CN213891611U - Oxford cloth for military camouflage net - Google Patents

Oxford cloth for military camouflage net Download PDF

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Publication number
CN213891611U
CN213891611U CN202022054646.1U CN202022054646U CN213891611U CN 213891611 U CN213891611 U CN 213891611U CN 202022054646 U CN202022054646 U CN 202022054646U CN 213891611 U CN213891611 U CN 213891611U
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layer
base cloth
antibacterial
deinsectization
coating
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CN202022054646.1U
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Chinese (zh)
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陈金鹏
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Suzhou Hongxu New Material Technology Co ltd
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Suzhou Hongxu New Material Technology Co ltd
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Priority to CN202022054646.1U priority Critical patent/CN213891611U/en
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Abstract

The utility model relates to an oxford cloth for military camouflage net, which comprises a base cloth layer, a deinsectization antibacterial square layer and a coating layer, wherein the base cloth layer is internally provided with a waterproof unit which is soaked by a waterproof solvent so as to be uniformly distributed in the base cloth layer; the front surface and the back surface of the base cloth layer are connected with deinsectization antibacterial grid layers in a compounding mode, and one surface, far away from the direction of the base cloth layer, of each deinsectization antibacterial grid layer is provided with a printing layer; the coating layer comprises a flame-retardant coating, an infrared hidden layer, a high-temperature resistant layer and a radar-proof coating; the flame-retardant coating is arranged on one surface of the printing layer far away from the direction of the base cloth layer, the infrared hidden layer is arranged on one surface of the printing layer far away from the direction of the base cloth layer, the high-temperature-resistant layer is arranged on one surface of the flame-retardant coating far away from the direction of the base cloth layer, and the lightning-proof coating is arranged on one surface of the high-temperature-resistant layer far away from the direction of the base cloth layer; the utility model discloses satisfied camouflage net and prevented radar, prevent infrared, fire-retardant, high temperature resistant, deinsectization antibiotic, avoided the demand of insect pest.

