Ultra-light floating bead silicon crystal plate coated pipeline

By adopting an ultra-lightweight drift bead silicon crystal panel cladding structure on the pipeline, combined with the design of the fixed adhesive layer, the adhesion inner layer and the connecting snap bar, the problems of unstable, cumbersome installation and disassembly damage on the pipeline are solved, achieving more efficient and safer installation and reuse.

CN222911008UActive Publication Date: 2025-05-27SHANDONG MCKINUO SECURITY TECH CO LTD
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Patent Information

Application Number
CN202421923096.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-05-27
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing silicon crystal panels are not stable enough when installed outside the pipeline, the splicing and installation are cumbersome, and they are easily damaged and cannot be reused after disassembly.

Method used

The pipe is covered with ultra-lightweight drift bead silicon crystal panels. By uniformly applying a fixed adhesive layer on the outer side of the main pipe body, and an attached inner layer and stable clamp strip are provided on the sides of the silicon crystal outer plate. The structure of the connecting snap strip and the movable socket groove is used for fixed splicing and splicing installation and disassembly.

Benefits of technology

Improves the stability of the pipe, simplifies the installation and disassembly process, ensures the reusable capacity of silicon crystal panels, and improves installation efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222911008U_ABST
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Abstract

The utility model discloses an ultra-light floating bead silicon crystal plate coated pipeline, which relates to the field of pipelines and comprises a main pipeline body, silicon crystal outer plates are symmetrically arranged on the outer side edge of the main pipeline body, a smooth surface inner layer is fixedly arranged on the inner side edge of the main pipeline body, and a fixed bonding layer is uniformly coated on the outer side edge of the main pipeline body. One side edge of the silicon crystal outer plate is in butt joint with an adhesion inner layer, clamping groove channels are evenly formed in one side edge of the silicon crystal outer plate, stable clamping strips are evenly and fixedly arranged on one side edge of the adhesion inner layer, side matching grooves are horizontally and symmetrically formed in the two side edges of the silicon crystal outer plate, and positioning buckle grooves are evenly formed in the inner side edges of the side matching grooves. Connecting buckle strips are horizontally connected to the inner side edges of the side matching grooves in a clamped mode, a splicing buckle connecting structure is adopted so that installation and splicing can be more convenient and efficient, and meanwhile due to the layered structure, the silicon crystal plate can be repeatedly installed and used after being disassembled.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipelines, in particular to a pipeline coated with ultra-light cenosphere silicon crystal plates. Background Technique

[0002] A pipeline is a device composed of pipes, pipe connectors, valves, etc. connected together for transporting gases, liquids or fluids with solid particles. Usually, after the fluid is pressurized by a blower, compressor, pump, boiler, etc., it flows from the high-pressure part of the pipeline to the low-pressure part, or it can also be transported by the pressure or gravity of the fluid itself. Pipelines are widely used, mainly in water supply, drainage, heating, gas supply, long-distance transportation of oil and natural gas, agricultural irrigation, hydraulic engineering and various industrial installations. Silicon crystal is the crystal of silicon, including polysilicon and monocrystalline silicon, which has different properties in different directions and is a good semiconductor material.

[0003] When the current silicon crystal plates are installed outside the pipeline for use, since they are installed by means of a socket connection operation of an integrated pipe body structure, the connection after socketing is not stable enough, resulting in unstable use of the pipeline. At the same time, the splicing and installation structure requires a variety of fittings to be installed with the assistance of special tools, making the splicing and installation rather cumbersome and affecting the installation and use. At the same time, damage will occur after disassembly and they cannot be reused. Content of the Utility Model

