CN219792864U - Coating and rolling fusion waterproof coiled material - Google Patents

Coating and rolling fusion waterproof coiled material Download PDF

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Publication number
CN219792864U
CN219792864U CN202320700166.9U CN202320700166U CN219792864U CN 219792864 U CN219792864 U CN 219792864U CN 202320700166 U CN202320700166 U CN 202320700166U CN 219792864 U CN219792864 U CN 219792864U
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layer
mildew
resistant
aging
separation
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李建芳
田继斌
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Hebei Yuyang Zeli Waterproof Material Co ltd
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Hebei Yuyang Zeli Waterproof Material Co ltd
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Abstract

The utility model relates to the technical field of waterproof coiled materials, and discloses a coiled fusion waterproof coiled material, which comprises an isolating film, wherein a creep adhesive film is compounded on the isolating film, a first mildew-resistant anti-aging layer is compounded on the creep adhesive film, a high-strength matrix layer is compounded on the first mildew-resistant anti-aging layer, a second mildew-resistant anti-aging layer is compounded on the high-strength matrix layer, a nanoscale oil-proof and oxygen-proof sealing layer is compounded on the second mildew-resistant anti-aging layer, and a high-strength protective layer is compounded on the nanoscale oil-proof and oxygen-proof sealing layer; according to the utility model, the square and round double protection structure is added outside the original single-layer circular protrusion, and if the inner ring is not tightly sealed, the outer ring can still ensure that substances in the pipe cannot diffuse into the air, so that pollution is prevented, and detection accuracy is improved.

Description

Coating and rolling fusion waterproof coiled material
Technical Field
The utility model relates to the technical field of waterproof coiled materials, in particular to a coiled fusion waterproof coiled material.
Background
The traditional SBS (styrene-butadiene-styrene block copolymer) is used as a waterproof layer of the underground side wall, and the problems of hollowness and layering easily occur because full adhesion cannot be realized by adopting hot-melt construction. Because the coiled material has large self weight and is easy to fall off, the subsidence of the backfill soil generates huge falling force in the backfill soil process, and the coiled material and the underground structure layer are completely stripped. Under the condition that the waterproof layer is damaged by external force, water can enter between the waterproof layer and the structural layer, so that the waterproof layer is completely invalid. Water passes through weak points, cracks, holes of the structural layer and enters the underground space. And the leakage can not be effectively performed in the later stage of leakage stoppage treatment. Meanwhile, the traditional SBS adopts a hot melting method to construct, black smoke can be generated, and the environment is polluted. For this purpose, a roll-up fusion waterproof roll is proposed.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides a coil fusion waterproof coiled material, which solves the problems of the background technology.
The utility model provides the following technical scheme: the utility model provides a roll up fuses waterproofing membrane, includes the barrier film, and creep nature glued membrane is compounded on the barrier film, first mould resistant anti-aging layer is compounded on the creep nature glued membrane, high strength matrix layer is compounded on the first mould resistant anti-aging layer, second mould resistant anti-aging layer is compounded on the matrix layer that excels in, nano-scale oil separation separates oxygen seal layer and is compounded on the second mould resistant anti-aging layer, high strength protective layer is compounded on the nano-scale oil separation separates oxygen seal layer.
Preferably, the first mildew-resistant and anti-aging layer comprises one of a silver ion mildew-resistant and anti-aging layer, a silver zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer.
Preferably, the high-strength carcass layer comprises one of a polyester tire layer, a polyethylene tire layer, a glass fiber tire layer and a glass fiber reinforced polyester tire layer, wherein the polyester tire layer is polyester non-woven fabric, the polyethylene tire layer is a polyethylene plastic polymer sheet, the glass fiber tire layer is glass fiber felt, the glass fiber reinforced polyester tire layer is glass fiber polyester felt, and the thickness of the high-strength carcass layer is 0.1-0.3mm.
Preferably, the second mildew-resistant and anti-aging layer comprises one of a silver ion mildew-resistant and anti-aging layer, a silver zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer, and the thickness of the second mildew-resistant and anti-aging layer is 0.4-0.8mm.
