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    • 6. 发明授权
    • Absorption refrigerating machine
    • 吸收式制冷机
    • US06993933B2
    • 2006-02-07
    • US10831542
    • 2004-04-23
    • Haruki NishimotoAkira HatakeyamaKazuyasu IraminaHideki Funai
    • Haruki NishimotoAkira HatakeyamaKazuyasu IraminaHideki Funai
    • F25B15/00
    • F25B15/008F25B2333/003Y02A30/277Y02B30/62Y02P80/152
    • Even when the efficiency of a low temperature heat exchanger is raised to reduce the required heat capacity inputting to the absorption refrigerating machine and the temperature of cooling water supplied to an absorber falls suddenly as it is, and thereby the temperature of a diluted absorbent solution falls suddenly, an absorption refrigerating machine without abnormally increasing the temperature of the concentrated absorbent solution and crystallizing the solution is disclosed. A heat recovery device 8 is provided between a low temperature heat exchanger 6 and a high temperature heat exchanger 7 of an absorbent solution pipe 13 for connecting a high temperature regenerator 1 and an absorber 5 with the low temperature heat exchanger 6, the high temperature heat exchanger 7 and an absorbent solution pump 14 therebetween. Further, the heat recovery device 9 is provided between the low temperature heat exchanger 6 and the absorbent solution pump 14. High temperature and high-pressure vapor is supplied through a heat source fluid supply pipe 10 to a heat exchanger pipe 1A provided within the high temperature generator 1 to thereby heat and boil a diluted absorbent solution within the high temperature regenerator 1 and radiate heat. Then, high temperature drain, which has been condensed by heat radiation and discharged to an exhaust heat fluid pipe 10A, is supplied to the heat recovery devices 8, 9 to thereby heat a diluted absorbent solution delivered from the absorber 5 through the absorbent solution pipe 13 to the high temperature regenerator 1 by an absorbent solution pump 14.
    • 即使当提高低温热交换器的效率以减少对吸收式制冷机的所需热容量输入时,供应给吸收器的冷却水的温度也会立即下降,从而稀释的吸收剂溶液的温度下降 公开了一种不会使浓缩吸收剂溶液的温度异常升高并使溶液结晶化的吸收式制冷机。 在低温热交换器6和用于将高温再生器1和吸收器5连接到低温热交换器6的吸收剂溶液管13的高温热交换器7之间设置有热回收装置8,高温热 交换器7和其间的吸收剂溶液泵14。 此外,热回收装置9设置在低温热交换器6和吸收剂溶液泵14之间。 将高温高压蒸汽通过热源流体供给管10供给到设置在高温发生器1内的热交换管1A,从而对高温再生器1内的稀释吸收剂溶液进行加热和沸腾,并且散热。 然后,通过热辐射冷凝并排出到排气热流体管道10A的高温排放物被供应到热回收装置8,9,从而通过吸收剂溶液加热从吸收器5输送的稀释吸收剂溶液 管13通过吸收剂溶液泵14连接至高温再生器1。
    • 7. 发明授权
    • Multicolor image forming material and method for forming multicolor image
    • 多色成像材料和形成多色图像的方法
    • US06946425B2
    • 2005-09-20
    • US10811967
    • 2004-03-30
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • B41M5/34B41M5/382B41M5/385B41M5/40B41M5/42B41M5/46G03F3/10
    • B41M5/345B41M5/38207B41M5/38257B41M5/42B41M2205/02Y10S430/146Y10T428/24802
    • A multicolor image-forming material comprises: an image-receiving sheet having an image-receiving layer and a support; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the thermal transfer sheets has a different color, wherein a multicolor image is formed by: superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer, such that the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer with a laser beam; transferring the irradiated area of the image-forming layer onto the image-receiving layer to form an image; and transferring the image on the image-receiving layer onto an actual printing paper, and each of the at least four thermal transfer sheets has a recording area being defined by a product of a length of 515 mm or more and width of 728 mm or more, and each of the at least four thermal transfer sheets is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 20 mm to 80 mm, and the actual printing paper is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 5 mm to 100 mm.