[0004] The purpose of the utility model is to provide a pipeline coated with ultra-light cenosphere silicon crystal plates to solve the problems raised in the above background technique, that is, when the current silicon crystal plates are installed outside the pipeline for use, since they are installed by means of a socket connection operation of an integrated pipe body structure, the connection after socketing is not stable enough, resulting in unstable use of the pipeline. At the same time, the splicing and installation structure requires a variety of fittings to be installed with the assistance of special tools, making the splicing and installation rather cumbersome and affecting the installation and use. At the same time, damage will occur after disassembly and they cannot be reused.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A super-lightweight floating bead silicon crystal plate-coated pipeline comprises a main pipeline body, the outer side edge of the main pipeline body is symmetrically provided with a silicon crystal outer plate, the inner side edge of the main pipeline body is fixedly provided with a smooth inner layer, the outer side edge of the main pipeline body is evenly coated with a fixed adhesive layer, one side edge of the silicon crystal outer plate is butted with an attached inner layer, one side edge of the silicon crystal outer plate is evenly provided with a clamping groove, one side edge of the attached inner layer is evenly fixedly provided with a stabilizing clamping strip, both sides of the silicon crystal outer plate are horizontally symmetrically provided with side matching grooves, the inner side edges of the side matching grooves are evenly provided with positioning buckle grooves, the inner side edges of the side matching grooves are horizontally clamped with connecting buckle strips, both sides of the connecting buckle strip are symmetrically and evenly provided with movable sleeve grooves, the inner side edges of the movable sleeve grooves are horizontally plugged with a plug rod, the inner side edges of the connecting buckle strips are evenly provided with end toggle grooves, and the inner side edges of the end toggle grooves are clamped with toggle blocks.

[0007] As a preferred embodiment of the present utility model: the silicon crystal outer panel is made of ultra-lightweight floating bead silicon crystal panel material, and there are two silicon crystal outer panels, which are symmetrically wrapped around each other and arranged on the outer side of the main pipe body, and the side edges of the two silicon crystal outer panels are arranged to be butt-jointed with each other.

[0008] As a preferred embodiment of the utility model: the smooth inner layer is made of corrosion-resistant smooth plastic material, the fixed adhesive layer is made of high-strength glue material, and the fixed adhesive layer is evenly painted on the outer side of the main pipe body.

[0009] As a preferred embodiment of the utility model: the attached inner layer is made of a rough surface material on the side away from the silicon crystal outer plate, and the attached inner layers are all butted and arranged on one side of the silicon crystal outer plate, and the rough surface of the attached inner layer is fixedly bonded to the side position of the fixed bonding layer.

[0010] As a preferred embodiment of the present utility model: there are multiple clamping grooves, and the multiple clamping grooves are arranged in parallel and equidistantly with each other, the two ends of the multiple clamping grooves penetrate the two sides of the silicon crystal outer plate and extend to the outside to form an opening, the number of stable clamping strips is set consistently with the number of clamping grooves, and the stable clamping strips are horizontally clamped one by one on the inner side of the clamping groove, and the two ends of the side matching grooves horizontally penetrate the two sides of the silicon crystal outer plate and extend to the outside to form an opening.

[0011] As a preferred embodiment of the present utility model: the positioning buckle grooves are evenly arranged in a straight line and horizontally equidistantly arranged on the inner midline position of the side matching groove, and the cross-section of the side matching groove is T-shaped, the cross-section of the connecting buckle strip is I-shaped, and the two side edges of the connecting buckle strip are horizontally clamped on the inner sides of adjacent side matching grooves, the movable sleeve grooves are evenly arranged in a straight line, and the open ends of the movable sleeve grooves are docked on the open ends of the positioning buckle grooves, one end of the plug-in rod extends and is plugged in on the inner sides of the corresponding positioning buckle grooves, the end toggle grooves are all through-type opened on the sides of the movable sleeve grooves to maintain connection, and the clamping end of the toggle block is fixedly connected to one end of the side of the plug-in rod.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] The utility model evenly applies a fixed adhesive layer to the outer side of the main pipe body, and then clamps and sets the attached inner layer at the position of the clamping groove through the stable clamping strip on the side, so that the attached inner layer is installed and set at the side position of the silicon crystal outer plate, and the two silicon crystal outer plates are wrapped and set on the outer side of the main pipe body, and the attached inner layer on the inner side is fixedly bonded and set on the outer side of the main pipe body, so that the two side edges of the silicon crystal outer plates are butted against each other, and the connecting buckle strip is horizontally plugged and set inside the side matching groove, so that the two silicon crystal outer plates are fixedly spliced ​​and installed, and then the corresponding toggle block is toggled to drive the plug rod to move along the movable sleeve groove, so that the plug rod One end extends from the opening of the movable sleeve groove, so that the extended end is inserted and fixed in the corresponding positioning buckle groove, which effectively prevents the connecting buckle strip from sliding out of the side matching groove. When the main pipe body is in use, the smooth inner layer inside prevents adhesion. When the silicon crystal outer panel needs to be disassembled and reused, the silicon crystal outer panel is removed and away from the attached inner layer. With the padding of the attached inner layer, the disassembly of the silicon crystal outer panel will not cause tearing and affect subsequent use. The connection structure of the splicing buckle makes the installation and splicing more convenient and efficient. At the same time, the layered structure allows the silicon crystal panel to be reinstalled and used after disassembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Other features, objects and advantages of the present invention will become more apparent by reading the detailed description of non-limiting embodiments with reference to the following drawings:

