Aluminum felt division bar for stacking plastic pipes
By designing the main body of the aluminum spacer into a wavy structure, with a buffer felt and an adhesive layer inside and a waterproof layer and reinforcing ribs outside, the deformation problem of plastic pipes during stacking is solved, and the effects of anti-wear, anti-deformation and extended service life are achieved.
Patent Information
- Application Number
- CN202422761620.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Plastic pipes are easily deformed due to mutual squeezing when stacked, affecting quality inspection and transportation. Existing technology is difficult to effectively prevent this phenomenon.
The main body of the spacer is made of aluminum and is designed with a wavy structure. It is equipped with a buffer felt and an adhesive layer inside, a waterproof layer and reinforcing ribs outside, and a pressure-resistant layer to prevent direct contact with the plastic pipe and wear and deformation.
Effectively prevent extrusion deformation between plastic pipes, extend service life, reduce noise, and improve structural strength and waterproof performance.
Smart Images

Figure CN223328172U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of plastic pipe spacers, in particular to aluminum felt spacers for stacking plastic pipes. Background Art
[0002] Plastic pipes are generally made of synthetic resin, that is, polyester as raw material, with the addition of stabilizers, lubricants, plasticizers, etc., and are extruded in a pipe making machine using the "plastic" method. They are mainly used as piping for tap water supply systems in buildings, drainage, exhaust and sewage pipes, underground drainage systems, rainwater pipes, and wire threading pipes for wiring installation.
[0003] Plastic pipes need to be placed together after production. When placing, multiple plastic pipes are usually stacked together. Plastic pipes are easily deformed due to the backlog, which in turn causes the plastic pipes to fail quality inspection and affect subsequent transportation and use. Therefore, aluminum felt spacers are needed to solve this problem when stacking plastic pipes. Utility Model Content
[0004] The purpose of the utility model is to provide aluminum felt spacers for stacking plastic pipes to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solution: an aluminum felt spacer for stacking plastic pipes, comprising an aluminum spacer body, an upper recess, a lower recess and a plastic pipe body, the aluminum spacer body comprising an upper convex part, an upper recess, a lower recess and a lower convex part, and the upper convex part and the lower convex part are staggered and distributed on the upper and lower sides of the aluminum spacer body, upper recesses and lower recesses are evenly formed between the upper convex part and the lower convex part, and the plastic pipe body is placed inside the upper recess and the lower recess.
[0006] Preferably, the outer wall of the aluminum spacer main body is evenly coated with a waterproof layer, and the waterproof layer adopts epoxy resin waterproof coating, which improves the waterproof effect of the aluminum spacer main body and is conducive to outdoor use.
[0007] Preferably, an interlayer is provided inside the side wall of the aluminum spacer main body, and reinforcing ribs are evenly distributed inside the interlayer to improve the structural strength of the aluminum spacer main body 1.
[0008] Preferably, a first buffer felt and a second buffer felt are respectively provided inside the upper recess and the lower recess, and the first buffer felt and the second buffer felt are in contact with the outer wall of the plastic tube body to prevent direct contact between the aluminum spacer body and the plastic tube body to cause wear and scratches to the plastic tube body.
[0009] Preferably, the inner walls of the upper recess and the lower recess are both provided with an adhesive layer, and sticky particles are evenly distributed on the adhesive layer. The first buffer felt and the second buffer felt are both connected to the adhesive layer through the sticky particles, which are used for connecting the first buffer felt and the second buffer felt with the aluminum spacer body.
[0010] Preferably, the sticky particles are evenly spaced on the sticky layer, and the sticky particles are all made of sticky silicone material, which facilitates separation of the first buffer felt and the second buffer felt from the sticky layer while ensuring stickiness, and is less likely to produce glue marks.
[0011] Preferably, a pressure-resistant layer is provided in the aluminum spacer main body on both sides of the interlayer, and pressure-resistant parts are evenly distributed inside the pressure-resistant layer. The cross-section of the pressure-resistant parts is a semicircular arc structure, so that it is not easy to be deformed and damaged when subjected to external pressure, thereby extending the service life of the aluminum spacer main body.
[0012] Compared with the prior art, the beneficial effects of the present invention are:
[0013] (1) The aluminum felt spacer for stacking plastic pipes is installed with an aluminum spacer body, an upper convex part, an upper concave part, a lower convex part, a lower concave part and a plastic pipe body. The aluminum spacer body forms a wavy structure through the upper convex part, the upper concave part, the lower convex part and the lower concave part. When the plastic pipe bodies are stacked, they are placed in the upper concave part and the lower concave part. The upper convex part and the lower convex part separate the plastic pipe bodies to prevent the plastic pipe bodies from being squeezed against each other, so that the plastic pipe bodies are not easily deformed when stacked.
