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    • 4. 发明申请
    • SUPPORT STRUCTURE FOR DOUBLE-SIDED POWER GENERATION TYPE SOLAR CELL PANELS
    • 双面发电型太阳能电池板的支撑结构
    • US20150034145A1
    • 2015-02-05
    • US13700022
    • 2011-05-25
    • Tadashi FujimuraShinichi FunabashiHisakata Kobayashi
    • Tadashi FujimuraShinichi FunabashiHisakata Kobayashi
    • H01L31/042
    • H02S20/26E04B2/88E04F13/007E04F13/0805Y02B10/10
    • A solar cell panel installed in an outer wall of a building structure for generating power from front and rear surfaces. A panel package including double-side power generation type solar cell panels or a group of solar cell panels arranged across a plurality of stages in a height direction is supported by vertical members supported by arm members overhung in a structural out-of-plane direction from an outer wall face having an opening and juxtaposed with an interval in a structural in-plane horizontal direction of the outer wall face while the panel package faces the outer wall face. The panel package is arranged between overhang members protruded side by side in a height direction to the exterior side of each vertical member and juxtaposed in a structural in-plane horizontal direction, and upper and lower portions of the panel package are held by the overhang members juxtaposed in a height direction.
    • 一种安装在建筑结构的外壁中的用于从前表面和后表面产生电力的太阳能电池板。 包括双面发电型太阳能电池板或在高度方向上跨越多个级布置的一组太阳能电池板的面板封装由垂直构件支撑,所述纵向构件由臂构件支撑,从结构的外部平面方向悬垂, 具有开口的外壁面,同时面板包装面向外壁面的外壁面的结构面内水平方向上具有间隔。 面板组件布置在垂直构件的高度方向上突出到每个垂直构件的外侧并且在结构上的平面内水平方向上并置,并且面板组件的上部和下部由悬垂构件保持 在高度方向并列。
    • 5. 发明授权
    • Exhaust gas recovery method and apparatus
    • 废气回收方法及装置
    • US06475266B2
    • 2002-11-05
    • US09809222
    • 2001-03-16
    • Kenji HayashiJunichi NagataShinichi Funabashi
    • Kenji HayashiJunichi NagataShinichi Funabashi
    • B01D5314
    • B01D53/14B01D8/00B01D2257/704Y02A50/235
    • An exhaust gas recovery method and apparatus including: a first process in which volatile organic compound gas in exhaust gas from a exhaust gas discharging source is absorbed into water by a scrubber; a second process in which water including the volatile organic compound, which is obtained in the first process, is frozen and the volatile organic compound herein concentrated such that the water including the volatile organic compound is separated into water including a high concentration of the volatile organic compound, level of concentration being higher than that of the water including the volatile organic compound which is obtained in the first process, and ice; a third process in which cold of the ice obtained in the second process is used; and a fourth process in which the water including a high concentration of the volatile organic compound, which is obtained in the second process, is reused, is provided.
    • 一种排气回收方法及装置,其特征在于,包括:排气排出源排气中的挥发性有机化合物气体通过洗涤器吸收到水中的第一工序; 将第一种方法得到的包含挥发性有机化合物的水冷冻并将本文的挥发性有机化合物浓缩,使包含挥发性有机化合物的水分离成包含高浓度挥发性有机物的水的第二种方法 化合物,浓度高于包含在第一种方法中获得的挥发性有机化合物的水的浓度,以及冰; 使用在第二过程中获得的冰冷的第三过程; 并且提供了其中包含在第二过程中获得的高浓度的挥发性有机化合物的水被再次使用的第四过程。
    • 8. 发明授权
    • Method for manufacturing magnetic recording medium
    • 磁记录介质的制造方法
    • US4911951A
    • 1990-03-27
    • US250586
    • 1988-09-29
    • Hiroshi OgawaShinji SaitoMakoto YoshimuraShinichi Funabashi
    • Hiroshi OgawaShinji SaitoMakoto YoshimuraShinichi Funabashi
    • G11B5/716G11B5/842
    • G11B5/716G11B5/842Y10S428/90
    • A method for manufacturing a magnetic recording medium comprising the steps of: (1) providing a lower layer comprising a ferromagnetic powder dispersed in a binder on a non-magnetic support and (2) providing an upper layer comprising a ferromagnetic powder dispersed in a binder on the lower layer, wherein a solvent used in a magnetic coating composition for the lower layer contains at least 30 wt % of an organic solvent having an evaporation rate index of less than 50; a solvent used in a magnetic coating composition for the upper layer contains from 0 to 40 wt % of an organic solvent having an evaporation rate index of less than 50; the content of an organic solvent having an evaporation rate index of less than 50 in the coating composition for the upper layer is smaller than that in the coating composition for the lower layer; the magnetic coating composition for the upper layer is coated while the lower layer is not dried; and when the lower and upper layers are dried until the total solvent content of the lower and upper layers is in the range of from 0.05 to 3 wt %, a calendering treatment is carried out.
    • 一种制造磁记录介质的方法,包括以下步骤:(1)提供包含在非磁性载体上分散在粘合剂中的铁磁粉末的下层,和(2)提供包含分散在粘合剂中的铁磁性粉末的上层 在下层中,其中用于下层的磁性涂料组合物中使用的溶剂含有至少30重量%的蒸发速率指数小于50的有机溶剂; 用于上层磁性涂料组合物中的溶剂含有0至40重量%的蒸发速率指数小于50的有机溶剂; 在上层用涂料组合物中,蒸发率指数小于50的有机溶剂的含量小于下层用涂料组合物的含量; 涂布上层的磁性涂料组合物,同时不干燥下层; 并且当下层和上层被干燥直到下层和上层的总溶剂含量在0.05至3重量%的范围内时,进行压延处理。