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    • 2. 发明授权
    • Electrode structure for polymer electrolyte fuel cell comprising sulfonated polyarylene-based polymer and method for manufactuing same
    • 包含磺化聚亚芳基聚合物的聚合物电解质燃料电池的电极结构及其制造方法
    • US08114552B2
    • 2012-02-14
    • US11723436
    • 2007-03-20
    • Yuichiro HamaMasaru IguchiJunichi YanoNagayuki KanaokaNaoki Mitsuta
    • Yuichiro HamaMasaru IguchiJunichi YanoNagayuki KanaokaNaoki Mitsuta
    • H01M8/10
    • H01M4/8828H01M4/8807H01M4/8882H01M4/92H01M4/926H01M8/1004H01M8/1025H01M8/1039Y02P70/56
    • There is provided an electrode structure for a polymer electrolyte fuel cell having excellent power generation performance and excellent durability and a method for manufacturing the same. Also provided is a polymer electrolyte fuel cell including the electrode structure and an electrical apparatus and a transport apparatus using the polymer electrolyte fuel cell. The electrode structure includes a polymer electrolyte membrane 2 sandwiched between a pair of electrode catalyst layers 1, 1 containing carbon particles supporting catalyst particles. The polymer electrolyte membrane 2 is made of a sulfonated polyarylene-based polymer. The sulfonated polyarylene-based polymer has an ion exchange capacity in the range of 1.7 to 2.3 meq/g, and the polymer contains a component insoluble in N-methylpyrrolidone in an amount of 70% or less relative to the total amount of the polymer, after the polymer is subjected to heat treatment for exposing it under a constant temperature atmosphere of 12° C. for 200 hours. A catalyst paste containing catalyst particles and a polymer electrolyte is coated on a sheet-like support 6 and dried to form an electrode catalyst layer 1 containing a solvent in an amount in the range of 0.5% or less by weight of the total membrane. The electrode catalyst layers 3, 3 are thermally transferred and joined on both sides of the polymer electrolyte membrane 1.
    • 提供了具有优异的发电性能和优异的耐久性的用于聚合物电解质燃料电池的电极结构及其制造方法。 还提供了包括电极结构的聚合物电解质燃料电池和使用聚合物电解质燃料电池的电气设备和输送设备。 电极结构包括夹在包含支持催化剂颗粒的碳颗粒的一对电极催化剂层1,1之间的聚合物电解质膜2。 高分子电解质膜2由磺化聚亚芳基系聚合物构成。 磺化聚亚芳基系聚合物的离子交换容量为1.7〜2.3meq / g,聚合物中含有不溶于N-甲基吡咯烷酮的成分相对于聚合物总量为70%以下, 在聚合物经受热处理以使其在12℃的恒温气氛下暴露200小时。 将含有催化剂颗粒和聚合物电解质的催化剂浆料涂覆在片状载体6上并干燥,形成含有溶剂总量为0.5重量%以下的溶剂的电极催化剂层1。 电极催化剂层3,3在高分子电解质膜1的两面热转印并接合。
    • 3. 发明申请
    • Electrode structure for polymer electrolyte fuel cell and method for manufacturing the same
    • 聚合物电解质燃料电池的电极结构及其制造方法
    • US20070166594A1
    • 2007-07-19
    • US11723436
    • 2007-03-20
    • Yuichiro HamaMasaru IguchiJunichi YanoNagayuki KanaokaNaoki Mitsuta
    • Yuichiro HamaMasaru IguchiJunichi YanoNagayuki KanaokaNaoki Mitsuta
    • H01M8/10H01M4/96H01M4/88B05D5/12
    • H01M4/8828H01M4/8807H01M4/8882H01M4/92H01M4/926H01M8/1004H01M8/1025H01M8/1039Y02P70/56
    • There is provided an electrode structure for a polymer electrolyte fuel cell having excellent power generation performance and excellent durability and a method for manufacturing the same. Also provided is a polymer electrolyte fuel cell including the electrode structure and an electrical apparatus and a transport apparatus using the polymer electrolyte fuel cell. The electrode structure includes a polymer electrolyte membrane 2 sandwiched between a pair of electrode catalyst layers 1, 1 containing carbon particles supporting catalyst particles. The polymer electrolyte membrane 2 is made of a sulfonated polyarylene-based polymer. The sulfonated polyarylene-based polymer has an ion exchange capacity in the range of 1.7 to 2.3 meq/g, and the polymer contains a component insoluble in N-methylpyrrolidone in an amount of 70% or less relative to the total amount of the polymer, after the polymer is subjected to heat treatment for exposing it under a constant temperature atmosphere of 12° C. for 200 hours. A catalyst paste containing catalyst particles and a polymer electrolyte is coated on a sheet-like support 6 and dried to form an electrode catalyst layer 1 containing a solvent in an amount in the range of 0.5% or less by weight of the total membrane. The electrode catalyst layers 3, 3 are thermally transferred and joined on both sides of the polymer electrolyte membrane 1.