    • 多色图像形成材料包括:具有图像接收层和支撑体的图像接收片材; 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,其中每个热转印片材具有不同的颜色,其中通过以下方法形成多色图像: 图像接收层中的至少四个热转印片中的每一个中的图像形成层,使得图像形成层与图像接收层相对; 用激光束照射图像形成层; 将图像形成层的照射区域转印到图像接收层上以形成图像; 并且将图像接收层上的图像转印到实际的打印纸上,并且至少四个热转印片中的每一个具有由515mm以上的长度和728mm以上的宽度的乘积限定的记录区域 ,并且所述至少四个热转印片中的每一个在图像接收片中的长度方向和宽度方向上都比20mm至80mm大,并且实际的打印纸中的每一个较大 长度方向和宽度方向比图像接收片材宽5mm至100mm。
    • 9. 发明授权
    • Multicolor image forming material and method for forming multicolor image
    • 多色成像材料和形成多色图像的方法
    • US06758932B2
    • 2004-07-06
    • US10060170
    • 2002-02-01
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • B41M540
    • B41M5/345B41M5/38207B41M5/38257B41M5/42B41M2205/02Y10S430/146Y10T428/24802
    • A multicolor image-forming material comprises: an image-receiving sheet having an image-receiving layer and a support; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the thermal transfer sheets has a different color, wherein a multicolor image is formed by: superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer, such that the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer with a laser beam; transferring the irradiated area of the image-forming layer onto the image-receiving layer to form an image; and transferring the image on the image-receiving layer onto an actual printing paper, and each of the at least four thermal transfer sheets has a recording area being defined by a product of a length of 515 mm or more and width of 728 mm or more, and each of the at least four thermal transfer sheets is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 20 mm to 80 mm, and the actual printing paper is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 5 mm to 100 mm.
    • 多色图像形成材料包括:具有图像接收层和支撑体的图像接收片材; 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,其中每个热转印片材具有不同的颜色,其中通过以下方法形成多色图像: 图像接收层中的至少四个热转印片中的每一个中的图像形成层,使得图像形成层与图像接收层相对; 用激光束照射图像形成层; 将图像形成层的照射区域转印到图像接收层上以形成图像; 并且将图像接收层上的图像转印到实际的打印纸上,并且至少四个热转印片中的每一个具有由515mm以上的长度和728mm以上的宽度的乘积限定的记录区域 ,并且所述至少四个热转印片中的每一个在图像接收片中的长度方向和宽度方向上都比20mm至80mm大,并且实际的打印纸中的每一个较大 长度方向和宽度方向比图像接收片材宽5mm至100mm。
    • 10. 发明授权
    • Thermal transfer material and image forming material using the same
    • 热转印材料和使用其的成像材料
    • US06703087B1
    • 2004-03-09
    • US09598512
    • 2000-06-21
    • Kazuhito MiyakeHideyuki NakamuraAkira Hatakeyama
    • Kazuhito MiyakeHideyuki NakamuraAkira Hatakeyama
    • B41M530
    • B41M5/395
    • It is an object of the present invention to provide a thermal transfer material which has an image forming layer of low fusible viscosity, which has an excellent transferring sensitivity, which is able to form a high quality image, and in which leakage of a thermally fusible substance is not caused so that there is hardly any contamination of hardware such as an image forming device by the thermally fusible substance. Such an object is accomplished by providing a thermal transfer material having a support, and on the support, an image forming layer which contains a pigment, at least one thermally fusible substance, and at least one resin, in which given that a weight ratio of one thermally fusible substance i to one resin j is bij (weight of the thermally fusible substance i/weight of the resin j), and an absolute value of a difference between solubility parameter (SP) values of the thermally fusible substance i and the resin j is aij (absolute value of (SP value of the thermally fusible substance i)−(SP value of the resin j)), then bij
    • 本发明的目的是提供一种热转印材料,其具有低易熔粘度的图像形成层,其具有优异的转印灵敏度,其能够形成高质量图像,并且其中热熔体 不会引起物质,使得几乎不会受到热熔性物质的成像装置等硬件的污染。 这样的目的是通过提供一种具有支撑体的热转印材料,并且在支撑体上,形成含有颜料,至少一种热熔性物质和至少一种树脂的图像形成层,其中给定重量比 一种热熔性物质i与一种树脂j是Bij(热熔体i的重量/树脂j的重量),热熔性物质i和树脂的溶解度参数(SP)值之差的绝对值 j是aij(热熔物质i的SP值(树脂j的SP值)的绝对值),则bij <(0.03 / Aij)。