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    • 1. 发明授权
    • Multicolor image forming material and multicolor image forming method using the same
    • 多色成像材料和使用其的多色成像方法
    • US07097955B2
    • 2006-08-29
    • US10332900
    • 2002-07-03
    • Shinichi YoshinariShinji Fujimoto
    • Shinichi YoshinariShinji Fujimoto
    • G03F7/34G03F7/105
    • B41M5/385B41M5/345Y10S430/165
    • The invention provides a multi-color image-forming material for recording an image by using an image-receiving sheet having an image-receiving layer and at least 4 kinds of heat transfer sheets different from each other in color and comprising a support having provided thereon at least a light-to-heat conversion layer and an image-forming layer, superposing the image-forming layer of each of the thermal transfer sheet on the image-receiving layer of the image-receiving sheet, in which the image-forming layer is opposed to the image-receiving layer, and irradiating a laser light thereto to transfer the laser-irradiated area of the image-forming layer to the image-receiving layer of the image-receiving sheet, wherein the material contains a heat transfer sheet (X) having an image-forming layer containing one selected from among Pigment Red 48:1, Pigment Red 48:3, Pigment Green 7, Pigment Blue 15:6, Pigment Blue 60, Pigment Violet 23 and Pigment Orange 43, and a method for forming a multi-color image comprises using an image-receiving sheet having an image-receiving layer and at least 5 kinds of heat transfer sheets including thermal transfer sheets for a color of yellow, magenta, cyan or black and each comprising a support having provided thereon at least a light-to-heat conversion layer and an image-forming layer, superposing the image-forming layer of each of the thermal transfer sheet on the image-receiving layer of the image-receiving sheet, and irradiating a laser light thereto to transfer the laser-irradiated area of the image-forming layer to the image-receiving layer of the image-receiving sheet and effect image recording, thus providing a multi-color image having an enlarged scope of reproducible hues.
    • 本发明提供了一种多色成像材料,用于通过使用具有图像接收层的图像接收片材和至少4种不同颜色的热转印片材并且包括其上设置的支撑体来记录图像 至少一个光热转换层和图像形成层,将每个热转印片的图像形成层叠加在图像接收片的图像接收层上,其中图像形成层 与图像接收层相对,并且向其照射激光以将图像形成层的激光照射区域传送到图像接收片的图像接收层,其中该材料包含传热片( X)具有包含选自颜料红48:1,颜料红48:3,颜料绿7,颜料蓝15:6,颜料蓝60,颜料紫23和颜料橙43中的一种的图像形成层,以及方法 用于形成多个 彩色图像包括使用具有图像接收层的图像接收片和包括用于黄色,品红色,青色或黑色的热转印片的至少5种传热片,并且每个包括至少提供在其上的支撑件 光转换层和图像形成层,将热转印片中的每一个的图像形成层叠加在图像接收片的图像接收层上,并且向其照射激光以将 图像形成层的激光照射区域到图像接收片的图像接收层,并且进行图像记录,从而提供具有可再现色调的可扩展范围的多色图像。
    • 3. 发明申请
    • Heat transfer sheet, image forming material and image forming method
    • 传热片,成像材料和成像方法
    • US20060204886A1
    • 2006-09-14
    • US10555016
    • 2004-05-28
    • Hideyuki NakamuraShinichi Yoshinari
    • Hideyuki NakamuraShinichi Yoshinari
    • G03C1/76
    • B41M5/395B41M5/385B41M5/465
    • The present invention provides a heat transfer sheet comprising a support, a light-to-heat converting layer and an image forming layer, wherein the image forming layer contains at least a white pigment and an amorphous organic polymer having a softening point of 40° C. to 150° C., an average particle size of the white pigment is from 0.01 μm to 0.32 μm, an amount of the white pigment is from 40% by weight to 90% by weight based on the total weight of the image forming layer, an amount of the amorphous organic polymer is from 10% by weight to 60% by weight based on the total weight of the image forming layer, and a thickness of the image forming layer is from 0.5 μm to 3.0 μm; an image forming material comprising the heat transfer sheet; and an image forming method using the image forming material.