    • 提供了具有优异的发电性能和优异的耐久性的用于聚合物电解质燃料电池的电极结构及其制造方法。 还提供了包括电极结构的聚合物电解质燃料电池和使用聚合物电解质燃料电池的电气设备和输送设备。 电极结构包括夹在包含支持催化剂颗粒的碳颗粒的一对电极催化剂层1,1之间的聚合物电解质膜2。 高分子电解质膜2由磺化聚亚芳基系聚合物构成。 磺化聚亚芳基系聚合物的离子交换容量为1.7〜2.3meq / g,聚合物中含有不溶于N-甲基吡咯烷酮的成分相对于聚合物总量为70%以下, 在聚合物经受热处理以使其在12℃的恒温气氛下暴露200小时。 将含有催化剂颗粒和聚合物电解质的催化剂浆料涂覆在片状载体6上并干燥以形成含有溶剂的总量为0.5重量%以下的溶剂的电极催化剂层1。 电极催化剂层3,3在高分子电解质膜1的两面热转印并接合。
    • 5. 发明申请
    • SILENCER FOR A MULTI-LEAF SPRING
    • 多叶春季保湿霜
    • US20130099434A1
    • 2013-04-25
    • US13807469
    • 2011-07-04
    • Junichi YanoNaoshi SatoNoritoshi Sakaide
    • Junichi YanoNaoshi SatoNoritoshi Sakaide
    • F16F1/20
    • F16F1/20B60G11/02B60G2202/11
    • A silencer for a leaf spring assembly. The silencer is disposed between end portions of leaf springs. The silencer has a two-layer structure which has a fixing layer and a sliding layer which are integrally formed. The fixing layer has a projection portion, and the projection portion has an engagement portion at a leading end portion thereof. The fixing layer, which is fixed at the fixing side leaf spring, has a tensile strength higher than the sliding layer. The sliding layer, which abuts the sliding side leaf spring, has a hardness lower than the fixing layer. The projection portion of the fixing layer can have sufficient strength to resist the shearing force. In the sliding layer, undesirable noise generation is difficult, and even when a load transmission portion of an end portion of the sliding side leaf spring partially abuts the sliding layer, undesirable noise generation can be prevented.
    • 用于板簧组件的消音器。 消音器设置在板簧的端部之间。 消音器具有一体形成的具有固定层和滑动层的双层结构。 固定层具有突起部,突起部在其前端部具有接合部。 固定在固定侧板簧上的固定层的拉伸强度高于滑动层。 与滑动侧板簧抵接的滑动层的硬度比固定层低。 固定层的突起部分可以具有足够的强度以抵抗剪切力。 在滑动层中,难以产生不希望的噪声,即使当滑动侧板簧的端部的负荷传递部分抵靠滑动层时,也可以防止产生不期望的噪音。
    • 6. 发明申请
    • Standard cell
    • 标准电池
    • US20070096154A1
    • 2007-05-03
    • US11541657
    • 2006-10-03
    • Hiroyuki ShimboJunichi Yano
    • Hiroyuki ShimboJunichi Yano
    • H01L27/10H01L29/73
    • H01L27/11807H01L27/0207
    • In a standard cell in which a substrate voltage control technique is implemented, a plurality of normal power supply wires are disposed at previously set positions. Therefore, when the standard cell is disposed adjacent to another standard cell having such normal power supply wires, these normal power supply wires are connected to each other. In addition, the standard cell is provided with a substrate power supply terminal which is not connected to that of the other standard cell when the other standard cell is disposed adjacent to the standard cell. Therefore, when a semiconductor integrated circuit is composed of a plurality of the standard cells, a wiring route of an inter-cell substrate power supply wire, or the like can be freely set.
