CN204451574U - 热升华转印纸结构 - Google Patents
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- B—PERFORMING OPERATIONS; TRANSPORTING
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Abstract
本新型涉及一种热升华转印纸结构,包括底纸;以及设置于底纸上具渗透孔隙的涂布层,通过上述结构的组成,作为热升华油墨的载体,渗透孔隙提供并限制部份热升华油墨渗透至涂布层及底纸,增加热升华油墨的附着力,并可在维持热升华油墨的干燥速率下,避免已知热升华油墨直接设置于底纸时,会被底纸过度吸收,造成转印的热升华油墨不足,导致转印成品色彩暗淡不饱满等缺陷。
Description
技术领域
本实用新型属于转印纸的技术领域,特别是提供热升华油墨设置的热升华转印纸结构。
背景技术
现有的纺织品设置图案的方法,常见的有网版印刷、染整染色与直接喷印等等技术。网版印刷的作法需要先行制版,且印制速度慢、色彩中半色调表现不佳,又纺织成品图像僵硬,水洗也容易脱落掉色。而使用染整染色的方法,只适合大批量订单染色,并仅能制作单一颜色,近年来个性化商品抬头,又少量多样且要求时效的产品需求大增,使得染整染色工法日渐式微。另外,直接喷印虽不需制版,但需先作基材表面的涂布层处理,再将图案喷印在基材上,作业程序繁复且相关机台及制作费用高。
业界为了改善上述工法的缺陷,并维持基材(衣物)原来的柔软度、增加图案色彩层次表现,并保持图案不易脱落,提出了热升华转印技术。已知热升华转印是将具有热升华特性染料(油墨)加热至200摄氏度,使染料(油墨)由固态变成气态。让气化的染料(油墨)能渗入基材或转印物的纤维中,当温度下降后,染料(油墨)还原成固态,形成图稿影像。
且热升华转印的染料(油墨)具有可穿透纤维、无胶感、布料透气性佳等优点,并达成耐洗不易掉色、色彩牢固度佳,有效保持颜色饱和度与鲜艳度,进而呈现渐层色、阴影等细节。使得热升华转印技术,普遍被使用在衣物基材上的图案印制。
而热升华转印技术施实方式,请参阅图4、5所示,除通过机具直接输出外,常见的则是将热升华油墨922依预设图稿图案920设置于一底纸940上,除了价格便宜,更提供使用者多样且个性化的选择,与DIY制作的乐趣,并方便厂商少量多样的快速生产。然而,热升华油墨922设置在底纸940上时,容易被底纸940过度的吸收,当使用者将底纸940的图案920转印到基材(图中未示)时,由于热升华油墨922已被过度的吸收,造成可被转印的热升华油墨922不足,导致图案920成色效果不如预期。
实用新型内容
有鉴于上述已知技艺的缺陷,本实用新型目的之一,就是在于提供一种热升华转印纸结构,提供当热升华油墨设置在底纸时,避免底纸过度吸收热升华油墨,造成热升华油墨转印时,会因热升华油墨不足而有色彩饱和度及层次不佳等缺陷。
实现上述目的的技术方案如下:热升华转印纸结构,其特征在于:包括底纸;以及
涂布层,所述涂布层设置在底纸上,并且涂布层具有数道渗透孔隙。
优选的,其中涂布层上涂布有涂层,所述涂层为混合物溶液,所述混合物溶液中包含硫酸钡、淀粉衍生物、硅化合物、纤维素衍生物、高分子树脂。
优选的,其中涂布层上涂布有涂层,所述涂层为混合物溶液,所述混合物溶液中包含硫酸钡、淀粉衍生物、硅化合物、纤维素衍生物、高分子树脂。
优选的,其中涂布层上涂布有涂层,所述涂层为混合物溶液,所述混合物溶液中包含太白粉、淀粉衍生物、硅化合物、纤维素衍生物、高分子树脂。
优选的,其中涂布层上涂布有涂层,所述涂层为混合物溶液,所述混合物溶液中包含无机颜料、淀粉衍生物、硅化合物、纤维素衍生物、高分子树脂。
混合物溶液形成后将混合物溶液涂布在底纸上,混合物溶液干燥后即形成涂层。
优选的,其中硅化合物采用磁土、云母、膨皂土、铁矾石中的一种或数种。
本实用新型可以避免底纸过度吸收热升华油墨。
附图说明
图1为本实用新型结构剖面示意图
图2为本实用新型实例剖面示意图
图3为本实用新型结构实例局部剖面示意图
图4为已知热升华转印纸实施例立体示意图