    • 本发明提供了一种传热片,其包括载体,光热转换层和图像形成层,其中图像形成层至少含有白色颜料和软化点为40℃的无定形有机聚合物 至150℃,白色颜料的平均粒径为0.01μm至0.32μm,白色颜料的量相对于图像形成层的总重量为40重量%〜90重量% ,相对于图像形成层的总重量,无定形有机聚合物的量为10重量%〜60重量%,图像形成层的厚度为0.5μm〜3.0μm; 包含所述传热片的成像材料; 以及使用该图像形成材料的图像形成方法。
    • 4. 发明授权
    • Multi-color image forming material and multi-color image forming method
    • 多色成像材料和多色成像方法
    • US07083891B2
    • 2006-08-01
    • US10499127
    • 2002-12-17
    • Akihiro ShimomuraShinichi YoshinariKazuhito Miyake
    • Akihiro ShimomuraShinichi YoshinariKazuhito Miyake
    • G03F7/34G03F7/11G03F7/09
    • B41M5/42B41M5/345B41M5/38207B41M5/41B41M5/52Y10S430/14
    • A multicolor image forming material in which a laser beam irradiated region of an image forming layer of a thermal transfer sheet is transferred onto an image receiving layer of an image receiving sheet, wherein: (a) a rate of heat shrinkage in the machine direction and a rate of heat shrinkage in the traverse direction of the image receiving sheet are both not more than 1% with the rate of heat shrinkage in the traverse direction being smaller than the rate of heat shrinkage in the machine direction, (b) a coefficient of dynamic friction between the thermal transfer sheet surface and the image receiving sheet surface is not more than 0.70, (c) a stiffness in the machine direction (Msh) and a stiffness in the traverse direction (Tsh) of the thermal transfer sheet are both from 30 to 70 g, a stiffness in the machine direction (Msr) and in the traverse direction (Tsr) of the image receiving sheet are both from 40 to 90 g, Msh/Tsh and Msr/Tsr are each from 0.75 to 1.20 and (Msr−Msh) and (Tsr−Tsh) are each from 10 g to 40 g or (d) at least the magenta thermal transfer sheet has a breaking stress from 150 to 300 MPa in both machine (MD) and crosswise (CD) directions with the breaking stress in the crosswise direction being at least 10 MPa larger than in the machine direction and a breaking elongation of from 80 to 300% in both machine and crosswise directions with the breaking elongation in the machine direction being at least 5 % larger than in the crosswise direction.
    • 一种多色图像形成材料,其中将热转印片材的图像形成层的激光束照射区域转印到图像接收片材的图像接收层上,其中:(a)机器方向上的热收缩率和 图像接收片的横向方向上的热收缩率都不大于1%,横向方向上的热收缩率小于机器方向的热收缩率,(b) 热转印片表面和图像接收片表面之间的动摩擦力不大于0.70,(c)热转印片材的纵向刚度(Msh)和横向方向上的刚度(Tsh)都来自 30〜70g,图像接收片的纵向刚度(Msr)和横动方向(Tsr)均为40〜90g,Msh / Tsh,Msr / Tsr分别为0.75〜1.20,( Msr-Msh)和( Tsr-Tsh)各自为10g至40g,或(d)至少品红热转印片在机器(MD)和横向(CD)方向上具有150至300MPa的断裂应力,其中断裂应力 横向方向比机器方向大至少10MPa,在机器方向上的断裂伸长率在纵向方向上的断裂伸长率为80〜300%,横向上的断裂伸长率比横向方向大5%以上。
    • 5. 发明授权
    • Multicolor image-forming material and multicolor image-forming method
    • 多色成像材料和多色成像方法
    • US06811946B2
    • 2004-11-02
    • US10098454
    • 2002-03-18
    • Akihiro ShimomuraHideyuki NakamuraShinichi Yoshinari
    • Akihiro ShimomuraHideyuki NakamuraShinichi Yoshinari
    • G03F734
    • B41M5/395
    • A multicolor image-forming material comprising: an image-receiving sheet comprising a support and an image-receiving layer; and at least four thermal transfer sheets each comprising a support, a light-to-heat converting layer and an image-forming layer, and each having a different color, wherein an image is formed by the method comprising the steps of: superposing each one of the at least four thermal transfer sheets on the image-receiving sheet to be in a state of the image-forming layer being in contact with the image-receiving layer; and irradiating the thermal transfer sheet with a laser beam to transfer an image in an area of the image-forming layer subjected to irradiation onto the image-receiving layer, and at least one layer selected from layers comprised in the image-receiving sheet and the at least four thermal transfer sheets comprises a fluorine-series surface active agent which is a homopolymer comprising a polymerizable monomer represented by the formula (1) and having a weight average molecular weight Mw of 3000 or more.
