Novel energy-saving composite pipe

By combining transparent pipes with spiral diversion plates and LED strip fixing pipes, the problem of single function and poor aesthetic effect of composite pipes is solved, realizing the switching between three-dimensional water flow and lighting effects, and improving the aesthetics and ease of operation.

CN223595404UActive Publication Date: 2025-11-25CHINA RAILWAY NO 3 GRP CO LTD +1
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Patent Information

Application Number
CN202520248907.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-11-25
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing composite pipes have limited design, material selection, and functionality, resulting in resource waste and poor visual and aesthetic effects.

Method used

The design combines transparent pipes, spiral diversion plates, and LED strip fixing tubes to achieve switching between spiral and vertical water flow, which, combined with lighting effects, enhances the visual appeal.

Benefits of technology

It displays a three-dimensional flowing water effect, enhancing visual appeal, and allows for convenient switching of water flow states through water flow control, further enhancing the aesthetic effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of composite pipes, and particularly relates to a novel energy-saving composite pipeline which is characterized by comprising a transparent pipeline spiral drainage plate, a lamp belt fixing pipe and a lamp belt, the spiral drainage plate is fixedly installed on the inner wall face of the transparent pipeline, the lamp belt fixing pipe is arranged in the center of the transparent pipeline, and the lamp belt is arranged in the lamp belt fixing pipe. The diameter of the circumference where the inner side face of the spiral drainage plate is located is larger than the outer diameter of the lamp strip fixing pipe. Compared with the prior art, the three-dimensional water flowing effect is shown, the two different drainage states of spiral water flowing and vertical water flowing can be switched back and forth, and compared with the prior art, the effect of improving the visual ornamental value of the pipeline is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of composite pipe, in particular to a novel energy-saving composite pipe. BACKGROUND

[0002] With the acceleration of industrialization and urbanization, the requirements for pipe materials are increasingly diversified, including high strength, corrosion resistance, lightweight, easy installation and maintenance, etc. Composite pipe as a product that can meet these requirements is widely used in various fields such as construction engineering and environmental protection engineering. However, the design and application of existing composite pipes are relatively single, the material selection is single, and they are only used for drainage, have few functions, waste resources, poor visual and aesthetic effect, etc. SUMMARY

[0003] Therefore, the utility model provides a novel energy-saving composite pipe to solve or at least alleviate the above problems in the prior art.

[0004] In order to achieve the foregoing purpose, the utility model provides a novel energy-saving composite pipe, which comprises: a transparent pipe, a spiral drainage plate, a lamp strip fixing pipe and a lamp strip; the spiral drainage plate is fixedly installed on the inner wall surface of the transparent pipe, the lamp strip fixing pipe is arranged at the center of the transparent pipe, the lamp strip is arranged in the lamp strip fixing pipe, and the diameter of the circle passing through the inner side surface of the spiral drainage plate is greater than the outer diameter of the lamp strip fixing pipe.

[0005] In the novel energy-saving composite pipe as described above, the top of the transparent pipe is fixedly connected with a ring-shaped supporting plate, a ring-shaped push plate is arranged above the ring-shaped supporting plate, a ring-shaped limiting plate is arranged above the ring-shaped push plate, the outer diameter of the ring-shaped limiting plate is the same as the outer diameter of the ring-shaped supporting plate, the inner diameter of the ring-shaped push plate is greater than the inner diameter of the ring-shaped limiting plate, a water intercepting plate is slidably installed above the ring-shaped limiting plate, the water intercepting plates are uniformly distributed in the circumferential direction of the ring-shaped limiting plate, a top cover is arranged above the water intercepting plates, the bottom end of the top cover is sleeved on the outer surface of the ring-shaped supporting plate, the top cover is recessed in the middle and protruded on both sides, an inner circle inlet and an outer circle inlet are arranged in the recessed part of the top cover, the inner circle inlet is arranged at the center of the top cover, and the outer circle inlets are uniformly distributed around the inner circle inlet.

