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    • 4. 发明申请
    • Gel electrolyte and secondary battery
    • 凝胶电解质和二次电池
    • US20070048616A1
    • 2007-03-01
    • US11376092
    • 2006-03-16
    • Takefumi OkumuraShin NishimuraNorio IwayasuKazushige KohnoShoichi YokoyamaMasato MizutaniTetsuya Itoh
    • Takefumi OkumuraShin NishimuraNorio IwayasuKazushige KohnoShoichi YokoyamaMasato MizutaniTetsuya Itoh
    • H01M10/40
    • H01M10/0565H01M2300/0085
    • The present invention provides a high-power secondary battery using a gel electrolyte comprising a polymer matrix, which is obtained by polymerizing a polymerizable functional group-terminated borate represented by formula (1) or a mixture composed of a borate represented by formula (2) and a borate represented by formula (3), an electrolytic salt, and further a nonaqueous solvent: wherein Z1, Z2, and Z3 each independently represent a polymerizable functional group or a hydrocarbon group having 1 to 10 carbon atoms, provided that an average mole of the hydrocarbon group having 1 to 10 carbon atoms is 1.0 to 2.5 per the three groups of Z1, Z2 and Z3; AO represents an oxyalkylene group having 2 to 4 carbon atoms; 1, m, and n are each independently an average number of moles of the oxyalkylene group added of 0 to 100, provided that 1+m+n is 1 to 300; and B represents a boron atom; and wherein Z4, Z5, and Z6 each independently represent a polymerizable functional group; AO represents an oxyalkylene group having 2 to 4 carbon atoms; p, q, r, α, β, and γ are each independently an average number of moles of the oxyalkylene group added of 0 to 100, provided that p+q+r is 1 to 300, and α+β+γ is 1 to 300; X1, X2, and X3 each independently represent a hydrocarbon group having 1 to 10 carbon atoms; and B represents a boron atom.
    • 本发明提供一种使用包含聚合物基质的凝胶电解质的高功率二次电池,该聚合物基质通过聚合由式(1)表示的聚合性官能团封端的硼酸盐或由式(2)表示的硼酸盐组成的混合物而获得, 和由式(3)表示的硼酸盐,电解质盐,以及非水溶剂:其中Z 1,Z 2,Z 3和Z 3 >各自独立地表示可聚合官能团或具有1-10个碳原子的烃基,条件是每1-3个Z 1的碳原子数为1〜10的烃基的平均摩尔数为1.0〜2.5, SUP>,Z 2和Z 3; AO表示碳原子数2〜4的氧化烯基, 1,m和n各自独立地为0〜100的氧化烯基的平均摩尔数,条件是1 + m + n为1〜300。 B表示硼原子; 并且其中Z 4,Z 5和Z 6各自独立地表示可聚合官能团; AO表示碳原子数2〜4的氧化烯基, p,q,r,α,β和γ各自独立地为0〜100的氧化烯基的平均摩尔数,条件是p + q + r为1〜300,α+β+γ为1 至300; X 1,X 2和X 3各自独立地表示具有1至10个碳原子的烃基; B表示硼原子。
    • 6. 发明申请
    • TASK MANAGEMENT METHOD AND TASK MANAGEMENT APPARATUS
    • 任务管理方法和任务管理装置
    • US20130226639A1
    • 2013-08-29
    • US13581985
    • 2012-02-27
    • Shoichi YokoyamaTakeshi AnzaiTakeshi Arisaka
    • Shoichi YokoyamaTakeshi AnzaiTakeshi Arisaka
    • G06Q10/06
    • G06Q10/06
    • A task management apparatus configured to assign tasks to a plurality of operators is constructed. The task management apparatus stores task information including, for each generated task, operation target information for which a value is determined according to a state at the time of task occurrence and which is related to a task target. The task management apparatus calculates, based on the task information, the task similarity between a newly generated first task and a second task that is already assigned to an operator, for each of the operators, and determines an operator to whom the first task is assigned according to assignment priority based on the task similarity calculated for each of the operators.