Description

Oxford cloth for military camouflage net
Technical Field
The utility model relates to an oxford for military use camouflage net belongs to the cloth field.
Background
At present, a camouflage net is an invisible covering used for covering military weapons such as guns, tanks and armored cars or military targets in military, so that the detection effect of enemies is reduced, the probability of being discovered is reduced, and the production capacity of the equipment in modern wars is improved. With the development of detection technology, camouflage net needs to have detection capabilities of protecting ultraviolet rays, visible light, near far infrared rays, radar waves and the like. However, the decoration layer of the existing camouflage net is mostly connected with the grid layer in a sewing mode, only a single environment can be met, and the general purpose is poor.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the purpose is in order to overcome prior art not enough and provide an oxford for military use camouflage net, can prevent radar, prevent infrared, fire-retardant, high temperature resistant, deinsectization antibiotic, avoid the insect pest, strengthen the life of cloth.
In order to achieve the above purpose, the utility model adopts the technical scheme that: the oxford fabric for the military camouflage net comprises a base fabric layer, an insect-killing antibacterial square layer and a coating layer, wherein a waterproof unit is arranged in the base fabric layer, and the waterproof unit is soaked in a waterproof solvent so as to be uniformly distributed in the base fabric layer; the front surface and the back surface of the base cloth layer are connected with deinsectization antibacterial grid layers in a compounding mode, and one surface, far away from the direction of the base cloth layer, of each deinsectization antibacterial grid layer is provided with a printing layer; the coating layer comprises a flame-retardant coating, an infrared hidden layer, a high-temperature-resistant layer and a radar-proof coating; flame retardant coating sets up the one side of base cloth layer direction is kept away from on the stamp layer, the stealthy layer of infrared sets up the one side of base cloth layer direction is kept away from on the stamp layer, high temperature resistant layer sets up the one side of base cloth layer direction is kept away from to flame retardant coating, the lightning protection reaches the coating setting and is in the one side of base cloth layer direction is kept away from on high temperature resistant layer.
Preferably, the base cloth layer is plain weave cloth or twill weave cloth interwoven by taking high-strength polyester filaments as raw materials, and the fineness of the high-strength polyester filaments is 200-250D.
Preferably, the printing layer comprises a first printing layer and a second printing layer, the first printing layer is desert color, and the second printing layer is four-color digital camouflage; the four-color digital camouflage colors are black, dark green, medium green and yellow green from dark to light respectively; the light fastness of the printing layer is more than or equal to 6 grade, the initial color difference is less than or equal to 3 grade, the color difference after 500h artificial weathering is less than or equal to 4 grade, and the color fastness to rubbing is more than or equal to 4 grade.
Preferably, the deinsectization antibacterial square lattice layer comprises longitudinal strips and transverse strips, the longitudinal strips and the transverse strips are woven in a longitudinal and transverse mode to form squares, the thickness of the deinsectization antibacterial square lattice layer is 0.1-0.5 mm, and the side length of each square hole is 20-30 mm; the deinsectization antibacterial grid layer is formed by blending two or more of antibacterial fibers, tea fibers, bamboo fibers and polyester fibers mixed with deinsectization.
Preferably, the gluing amount of the flame-retardant coating is 6-15 g/m2
Preferably, the gluing amount of the infrared hidden layer is 10-30 g/m2
Preferably, the gluing amount of the high-temperature resistant layer is 15-20 g/m2
Preferably, the gluing amount of the anti-radar coating is 15-20 g/m2
Preferably, the weight of the finished product after the oxford fabric is processed is controlled to be 240-280 g/m2
Because of above-mentioned technical scheme's application, compared with the prior art, the utility model have the following advantage:
the oxford cloth for the military camouflage net in the scheme of the utility model can simultaneously meet two operation environments, has small operation amount and is convenient to carry; possess simultaneously and prevent radar, prevent infrared, fire-retardant, high temperature resistant, deinsectization antibiotic, avoid the insect pest, the life of reinforcing cloth, the practicality is stronger.
Drawings
The technical scheme of the utility model is further explained by combining the attached drawings as follows:
FIG. 1 is a cross-sectional view of the present invention;
wherein: 1. a base cloth layer; 2. a deinsectization antibacterial grid layer; 3. a coating layer; 4. a waterproof unit; 5. a flame retardant coating; 6. an infrared hidden layer; 7. a high temperature resistant layer; 8. a radar-proof coating; 9. a first printed layer; 10. and a second printing layer.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1, the first embodiment:
the utility model provides an oxford for military camouflage net, including base cloth layer 1, deinsectization antibiotic check bed 2 and dope layer 3, base cloth layer 1 is plain weave cloth or twill weave cloth that 220D high strength polyester filament interweaves as raw and other materials, be provided with waterproof unit 4 in the base cloth layer 1, thereby waterproof unit 4 soaks through waterproof solvent and evenly distributes in base cloth layer 1; the front surface and the back surface of the base cloth layer 1 are connected with deinsectization antibacterial square lattice layers 2 in a compounding mode, each deinsectization antibacterial square lattice layer 2 comprises longitudinal strips and transverse strips, the longitudinal strips and the transverse strips are woven in a longitudinal and transverse mode to form a square, the thickness of each deinsectization antibacterial square lattice layer 2 is 0.2mm, and the side length of each square hole is 20 mm; the deinsectization antibacterial grid layer 2 is formed by blending antibacterial fibers and bamboo fibers; a printing layer is arranged on one surface of the deinsectization antibacterial square lattice layer 2 far away from the direction of the base cloth layer 1; the printing layer comprises a first printing layer 9 and a second printing layer 10, wherein the first printing layer 9 is in desert color, and the second printing layer 10 is four-color digital camouflage.
The coating layer 3 comprises a flame-retardant coating 5, an infrared hidden layer 6, a high-temperature-resistant layer 7 and a radar-proof coating 8; the flame-retardant coating 5 is arranged on one surface of the printing layer far away from the direction of the base cloth layer 1, and the flame-retardant coating 5 is arranged onThe glue amount is 6g/m2(ii) a The infrared hidden layer 6 is arranged on one surface of the printing layer far away from the base cloth layer 1, and the gluing amount of the infrared hidden layer 6 is 10g/m2(ii) a The high-temperature resistant layer 7 is arranged on one surface of the flame-retardant coating 5 far away from the direction of the base cloth layer 1, and the gluing amount of the high-temperature resistant layer 7 is 15g/m2(ii) a The radar-proof coating 8 is arranged on one surface of the high-temperature-resistant layer 7 far away from the direction of the base cloth layer 1, and the gluing amount of the radar-proof coating 8 is 15g/m2
Please refer to fig. 1, embodiment two:
the utility model provides an oxford for military camouflage net of the utility model provides a scheme, including base cloth layer 1, deinsectization antibiotic check bed 2 and dope layer 3, base cloth layer 1 is plain weave cloth or twill weave cloth that 250D high strength polyester filament interweaves as raw and other materials, be provided with waterproof unit 4 in the base cloth layer 1, thereby waterproof unit 4 evenly distributes in base cloth layer 1 through waterproof solvent soaking; the front surface and the back surface of the base cloth layer 1 are connected with deinsectization antibacterial square lattice layers 2 in a compounding mode, each deinsectization antibacterial square lattice layer 2 comprises longitudinal strips and transverse strips, the longitudinal strips and the transverse strips are woven in a longitudinal and transverse mode to form a square, the thickness of each deinsectization antibacterial square lattice layer 2 is 0.4mm, and the side length of each square hole is 30 mm; the deinsectization antibacterial grid layer 2 is formed by blending antibacterial fibers and polyester fibers mixed with deinsectization; a printing layer is arranged on one surface of the deinsectization antibacterial square lattice layer 2 far away from the direction of the base cloth layer 1; the printing layer comprises a first printing layer (9) and a second printing layer 10. the first printing layer 9 is desert color, and the second printing layer 10 is four-color digital camouflage.
The coating layer 3 comprises a flame-retardant coating 5, an infrared hidden layer 6, a high-temperature-resistant layer 7 and a radar-proof coating 8; the flame-retardant coating 5 is arranged on one surface of the printing layer far away from the direction of the base cloth layer 1, and the gluing amount of the flame-retardant coating 5 is 5g/m2(ii) a The infrared hidden layer 6 is arranged on one surface of the printing layer far away from the base cloth layer 1, and the gluing amount of the infrared hidden layer 6 is 15g/m2(ii) a The high-temperature resistant layer 7 is arranged on one surface of the flame-retardant coating 5 far away from the direction of the base cloth layer 1, and the gluing amount of the high-temperature resistant layer 7 is 20g/m2(ii) a The radar-proof coating 8 is arranged on the weather-proof layerThe high-temperature layer 7 is far away from one surface of the base cloth layer 1, and the gluing amount of the radar-proof coating 8 is 20g/m2
The above is only a specific application example of the present invention, and does not constitute any limitation to the protection scope of the present invention. All the technical solutions formed by equivalent transformation or equivalent replacement fall within the protection scope of the present invention.

