Drain pipe with guide mounting structure

By designing a guide installation structure on the drain pipe and utilizing the cooperation of components such as mounting blocks, mounting shells, and sealing gaskets, the problem of misalignment during drain pipe installation was solved, achieving efficient guide installation and reducing time costs.

CN223498995UActive Publication Date: 2025-10-31HARBIN HUATENG MUNICIPAL GARDEN ENGINEERING CO LTD
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Patent Information

Application Number
CN202423085671.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-10-31
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

The lack of a guide structure during the installation of existing drainage pipes causes misalignment of the connection position, affecting normal operation and increasing time costs.

Method used

A drainage pipe with a guide installation structure has been designed, including components such as a mounting block, mounting shell, sealing gasket, installation structure, cylindrical groove, cylindrical rod, and spring. Through the cooperation of these components, the drainage pipe can be guided and installed.

Benefits of technology

It simplifies the installation process of drainage pipes, improves installation efficiency, avoids misalignment of the connection position, and reduces installation time and costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drain pipe with a guiding installation structure, which comprises a first drain pipe and a second drain pipe, the right side of the first drain pipe is movably connected with the left side of the second drain pipe, and the surface of the first drain pipe is fixedly connected with an installation block. The surface of the second drainage pipe is fixedly connected with a mounting shell used in cooperation with the mounting block, and the surface of the mounting block makes contact with an inner cavity of the mounting shell. Through cooperative use of the installation structure, the square installation block, the cylindrical groove, the cylindrical rod, the spring and the square installation groove, the problem that an existing guide installation structure is a structure used for guiding and assisting installation of equipment or parts is solved, the installation process can be simplified through guide installation of the drainage pipe, and the installation efficiency is improved; the problems that when an existing drainage pipe is installed, no guiding structure is used for assisting, the butt joint position of the drainage pipe may deviate, normal operation of the drainage pipe is affected, the installation time cost is easily increased due to the fact that guiding is not conducted during installation, and the existing drainage pipe is not provided with a component for guiding installation are solved.
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Description

Technical Field

[0001] This utility model belongs to the field of drainage pipe technology, and in particular relates to a drainage pipe with a guide installation structure. Background Technology

[0002] Drainage pipes are pipes used to transport fluids such as sewage and rainwater. They are widely used in construction, municipal engineering, and water conservancy projects. The main function of drainage pipes is to ensure the normal operation of drainage systems and reduce environmental pollution and water waste. In summary, the existing technology has the following problems: A guide installation structure is a structure used to guide and assist the installation of equipment or components. Guide installation of drainage pipes can simplify the installation process and improve installation efficiency. However, existing drainage pipes do not have a guide structure for assistance during installation, which may lead to misalignment of the drainage pipe connection position, affecting the normal operation of the drainage pipe. Moreover, the lack of a guide during installation can increase the time cost of installation. However, existing drainage pipes do not have a component for guide installation. Therefore, a drainage pipe with a guide installation structure is proposed to solve the above problems. Utility Model Content

[0003] To address the problems existing in the prior art, this utility model provides a drainage pipe with a guide installation structure, which has the advantage of guiding the installation of the drainage pipe. It solves the problem that the existing guide installation structure is a structure used to guide and assist the installation of equipment or components. Guided installation of drainage pipes can simplify the installation process and improve installation efficiency. However, the existing drainage pipes do not have a guide structure to assist in the installation, which may lead to the misalignment of the drainage pipe joint position, affecting the normal operation of the drainage pipe. Moreover, the lack of a guide during installation can increase the time cost of installation. However, the existing drainage pipes do not have a component for guiding the installation.

[0004] This utility model is implemented as follows: a drain pipe with a guide installation structure includes a first drain pipe and a second drain pipe. The right side of the first drain pipe is movably connected to the left side of the second drain pipe. An installation block is fixedly connected to the surface of the first drain pipe, and an installation shell that cooperates with the installation block is fixedly connected to the surface of the second drain pipe. The surface of the installation block contacts the inner cavity of the installation shell. Both the surface of the installation block and the inner cavity of the installation shell are provided with sealing gaskets. The sealing gaskets are made of rubber. A structural groove is opened inside the installation block, and an installation structure is provided in the inner cavity of the structural groove.

