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    • 4. 发明授权
    • Multilayer coating film-forming method
    • 多层涂膜成膜方法
    • US08580385B2
    • 2013-11-12
    • US13143812
    • 2010-01-14
    • Hiroshi KitagawaMunehiro NakataDaisuke TakayamaTatsuya Azuma
    • Hiroshi KitagawaMunehiro NakataDaisuke TakayamaTatsuya Azuma
    • B05D1/36B05D7/16
    • B05D7/572B05D2201/02B05D2202/00B05D2451/00B05D2502/00B05D2503/00Y10T428/31504Y10T428/31551B05D2420/01B05D2401/20B05D2401/10
    • An object to be achieved by the present invention is to provide a method capable of forming a multilayer coating film having excellent smoothness, distinctness of image, and chipping resistance, by a 3-coat 1-bake process comprising successively applying an aqueous first colored coating composition, an aqueous second colored coating composition, and a clear coating composition to a substrate, and heat-curing the resulting three layers of the multilayer coating film all at once. The present invention provides a method for forming a multilayer coating film, which employs a 3-coat 1-bake process comprising sequentially applying an aqueous first colored coating composition (X), an aqueous second colored coating composition (Y), and a clear coating composition (Z) on a substrate; and heat-curing the resulting three layers of the multilayer coating film all at once, wherein the aqueous first colored coating composition (X) contains an acrylic resin (A), a curing agent (B), and a urethane resin emulsion (C), and a first colored coating film formed from the aqueous first colored coating composition (X) has a water swelling rate of 100% or less and an organic solvent swelling rate of 300% or less.
    • 通过本发明要实现的目的是提供一种能够通过3-涂层1-烘烤方法形成具有优异的平滑性,图像清晰度和耐崩裂性的多层涂膜的方法,该方法包括连续施加水性第一着色涂层 组合物,水性第二着色涂料组合物和透明涂料组合物,并且立即将所得到的三层多层涂膜热固化。 本发明提供一种多层涂膜的形成方法,该方法采用3层1-烘烤法,该方法包括依次施加水性第一着色涂料组合物(X),水性第二着色涂料组合物(Y)和透明涂料 组合物(Z); 并且一次性地对所得到的三层多层涂膜进行热固化,其中含水的第一着色涂料组合物(X)含有丙烯酸树脂(A),固化剂(B)和聚氨酯树脂乳液(C) 并且由水性第一着色涂料组合物(X)形成的第一着色涂膜的水溶胀率为100%以下,有机溶剂溶胀率为300%以下。
    • 5. 发明申请
    • FOLDING SYSTEM FOR FABRIC PRODUCT
    • 织物制品折叠系统
    • US20120228340A1
    • 2012-09-13
    • US13510385
    • 2010-10-22
    • Shinichi SakaneYashimasa EndoHiroshi Kitagawa
    • Shinichi SakaneYashimasa EndoHiroshi Kitagawa
    • A41H43/02
    • D06F89/02D06F95/00
    • A folding system for a fabric product is provided. The folding system includes an information obtaining device, a folding device and a width controlling device. The information obtaining device obtains first information held by a fabric product. The folding device includes a platen member, a width adjusting mechanism and a folding mechanism. The platen member is for holding the fabric product. The width adjusting mechanism adjusts the width directional length of the platen member. The folding mechanism folds the fabric product on the platen member. The width controlling device controls the width adjusting mechanism by using the first information obtained by the information obtaining device.
