CN105433475A - 一种防护手套及其制备方法 - Google Patents
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Abstract
本发明提供了一种防护手套,属于防护用品技术领域。它解决了现有的防护手套隔热一般、不适用于复杂操作环境的问题。本防护手套包括由内至外依次设置的隔热层、隔离层以及树脂层,所述隔热层内设有相变材料,所述树脂层由PVC树脂材料制成。本防护手套具有能保护使用者避免受到高温烫伤的同时还能进行灵活操作的优点。
Description
技术领域
本发明属于防护用品技术领域,涉及一种防护手套及其制备方法。
背景技术
现有技术中,工人在消防、冶炼、电焊等高温作业环境中需要使用到具备高温隔热功能的防护手套,防护手套能够避免使用者受到高温烫伤。
目前市场上的防护手套根据材料可分为碳纤维耐高温手套、石棉耐高温手套、芳纶耐高温手套等,但现有的防护手套隔热一般且比较厚重,不适用于需要复杂操作的环境。
综上所述,需要设计一种能保护使用者避免受到高温烫伤的同时使用者还能进行灵活操作的防护手套。
发明内容
本发明的目的是针对现有的防护手套所存在的问题,提出了一种能保护使用者避免受到高温烫伤的同时还能进行灵活操作的防护手套。
本发明的目的可通过下列技术方案来实现:一种防护手套,包括由内至外依次设置的隔热层、隔离层以及树脂层,所述隔热层内设有相变材料,所述树脂层由PVC树脂材料制成。
作为本发明的进一步改进,所述隔离层为防水防油剂与PVA材料复合而成。
作为本发明的进一步改进,所述隔热层设置为单层结构且由PP纤维束与相变材料复合而成。
一种防护手套的制备方法如下:
采用PP为原料,利用熔体静电纺丝法在预设条件下纺得PP超细纤维并将其缕成五百根或六百根纤维为单位的纤维束;
将所得纤维束用位于入口的辊轮拉伸牵引至相变材料溶液池中浸泡,将浸泡预设时间后的纤维束从位于出口的辊轮中牵引而出并将其烘干后缠绕成复合线团;
采用预设成型方法将所得复合线团成型为手套,将手套浸泡在防水防油剂与PVA的混合溶液中,将浸泡预设时间后的手套取出后烘干;
将烘干后的手套浸渍于PVC浆料中,在其表面均匀涂覆一层PVC树脂后取出并加热烘干,待手套自然冷却至常温后即得成品。
作为本发明的又一种改进,所述隔热层设置为多层结构且由内至外依次设置为第一无纺布层、相变材料层、第二无纺布层,所述相变材料层由相变材料制成。
作为本发明的更进一步改进,各无纺布层分别通过粘合剂与相变材料层紧密粘合。
作为本发明的更进一步改进,各无纺布层均采用PP材料通过熔体静电纺丝法制备而成。
作为本发明的更进一步改进,所述相变材料为石蜡类烷烃和/或多元醇类和/或水合盐。
作为本发明的更进一步改进,所述相变材料为多元醇类。
基于上述技术方案,本发明实施例至少可以产生如下技术效果:设置在内的隔热层设有相变材料,通过采用相变材料在相转变过程中能够吸收或释放大量的潜热,从而达到控温隔热的目的;而设置在外的树脂层采用PVC树脂作为手套接触面,能够使操作更加灵活轻便,而且具有较好的耐化学腐蚀性和防静电功能;隔热层、隔离层以及树脂层三者配合紧密,使得防护手套能保护使用者避免受到高温烫伤的同时还能进行灵活操作。
附图说明
下面结合附图对本发明的具体实施方式作进一步详细的说明,其中:
图1是本发明一较佳实施例的结构示意图。
图2是本发明另一较佳实施例的结构示意图。
图中,10、隔热层;11、PP纤维束;12、相变材料;13、第一无纺布层;14、相变材料层;15、第二无纺布层;16、粘合剂;20、隔离层;30、树脂层。