Claims (9)

1. The utility model provides an oxford for military camouflage net which characterized in that: the insect-killing antibacterial waterproof cloth comprises a base cloth layer (1), an insect-killing antibacterial grid layer (2) and a coating layer (3), wherein a waterproof unit (4) is arranged in the base cloth layer (1), and the waterproof unit (4) is soaked in a waterproof solvent and is uniformly distributed in the base cloth layer (1); the front surface and the back surface of the base cloth layer (1) are connected with deinsectization antibacterial grid layers (2) in a compounding mode, and a printing layer is arranged on one surface, away from the direction of the base cloth layer (1), of each deinsectization antibacterial grid layer (2); the coating layer (3) comprises a flame-retardant coating (5), an infrared hidden layer (6), a high-temperature-resistant layer (7) and a radar-proof coating (8); flame retardant coating (5) set up the one side of base cloth layer (1) orientation is kept away from on the stamp layer, infrared stealthy layer (6) set up the one side of base cloth layer (1) orientation is kept away from on the stamp layer, high temperature resistant layer (7) set up the one side of base cloth layer (1) orientation is kept away from in flame retardant coating (5), the lightning protection reaches coating (8) and sets up the one side of base cloth layer (1) orientation is kept away from in high temperature resistant layer (7).
2. The oxford fabric for military camouflage netting of claim 1, wherein: the base cloth layer (1) is plain weave cloth or twill weave cloth formed by interweaving high-strength polyester filaments serving as raw materials, and the fineness of the high-strength polyester filaments is 200-250D.
3. The oxford fabric for military camouflage netting of claim 1, wherein: the printing layer comprises a first printing layer (9) and a second printing layer (10), the first printing layer (9) is desert color, and the second printing layer (10) is four-color digital camouflage; the four-color digital camouflage colors are black, dark green, medium green and yellow green from dark to light respectively; the light fastness of the printing layer is more than or equal to 6 grade, the initial color difference is less than or equal to 3 grade, the color difference after 500h artificial weathering is less than or equal to 4 grade, and the color fastness to rubbing is more than or equal to 4 grade.
4. The oxford fabric for military camouflage netting of claim 1, wherein: the deinsectization antibacterial square lattice layer (2) comprises longitudinal strips and transverse strips, the longitudinal strips and the transverse strips are woven in a longitudinal and transverse mode to form squares, the thickness of the deinsectization antibacterial square lattice layer (2) is 0.1-0.5 mm, and the side length of square holes is 20-30 mm; the deinsectization antibacterial grid layer (2) is formed by blending two or more of antibacterial fibers, tea fibers, bamboo fibers and polyester fibers mixed with deinsectization.
5. The oxford fabric for military camouflage netting of claim 1, wherein: the gluing amount of the flame-retardant coating (5) is 6-15 g/m2
6. The oxford fabric for military camouflage netting of claim 1, wherein: the gluing amount of the infrared hidden layer (6) is 10-30 g/m2
7. The oxford fabric for military camouflage netting of claim 1, wherein: the gluing amount of the high-temperature resistant layer (7) is 15-20 g/m2
8. The oxford fabric for military camouflage netting of claim 1, wherein: the gluing amount of the anti-radar coating (8) is 15-20 g/m2
9. The oxford fabric for military camouflage netting of claim 1, wherein: the weight of the finished product after the oxford fabric is processed is controlled to be 240-280 g/m2
CN202022054646.1U 2020-09-18 2020-09-18 Oxford cloth for military camouflage net Active CN213891611U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022054646.1U CN213891611U (en) 2020-09-18 2020-09-18 Oxford cloth for military camouflage net

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022054646.1U CN213891611U (en) 2020-09-18 2020-09-18 Oxford cloth for military camouflage net

Publications (1)

Publication Number Publication Date
CN213891611U true CN213891611U (en) 2021-08-06

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022054646.1U Active CN213891611U (en) 2020-09-18 2020-09-18 Oxford cloth for military camouflage net

Country Status (1)

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CN (1) CN213891611U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113756114A (en) * 2021-09-30 2021-12-07 山东非金属材料研究所 Northern forest land type digital camouflage tarpaulin and preparation method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113756114A (en) * 2021-09-30 2021-12-07 山东非金属材料研究所 Northern forest land type digital camouflage tarpaulin and preparation method thereof
CN113756114B (en) * 2021-09-30 2023-08-15 山东非金属材料研究所 North woodland type digital camouflage tarpaulin and preparation method thereof

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