[0014] (2) The aluminum felt spacer for stacking plastic pipes is installed with an adhesive layer, sticky particles, a first buffer felt and a second buffer felt. The adhesive layer is arranged on the inner wall of the upper concave part and the lower concave part. The first buffer felt and the second buffer felt are connected to the adhesive layer through the sticky particles, so that when the plastic pipe body is placed, the surface contacts the first buffer felt and the second buffer felt, preventing the aluminum spacer body from directly contacting the plastic pipe body and causing wear and scratches to the plastic pipe body.
[0015] (3) The aluminum felt spacer for stacking plastic pipes is provided with an interlayer in the side wall of the aluminum spacer body, and reinforcing ribs are evenly distributed in the interlayer, which is beneficial to improving the structural strength of the aluminum spacer body. At the same time, a pressure-resistant layer is provided, and semi-circular arc-shaped pressure-resistant parts are evenly distributed in the pressure-resistant layer, so that it is not easy to be deformed and damaged when subjected to external pressure, thereby extending the service life of the aluminum spacer body. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0018] Figure 2 This is a schematic diagram of a partially enlarged front view of the present invention;
[0019] Figure 3 For the utility model Figure 2 A in the middle is an enlarged structural diagram;
[0020] Figure 4 This is a schematic diagram of the cross-sectional structure of the side wall of the aluminum spacer main body of the present invention.
[0021] In the figure: 1. Aluminum spacer body; 2. Upper convex part; 3. Upper concave part; 4. First buffer felt; 5. Lower concave part; 6. Lower convex part; 7. Plastic tube body; 8. Second buffer felt; 9. Adhesive layer; 10. Sticky particles; 11. Interlayer; 12. Waterproof layer; 13. Reinforcement ribs; 14. Pressure-resistant layer; 15. Pressure-resistant parts. DETAILED DESCRIPTION
[0022] The following is a clear and complete description of the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0023] See also Figure 1-4 The utility model provides an embodiment: an aluminum felt spacer for stacking plastic pipes, comprising an aluminum spacer body 1, an upper concave portion 3, a lower concave portion 5 and a plastic pipe body 7, wherein the aluminum spacer body 1 comprises an upper convex portion 2, an upper concave portion 3, a lower concave portion 5 and a lower convex portion 6;
[0024] The upper convex portion 2 and the lower convex portion 6 are staggered and distributed on the upper and lower sides of the aluminum spacer body 1. The upper concave portion 3 and the lower concave portion 5 are evenly formed between the upper convex portion 2 and the lower convex portion 6. The plastic tube body 7 is placed inside the upper concave portion 3 and the lower concave portion 5.
[0025] The aluminum spacer body 1 forms a wavy structure through the upper convex part 2, the upper concave part 3, the lower convex part 6 and the lower concave part 5. When the plastic tube bodies 7 are stacked, they are placed in the upper concave part 3 and the lower concave part 5. The upper convex part 2 and the lower convex part 6 separate the plastic tube bodies 7 to prevent mutual squeezing between the plastic tube bodies 7.
[0026] A first buffer felt 4 and a second buffer felt 8 are respectively provided inside the upper concave portion 3 and the lower concave portion 5, and the first buffer felt 4 and the second buffer felt 8 are both in contact with the outer wall of the plastic tube body 7;
[0027] The inner walls of the upper concave portion 3 and the lower concave portion 5 are both provided with an adhesive layer 9, and adhesive particles 10 are evenly distributed on the adhesive layer 9. The first buffer felt 4 and the second buffer felt 8 are both connected to the adhesive layer 9 via the adhesive particles 10.
[0028] When the plastic tube body 7 is placed, the surface is in contact with the first buffer felt 4 and the second buffer felt 8, thereby preventing the aluminum spacer body 1 from directly contacting the plastic tube body 7 to cause wear and scratches on the plastic tube body 7, and reducing the noise generated when the plastic tube bodies 7 are stacked;
[0029] The sticky particles 10 are evenly spaced and distributed on the sticky layer 9. The sticky particles 10 are all made of sticky silicone material. Under the premise of ensuring stickiness, the first and second buffer felts 4 and 8 are easily separated from the sticky layer 9, and glue marks are not easily generated.
