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    • 32. 发明授权
    • Method of producing lever of lever-fitting type connector
    • 杠杆式连接器的制作方法
    • US07396241B2
    • 2008-07-08
    • US11775590
    • 2007-07-10
    • Yoshinori MatsuuraHiroaki Yamagishi
    • Yoshinori MatsuuraHiroaki Yamagishi
    • H01R13/62
    • H01R13/62955
    • There is disclosed a method of producing a lever including a pair of side plates, an interconnecting portion interconnecting one ends of the two side plates, a lock arm formed at the interconnecting portion so as to be engaged with a male connector, excessive displacement prevention piece portions formed on and projecting respectively from opposite side portions of the lock arm, and a pair of displacement limitation ribs which are formed respectively at opposite ends of the interconnecting portion, and project in a direction away from the side plates, and are disposed outwardly respectively of the excessive displacement prevention piece portions, each excessive displacement prevention piece portion is disposed between the corresponding displacement limitation rib and the interconnecting portion, and thereafter the bent interconnecting portion is restored into its initial shape, thereby canceling the expansion of the gap between the displacement limitation ribs.
    • 公开了一种制造杠杆的方法,该杠杆包括一对侧板,互连两个侧板的一端的互连部分,形成在互连部分以与阳连接器接合的锁定臂, 分别形成在锁定臂的相对侧部分上并突出的部分,以及分别形成在互连部分的相对端部并沿远离侧板的方向突出的一对位移限制肋,并分别向外 的过度位移防止件部分,每个过度位移防止件部分设置在相应的位移限制肋和互连部分之间,然后弯曲的互连部分恢复到其初始形状,从而消除位移之间的间隙的膨胀 限制肋骨。
    • 33. 发明授权
    • Lever-type connector with reinforcing metallic plates
    • 带加强金属板的杠杆式连接器
    • US07364453B2
    • 2008-04-29
    • US11765718
    • 2007-06-20
    • Yoshinori MatsuuraHiroaki Yamagishi
    • Yoshinori MatsuuraHiroaki Yamagishi
    • H01R13/62H01R13/64
    • H01R13/62955
    • To provide a lever-type connector in which a sufficient strength and durability of a lever are secured so that a fitting operation can be effected positively, and also a thin design of the lever is achieved, a lever-type connector 10 includes a female housing, a lever 20 pivotally mounted on the female housing, and a male housing for fitting to the female housing, and the female and male housings are completely fitted to each other by pivotally moving the lever 20 engaged with the male housing. The lever 20 includes a resin-made lever base 26, and metallic plates 27, and the lever base includes a pair of side plate portions 29 disposed contiguous respectively to wall surfaces of the female housing, and an interconnecting portion 31 interconnecting one ends of the side plate portions 29, and the metallic plates are attached respectively to the side plate portions 29 in contiguous relation thereto, and an elastic lock arm 30 for retaining engagement with the female housing is formed at the interconnecting portion 31. The plates 27 are attached respectively to those surfaces of the side plate portions 29 opposed respectively to the wall surfaces of the female housing such that each of the plates is interposed between the corresponding side plate portion 29 and the female housing.
    • 为了提供杠杆式连接器,其中杆的足够的强度和耐用性被确保,使得可以积极地实现装配操作,并且还实现了杠杆的薄设计,杠杆式连接器10包括阴壳 ,枢转地安装在阴壳体上的杆20和用于装配到阴壳体的阳壳体,并且阴阳壳体通过枢转地移动与阳壳体接合的杆20而彼此完全配合。 杠杆20包括树脂制的杠杆底座26和金属板27,并且杠杆底座包括一对侧板部分29,它们分别设置在阴壳体的壁表面上,以及互连部分31, 侧板部分29和金属板分别连接到侧板部分29上,并且在互连部分31处形成用于保持与阴壳接合的弹性锁定臂30。 板27分别安装在侧板部29的分别与阴壳体的壁面相对的那些表面上,使得每个板插入在对应的侧板部分29和阴壳体之间。
    • 37. 发明授权
    • Metal hydride alkaline storage cell
    • 金属氢化物碱性蓄电池
    • US06322925B1
    • 2001-11-27
    • US09141140
    • 1998-08-27
    • Yoshinori MatsuuraMitsuzo NogamiReizo MaedaKatsuhiko ShinyamaIkuo YonezuKoji Nishio
    • Yoshinori MatsuuraMitsuzo NogamiReizo MaedaKatsuhiko ShinyamaIkuo YonezuKoji Nishio
    • H01M1024
    • H01M4/366H01M4/242H01M4/26H01M4/383H01M10/24H01M10/26H01M10/345Y02E60/124Y10S420/90Y10T29/49108Y10T29/49115
    • A metal hydride alkaline storage cell of the present invention comprises a positive electrode, a separator impregnated with an electrolyte, and a negative electrode comprising hydrogen-absorbing alloy powder. On the surface of the hydrogen-absorbing alloy powder, there is formed a layer of hydrogen-absorbing alloy oxide, and on the layer of the oxide, there is dotted a catalytic metal formed in a granular state by adding a substance soluble in the electrolyte. The substance is selected from the group consisting of a metal fluoride, a metal iodide, and a metal sulfide. The proportion of the metal fluoride, the metal iodide, or the metal sulfide in adding is restricted within the range of from 0.1 to 2.5 wt. % based on the weight of hydrogen-absorbing alloy powder. When the layer of the hydrogen-absorbing alloy oxide is formed on the surface of the hydrogen-absorbing alloy powder, the reaction area on the surface of the hydrogen-absorbing alloy is increased due to the roughness of the layer. Consequently, the catalytic action of the metal is fully utilized by dotting a catalytic metal on the alloy surface, and thereby the inner pressure characteristic high-rate charge characteristic) of a cell is improved.
    • 本发明的金属氢化物碱性蓄电池包括正电极,浸渍有电解质的隔膜和包含吸氢合金粉末的负极。 在吸氢合金粉末的表面上形成有吸氢合金氧化物层,在氧化物层上,点燃形成颗粒状的催化金属,加入可溶于电解质的物质 。 该物质选自金属氟化物,金属碘化物和金属硫化物。 金属氟化物,金属碘化物或金属硫化物的添加量的比例限制在0.1〜2.5重量%的范围内。 基于吸氢合金粉末的重量%。 当在吸氢合金粉末的表面上形成吸氢合金氧化物层时,由于该层的粗糙度,吸氢合金表面上的反应区域增加。 因此,通过在合金表面上点燃催化金属,从而提高了电池的内部压力特性高速电荷特性,从而充分利用了金属的催化作用。