CN113386404A - 一种薄型耐高温手套 - Google Patents
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Abstract
本发明公开了一种薄型耐高温手套;所述手套由外及里包括接触层、隔热层和舒适层;所述接触层为采用玻璃纤维和预氧丝纤维混纺制成的梭织面料层;所述隔热层为芳纶毡、玻璃纤维毡、气凝胶毡、阻燃黏胶中的几种复合而成的复合面料层;所述舒适层为针织面料层。本发明提供的薄型耐高温手套,结构简单轻薄,构造合理,使用方便灵活,具有很好的隔热效果,耐用效果好。
Description
技术领域
本发明涉及纺织技术领域,具体涉及一种薄型耐高温手套。
背景技术
高温环境下手套,也称热接触手套;大都需要很厚的手套,因而通常都是笨重的,不灵活,只能进行简单的操作,在一些特殊情况下厚重的手套难以操作;另外热接触手套不耐用,在接触高温情况下手套表面的损毁严重,通常一月左右就要更换,使用成本偏高。
通过对现有专利文献的检索发现,申请号为201711374300.6的中国发明专利申请公开了一种耐高温手套,该耐高温手套采用的材料包括玻璃纤维布层,所述玻璃纤维布层的上下表面上设置有聚酰亚胺膜层,所述玻璃纤维布层的下表面的聚酰亚胺膜层上衬有一层布料层;该耐高温手套可以在高温环境中使用,保护作业人员的手不受伤害,使用方便。然而,采用厚重的隔热层,影响手套手感,手指不灵活,只能在高温下做一些简单的动作,另外采用玻纤隔热性能不佳,无法在500°高温以上应用。
申请号为201820958219.6的中国实用新型专利公开了一种预氧丝防水阻燃耐高温手套,包括手套本体,所述手套本体由预氧丝纱表层、PTFE膜层和涤棉内衬层组成;该手套具备适用范围广、抗热阻燃、吸汗防水、手感好、强度高、弹性好、耐摩擦、隔热性能好的优点。然而,预氧丝阻燃性能较好,但是隔热性能不佳。
发明内容
本发明的目的在于克服上述现有技术存在的不足,提供一种薄型耐高温手套;该手套耐高温,可以在高温下长期使用。
本发明的目的是通过以下技术方案来实现的:
本发明涉及一种薄型耐高温手套,所述手套由外及里包括接触层、隔热层和舒适层;所述接触层为采用玻璃纤维和预氧丝纤维混纺制成的梭织面料层;所述隔热层为芳纶、气凝胶、阻燃黏胶中的几种复合而成的复合面料层;所述舒适层为针织面料层。
作为本发明的一个实施方案,所述梭织面料克重为300-400g/m2。
作为本发明的一个实施方案,所述玻璃纤维和预氧丝纤维的混纺比例为3:7-5:5。
作为本发明的一个实施方案,所述玻璃纤维采用2.5-3.5D的玻璃纤维。
作为本发明的一个实施方案,所述预氧丝纤维采用碳化层度达到28-32的1.5D短纤。
作为本发明的一个实施方案,所述玻璃纤维和预氧丝纤维混纺制成32-40支的纱线,用于编制所述梭织面料层。
作为本发明的一个实施方案,所述复合面料的克重在300-400g/m2。
作为本发明的一个实施方案,所述舒适层是用阻燃黏胶、芳纶、棉中的一种或几种混纺织造而成的针织面料层。该舒适层在提供舒适感的同时,针织的层的空隙也可以提供一定隔热保温作用。
作为本发明的一个实施方案,所述隔热层厚度在2.5mm-3.5mm。
作为本发明的一个实施方案,所述隔热层采用气凝胶加芳纶的复合面料层;是通过在两层芳纶无纺布中间加填气凝胶粉体后,在芳纶无纺布的四周边缘压合热粘封装而得;单层芳纶无纺布厚度为1-1.5mm,克重为190-210g/m2。气凝胶毡主要是用在工业领域,气凝胶在围观下是微小的超细纤维叠加而成,如直接接触皮肤会引起刺痒感,应用到服饰、手套上,还要克服水洗等问题,而采用本发明的封装方案可以克服这些缺陷,克服了气凝胶无法在服装上应用的缺陷,可以最大限度保证了气凝胶的均匀性和可实用性。