图5为已知热升华转印纸实施例局部剖面示意图
附图序号说明:底纸120、涂布层140、渗透孔隙142、热升华油墨160、图案920、热升华油墨922、底纸940
具体实施方式
下面结合附图对本实用新型做详细的说明。
以下请参照相关附图进一步说明本实用新型结构实施例。为便于理解,以下相同元件采用相同符号标示说明。
请参阅图1至图3所示,热升华转印纸结构包括:一底纸120;以及一设置在底纸120上,且具有渗透孔隙142的涂布层140,通过上述结构的组成,提供作为热升华油墨160的载体,热升华油墨160仅只有部份能沿渗透孔隙142渗透至涂布层140,本结构除增加热升华油墨160的附着力外,并可在维持热升华油墨160的干燥速率下,解决已知热升华油墨160设置在底纸120时,热升华油墨160会被底纸120过度吸收,造成欲作为转印用的热升华油墨160不足,导致成品色彩暗淡不饱满等缺陷。
上述涂布层140包含有一无机颜料、一淀粉衍生物、一硅化合物、一纤维素衍生物、以及一高分子树脂混合组成的涂布溶液(即上述物质混合后形成的混合物溶液),通过无机颜料的粒径,使涂布溶液涂布在底纸120上干燥后,涂布层140会因无机颜料彼此间的颗粒间隙,而形成渗透孔隙142,并使热升华油墨160可局部渗入这些渗透孔隙。实施时,无机颜料可选择性的由硫酸钡、太白粉、高岭土、滑石粉或锌颜料中的一种或其组合替换。
上述淀粉衍生物可选择性采用生淀粉(玉米淀粉、马铃薯淀粉、蕃薯淀粉、小麦淀粉、木薯(cassava)淀粉、西米淀粉、树薯(tapioca)淀粉、帚蜀黍(Sorghum bicolor Moench)淀粉、米淀粉、豆淀粉、葛淀粉、蕨淀粉、莲淀粉、荸荠淀粉等);酵素改质淀粉(水解糊精、酵素分解糊精、直链淀粉等);化学改质淀粉衍生物(酯化淀粉、醚化淀粉、阳离子化淀粉、交联淀粉等)等。再者,作为化学改质淀粉衍生物中的酯化淀粉,可列举乙酸酯化淀粉、琥珀酸酯化淀粉、硝酸酯化淀粉、磷酸酯化淀粉、脲磷酸酯化淀粉、黄原酸酯化淀粉、乙酰乙酸酯化淀粉等;作为醚化淀粉,可列举烯丙基醚化淀粉、甲醚化淀粉、羧甲基醚化淀粉、羟乙基醚化淀粉、羟丙基醚化淀粉等;作为阳离子化淀粉,可列举淀粉与2-二乙基胺基乙基氯化物的反应物,淀粉与2,3-环氧丙基三甲基氯化胺的反应物等;作为交联淀粉,可列举甲醛交联淀粉、表氯醇交联淀粉、磷酸交联淀粉、丙烯醛交联淀粉等。
上述硅化合物可选择性的采用磁土、云母、膨皂土或铁矾石中的一种或数种组合。
上述纤维素衍生物可选择性的采用硝酸纤维素、醋酸纤维素、甲基纤维素、羧甲基纤维素、以及乙基纤维素中的一种或数种组合。
上述高分子树脂可选择性的采用醇酸树脂(Alkydresins)、不饱和树脂(unsaturated Resins)、环氧树脂(Epoxy Resins,EP)、硅素树脂(Silicone Resins,SI):呋酸二丙烯酯树脂(Diallyl Phthalate Resins,DAP)、聚氯乙烯(Polyvinyl Chloride,H(CH2CHCl)Nh,PVC)、聚乙烯醇(Polyvinyl Alcohol H[CH2CH(OH)]nH,PVA)、聚苯乙烯(Polystyrene,H[CH(C6H5)CH2)]nH,PS)、聚丙烯(Poly Propylence H[CH(CH3)CH2)]nH,PP)、压克力树脂(Acrylic Resins)、丙烯晴-苯乙烯(Acrylonitrile-butadiene-Styrene,ABS)、聚醋酸乙烯酯(Polyvinyl Acetate,PVAC)、以及聚酰胺(Polyamide,PA)中的一种或数种组合。
上述即为本实用新型所提供一较佳实施例,热升华转印纸结构各部构件介绍,接着再将本实用新型的组装方式及使用特点介绍如下:首先,将涂布层140设置于底纸120上,设置方式可预先将无机颜料、淀粉衍生物、硅化合物、纤维素衍生物以及高分子树脂混合组成的涂布溶液,以每平方米约0.1~30μm的涂布量,均匀的涂布于底纸120上形成。并提供使用者可通过印刷设备将热升华油墨160依预设的图案或文字印刷在涂布层140上,使得热升华油墨160部份经由涂布层140的渗透孔隙142渗透至涂布层140及底纸120,待热升华油墨160干燥后,形成一具有图案的热升华转印纸(图中未示)。
