Double-layer pre-compounded double-sided composite polymer waterproof coiled material and preparation method thereof
By adopting a double-layer pre-composite double-sided composite polymer waterproof coil, combined with the use of polyaryletherketone and modified polyester fiber, the problems of low mechanical strength and poor corrosion resistance of traditional waterproof coils are solved, and higher waterproof performance and longer service life are achieved.
Patent Information
- Application Number
- CN202510029695.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2045-01-08
AI Technical Summary
Traditional waterproof coils have low mechanical strength and poor corrosion resistance, making them difficult to meet the waterproofing needs of modern buildings in long service life and complex environments.
A double-layer pre-composite double-sided composite polymer waterproof coil is used, consisting of a multi-layer non-woven fabric and a waterproof layer. Polyaryletherketone is added to the waterproof layer, and 3,4-dichloro-benzene pentadecanoic acid modified polyester fiber is added to the adhesive layer.
It significantly improves the mechanical strength and corrosion resistance of the waterproof coil, can better adapt to the deformation of the building structure and extend its service life.
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Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building waterproofing, and in particular to a double-layer pre-compounded double-sided composite polymer waterproofing coiled material and a preparation method thereof. Background Art
[0002] In the field of construction engineering, waterproofing has always been a crucial link. With the rapid development of the construction industry, various building structures such as roofs, walls, basements, pipe galleries, tunnels, cold storage, bridges, gardens, civil air defense, pools, etc. have put forward more stringent requirements on waterproof performance. Traditional waterproof materials have gradually exposed many limitations during long-term use.
[0003] Some early waterproof materials, such as ordinary asphalt membranes, have a certain waterproof effect, but have problems such as poor durability and easy aging and cracking, which are difficult to meet the needs of modern buildings for a longer service life. Moreover, in the face of complex environments, especially in key projects with high durability and corrosion resistance requirements, waterproof membranes made of a single material often cannot effectively cope with the stress caused by structural deformation, which can easily lead to rupture and failure of the waterproof layer, and then cause leakage problems, causing serious damage to the stability of the building structure and internal facilities. Therefore, it is of great significance to develop a high-strength, corrosion-resistant waterproof membrane to meet stable waterproof performance. Summary of the invention
[0004] The present invention provides a double-layer pre-compounded double-sided composite polymer waterproof coiled material and a preparation method thereof, which solves the problems of low mechanical strength and poor corrosion resistance of the waterproof coiled material in the related art.
[0005] The technical solution of the present invention is as follows: The present invention provides a double-layer pre-compounded double-sided composite polymer waterproof coiled material, which comprises, from top to bottom, a first non-woven fabric, a first waterproof layer, a second non-woven fabric, an adhesive layer, a third non-woven fabric, a second waterproof layer, and a fourth non-woven fabric, wherein the first waterproof layer and the second waterproof layer each independently comprise the following raw materials in parts by weight: 50 to 60 parts of polyethylene, 30 to 40 parts of thermoplastic polyolefin, 10 to 15 parts of polyaryletherketone, 15 to 20 parts of filler, 1 to 2 parts of antioxidant, and 2 to 3 parts of compatibilizer.
[0006] As a further technical solution, the polyaryletherketone consists of a first polyaryletherketone and a second polyaryletherketone, and the first polyaryletherketone and the second polyaryletherketone have different melt indexes.
[0007] As a further technical solution, the melt index of the first polyaryletherketone is 55 g / 10 min, and the melt index of the second polyaryletherketone is 9 g / 10 min.
[0008] The melt index of the first polyaryletherketone is measured at 400° C. and a load of 2.16 kg, and the melt index of the second polyaryletherketone is measured at 400° C. and a load of 2.16 kg.
[0009] As a further technical solution, the mass ratio of the first polyaryletherketone to the second polyaryletherketone is 1-3:5.
[0010] In the present invention, by limiting the mass ratio of the first polyaryletherketone to the second polyaryletherketone to 1-3:5, the mechanical strength and corrosion resistance of the waterproof membrane are further improved.
[0011] As a further technical solution, the mass ratio of the first polyaryletherketone to the second polyaryletherketone is 2:5.
[0012] In the present invention, by limiting the mass ratio of the first polyaryletherketone to the second polyaryletherketone to 2:5, the mechanical strength and corrosion resistance of the waterproof membrane are further improved.