[0030] The outer wall of the aluminum spacer body 1 is evenly coated with a waterproof layer 12, and the waterproof layer 12 uses epoxy resin waterproof coating to improve the waterproof effect of the aluminum spacer body 1, which is conducive to outdoor use;
[0031] An interlayer 11 is provided inside the side wall of the aluminum spacer body 1, and reinforcing ribs 13 are evenly distributed inside the interlayer 11, which is beneficial to improving the structural strength of the aluminum spacer body 1;
[0032] The aluminum spacer body 1 on both sides of the interlayer 11 is provided with a pressure-resistant layer 14, and the interior of the pressure-resistant layer 14 is evenly distributed with pressure-resistant parts 15, and the cross-section of the pressure-resistant parts 15 is a semicircular arc structure;
[0033] This makes it difficult for the aluminum spacer main body 1 to be deformed or damaged when subjected to external pressure, thereby extending the service life of the aluminum spacer main body 1.
[0034] Working principle: When the embodiment of the present application is in use, the aluminum spacer body 1 forms a wavy structure through the upper convex part 2, the upper concave part 3, the lower convex part 6 and the lower concave part 5. When the plastic tube body 7 is stacked, it is placed in the upper concave part 3 and the lower concave part 5. The upper convex part 2 and the lower convex part 6 separate the plastic tube bodies 7 to prevent the plastic tube bodies 7 from being squeezed against each other, so that the plastic tube bodies 7 are not easily deformed when stacked. An interlayer 11 is provided in the side wall of the aluminum spacer body 1, and reinforcing ribs 13 are evenly distributed in the interlayer 11, which is beneficial to improving the structural strength of the aluminum spacer body 1. At the same time, a pressure-resistant layer 14 is provided, and the pressure-resistant layer 1 4 is evenly distributed with semicircular arc-shaped pressure-resistant parts 15, so that the aluminum spacer body 1 is not easily deformed and damaged when subjected to external pressure, thereby extending the service life of the aluminum spacer body 1. In addition, an adhesive layer 9 is arranged on the inner walls of the upper recess 3 and the lower recess 5, and the first buffer felt 4 and the second buffer felt 8 are connected to the adhesive layer 9 through sticky particles 10, so that when the plastic tube body 7 is placed, the surface is in contact with the first buffer felt 4 and the second buffer felt 8, preventing the aluminum spacer body 1 from directly contacting the plastic tube body 7 to cause wear and scratches on the plastic tube body 7, while reducing the noise generated when the plastic tube bodies 7 are stacked.
Claims
1. Aluminum felt spacers for stacking plastic pipes, characterized by: The invention comprises an aluminum spacer main body (1), an upper concave portion (3), a lower concave portion (5) and a plastic tube main body (7); the aluminum spacer main body (1) comprises an upper convex portion (2), an upper concave portion (3), a lower concave portion (5) and a lower convex portion (6); the upper convex portion (2) and the lower convex portion (6) are staggeredly distributed on the upper and lower sides of the aluminum spacer main body (1); the upper concave portion (3) and the lower concave portion (5) are evenly formed between the upper convex portion (2) and the lower convex portion (6); and the plastic tube main body (7) is placed inside the upper concave portion (3) and the lower concave portion (5).
2. The aluminum felt spacer for stacking plastic pipes according to claim 1, characterized in that: The outer wall of the aluminum spacer main body (1) is evenly coated with a waterproof layer (12), and the waterproof layer (12) adopts epoxy resin waterproof coating.
3. The aluminum felt spacer for stacking plastic pipes according to claim 1, characterized in that: An interlayer (11) is provided inside the side wall of the aluminum spacer main body (1), and reinforcing ribs (13) are evenly distributed inside the interlayer (11).
4. The aluminum felt spacer for stacking plastic pipes according to claim 1, characterized in that: A first buffer felt (4) and a second buffer felt (8) are respectively provided inside the upper concave portion (3) and the lower concave portion (5), and the first buffer felt (4) and the second buffer felt (8) are both in contact with the outer wall of the plastic pipe body (7).
5. The aluminum felt spacer for stacking plastic pipes according to claim 4, characterized in that: The inner walls of the upper concave portion (3) and the lower concave portion (5) are both provided with an adhesive layer (9), and adhesive particles (10) are evenly distributed on the adhesive layer (9), and the first buffer felt (4) and the second buffer felt (8) are both connected to the adhesive layer (9) via the adhesive particles (10).
6. The aluminum felt spacer for stacking plastic pipes according to claim 5, characterized in that: The sticky particles (10) are distributed on the sticky layer (9) at equal intervals, and the sticky particles (10) are all made of sticky silica gel.
7. The aluminum felt spacer for stacking plastic pipes according to claim 3, characterized in that: A pressure-resistant layer (14) is provided in the aluminum spacer main body (1) on both sides of the interlayer (11), and pressure-resistant parts (15) are evenly distributed inside the pressure-resistant layer (14), and the cross-section of the pressure-resistant parts (15) is a semicircular arc structure.