CN217757843U - Terylene yarn microwave radiation prevention fabric - Google Patents

Terylene yarn microwave radiation prevention fabric Download PDF

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Publication number
CN217757843U
CN217757843U CN202121998473.7U CN202121998473U CN217757843U CN 217757843 U CN217757843 U CN 217757843U CN 202121998473 U CN202121998473 U CN 202121998473U CN 217757843 U CN217757843 U CN 217757843U
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weft
coil
radiation
main coil
microwave
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CN202121998473.7U
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Chinese (zh)
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洪炼培
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Yongyi Fujian Chemical Fiber Co ltd
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Yongyi Fujian Chemical Fiber Co ltd
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Abstract

The utility model relates to a dacron silk surface fabric especially relates to a dacron silk microwave radiation prevention surface fabric, which comprises a body, the shaping is woven to the form that the body passes through the weft knitting, the body is including first weft, second weft, the third weft that weaves in proper order, first weft is dacron silk fibre or cotton fiber, second weft is silvery polyester fiber, third weft includes the heart yearn and encircles cotton fiber silk, the bamboo charcoal fiber silk on the heart yearn, first weft includes first left coil, first main coil, the first right coil that the warp direction distributes, second weft includes second left coil, second main coil, the right coil of second that the warp direction distributes, third weft includes the left coil of third, third main coil, the right coil of third that the warp direction distributes. The radiation-proof fabric solves the technical problems that the existing radiation-proof fabric is relatively poor in comfort and wearing comfort.

Description

Terylene yarn microwave radiation prevention fabric
Technical Field
The utility model relates to a polyester yarn surface fabric especially relates to a polyester yarn anti-microwave radiation surface fabric.
Background
Chinese patent application No.: CN202010180871.1 discloses a microwave protection fabric, a preparation method thereof and microwave protection clothes. The double-layer fabric is woven by the design idea of double metal fiber yarn mixed weaving and the weaving process method of 'connecting down and connecting up', the average shielding performance of the response frequency range of microwave protection is greatly expanded, the effective shielding frequency range is expanded to the level of hundreds of MHz at the low frequency end, the high frequency end is suitable for dozens of GHz, the frequency range span is 3-4 orders of magnitude, 1-2 orders of magnitude are improved compared with the common cloth of single metal fiber, and meanwhile, the average shielding performance and the frequency response flatness are also obviously improved. And solves the problems of improving the fracture strength, dyeing and the like.
The existing radiation-proof fabric generally can basically ensure the effective radiation-proof effect, but the existing radiation-proof fabric is often poor in comfort and poor in wearing comfort.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a microwave radiation surface fabric is prevented to dacron silk, it has solved relatively poor on the current radiation protection surface fabric travelling comfort, the relatively poor technical problem of travelling comfort of dress.
In order to achieve the above purpose, the technical scheme of the utility model is that: the body is formed by weaving in a weft knitting mode, the body comprises a first weft, a second weft and a third weft which are woven in sequence, the first weft is polyester fiber or cotton fiber, the second weft is silver-plated polyester fiber, the third weft comprises a core wire, and cotton fiber and bamboo charcoal fiber which surround the core wire, the first weft comprises a first left coil, a first main coil and a first right coil which are distributed in the warp direction, the second weft comprises a second left coil, a second main coil and a second right coil which are distributed in the warp direction, the third weft comprises a third left coil, a third main coil and a third right coil which are distributed in the warp direction, the third left coil, the second left coil and the first left coil are sequentially sleeved, the third right coil, the second right coil and the first right coil are sequentially sleeved, the third main coil is sleeved on the first main coil, and the second weft is flat and straight.
Further, the second main coil is positioned above the third main coil.
Further, the first weft is 167D/72F.
Furthermore, nano zinc oxide particles are adhered to the third weft.
Furthermore, each nano zinc oxide particle is arranged in the middle of the third left coil and/or the third main coil and/or the third right coil.
Furthermore, the nano zinc oxide particles are coated outside the third weft.
Further, the core wire is a copper wire.
The technical scheme has the following beneficial effects:
1. this scheme is through polyester fiber or cotton fiber as first weft, through heart yearn and the cotton fiber silk of surrounding on the heart yearn, bamboo charcoal fiber silk is as the third weft, through silvered polyester fiber as the second weft, and through first, second, the shaping is woven in the weft knitting realization of third weft, more stable connection structure can be realized to such a mode of weaving, and cup joint in first main coil through the third main coil, second main coil becomes straight form, can form the wire jumper, make the surface of fabric form the texture form of rule. And the third weft adopts cotton fiber silk, carbon fiber silk as the cladding of heart yearn, can make the surface fabric have partial antibiotic purpose to possess better soft effect, and can increase crease resistance, the elasticity performance of surface fabric when first weft adopts the polyester fiber fibre, and adopt cotton fiber can increase the softness performance of surface fabric.
2. The second main coil is positioned above the third main coil, so that better knitting stability can be realized.
3. The arrangement of the nano zinc oxide particles can enable the fabric to have about antibacterial, bacteriostatic and deodorizing performances.
4. And each nano zinc oxide particle is arranged in the middle of the third left coil and/or the third main coil and/or the third right coil, so that the friction of the particles caused by weaving can be effectively avoided, and the damage of the particles is reduced. And the nano zinc oxide particles are coated outside the third weft, each nano zinc oxide particle is in an oval shape, and the diameter of the largest cross section of each nano zinc oxide particle is 2-4 times of the diameter of the third weft.
5. In order to improve the purposes of radiation protection and static resistance, the core wire is arranged to be a copper wire, and the effect is better.
Drawings
Fig. 1 is a schematic diagram of the weaving structure of the present invention;
fig. 2 is a schematic view of the structure of the third weft.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1 and 2, the microwave radiation preventing fabric for the polyester yarn provided by the embodiment includes a body, the body is formed by weft knitting, the body includes a first weft 1, a second weft 2 and a third weft 3 which are knitted in sequence, the first weft 1 is polyester fiber or cotton fiber, the second weft 2 is silver-plated polyester fiber, the third weft 3 includes a core wire 3a, and cotton fiber wires 3b and bamboo charcoal fiber wires 3c which are wound around the core wire, the first weft 1 includes a first left coil 11, a first main coil 12 and a first right coil 13 which are distributed in a warp direction, the second weft 2 includes a second left coil 21, a second main coil 22 and a second right coil 23 which are distributed in the warp direction, the third weft 3 includes a third left coil 31, a third main coil 32 and a third right coil 33 which are distributed in the warp direction, the third left coil 31, the second left coil 21 and the first left coil 11 are sleeved in sequence, the third right coil 33, the second right coil 23 and the first main coil 13 are sleeved in a straight shape, and the third right coil 23 and the first coil 12 and the second right coil are sleeved in a straight shape. The second primary winding 22 is located above the third primary winding 32.
The first weft threads 1 are 167D/72F.
Nanometer zinc oxide particles 4 are adhered to the third weft threads 3. Each nano zinc oxide particle 4 is arranged in the middle of the third left coil 31, the third main coil 32 and the third right coil 33. The nano zinc oxide particles 4 are coated outside the third wefts 3. The core wire 3a is a copper wire.
The technical scheme has the following beneficial effects:
1. this scheme is through polyester fiber or cotton fiber as first weft, through heart yearn and the cotton fiber silk of surrounding on the heart yearn, bamboo charcoal fiber silk is as the third weft, through silvered polyester fiber as the second weft, and through first, second, the shaping is woven in the weft knitting realization of third weft, more stable connection structure can be realized to such a mode of weaving, and cup joint in first main coil through the third main coil, second main coil becomes straight form, can form the wire jumper, make the surface of fabric form the texture form of rule. And the third weft adopts cotton fiber silk, carbon fiber silk as the cladding of heart yearn, can make the surface fabric have partial antibiotic purpose to possess better soft effect, and can increase crease resistance, the elasticity performance of surface fabric when first weft adopts the polyester fiber fibre, and adopt cotton fiber can increase the softness performance of surface fabric.
2. The second main coil is positioned above the third main coil, so that better knitting stability can be realized.
3. The arrangement of the nano zinc oxide particles can enable the fabric to have about antibacterial, bacteriostatic and deodorizing performances.
4. And each nano zinc oxide particle is arranged in the middle of the third left coil and/or the third main coil and/or the third right coil, so that the friction of the particles caused by weaving can be effectively avoided, and the damage of the particles is reduced. And the nano zinc oxide particles are coated outside the third weft, each nano zinc oxide particle is in an elliptical shape, and the diameter of the largest cross section of each nano zinc oxide particle is 2-4 times of the diameter of the third weft.
5. In order to improve the purposes of radiation protection and static resistance, the core wire is arranged as a copper wire, so that the effect is better.
The above is only a preferred embodiment of the present invention, and all changes that can be made by those skilled in the art according to the appended claims will fall within the scope of the present invention.

