CN112026302A - Composite fabric for manufacturing travel luggage and processing technology thereof - Google Patents

Composite fabric for manufacturing travel luggage and processing technology thereof Download PDF

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Publication number
CN112026302A
CN112026302A CN202010916100.4A CN202010916100A CN112026302A CN 112026302 A CN112026302 A CN 112026302A CN 202010916100 A CN202010916100 A CN 202010916100A CN 112026302 A CN112026302 A CN 112026302A
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CN
China
Prior art keywords
layer
waterproof
antibacterial
manufacturing
processing technology
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202010916100.4A
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Chinese (zh)
Inventor
许道溪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhejiang Hongyi Cases Leather Co ltd
Original Assignee
Zhejiang Hongyi Cases Leather Co ltd
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Publication date
Application filed by Zhejiang Hongyi Cases Leather Co ltd filed Critical Zhejiang Hongyi Cases Leather Co ltd
Priority to CN202010916100.4A priority Critical patent/CN112026302A/en
Publication of CN112026302A publication Critical patent/CN112026302A/en
Pending legal-status Critical Current

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    • B32B5/02Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by structural features of a fibrous or filamentary layer
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    • D06N3/00Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof
    • D06N3/18Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof with two layers of different macromolecular materials
    • D06N3/183Artificial leather, oilcloth or other material obtained by covering fibrous webs with macromolecular material, e.g. resins, rubber or derivatives thereof with two layers of different macromolecular materials the layers are one next to the other
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
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    • D06N7/00Flexible sheet materials not otherwise provided for, e.g. textile threads, filaments, yarns or tow, glued on macromolecular material
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    • D06N2209/00Properties of the materials
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    • D06N2209/1678Resistive to light or to UV

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Inorganic Chemistry (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Laminated Bodies (AREA)
  • Treatments For Attaching Organic Compounds To Fibrous Goods (AREA)
  • Purses, Travelling Bags, Baskets, Or Suitcases (AREA)

Abstract

The invention discloses a composite fabric for manufacturing a travel suitcase and a processing technology thereof, the composite fabric comprises a nylon cloth base layer, a first antibacterial layer and a second antibacterial layer are respectively compounded on the two side surfaces of the nylon cloth base layer, an anti-ultraviolet layer is fixedly coated on the other side surface of the first antibacterial layer, a first waterproof layer is fixedly coated on the other side surface of the anti-ultraviolet layer in an immersion manner, a smooth coating is evaporated on the surface of the first waterproof layer, a second waterproof layer is fixedly coated on the other side surface of the second antibacterial layer in an immersion manner, an adhesive layer is fixedly coated on the other side surface of the second waterproof layer, a flame-retardant layer is fixedly adhered on the surface of the second adhesive layer, a polyurethane protective layer is fixedly compounded on the other side surface of the flame-retardant layer, the nylon cloth base layer is prepared by blending a plurality of fibers, the structural strength is ensured, the surface hardness can, the safety, stability and aesthetic property of use are ensured, and the production, the manufacture, the popularization and the use are facilitated.