Preferably, the nano-scale oil-separating and oxygen-separating sealing layer comprises one of a nano-scale tinfoil oil-separating and oxygen-separating layer, a nano-scale cloth oil-separating and oxygen-separating layer and a nano-scale plastic film oil-separating and oxygen-separating layer, wherein the nano-scale tinfoil oil-separating and oxygen-separating layer is corrugated aluminum foil tinfoil, the nano-scale cloth oil-separating and oxygen-separating layer is an oil-resisting water-repellent fabric, the nano-scale plastic film oil-separating and oxygen-separating layer is a high-barrier tensile plastic film, and the thickness of the nano-scale oil-separating and oxygen-separating sealing layer is 0.1-0.4mm.
Preferably, the isolating film comprises one of a PET isolating film, a PE isolating film and an aluminum foil isolating film, and the thickness of the isolating film is 0.1-0.3mm;
preferably, the high-strength protective layer comprises one of a non-woven geotextile protective layer, a PE film composite geotextile protective layer and a woven composite geotextile protective layer, wherein the non-woven geotextile protective layer is a needled non-woven geotextile, the PE film composite geotextile protective layer is a geotextile composited by needled non-woven fabrics and PE films, the woven composite geotextile protective layer is a non-woven and woven composite geotextile, and the thickness of the high-strength protective layer is 1-1.5mm.
Compared with the prior art, the utility model has the following beneficial effects: according to the utility model, the waterproof coiled material is rolled and fused, and the waterproof coiled material and the high-viscosity anti-slip waterproof coating layer are compounded to be used so as to perfectly embody a skin type waterproof system, and the waterproof coiled material can effectively prevent bricks, glass, cement blocks and the like in backfill from damaging the waterproof coiled material, thereby playing a role of a protective layer, reducing the manufacturing cost and reducing the construction period; the waterproof coiled material has better ageing resistance, mold cannot enter, and oil cannot flow out; compared with the common waterproof coiled material which is difficult to apply on the vertical wall, the waterproof coiled material has good strength, has better application performance, and effectively prevents the falling force generated by the subsidence of backfill soil; compared with the complex construction of the non-cured rubber asphalt waterproof coating and easy slipping and falling, the high-viscosity anti-slip waterproof coating layer has simple construction process operation, high bonding strength with the waterproof coiled material and no slipping, falling and other phenomena; the high-viscosity anti-slip waterproof coating layer has high bonding strength, high elongation of more than 800% and good heat resistance; the high-viscosity anti-slip waterproof coating is environment-friendly, and a spraying construction and safe cold construction process is adopted; the high-viscosity anti-slip waterproof coating layer can form a mortise-tenon structure with pitted surfaces, holes and cracks on the surface of concrete, so that the structure is protected from being invaded by water like skin; the high-viscosity anti-slip waterproof coating layer can form a full-sealing waterproof effect with the coiled material, does not leak water, and reduces hidden leakage trouble.
Drawings
Other features, objects and advantages of the present utility model will become more apparent upon reading of the detailed description of non-limiting embodiments, made with reference to the accompanying drawings in which:
fig. 1 is a schematic diagram of the overall structure of a roll-up fusion waterproof roll of the present utility model;
in the figure: 1. a separation film; 2. a creep adhesive film; 3. a first mold resistant and anti-aging layer; 4. a high-strength carcass layer; 5. a second mold-resistant and anti-aging layer; 6. a nanoscale oil-and oxygen-barrier seal layer; 7. and a high-strength protective layer.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. The drawings are for illustrative purposes only, are schematic representations and are not intended to be limiting of the present patent, and in order to better illustrate the embodiments of the present utility model, certain elements of the drawings may be omitted, enlarged or reduced, and not represent the actual product size, it will be understood by those skilled in the art that certain well-known structures, elements and descriptions thereof may be omitted, and that all other embodiments obtained by those skilled in the art without making inventive efforts are within the scope of protection of the present utility model based on the embodiments of the present utility model.
Referring to fig. 1, a roll-up fusion waterproof roll comprises a separation film 1, a creep adhesive film 2 is compounded on the separation film 1, a first mildew-resistant and anti-aging layer 3 is compounded on the creep adhesive film 2, a high-strength carcass layer 4 is compounded on the first mildew-resistant and anti-aging layer 3, a second mildew-resistant and anti-aging layer 5 is compounded on the high-strength carcass layer 4, a nanoscale oil-separation and oxygen-separation sealing layer 6 is compounded on the second mildew-resistant and anti-aging layer 5, and a high-strength protection layer 7 is compounded on the nanoscale oil-separation and oxygen-separation sealing layer 6.
