CN107354803A - 喷墨转移印花纸的生产方法 - Google Patents
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Abstract
本发明涉及用以生产纸张的方法,尤其涉及一种新型喷墨转移印花纸的生产方法。该方法经过碎浆、磨浆、配浆、上浆、脱水、前干燥、表面施胶、后干燥、压光、卷取制得成纸;本发明所述喷墨转移印花纸原料包括:漂白化学阔叶木浆的用量为70~90%,漂白机械阔叶木浆的用量为10~30%,三聚氰胺甲醛树脂、填料、内部施胶剂、增湿强剂、其他功能性助剂和淀粉类增强剂,在表面施胶部施涂一层绝干物质为淀粉与甲基纤维素混合物的胶料。本发明使生产出来的喷墨转移印花纸具有较好的伸缩性能、表面强度和涂布适性。
Description
技术领域
本发明涉及用以生产纸张的方法,尤其涉及一种新型喷墨转移印花纸的生产方法。
背景技术
喷墨转移印花是将人像、风景、文字等图文使用装有热升华转印墨水的喷墨打印机以镜象方式打印在转印用喷墨纸上,再经过转印设备加热到到一定温度,使转移印花纸上的转印墨升华渗入到承印物上,从而把纸上的彩色图象逼真地转印到纺织品、瓷杯、瓷盘、瓷板、金属等材质上的一种新工艺。传统的印花纸普遍存在伸缩性高、掉毛掉粉、涂布适应性差等缺点。
发明内容
本发明要解决的技术问题是提供一种新型的喷墨转移印花纸的生产方法,通过在传统的纸张生产方法中创新,使生产出来的喷墨转移印花纸具有较好的伸缩性能、表面强度和涂布适性。
本发明为解决上述技术问题,提供了如下技术方案:喷墨转移印花纸,经过碎浆、磨浆、配浆、上浆、脱水、前干燥、表面施胶、后干燥、压光、卷取制得成纸;本发明所述喷墨转移印花纸原料包括:漂白化学阔叶木浆的用量为70~90%,漂白机械阔叶木浆的用量为10~30%,三聚氰胺甲醛树脂、填料、内部施胶剂、增湿强剂、其他功能性助剂和淀粉类增强剂,在表面施胶部施涂一层绝干物质为淀粉与甲基纤维素混合物的胶料。
本发明所述的喷墨转移印花纸,作为优选方案,于配浆过程中加入三聚氰胺甲醛树脂,添加量为2.0~5.0千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,所用填料为滑石粉,于配浆过程中加入,添加量为150~250千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,在上浆过程中分别加入内部施胶剂烷基烯酮二聚体和增湿强剂聚丙烯酰胺,内部施胶剂烷基烯酮二聚体添加量为0.5~2.0千克/吨纸,聚酰胺环氧树脂添加量为0.5~1.0千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,在表面施胶部施涂配方中添加了木薯氧化淀粉和聚乙烯醇,配方中木薯氧化淀粉和甲基纤维素的质量比为95:5~90:10,表面施胶部绝干物质添加量为25~65千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,使用了70~90%的漂白化学阔叶木浆,10~30%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为3.0~5.0千克/吨纸,配浆过程中加入滑石粉,添加量为150~250千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.0~1.5千克/吨纸,聚酰胺环氧树脂添加量为0.5~1.0千克/吨纸,表面施胶部绝干物质添加量为40~50千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,使用了80%的漂白化学阔叶木浆,20%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为3.0千克/吨纸,配浆过程中加入滑石粉,添加量为250千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.0千克/吨纸,聚酰胺环氧树脂添加量为0.5千克/吨纸,表面施胶部绝干物质添加量为50千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,使用了70%的漂白化学阔叶木浆,30%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为4.0千克/吨纸,配浆过程中加入滑石粉,添加量为150千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸,表面施胶部绝干物质添加量为40千克/吨纸。