[0005] As a preferred embodiment of this utility model, the installation structure includes four installation blocks. The side of each installation block away from the first drain pipe passes through the structural groove and extends to the outer side of the inner cavity of the structural groove. A cylindrical groove is formed on the surface of each installation block. A cylindrical rod is movably connected to the inner cavity of the cylindrical groove. A spring is sleeved on the surface of the cylindrical rod. The surface of the spring is fixedly connected to the surface of the installation block. By setting up the installation structure, when the first drain pipe and the second drain pipe need to be connected, the installation structure has a limiting effect on the position of the first drain pipe and the second drain pipe.

[0006] In a preferred embodiment of this invention, the surface of the mounting block is movably connected to two movable rotating frames via a rotating shaft. The inner cavity of the structural groove is fixedly connected to four movable locking frames that cooperate with the movable rotating frames. The surface of the movable rotating frames is movably connected to the inner cavity of the movable locking frames. The surfaces of the cylindrical rod and the spring are both fixedly connected to the surface of the movable locking frames. By setting the movable rotating frames and the movable locking frames, when the mounting block moves, it will drive the movable rotating frames to rotate and move along the inner cavity of the movable locking frames via the rotating shaft. The cooperation of the movable locking frames and the movable rotating frames has a limiting effect on the movement position of the mounting block.

[0007] In a preferred embodiment of this invention, a pull column is fixedly connected to the left side of the mounting block, and a beveled rotating frame that works in conjunction with the pull column is movably connected to the inner cavity of the structural groove. The inner cavity of the beveled rotating frame is movably connected to the surface of the pull column, and the left side of the beveled rotating frame penetrates the structural groove and extends to the outer side of the inner cavity of the structural groove. By setting the pull column and the beveled rotating frame, when the beveled rotating frame rotates, it can generate a squeezing force on the pull column, and the pull column subjected to the squeezing force can drive the mounting block to move.

[0008] As a preferred embodiment of this utility model, a limiting ring is fixedly connected to the left side of the mounting block for use with the inclined rotating frame. The surface of the limiting ring is movably connected to the inner cavity of the inclined rotating frame. By setting the limiting ring, rotating the inclined rotating frame causes it to move along the surface of the limiting ring. The setting of the limiting ring has a limiting effect on the rotation position of the inclined rotating frame.

[0009] As a preferred embodiment of this utility model, the inner cavity of the mounting shell is provided with four mounting slots that cooperate with the mounting blocks. The surface of the mounting blocks contacts the inner cavity of the mounting slots. By providing mounting slots, when the mounting block is completely moved into the inner cavity of the mounting shell, the inclined rotating frame is released, and the restoring force generated by the spring returning to its shape will drive the mounting block to be inserted into the inner cavity of the mounting slot. The cooperation between the mounting blocks and the mounting slots has a limiting effect on the position of the mounting blocks.

[0010] As a preferred embodiment of this utility model, a plurality of guide shells are fixedly connected to the right side of the mounting block, and a plurality of guide rods that cooperate with the guide shells are fixedly connected to the left side of the mounting shells. The surface of the guide rods contacts the inner cavity of the guide shells. By setting the guide rods and guide shells, when the mounting block moves to the inner cavity of the mounting shell, the guide shells move to the surface of the guide rods. The cooperation between the guide rods and guide shells has a guiding effect on the movement position when the first drain pipe and the second drain pipe are connected.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] 1. This utility model solves the problem of existing guide installation structures being used to guide and assist the installation of equipment or components by setting up an installation structure, an installation block, a cylindrical groove, a cylindrical rod, a spring, and the installation groove in combination. Existing guide installation structures are structures used to guide and assist the installation of equipment or components. Drainage pipe guide installation can simplify the installation process and improve installation efficiency. However, existing drainage pipes do not have a guide structure to assist in installation, which may lead to the displacement of the drainage pipe connection position, affecting the normal operation of the drainage pipe. Moreover, the lack of a guide during installation can easily increase the time cost of installation. However, existing drainage pipes do not have a component for guide installation.