The first mildew-resistant and anti-aging layer 3 comprises one of a silver ion mildew-resistant and anti-aging layer, a silver-zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer.
The high-strength carcass layer 4 comprises one of a polyester tire layer, a polyethylene tire layer, a glass fiber tire layer and a glass fiber reinforced polyester tire layer, wherein the polyester tire layer is made of polyester non-woven fabrics, the polyethylene tire layer is made of polyethylene plastic high polymer sheets, the glass fiber tire layer is made of glass fiber felt, the glass fiber reinforced polyester tire layer is made of glass fiber polyester felt, and the thickness of the high-strength carcass layer is 0.1-0.3mm.
The second mildew-resistant and anti-aging layer 5 comprises one of a silver ion mildew-resistant and anti-aging layer, a silver-zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer, and the thickness of the second mildew-resistant and anti-aging layer 5 is 0.4-0.8mm.
The nanoscale oil-separating and oxygen-separating sealing layer 6 comprises one of a nanoscale tinfoil oil-separating and oxygen-separating layer, a nanoscale cloth oil-separating and oxygen-separating layer and a nanoscale plastic film oil-separating and oxygen-separating layer, wherein the nanoscale tinfoil oil-separating and oxygen-separating layer is corrugated aluminum foil tinfoil, the nanoscale cloth oil-separating and oxygen-separating layer is an oil-resisting water-repellent fabric, the nanoscale plastic film oil-separating and oxygen-separating layer is a high-barrier stretching plastic film, and the thickness of the nanoscale oil-separating and oxygen-separating sealing layer is 0.1-0.4mm.
Wherein the isolating film 1 comprises one of PET isolating film, PE isolating film and aluminum foil isolating film, and the thickness of the isolating film is 0.1-0.3mm;
the high-strength protective layer 7 comprises one of a non-woven geotextile protective layer, a PE film composite geotextile protective layer and a woven composite geotextile protective layer, wherein the non-woven geotextile protective layer is needle-punched non-woven geotextile, the PE film composite geotextile protective layer is geotextile compounded by needle-punched non-woven fabrics and PE films, the woven composite geotextile protective layer is non-woven and woven composite geotextile, and the thickness of the high-strength protective layer is 1-1.5mm.
The coating and rolling fusion waterproof coiled material can effectively prevent bricks, glass, cement blocks and the like in backfill soil from damaging the waterproof coiled material, and plays a role of a protective layer; the aging resistance is better, the mold can not enter, and the oil can not flow out; the waterproof coiled material has good strength, better application performance, high bonding strength with a high-viscosity anti-slip waterproof coating layer, no phenomena of slipping, falling off and the like, and better comprehensive performance;
the coating fusion waterproof coiled material consists of an isolating film 1, a creep adhesive film 2, a first mildew-resistant and anti-aging layer 3, a high-strength matrix layer 4, a second mildew-resistant and anti-aging layer 5, a nanoscale oil-proof and oxygen-proof sealing layer 6 and a high-strength protective layer 7.
The first mildew-resistant and anti-aging layer 3 comprises one of a silver ion mildew-resistant and anti-aging layer, a silver zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer, the high-strength matrix layer 4 comprises one of a polyester tire layer, a polyethylene tire layer, a glass fiber reinforced polyester tire layer and a polyethylene plastic polymer sheet, the glass fiber tire layer is a glass fiber felt, the glass fiber reinforced polyester tire layer is glass fiber polyester felt cloth, the thickness of the high-strength matrix layer is 0.1-0.3mm, the second mildew-resistant and anti-aging layer 5 comprises one of a silver ion mildew-resistant and anti-aging layer, the silver zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer, the thickness of the second mildew-resistant and anti-aging layer 5 is 0.4-0.8mm, the nano-level oil-separation oxygen-barrier 6 comprises one of a nano-level tin paper-barrier oxygen-insulating layer, a nano-plastic film-insulating oxygen-insulating layer, the nano-barrier-fabric-insulating-layer is one of a nano-plastic film-insulating oxygen-insulating layer, the nano-paper-insulating-layer is an aluminum foil-cloth-insulating-layer, the thickness of the composite geotextile-fabric is a nonwoven fabric-1.1-to-0.5 mm, the thickness of the composite protective layer is a geotextile-layer, the composite protective layer is a geotextile is a corrugated-layer, the thickness of the composite protective layer is a geotextile, and the thickness is a geotextile is a fabric, and the thickness is a geotextile is a fabric, and the thickness is a layer.