[0006] In the novel energy-saving composite pipe as described above, the top cover and the ring-shaped supporting plate are fixedly connected, the ring-shaped limiting plate is fixedly connected to the inner surface of the top cover, the outer diameter of the ring-shaped push plate is attached to the inner surface of the top cover, and the top surface of the water intercepting plate is attached to the inner top surface of the top cover.

[0007] In the new energy-saving composite pipeline as described above, optionally, the water stop plate comprises a water leakage hole, a first limiting rod and a second limiting rod, the water leakage hole is arranged at the center of the water stop plate, the diameter of the water leakage hole is consistent with the diameter of the inlet of the outer circle, the first limiting rod and the second limiting rod are fixedly connected to the two ends of the water stop plate, the first limiting rod and the second limiting rod are arranged at the bottom of the water stop plate, a strip-shaped groove is arranged on the annular limiting plate, the strip-shaped grooves are uniformly distributed along the circumferential direction of the limiting plate, a first limiting groove is arranged on the annular limiting plate, the first limiting grooves are uniformly distributed along the circumferential direction of the limiting plate, the first limiting rod penetrates the first limiting groove and the strip-shaped groove along the length direction, and the second limiting rod penetrates the first limiting groove along the length direction.

[0008] In the new energy-saving composite pipeline as described above, optionally, a connecting rod is arranged at the center of the annular push plate, and the connecting rods are uniformly distributed along the circumferential direction of the annular push plate, and one end of the connecting rod close to the center of the annular push plate is fixedly connected to the top end of the lamp strip fixing pipe.

[0009] In the new energy-saving composite pipeline as described above, optionally, a sleeve is arranged at the bottom of the lamp strip fixing pipe, the sleeve is sleeved on the outer surface of the lamp strip fixing pipe, a drainage tray is fixedly connected to the middle of the sleeve, a drainage bin is sleeved on the outer surface of the drainage tray, the inner wall of the drainage bin is consistent with the outer diameter of the drainage tray, a second limiting groove is arranged at the center of the bottom of the drainage bin, a limiting block one is slidably connected in the second limiting groove, and the limiting block one is fixedly connected to the outer surface of the bottom of the sleeve.

[0010] In the new energy-saving composite pipeline as described above, optionally, a spiral groove is arranged at the bottom of the lamp strip fixing pipe, a limiting block two is fixedly connected to the inner surface of the top of the sleeve, the limiting block two is matched with the spiral groove, a spring is arranged between the bottom of the drainage tray and the drainage bin, the inner surface of the top of the drainage bin is sleeved on the bottom of the transparent pipeline, and a drainage port is arranged on the outer surface of the drainage bin.

[0011] In the new energy-saving composite pipeline as described above, optionally, the drainage ports are arranged in two rows, and the number of the drainage ports in the second row is twice that of the drainage ports in the first row.

[0012] The new energy-saving composite pipeline can display a three-dimensional water flowing effect by the cooperation of the transparent pipeline, the spiral drainage plate and the rotating lamp strip assembly, the visual ornamental effect of the pipeline is improved, and the visual aesthetic effect is further improved by switching between the spiral water flowing state and the vertical water flowing state. BRIEF DESCRIPTION OF DRAWINGS

[0013] The disclosure of the present application will be more apparent with reference to the drawings. It should be understood that these drawings are only for illustrative purposes, and are not intended to limit the scope of protection of the present application. In the drawings:

[0014] Figure 1 It is a schematic diagram of the overall external contour structure of the present application.

[0015] Figure 2 It is a schematic diagram of the internal structure of the present application.

[0016] Figure 3 It is a schematic diagram of the present application Figure 2 Schematic diagram from another perspective.

[0017] Figure 4 It is an exploded view of the lamp strip fixing pipe and the top assembly of the present application.

[0018] Figure 5 It is a schematic diagram of the internal structure of the bottom drainage bin of the present application.

[0019] Figure 6 It is a sectional view of the bottom drainage bin of the present application.