[0013] 2. This utility model, through the setting of the installation structure, when the column is pulled to move, it will drive the installation block to move into the inner cavity of the structural groove. When the installation block moves, it will drive the cylindrical groove to move along the surface of the cylindrical rod. At the same time, the force generated when the installation block moves causes the spring to undergo elastic deformation. The restoring force generated by the spring returning to its shape will drive the installation block to be locked into the inner cavity of the installation groove. The installation structure has a restrictive effect on the position of the first drain pipe and the second drain pipe. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural schematic diagram provided in an embodiment of the present utility model;

[0015] Figure 2 This is a three-dimensional schematic diagram of the connection between the mounting block and the mounting shell provided in an embodiment of the present invention;

[0016] Figure 3 This is a perspective view of the connection between the first drain pipe and the mounting block provided in an embodiment of the present invention;

[0017] Figure 4 This is a perspective sectional view of the mounting shell provided in this embodiment of the utility model;

[0018] Figure 5 This is a three-dimensional schematic diagram showing the connection of the mounting block, cylindrical groove, cylindrical rod, and spring provided in this embodiment of the utility model.

[0019] In the diagram: 1. First drain pipe; 2. Second drain pipe; 3. Mounting block; 4. Mounting shell; 5. Sealing gasket; 6. Structural groove; 7. Mounting structure; 701. Mounting block; 702. Cylindrical groove; 703. Cylindrical rod; 704. Spring; 8. Moving rotating frame; 9. Moving locking frame; 10. Pulling column; 11. Angled rotating frame; 12. Limiting ring; 13. Mounting square groove; 14. Guide shell; 15. Guide rod. Detailed Implementation

[0020] To further understand the invention content, features and effects of this utility model, the following embodiments are provided, and detailed descriptions are given in conjunction with the accompanying drawings.

[0021] The structure of this utility model will now be described in detail with reference to the accompanying drawings.

[0022] like Figures 1 to 5 As shown in the figure, the present invention provides a drain pipe with a guide installation structure, including a first drain pipe 1 and a second drain pipe 2. The right side of the first drain pipe 1 is movably connected to the left side of the second drain pipe 2. An installation block 3 is fixedly connected to the surface of the first drain pipe 1. An installation shell 4 that cooperates with the installation block 3 is fixedly connected to the surface of the second drain pipe 2. The surface of the installation block 3 is in contact with the inner cavity of the installation shell 4. A sealing gasket 5 is provided on both the surface of the installation block 3 and the inner cavity of the installation shell 4. The sealing gasket 5 is made of rubber. A structural groove 6 is opened inside the installation block 3. An installation structure 7 is provided in the inner cavity of the structural groove 6.

[0023] refer to Figure 5 The mounting structure 7 includes four mounting blocks 701. The side of the mounting block 701 away from the first drain pipe 1 passes through the structural groove 6 and extends to the outside of the inner cavity of the structural groove 6. A cylindrical groove 702 is opened on the surface of the mounting block 701. A cylindrical rod 703 is movably connected to the inner cavity of the cylindrical groove 702. A spring 704 is sleeved on the surface of the cylindrical rod 703. The surface of the spring 704 is fixedly connected to the surface of the mounting block 701.

[0024] The above solution is adopted: by setting up the installation structure 7, when the first drain pipe 1 and the second drain pipe 2 need to be connected, the installation structure 7 has a restrictive effect on the position of the first drain pipe 1 and the second drain pipe 2.

[0025] refer to Figure 4 The surface of the mounting block 701 is movably connected to two movable rotating frames 8 via a rotating shaft. The inner cavity of the structural groove 6 is fixedly connected to four movable card frames 9 that cooperate with the movable rotating frames 8. The surface of the movable rotating frame 8 is movably connected to the inner cavity of the movable card frame 9. The surfaces of the cylindrical rod 703 and the spring 704 are both fixedly connected to the surface of the movable card frame 9.

[0026] The above scheme is adopted: by setting the movable rotating frame 8 and the movable card frame 9, when the installation block 701 moves, it will drive the movable rotating frame 8 to rotate and move along the inner cavity of the movable card frame 9 through the rotating shaft. The combined use of the movable card frame 9 and the movable rotating frame 8 has a limiting effect on the movement position of the installation block 701.