Meanwhile, the preparation raw materials of the first mildew-resistant and anti-aging layer 3 comprise the following components in parts by weight:
39-48 parts of asphalt;
13-17 parts of softener;
3.5 to 4.5 portions of SBS;
5.2 to 6.6 portions of carboxyl styrene-butadiene rubber;
8.7 to 11.1 portions of rubber powder;
19.2 to 23.4 portions of nano layered silicate;
a small amount of component a;
0.8 to 1 part of mildew-resistant anti-aging agent;
0.5 to 0.8 part of zinc diethyl dithiocarbamate;
the component a is selected from nano silver antibacterial powder, silver-zinc composite material or zinc oxide, and the asphalt is 90# asphalt.
The source of the raw material for preparing the first mold-resistant and anti-aging layer 3 is not particularly limited, and may be generally commercially available. In certain embodiments of the utility model, the nanosilver antimicrobial powder is purchased from zhongan corporation; the silver-zinc composite material is a plastic mildew preventive LF-106, purchased from the blue peak auxiliary agent Co., ltd; the zinc oxide is zinc oxide powder, in particular musa brand zinc oxide powder, purchased from De chemical engineering Co., ltd.
In certain embodiments of the utility model, the thickness of the first mold-resistant and anti-aging layer is from 0.4 to 0.8mm, preferably from 0.5 to 0.6mm. In certain embodiments, the thickness of the first mold resistant, anti-aging layer is 0.5mm or 0.6mm.
The second mildew-resistant and anti-aging layer 5 is prepared from the following raw materials in parts by weight:
39-48 parts of asphalt;
13-17 parts of softener;
3.5 to 4.5 portions of SBS;
5.2 to 6.6 portions of carboxyl styrene-butadiene rubber;
8.7 to 11.1 portions of rubber powder;
19.2 to 23.4 portions of nano layered silicate;
0.8 to 1 part of mildew-resistant anti-aging agent;
a small amount of component a;
0.5 to 0.8 part of zinc diethyl dithiocarbamate;
the component a is selected from nano silver antibacterial powder, silver-zinc composite material or zinc oxide.
In certain embodiments of the utility model, the asphalt is 90# asphalt.
The source of the raw material for preparing the second mold-resistant and anti-aging layer is not particularly limited, and the second mold-resistant and anti-aging layer can be generally commercially available. In certain embodiments of the utility model, the nanosilver antimicrobial powder is purchased from zhongan corporation; the silver-zinc composite material is a plastic mildew preventive LF-106, purchased from the blue peak auxiliary agent Co., ltd; the zinc oxide is zinc oxide powder, in particular musa brand zinc oxide powder, purchased from De chemical engineering Co., ltd.
In certain embodiments of the utility model, the thickness of the second mold-resistant, anti-aging layer is from 0.4 to 0.8mm, preferably from 0.5 to 0.6mm;
in certain embodiments of the present utility model, the nanoscale oil-and oxygen-barrier sealant layer comprises one of a nanoscale tinfoil oil-and oxygen-barrier layer, a nanoscale cloth oil-and oxygen-barrier layer, and a nanoscale plastic film oil-and oxygen-barrier layer.
The nanoscale tinfoil oil-separating and oxygen-separating layer is corrugated aluminum foil tinfoil and is purchased from Toyo novel building materials Co., ltd; the nanoscale cloth oil-separating and oxygen-separating layer is an oil-resistant and water-repellent fabric and is purchased from Xinxing special fabric Limited company in Xinxiang city; the nanoscale plastic film oil-separating and oxygen-separating layer is a high-barrier stretched plastic film and is purchased from Shanghai Baixin New Material science and technology Co.
In certain embodiments of the utility model, the nanoscale oil-and oxygen-barrier sealant layer has a thickness of 0.1 to 0.4mm. In certain embodiments, the nanoscale oil-and oxygen-barrier sealant layer has a thickness of 0.2mm.
In certain embodiments of the present utility model, the high strength protective layer 7 comprises one of a nonwoven geotextile protective layer, a PE film composite geotextile protective layer, and a woven composite geotextile protective layer.
The non-woven geotextile protective layer is a needled non-woven geotextile; the PE film composite geotextile protective layer is geotextile compounded by needle punched non-woven fabrics and a PE film; the protective layer of the woven composite geotextile is a geotextile which is non-woven and woven composite; all purchased from eastern geomaterial limited.
