CN108625209A - 在织物上形成立体装饰布的制造方法 - Google Patents
在织物上形成立体装饰布的制造方法 Download PDFInfo
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- CN108625209A CN108625209A CN201810188261.9A CN201810188261A CN108625209A CN 108625209 A CN108625209 A CN 108625209A CN 201810188261 A CN201810188261 A CN 201810188261A CN 108625209 A CN108625209 A CN 108625209A
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- fabric
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- acid
- resistant
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- Decoration Of Textiles (AREA)
Abstract
发明揭露一种在织物上形成立体装饰布的制造方法,是将耐腐蚀黏胶先设于离型纸上后,再将离型纸黏贴于一装饰布;另外在一织物的表面形成一耐腐蚀保护层;于剥离该离型纸后以热压贴合方式将装饰布的耐腐蚀黏胶黏贴于该织物的耐腐蚀保护层上;再于装饰布上形成一腐蚀层,以对该装饰布产生腐蚀而进行烧花;最后提供一清洗制程,以对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,进而去除该腐蚀层及剥离装饰布腐蚀后多余的布料。
Description
【技术领域】
本发明涉及一种透过在织物上固定布片来实施将该布片形成立体的装饰布的制造方法。
【背景技术】
现有技术,在织物或布匹的表面形成立体的装饰图案或形状的装饰布中,有利用纤维素系纤维遇酸炭化的性质的烧花印花方法。
所述烧花印花方法的制造方式为:利用包括硫酸的酸性糊(腐蚀剂),在丝或尼龙等耐酸性纤维和人造丝或棉等纤维素系纤维的交织物上形成花样,再实施热处理,从而使附着有糊的部分的纤维素系纤维炭化,然后通过揉洗等步骤除去此炭化部分,由此形成透亮的花样。
其中,日本特开昭61-146891号专利文献中记载了布料切下\加工方法,其是在由纤维素系纤维构成的布料的切下部分涂敷腐蚀剂,且实施干燥、加热处理,使布料的切下部分炭化并将其去除之后,沿着布料切下部分的周缘涂敷黏结剂并使其干燥。
另外,日本特开平6-212581号专利文献中记载了一种聚酯纤维布帛,其是由变性聚酯纤维与非变性聚酯纤维构成的纤维布帛,在变性聚酯纤维的完全腐蚀部、部分腐蚀部及未腐蚀部腐蚀加工出有花纹。但是,在布上固定由另外的布形成的装饰布片来实施装饰的情况下,进行将规定形状的装饰布片固定在被装饰布上的方法(方法1),或进行在被装饰布上固定了比规定形状大的装饰布后从该装饰布上切下规定形状的装饰布片的方法(方法2)。
在所述方法1的情况下,在被装饰布片上固定单个或多个装饰布片,特别是在花样由多个装饰布片构成时,为了使花样形成得漂亮,必须对各装饰布片进行高精度的对位。
对此,上述方法2则由于各装饰布片的相互位置不发生错动,所以,在配置各装饰布片时对精度没有要求。但是,在方法2的情况下,在将装饰布片的一部分固定在被装饰布上的状态下,必须以手工作业的方式切除装饰布中对装饰无用的部分,所以,在装饰布片形状复杂、装饰是由多个装饰布片构成的情况下,作业既费工夫又耗时,而且被切除的部分也不是一定的,因此,作业的完成情况会因作业者的熟练度不同而产生差异。