[0027] refer to Figure 4 A pull column 10 is fixedly connected to the left side of the mounting block 701. A beveled rotating frame 11 that works with the pull column 10 is movably connected to the inner cavity of the structural groove 6. The inner cavity of the beveled rotating frame 11 is movably connected to the surface of the pull column 10. The left side of the beveled rotating frame 11 passes through the structural groove 6 and extends to the outside of the inner cavity of the structural groove 6.

[0028] Using the above solution: By setting up a pull column 10 and a beveled rotating frame 11, when the beveled rotating frame 11 rotates, it can generate a squeezing force on the pull column 10. The pull column 10, which is subjected to the squeezing force, can drive the installation block 701 to move.

[0029] refer to Figure 2 A limiting ring 12 is fixedly connected to the left side of the mounting block 3 and is used in conjunction with the inclined rotating frame 11. The surface of the limiting ring 12 is movably connected to the inner cavity of the inclined rotating frame 11.

[0030] The above solution is adopted: by setting a limiting ring 12, rotating the inclined frame 11 causes the inclined frame 11 to move along the surface of the limiting ring 12. The setting of the limiting ring 12 has a limiting effect on the rotation position of the inclined frame 11.

[0031] refer to Figure 2 The inner cavity of the mounting shell 4 is provided with four mounting slots 13 that cooperate with the mounting block 701, and the surface of the mounting block 701 contacts the inner cavity of the mounting slot 13.

[0032] Using the above scheme: By setting the mounting groove 13, when the mounting block 3 is completely moved into the inner cavity of the mounting shell 4, the inclined rotating frame 11 is released, and the restoring force generated by the spring 704 returning to its shape will drive the mounting block 701 to be inserted into the inner cavity of the mounting groove 13. The cooperation between the mounting block 701 and the mounting groove 13 has a limiting effect on the position of the mounting block 3.

[0033] refer to Figure 2 and Figure 3 Several guide shells 14 are fixedly connected to the right side of the mounting block 3, and several guide rods 15 that cooperate with the guide shells 14 are fixedly connected to the left side of the mounting shell 4. The surface of the guide rods 15 is in contact with the inner cavity of the guide shells 14.

[0034] The above scheme is adopted: by setting guide rod 15 and guide shell 14, when the mounting block 3 moves into the inner cavity of the mounting shell 4, the guide shell 14 moves to the surface of guide rod 15. The cooperation of guide rod 15 and guide shell 14 has a guiding effect on the movement position when the first drain pipe 1 and the second drain pipe 2 are connected.

[0035] The working principle of this utility model:

[0036] In use, when the drain pipe needs to be guided during installation, the user first rotates the inclined rotating frame 11, causing it to rotate along the surface of the limiting ring 12. When the inclined rotating frame 11 rotates, it exerts a compressive force on the pulling column 10. Under this compressive force, the pulling column 10 moves towards the side closer to the movable locking frame 9. As the pulling column 10 moves, it causes the mounting block 701 to move into the inner cavity of the structural groove 6. The movement of the mounting block 701 causes the cylindrical groove 702 to move along the surface of the cylindrical rod 703. Simultaneously, the force generated by the movement of the mounting block 701 causes the spring 704 to elastically deform. The movement of the mounting block 701 causes the two movable rotating frames 8 to move. When the movable rotating frames 8 move, the movable locking frame 9 engages with the movable rotating frames. The squeezing force generated by 8 will cause the two movable rotating frames 8 to rotate through the rotating shaft and move to the side away from each other. When the mounting block 701 is completely moved into the inner cavity of the structural groove 6, the mounting block 3 will be moved into the inner cavity of the mounting shell 4. At the same time, the mounting block 3 will drive the guide shell 14 to move to the surface of the guide rod 15. When the sealing gasket 5 on the surface of the mounting block 3 is in complete contact with the sealing gasket 5 in the inner cavity of the mounting shell 4, the inclined rotating frame 11 will be released. The restoring force generated by the spring 704 returning to its shape will drive the mounting block 701 to be inserted into the inner cavity of the mounting groove 13. The cooperation of the mounting block 701 and the mounting groove 13 has a limiting effect on the position of the mounting block 3, the mounting shell 4, the first drain pipe 1 and the second drain pipe 2. At this time, the drain pipe is completed in the guided installation.