具体实施方式
以下是本发明的具体实施例并结合附图,对本发明的技术方案作进一步的描述,但本发明并不限于这些实施例。
本发明保护一种防护手套,特别是一种高温隔热防护手套,具有控温隔热、质量轻盈的特点,不仅适用于消防、冶炼、电焊等高温环境中,也可适用于需要复杂操作的环境。
现有的防护手套隔热一般且比较厚重,不适用于需要复杂操作的环境。因此,设计一种比较合理的防护手套是很有必要的。
下面结合图1至图2对本发明提供的技术方案进行更为详细的阐述。
如图1至图2所示,本防护手套包括由内至外依次设置的隔热层10、隔离层20以及树脂层30,隔热层10内设有相变材料,树脂层30由PVC树脂材料制成。
在本发明中,防护手套主要分为三层,内层为具有相变材料的隔热层10,外层为由PVC树脂材料制得的树脂层30,中间的隔离层20用于分离隔热层10和树脂层30,以保证材料的稳定性和防护手套工作的可靠性。
在此需要补充说明的是:什么是相变?相变是指物质从一种相转变为另一种相的过程,物质系统中物理、化学性质完全相同,与其他部分具有明显分界面的均匀部分称为相。与固、液、气三态对应,物质有固相、液相、气相。
而相变材料是指随温度变化而改变物质状态并能提供潜热的物质,转变物理性质的过程称为相变过程,这时相变材料将吸收或释放大量的潜热。将这种材料应用在本防护手套中,将成为节能环保的最佳绿色环保载体。
为利于保持恒定的皮肤温度,优选本案中隔热层10的相变材料相转变温度相似于人体温度变化范围。
PVC树脂是一种极性非结晶性高聚物,分子之间有较强的作用力,是一种坚硬而脆的材料,抗冲击强度较低。本案中的PVC树脂外层具有良好的灵活性和触感、较强的化学抗性,具有防静电性能,可在无尘环境中使用。
本防护手套在初始状态下,设置在内的隔热层10设有相变材料,通过采用相变材料在相转变过程中能够吸收或释放大量的潜热,从而达到控温隔热的目的;而设置在外的树脂层30采用PVC树脂作为手套接触面,能够使操作更加灵活轻便,而且具有较好的耐化学腐蚀性和防静电功能;隔热层10、隔离层20以及树脂层30三者配合紧密,使得防护手套能保护使用者避免受到高温烫伤的同时还能进行灵活操作。
优选地,隔离层20为防水防油剂与PVA材料复合而成。进一步的,防水防油剂为含氟高分子聚合物,其具有防水防油功能,采用这样结构设置的隔离层20,在隔离层20烘干后可以防止外层的PVC浆料渗入内层的隔热层10中。
在本发明中,提供了如图1和图2所示两种不同隔热层10的结构布局,图2所示隔热层10布局层次分明且加工方便,而图1所示隔热层10结构布局紧密且工作更稳定。
图1所示隔热层10设置为单层结构且由PP纤维束11与相变材料复合而成。采用PP材料作为手套内层材料,具有质轻、柔韧、透气、易降解、无毒抗菌等优点,且PP纤维束11与相变材料紧密配合,通过利用相变材料在相转变过程中能够吸收或释放大量的潜热而不改变材料温度,具有控温隔热、防止烫伤的功能。
本发明还保护一种上述图1所示防护手套的制备方法,其步骤如下:
步骤一、采用PP为原料,利用熔体静电纺丝法在预设条件下纺得PP超细纤维并将其缕成五百根或六百根纤维为单位的纤维束;
步骤二、将所得纤维束用位于入口的辊轮拉伸牵引至相变材料溶液池中浸泡,将浸泡预设时间后的纤维束从位于出口的辊轮中牵引而出并将其烘干后缠绕成复合线团;
步骤三、采用预设成型方法将所得复合线团成型为手套,将手套浸泡在防水防油剂与PVA(聚乙烯醇)的混合溶液中,将浸泡预设时间后的手套取出后烘干;
步骤四、将烘干后的手套浸渍于PVC浆料中,在其表面均匀涂覆一层PVC树脂后取出并加热烘干,待手套自然冷却至常温后即得成品。