[0013] As a further technical solution, the adhesive layer comprises the following raw materials in parts by weight: 40-50 parts of SEBS, 15-20 parts of chloroprene rubber, 10-15 parts of terpene resin, 10-20 parts of cyclohexane oil, and 8-12 parts of 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber.
[0014] In the present invention, the mechanical strength of the waterproof coiled material is further improved by adding 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber into the adhesive layer.
[0015] As a further technical solution, the amount of 3,4-dichloro-benzenepentadecanoic acid added to the raw material of the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber is 5% to 8% of the mass of the polyester fiber.
[0016] In the present invention, the mechanical strength of the waterproof coiled material is further improved by limiting the addition amount of 3,4-dichloro-benzenepentadecanoic acid to 5% to 8% of the mass of the polyester fiber.
[0017] As a further technical solution, the preparation method of the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber comprises the following steps: adding the polyester fiber into methanol to disperse it evenly, adding 3,4-dichloro-benzenepentadecanoic acid to modify it, and drying to obtain the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber.
[0018] As a further technical solution, the modification temperature is 35-45° C., and the modification time is 3-5 hours.
[0019] As a further technical solution, the first non-woven fabric, the second non-woven fabric, the third non-woven fabric, and the fourth non-woven fabric are all high-strength polypropylene non-woven fabrics.
[0020] As a further technical solution, the filler includes one or more of light calcium carbonate, kaolin, and talc.
[0021] As a further technical solution, the antioxidant includes one or more of antioxidant 264 , antioxidant 1010 , and antioxidant 168 .
[0022] As a further technical solution, the compatibilizer is maleic anhydride grafted polyethylene.
[0023] As a further technical solution, the thickness of the first waterproof layer and the second waterproof layer are independently 0.8~1mm.
[0024] As a further technical solution, the thickness of the first non-woven fabric, the second non-woven fabric, the third non-woven fabric, and the fourth non-woven fabric are independently 0.9-2 mm.
[0025] As a further technical solution, the thickness of the adhesive layer is 1.5~2mm.
[0026] The present invention also provides a method for preparing a double-layer pre-compounded double-sided composite polymer waterproof membrane, comprising the following steps: S1, mixing the raw materials of the first waterproof layer and the second waterproof layer respectively, and then extruding and molding to obtain a first waterproof layer sheet and a second waterproof layer sheet; S2, mixing and melting the bonding layer raw materials to obtain an adhesive; S3. The first non-woven fabric, the first waterproof layer, the second non-woven fabric, the adhesive layer, the third non-woven fabric, the second waterproof layer and the fourth non-woven fabric are stacked in order from top to bottom, and then hot-pressed to obtain a double-layer pre-compounded double-sided composite polymer waterproof membrane.
[0027] The working principle and beneficial effects of the present invention are: In the present invention, a double-layer pre-compounded double-sided composite polymer waterproof membrane is composed of a first non-woven fabric, a first waterproof layer, a second non-woven fabric, an adhesive layer, a third non-woven fabric, a second waterproof layer, and a fourth non-woven fabric, and polyaryletherketone is added to the waterproof layer, so that the mechanical strength and corrosion resistance of the waterproof membrane are improved, the membrane can better adapt to the deformation of the main body of the building structure, and the application scenarios are more extensive. DETAILED DESCRIPTION
[0028] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0029] In the following embodiments and comparative examples: High-strength polypropylene non-woven fabric, thickness: 0.9~2mm; polyethylene, model: MG70; thermoplastic polyolefin, model: TPOHafifax CA 7320A; polyaryletherketone AV-481, melt index: 55g / 10min (400℃, 2.16kg); polyaryletherketone AV-651GF30 BG 20, melt index: 9g / 10min (400℃, 2.16kg); maleic anhydride grafted polyethylene, model: 41E755; SEBS, model: 6154; chloroprene rubber, model: CR232; terpene resin, model: T100; naphthenic oil, model: KN4010; polyester fiber, diameter 10~25μm, length 4mm.