Description

Composite fabric for manufacturing travel luggage and processing technology thereof
Technical Field
The invention relates to the technical field of case fabrics, in particular to a composite fabric for manufacturing a travel case and a processing technology thereof.
Background
In the current social life, travel bags are widely used, some cases are made of plastics, and some cases are shaped by adopting composite fabrics, wherein the fabrics are beneficial to cutting and sewing, so that the travel bags are widely used.
But the compound surface fabric structure of current case and bag is many directly at the multiple material of cloth basic unit surface coating design, and the structural strength angle of basic unit not only like this, and compound stability is relatively poor moreover, and easy fracture is peeled off, has reduced its antibiotic and fire behaviour, and simultaneously the surface strength angle is easy damaged or the fish tail after the surface fabric makes the case and bag, influences pleasing to the eye, awaits improving.
Disclosure of Invention
The invention aims to solve the defects in the prior art and provides a composite fabric for manufacturing a travel suitcase and a processing technology thereof.
In order to achieve the purpose, the invention adopts the following technical scheme:
a composite fabric for manufacturing a travel suitcase and a processing technology thereof comprise a nylon fabric base layer, wherein a first antibacterial layer and a second antibacterial layer are respectively compounded on the surfaces of two sides of the nylon fabric base layer, an anti-ultraviolet layer is fixedly coated on the surface of the other side of the first antibacterial layer, a first waterproof layer is fixedly coated on the surface of the other side of the anti-ultraviolet layer in an immersed manner, a smooth coating is evaporated on the surface of the first waterproof layer, a second waterproof layer is fixedly coated on the surface of the other side of the second antibacterial layer in an immersed manner, an adhesive layer is fixedly coated on the surface of the other side of the second waterproof layer, a flame-retardant layer is fixedly adhered on the surface of the second adhesive layer, and a polyurethane protective layer is fixedly compounded on the surface of.
Preferably, the nylon cloth base layer is made of nylon fibers, Kevlar fibers and polyester fibers in a blending mode, and the thickness of the nylon cloth base layer is 0.8 mm to 1.2 mm.
Preferably, the first antibacterial layer and the second antibacterial layer are formed by solidifying spraying antibacterial liquid.
Preferably, the first waterproof layer and the second waterproof layer are formed by solidifying infiltration waterproof glue.
Preferably, the flame-retardant layer is made of aluminum hydroxide particles by tiling, and the thickness is 0.3 mm to 0.5 mm.
Preferably, the polyurethane protective layer is formed by hot melting, laminating, placing and fixing.
Preferably, the processing technology comprises the following steps:
s1, selecting nylon fibers, Kevlar fibers and polyester fibers, and blending by using a blending loom according to the ratio of 5:2:1 to prepare a nylon fabric base layer;
s2, spreading the nylon cloth base layer by adopting double rows of rollers, synchronously spraying antibacterial liquid on two sides, and naturally drying to form a first antibacterial layer and a second antibacterial layer;
s3, coating an anti-ultraviolet layer on the surface of the first antibacterial layer, drying and shaping to obtain a blank;
s4, weighing 10-20% of polyvinyl ether, 5-8% of stearic acid, 10-20% of glycerol, 30-40% of acrylic resin, 1-3% of potassium hydroxide, 5-8% of methacrylic acid and 20-50% of alcohol according to mass percentage, and uniformly mixing to prepare waterproof liquid;
s5, putting the blank into waterproof liquid, soaking for 3 to 5 hours, taking out, and drying for 30 to 40 minutes at 50 to 70 ℃ to form a first waterproof layer and a second waterproof layer;
s6, coating polypropylene on the surface of the second waterproof layer to form an adhesive layer, and uniformly paving aluminum hydroxide particles to form a flame-retardant layer to prepare a base material;
s7, placing the base material on a hot-melting roller, and hot-melting and pressing the polyurethane film to form a polyurethane protective layer to prepare a basic fabric;
s8, cutting and sewing the basic fabric, shaping to form a bag structure, and finally evaporating to form a smooth coating on the surface of the first waterproof layer to finish the manufacturing of the composite fabric.
According to the composite fabric for manufacturing the travel suitcase and the processing technology thereof, the nylon cloth base layer is manufactured by blending multiple fibers, the structural strength is ensured, the waterproof layer and the antibacterial layer are respectively compounded by multiple compounding modes, the uniformity and the compactness of two sides are ensured, the peeling is avoided, the structural stability is improved, meanwhile, a smooth coating is formed by evaporation after the sizing, the surface hardness can be effectively improved, the scratch and the stain are reduced, the safety stability and the attractiveness in use are ensured, and the production, the manufacturing, the popularization and the use are facilitated.
Drawings
FIG. 1 is a schematic cross-section of a fabric of the present invention.
In the figure: the coating comprises a nylon cloth base layer 1, a first antibacterial layer 11, a second antibacterial layer 12, an ultraviolet-resistant layer 13, a first waterproof layer 14, a smooth coating layer 15, a second waterproof layer 16, an adhesive layer 17, a flame-retardant layer 18 and a polyurethane protective layer 19.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example 1