与现有技术相比,本发明的有益效果在于:
1)本发明提供的薄型耐高温手套,包括接触层,隔热层,舒适层三层结构;该手套结构简单轻薄,构造合理,使用方便灵活,具有很好的隔热效果,阻燃效果,且耐用效果好;
2)与传统隔热手套相比克服了传统手套厚重不灵活的确信,在高温危险区域的工作操作将更加安全;
3)在克服不灵活缺陷的的同时,将气凝胶材料应用到手套上,提高了手套的隔热性能。
具体实施方式
下面结合实施例对本发明进行详细说明。以下实施例将有助于本领域的技术人员进一步理解本发明,但不以任何形式限制本发明。应当指出的是,对本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干调整和改进。这些都属于本发明的保护范围。
实施例1
本实施例涉及一种薄型耐高温手套,所述手套由外及里包括接触层、隔热层和舒适层;
所述接触层,为梭织面料,克重在350g/m2左右;采用玻璃纤维和预氧丝纤维混纺制成,混纺比例3:7;其中,玻璃纤维为3.0D;预氧丝纤维采用碳化层度(即碳化比例)达到30左右的1.5D短纤;30%玻纤/70%预氧丝混纺制成35支的成品纱线。
所述隔热层为复合面料,通过在两层芳纶无纺布中间加填气凝胶粉体后四周封装制备而得;芳纶无纺布厚度为1.2mm,克重为200g/m2;该隔热层厚度在3.0mm。
所述舒适层为针织面料,是用阻燃黏胶、芳纶混纺织造而成。
手套采用缝合加工,三层结构外层采用玻纤与预氧丝混纺而成的梭织面料;中间隔热层采用芳纶封装气凝胶层材料;里层舒适层采用芳纶面料缝合加工而成。
本实施例的手套经测试EN407标准测试:耐火性能4级;热接触4级;耐热对流4级;热辐射4级。
实施例2
本实施例涉及一种薄型耐高温手套,所述手套由外及里包括接触层、隔热层和舒适层;
所述接触层,为梭织面料,克重在300g/m2左右;采用玻璃纤维和预氧丝纤维混纺制成,混纺比例3:7;其中,玻璃纤维为2.5D;预氧丝纤维采用碳化层度达到30左右的1.5D短纤,30%玻纤/70%预氧丝混纺制成32支的成品纱线。
所述隔热层为复合面料,通过在两层芳纶无纺布中间加填气凝胶粉体后四周进行封装制备而得;所述芳纶无纺布厚度为1mm,芳纶无纺布克重为190g/m2;所述隔热层厚度在2.5mm。
所述舒适层为针织面料,是用阻燃黏胶、芳纶、棉混纺织造而成。
手套采用缝合加工,三层结构外层采用玻纤与预氧丝混纺而成的梭织面料;中间隔热层采用芳纶封装气凝胶层材料;里层舒适层采用芳纶面料缝合加工而成。
本实施例的手套经测试EN407标准测试:耐火性能4级;热接触4级;耐热对流4级;热辐射4级。
实施例3
本实施例涉及一种薄型耐高温手套,所述手套由外及里包括接触层、隔热层和舒适层;
所述接触层,为梭织面料,克重在400g/m2左右;采用玻璃纤维和预氧丝纤维混纺制成,混纺比例3:7;其中,玻璃纤维为3.5D;预氧丝纤维采用碳化层度达到30左右的1.5D短纤;30%玻纤/70%预氧丝混纺制成40支的成品纱线。
所述隔热层为复合面料,通过在两层芳纶无纺布中间加填气凝胶粉体后四周进行封装制备而得;所述芳纶无纺布厚度为1.5mm,芳纶无纺布克重为210g/m2;该隔热层厚度在3.5mm。
