CN107898059B - 一种透气立体鞋面结构及其制作工艺 - Google Patents
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Abstract
本发明具体公开一种透气立体鞋面结构,包括网布基层、网布面层及位于网布基层和网布面层之间的立体胶印层和接合层,所述立体胶印层由下及上依次为油性光油层、水性立体金油层、发泡色浆层和网点印刷层,所述立体胶印层覆盖部分网布基层,所述网布面层通过接合层分别与网布基层和立体胶印层热压连接。本发明还公开了透气立体鞋面结构的制作工艺。采用本发明技术方案不仅实现无车缝一体式鞋面并在鞋面的非最表层上形成立体装饰感非常强,又对整个鞋面有定型支撑的作用,使得鞋面具有良好的挺括性和美观度,透过网布面层可直接观察到印花图案,且鞋面各层结合紧固,牢靠耐穿。
Description
技术领域
本发明涉及鞋类技术领域,特别是涉及一种透气立体鞋面结构及其制作工艺。
背景技术
随着生活水平的提高,人们对鞋子的要求也越来越高,越来越多元化,不但要求鞋子的轻便性、透气性和舒适性,还要求鞋子具有较好的美观度,美观度包括鞋子的挺括性、定型性和鞋面装饰。
目前,有一些运动鞋和休闲鞋局部或整体采用网布来制作,增加了鞋子的轻便性和透气性,舒适性提高,但若是整体鞋面采用网布,鞋面较软,挺括性差,鞋子容易变形、软塌,只能在鞋面上车缝皮革条骨架或粘结橡胶条骨架,以提供鞋面的定型支撑,但是结构单一化,影响鞋子轻便性和美观度,鞋面没有立体效果。
另外,在传统制鞋行业中,装饰图案通常是在运动鞋的鞋面上采用油墨印刷工艺,而且只能在鞋面最表层的局部,不能过大,图案设计受到限制,且油墨印刷的图案等为平面图案,不具有支撑和保护功能,只能起装饰作用,且图案不具备立体感。
为此,有人设计了在运动鞋的鞋面上加设棉层或者由皮料、人造皮革料等制成的复合棉层来制作图案,以此提高运动鞋的舒适性,并提供支撑和保护的功能。然而,这种方式的缺点在于,用棉层制作图案的灵活性和可变性差,能制的图案比较单一,不符合现代社会多样化的需求,且用棉层制作图案的工艺较复杂,成本高。
发明内容
为克服现有技术存在的技术缺陷,本发明提供一种透气立体鞋面结构,立体装饰感强,对整个鞋面有定型支撑作用。
本发明采用的技术解决方案是:
一种透气立体鞋面结构,包括网布基层、网布面层及位于网布基层和网布面层之间的立体胶印层和接合层,所述立体胶印层由下及上依次为油性光油层、水性立体金油层、发泡色浆层和网点印刷层,所述立体胶印层覆盖部分网布基层,所述网布面层通过接合层分别与网布基层和立体胶印层热压连接。
优选地,所述网布基层为三明治网布。
优选地,所述网布面层为单层网。
优选地,所述接合层为网状热熔胶膜。
优选地,所述水性立体金油层和发泡色浆层的厚度比为(5~6)∶4。
优选地,所述网布面层的轮廓形状和网布基层的轮廓形状均对应于鞋面整体的轮廓形状。
优选地,所述立体胶印层由多个相互独立或连在一起的胶印单体组成,各胶印单体相对网布基层上凸厚度为1.0mm~2.0mm。
本发明还提供一种透气立体鞋面结构的制作工艺,具体包括如下步骤:
步骤一、在网布基层上形成立体胶印层,具体为:将预先热定型的所述网布基层平放在一平台上,在网布基层的顶面胶印位置处丝印油性光油,2遍4刀,形成油性光油层;在油性光油层上再丝印水性立体金油,6遍12刀,且每印一遍后用流动烘箱烘烤至呈透明状,流动烘箱温度控制在65℃~80℃,形成水性立体金油层;在水性立体金油层上再丝印发泡色浆,连续4遍8刀,然后放在发泡机内发泡,温度150℃~180℃,时间5秒~8秒,形成发泡色浆层;待发泡色浆层发泡完成半小时后,再在发泡色浆层上进行网点印刷,3遍6刀,形成网点印刷层;干燥,备用;
步骤二、在步骤一制作好的胶印网布基层及预先热定型的网布面层上分别对应敲好挂钉孔;
步骤三、对应好挂钉孔,由下往上依次叠置胶印网布基层、接合层和网布面层在热压高温熔合机台上,检查立体胶印层位置与模具凹凸位是否对齐后再热压,上模温度270℃~290℃,下模温度120℃~130℃,压力5kg~6kg,时间55秒~60秒。
