CN110965387A - 一种耐水强度高的标签及其加工方法 - Google Patents
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Abstract
本发明提供了一种耐水强度高的标签及其加工方法,本发明的耐水标签在提高标签耐水强度的同时,提高其在酸性洗涤溶液下的可溶性,回收利用时便于将标签从瓶装标签上脱离去除。
Description
技术领域
本发明涉及防水标签加工领域,具体涉及一种耐水强度高的标签及其加工方法。
背景技术
便签广泛用于各种行业的商品包装,其中对于特殊商品的使用环境要求,需实现防水功能,从而市场出现一种防水标签,但是这种防水标签多采用粘性较大的胶体和PVC塑料膜,此种防水标签虽然实现了防水与不易脱落的功能,但完全没有考虑到有大量的塑料制品回收时防水标签难以去除,回收困难,近年来环境保护与废品回收利用一种都是社会各界关注的重要话题,市面上现有的防水标签不利于回收利用,故本发明力求发明一种耐水强度高但又便于回收脱离的标签。
发明内容
针对上述技术问题,本发明提供了一种耐水强度高的标签,
包括:
基层纸、设于所述基层纸上方的防水树脂层、设于所述基层纸下方的碱性可溶树脂层用于浸泡所述基层纸的结合剂,所述防水树脂层厚度为8g/m至25g/m,所述碱性可溶树脂的涂覆厚度为2g/m至30g/m。
本发明提供一种耐水强度高的标签的加工方法,包括:
第一步:基层纸的制作,将木浆倒入磨浆机中,磨浆机打浆转数设定为2400Rev至4900Rev,打浆度控制在0.53gCFS以下,打浆时加入分散松香剂、粘土以及硫酸铝,所述每份木浆加入0.2份分散松香剂、10份粘土以及3份硫酸铝,打浆完毕倒入组合式抄纸机进行抄造,抄造过程中加入湿纸品增强剂;第二步:结合剂加工,防水剂1份、高岭土25份、SBR乳胶30份以及酸化淀粉5份混合。混合反应均匀1小时,形成结合剂,将基层纸浸泡于结合剂中2小时至5小时,取出干燥;第三步:防水树脂层的加工,将防水剂5份、分散剂0.5份、10份无溶剂环氧树脂以及2份无溶剂环氧固化剂,搅拌均匀,涂刷于基层纸上表面;第四步:碱性可溶树脂层加工,将高岭土20份、高钙碳酸钙粉40份、合成乳胶60份、分散剂5份以及硝化棉树脂15份,在45摄氏度至100摄氏度的温度下混合搅拌3小时,涂刷于基层纸下方;第五步:干燥切割。
优选的,所述木浆为漂白硫酸盐针叶木浆。
优选的,所述木浆为漂白硫酸盐阔叶木浆。
优选的,所述结合剂加工时,加入无水马来酸1.5份。
优选的,所述碱性可溶树脂层加工时,加入羧基苯乙烯丙烯共重合树脂3份。
有益效果:
1、提高标签耐水强度的同时,提高其在酸性洗涤溶液下的可溶性,回收利用时便于将标签从瓶装标签上脱离去除。
2、加入羧基苯乙烯丙烯共重合树脂,使得酸性洗涤溶液更容易浸透,剥离效果更好。
具体实施方式
下面对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例,基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。
本发明提供一种耐水强度高的标签,包括基层纸、设于所述基层纸上方的防水树脂层、设于所述基层纸下方的碱性可溶树脂层用于浸泡所述基层纸的结合剂,所述防水树脂层厚度为8g/m至25g/m,所述碱性可溶树脂的涂覆厚度为2g/m至30g/m。
本发明提供一种耐水强度高的标签的加工方法,包括:
第一步:基层纸的制作,将木浆倒入磨浆机中,磨浆机打浆转数设定为2400Rev至4900Rev,打浆度控制在0.53gCFS以下,打浆时加入分散松香剂、粘土以及硫酸铝,所述每份木浆加入0.2份分散松香剂、10份粘土以及3份硫酸铝,打浆完毕倒入组合式抄纸机进行抄造,抄造过程中加入湿纸品增强剂;
第二步:结合剂加工,防水剂1份、高岭土25份、SBR乳胶30份以及酸化淀粉5份混合。混合反应均匀1小时,形成结合剂,将基层纸浸泡于结合剂中2小时至5小时,取出干燥;
第三步:防水树脂层的加工,将防水剂5份、分散剂0.5份、10份无溶剂环氧树脂以及2份无溶剂环氧固化剂,搅拌均匀,涂刷于基层纸上表面;