The composite fabric for manufacturing the traveling case comprises a nylon cloth base layer 1, wherein a first antibacterial layer 11 and a second antibacterial layer 12 are compounded on the two side surfaces of the nylon cloth base layer 1 respectively, an ultraviolet-resistant layer 13 is fixedly coated on the other side surface of the first antibacterial layer 11, a first waterproof layer 14 is fixedly coated on the other side surface of the ultraviolet-resistant layer 13 in an immersed manner, a smooth coating layer 15 is evaporated on the surface of the first waterproof layer 14, a second waterproof layer 16 is fixedly coated on the other side surface of the second antibacterial layer 12 in an immersed manner, an adhesive layer 17 is fixedly coated on the other side surface of the second waterproof layer 16, a flame-retardant layer 18 is fixedly adhered to the surface of the second adhesive layer 17, and a polyurethane protective layer 19 is fixedly compounded on the other side surface of the flame-retardant.
Preferably, the nylon cloth base layer 1 is made of nylon fibers, Kevlar fibers and polyester fibers in a blending mode, and the thickness of the nylon cloth base layer is 0.8 mm to 1.2 mm.
Preferably, the first antibacterial layer 11 and the second antibacterial layer 12 are formed by solidifying a sprayed antibacterial solution.
Preferably, the first waterproof layer 14 and the second waterproof layer 16 are formed by solidifying wet waterproof glue.
Preferably, the flame retardant layer 18 is made of flat aluminum hydroxide particles and has a thickness of 0.3 mm to 0.5 mm.
Preferably, the polyurethane protective layer 19 is formed by hot-melt pressing, placing and fixing.
Preferably, the processing technology comprises the following steps:
s1, selecting nylon fibers, Kevlar fibers and polyester fibers, and blending by using a blending loom according to the ratio of 5:2:1 to prepare a nylon fabric base layer;
s2, spreading the nylon cloth base layer by adopting double rows of rollers, synchronously spraying antibacterial liquid on two sides, and naturally drying to form a first antibacterial layer and a second antibacterial layer;
s3, coating an anti-ultraviolet layer on the surface of the first antibacterial layer, drying and shaping to obtain a blank;
s4, weighing 10% of polyvinyl ether, 5% of stearic acid, 20% of glycerol, 30% of acrylic resin, 2% of potassium hydroxide, 8% of methacrylic acid and 25% of alcohol according to mass percentage, and uniformly mixing to prepare a waterproof liquid;
s5, putting the blank into waterproof liquid, soaking for 3 to 5 hours, taking out, and drying for 30 to 40 minutes at 50 to 70 ℃ to form a first waterproof layer and a second waterproof layer;
s6, coating polypropylene on the surface of the second waterproof layer to form an adhesive layer, and uniformly paving aluminum hydroxide particles to form a flame-retardant layer to prepare a base material;
s7, placing the base material on a hot-melting roller, and hot-melting and pressing the polyurethane film to form a polyurethane protective layer to prepare a basic fabric;
s8, cutting and sewing the basic fabric, shaping to form a bag structure, and finally evaporating to form a smooth coating on the surface of the first waterproof layer to finish the manufacturing of the composite fabric.
Example 2
The composite fabric for manufacturing the traveling case comprises a nylon cloth base layer 1, wherein a first antibacterial layer 11 and a second antibacterial layer 12 are compounded on the two side surfaces of the nylon cloth base layer 1 respectively, an ultraviolet-resistant layer 13 is fixedly coated on the other side surface of the first antibacterial layer 11, a first waterproof layer 14 is fixedly coated on the other side surface of the ultraviolet-resistant layer 13 in an immersed manner, a smooth coating layer 15 is evaporated on the surface of the first waterproof layer 14, a second waterproof layer 16 is fixedly coated on the other side surface of the second antibacterial layer 12 in an immersed manner, an adhesive layer 17 is fixedly coated on the other side surface of the second waterproof layer 16, a flame-retardant layer 18 is fixedly adhered to the surface of the second adhesive layer 17, and a polyurethane protective layer 19 is fixedly compounded on the other side surface of the flame-retardant.
Preferably, the nylon cloth base layer 1 is made of nylon fibers, Kevlar fibers and polyester fibers in a blending mode, and the thickness of the nylon cloth base layer is 0.8 mm to 1.2 mm.
Preferably, the first antibacterial layer 11 and the second antibacterial layer 12 are formed by solidifying a sprayed antibacterial solution.
Preferably, the first waterproof layer 14 and the second waterproof layer 16 are formed by solidifying wet waterproof glue.
Preferably, the flame retardant layer 18 is made of flat aluminum hydroxide particles and has a thickness of 0.3 mm to 0.5 mm.
Preferably, the polyurethane protective layer 19 is formed by hot-melt pressing, placing and fixing.
Preferably, the processing technology comprises the following steps:
s1, selecting nylon fibers, Kevlar fibers and polyester fibers, and blending by using a blending loom according to the ratio of 5:2:1 to prepare a nylon fabric base layer;
s2, spreading the nylon cloth base layer by adopting double rows of rollers, synchronously spraying antibacterial liquid on two sides, and naturally drying to form a first antibacterial layer and a second antibacterial layer;
s3, coating an anti-ultraviolet layer on the surface of the first antibacterial layer, drying and shaping to obtain a blank;
s4, weighing 20% of polyvinyl ether, 8% of stearic acid, 10% of glycerol, 20% of acrylic resin, 1% of potassium hydroxide, 6% of methacrylic acid and 35% of alcohol according to mass percentage, and uniformly mixing to prepare a waterproof liquid;
s5, putting the blank into waterproof liquid, soaking for 3 to 5 hours, taking out, and drying for 30 to 40 minutes at 50 to 70 ℃ to form a first waterproof layer and a second waterproof layer;
s6, coating polypropylene on the surface of the second waterproof layer to form an adhesive layer, and uniformly paving aluminum hydroxide particles to form a flame-retardant layer to prepare a base material;
s7, placing the base material on a hot-melting roller, and hot-melting and pressing the polyurethane film to form a polyurethane protective layer to prepare a basic fabric;
s8, cutting and sewing the basic fabric, shaping to form a bag structure, and finally evaporating to form a smooth coating on the surface of the first waterproof layer to finish the manufacturing of the composite fabric.