[0030] Example 1 A method for preparing a double-layer pre-compounded double-sided composite polymer waterproofing membrane comprises the following steps: S1. Mix 50 parts of polyethylene, 30 parts of thermoplastic polyolefin, 10 parts of polyaryletherketone AV-481, 15 parts of light calcium carbonate, 1 part of antioxidant 264, and 2 parts of maleic anhydride grafted polyethylene, and extrude and mold to obtain a first waterproof layer sheet and a second waterproof layer sheet. The thickness of the first waterproof layer sheet and the second waterproof layer sheet are both 0.8 mm; S2, 40 parts of SEBS, 15 parts of chloroprene rubber, 10 parts of terpene resin, 10 parts of naphthenic oil, and 8 parts of polyester fiber are mixed and melted to obtain an adhesive; S3. High-strength polypropylene non-woven fabric, first waterproof layer sheet, high-strength polypropylene non-woven fabric, adhesive, high-strength polypropylene non-woven fabric, second waterproof layer sheet, and high-strength polypropylene non-woven fabric are stacked in order and hot-pressed to obtain a double-layer pre-compounded double-sided composite polymer waterproof membrane.
[0031] Example 2 S1. Mix 55 parts of polyethylene, 35 parts of thermoplastic polyolefin, 12 parts of polyaryletherketone AV-481, 18 parts of kaolin, 1 part of antioxidant 1010, and 2 parts of maleic anhydride grafted polyethylene, and extrude and mold to obtain a first waterproof layer sheet and a second waterproof layer sheet. The thickness of the first waterproof layer sheet and the second waterproof layer sheet is 0.9 mm. S2, 45 parts of SEBS, 18 parts of chloroprene rubber, 12 parts of terpene resin, 15 parts of naphthenic oil, and 10 parts of polyester fiber are mixed and melted to obtain an adhesive; S3. High-strength polypropylene non-woven fabric, first waterproof layer sheet, high-strength polypropylene non-woven fabric, adhesive, high-strength polypropylene non-woven fabric, second waterproof layer sheet, and high-strength polypropylene non-woven fabric are stacked in order and hot-pressed to obtain a double-layer pre-compounded double-sided composite polymer waterproof membrane.
[0032] Example 3 S1, 60 parts of polyethylene, 40 parts of thermoplastic polyolefin, 15 parts of polyaryletherketone AV-481, 20 parts of talc, 2 parts of antioxidant 168, and 3 parts of maleic anhydride grafted polyethylene are mixed, and the mixture is extruded and molded to obtain a first waterproof layer sheet and a second waterproof layer sheet, wherein the thickness of the first waterproof layer sheet and the second waterproof layer sheet is 1 mm; S2, 50 parts of SEBS, 20 parts of chloroprene rubber, 15 parts of terpene resin, 20 parts of naphthenic oil, and 12 parts of polyester fiber are mixed and melted to obtain an adhesive; S3. High-strength polypropylene non-woven fabric, first waterproof layer sheet, high-strength polypropylene non-woven fabric, adhesive, high-strength polypropylene non-woven fabric, second waterproof layer sheet, and high-strength polypropylene non-woven fabric are stacked in order and hot-pressed to obtain a double-layer pre-compounded double-sided composite polymer waterproof membrane.
[0033] Example 4 The difference between this embodiment and embodiment 1 is that the polyaryletherketone AV-481 is replaced by an equal amount of polyaryletherketone AV-651 GF30 BG 20.
[0034] Example 5 The difference between this embodiment and embodiment 1 is that the polyaryletherketone AV-481 is replaced by equal amounts of polyaryletherketone AV-651 GF30 BG 20 and polyaryletherketone AV-481 in a mass ratio of 1:1.
[0035] Example 6 The only difference between this embodiment and embodiment 5 is that the mass ratio of polyaryletherketone AV-651 GF30 BG 20 to polyaryletherketone AV-481 is 7:1.
[0036] Example 7 The only difference between this embodiment and embodiment 5 is that the mass ratio of polyaryletherketone AV-651 GF30 BG 20 to polyaryletherketone AV-481 is 5:1.
[0037] Example 8 The only difference between this embodiment and embodiment 5 is that the mass ratio of polyaryletherketone AV-651 GF30 BG 20 to polyaryletherketone AV-481 is 5:2.
[0038] Example 9 The only difference between this embodiment and embodiment 5 is that the mass ratio of polyaryletherketone AV-651 GF30 BG 20 to polyaryletherketone AV-481 is 5:3.