如此,使用者将转印热升华油墨160所构成的图案放置在预设的基材(例如纺织品,图中未示)上时,可将具有图案的热升华转印纸设置在基材预设位置,配合加热设备(图中未示)提供大约200摄氏度的加热温度,使涂布层140上的热升华油墨160被加热形成气态,而嵌入基材表面,待加热设备移开温度下降后,热升华油墨160则由气态变为固态并与基材聚合在一起。
本实用新型,通过涂布层140提供热升华油墨160设置时,只有部份热升华油墨160经由渗透孔隙142渗入涂布层140及底纸120,避免热升华油墨160被底纸120过度吸收,而能保留足够的热升华油墨160在涂布层140相对于底纸120的另一面上,使热升华油墨160被加热后,仍有足够的热升华油墨160量,披覆于基材表面,确保热升华油墨160的图形成品的色彩饱和度。
以上所述说明,仅为本实用新型的较佳实施方式而已,意在明确本实用新型的特征,并非用以限定本实用新型实施例的范围,本技术领域内的一般技术人员根据本实用新型所作的均等变化,以及本领域内技术人员熟知的改变,仍应属本实用新型涵盖的范围。
Claims (2)
1.热升华转印纸结构,其特征在于:包括底纸;以及
涂布层,所述涂布层设置在底纸上,并且涂布层具有数道渗透孔隙。
2.根据权利要求1所述的热升华转印纸结构,其特征在于:其中所述涂布层上涂布有涂层。
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
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CN106497241A (zh) * | 2016-10-18 | 2017-03-15 | 苏州吉谷新材料有限公司 | 耐光热升华转印膜 |
CN106519808A (zh) * | 2016-09-27 | 2017-03-22 | 苏州吉谷新材料有限公司 | 一种环保型热升华涂层材料 |
CN107663810A (zh) * | 2016-07-29 | 2018-02-06 | 华南理工大学 | 一种快干热升华转印纸及其制备方法与涂料组合物及其协同构建的微孔吸墨膨胀涂层 |
CN110168165A (zh) * | 2017-01-12 | 2019-08-23 | 奥斯龙-明士克公司 | 含有碱土金属盐的升华印刷用转印纸 |
CN111074683A (zh) * | 2020-01-08 | 2020-04-28 | 江苏耐斯数码科技股份有限公司 | 一种热熔涂布热升华打印相纸及制备方法 |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107663810A (zh) * | 2016-07-29 | 2018-02-06 | 华南理工大学 | 一种快干热升华转印纸及其制备方法与涂料组合物及其协同构建的微孔吸墨膨胀涂层 |
CN106519808A (zh) * | 2016-09-27 | 2017-03-22 | 苏州吉谷新材料有限公司 | 一种环保型热升华涂层材料 |
CN106497241A (zh) * | 2016-10-18 | 2017-03-15 | 苏州吉谷新材料有限公司 | 耐光热升华转印膜 |
CN110168165A (zh) * | 2017-01-12 | 2019-08-23 | 奥斯龙-明士克公司 | 含有碱土金属盐的升华印刷用转印纸 |
US11787215B2 (en) | 2017-01-12 | 2023-10-17 | Ahlstrom Oyj | Transfer paper for sublimation printing, comprising an alkaline earth salt |
CN111074683A (zh) * | 2020-01-08 | 2020-04-28 | 江苏耐斯数码科技股份有限公司 | 一种热熔涂布热升华打印相纸及制备方法 |
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