[0020] Reference signs: 1 - transparent pipe; 2 - spiral drainage plate; 3 - top cover; 3.1 - outer circle inlet; 3.2 - inner circle inlet; 4 - water intercepting plate; 4.1 - water leakage hole; 4.2 - first limiting rod; 4.3 - second limiting rod; 5 - annular limiting plate; 5.1 - first limiting groove; 6 - lamp strip fixing pipe; 6.1 - annular push plate; 6.2 - strip-shaped groove; 6.3 - connecting rod; 6.5 - spiral groove; 7 - drainage bin; 7.1 - drainage opening; 7.2 - second limiting groove; 8 - drainage tray; 8.1 - sleeve; 8.2 - limiting block one; 8.3 - limiting block two; 9 - spring; 10 - annular supporting plate. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present application will be described clearly and completely below. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0022] As Figures 1 to 6 shown, a typical embodiment of the present application provides a novel energy-saving composite pipe, which comprises a transparent pipe 1, a spiral drainage plate 2, a lamp strip fixing pipe 6 and a lamp strip. The spiral drainage plate 2 is fixedly installed on the inner wall surface of the transparent pipe 1, the lamp strip fixing pipe 6 is arranged at the center of the transparent pipe 1, the lamp strip is arranged inside the lamp strip fixing pipe 6, and the diameter of the circumference where the inner side surface of the spiral drainage plate 2 is located is greater than the outer diameter of the lamp strip fixing pipe 6.

[0023] In the embodiment, when the water flow enters the transparent pipeline 1, the spiral guide plate 2 guides the water flow to flow along the spiral channel, and the water flow not entering the spiral guide plate 2 flows vertically in the middle area. The spiral water flow and the vertical water flow can be observed from the outside, and the light of the lamp in the middle lamp strip fixing tube 6 is reflected, so that the visual ornamental effect is achieved.

[0024] The transparent pipeline 1 is fixedly connected with a ring-shaped supporting plate 10 at the top. An annular push plate 6.1 is arranged above the ring-shaped supporting plate 10. An annular limiting plate 5 is arranged above the annular push plate 6.1. The outer diameter of the annular limiting plate 5 is the same as the outer diameter of the ring-shaped supporting plate 10. The inner diameter of the annular push plate 6.1 is larger than the inner diameter of the annular limiting plate 5. A water cutting plate 4 is slidably arranged above the annular limiting plate 5. The water cutting plate 4 is evenly distributed along the circumferential direction of the annular limiting plate 5. A top cover 3 is arranged above the water cutting plate 4. The bottom end of the top cover 3 is sleeved on the outer surface of the ring-shaped supporting plate 10. The top cover 3 is concave in the middle and convex on both sides. An inner circular inlet 3.2 and an outer circular inlet 3.1 are arranged in the concave middle of the top cover 3. The inner circular inlet 3.2 is arranged at the center of the top cover 3. The outer circular inlet 3.1 is evenly distributed around the inner circular inlet 3.2.

[0025] In the embodiment, the water flow flows into the transparent pipeline 1 through the outer circular inlet 3.1 and the inner circular inlet 3.2 of the top cover above. The outer circular inlet 3.1 is arranged above the spiral guide plate 2. The inner circular inlet 3.2 is arranged above the central area of the spiral guide plate. The water flow is more easily gathered to the center due to the concave structure of the middle of the top cover.

[0026] The top cover 3 and the ring-shaped supporting plate 10 are fixedly connected. The annular limiting plate 5 is fixedly connected to the inner surface of the top cover 3. The outer diameter of the annular push plate 6.1 is attached to the inner surface of the top cover 3. The top surface of the water cutting plate 4 is attached to the inner top surface of the top cover 3.

[0027] In the embodiment, the annular limiting plate 5 is fixed to the inner wall surface of the top cover 3, so that a cavity is formed between the top cover 3 and the annular limiting plate 5. A cavity is also formed between the annular limiting plate 5 and the ring-shaped supporting plate 10. The water cutting plate 4 and the annular push plate 6.1 are arranged in the two cavities respectively, so that the water cutting plate 4 and the annular push plate 6.1 can move or rotate more stably in the cavities.