Claims (7)

1. The composite fabric for manufacturing the travel suitcase comprises a nylon cloth base layer (1) and is characterized in that: the nylon fabric base layer comprises a nylon fabric base layer (1), and is characterized in that a first antibacterial layer (11) and a second antibacterial layer (12) are compounded on the surfaces of two sides of the nylon fabric base layer (1) respectively, an anti-ultraviolet layer (13) is fixedly coated on the surface of the other side of the first antibacterial layer (11), a first waterproof layer (14) is fixedly coated on the surface of the other side of the anti-ultraviolet layer (13) in an immersion mode, a smooth coating layer (15) is vapor-plated on the surface of the first waterproof layer (14), a second waterproof layer (16) is fixedly coated on the surface of the other side of the second antibacterial layer (12) in an immersion mode, an adhesive layer (17) is fixedly coated on the surface of the other side of the second waterproof layer (16), a flame-retardant layer (18) is fixedly bonded on the surface of the second adhesive.
2. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the nylon cloth base layer (1) is made of nylon fibers, Kevlar fibers and polyester fibers in a blending mode, and the thickness of the nylon cloth base layer is 0.8 mm-1.2 mm.
3. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the first antibacterial layer (11) and the second antibacterial layer (12) are formed by solidifying spraying antibacterial liquid.
4. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the first waterproof layer (14) and the second waterproof layer (16) are formed by adopting infiltration waterproof glue to solidify.
5. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the flame-retardant layer (18) is made by tiling aluminum hydroxide particles, and the thickness is 0.3 mm to 0.5 mm.
6. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the polyurethane protective layer (19) is formed by hot melting, laminating, placing and fixing.
7. The composite fabric for manufacturing the travel suitcase and the processing technology thereof according to the claim 1 are characterized in that: the processing technology comprises the following steps:
s1, selecting nylon fibers, Kevlar fibers and polyester fibers, and blending by using a blending loom according to the ratio of 5:2:1 to prepare a nylon fabric base layer;
s2, spreading the nylon cloth base layer by adopting double rows of rollers, synchronously spraying antibacterial liquid on two sides, and naturally drying to form a first antibacterial layer and a second antibacterial layer;
s3, coating an anti-ultraviolet layer on the surface of the first antibacterial layer, drying and shaping to obtain a blank;
s4, weighing 10-20% of polyvinyl ether, 5-8% of stearic acid, 10-20% of glycerol, 30-40% of acrylic resin, 1-3% of potassium hydroxide, 5-8% of methacrylic acid and 30-50% of alcohol according to mass percentage, and uniformly mixing to prepare waterproof liquid;
s5, putting the blank into waterproof liquid, soaking for 3 to 5 hours, taking out, and drying for 30 to 40 minutes at 50 to 70 ℃ to form a first waterproof layer and a second waterproof layer;
s6, coating polypropylene on the surface of the second waterproof layer to form an adhesive layer, and uniformly paving aluminum hydroxide particles to form a flame-retardant layer to prepare a base material;
s7, placing the base material on a hot-melting roller, and hot-melting and pressing the polyurethane film to form a polyurethane protective layer to prepare a basic fabric;
s8, cutting and sewing the basic fabric, shaping to form a bag structure, and finally evaporating to form a smooth coating on the surface of the first waterproof layer to finish the manufacturing of the composite fabric.
CN202010916100.4A 2020-09-03 2020-09-03 Composite fabric for manufacturing travel luggage and processing technology thereof Pending CN112026302A (en)

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