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    • 3. 发明申请
    • MEMBRANE ELECTRODE ASSEMBLY AND METHOD OF PRODUCING THE SAME AND FUEL CELL
    • 膜电极组件及其制造方法和燃料电池
    • US20100291460A1
    • 2010-11-18
    • US12833760
    • 2010-07-09
    • SHINYA ADACHIDaisuke IzuharaMasataka NakamuraNaoki ShimoyamaTakao UeteMasayuki Kidai
    • SHINYA ADACHIDaisuke IzuharaMasataka NakamuraNaoki ShimoyamaTakao UeteMasayuki Kidai
    • H01M8/10
    • H01M8/1004H01M8/0297H01M8/04197H01M8/1011H01M8/1025H01M8/1039H01M8/1053H01M8/1067H01M8/241H01M2300/0094Y02E60/523Y02P70/56Y10T156/1092
    • It is an object of the present invention to provide a method of producing a membrane electrode assembly using an interface resistance reducing composition which can simply reduce the resistance of the interface between an electrode and an electrolyte membrane in a short time at low temperatures at low pressure without polimerization while maintaining an effect of suppressing a fuel crossover even with an electrolyte membrane having high heat resistance, high strength, a high tensile elastic modulus and a low water content. This is achieved by a method of producing a membrane electrode assembly formed by sandwiching an electrolyte membrane between a pair of electrodes, comprising the steps of bonding at least one electrode to the electrolyte membrane sandwiching an interface resistance reducing composition containing a plasticizer between the electrode and the electrolyte membrane, and a membrane electrode assembly formed by sandwiching an electrolyte membrane between a pair of electrodes, wherein the membrane electrode assembly has a layer (A) at least between one electrode and the electrolyte membrane, and the value of the storage modulus C is 1 GPA or more when the storage moduli of the electrolyte membrane and the layer (A), which are measured with an ultramicro penetrometer, are regarded as C and D, respectively.
    • 本发明的目的是提供一种使用界面电阻降低组合物制造膜电极组件的方法,其可以在低压下在短时间内简单地降低电极和电解质膜之间的界面的电阻 即使使用具有高耐热性,高强度,高拉伸弹性模量和低含水量的电解质膜,也保持抑制燃料分选的效果。 这是通过制造通过将电解质膜夹在一对电极之间而形成的膜电极组件的方法来实现的,包括以下步骤:将至少一个电极粘合到电解质膜上,该电解质膜夹着含有增塑剂的界面电阻降低组合物, 所述电解质膜和通过将电解质膜夹在一对电极之间而形成的膜电极组件,其中所述膜电极组件具有至少在一个电极和所述电解质膜之间的层(A),并且所述储能模量C 当用超微量透度计测量的电解质膜和层(A)的存储模量分别被认为是C和D时,为1GPA或更高。
    • 5. 发明授权
    • Film electrode composite element and production method therefor, and fuel cell
    • 薄膜电极复合元件及其制备方法和燃料电池
    • US07838164B2
    • 2010-11-23
    • US11721143
    • 2005-11-24
    • Shinya AdachiDaisuke IzuharaMasataka NakamuraNaoki ShimoyamaTakao UeteMasayuki Kidai
    • Shinya AdachiDaisuke IzuharaMasataka NakamuraNaoki ShimoyamaTakao UeteMasayuki Kidai
    • H01M8/10H01M4/86
    • H01M8/1004H01M8/0297H01M8/04197H01M8/1011H01M8/1025H01M8/1039H01M8/1053H01M8/1067H01M8/241H01M2300/0094Y02E60/523Y02P70/56Y10T156/1092
    • It is an object of the present invention to provide a method of producing a membrane electrode assembly using an interface resistance reducing composition which can simply reduce the resistance of the interface between an electrode and an electrolyte membrane in a short time at low temperatures at low pressure without polimerization while maintaining an effect of suppressing a fuel crossover even with an electrolyte membrane having high heat resistance, high strength, a high tensile elastic modulus and a low water content. This is achieved by a method of producing a membrane electrode assembly formed by sandwiching an electrolyte membrane between a pair of electrodes, comprising the steps of bonding at least one electrode to the electrolyte membrane sandwiching an interface resistance reducing composition containing a plasticizer between the electrode and the electrolyte membrane, and a membrane electrode assembly formed by sandwiching an electrolyte membrane between a pair of electrodes, wherein the membrane electrode assembly has a layer (A) at least between one electrode and the electrolyte membrane, and the value of the storage modulus C is 1 GPA or more when the storage moduli of the electrolyte membrane and the layer (A), which are measured with an ultramicro penetrometer, are regarded as C and D, respectively.