[0028] The water intercepting plate 4 comprises a water leakage hole 4.1, a first limiting rod 4.2 and a second limiting rod 4.3, the water leakage hole 4.1 is arranged at the center of the water intercepting plate 4, the diameter of the water leakage hole 4.1 is consistent with the diameter of the outer circular inlet 3.1, the first limiting rod 4.2 and the second limiting rod 4.3 are fixedly connected to the two ends of the water intercepting plate 4 respectively, the first limiting rod 4.2 and the second limiting rod 4.3 are arranged at the bottom of the water intercepting plate 4, a strip-shaped groove 6.2 is arranged on the annular push plate 6.1, the strip-shaped grooves 6.2 are evenly distributed along the circumferential direction of the limiting plate, a first limiting groove 5.1 is arranged on the annular limiting plate 5, the first limiting grooves 5.1 are evenly distributed along the circumferential direction of the limiting plate, the first limiting rod 4.2 penetrates the first limiting groove 5.1 and the strip-shaped groove 6.2 along the length direction, and the second limiting rod 4.3 penetrates the first limiting groove 5.1 along the length direction.

[0029] In the embodiment, when the annular push plate 6.1 rotates, the strip-shaped grooves on the annular push plate 6.1 push the first limiting rod 4.2 at the bottom of the water intercepting plate 4 to move along the first limiting groove 5.1 along the length direction, so as to drive the water intercepting plate 4 to slide towards the center of the annular limiting plate 5 or the outer diameter direction of the annular limiting plate 5;

[0030] When all the water intercepting plates 4 slide to the innermost position towards the center of the annular limiting plate 5, the water intercepting plates 4 just block the inner circular inlet 3.2 of the top cover 3, so that the water flow cannot enter the inside of the transparent pipeline 1 from the inner circular inlet 3.2, at this time, because the diameter of the water leakage hole 4.1 on the water intercepting plate 4 is consistent with the diameter of the outer circular inlet 3.1, the water flow can flow into the spiral flow guide plate in the transparent pipeline 1 from the outer circular inlet 3.1 along the water leakage hole 4.1, so as to form a spiral water flow;

[0031] When all the water intercepting plates 4 slide to the outermost position towards the outer diameter direction of the annular limiting plate 5, the water intercepting plates just block the outer circular inlet 3.1, at this time, the water flow can only enter the inside of the transparent pipeline 1 from the inner circular inlet 3.2, so as to form a vertical water flow, thereby achieving the effect of switching two kinds of water flow, and further improving the ornamental property.

[0032] The center of the annular push plate 6.1 is provided with a connecting rod 6.3, the connecting rods 6.3 are evenly distributed along the circumferential direction of the annular push plate 6.1, and one end of the connecting rod 6.3 close to the center of the annular push plate 6.1 is fixedly connected to the top end of the lamp strip fixing pipe 6.

[0033] In the embodiment, because the annular push plate 6.1 and the lamp strip fixing rod are fixedly connected through the connecting rod 6.3, when the lamp strip fixing pipe 6 rotates, the annular push plate 6.1 rotates.

[0034] The bottom of the lamp strip fixing pipe 6 is provided with a sleeve 8.1 which is sleeved on the outer surface of the lamp strip fixing pipe 6, a drainage tray 8 is fixedly connected in the middle of the sleeve 8.1, a drainage bin 7 is sleeved on the outer surface of the drainage tray 8, the inner wall of the drainage bin 7 and the outer diameter of the drainage tray 8 are consistent, a second limiting groove 7.2 is formed in the bottom center of the drainage bin 7, a limiting block one 8.2 is slidably connected in the second limiting groove 7.2, the limiting block one 8.2 is fixedly connected to the outer surface of the bottom of the sleeve 8.1, and the drainage tray 8 can stably slide in the drainage bin 7.