本发明所述的喷墨转移印花纸,作为优选方案,使用了85%的漂白化学阔叶木浆,15%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为5.0千克/吨纸,配浆过程中加入滑石粉,添加量为200千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸,表面施胶部绝干物质添加量为45千克/吨纸。
本发明的技术效果在于浆料组成中通过使用机械浆,在配料过程中加入三聚氰胺甲醛树脂,抄得成纸伸缩性低,能够满足纸张转移印花的要求。传统的造纸工艺为降低纸张的伸缩性,多采用提高打浆游离度的方法,浆料打浆程度很低,这样抄造出来的纸张强度很差,虽然转印时图文不会变形,但纸张表面纤维容易脱落,造成转印图文的缺失,形成废品。机械浆相比化学浆伸缩性要低,但也存在强度差的缺点,本发明通过添加部分机械浆以改善纸张伸缩性;三聚氰胺甲醛树脂具有塑化纤维的作用,制得纸张湿变形性小,适用于低伸缩性纸张的生产。本专利生产的喷墨转移印花纸,通过相关国家标准规定方法测试,横向伸缩性≤1.4%。
此外,喷墨转移印花纸原纸需要经过涂布处理,因此对原纸的涂料吸收有严格要求,本专利生产的喷墨转移印花纸,通过控制内部施胶剂烷基烯酮二聚体用量和磨浆游离度,将纸张可勃法测定的吸水性可勃值(60s)控制在20±4g/m2,有效提高了客户涂布加工的合格品率,大幅减少喷墨转移印花纸出现皱折、不平整、转移图文不易干燥等问题。本专利生产的喷墨转移印花纸在表面施胶部采用微涂配方,采用了木薯氧化淀粉和甲基纤维素结合的配方工艺,大幅提升了纸张的表面强度,有效减少了纸张掉毛掉粉导致废品的出现。
具体实施方式
下面结合具体实施对本发明作进一步详细说明。本专利生产的喷墨转移印花纸定量范围为50~100g/m2,纤维采用漂白化学阔叶木纤维70~90%,漂白机械阔叶木纤维10~30%,树种为桉木、杨木、相思木等均可,磨浆加拿大游离度300~500ml;三聚氰胺甲醛树脂添加量为2.0~5.0千克/吨纸,滑石粉添加量为150~250千克/吨纸,内部施胶剂烷基烯酮二聚体添加量为0.5~2.0千克/吨纸,湿强剂聚酰胺环氧树脂添加量为0.3~1.2千克/吨纸,表面施胶部施涂配方中添加木薯氧化淀粉和甲基纤维素,配方中木薯氧化淀粉和甲基纤维素的质量比为95:5~90:10,表面施胶部绝干物质添加量为25~65千克/吨纸,其他助剂和淀粉类增强剂按普通用量添加。
实例1:抄纸定量为60g/m2
1.碎浆:加入80%漂白化学阔叶木浆和20%漂白机械阔叶木浆。
2.磨浆:磨浆游离度控制在380ml。
3.配浆:加入3.0千克/吨纸的三聚氰胺甲醛树脂和250千克/吨纸的滑石粉。
4.上浆:分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.0千克/吨纸,聚酰胺环氧树脂添加量为0.5千克/吨纸。
5.纸浆经过脱水、前干燥,在表面施胶部施涂配方中添加木薯氧化淀粉和甲基纤维素,配方中木薯氧化淀粉和甲基纤维素的质量比为90:10,表面施胶部绝干物质添加量为50千克/吨纸。
6.表面施胶后经过后干燥、压光、卷取制得成纸。经相关标准仪器测定:成纸横向伸缩性1.24%,吸水性可勃值(60s)19.7g/m2,表面强度(蜡棒值)为16级。
实例2:抄纸定量为80g/m2
1.碎浆:加入70%漂白化学阔叶木浆和30%漂白机械阔叶木浆。
2.磨浆:磨浆游离度控制在420ml。
3.配浆:加入4.0千克/吨纸的三聚氰胺甲醛树脂和150千克/吨纸的滑石粉。
4.上浆:分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸。
5.纸浆经过脱水、前干燥,在表面施胶部施涂配方中添加木薯氧化淀粉和甲基纤维素,配方中木薯氧化淀粉和甲基纤维素的质量比为95:5,表面施胶部绝干物质添加量为40千克/吨纸。
6.表面施胶后经过后干燥、压光、卷取制得成纸。经相关标准仪器测定:成纸横向伸缩性1.30%,吸水性可勃值(60s)20.7g/m2,表面强度(蜡棒值)为16级。
实例3:抄纸定量为90g/m2
1.碎浆:加入90%漂白化学阔叶木浆和10%漂白机械阔叶木浆。
2.磨浆:磨浆游离度控制在400ml。
3.配浆:加入5.0千克/吨纸的三聚氰胺甲醛树脂和200千克/吨纸的滑石粉。
4.上浆:分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸。
5.纸浆经过脱水、前干燥,在表面施胶部施涂配方中添加木薯氧化淀粉和甲基纤维素,配方中木薯氧化淀粉和甲基纤维素的质量比为95:5,表面施胶部绝干物质添加量为45千克/吨纸。
6.表面施胶后经过后干燥、压光、卷取制得成纸。经相关标准仪器测定:成纸横向伸缩性1.27%,吸水性可勃值(60s)20.1g/m2,表面强度(蜡棒值)为18级。
另以传统造纸工艺为例,与实例3作对比,说明本专利的技术效果。
