. The bottom surface of the connecting segment away from the arc segment and the top surface of the clamping seat away from the pipe clamp body are parallel to each other.

5. The assembled cover type pipe clamp according to claim 2, characterized in that: The lower pipe clamp also includes a pipe clamp base, which includes a connecting column and a bottom plate. The connecting column is connected to the pipe clamp body, and the bottom plate is connected to the end of the connecting column away from the pipe clamp body. A first through hole is provided on the pipe clamp body, which passes through the pipe clamp body and the connecting column, and a second through hole is provided on the bottom plate. The aperture of the first through hole is larger than the aperture of the second through hole.

6. The assembled cover type pipe clamp according to claim 5, characterized in that: The pipe clamp base further includes connecting walls located at both ends of the bottom plate. The connecting walls are symmetrically arranged at both ends of the connecting column and are tangent to the outer circle of the pipe clamp body.

7. The assembled cover type pipe clamp according to claim 6, characterized in that: A clamping block is provided on one of the connecting walls, a sliding groove is provided in the clamping block, and a sliding block is provided on the other connecting wall, and the sliding block is provided corresponding to the sliding groove.

8. The assembled cover type pipe clamp according to claim 3, characterized in that: The assembly hole includes a first orifice and a second orifice corresponding to the first orifice, the first orifice is located at an end of the clamping seat away from the pipe clamp body, and the second orifice is located at an end of the clamping seat away from the upper pipe clamp, and the extension direction width of the first orifice is greater than the extension direction width of the second orifice.

Citation Information

Patent Citations

  • Combined pipe clamp

    CN212107224U