    • 提供了一种用于织物产品的折叠系统。 折叠系统包括信息获取装置,折叠装置和宽度控制装置。 信息获取装置获得由织物产品保持的第一信息。 折叠装置包括压板构件,宽度调节机构和折叠机构。 压板构件用于保持织物产品。 宽度调节机构调节压板构件的宽度方向长度。 折叠机构将织物产品折叠在压板构件上。 宽度控制装置通过使用由信息获取装置获得的第一信息来控制宽度调节机构。
    • 7. 发明申请
    • MULTILAYER COATING FILM-FORMING METHOD
    • 多层涂膜成膜方法
    • US20120021228A1
    • 2012-01-26
    • US13143812
    • 2010-01-14
    • Hiroshi KitagawaMunehiro NakataDaisuke TakayamaTatsuya Azuma
    • Hiroshi KitagawaMunehiro NakataDaisuke TakayamaTatsuya Azuma
    • B05D3/02B32B27/06
    • B05D7/572B05D2201/02B05D2202/00B05D2451/00B05D2502/00B05D2503/00Y10T428/31504Y10T428/31551B05D2420/01B05D2401/20B05D2401/10
    • An object to be achieved by the present invention is to provide a method capable of forming a multilayer coating film having excellent smoothness, distinctness of image, and chipping resistance, by a 3-coat 1-bake process comprising successively applying an aqueous first colored coating composition, an aqueous second colored coating composition, and a clear coating composition to a substrate, and heat-curing the resulting three layers of the multilayer coating film all at once. The present invention provides a method for forming a multilayer coating film, which employs a 3-coat 1-bake process comprising sequentially applying an aqueous first colored coating composition (X), an aqueous second colored coating composition (Y), and a clear coating composition (Z) on a substrate; and heat-curing the resulting three layers of the multilayer coating film all at once, wherein the aqueous first colored coating composition (X) contains an acrylic resin (A), a curing agent (B), and a urethane resin emulsion (C), and a first colored coating film formed from the aqueous first colored coating composition (X) has a water swelling rate of 100% or less and an organic solvent swelling rate of 300% or less.
    • 通过本发明要实现的目的是提供一种能够通过3-涂层1-烘烤方法形成具有优异的平滑性,图像清晰度和耐崩裂性的多层涂膜的方法,该方法包括连续施加水性第一着色涂层 组合物,水性第二着色涂料组合物和透明涂料组合物,并且立即将所得到的三层多层涂膜热固化。 本发明提供一种多层涂膜的形成方法,该方法采用3层1-烘烤法,该方法包括依次施加水性第一着色涂料组合物(X),水性第二着色涂料组合物(Y)和透明涂料 组合物(Z); 并且一次性地对所得到的三层多层涂膜进行热固化,其中含水的第一着色涂料组合物(X)含有丙烯酸树脂(A),固化剂(B)和聚氨酯树脂乳液(C) 并且由水性第一着色涂料组合物(X)形成的第一着色涂膜的水溶胀率为100%以下,有机溶剂溶胀率为300%以下。
    • 8. 发明申请
    • BATTERY UNIT COOLING APPARATUS
    • 电池组冷却装置
    • US20110223463A1
    • 2011-09-15
    • US13130028
    • 2009-10-28
    • Yoshihisa KatonoTakashi OganeYuji FujitaHiroshi Kitagawa
    • Yoshihisa KatonoTakashi OganeYuji FujitaHiroshi Kitagawa
    • H01M10/50
    • B60K6/485B60K6/28B60K11/06B60L1/003B60L50/40B60W30/18127H01M10/613H01M10/625H01M10/66Y02T10/6226Y02T10/7022Y02T10/92
    • There is provided a battery unit cooling apparatus installed in a vehicle which can run on power from an electric motor driven by a battery unit as a power supply, comprising a cooling air generating unit for generating cooling air to cool the battery unit and an air volume control unit for controlling, when decelerating the vehicle which is set to operate in a high recovery efficiency mode of two modes which differ in recovery efficiency with which regenerative energy obtained from the electric motor when the vehicle is decelerated is recovered to the battery, the cooling air generating unit so as to generate a larger volume of cooling air than a volume of cooling air generated when the vehicle is set to operate in a low recovery efficiency mode. Consequently, sufficient cooling air can be supplied to the battery unit when the vehicle is decelerated which is set to operate in the high regenerative energy recovery efficiency.
    • 提供了一种电池单元冷却装置,其安装在车辆中,该车辆能够从作为电源的电池单元驱动的电动马达运转,其包括用于产生冷却空气以冷却电池单元的冷却空气发生单元和用于冷却电池单元的空气量 控制单元,用于当车辆减速时,当车辆被减速时,以两种模式的高恢复效率模式进行减速操作,所述两种模式的回复效率不同,当车辆减速时从电动机获得的再生能量恢复到电池时,冷却 空气产生单元,以便产生比当车辆被设置为以低回收效率模式操作时产生的冷却空气的体积更大的冷却空气的体积。 因此,当车辆减速时,可以向蓄电池单元供应足够的冷却空气,其被设定为以高再生能量回收效率运行。