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    • 4. 发明授权
    • Multiple-use thermal image transfer recording method
    • 多用途热图像转印记录方法
    • US5428372A
    • 1995-06-27
    • US971212
    • 1992-11-04
    • Mihoko AkiyamaKeiichi ShiokawaYoji Ide
    • Mihoko AkiyamaKeiichi ShiokawaYoji Ide
    • B41J2/325B41M5/382B41M5/52
    • B41M5/38278B41M5/52
    • A multiple-use thermal image transfer recording method includes the step of transferring a thermal image transfer ink component a plurality of times to an image-receiving medium from at least an identical portion of a thermal image transfer recording medium composed of a support and a thermal image transfer ink layer formed thereon, with the application of heat thereto. The thermal image transfer ink layer is composed of the thermal image transfer ink component mainly containing a coloring agent and a thermofusible material, and a porous resin component which is not thermally transferable, with both components having mutual releasability. The image-receiving medium has a recording surface, with the product of the absorption coefficient (Ka) of the recording surface measured by the Bristow Method (J. TAPPI. No. 51 - 87) at a pressure of 0.1 MPa, using an extra pure liquid paraffin, and the gradient (fc) of a linear portion of a load curve measured by a three-dimensional surface roughness analysis, being in the range of 2.0 to 6.0.
    • 多用途热图像转印记录方法包括从热像传输记录介质的至少相同部分将热图像转印油墨组分多次转印到图像接收介质的步骤,所述热图像转印记录介质由支撑体和热 形成在其上的图像转印油墨层。 热转印油墨层由主要含有着色剂和热熔性材料的热转印油墨组分和不可热转印的多孔树脂组分组成,两种成分均具有相互释放性。 图像接收介质具有记录表面,其中利用Bristow方法(J.TAPPI.51-87)测量的记录表面的吸收系数(Ka)的乘积在0.1MPa的压力下,使用额外的 纯液体石蜡和通过三维表面粗糙度分析测量的负荷曲线的线性部分的梯度(fc)在2.0至6.0的范围内。
    • 5. 发明授权
    • Thermal image transfer recording method
    • 热图像转印记录方法
    • US5777653A
    • 1998-07-07
    • US518979
    • 1995-08-24
    • Yoji IdeTetsuji KunitakeMihoko MatsumotoYasumitsu Kuga
    • Yoji IdeTetsuji KunitakeMihoko MatsumotoYasumitsu Kuga
    • B32B9/04B41J2/315B41J2/32B41M5/00B41M5/382B41M5/40B41M5/42B41M5/44B41M5/52G01D15/10
    • B41M5/38207B41M5/38221B41M5/426B41M5/44B41M5/52Y10S428/913Y10S428/914Y10T428/31504Y10T428/31551
    • A thermal image transfer recording method includes the steps of holding a thermal image transfer recording medium including a support material and a thermal image transfer layer provided on the support material, and an image recording material between a line edge thermal head and a platen roller, with a contact pressure being applied therebetween; transferring the thermal image transfer recording layer imagewise from the thermal image transfer recording medium to the image recording material with imagewise application of heat by use of the line edge thermal head; and taking up the thermal image transfer recording medium after the image transfer, with the take-up tension applied to the thermal image transfer recording medium being set larger than both the shearing strength and peeling strength at 70.degree. C. of the thermal image transfer layer. A thermal image transfer recording medium including a thermal image transfer layer with a shearing strength of 200 g/cm or more at 25.degree. C. provided on a support material is provided for use in this thermal image transfer recording method.
    • 热图像转印记录方法包括以下步骤:保持包括支撑材料和设置在支撑材料上的热图像转印层的热图像转印记录介质,以及在线边热敏头和压纸辊之间的图像记录材料, 在它们之间施加接触压力; 通过使用线边热敏头成像地施加热量,将热图像转印记录层从热图像转印记录介质转印到图像记录材料; 并且在图像转印之后吸收热图像转印记录介质,其中施加到热图像转印记录介质的卷取张力被设定为大于热图像转印层的70℃的剪切强度和剥离强度两者 。 提供了一种包含设置在支撑材料上的在25℃下具有200g / cm 2以上的剪切强度的热转印层的热图像转印记录介质,用于该热图像转印记录方法。
    • 6. 发明授权
    • Thermal image transfer recording method and thermal image transfer
recording medium
    • 热图像转印记录方法和热图像转印记录介质
    • US6129984A
    • 2000-10-10
    • US335534
    • 1999-06-18
    • Yoji IdeTetsuji KunitakeMihoko MatsumotoYasumitsu Kuga
    • Yoji IdeTetsuji KunitakeMihoko MatsumotoYasumitsu Kuga
    • B32B9/04B41J2/315B41J2/32B41M5/00B41M5/382B41M5/40B41M5/42B41M5/44B41M5/52G01D15/10
    • B41M5/38207B41M5/38221B41M5/426B41M5/44B41M5/52Y10S428/913Y10S428/914
    • A thermal image transfer recording method includes the steps of holding a thermal image transfer recording medium including a support material and a thermal image transfer layer provided on the support material, and an image recording material between a line edge thermal head and a platen roller, with a contact pressure being applied therebetween; transferring the thermal image transfer recording layer imagewise from the thermal image transfer recording medium to the image recording material with imagewise application of heat by use of the line edge thermal head; and taking up the thermal image transfer recording medium after the image transfer, with the take-up tension applied to the thermal image transfer recording medium being set larger than both the shearing strength and peeling strength at 70.degree. C. of the thermal image transfer layer. A thermal image transfer recording medium including a thermal image transfer layer with a shearing strength of 200 g/cm or more at 25.degree. C. provided on a support material is provided for use in this thermal image transfer recording method.
    • 热图像转印记录方法包括以下步骤:保持包括支撑材料和设置在支撑材料上的热图像转印层的热图像转印记录介质,以及在线边热敏头和压纸辊之间的图像记录材料, 在它们之间施加接触压力; 通过使用线边热敏头成像地施加热量,将热图像转印记录层从热图像转印记录介质转印到图像记录材料; 并且在图像转印之后吸收热图像转印记录介质,其中施加到热图像转印记录介质的卷取张力被设定为大于热图像转印层的70℃的剪切强度和剥离强度两者 。 提供了一种包含设置在支撑材料上的在25℃下具有200g / cm 2以上的剪切强度的热转印层的热图像转印记录介质,用于该热图像转印记录方法。