所述舒适层为针织面料,是用芳纶、棉混纺织造而成。
手套采用缝合加工,三层结构外层采用玻纤与预氧丝混纺而成的梭织面料;中间隔热层采用芳纶封装气凝胶层材料;里层舒适层采用芳纶面料缝合加工而成。
本实施例的手套经测试EN407标准测试:耐火性能4级;热接触4级;耐热对流4级;热辐射4级。
实施例4
本实施例涉及一种薄型耐高温手套,所述手套由外及里包括接触层、隔热层和舒适层;
所述接触层,为梭织面料,克重在380g/m2左右;采用玻璃纤维和预氧丝纤维混纺制成,混纺比例5:5;其中,玻璃纤维为3.2D;预氧丝纤维采用碳化层度达到30左右的1.5D短纤混纺;50%玻纤/50%预氧丝混纺制成36支的成品纱线。
所述隔热层为复合面料,通过在两层芳纶无纺布中间加填气凝胶粉体后四周进行封装制备而得;所述芳纶无纺布厚度为1.5mm,芳纶无纺布克重为200g/m2;所述隔热层厚度在3.2mm。
所述舒适层为针织面料,是用阻燃黏胶、棉混纺织造而成。
手套采用缝合加工,三层结构外层采用玻纤与预氧丝混纺而成的梭织面料;中间隔热层采用芳纶封装气凝胶层材料;里层舒适层采用芳纶面料缝合加工而成。
本实施例的手套经测试EN407标准测试:耐火性能4级;热接触4级;耐热对流4级;热辐射4级。
对比例1
本对比例涉及一种薄型耐高温手套,基本同实施例1,所不同之处在于:
所述隔热层为两层芳纶毡,中间铺设气凝胶毡复合而成,该隔热层厚度在3.0mm。由于材料没有封装,在完成手套加工后气凝胶粉体脱落掉粉,影响手套的品控。无法进行操作。在手指运动过程中气凝胶粉体掉落,直至无粉体。
以上对本发明的具体实施例进行了描述。需要理解的是,本发明并不局限于上述特定实施方式,本领域技术人员可以在权利要求的范围内做出各种变形或修改,这并不影响本发明的实质内容。
Claims (10)
1.一种薄型耐高温手套,其特征在于,所述手套由外及里包括接触层、隔热层和舒适层;所述接触层为采用玻璃纤维和预氧丝纤维混纺制成的梭织面料层;所述隔热层为芳纶、气凝胶、阻燃黏胶中的几种复合而成的复合面料层;所述舒适层为针织面料层。
2.根据权利要求1所述的薄型耐高温手套,其特征在于,所述梭织面料克重为300-400g/m2。
3.根据权利要求1所述的薄型耐高温手套,其特征在于,所述玻璃纤维和预氧丝纤维混纺的混纺比例为3:7-5:5。
4.根据权利要求3所述的薄型耐高温手套,其特征在于,所述玻璃纤维采用2.5-3.5D的玻璃纤维。
5.根据权利要求3所述的薄型耐高温手套,其特征在于,所述预氧丝纤维采用碳化层度达到28-32的1.5D短纤。
6.根据权利要求3所述的薄型耐高温手套,其特征在于,所述玻璃纤维和预氧丝纤维混纺制成32-40支的纱线,用于编制所述梭织面料层。
7.根据权利要求1所述的薄型耐高温手套,其特征在于,所述复合面料层的克重在300-400g/m2。
8.根据权利要求1所述的薄型耐高温手套,其特征在于,所述舒适层是用阻燃黏胶、芳纶、棉中的一种或几种混纺织造而成的针织面料层。
9.根据权利要求1所述的薄型耐高温手套,其特征在于,所述隔热层厚度在2.5mm-3.5mm。
10.根据权利要求1所述的薄型耐高温手套,其特征在于,所述隔热层采用气凝胶加芳纶的复合面料层;是通过在两层芳纶无纺布中间加填气凝胶粉体后,在芳纶无纺布的四周边缘压合热粘封装而得;单层芳纶无纺布厚度为1-1.5mm,克重为190-210g/m2。
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