[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of a pipeline coated with an ultra-light floating bead silicon crystal plate;

[0016] Figure 2 It is a structural schematic diagram of the side view cross-section connection details of the main pipe body of an ultra-lightweight floating bead silicon crystal plate-coated pipeline;

[0017] Figure 3 It is a structural schematic diagram of the side view cross-section connection details of the silicon crystal outer plate of an ultra-lightweight floating bead silicon crystal plate-coated pipeline;

[0018] Figure 4 It is a structural schematic diagram of the front view cross-section connection details of the silicon crystal outer plate of a pipeline covered with an ultra-light floating bead silicon crystal plate;

[0019] Figure 5 It is a schematic diagram of the structure of the top view of the cross-section connection details of a connection buckle strip of an ultra-lightweight floating bead silicon crystal plate-coated pipeline;

[0020] Figure 6 This is a structural schematic diagram of the side view and cross-sectional connection details of a connection buckle strip of an ultra-lightweight floating bead silicon crystal plate-coated pipeline.

[0021] In the figure: 1. main pipe body; 2. silicon crystal outer plate; 3. smooth inner layer; 4. fixed adhesive layer; 5. attached inner layer; 6. snap-fit ​​groove; 7. stabilizing clip strip; 8. side matching groove; 9. positioning buckle groove; 10. connecting buckle strip; 11. movable sleeve groove; 12. plug-in rod; 13. end toggle groove; 14. toggle block. DETAILED DESCRIPTION

[0022] See also Figure 1-2 In an embodiment of the utility model, an ultra-light floating bead silicon crystal plate-coated pipeline comprises a main pipeline body 1, a silicon crystal outer plate 2 is symmetrically arranged on the outer side of the main pipeline body 1, the silicon crystal outer plate 2 is made of ultra-light floating bead silicon crystal plate material, and there are two silicon crystal outer plates 2, the two silicon crystal outer plates 2 are symmetrically wrapped around each other and arranged on the outer side of the main pipeline body 1, the side edges of the two silicon crystal outer plates 2 are arranged in a butt-jointed manner with each other, a smooth inner layer 3 is fixedly arranged on the inner side of the main pipeline body 1, and a fixed adhesive layer 4 is evenly coated on the outer side of the main pipeline body 1, the smooth inner layer 3 is made of corrosion-resistant smooth plastic material, the fixed adhesive layer 4 is made of high-strength glue material, and the fixed adhesive layer 4 is evenly coated on the outer side of the main pipeline body 1;