实例4:抄纸定量为90g/m2
1.碎浆:加入90%漂白化学阔叶木浆和10%漂白化学叶木浆。
2.磨浆:磨浆游离度控制在560ml。
3.配浆:加入200千克/吨纸的滑石粉。
4.上浆:分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸。
5.纸浆经过脱水、前干燥,在表面施胶部添加木薯氧化淀粉,表面施胶部绝干物质添加量为45千克/吨纸。
6.表面施胶后经过后干燥、压光、卷取制得成纸。经相关标准仪器测定:成纸横向伸缩性1.30%,吸水性可勃值(60s)21.3g/m2,表面强度(蜡棒值)为14级。
实例4与实例3相比:技术区别在于实例4打浆游离度明显较高,浆料使用化学针叶木浆代替机械阔叶木浆,在配料过程中未添加三聚氰胺甲醛树脂,表面施胶仅使用氧化淀粉,由成纸质量来看:实例4中成纸横向伸缩性虽然达标,但表面强度很低,在后续加工过程中易出现掉毛掉粉问题,难以满足喷墨转移印花纸的加工需要。
应说明的是,以上实施例仅用以说明本发明的技术方案而非限制,实施例对本发明进行了详细说明,造纸领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的精神和范围,其均应涵盖在本发明的权利要求范围当中。
Claims (9)
1.一种喷墨转移印花纸的生产方法,经过碎浆、磨浆、配浆、上浆、脱水、前干燥、表面施胶、后干燥、压光、卷取制得成纸;其特征是:其生产原料包括:漂白化学阔叶木浆的用量为70~90%,漂白机械阔叶木浆的用量为10~30%,三聚氰胺甲醛树脂、填料、内部施胶剂、增湿强剂、其他功能性助剂和淀粉类增强剂,在表面施胶部施涂一层绝干物质为淀粉与甲基纤维素混合物的胶料。
2.根据权利要求1所述的喷墨转移印花纸的生产方法,其特征是:本发明所述的喷墨转移印花纸,作为优选方案,于配浆过程中加入三聚氰胺甲醛树脂,添加量为2.0~5.0千克/吨纸。
3.根据权利要求1所述的喷墨转移印花纸的生产方法,其特征是:所用填料为滑石粉,于配浆过程中加入,添加量为150~250千克/吨纸。
4.根据权利要求1所述的喷墨转移印花纸的生产方法,其特征是:在上浆过程中分别加入内部施胶剂烷基烯酮二聚体和增湿强剂聚丙烯酰胺,内部施胶剂烷基烯酮二聚体添加量为0.5~2.0千克/吨纸,聚酰胺环氧树脂添加量为0.5~1.0千克/吨纸。
5.根据权利要求1所述的喷墨转移印花纸的生产方法,其特征是:在表面施胶部施涂配方中添加木薯氧化淀粉和聚乙烯醇,配方中木薯氧化淀粉和甲基纤维素的质量比为95:5~90:10,表面施胶部绝干物质添加量为25~65千克/吨纸。
6.根据权利要求1所述的喷墨转移印花纸的生产方法,其特征是:使用70~90%的漂白化学阔叶木浆,10~30%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为3.0~5.0千克/吨纸,配浆过程中加入滑石粉,添加量为150~250千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.0~1.5千克/吨纸,聚酰胺环氧树脂添加量为0.5~1.0千克/吨纸,表面施胶部绝干物质添加量为40~50千克/吨纸。
7.根据权利要求6所述的喷墨转移印花纸的生产方法,其特征是:使用80%的漂白化学阔叶木浆,20%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为3.0千克/吨纸,配浆过程中加入滑石粉,添加量为250千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.0千克/吨纸,聚酰胺环氧树脂添加量为0.5千克/吨纸,表面施胶部绝干物质添加量为50千克/吨纸。
8.根据权利要求6所述的喷墨转移印花纸的生产方法,其特征是:使用70%的漂白化学阔叶木浆,30%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为4.0千克/吨纸,配浆过程中加入滑石粉,添加量为150千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸,表面施胶部绝干物质添加量为40千克/吨纸。
9.根据权利要求6所述的喷墨转移印花纸的生产方法,其特征是:使用85%的漂白化学阔叶木浆,15%的漂白机械阔叶木浆,配浆过程中加入三聚氰胺甲醛树脂,添加量为5.0千克/吨纸,配浆过程中加入滑石粉,添加量为200千克/吨纸,上浆过程中分别加入烷基烯酮二聚体和聚酰胺环氧树脂,烷基烯酮二聚体添加量为1.5千克/吨纸,聚酰胺环氧树脂添加量为1.0千克/吨纸,表面施胶部绝干物质添加量为45千克/吨纸。
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