[0035] The bottom of the lamp strip fixing pipe 6 is provided with a spiral groove 6.5, the top inner surface of the sleeve 8.1 is fixedly connected with a limiting block two 8.3, the limiting block two 8.3 is matched with the spiral groove 6.5, the spring 9 is arranged between the bottom of the drainage tray 8 and the drainage bin 7, the top inner surface of the drainage bin 7 is sleeved on the bottom of the transparent pipe 1, and the outer surface of the drainage bin 7 is provided with a drainage port 7.1.

[0036] In the embodiment, when the water flow flows to the bottom of the transparent pipe 1 and then to the drainage bin 7, the water flow flows to the drainage port 7.1 through the drainage tray 8, so as to open the transparent pipe 1, when the water flow is large, the drainage tray 8 is affected by gravity and slides downward while compressing the spring, at this time, the sleeve 8.1 on the drainage tray 8 slides downward, the limiting block two 8.3 on the top of the sleeve 8.1 slides downward, the limiting block two 8.3 drives the spiral groove 6.5 at the bottom of the lamp strip fixing pipe 6 to rotate, so that the lamp strip fixing pipe 6 rotates, and the annular push plate 6.1 at the top of the lamp strip fixing pipe 6 rotates, the water flow is switched from vertical water flow to spiral water flow, so that the switching between the vertical water flow and the spiral water flow can be controlled by controlling the size of the water flow, and the operation is more convenient.

[0037] The drainage ports 7.1 are arranged in two rows, and the number of the drainage ports 7.1 in the second row is twice that of the drainage ports 7.1 in the first row.

[0038] In the embodiment, when the drainage tray 8 is located below the first row of drainage ports 7.1, the water flow cannot be discharged in time due to the small number of the first row of drainage ports 7.1, and the accumulated water is discharged under the action of gravity, so that the pressure of the drainage tray increases, the drainage tray 8 is more easily compressed to slide downward, so as to drive the lamp strip fixing pipe 6 to rotate and switch the water flow state, when the drainage tray 8 compresses the spring and is located below the second row of drainage ports 7.1, the drainage performance is better due to the large number of the second row of drainage ports 7.1, the accumulated water can be discharged more easily, and the pressure of the drainage tray 8 becomes smaller, at this time, the pressure on the drainage tray 8 is insufficient to compress the spring, the drainage tray slides upward under the action of the spring, so that the lamp strip fixing pipe 6 rotates in the opposite direction, so that the water flow is switched again, so that the automatic switching of the water flow state can be realized under the same water flow, and the convenience of the operation of the equipment is further improved.

[0039] The technical scope of the present application is not limited to the above description, and those skilled in the art can make various modifications and changes to the above embodiments without departing from the technical concept of the present application, and these modifications and changes should all belong within the scope of the present application.

Claims

1. A new energy saving composite pipe characterized in that, The utility model relates to a transparent pipeline (1), spiral drainage plate (2), lamp strip fixing pipe (6) and lamp strip, spiral drainage plate (2) fixed mounting is on the inner wall surface of transparent pipeline (1), lamp strip fixing pipe (6) sets up in the center of transparent pipeline (1), the inside of lamp strip fixing pipe (6) is provided with lamp strip, the diameter of the circumference of the inside of spiral drainage plate (2) is greater than the outer diameter of lamp strip fixing pipe (6).

2. A novel energy saving composite pipe as claimed in claim 1, wherein, The top of the transparent pipeline (1) is fixedly connected with an annular supporting plate (10), an annular push plate (6.1) is arranged above the annular supporting plate (10), an annular limiting plate (5) is arranged above the annular push plate (6.1), the outer diameter of the annular limiting plate (5) is the same as the outer diameter of the annular supporting plate (10), the inner diameter of the annular push plate (6.1) is larger than the inner diameter of the annular limiting plate (5), a water intercepting plate (4) is slidably arranged above the annular limiting plate (5), the water intercepting plate (4) is uniformly distributed along the circumferential direction of the annular limiting plate (5), a top cover (3) is arranged above the water intercepting plate (4), the bottom end of the top cover (3) is sleeved on the outer surface of the annular supporting plate (10), the top cover (3) is concave in the middle and convex on both sides, an inner circular inlet (3.2) and an outer circular inlet (3.1) are arranged in the concave part of the middle of the top cover (3), the inner circular inlet (3.2) is arranged at the center of the top cover (3), and the outer circular inlets (3.1) are uniformly distributed around the inner circular inlet (3.2).

