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    • 2. 发明授权
    • Inlet system
    • 入口系统
    • US07926472B2
    • 2011-04-19
    • US12121048
    • 2008-05-15
    • Tetsuji YamanakaHironori Kitadani
    • Tetsuji YamanakaHironori Kitadani
    • F02M25/07
    • F02M35/116F02B27/0215F02B27/0263F02B27/0273F02M26/18F02M35/10065F02M35/10222F02M35/10268F02M35/10321Y02T10/146
    • An inlet system includes an intake manifold and an EGR inlet projecting into and received in the manifold through an insertion portion of the manifold. A leading end of the inlet is inserted into the manifold through the insertion portion, projecting to reach a target position. An insertion portion opening diameter, which is an opening diameter of one side of the insertion portion, is larger than an insertion maximum occupying diameter that is a maximum distance between a point included in a cutting surface of the inlet on a reference plane perpendicular to an insertion portion axis and a point included in a vertical projection view of the leading end. A distance between the plane and a nearest point of the leading end to the plane in an axial direction is equal to an insertion portion opening depth, which is a length of the insertion portion in the axial direction.
    • 入口系统包括进气歧管和通过歧管的插入部分突出并插入歧管中的EGR入口。 入口的前端通过插入部分插入歧管中,突出到达目标位置。 作为插入部的一侧的开口直径的插入部开口直径大于插入最大占据直径,该插入最大占据直径是垂直于与插入部垂直的基准面上的入口的切割面中包含的点之间的最大距离 插入部分轴线和包括在前端的垂直投影视图中的点。 平面与轴向方向上的平面的前端的最近点之间的距离等于作为插入部在轴向上的长度的插入部开口深度。
    • 3. 发明申请
    • INLET SYSTEM
    • 入口系统
    • US20080295813A1
    • 2008-12-04
    • US12121048
    • 2008-05-15
    • Tetsuji YAMANAKAHironori Kitadani
    • Tetsuji YAMANAKAHironori Kitadani
    • F02M25/07
    • F02M35/116F02B27/0215F02B27/0263F02B27/0273F02M26/18F02M35/10065F02M35/10222F02M35/10268F02M35/10321Y02T10/146
    • An inlet system includes an intake manifold and an EGR inlet projecting into and received in the manifold through an insertion portion of the manifold. A leading end of the inlet is inserted into the manifold through the insertion portion, projecting to reach a target position. An insertion portion opening diameter, which is an opening diameter of one side of the insertion portion, is larger than an insertion maximum occupying diameter that is a maximum distance between a point included in a cutting surface of the inlet on a reference plane perpendicular to an insertion portion axis and a point included in a vertical projection view of the leading end. A distance between the plane and a nearest point of the leading end to the plane in an axial direction is equal to an insertion portion opening depth, which is a length of the insertion portion in the axial direction.
    • 入口系统包括进气歧管和通过歧管的插入部分突出并插入歧管中的EGR入口。 入口的前端通过插入部分插入歧管中,突出到达目标位置。 作为插入部的一侧的开口直径的插入部开口直径大于插入最大占据直径,该插入最大占据直径是垂直于与插入部垂直的基准面上的入口的切割面中包含的点之间的最大距离 插入部分轴线和包括在前端的垂直投影视图中的点。 平面与轴向方向上的平面的前端的最近点之间的距离等于作为插入部在轴向上的长度的插入部开口深度。
    • 5. 发明授权
    • Exhaust gas recirculation valve
    • 排气再循环阀
    • US08899215B2
    • 2014-12-02
    • US13430777
    • 2012-03-27
    • Ryo SanoYusuke NiwaTetsuji YamanakaHiroki Shimada
    • Ryo SanoYusuke NiwaTetsuji YamanakaHiroki Shimada
    • F02M25/07F02B47/08
    • F02M25/0793F02M26/54F02M26/70
    • An EGR valve includes an aluminum valve body, an outer metal ring, an inner resin ring, a butterfly valve, and a seal ring. The valve body includes a gas passage therein. The gas passage is part of an EGR passage, through which EGR gas is returned from an exhaust passage to intake passage of an engine. The outer ring has a cylindrical shape, and is fixed and disposed on an inner wall of the gas passage. The inner ring has a cylindrical shape, and is disposed on an inner peripheral wall of the outer ring. The butterfly valve opens or closes an inside of the inner ring, and includes a seal fitting groove at an outer peripheral edge of the butterfly valve. The seal ring is fitted into the groove, and seals a clearance between the butterfly valve and the inner ring when the butterfly valve is closed.
    • EGR阀包括铝阀体,外金属环,内树脂环,蝶阀和密封环。 阀体包括气体通道。 气体通道是EGR通路的一部分,EGR气体从排气通道返回到发动机的进气通道。 外圈具有圆筒形状,并且固定并设置在气体通道的内壁上。 内圈具有圆筒形状,并且设置在外圈的内周壁上。 蝶阀打开或关闭内圈的内部,并且在蝶阀的外周边缘处包括密封配合槽。 密封环安装在槽中,当蝶阀关闭时,密封蝶阀和内圈之间的间隙。
    • 10. 发明授权
    • Bearing support device
    • 轴承支撑装置
    • US07219652B2
    • 2007-05-22
    • US11066290
    • 2005-02-28
    • Masao InoToshio HayashiTetsuji Yamanaka
    • Masao InoToshio HayashiTetsuji Yamanaka
    • F02D9/08F16K1/02F02D9/10
    • F02B27/0263F02B27/0215F02B27/0273F02D9/106F02D9/1095Y02T10/146
    • A bearing support device includes a rotor, a bearing member, and a bearing holding member. The rotor rotates about a rotation center axis. The bearing member rotatably supports the rotor within a bearing hole passing through the bearing member. The bearing holding member holds the bearing member in a secure manner within a fitting hole that passes through the bearing holding member along the center axis of the rotor via an engagement force produced by tightly fitting the bearing member. The rotor and bearing member are made of a resin. An engagement section is provided for tightly fitting the bearing member into the fitting hole relative to the bearing hole to enable an engagement force produced by the tight fitting to act in a direction that does not affect an inner diameter dimension of the bearing hole.
    • 轴承支撑装置包括转子,轴承部件和轴承保持部件。 转子围绕旋转中心轴旋转。 轴承构件将转子支撑在穿过轴承构件的轴承孔内。 轴承保持部件通过紧紧配合轴承部件而产生的接合力,将轴承部件固定地保持在穿过轴承保持部件的嵌合孔内,沿着转子的中心轴线。 转子和轴承部件由树脂制成。 提供了一种接合部分,用于将轴承部件相对于轴承孔紧密地装配到装配孔中,以使由紧配合产生的接合力能够在不影响轴承孔的内径尺寸的方向上作用。