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    • 71. 发明授权
    • Laser ablative recording material
    • 激光烧蚀记录材料
    • US06423464B1
    • 2002-07-23
    • US09027249
    • 1998-02-20
    • Kazuro KuboTadashi Ito
    • Kazuro KuboTadashi Ito
    • B41M526
    • B41M5/24Y10S430/146Y10S430/162
    • The present invention discloses a laser ablative recording material having at least one coloring agent layer and at least one overcoat layer on a surface of a support, wherein at least one of the overcoat layers contains a non-self-oxidizing, low temperature heat decomposable polymer which, when heated at a rate of 10° C./min, starting at room temperature, decreases in weight by 50% or more before reaching 300° C. This laser ablative recording material is characterized by excellent scratch resistance, a low Dmin, and a very high dye removing efficiency.
    • 本发明公开了一种激光烧蚀记录材料,其在载体表面上具有至少一个着色剂层和至少一个外涂层,其中至少一个外涂层含有非自氧化低温可热分解聚合物 当在室温下以10℃/分钟的速度加热时,其在达到300℃之前的重量减少50%以上。该激光烧蚀记录材料的特征在于优异的耐擦伤性,低的Dmin, 和非常高的染料去除效率。
    • 78. 发明申请
    • FLUIDIZED BED FURNACE AND WASTE TREATMENT METHOD
    • 流化床炉和废物处理方法
    • US20130098277A1
    • 2013-04-25
    • US13805922
    • 2011-06-21
    • Takuya KawaiHiroyuki HosodaTadashi Ito
    • Takuya KawaiHiroyuki HosodaTadashi Ito
    • F23G5/027F23C10/10F23C10/20F23G5/30
    • F23G5/0276F23C10/10F23C10/20F23C10/22F23C10/26F23G5/027F23G5/30F23G2205/101
    • A waste treatment technique includes: blowing a fluidizing gas from around a mixture discharge port to form a first fluidization region having a degree of fluidization of the fluidizable particles which is set to an extent allowing waste to be accumulated on fluidizable particles, while blowing a fluidizing gas between the first fluidization region and an opposite-side wall at a higher flow velocity to form a second fluid region having a degree of fluidization of fluidizable particles greater than that in the first fluidization region, whereby the fluidizable particles are mixed with the waste to gasify the waste; and supplying waste from a supply-side sidewall portion onto the fluidized bed to cause the waste to be accumulated on the first fluidization region while causing the accumulated waste to be moved into the second fluidization region step-by-step.
    • 废弃处理技术包括:从混合物排出口周围吹送流化气体,形成具有可流化颗粒的流化程度的第一流化区域,该第一流化区域被设定为允许废物积聚在可流化颗粒上的程度,同时吹送流化 第一流化区域和相对侧壁之间的气体以更高的流速形成具有大于第一流化区域中的可流化颗粒的流化程度的第二流体区域,由此可流化颗粒与废物混合 气化废物; 以及将废料从供给侧侧壁部分供给到流化床上,以使废物积聚在第一流化区域上,同时使积聚的废物逐步移动到第二流化区域中。
    • 79. 发明申请
    • FLUIDIZED BED FURNACE AND WASTE TREATMENT METHOD
    • 流化床炉和废物处理方法
    • US20130092064A1
    • 2013-04-18
    • US13805858
    • 2011-06-21
    • Takuya KawaiHiroyuki HosodaTadashi Ito
    • Takuya KawaiHiroyuki HosodaTadashi Ito
    • F23G5/30
    • F23G5/30F23C10/20F23C10/22F23C10/26F23G5/027F23G2205/101
    • A waste treatment technique includes: blowing a fluidizing gas from around a non-combustible substance discharge port toward fluidizable particles to form a first fluidization region, while blowing a fluidizing gas between the first fluidization region and a front wall at a flow velocity less than that in the first fluidization region to form a second fluid region having a relatively low degree of fluidization of fluidizable particles; returning fluidizable particles discharged from the non-combustible substance discharge port to a fluidized bed from the side of the front wall to form, in the fluidized bed, a flow of fluidizable particles directed from the front wall to the non-combustible substance discharge port; supplying waste from the front wall onto the fluidized bed to cause the waste to be accumulated on the second fluidization region while causing the accumulated waste to be moved into the first fluidization region step-by-step and gasified.
    • 废物处理技术包括:将流化气体从不可燃物排放口周围吹向可流化颗粒以形成第一流化区,同时以小于该流动速度的流速在第一流化区域和前壁之间吹送流化气体。 在所述第一流化区域中形成具有相对低的可流化颗粒流化程度的第二流体区域; 将从所述不燃物排出口排出的可流化颗粒从所述前壁侧返回到流化床,以在所述流化床中形成从所述前壁向所述不可燃物排出口引导的可流化颗粒流; 将废物从前壁供应到流化床上,以使废物积聚在第二流化区域上,同时使积聚的废物逐步移动到第一流化区域并气化。