在该制备方法中,采用有机高分子涂覆至隔热层10之上作为隔离层20,除了能够防水防油还能避免后续工艺中PVC浆料渗入手套内层。最后采用PVC树脂作为手套接触面能够使操作更加灵活轻便而且具有较好的耐化学腐蚀性和防静电功能。
作为另一种实施例,图2所示隔热层10设置为多层结构且由内至外依次设置为第一无纺布层13、相变材料层14、第二无纺布层15,相变材料层14由相变材料制成。
优选上述无纺布层和相变材料层14均为单层结构,无纺布层即为单层的无纺布,具有质量轻盈、透气等特性,这样的隔热层10结构设置层次分明,加工方便,保证了手套的透气性以及使用的灵活性。
优选地,各无纺布层分别通过粘合剂16与相变材料层14紧密粘合。进一步的,粘合剂16也呈单层结构设置,与上下的无纺布层和相变材料层14配合更加紧密,使得无纺布层和相变材料层14固定牢靠,保证了手套内层的稳定性。
优选地,各无纺布层均采用PP材料通过熔体静电纺丝法制备而成,具有质轻、柔韧、透气、易降解、无毒抗菌、价格低廉、环保可循环等优点。
而熔体静电纺丝是化学纤维的主要制备工艺之一,熔体电纺的优势在于能够高效地以环保无毒的方式得到超细纤维制品。
优选地,相变材料为石蜡类烷烃和/或多元醇类和/或水合盐。即是说,本发明中的相变材料可为石蜡类烷烃、多元醇类、水合盐(水合碳酸盐)中的一种或几种,而作为最优方案,选择相变材料为多元醇类,进而提高手套的隔热性能。
本文中所描述的具体实施例仅仅是对本发明精神作举例说明。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本发明的精神或者超越所附权利要求书所定义的范围。
Claims (9)
1.一种防护手套,包括由内至外依次设置的隔热层、隔离层以及树脂层,所述隔热层内设有相变材料,所述树脂层由PVC树脂材料制成。
2.根据权利要求1所述的一种防护手套,其特征在于:所述隔离层为防水防油剂与PVA材料复合而成。
3.根据权利要求1所述的一种防护手套,其特征在于:所述隔热层设置为单层结构且由PP纤维束与相变材料复合而成。
4.一种权利要求3所述的防护手套的制备方法如下:
采用PP为原料,利用熔体静电纺丝法在预设条件下纺得PP超细纤维并将其缕成五百根或六百根纤维为单位的纤维束;
将所得纤维束用位于入口的辊轮拉伸牵引至相变材料溶液池中浸泡,将浸泡预设时间后的纤维束从位于出口的辊轮中牵引而出并将其烘干后缠绕成复合线团;
采用预设成型方法将所得复合线团成型为手套,将手套浸泡在防水防油剂与PVA的混合溶液中,将浸泡预设时间后的手套取出后烘干;
将烘干后的手套浸渍于PVC浆料中,在其表面均匀涂覆一层PVC树脂后取出并加热烘干,待手套自然冷却至常温后即得成品。
5.根据权利要求1所述的一种防护手套,其特征在于:所述隔热层设置为多层结构且由内至外依次设置为第一无纺布层、相变材料层、第二无纺布层,所述相变材料层由相变材料制成。
6.根据权利要求5所述的一种防护手套,其特征在于:各无纺布层分别通过粘合剂与相变材料层紧密粘合。
7.根据权利要求5或6所述的一种防护手套,其特征在于:各无纺布层均采用PP材料通过熔体静电纺丝法制备而成。
8.根据权利要求1或2或3或5或6所述的一种防护手套,其特征在于:所述相变材料为石蜡类烷烃和/或多元醇类和/或水合盐。
9.根据权利要求1或2或3或5或6所述的一种防护手套,其特征在于:所述相变材料为多元醇类。
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