优选地,所述网布基层和网布面层的热定型温度均为150℃~160℃,时间均为8秒~10秒。
优选地,网点印刷后采用自然晾干24小时方式干燥。
本发明的有益效果:
1.由于在网布基层上设置有立体胶印层,网布面层通过接合层热压熔接网布基层和立体胶印层,且立体胶印层由下及上依次为油性光油层、水性立体金油层、发泡色浆层和网点印刷层,不仅实现无车缝一体式鞋面并在鞋面的非最表层上形成立体装饰感非常强,又对整个鞋面有定型支撑的作用,使得鞋面具有良好的挺括性和美观度,透过网布面层可直接观察到印花图案,且鞋面各层结合紧固,牢靠耐穿。
2.本发明通过网点印刷层既丰富了立体胶印层表面的色彩和图案设计,提升美感,又对水性立体金油层和发泡色浆层有很好的防护抗老化作用,降低在网布面层和网布基层高温热熔时对发泡色浆层和水性立体金油层的不良影响。而且,网点印刷层涂覆在发泡色浆层上,利于增强网点印刷层的附着力和抗色变能力。
3.本发明通过油性光油先对网布基层进行处理,相对水性光油而言能够在网布基层的胶印位置起到一种架桥处理效果,使水性立体金油与网布基层之间粘合更加牢靠稳固,增强鞋面的抗拉强度,且可减少浪费。
附图说明
图1为本发明网布基层和立体胶印层结构示意图。
图2为本发明鞋面沿图1中所示A-A处的剖视图。
图3为图2中所示B的局部放大图。
附图标记说明:
10、网布基层;20、网布面层;30、立体胶印层;31、油性光油层;32、水性立体金油层;33、发泡色浆层;34、网点印刷层;40、接合层;100、挂钉孔。
具体实施方式
下面结合附图对本发明作进一步说明:
如图1-3所示,本实施例提供一种透气立体鞋面结构,包括网布基层10、网布面层20及位于网布基层10和网布面层20之间的立体胶印层30和接合层40,所述网布面层20的轮廓形状和网布基层10的轮廓形状均对应于鞋面整体的轮廓形状。
在本实施例中,所述立体胶印层30由下及上依次为油性光油层31、水性立体金油层32、发泡色浆层33和网点印刷层34,所述水性立体金油层32和发泡色浆层33的厚度比为(5~6)∶4,所述立体胶印层30覆盖部分网布基层10,所述网布面层20通过接合层40分别与网布基层10和立体胶印层30热压连接。
在本实施例中,所述网布面层20为单层网,所述网布基层10为三明治网布,所述接合层40为网状热熔胶膜。其中,三明台网布包括网孔上层、单丝连接层和底层,单丝连接层将网孔上层和底层连接成一体,所述油性光油层31涂覆在网孔上层上。
在本实施例中,所述立体胶印层30由多个相互独立或连在一起的胶印单体组成,各胶印单体相对网布基层10上凸厚度为1.0mm~2.0mm,可根据预设图案分布在鞋面的鞋头、内腰、外腰及后领口的一处或多处。
本实施例还进一步提供一种透气立体鞋面结构的制作工艺,具体包括如下步骤:
步骤一、在网布基层10上形成立体胶印层30,具体为:将预先热定型的所述网布基层10平放在一平台上,在网布基层10的顶面胶印位置处丝印油性光油,2遍4刀,形成油性光油层31;在油性光油层31上再丝印水性立体金油,6遍12刀,且每印一遍后用流动烘箱烘烤至呈透明状,流动烘箱温度控制在65℃~80℃,形成水性立体金油层32;在水性立体金油层32上再丝印发泡色浆,连续4遍8刀,然后放在发泡机内发泡,温度150℃~180℃,时间5秒~8秒,形成发泡色浆层33;待发泡色浆层33发泡完成半小时后,再在发泡色浆层33上进行网点印刷,3遍6刀,形成网点印刷层34;干燥,备用;
步骤二、在步骤一制作好的胶印网布基层及预先热定型的网布面层20上分别对应敲好挂钉孔100;
步骤三、对应好挂钉孔100,由下往上依次叠置胶印网布基层、接合层40和网布面层20在热压高温熔合机台上,检查立体胶印层30位置与模具凹凸位是否对齐后再热压,上模温度270℃~290℃,下模温度120℃~130℃,压力5kg~6kg,时间55秒~60秒。
其中,网点印刷后采用自然晾干24小时方式干燥。所述网布基层10和网布面层20的热定型温度均为150℃~160℃,时间均为8秒~10秒。在印刷之前先按照预定图案制作好丝印网板,所述丝印网板中空处的底面设有一纱网状的底层,底层表面上于胶印位置以外的区域设置阻隔层结构以利丝印的材料由未设阻隔结构区域透过。