    • 一种多色图像形成材料,包括:图像接收片,其包括支撑体和图像接收层; 以及至少四个热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,并且各自具有不同的颜色,其中通过所述方法形成图像,所述方法包括以下步骤: 所述图像接收片材上的所述至少四个热转印片材处于所述图像形成层与所述图像接收层接触的状态; 以及用激光束照射所述热转印片,以将经受照射的图像形成层的区域中的图像转印到图像接收层上,以及从图像接收片和 至少四个热转印片材包含氟系表面活性剂,其为包含由式(1)表示的可聚合单体并且具有3000或更大的重均分子量Mw的均聚物。
    • 9. 发明申请
    • Multi-color image forming material and multi-color image forming method
    • US20050112493A1
    • 2005-05-26
    • US10499127
    • 2002-12-17
    • Akihiro ShimomuraShinichi YoshinariKazuhito Miyake
    • Akihiro ShimomuraShinichi YoshinariKazuhito Miyake
    • B41M5/34B41M5/382B41M5/41B41M5/42B41M5/52G03F3/10G03C8/00
    • B41M5/42B41M5/345B41M5/38207B41M5/41B41M5/52Y10S430/14
    • To provide a multicolor image forming material in which upon irradiation with laser beam, a laser beam irradiated region of an image forming layer is transferred onto an image receiving, layer of an image receiving sheet to undergo multicolor image recording, wherein the multicolor image forming material is (a) a multicolor image forming material wherein a ratio of an optical density (OD) to a film thickness of the image forming layer of each thermal transfer sheet is 1.50 or more, a recording area of a multicolor image of each thermal transfer sheet is of a size of 515 mm×728 mm or more, a resolution of the transferred image onto the image receiving layer of the image receiving sheet is 2,400 dpi or more, a rate of heat shrinkage in the machine direction and a rate of heat shrinkage in the transverse direction of the image receiving sheet are both not more than 1%, and the rate of heat shrinkage in the transverse direction of the image receiving sheet is smaller than the rate of heat shrinkage in the machine direction thereof, (b) a multicolor image forming material wherein after laser thermal transfer, a coefficient of dynamic friction between the thermal transfer sheet surface and the image receiving sheet surface is not more than 0.70, (c) a multicolor image forming material wherein a stiffness in the machine direction (Msh) and a stiffness in the transverse direction (Tsh) of the thermal transfer sheet are both from 30 to 70 g, a stiffness in the machine direction (Msr) and a stiffness in the transverse direction (Tsr) of the image receiving sheet are both from 40 to 90 g, Msh/Tsh and Msr/Tsr are each from 0.75 to 1.20, and 10 g≦(Msr−Msh)≦40 g and 10 g≦(Tsr−Tsh)≦40 g, or (d) a multicolor image forming material wherein at least the magenta thermal transfer sheet has a breaking stress of from 150 to 300 MPa in both the machine direction (MD) and the crosswise direction (CD), with the breaking stress in the crosswise direction (CD) being at least 10 MPa larger than that in the machine direction (MD), and a breaking elongation of from 80 to 300% in both the machine direction (MD) and the crosswise direction (CD), with the breaking elongation in the machine direction (MD) being at least 5% larger than that in the crosswise direction (CD); and a multicolor image forming method using these multicolor image forming materials.