专利 已注册

NON-WOVEN INSULATING FIRE- RESISTANT MATERIAL FOR CLOTHING

专利「NON-WOVEN INSULATING FIRE- RESISTANT MATERIAL FOR CLOTHING」由 OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOST'YU ''FABRIKA NETKANYH MATERIALOV ''WES MIR" 持有,当前状态为已注册,申请号 E/71。LaoBiz 老商通提供老挝知识产权信息检索与企业关联查询。

Patent “NON-WOVEN INSULATING FIRE- RESISTANT MATERIAL FOR CLOTHING” is held by OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOST'YU ''FABRIKA NETKANYH MATERIALOV ''WES MIR"; status: 已注册. Search Laos IP records on LaoBiz.

申请号 E/71
申请日期 2018-12-26
注册/授权日 2022-06-24
申请人 OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOST'YU ''FABRIKA NETKANYH MATERIALOV ''WES MIR"
代理机构 IPath Consult Sole Co., Ltd
类别

图样

下载

基础信息

类型
专利
申请号
E/71
状态
已注册
申请人
OBSHCHESTVO S OGRANICHENNOJ OTVETSTVENNOST'YU ''FABRIKA NETKANYH MATERIALOV ''WES MIR"
代理机构
IPath Consult Sole Co., Ltd
申请日期
2018-12-26
注册号
E/71
公开/公告日
2022-06-24
注册/授权日
2022-06-24
届满日
2030-07-27
国际分类
商品 / 服务

办理流程

根据当前状态动态标注
  1. 提交申请
  2. 形式审查
  3. 实质审查
  4. 公开
  5. 授权

关联分析

LaoBiz 企业数据库联动

类似专利推荐

ການຖອດລະຫັດບິດສະຕຣິມສຽງດ້ວຍຂໍ້ມູນເມຕ້າໃນການຈໍາລອງແຖບສະເປັກຕຣັມທີ່ໄດ້ຮັບການປັບປຸງໃນອົງປະກອບຂອງຕື່ມຂໍ້ມູນຢ່າງໜ້ອຍໜຶ່ງອົງປະກອບ 已注册
PHOTOCATALYTIC REACTOR CELL 已注册
ການຖອດລະຫັດບິດສະຕຣິມສຽງດ້ວຍຂໍ້ມູນເມຕ້າໃນການຈໍາລອງແຖບສະເປັກຕຣັມທີ່ໄດ້ຮັບການປັບປຸງໃນອົງປະກອບຂອງຕື່ມຂໍ້ມູນຢ່າງໜ້ອຍໜຶ່ງອົງປະກອບ 已注册
ພາຊະນະປະຍຸກ 已注册
COMPOSITE POLYACRYLAMIDE HYDROGEL AND PREPARATION METHOD THEREFOR 已注册
ECOLOGICAL BUILDING WITH ORGANIC AGRICULTURAL AQUACULTURE FUNCTION AND INTERNAL CIRCULATION TREATMENT FUNCTION 已注册
ສະເປດເຊີແກ້ວ, ອຸປະກອນອ່ານຮາດດິສ, ແລະ ວິທີການເພື່ອຜະລິດ ສະເປດເຊີແກ້ວ 已注册
ເຄື່່ອງເຂົ້າລະຫັດ ແລະ ຖອດລະຫັດສຽງພ້ອມກັບໂປຣແກຣມຄວາມດັງຂອງສຽງ ແລະ ຂອບເຂດຂອງຂໍ້ມູນແບບເມຕ້າ (ຂໍ້ມູນເມຕາ) 已注册

摘要

The utility model relates to a non-woven fibrous insulating material having fire-resistant properties, and is used for forming a lining layer in garments. The technical result of the proposed utility model lies in improving the fire-resistance and overall thermal resistance of an insulating material while preserving the integrity of said material. A non-woven insulating fire-resistant material for forming a lining layer in garments includes a blend of polymer fibres joined into a web by thermal bonding, and contains polymer fibres and bicomponent fibres of the concentric core-sheath variety. The bicomponent fibres have a linear density of 0.22 tex, and the polymer fibres include oxidized polyacrylonitrile fibres having a linear density of 0.17 tex, wherein the aforesaid blend contains (in mass%): 20-30% bicomponent fibres, and 70-80% oxidized polyacrylonitrile fibres. In such a blend, the ratio by mass of bicomponent fibres to oxidized polyacrylonitrile fibres is from 1:4 to 3:7. In terms of structure, the material is comprised of three layers: an upper layer, a lower layer, and an inner layer. The upper and lower layers are stronger than the inner layer and are formed by additional thermal bonding of the outer regions of the material using hot calender rolls.

The utility model relates to a non-woven fibrous insulating material having fire-resistant properties, and is used for forming a lining layer in garments. The technical result of the proposed utility model lies in improving the fire-resistance and overall thermal resistance of an insulating material while preserving the integrity of said material. A non-woven insulating fire-resistant material for forming a lining layer in garments includes a blend of polymer fibres joined into a web by thermal bonding, and contains polymer fibres and bicomponent fibres of the concentric core-sheath variety. The bicomponent fibres have a linear density of 0.22 tex, and the polymer fibres include oxidized polyacrylonitrile fibres having a linear density of 0.17 tex, wherein the aforesaid blend contains (in mass%): 20-30% bicomponent fibres, and 70-80% oxidized polyacrylonitrile fibres. In such a blend, the ratio by mass of bicomponent fibres to oxidized polyacrylonitrile fibres is from 1:4 to 3:7. In terms of structure, the material is comprised of three layers: an upper layer, a lower layer, and an inner layer. The upper and lower layers are stronger than the inner layer and are formed by additional thermal bonding of the outer regions of the material using hot calender rolls.

提交咨询

留下联系方式,顾问将在工作时间内回复。

联系方式 * 点选后填写 · 至少一种