除了上述先前技术之外,目前关于类似这种将装饰布贴合方式,其间的黏胶在制造过程由于渗透到织物过多,而致使其间的黏胶减少而导致黏贴度不足而容易使装饰布脱离。
【发明内容】
本发明的目的在于提供一种解决前述现有技术方法在织物或布匹的表面形成立体的装饰图案或形状的装饰布所存在的缺失,使得装饰布可以更牢固地被黏贴定位在织物而在后续加工制程中不易脱离。
本发明的其中一特征,是将耐腐蚀黏胶先设于离型纸上后,再将离型纸黏贴于一装饰布;另外在一织物的表面形成一耐腐蚀保护层;于剥离该离型纸后以热压贴合方式将装饰布的耐腐蚀黏胶黏贴于该织物的耐腐蚀保护层上;再于装饰布上形成一腐蚀层,以对该装饰布产生腐蚀而进行烧花;最后提供一清洗制程,以对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,从而去除该腐蚀层及剥离装饰布腐蚀后多余的布料。
本发明的另一特征,可以直接将耐腐蚀黏胶涂布于一装饰布;另外在一织物的表面形成一耐腐蚀保护层;以热压贴合方式将装饰布的耐腐蚀黏胶黏贴于该织物的耐腐蚀保护层上;再于装饰布上形成一腐蚀层,以对该装饰布产生腐蚀而进行烧花;最后提供一清洗制程,以对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,从而去除该腐蚀层及剥离装饰布腐蚀后多余的布料。
基于前述,本发明的其中一技术手段包括:提供一离型纸,该离型纸的一表面以网印方式涂布有耐腐蚀黏胶并将该黏胶烘干;提供一装饰布,利用热转印方式将该离型纸上的黏胶黏贴于该装饰布的一表面;提供一织物,在该织物的一表面形成一耐腐蚀保护层,剥离该离型纸后再以热压贴合方式将该装饰布的黏胶黏贴于该织物的耐腐蚀保护层上;提供一腐蚀层,将该腐蚀层以网印方式形成在该装饰布上,以对该装饰布产生腐蚀;提供一清洗制程,对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,以去除该腐蚀层及剥离装饰布腐蚀后多余的布料。
较佳者,为了避免装饰布在后续制程中上腐蚀层时,用来腐蚀装饰布的酸液渗透至织物而造成织物酸蚀及黄变,本发明在PUR热熔胶添加碳酸氢钠(Na2CO3)的的碱液而组成所述耐腐蚀黏胶。
较佳者,本发明是使用三氯醋酸溶液做为用来腐蚀装饰布的腐蚀层。
较佳者,本发明使用三氯醋酸、硝酸(HNO3)、浓硫酸(H2SO4)、高锰酸(H2MnO4)、次氯酸(HClO)、氯酸(HClO3)、溴酸(HBrO3)、亚硝酸、乙二酸(H2C2O4)溶液或离子液体做为形成在装饰布上的腐蚀层后,进一步在125℃~135℃的温度下对该装饰布腐蚀15-25分钟,以氧化装饰布所含的棉质纤维素,进而破坏非结晶区域结构,使其断裂而易剥离。
为提高生产作业效率,本发明较佳地以网印方式在织物的表面刮印耐腐蚀保护层,且该耐腐蚀保护层的轮廓是对应装饰布的轮廓,借此,使装饰布对应地黏贴于该耐腐蚀保护层上。
另一方面,本发明可以将离型纸上的耐腐蚀黏胶黏贴于织物后,先以数位雕刻机将该装饰布连同离型纸裁切出预定的形状后,再将离型纸剥离可以保留较多黏胶以增强黏贴度,然后以热压贴合方式将装饰布黏贴于织物上的耐腐蚀保护层。
此外,本发明的另一技术手段包括:提供一耐腐蚀黏胶;提供一装饰布,将该耐腐蚀黏胶黏贴于该装饰布的一表面;提供一织物,在该织物的一表面形成一耐腐蚀保护层,再以热压贴合方式将该装饰布的耐腐蚀黏胶黏贴于该织物的耐腐蚀保护层上;提供一腐蚀层,将该腐蚀层以网印方式形成在该装饰布上,以对该装饰布产生腐蚀;提供一清洗制程,对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,以去除该腐蚀层及剥离装饰布腐蚀后多余的布料。