第四步:碱性可溶树脂层加工,将高岭土20份、高钙碳酸钙粉40份、合成乳胶60份、分散剂5份以及硝化棉树脂15份,在45摄氏度至100摄氏度的温度下混合搅拌3小时,涂刷于基层纸下方;
第五步:干燥切割。
本发明中所用的木浆可为漂白硫酸盐针叶木浆或漂白硫酸盐阔叶木浆,所述结合剂加工时,加入无水马来酸1.5份。所述碱性可溶树脂层加工时,加入羧基苯乙烯丙烯共重合树脂3份。
本发明设计实验进行耐水湿润度的测试,
1、测试湿润后变形度,测试方法为:常温水浸渍本发明的标签,10分钟后测试横向伸缩尺寸。
2、测试冷水与温水下的耐水性,测试方法为:分别取本发明标签尺寸为100mm*100mm,分别贴在两个玻璃瓶A和玻璃瓶B表面,标签贴好24小时后,将玻璃瓶A浸泡在5摄氏度的冷水中,将玻璃瓶B浸泡在70摄氏度的温水中,分别构成实验组1和实验组2,3小时后观察其标签表面状态、主要是剥落程度和龟裂程度,评价标准采用李考特(LIKERT)五分量评价法。
3、测试洗瓶脱离难易度即洗瓶性能,将贴着标签的玻璃瓶浸泡在70摄氏度浓度5%的酸性洗涤溶液中,24小时,同样利用李考特(LIKERT)五分量评价法评价其洗瓶性。
对于测试湿润后变形度,本发明设计实验组1:本发明标签,实验组2:市场上耐水标签A,实验组3:市场上耐水标签B。实验数据如下表1:
组别 | 产品类型 | 水温(℃) | 伸缩变化(%) |
实验组1 | 本发明标签 | 25 | 1.05 |
实验组2 | 耐水标签A | 25 | 1.35 |
实验组3 | 耐水标签B | 25 | 1.46 |
表1
对于测试冷水温水下的耐水性,本发明设计实验组1、实验组2、实验组3:耐水标签A在5摄氏度冷水中浸泡3小时,实验组4:耐水标签A在70摄氏度温水中浸泡3小时,实验组5:耐水标签B在5摄氏度冷水中浸泡3小时,实验组6:耐水标签B在70摄氏度温水中浸泡3小时,对照组1:将本发明标签直接浸泡于5摄氏度冷水中3小时,对照组2:将本发明标签直接浸泡于70摄氏度温水中3小时。
实验数据如下表2所示:
表2
根据上述实验数据可轻易看出,本发明的标签在耐水性和洗瓶性具有明显优越性,市场现有耐水标签仅考虑到耐水性,大大忽视了回收利用时的洗瓶性问题。
对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。
Claims (6)
1.一种耐水强度高的标签,其特征在于:包括基层纸、设于所述基层纸上方的防水树脂层、设于所述基层纸下方的碱性可溶树脂层用于浸泡所述基层纸的结合剂,所述防水树脂层厚度为8g/m至25g/m,所述碱性可溶树脂的涂覆厚度为2g/m至30g/m。
2.根据权利要求1所述的一种耐水强度高的标签的加工方法,其特征在于:第一步:基层纸的制作,将木浆倒入磨浆机中,磨浆机打浆转数设定为2400Rev至4900Rev,打浆度控制在0.53gCFS以下,打浆时加入分散松香剂、粘土以及硫酸铝,所述每份木浆加入0.2份分散松香剂、10份粘土以及3份硫酸铝,打浆完毕倒入组合式抄纸机进行抄造,抄造过程中加入湿纸品增强剂;第二步:结合剂加工,防水剂1份、高岭土25份、SBR乳胶30份以及酸化淀粉5份混合。混合反应均匀1小时,形成结合剂,将基层纸浸泡于结合剂中2小时至5小时,取出干燥;第三步:防水树脂层的加工,将防水剂5份、分散剂0.5份、10份无溶剂环氧树脂以及2份无溶剂环氧固化剂,搅拌均匀,涂刷于基层纸上表面;第四步:碱性可溶树脂层加工,将高岭土20份、高钙碳酸钙粉40份、合成乳胶60份、分散剂5份以及硝化棉树脂15份,在45摄氏度至100摄氏度的温度下混合搅拌3小时,涂刷于基层纸下方;第五步:干燥切割。
3.根据权利要求2所述的一种耐水强度高的标签的加工方法,其特征在于:所述木浆为漂白硫酸盐针叶木浆。
4.根据权利要求2所述的一种耐水强度高的标签的加工方法,其特征在于:所述木浆为漂白硫酸盐阔叶木浆。
5.根据权利要求2所述的一种耐水强度高的标签的加工方法,其特征在于:所述结合剂加工时,加入无水马来酸1.5份。
6.根据权利要求2所述的一种耐水强度高的标签的加工方法,其特征在于:所述碱性可溶树脂层加工时,加入羧基苯乙烯丙烯共重合树脂3份。
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