[0037] In summary, this drainage pipe with a guide installation structure, through the coordinated use of installation structure 7, installation block 701, cylindrical groove 702, cylindrical rod 703, spring 704, and installation groove 13, solves the problem that existing guide installation structures are used to guide and assist in the installation of equipment or components. Drainage pipe guide installation can simplify the installation process and improve installation efficiency. Existing drainage pipes do not have a guide structure for assistance during installation, which may lead to misalignment of the drainage pipe connection position, affecting the normal operation of the drainage pipe. Moreover, the lack of a guide during installation can increase the time cost of installation. However, existing drainage pipes do not have a component for guide installation.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0039] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A drain pipe with a guide installation structure, comprising a first drain pipe (1) and a second drain pipe (2), characterized in that: The right side of the first drain pipe (1) is movably connected to the left side of the second drain pipe (2). The surface of the first drain pipe (1) is fixedly connected to an installation block (3). The surface of the second drain pipe (2) is fixedly connected to an installation shell (4) that works with the installation block (3). The surface of the installation block (3) is in contact with the inner cavity of the installation shell (4). Both the surface of the installation block (3) and the inner cavity of the installation shell (4) are provided with sealing gaskets (5). The sealing gaskets (5) are made of rubber. The interior of the installation block (3) is provided with a structural groove (6). The inner cavity of the structural groove (6) is provided with an installation structure (7).

2. A drain pipe with a guide installation structure as described in claim 1, characterized in that: The mounting structure (7) includes four mounting blocks (701). The side of the mounting block (701) away from the first drain pipe (1) passes through the structural groove (6) and extends to the outside of the inner cavity of the structural groove (6). A cylindrical groove (702) is opened on the surface of the mounting block (701). A cylindrical rod (703) is movably connected to the inner cavity of the cylindrical groove (702). A spring (704) is sleeved on the surface of the cylindrical rod (703). The surface of the spring (704) is fixedly connected to the surface of the mounting block (701).

3. A drain pipe with a guide installation structure as described in claim 2, characterized in that: The surface of the mounting block (701) is movably connected to two movable rotating frames (8) via a rotating shaft. The inner cavity of the structural groove (6) is fixedly connected to four movable card frames (9) that cooperate with the movable rotating frames (8). The surface of the movable rotating frame (8) is movably connected to the inner cavity of the movable card frame (9). The surfaces of the cylindrical rod (703) and the spring (704) are both fixedly connected to the surface of the movable card frame (9).

4. A drain pipe with a guide installation structure as described in claim 2, characterized in that: A pull column (10) is fixedly connected to the left side of the mounting block (701). A beveled rotating frame (11) that works with the pull column (10) is movably connected to the inner cavity of the structural groove (6). The inner cavity of the beveled rotating frame (11) is movably connected to the surface of the pull column (10). The left side of the beveled rotating frame (11) passes through the structural groove (6) and extends to the outside of the inner cavity of the structural groove (6).

5. A drain pipe with a guide installation structure as described in claim 4, characterized in that: The left side of the mounting block (3) is fixedly connected to a limiting ring (12) that works with the inclined rotating frame (11), and the surface of the limiting ring (12) is movably connected to the inner cavity of the inclined rotating frame (11).

6. A drain pipe with a guide installation structure as described in claim 2, characterized in that: The inner cavity of the mounting shell (4) is provided with four mounting slots (13) that cooperate with the mounting block (701), and the surface of the mounting block (701) is in contact with the inner cavity of the mounting slots (13).

7. A drain pipe with a guide installation structure as described in claim 1, characterized in that: The right side of the mounting block (3) is fixedly connected to several guide shells (14), and the left side of the mounting shell (4) is fixedly connected to several guide rods (15) that cooperate with the guide shells (14). The surface of the guide rods (15) is in contact with the inner cavity of the guide shells (14).