优选地,所述发泡色浆由如下重量份数的组分组成:水性聚氨酯乳液80~100份;增稠剂0.5~2份;发泡剂2~5份;润湿剂1~3份;流平剂0.5~2份;成膜助剂3~5份;分散剂0.3~0.5份;脂肪酸盐类表面活性剂0.5~2.0份;色浆1~5份;填料10~30份。优选地,所述水性立体金油由如下重量份数的组分组成:聚氨酯水性树脂75~80份、气相二氧化硅5~8份、分散剂0.5~1.5份、增稠剂0.2~0.5份、调节剂0.2~0.5份、成膜助剂3~5份、保湿剂5~7份、固化剂7~8份。
以上显示和描述了本发明创造的基本原理和主要特征及本发明的优点,本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明创造精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内,本发明要求保护范围由所附的权利要求书及其等效物界定。
Claims (7)
1.一种透气立体鞋面结构的制作工艺,其特征在于,具体包括如下步骤:
步骤一、在网布基层上形成立体胶印层,具体为:将预先热定型的所述网布基层平放在一平台上,在网布基层的顶面胶印位置处丝印油性光油,2遍4刀,形成油性光油层;在油性光油层上再丝印水性立体金油,6遍12刀,且每印一遍后用流动烘箱烘烤至呈透明状,流动烘箱温度控制在65℃~80℃,形成水性立体金油层;在水性立体金油层上再丝印发泡色浆,连续4遍8刀,然后放在发泡机内发泡,温度150℃~180℃,时间5秒~8秒,形成发泡色浆层;待发泡色浆层发泡完成半小时后,再在发泡色浆层上进行网点印刷,3遍6刀,形成网点印刷层;干燥,备用;
所述发泡色浆由如下重量份数的组分组成:水性聚氨酯乳液80~100份;增稠剂0.5~2份;发泡剂2~5份;润湿剂1~3份;流平剂0.5~2份;成膜助剂3~5份;分散剂0.3~0.5份;脂肪酸盐类表面活性剂0.5~2.0份;色浆1~5份;填料10~30份;
所述水性立体金油由如下重量份数的组分组成:聚氨酯水性树脂75~80份、气相二氧化硅5~8份、分散剂0.5~1.5份、增稠剂0.2~0.5份、调节剂0.2~0.5份、成膜助剂3~5份、保湿剂5~7份、固化剂7~8份;
步骤二、在步骤一制作好的胶印网布基层及预先热定型的网布面层上分别对应敲好挂钉孔,所述网布面层为单层网;
步骤三、对应好挂钉孔,由下往上依次叠置胶印网布基层、接合层和网布面层在热压高温熔合机台上,检查立体胶印层位置与模具凹凸位是否对齐后再热压,上模温度270℃~290℃,下模温度120℃~130℃,压力5kg~6kg,时间55秒~60秒;
所述立体胶印层覆盖部分网布基层,所述网布面层通过接合层分别与网布基层和立体胶印层热压连接,所述接合层为网状热熔胶膜。
2.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,所述网布基层和网布面层的热定型温度均为150℃~160℃,时间均为8秒~10秒。
3.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,网点印刷后采用自然晾干24小时方式干燥。
4.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,所述网布基层为三明治网布。
5.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,所述水性立体金油层和发泡色浆层的厚度比为(5~6)∶4。
6.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,所述网布面层的轮廓形状和网布基层的轮廓形状均对应于鞋面整体的轮廓形状。
7.根据权利要求1所述的透气立体鞋面结构的制作工艺,其特征在于,所述立体胶印层由多个相互独立或连在一起的胶印单体组成,各胶印单体相对网布基层上凸厚度为1.0mm~2.0mm。
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