Claims (7)

1. The polyester yarn microwave radiation preventing fabric is characterized in that: the weft comprises a body, the body is woven and formed in a weft knitting mode, the body comprises a first weft, a second weft and a third weft which are woven in sequence, the first weft is polyester fiber or cotton fiber, the second weft is silver-plated polyester fiber, the third weft comprises a core wire, and cotton fiber and bamboo charcoal fiber which surround the core wire, the first weft comprises a first left coil, a first main coil and a first right coil which are distributed in the warp direction, the second weft comprises a second left coil, a second main coil and a second right coil which are distributed in the warp direction, the third weft comprises a third left coil, a third main coil and a third right coil which are distributed in the warp direction, the third left coil, the second left coil and the first left coil are sequentially sleeved, the third right coil, the second right coil and the first right coil are sequentially sleeved, the third main coil is sleeved on the first main coil, and the second main coil is straight.
2. The polyester yarn microwave-radiation-proof fabric according to claim 1, characterized in that: the second main coil is positioned above the third main coil.
3. The polyester yarn microwave-radiation-proof fabric according to claim 1, characterized in that: the first weft is 167D/72F.
4. The polyester yarn microwave-radiation-proof fabric according to claim 1, characterized in that: and nano zinc oxide particles are adhered to the third weft.
5. The microwave radiation prevention polyester yarn fabric according to claim 4, wherein the microwave radiation prevention polyester yarn fabric is characterized in that: and each nano zinc oxide particle is arranged in the middle of the third left coil and/or the third main coil and/or the third right coil.
6. The polyester yarn microwave-radiation-proof fabric according to claim 4, characterized in that: and the nano zinc oxide particles are coated outside the third weft.
7. The polyester yarn microwave-radiation-proof fabric according to claim 4, characterized in that: the core wire is a copper wire.
CN202121998473.7U 2021-08-24 2021-08-24 Terylene yarn microwave radiation prevention fabric Active CN217757843U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121998473.7U CN217757843U (en) 2021-08-24 2021-08-24 Terylene yarn microwave radiation prevention fabric

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121998473.7U CN217757843U (en) 2021-08-24 2021-08-24 Terylene yarn microwave radiation prevention fabric

Publications (1)

Publication Number Publication Date
CN217757843U true CN217757843U (en) 2022-11-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121998473.7U Active CN217757843U (en) 2021-08-24 2021-08-24 Terylene yarn microwave radiation prevention fabric

Country Status (1)

Country Link
CN (1) CN217757843U (en)

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