本发明的制造方法,由于是将耐腐蚀黏胶以转印方式形成于装饰布,或是直接将耐腐蚀黏胶涂布于装饰布,再以热压方式将装饰布黏贴于形成有耐腐蚀保护层的织物上,使得装饰布与织物之间具有一层耐腐蚀保护层与一层耐腐蚀黏胶予以隔离,从而,在后续于装饰布上形成腐蚀层时,腐蚀性的酸液仅可在装饰布上产生腐蚀效果,但无法渗透至织物,且装饰布与织物之间的黏结效果不会受到影响,亦即使得装饰布和织物之间的定位牢固性更为提高﹑不易脱离。
【附图说明】
图1为显示本发明的第一实施例制造流程示意图;
图2为显示本发明在一离型纸上网印耐腐蚀黏胶并将该黏胶烘干的示意图;
图3为显示本发明将形成于离型纸上的黏胶黏贴于装饰布的示意图;
图4为显示本发明在织物表面网印形成一耐腐蚀保护层的示意图;
图5为显示本发明将黏贴于装饰布的离型纸剥离后再以热压贴合方式将装饰布黏贴于织物的耐腐蚀保护层上的示意图;
图6为显示本发明在结合于织物上的装饰布表面网印一腐蚀层的示意图;
图7为显示本发明在织物上形成了立体装饰布后的平面示意图;以及
图8为显示本发明的第二实施例制造流程示意图。
【标号说明】
1.离型纸
2.耐腐蚀黏胶
3.织物
4.装饰布
5.耐腐蚀保护层
6.腐蚀层
【具体实施方式】
为详细说明本发明的技术内容、所实现目的及效果,以下结合实施方式并配合附图予以说明。
以下所述的本发明的制造方法,能够适用于布或布制品,该布制品适用于T恤衫﹑衬衫、裤子、袜子、提包、手帕等广泛的布制品。并且,在以下所示所实施例中,所述织物是由人造丝或棉等纤维素系纤维形成的针织物。但是,所述织物的原材料也可为丝或尼龙等耐酸性纤维,或者由耐酸性纤维与纤维素是纤维混合而成。并且,织物可为纺织物、针织物、无纺布中的任一种。
并且,在以下所示的实施例中,所述装饰布是由纤维素系纤维形成的针织物。但是,装饰布也可为纺织物、针织物、无纺布中的任一种。以下,针对本发明的实施例进行说明:
实施例1
配合图1的制造流程示意图所示,本发明提供的在织物上形成立体装饰布的制造方法,首先如图2所示地提供一离型纸1,并在该离型纸1的一表面以网印方式涂布耐腐蚀黏胶2,并以干燥装置(例如加热器)将该耐腐蚀黏胶2烘干而具备适当黏性;其中较佳者,该耐腐蚀黏胶2是包含有PUR热熔胶及碳酸氢钠(Na2CO3)的碱液,该PUR热熔胶与碳酸氢钠的比例可依实际的需要而定,在本发明中并不必要加以限制;此外,针对尼龙织物可能受到溢出的黏胶的影响而变黄,本发明可以进一步在黏胶中添加抗黄变助剂。借此,将耐腐蚀黏胶2形成于离型纸1上后即形成如同贴纸一般的离型纸。
图3是显示本发明将要结合于织物3上的装饰布4以黏贴方式固定于织物3上;其实施方式是将图2所示的离型纸1上的耐腐蚀黏胶2以热转印方式(即加热及加压)黏贴于一装饰布4的欲固定于织物3的一表面,使得装饰布4的一面借由该耐腐蚀黏胶2而覆盖一离型纸1。
所述耐腐蚀黏胶2可以采用反应型聚胺酯热熔胶(polyurethane reactiveadhesives,PUR),其分子链中,主结构上为含有胺甲酸酯基(-NHCOO-)或异氰酸酯基(-NCO)的官能基,支链上的官能基可为聚丙烯PP、丙烯酸酯Acrylic、矽氧烷Polydimethylsiloxane等,利用圆版涂布于被黏贴物表面,PUR可与存在空气中或者表面附着的湿气产生反应、扩链,生成交联网状结构且具有高内聚力的高分子固态聚合物,能快速固着而发挥其黏着效果,该耐腐蚀黏胶2(PUR)的化学式如下面所示:
在本发明的实施例中,利用该耐腐蚀黏胶2将装饰布4黏贴于织物3上后必须达到4Kg/cm2的结合力。
接下来如图4所示,在欲结合装饰布4的织物3的一表面上以网印方式刮印形成一耐腐蚀保护层5;该耐腐蚀保护层5的轮廓可以对应于装饰布4的轮廓;该耐腐蚀保护层5同样含有碳酸氢钠的碱性成分。然后再将装饰布4结合于织物3上。其结合方式是如图5所示,将装饰布4上的离型纸1剥离以露出耐腐蚀黏胶2,再将该耐腐蚀黏胶2对准织物3上的耐腐蚀保护层5后将耐腐蚀黏胶2与耐腐蚀保护层5相互黏合,然后施以加压及加热(即热压方式)将装饰布4牢固地黏贴于织物3。