[0039] Example 10 The present embodiment is different from the embodiment 8 in that the polyester fiber is replaced by an equal amount of 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber; the preparation method of the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber comprises the following steps: adding 40 g of the polyester fiber to 400 mL of methanol, adding 0.8 g of 3,4-dichloro-benzenepentadecanoic acid and mixing, heating to 45° C., stirring for 3 h and then drying to obtain the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber.
[0040] Embodiment 11 The only difference between this embodiment and embodiment 10 is that the added amount of 3,4-dichloro-benzenepentadecanoic acid is 4 g.
[0041] Example 12 The only difference between this embodiment and embodiment 10 is that the added amount of 3,4-dichloro-benzenepentadecanoic acid is 2 g.
[0042] Example 13 The only difference between this embodiment and embodiment 10 is that the added amount of 3,4-dichloro-benzenepentadecanoic acid is 3.2 g.
[0043] Comparative Example 1 The only difference between this comparative example and Example 1 is that polyaryletherketone AV-481 is not added.
[0044] The double-layer pre-compounded double-sided composite polymer waterproof membranes prepared in Examples 1 to 13 and Comparative Example 1 were tested for tensile strength according to Method A in GB / T 328.9-2007 "Test methods for building waterproof membranes Part 9: Tensile properties of polymer waterproof membranes", and the test results are shown in Table 1.
[0045] Table 1 Mechanical strength test results of double-layer pre-compounded double-sided composite polymer waterproof membrane
[0046] Compared with Comparative Example 1, Example 1 adds polyaryletherketone AV-481 to the waterproof layer. As a result, the tensile strength of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Example 1 is higher than that of Comparative Example 1, indicating that adding polyaryletherketone AV-481 to the waterproof layer can improve the mechanical strength of the double-layer pre-composite double-sided composite polymer waterproof membrane.
[0047] Compared with Example 1, Examples 4 to 8 change the composition of polyaryletherketone. As a result, the tensile force of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 5 to 9 is higher than that of Example 1 and Example 4, indicating that when the polyaryletherketone is composed of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20, the mechanical strength of the double-layer pre-composite double-sided composite polymer waterproof membrane can be further improved; by comparing Examples 5 to 9, it is found that the tensile force of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 7 to 9 is higher than that of Example 5 and Example 6, indicating that when polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG When the mass ratio of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20 is 5:1-3, the mechanical strength of the double-layer pre-composite double-sided composite polymer waterproof membrane can be further improved; by comparing Examples 7-9, it is found that the tensile force of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Example 8 is higher than that of Examples 7 and 9, indicating that when the mass ratio of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20 is 5:2, the mechanical strength of the obtained double-layer pre-composite double-sided composite polymer waterproof membrane is higher.
[0048] Compared with Example 8, in Examples 10 to 13, 3,4-dichloro-benzenepentadecanoic acid was used to modify the polyester fiber. As a result, the tensile force of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 10 to 13 was higher than that in Example 8, indicating that the use of 3,4-dichloro-benzenepentadecanoic acid to modify the polyester fiber can further improve the mechanical strength of the double-layer pre-composite double-sided composite polymer waterproof membrane; by comparing Examples 10 to 13, it was found that the tensile force of the waterproof membrane prepared in Examples 12 to 13 was higher than that in Examples 10 to 11, indicating that when the addition amount of 3,4-dichloro-benzenepentadecanoic acid is 5% to 8% of the mass of the polyester fiber, the obtained double-layer pre-composite double-sided composite polymer waterproof membrane has the highest mechanical strength.
[0049] The double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 1 to 9 and Comparative Example 1 was immersed in a 5% sodium hydroxide solution for 168 hours, and its tension retention rate was tested; tension retention rate = tension after immersion / tension before immersion × 100%; the test results are shown in Table 2.
[0050] Table 2 Corrosion resistance test results of double-layer pre-composite double-sided composite polymer waterproof membrane
[0051] Compared with Comparative Example 1, Example 1 adds polyaryletherketone AV-481 to the waterproof layer. As a result, the tensile retention rate of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Example 1 is higher than that in Comparative Example 1, indicating that adding polyaryletherketone AV-481 to the waterproof layer can improve the corrosion resistance of the double-layer pre-composite double-sided composite polymer waterproof membrane.