    • 构造为将任务分配给多个运算符的任务管理装置。 任务管理装置存储对于每个生成的任务,包括根据任务发生时的状态来确定值并且与任务对象相关的操作对象信息的任务信息。 任务管理装置基于任务信息,对于每个运算符,计算新生成的第一任务和已经分配给运算符的第二任务之间的任务相似度,并且确定向其分配了第一任务的运算符 根据分配优先级,根据为每个运算符计算的任务相似度。
    • 8. 发明授权
    • Shadow mask having a curved surface with compressed, strengthening dents
    • 阴影面具具有曲面,压缩,加强凹痕
    • US06043595A
    • 2000-03-28
    • US967615
    • 1997-11-10
    • Shoichi YokoyamaTadashi IteFujio Takahashi
    • Shoichi YokoyamaTadashi IteFujio Takahashi
    • H01J9/14H01J29/07H01T29/80
    • H01J9/142H01J29/07
    • A shadow mask including a perforated portion that has a desired curved surface shape is obtained by pressing a flat mask having electron beam apertures. The press-molded perforated portion of the shadow mask is compressed in its thickness direction in a manner such that it is sandwiched between a first compression mold, having a convex surface that faces a concave surface of the perforated portion in which smaller holes of the electron beam apertures open and a plurality of projections on the convex surface, and a second compression mold, having a smooth concave surface that faces the convex surface of the perforated portion in which larger holes of the electron beam apertures open. In doing this, the perforated portion is locally compressed by means of the projections of the first compression mold, whereby a plurality of recesses are formed on the concave surface side of the perforated portion.
    • 通过按压具有电子束孔径的平面掩模,获得包括具有所需曲面形状的穿孔部分的荫罩。 阴影掩模的压制成型的穿孔部分以其厚度方向被压缩,使得它被夹在第一压缩模具之间,该第一压缩模具具有面向穿孔部分的凹面的凸面,其中较小的电子空穴 光束孔打开并且在凸表面上的多个突起和第二压模,其具有面对电子束孔的较大孔的打孔部的凸面的光滑凹面。 在这样做时,穿孔部分通过第一压模的突起被局部压缩,由此在穿孔部分的凹面侧形成多个凹部。
    • 10. 发明授权
    • Heat exchanger
    • 热交换器
    • US06390183B2
    • 2002-05-21
    • US09313785
    • 1999-05-17
    • Osamu AoyagiToshiaki AndoShoichi Yokoyama
    • Osamu AoyagiToshiaki AndoShoichi Yokoyama
    • F28F1312
    • F28F13/12F28D1/0477F28F1/32F28F13/06
    • In a heat exchanger of the present invention for exchanging heat between fluid flowing in a flow passage in a heat exchanger tube and fluid flowing outside of said heat exchanger tube, a solid bar-like insertion member or a hollow bar-like insertion member whose opposite ends are closed is provided in said flow passage in which a fluid having phase change flows in gas-liquid two phase state or liquid phase state, a cross section of said insertion member is formed into a substantially circle shape, a polygonal shape or a starlike shape, and a cross-sectional area of a flow passage in which said fluid flows is reduced as a mass flow rate quality of said fluid is reduced. With this construction, it is possible to restrain the pressure loss at the time of evaporation, and the evaporation ability can be enhanced or can be restrained from being deteriorated.
    • 在本发明的热交换器中,在热交换器管内的流路中流动的流体与流向所述热交换器管外侧的流体之间进行热交换的实心棒状插入部件或中空棒状插入部件 在所述流路中设置端部,气流两相状态或液相状态相变的流体,所述插入部件的截面形状为大致圆形,多边形,星形状 形状,并且当所述流体的质量流量质量降低时,所述流体流动的流动通道的横截面面积减小。 通过这种结构,可以抑制蒸发时的压力损失,能够提高或抑制蒸发能力的劣化。