装饰布4黏贴于织物3上后形成了织物与布重叠的双层结构,此时即可对位于上方的装饰布4进行「烧花」处理;如图6所示,其处理方式,可以采用网印方式在装饰布4上印上一层腐蚀层6,借由该腐蚀层6对装饰布4产生腐蚀作用;例如,可以利用具有腐蚀性质的三氯醋酸溶液做为该腐蚀层6,而且,当在装饰布4上网印了该三氯醋酸溶液后,较佳地在125℃~135℃的温度下对装饰布4腐蚀15-25分钟,以氧化装饰布4所含的棉质纤维素,进而破坏非结晶区域结构,使其断裂而容易剥离。此外,亦可利用对于纤维素具有氧化效用的强氧化酸做为所述腐蚀层6,例如硝酸(HNO3)、浓硫酸(H2SO4)、高锰酸(H2MnO4)、次氯酸(HClO)、氯酸(HClO3),溴酸(HBrO3)、亚硝酸、乙二酸(H2C2O4)、离子液体等,使纤维素的葡萄糖苷键受酸催化水解而断裂,进而达到蚀刻烧花效果。
其中,前述的离子液体是利用氯离子与纤维素上的羟基反应形成氢键,以降低分子内的氢键作用力,使纤维素溶解于离子液体中,如下图所示:离子液体1-butyl-3-methylimidazolium chloride([C4mim]Cl)纤维素cellulose
其在反应中不会产生有害气体,无味无污染,易于分离回收,可取代有机溶剂以改善环保问题。
最后,通过一清洗制程对该黏贴了装饰布4且进行腐蚀后的织物3先进行水洗以去除该腐蚀层6;而后再进行皂洗以剥离装饰布4经腐蚀后多余的布料,即可获得在织物3上具备预定图案﹑形状或文字等的装饰布(如图7所示)。
实施例2
本发明的第2种实施例基本上相同于前述的第1实施例,仅在将装饰布4黏贴于织物3上的方式有所差异;其差异处是在将离型纸1上的耐腐蚀黏胶黏贴于装饰布后,先以数位雕刻机将该装饰布4连同离型纸1裁切出所需要的形状后,再将该离型纸1剥离,然后以热压贴合方式将装饰布4黏贴于织物3上的耐腐蚀保护层;其他制程由于和前述第1实施例相同,故不再赘述。
此外,本发明亦可以图8所示的制造流程取代图1所示的制造流程;其中,如图8所示,本发明提供的在织物上形成立体装饰布的制造方法的另一种方式,可以直接提供一耐腐蚀黏胶,该耐腐蚀黏胶是包含有PUR热熔胶及碳酸氢钠(Na2CO3)的碱液,该PUR热熔胶与碳酸氢钠的比例可依实际的需要而定,在本发明中并不必要加以限制;此外,针对尼龙织物可能受到溢出的黏胶的影响而变黄,本发明可以进一步在黏胶中添加抗黄变助剂。
然后将要结合于织物上的装饰布直接涂布该耐腐蚀黏胶,再以热转印方式(即加热及加压)将装饰布上的耐腐蚀黏胶黏贴于欲固定于织物的一表面。接下来在欲结合装饰布的织物的一表面上以网印方式刮印形成一耐腐蚀保护层;该耐腐蚀保护层的轮廓可以对应于装饰布的轮廓;该耐腐蚀保护层同样含有碳酸氢钠的碱性成分。然后再将装饰布结合于织物3上。
装饰布黏贴于织物上后形成了织物与布重叠的双层结构,此时即可对位于上方的装饰布进行「烧花」处理;其处理方式,可以采用网印方式在装饰布上印上一层腐蚀层,借由该腐蚀层对装饰布产生腐蚀作用;例如,可以利用具有腐蚀性质的三氯醋酸溶液做为该腐蚀层,而且,当在装饰布上网印了该三氯醋酸溶液后,较佳地在125℃~135℃的温度下对装饰布腐蚀15-25分钟,以氧化装饰布所含的棉质纤维素,进而破坏非结晶区域结构,使其断裂而容易剥离。此外,亦可利用对于纤维素具有氧化效用的强氧化酸做为所述腐蚀层,例如硝酸(HNO3)、浓硫酸(H2SO4)、高锰酸(H2MnO4)、次氯酸(HClO)、氯酸(HClO3),溴酸(HBrO3)、亚硝酸、乙二酸(H2C2O4)、离子液体等,使纤维素的葡萄糖苷键受酸催化水解而断裂,进而达到蚀刻烧花效果。
