CN105735036A - 绢花纸及其制备方法 - Google Patents
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Abstract
本发明公开了一种绢花纸,包括竹纤维、玻璃纤维、碳纤维、纤维状粘结剂、分散剂和纳米微晶纤维素;所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm;所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下;该绢花纸具有裂断长高,质地轻柔,手感好,挺度适中,不易变形,不易变色,制作的绢花真实感强的特性。
Description
技术领域
本发明涉及滤纸技术领域,具体涉及一种绢花纸及其制备方法。
背景技术
绢花纸制作的纸绢花品种繁多,精致美观,形象逼真,色彩自然,有如绽开的鲜花,深受人们的欢迎和喜爱。然而,传统绢花纸一般是用木浆制作的轻、薄、透的普通纸张,制作的绢花挺度不够,不易编制出自然的花形;裂断长低,纵横抗张强度不够;而且放置一段时间容易吸收空气中的潮气而变形、褪色、变黄。
发明内容
本发明要解决的技术问题是,克服现有技术的缺陷,提供一种裂断长高,质地轻柔,手感好,挺度适中,不易变形,不易变色,制作的绢花真实感强的绢花纸。
为实现发明目的,本发明采用以下技术方案:
绢花纸,按重量份数计,包括如下组分:
碳纤维"外柔内刚",质量比金属铝轻,但强度却高于钢铁,并且具有耐腐蚀、高模量的特性,在国防军工和民用方面都是重要材料。它不仅具有碳材料的固有本征特性,又兼备纺织纤维的柔软可加工性,是新一代增强纤维。
作为优选,所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm。
作为优选,所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下;玻璃纤维,因经不起打浆,玻璃纤维之间又缺乏粘结和,抄成的纸页很脆弱,但是如果把玻璃丝直径控制在100纳米以下,那么就可以解决玻璃丝的伸缩小、柔软性差而造成的成纸难的现象,有利于纤维的互相交织成形。
作为优选,所述的纤维状粘结剂为包括水溶性PVA纤维、维荣纤维、低熔点聚酯中的一种或两种以上混合物。
作为优选,所述的分散剂包括阴离子聚丙烯酰胺或聚氧乙烯。
作为优选,所述的绢花纸的定量为85±2g/㎡,厚度为0.18±0.01mm。
本发明的还有一个目的关于上述绢花纸的制备方法,采取如下的技术方案:
如上所述的绢花纸纸的制备方法,包括如下步骤:
a将配方量竹纤维和纤维状粘结剂用打浆机疏解成单根纤维,再加入配方量的玻璃纤维、碳纤维、纳米微晶纤维素和一定量的水配制成浓度为1.5~3%的浆料;
b将步骤a中得到的浆料在斜网纸机或侧流式圆网纸机成型;
c将步骤b中已成型的滤纸经干燥、卷取、分切后得到过滤纸。
具体实施方式
下面通过实施例进一步描述本发明,但本发明不仅仅局限于以下实施例。
实施例1
绢花纸,包括竹纤维、玻璃纤维、碳纤维、纤维状粘结剂、分散剂和纳米微晶纤维素;所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm;所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下;所述的纤维状粘结剂为水溶性PVA纤维;所述的分散剂为阴离子聚丙烯酰胺;所述的绢花纸的定量为85±2g/㎡,厚度为0.18±0.01mm。
上述的绢花纸纸的制备方法,包括如下步骤:
a将30kg竹纤维和10kg纤维状粘结剂用打浆机疏解成单根纤维,再加入20kg玻璃纤维、30kg碳纤维、5kg纳米微晶纤维素和一定量的水配制成浓度为3%的浆料;
b将步骤a中得到的浆料在斜网纸机或侧流式圆网纸机成型;
c将步骤b中已成型的滤纸经干燥、卷取、分切后得到过滤纸。
实施例2
绢花纸,包括竹纤维、玻璃纤维、碳纤维、纤维状粘结剂、分散剂和纳米微晶纤维素;所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm;所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下;所述的纤维状粘结剂为维荣纤维;所述的分散剂为阴离子聚氧乙烯;所述的绢花纸的定量为85±2g/m2,厚度为0.18±0.01mm。
上述的绢花纸纸的制备方法,包括如下步骤:
a将80kg竹纤维和18kg纤维状粘结剂用打浆机疏解成单根纤维,再加入配方量的10kg玻璃纤维、30kg碳纤维、12kg纳米微晶纤维素和一定量的水配制成浓度为2.5%的浆料;
b将步骤a中得到的浆料在斜网纸机或侧流式圆网纸机成型;
c将步骤b中已成型的滤纸经干燥、卷取、分切后得到过滤纸。
实施例3
绢花纸,包括竹纤维、玻璃纤维、碳纤维、纤维状粘结剂、分散剂和纳米微晶纤维素;所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm;所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下;所述的纤维状粘结剂为低熔点聚酯;所述的分散剂为阴离子聚丙烯酰胺;所述的绢花纸的定量为85±2g/m2,厚度为0.18±0.01mm。
上述的绢花纸纸的制备方法,包括如下步骤:
a将50kg竹纤维和1kg纤维状粘结剂用打浆机疏解成单根纤维,再加入10kg玻璃纤维、30kg碳纤维、20kg纳米微晶纤维素和一定量的水配制成浓度为2.8%的浆料;
b将步骤a中得到的浆料在斜网纸机或侧流式圆网纸机成型;
c将步骤b中已成型的滤纸经干燥、卷取、分切后得到过滤纸。
Claims (7)
1.绢花纸,其特征在于按重量份数计,包括如下组分:
2.根据权利要求1所述的绢花纸,其特征在于所述的竹纤维为纳米竹纤维,纤维粒径为80~100nm。
3.根据权利要求1所述的绢花纸,其特征在于所述的玻璃纤维为纳米玻璃纤维,纤维粒径控制在100nm以下。
4.根据权利要求1所述的绢花纸,其特征在于所述的纤维状粘结剂为包括水溶性PVA纤维、维荣纤维、低熔点聚酯中的一种或两种以上混合物。
5.根据权利要求1所述的绢花纸,其特征在于所述的分散剂包括阴离子聚丙烯酰胺或聚氧乙烯。
6.根据权利要求1所述的绢花纸,其特征在于所述的绢花纸的定量为85±2g/㎡,厚度为0.18±0.01mm。
7.如权利要求1至6任一所述的绢花纸纸的制备方法,其特征在于包括如下步骤:
a将配方量竹纤维和纤维状粘结剂用打浆机疏解成单根纤维,再加入配方量的玻璃纤维、碳纤维、纳米微晶纤维素和一定量的水配制成浓度为1.5~3%的浆料;
b将步骤a中得到的浆料在斜网纸机或侧流式圆网纸机成型;
c将步骤b中已成型的滤纸经干燥、卷取、分切后得到过滤纸。
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CN108660864A (zh) * | 2018-06-28 | 2018-10-16 | 南京柯普新材料科技有限公司 | 一种玻璃纤维复配碳纤维制备导电毡的方法 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108660864A (zh) * | 2018-06-28 | 2018-10-16 | 南京柯普新材料科技有限公司 | 一种玻璃纤维复配碳纤维制备导电毡的方法 |
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