In certain embodiments of the utility model, the high strength protective layer has a thickness of 1 to 1.5mm. In certain embodiments, the high strength protective layer has a thickness of 1.2mm.
In the utility model, the high-strength protective layer in the waterproof coiled material can ensure that the construction is free from protective layer; the high-strength matrix layer in the waterproof coiled material can perfectly resist the falling force, and the problem that the coiled material vertical wall is difficult to apply is solved due to the stiffness of the material;
what is not described in detail in this specification is prior art known to those skilled in the art.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a scribble roll up and fuse waterproofing membrane, includes barrier film (1), its characterized in that: the creep deformation plastic film (2) is compounded on the isolation film (1), the first mildew-resistant anti-aging layer (3) is compounded on the creep deformation plastic film (2), the high-strength matrix layer (4) is compounded on the first mildew-resistant anti-aging layer (3), the second mildew-resistant anti-aging layer (5) is compounded on the high-strength matrix layer (4), the nanoscale oil-proof oxygen-proof sealing layer (6) is compounded on the second mildew-resistant anti-aging layer (5), and the high-strength protective layer (7) is compounded on the nanoscale oil-proof oxygen-proof sealing layer (6).
2. The roll-up fusion waterproof roll according to claim 1, wherein: the first mildew-resistant and anti-aging layer (3) comprises one of a silver ion mildew-resistant and anti-aging layer, a silver-zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer.
3. The roll-up fusion waterproof roll according to claim 1, wherein: the high-strength carcass layer (4) comprises one of a polyester tire layer, a polyethylene tire layer, a glass fiber tire layer and a glass fiber reinforced polyester tire layer, wherein the polyester tire layer is made of polyester non-woven fabrics, the polyethylene tire layer is made of polyethylene plastic polymer sheets, the glass fiber tire layer is made of glass fiber felt, the glass fiber reinforced polyester tire layer is made of glass fiber polyester felt, and the thickness of the high-strength carcass layer is 0.1-0.3mm.
4. The roll-up fusion waterproof roll according to claim 1, wherein: the second mildew-resistant and anti-aging layer (5) comprises one of a silver ion mildew-resistant and anti-aging layer, a silver zinc composite mildew-resistant and anti-aging layer and a zinc oxide mildew-resistant and anti-aging layer, and the thickness of the second mildew-resistant and anti-aging layer (5) is 0.4-0.8mm.
5. The roll-up fusion waterproof roll according to claim 1, wherein: the nano-scale oil-separation and oxygen-separation sealing layer (6) comprises one of a nano-scale tinfoil oil-separation and oxygen-separation layer, a nano-scale cloth oil-separation and oxygen-separation layer and a nano-scale plastic film oil-separation and oxygen-separation layer, wherein the nano-scale tinfoil oil-separation and oxygen-separation layer is corrugated aluminum foil tinfoil, the nano-scale cloth oil-separation and oxygen-separation layer is an oil-resistant water-repellent fabric, the nano-scale plastic film oil-separation and oxygen-separation layer is a high-barrier tensile plastic film, and the thickness of the nano-scale oil-separation and oxygen-separation sealing layer is 0.1-0.4mm.
6. The roll-up fusion waterproof roll according to claim 1, wherein: the isolating film (1) comprises one of PET isolating film, PE isolating film and aluminum foil isolating film, and the thickness of the isolating film is 0.1-0.3mm.
7. The roll-up fusion waterproof roll according to claim 1, wherein: the high-strength protective layer (7) comprises one of a non-woven geotextile protective layer, a PE film composite geotextile protective layer and a woven composite geotextile protective layer, wherein the non-woven geotextile protective layer is a needled non-woven geotextile, the PE film composite geotextile protective layer is a geotextile composited by needled non-woven fabrics and PE films, the woven composite geotextile protective layer is a non-woven and woven composite geotextile, and the thickness of the high-strength protective layer is 1-1.5mm.
CN202320700166.9U 2023-04-03 2023-04-03 Coating and rolling fusion waterproof coiled material Active CN219792864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320700166.9U CN219792864U (en) 2023-04-03 2023-04-03 Coating and rolling fusion waterproof coiled material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320700166.9U CN219792864U (en) 2023-04-03 2023-04-03 Coating and rolling fusion waterproof coiled material

Publications (1)

Publication Number Publication Date
CN219792864U true CN219792864U (en) 2023-10-03

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