最后,通过一清洗制程对该黏贴了装饰布且进行腐蚀后的织物先进行水洗以去除该腐蚀层;而后再进行皂洗以剥离装饰布经腐蚀后多余的布料,即可获得在织物上具备预定图案﹑形状或文字等的装饰布。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等同变换,或直接或间接运用在相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
1.一种在织物上形成立体装饰布的制造方法,包括:
提供一离型纸,该离型纸的一表面以网印方式涂布有耐腐蚀黏胶并将该黏胶烘干;
提供一装饰布,利用热转印方式将该离型纸上的黏胶黏贴于该装饰布的一表面;
提供一织物,在该织物的一表面形成一耐腐蚀保护层,剥离该离型纸后再以热压贴合方式将该装饰布的黏胶黏贴于该织物的耐腐蚀保护层上;
提供一腐蚀层,将该腐蚀层以网印方式形成在该装饰布上,以对该装饰布产生腐蚀;
提供一清洗制程,对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,以去除该腐蚀层及剥离腐蚀后多余的布料。
2.依据权利要求1所述的在织物上形成立体装饰布的制造方法,其中,该耐腐蚀黏胶包含有PUR热熔胶及碳酸氢钠(Na2CO3)的碱液。
3.依据权利要求2所述的在织物上形成立体装饰布的制造方法,其中,该腐蚀层为三氯醋酸、硝酸(HNO3)、浓硫酸(H2SO4)、高锰酸(H2MnO4)、次氯酸(HClO)、氯酸(HClO3)、溴酸(HBrO3)、亚硝酸、乙二酸(H2C2O4)溶液或离子液体。
4.依据权利要求3所述的在织物上形成立体装饰布的制造方法,其中,该腐蚀层在125℃~135℃的温度下对该装饰布腐蚀15-25分钟,以氧化装饰布所含的棉质纤维素,以破坏非结晶区域结构,使其断裂而易剥离。
5.依据权利要求1-4任一项所述的在织物上形成立体装饰布的制造方法,其中,该耐腐蚀保护层以网印方式刮印在该织物的表面,且该耐腐蚀保护层的轮廓对应该装饰布的轮廓。
6.依据权利要求1-4任一项所述的在织物上形成立体装饰布的制造方法,其中,将该离型纸上的耐腐蚀黏胶黏贴于该织物后,是以数位雕刻机将该装饰布连同该离型纸裁切出预定的形状后,再将该离型纸剥离,然后以热压贴合方式将该装饰布黏贴于该织物上的该耐腐蚀保护层。
7.一种在织物上形成立体装饰布的制造方法,包括:
提供一耐腐蚀黏胶;
提供一装饰布,将该耐腐蚀黏胶涂布于该装饰布的一表面;
提供一织物,在该织物的一表面形成一耐腐蚀保护层,再以热压贴合方式将该装饰布的耐腐蚀黏胶黏贴于该织物的耐腐蚀保护层上;
提供一腐蚀层,将该腐蚀层以网印方式形成在该装饰布上,以对该装饰布产生腐蚀;
提供一清洗制程,对该黏贴了装饰布且进行腐蚀后的织物依序进行水洗及皂洗,以去除该腐蚀层及剥离腐蚀后多余的布料。
8.依据权利要求7所述的在织物上形成立体装饰布的制造方法,其中,该耐腐蚀黏胶包含有PUR热熔胶及碳酸氢钠(Na2CO3)的碱液。
9.依据权利要求8所述的在织物上形成立体装饰布的制造方法,其中,该腐蚀层为三氯醋酸、硝酸(HNO3)、浓硫酸(H2SO4)、高锰酸(H2MnO4)、次氯酸(HClO)、氯酸(HClO3)、溴酸(HBrO3)、亚硝酸、乙二酸(H2C2O4)溶液或离子液体。
10.依据权利要求9所述的在织物上形成立体装饰布的制造方法,其中,该腐蚀层在125℃~135℃的温度下对该装饰布腐蚀15-25分钟,以氧化装饰布所含的棉质纤维素,以破坏非结晶区域结构,使其断裂而易剥离。
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JPH05302265A (ja) * | 1992-04-20 | 1993-11-16 | Hananouchi Sensen Kk | 抜蝕捺染加工布の製造法 |
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