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    • 1. 发明授权
    • Thermal transfer image forming method, and combination of thermal transfer members used therein
    • 热转印成像方法,以及其中使用的热转印构件的组合
    • US06246427B1
    • 2001-06-12
    • US09574370
    • 2000-05-19
    • Jun SogabeYuuichi Miyakusa
    • Jun SogabeYuuichi Miyakusa
    • B41J2325
    • B41J2/325B41J2202/34B41M5/345B41M5/40
    • A thermal transfer image forming method comprising the steps of: using a preprint ribbon comprising, on its substrate, at least a first ink layer and a second ink layer in this order from the side of the substrate, and an ink ribbon comprising, on its substrate, at least a color ink layer and an adhesive layer in this order from the side of the substrate; first conducting a thermal transfer using the preprint ribbon onto a receptor to form a preprint image whose topmost layer is composed of the first ink layer; and subsequently conducting a thermal transfer using the ink ribbon onto the preprint image to form an ink image, wherein the first ink layer of the preprint ribbon and the adhesive layer of the ink ribbon comprise the same kind of material as respective main components.
    • 一种热转印图像形成方法,包括以下步骤:使用预印带,在其基板上至少包含第一油墨层和第二油墨层,所述第一油墨层和所述第二油墨层从所述基板的侧面依次依次包括, 基板,至少一个彩色油墨层和一层粘合剂层; 首先使用预印带进行热转印到受体上以形成最初层由第一油墨层组成的预印图像; 并且随后使用所述墨带进行热转印到所述预打印图像上以形成墨图像,其中所述预印带的第一墨层和所述墨带的粘合剂层包含与各主要组分相同种类的材料。
    • 3. 发明授权
    • Metallic thermal transfer recording medium
    • 金属热转印记录介质
    • US06562442B2
    • 2003-05-13
    • US09761607
    • 2001-01-16
    • Jun SogabeYuuichi MiyakusaYoshiyuki AsabeYasutoshi Inoue
    • Jun SogabeYuuichi MiyakusaYoshiyuki AsabeYasutoshi Inoue
    • B32B300
    • B41M5/44B41M5/38214
    • A thermal transfer recording medium for forming a printed image with metallic luster of high level with superior transferability according to a thermal transfer mechanism is disclosed which comprises a foundation, and provided on one side of the foundation, a laminate transfer layer comprising at least a release layer, a heat-resistant layer for metal deposition, a metal deposition layer and an adhesive layer in this order from the foundation side, the release layer having a thickness of 0.05 to 0.50 &mgr;m and a softening point not lower than 100° C., the release layer being a substantially transparent layer consisting essentially of a resin, and the peel strength of the laminate transfer layer from the foundation according to T-mode peeling being not larger than 50 gf/12.7 mm.
    • 公开了一种用于根据热转印机构形成具有高水平的具有优异转印性的金属光泽的印刷图像的热转印记录介质,其包括基底,并且设置在基底的一侧上,层压转印层至少包含释放 层,用于金属沉积的耐热层,金属沉积层和粘合剂层,从基底侧开始,剥离层的厚度为0.05至0.50μm,软化点不低于100℃。 剥离层是基本上由树脂组成的基本上透明的层,并且根据T模剥离的层压转印层的剥离强度不大于50gf / 12.7mm。