3. A novel energy saving composite pipe as claimed in claim 2, wherein, The top cover (3) and the annular supporting plate (10) are fixedly connected, the annular limiting plate (5) is fixedly connected to the inner surface of the top cover (3), the outer surface of the annular push plate (6.1) is attached to the inner surface of the top cover (3), and the top surface of the water intercepting plate (4) is attached to the inner top surface of the top cover (3).

4. A novel energy saving composite pipe as claimed in claim 2, wherein, The water intercepting plate (4) comprises water leakage holes (4.1), first limiting rods (4.2) and second limiting rods (4.3), the water leakage holes (4.1) are arranged at the center of the water intercepting plate (4), the diameters of the water leakage holes (4.1) are the same as the diameters of the outer circular inlets (3.1), the first limiting rods (4.2) and the second limiting rods (4.3) are fixedly connected to the two ends of the water intercepting plate (4) that face outward, the first limiting rods (4.2) and the second limiting rods (4.3) are arranged at the bottom of the water intercepting plate (4), strip-shaped grooves (6.2) are arranged on the annular push plate (6.1) and are uniformly distributed along the circumferential direction of the limiting plate, first limiting grooves (5.1) are arranged on the annular limiting plate (5) and are uniformly distributed along the circumferential direction of the limiting plate, the first limiting rods (4.2) penetrate the first limiting grooves (5.1) and the strip-shaped grooves (6.2) along the length direction, and the second limiting rods (4.3) penetrate the first limiting grooves (5.1) along the length direction.

5. A novel energy saving composite pipe as claimed in claim 2, wherein, The annular push plate (6.1) is provided with a connecting rod (6.3) in the center, and the connecting rod (6.3) is uniformly distributed along the circumferential direction of the annular push plate (6.1), and one end of the connecting rod (6.3) close to the center of the annular push plate (6.1) is fixedly connected to the top end of the lamp strip fixing pipe (6).

6. A new energy saving composite pipe as claimed in claim 1, wherein, The bottom of the lamp strip fixing pipe (6) is provided with a sleeve (8.1), the sleeve (8.1) is sleeved on the outer surface of the lamp strip fixing pipe (6), the middle of the sleeve (8.1) is fixedly connected with a drainage tray (8), the outer surface of the drainage tray (8) is sleeved with a drainage bin (7), the inner wall of the drainage bin (7) and the outer diameter of the drainage tray (8) are consistent, the bottom center of the drainage bin (7) is provided with a second limiting groove (7.2), the second limiting groove (7.2) is slidably connected with a limiting block one (8.2), and the limiting block one (8.2) is fixedly connected to the outer surface of the bottom of the sleeve (8.1).

7. A novel energy saving composite pipe as claimed in claim 6, wherein, The bottom of the lamp strip fixing pipe (6) is provided with a spiral groove (6.5), the top inner surface of the sleeve (8.1) is fixedly connected with a limiting block two (8.3), the limiting block two (8.3) and the spiral groove (6.5) are matched, the bottom of the drainage tray (8) and the drainage bin (7) are provided with a spring (9), the top inner surface of the drainage bin (7) is sleeved on the bottom of the transparent pipe (1), and the outer surface of the drainage bin (7) is provided with a drainage port (7.1).

8. A novel energy saving composite pipe as claimed in claim 7, wherein, The drainage port (7.1) is provided as two rows, and the number of the drainage port (7.1) of the second row is twice that of the drainage port (7.1) of the first row.