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    • 11. 发明授权
    • Brake lining wear detection apparatus
    • 制动衬片磨损检测仪
    • US06412607B2
    • 2002-07-02
    • US09758985
    • 2001-01-11
    • Mitsuyoshi OhbaToshiyuki IshidaShin YoshidaJunya Kaneko
    • Mitsuyoshi OhbaToshiyuki IshidaShin YoshidaJunya Kaneko
    • F16D5502
    • F16D65/22F16D65/183F16D65/56F16D65/568F16D66/025F16D2121/14F16D2125/32F16D2125/66
    • In the expander (50) in a drum brake, when the brake is activated, the sleeve (56) is extended in the lateral directions in the drawing by the wedge (52) inserted within the housing (51), and the shoe engaged with the clip (58) is swung to press the lining (23) against the drum, and friction braking is performed. When the lining (23) wears away and the amount of movement of the sleeve (56) increases, the sleeve (56) is rotated by reciprocal action with a drive ring (62) that is engaged with the periphery of the sleeve and, thereby, the pressing screw (57) screwed thereon comes out by the amount of the increase of movement (the amount of wear on the lining). A flat surface (56c) is formed on the periphery of the sleeve and the detecting head (80) of the displacement detection apparatus detects the rotation of the sleeve (56).
    • 在鼓式制动器的膨胀器(50)中,当制动器被致动时,套筒(56)通过插入在壳体(51)内的楔形件(52)沿着图中的横向方向延伸,并且鞋 摆动夹子(58)将衬里(23)压靠滚筒,并进行摩擦制动。 当衬套(23)磨损并且套筒(56)的移动量增加时,套筒(56)通过与套筒周边接合的驱动环(62)的往复动作而旋转,从而 拧紧的按压螺丝(57)的移动量增加(衬里的磨损量)。 平面(56c)形成在套筒的周边上,位移检测装置的检测头(80)检测套筒(56)的旋转。
    • 12. 发明授权
    • Rotary cylinder device
    • 旋转气缸装置
    • US06220143B1
    • 2001-04-24
    • US09200997
    • 1998-11-30
    • Shin Yoshida
    • Shin Yoshida
    • F01B3112
    • B23B31/302
    • A rotary cylinder for controlling operations of a chuck to be used on a lathe or the like. The rotary cylinder comprises a housing, a cylinder unit, a distributor supporting the cylinder unit in bearings fitted therein, and a seizure detecting system including a detaining mechanism for restraining the distributor from rotation relative to the housing. The seizure detecting system detects seizure between the distributor and the cylinder unit and allows the distributor to rotate relative to the housing. The distributor is capable of being fixedly held on the housing without distorting the bearings supporting the cylinder unit and of being disconnected from the housing when seizure occurs between the distributor and the cylinder unit.
    • 用于控制在车床等上使用的卡盘的操作的旋转圆筒。 旋转圆筒包括壳体,气缸单元,支撑装配在其中的轴承中的气缸单元的分配器,以及包括用于限制分配器相对于壳体旋转的止动机构的检测系统。 卡扣检测系统检测分配器和气缸单元之间的卡塞,并允许分配器相对于壳体旋转。 分配器能够固定地保持在壳体上,而不会使承载气缸单元的轴承变形,并且在分配器和气缸单元之间发生卡塞时与壳体断开连接。
    • 16. 发明授权
    • Gas-sensor
    • 气体传感器
    • US08747634B2
    • 2014-06-10
    • US13045223
    • 2011-03-10
    • Seiji OyaShin YoshidaYuko Yamada
    • Seiji OyaShin YoshidaYuko Yamada
    • G01N27/409G01N27/26
    • G01N27/407
    • A gas sensor including a gas sensor element, and an inner member surrounding the gas sensor element. The gas sensor element has a detection element having therein a space to which a gas to be measured is introduced, and a heater laminated on the detection element. The detection element includes a first oxygen pumping cell for pumping oxygen into or out of the space, an oxygen concentration detection cell, a detection electrode and a reference electrode. In side faces of the detection element along a laminating direction, a region from a front end of the inner member to a part of the detection electrode along a longitudinal direction is covered with a glass coat having a glass transition point of over 700° C. Further the detection electrode is controlled at a temperature range from 600° C. or more to not more than the glass transition point of the glass coat.