    • 在实现基板电压控制技术的标准单元中,多个正常电源布线设置在预先设定的位置。 因此,当标准单元与具有这种正常电源线的另一个标准单元相邻配置时,这些正常的电源线彼此连接。 此外,标准单元设置有当另一标准单元邻近标准单元设置时,未连接到另一标准单元的基板电源端子。 因此,当半导体集成电路由多个标准单元组成时,可以自由地设置单元间基板电源线的布线路径等。
    • 7. 发明授权
    • Dynamic circuit
    • 动态电路
    • US06967502B2
    • 2005-11-22
    • US10616908
    • 2003-07-11
    • Junichi Yano
    • Junichi Yano
    • H03K19/096
    • H03K19/0963
    • In a dynamic circuit, when only between a precharge node and an intermediate node through a plurality of logical-operating MOS transistors is conducted, the potential of the precharge node approximately drops to High*{C1/(C1+C2)} from High, where C1represents the capacitance of the precharge node and C2 represents the capacitance of the intermediate node. Thereafter, with the charge from a power supply, the precharge node returns to High. At this charge sharing time, the amount of charge supply from the power supply is adjusted to suppress voltage drop of the precharge node, thereby reducing noise.
    • 在动态电路中,当通过多个逻辑操作的MOS晶体管仅在预充电节点和中间节点之间进行时,预充电节点的电位近似地下降到高* {C 1 /(C 1 + C 2)} 从高,其中C 1表示预充电节点的电容,C 2表示中间节点的电容。 此后,利用来自电源的充电,预充电节点返回到高电平。 在该电荷共享时间,调整来自电源的充电量,以抑制预充电节点的电压降,从而降低噪声。
    • 10. 发明授权
    • Silencer for a multi-leaf spring
    • 消音器为多片弹簧
    • US09285004B2
    • 2016-03-15
    • US13807469
    • 2011-07-04
    • Junichi YanoNaoshi SatoNoritoshi Sakaide
    • Junichi YanoNaoshi SatoNoritoshi Sakaide
    • F16F1/20B60G11/02
    • F16F1/20B60G11/02B60G2202/11
    • A silencer for a leaf spring assembly. The silencer is disposed between end portions of leaf springs. The silencer has a two-layer structure which has a fixing layer and a sliding layer which are integrally formed. The fixing layer has a projection portion, and the projection portion has an engagement portion at a leading end portion thereof. The fixing layer, which is fixed at the fixing side leaf spring, has a tensile strength higher than the sliding layer. The sliding layer, which abuts the sliding side leaf spring, has a hardness lower than the fixing layer. The projection portion of the fixing layer can have sufficient strength to resist the shearing force. In the sliding layer, undesirable noise generation is difficult, and even when a load transmission portion of an end portion of the sliding side leaf spring partially abuts the sliding layer, undesirable noise generation can be prevented.
    • 用于板簧组件的消音器。 消声器设置在板簧的端部之间。 消音器具有一体形成的具有固定层和滑动层的双层结构。 固定层具有突起部,突起部在其前端部具有接合部。 固定在固定侧板簧上的固定层的拉伸强度高于滑动层。 与滑动侧板簧抵接的滑动层的硬度比固定层低。 固定层的突起部分可以具有足够的强度以抵抗剪切力。 在滑动层中,难以产生不希望的噪声,即使当滑动侧板簧的端部的负荷传递部分抵靠滑动层时,也可以防止产生不期望的噪音。