[0052] Compared with Example 1, Examples 4 to 8 change the composition of the polyaryletherketone. As a result, the tensile retention rate of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 5 to 9 is higher than that in Example 1 and Example 4, indicating that when the polyaryletherketone is composed of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20, the corrosion resistance of the double-layer pre-composite double-sided composite polymer waterproof membrane can be further improved; by comparing Examples 5 to 9, it is found that the tensile retention rate of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Examples 7 to 9 is higher than that in Example 5 and Example 6, indicating that when polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG When the mass ratio of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20 is 5:1-3, the corrosion resistance of the double-layer pre-composite double-sided composite polymer waterproof membrane can be further improved; by comparing Examples 7-9, it is found that the tensile retention rate of the double-layer pre-composite double-sided composite polymer waterproof membrane prepared in Example 8 is higher than that of Examples 7 and 9, indicating that when the mass ratio of polyaryletherketone AV-481 and polyaryletherketone AV-651 GF30 BG 20 is 5:2, the corrosion resistance of the obtained double-layer pre-composite double-sided composite polymer waterproof membrane is higher.
[0053] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A double-layer pre-compounded double-sided composite polymer waterproofing membrane, characterized in that: The invention comprises, from top to bottom, a first non-woven fabric, a first waterproof layer, a second non-woven fabric, an adhesive layer, a third non-woven fabric, a second waterproof layer and a fourth non-woven fabric. The first waterproof layer and the second waterproof layer each independently comprise the following raw materials in parts by weight: 50 to 60 parts of polyethylene, 30 to 40 parts of thermoplastic polyolefin, 10 to 15 parts of polyaryletherketone, 15 to 20 parts of filler, 1 to 2 parts of antioxidant and 2 to 3 parts of compatibilizer.
2. A double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 1, characterized in that: The polyaryletherketone consists of a first polyaryletherketone and a second polyaryletherketone, and the first polyaryletherketone and the second polyaryletherketone have different melt indexes.
3. A double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 2, characterized in that: The melt index of the first polyaryletherketone is 55 g / 10 min, and the melt index of the second polyaryletherketone is 9 g / 10 min.
4. A double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 3, characterized in that: The mass ratio of the first polyaryletherketone to the second polyaryletherketone is 1-3:
5.
5. The double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 1, characterized in that: The adhesive layer comprises the following raw materials in parts by weight: 40-50 parts of SEBS, 15-20 parts of chloroprene rubber, 10-15 parts of terpene resin, 10-20 parts of cyclohexane oil, and 8-12 parts of 3,4-dichloro-benzene pentadecanoic acid modified polyester fiber.
6. A double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 5, characterized in that: The amount of 3,4-dichloro-benzenepentadecanoic acid added to the raw material of the 3,4-dichloro-benzenepentadecanoic acid modified polyester fiber is 5% to 8% of the mass of the polyester fiber.
7. The double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 1, characterized in that: The first non-woven fabric, the second non-woven fabric, the third non-woven fabric and the fourth non-woven fabric are all high-strength polypropylene non-woven fabrics.
8. A double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 7, characterized in that: The filler includes one or more of light calcium carbonate, kaolin and talc.
9. The double-layer pre-compounded double-sided composite polymer waterproofing membrane according to claim 1, characterized in that: The antioxidant includes one or more of antioxidant 264 , antioxidant 1010 , and antioxidant 168 .
10. A method for preparing a double-layer pre-compounded double-sided composite polymer waterproofing membrane according to any one of claims 1 to 9, characterized in that: The following steps are involved: S1, mixing the raw materials of the first waterproof layer and the second waterproof layer respectively, and then extruding and molding to obtain a first waterproof layer sheet and a second waterproof layer sheet; S2, mixing and melting the bonding layer raw materials to obtain an adhesive; S3. The first non-woven fabric, the first waterproof layer, the second non-woven fabric, the adhesive layer, the third non-woven fabric, the second waterproof layer and the fourth non-woven fabric are stacked in order from top to bottom, and then hot-pressed to obtain a double-layer pre-compounded double-sided composite polymer waterproof membrane.
Citation Information
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