    • 包括气体传感器元件的气体传感器和围绕气体传感器元件的内部构件。 气体传感器元件具有检测元件,其中具有引入待测气体的空间,层叠在检测元件上的加热器。 检测元件包括用于将氧气输入或流出空间的第一氧气泵浦单元,氧浓度检测单元,检测电极和参考电极。 沿着层叠方向的检测元件的侧面,从玻璃化转变点为700℃以上的玻璃涂层覆盖从内部构件的前端到沿着长度方向的检测电极的一部分的区域。 此外,将检测电极控制在玻璃涂层的玻璃化转变点的600℃以上的范围内。
    • 19. 发明申请
    • PANEL INSPECTION APPARATUS AND INSPECTION METHOD
    • 面板检查装置和检查方法
    • US20090114018A1
    • 2009-05-07
    • US12262537
    • 2008-10-31
    • Ichiro KonoKenzo TakedaShin Yoshida
    • Ichiro KonoKenzo TakedaShin Yoshida
    • G01N29/12
    • G01N29/12G01M7/025G01N29/045G01N29/30G01N29/46
    • A panel inspection apparatus includes a resonant frequency extracting unit for extracting a plurality of resonant frequencies of a panel, a resonant frequency selecting unit for selecting a combination of resonant frequencies consisting of two resonant frequencies A and B with different vibration propagation paths among the extracted plurality of resonant frequencies, a non-defective range generating unit for generating a non-defective range on a coordinate system in which resonant frequencies A and B are taken on coordinate axes by statistically processing a set of the resonant frequencies A and B selected for each of a plurality of non-defective panels determined as non-defective in advance, and a panel quality determining unit for determining whether the quality of the panel to be inspected is good based on comparison between resonant frequencies A and B selected for the panel to be inspected and the non-defective range generated by the non-defective range generating unit.
    • 面板检查装置包括用于提取面板的多个谐振频率的谐振频率提取单元,用于选择由两个谐振频率A和B组成的谐振频率的组合的谐振频率选择单元与提取的多个振荡传播路径中的不同的振动传播路径 谐振频率的无缺陷范围产生单元,用于通过统计处理为每个谐振频率选择的谐振频率A和B的集合来统计地处理坐标系上的无缺陷范围,其中谐振频率A和B在坐标轴上被拍摄 预先确定为无缺陷的多个无缺陷面板;以及面板质量确定单元,用于基于被检查面板选择的谐振频率A和B之间的比较来确定被检查面板的质量是否良好 以及由无缺陷范围产生单元产生的无缺陷范围。
    • 20. 发明授权
    • Connector
    • 连接器
    • US07422446B2
    • 2008-09-09
    • US10889767
    • 2004-07-12
    • Shin Yoshida
    • Shin Yoshida
    • H01R12/00
    • H01R13/2407G01R1/0466G01R1/0483H01R13/2485H05K7/1069
    • A discontinuous contact region is formed in the vicinity of the tip of a spiral contact towards the center of the spiral. When a spherical contact is pressed into the spiral contact, a contact point P is formed since the angular portion of the tip of the discontinuous contact region comes into contact with the surface of the spherical contact first. Thus, the electrical characteristic, such as the contact resistance, between the spiral contact and the spherical contact becomes constant, and the connections between the two contacts can be stabilized.
    • 在螺旋形接触件的尖端附近朝向螺旋的中心形成不连续的接触区域。 当将球形接触件按压到螺旋接触件中时,形成接触点P,因为不连续接触区域的尖端的角部分首先与球形接触件的表面接触。 因此,螺旋接触和球面接触之间的接触电阻等电特性变得恒定,并且可以使两个接点之间的连接稳定。