[0023] See also Figure 3-6In the embodiment of the utility model, an ultra-light floating bead silicon crystal plate coated pipeline is provided, wherein one side edge of the silicon crystal outer plate 2 is butt-jointed with an attached inner layer 5, the attached inner layer 5 is made of a rough surface material and arranged on the side edge away from the silicon crystal outer plate 2, and the attached inner layer 5 is butt-jointed and arranged on one side edge of the silicon crystal outer plate 2, the rough surface of the attached inner layer 5 is fixedly bonded and arranged on the side edge of the fixed bonding layer 4, one side edge of the silicon crystal outer plate 2 is evenly provided with a clamping groove 6, one side edge of the attached inner layer 5 is evenly fixedly provided with a stabilizing clamping strip 7, and the silicon crystal outer plate 2 Side matching grooves 8 are horizontally and symmetrically opened on both sides, the number of the clamping grooves 6 is multiple, and the multiple clamping grooves 6 are arranged in parallel and equidistant from each other, and the two ends of the multiple clamping grooves 6 penetrate the two sides of the silicon crystal outer plate 2 and extend to the outside to form an opening, the number of stable clamping strips 7 is consistent with the number of clamping grooves 6, and the stable clamping strips 7 are horizontally clamped and set on the inner side of the clamping groove 6 in a one-to-one correspondence, and the two ends of the side matching grooves 8 horizontally penetrate the two sides of the silicon crystal outer plate 2 and extend to the outside to form an opening, and the inner side of the side matching grooves 8 is evenly opened. A positioning buckle groove 9 is provided, and a connecting buckle strip 10 is horizontally connected to the inner side of the side matching groove 8, and movable sleeve grooves 11 are symmetrically and evenly opened on both sides of the connecting buckle strip 10, and a plug-in rod 12 is horizontally inserted into the inner side of the movable sleeve groove 11, and an end toggle groove 13 is evenly opened on the inner side of the connecting buckle strip 10, and a toggle block 14 is clamped on the inner side of the end toggle groove 13. The positioning buckle grooves 9 are evenly arranged in a straight line horizontally and equidistantly at the inner midline position of the side matching groove 8, and the cross-section of the side matching groove 8 is T-shaped, and the connecting buckle strip 1 0 is set in an I-shaped cross-section, and the two side edges of the connecting buckle strip 10 are horizontally snap-fitted on the inner sides of the adjacent side matching grooves 8, the movable sleeve grooves 11 are arranged equidistantly in a straight line, and the open end of the movable sleeve groove 11 is docked on the open end of the positioning buckle groove 9, one end of the plug-in rod 12 is extended and plugged on the inner side of the corresponding positioning buckle groove 9, and the end toggle grooves 13 are all through-type opened on the side of the movable sleeve groove 11 to maintain connection, and the snap-fit ​​end of the toggle block 14 is fixedly connected and set at one end of the side of the plug-in rod 12.

[0024] The working principle of the utility model is:

[0025] The fixed adhesive layer 4 is evenly applied to the outer side of the main pipe body 1, and then the attached inner layer 5 is clamped and arranged at the position of the clamping groove 6 through the stable clamping strip 7 on the side, so that the attached inner layer 5 is installed on the side of the silicon crystal outer plate 2, and the two silicon crystal outer plates 2 are wrapped and arranged on the outer side of the main pipe body 1, and are fixedly bonded and arranged on the outer side of the main pipe body 1 through the attached inner layer 5 on the inner side, so that the two sides of the silicon crystal outer plate 2 are butted against each other, and the connecting buckle strip 10 is horizontally inserted into the inner part of the side matching groove 8, so as to perform the fixed splicing and installation operation on the two silicon crystal outer plates 2. Then, after the corresponding toggle block 14 is toggled, the insertion rod 13 is driven to move along the movable socket groove 11, and one end of the insertion rod 13 extends out from the opening of the movable socket groove 11, so that the extended end is inserted into the corresponding positioning buckle groove 9 and fixed, effectively preventing the connecting buckle strip 10 from sliding out of the inner part of the side matching groove 8. With the support of the smooth inner layer 3 inside the main pipe body 1 during use, no adhesion will occur. When the silicon crystal outer plate 2 needs to be disassembled and reused, after the silicon crystal outer plate 2 is disassembled and moved away from the attached inner layer 5, under the cushioning of the attached inner layer 5, disassembling the silicon crystal outer plate 2 will not cause tearing and affect subsequent use.