    • 本发明的目的是提供一种使用界面电阻降低组合物制造膜电极组件的方法,其可以在低压下在短时间内简单地降低电极和电解质膜之间的界面的电阻 即使使用具有高耐热性,高强度,高拉伸弹性模量和低含水量的电解质膜,也保持抑制燃料分选的效果。 这是通过制造通过将电解质膜夹在一对电极之间而形成的膜电极组件的方法来实现的,包括以下步骤:将至少一个电极粘合到电解质膜上,该电解质膜夹着含有增塑剂的界面电阻降低组合物, 所述电解质膜和通过将电解质膜夹在一对电极之间而形成的膜电极组件,其中所述膜电极组件具有至少在一个电极和所述电解质膜之间的层(A),并且所述储能模量C 当用超微量透度计测量的电解质膜和层(A)的存储模量分别被认为是C和D时,为1GPA或更高。
    • 8. 发明授权
    • Electrode substrate for liquid crystal display device and liquid crystal
display device
    • 液晶显示装置用电极基板及液晶显示装置
    • US5645901A
    • 1997-07-08
    • US495666
    • 1995-07-27
    • Shunsei FukuchiMakoto IwamotoAkihiro KitabatakeMasahiro TanimotoMasaki MaekawaNaoki Shimoyama
    • Shunsei FukuchiMakoto IwamotoAkihiro KitabatakeMasahiro TanimotoMasaki MaekawaNaoki Shimoyama
    • B82B1/00G02F1/1333
    • G02F1/133345G02F1/133305Y10T428/1055Y10T428/31663Y10T428/31667
    • An electrode substrate for liquid crystal display devices is constructed with a resin substrate 4, a cured coating 3, a cured coating 2 and an ITO film 6 laminated in that order. The resin substrate 4 comprises a transparent resin which is a copolymer containing not less than 20% by weight of maleimide type monomer units, having a crosslinked structure and having a glass transition temperature of not lower than 160.degree. C. and not higher than 200.degree. C., and has a thickness of 0.1 to 0.8 mm. The cured coating 3 is a cured coating comprising a polyvinyl alcohol crosslinked with an epoxysilane represented by the formula R.sup.1 SiX.sub.3 wherein R.sup.1 is an organic group of 1 to 10 carbon atoms having a glycidyl group and X is a hydrolyzable group. The cured coating 2 is a siloxane type cured coating containing fine silica particles. The ITO film 6 is an ITO film having a grainy surface with grains of a diameter of not larger than 500 nm, formed at a substrate temperature of not higher than 100.degree. C., and having a thickness of 15 to 500 nm.
    • PCT No.PCT / JP94 / 02067 Sec。 371日期:1995年7月27日 102(e)日期1995年7月27日PCT 1994年12月8日PCT PCT。 WO95 / 16936 PCT出版物 日期:1995年6月22日。液晶显示装置用电极基板由树脂基板4,固化涂层3,固化涂层2和ITO膜6构成。 树脂基板4包括透明树脂,其是含有不少于20重量%马来酰亚胺型单体单元的共聚物,其具有交联结构并且玻璃化转变温度不低于160℃且不高于200℃ 厚度为0.1〜0.8mm。 固化涂层3是包含与由式R 1 SiX 3表示的环氧硅烷交联的聚乙烯醇的固化涂层,其中R1是具有缩水甘油基的1至10个碳原子的有机基团,X是可水解基团。 固化涂层2是含有二氧化硅微粒的硅氧烷型固化涂层。 ITO膜6是在基板温度不高于100℃,厚度为15〜500nm的条件下形成具有粒径不大于500nm的粒状的ITO膜。
    • 10. 发明申请
    • Tilt steering apparatus
    • 倾斜转向装置
    • US20080282832A1
    • 2008-11-20
    • US12073236
    • 2008-03-03
    • Naoki ShimoyamaTohru OhtaKazunari Machida
    • Naoki ShimoyamaTohru OhtaKazunari Machida
    • B62D1/18
    • B62D1/184G05G1/04G05G5/06
    • A tilt steering apparatus comprises a tilt adjusting mechanism in which a tilt lock release is established only when an oscillation-free end of an operating arm portion of a tilt operating lever is positioned toward a steering wheel side. Even when the tilt operating lever is oscillated to the steering wheel side, the tilt operating lever is prevented from returning under its own weight, thereby preventing it from being difficult to operate. The tilt steering apparatus is configured from an oscillation latch portion formed on the circumference of an oscillation center portion of an oscillation base portion of the tilt operating lever to move reciprocally in the circumferential direction, a hook portion formed in the movable bracket, and a spring that extends between the oscillation latch portion and the hook portion elastically urged in the direction of contraction. The centerline of the spring is able to pass through the oscillation center portion of the tilt operating lever as appropriate.
    • 倾斜转向装置包括倾斜调节机构,其中只有当倾斜操作杆的操作臂部分的无振动端朝向方向盘侧时才建立倾斜锁定释放。 即使当倾斜操作杆向方向盘侧摆动时,防止倾斜操作杆在其自重下返回,从而防止其操作困难。 倾斜转向装置由形成在倾斜操作杆的摆动基部的振荡中心部的圆周上的摆动锁定部构成,能够沿圆周方向往复移动,形成在可动支架上的钩部和弹簧 其在振动锁定部分和在收缩方向上弹性推动的钩部分之间延伸。 弹簧的中心线能够适当地通过倾斜操作杆的振荡中心部分。