[0026] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. An ultra-lightweight floating bead silicon crystal plate coated pipeline, comprising a main pipeline body (1), characterized in that: The outer side of the main pipe body (1) is symmetrically provided with a silicon crystal outer plate (2), the inner side of the main pipe body (1) is fixedly provided with a smooth inner layer (3), the outer side of the main pipe body (1) is evenly coated with a fixed adhesive layer (4), one side of the silicon crystal outer plate (2) is butted with an attached inner layer (5), one side of the silicon crystal outer plate (2) is evenly provided with a clamping groove (6), one side of the attached inner layer (5) is evenly fixedly provided with a stabilizing clamping strip (7), and both sides of the silicon crystal outer plate (2) are horizontally symmetrically provided with A side matching groove (8) is provided, and a positioning buckle groove (9) is evenly provided on the inner side edge of the side matching groove (8), a connecting buckle strip (10) is horizontally clamped on the inner side edge of the side matching groove (8), and movable sleeve grooves (11) are symmetrically and evenly provided on both sides of the connecting buckle strip (10), and a plug-in rod (12) is horizontally inserted into the inner side edge of the movable sleeve groove (11), and an end toggle groove (13) is evenly provided on the inner side edge of the connecting buckle strip (10), and a toggle block (14) is clamped on the inner side edge of the end toggle groove (13).

2. The ultra-lightweight floating bead silicon crystal plate coated pipeline according to claim 1 is characterized in that: The silicon crystal outer plate (2) is made of ultra-lightweight floating bead silicon crystal plate material, and there are two silicon crystal outer plates (2). The two silicon crystal outer plates (2) are symmetrically wrapped around each other and arranged on the outer side of the main pipe body (1), and the side edges of the two silicon crystal outer plates (2) are arranged to be butt-jointed with each other.

3. The ultra-lightweight floating bead silicon crystal plate coated pipeline according to claim 1 is characterized in that: The smooth inner layer (3) is made of corrosion-resistant smooth plastic material, the fixed adhesive layer (4) is made of high-strength adhesive material, and the fixed adhesive layer (4) is evenly brushed on the outer side of the main pipe body (1).

4. The ultra-lightweight floating bead silicon crystal plate coated pipeline according to claim 1 is characterized in that: The attachment inner layer (5) is made of a rough surface material and arranged on a side away from the silicon crystal outer plate (2), and the attachment inner layer (5) is butt-jointedly arranged on a side of the silicon crystal outer plate (2), and the rough surface of the attachment inner layer (5) is fixedly bonded to a side of the fixed bonding layer (4).

5. The ultra-lightweight floating bead silicon crystal plate coated pipeline according to claim 1 is characterized in that: The number of the clamping grooves (6) is multiple, and the multiple clamping grooves (6) are arranged in parallel and equidistant from each other. The two ends of the multiple clamping grooves (6) penetrate the two sides of the silicon crystal outer plate (2) and extend to the outside to form an opening. The number of the stabilizing clamping strips (7) is arranged to be consistent with the number of the clamping grooves (6), and the stabilizing clamping strips (7) are all horizontally clamped and arranged on the inner side of the clamping grooves (6) in a one-to-one correspondence. The two ends of the side matching grooves (8) penetrate the two sides of the silicon crystal outer plate (2) horizontally and extend to the outside to form an opening.

6. The ultra-lightweight floating bead silicon crystal plate coated pipeline according to claim 1 is characterized in that: The positioning buckle grooves (9) are evenly arranged in a straight line and are arranged at equal intervals on the inner side center line of the side matching groove (8), and the cross section of the side matching groove (8) is arranged in a T-shape. The cross section of the connecting buckle strip (10) is arranged in an I-shape, and the two side edges of the connecting buckle strip (10) are horizontally clamped and arranged on the inner side edges of adjacent side matching grooves (8). The movable sleeve grooves (11) are evenly arranged in a straight line and are arranged at equal intervals, and the open ends of the movable sleeve grooves (11) are butt-jointed and arranged on the open ends of the positioning buckle grooves (9). One end of the plug-in rod (12) is extended and plug-connected to the inner side edge of the corresponding positioning buckle groove (9). The end toggle grooves (13) are all through-opened on the side edges of the movable sleeve grooves (11) to maintain connection, and the clamping end of the toggle block (14) is fixedly connected and arranged at one end of the side edge of the plug-in rod (12).