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    • 6. 发明授权
    • Apparatus for coating outer peripheral surface of pillar structure and method for coating outer peripheral surface of pillar structure
    • 支柱结构外周面涂层装置及柱结构外周面涂层方法
    • US07981476B2
    • 2011-07-19
    • US10531577
    • 2003-10-21
    • Takashi NoroTakahisa Kaneko
    • Takashi NoroTakahisa Kaneko
    • B05D1/42B05C11/02
    • B05C5/0208B05C5/0241B05C5/0254B05C11/04
    • An apparatus for coating the outer peripheral surface 1a of a pillar structure 1 comprising a smoothing means 10 having a smoothing plate 10a and an elastic body 10b; the elastic body 10 being disposed to be contacted with the outer peripheral surface 1a of the pillar structure 1 to be coated. The coating surface of a coating material supplied to the outer peripheral surface 1a is smoothed between the outer peripheral surface 1a and the elastic body 10b. A method for coating the outer peripheral surface of a pillar structure is also provided. According to the method by using the apparatus, the occurrence of partial uncoating or peeling of the coating and occurrence of cracks in the coating portion during drying after coating can be inhibited since the coating material can be applied thinly and uniformly on the outer peripheral surface, thereby the coating surface is smoothed.
    • 一种用于涂覆柱结构1的外周面1a的装置,包括具有平滑板10a和弹性体10b的平滑装置10; 弹性体10设置成与要被涂覆的柱状结构1的外周面1a接触。 供给到外周面1a的涂料的涂布面在外周面1a和弹性体10b之间平滑化。 还提供了一种用于涂覆柱状结构的外周面的方法。 根据使用该装置的方法,由于可以在外周面上均匀地涂布涂料,所以可以抑制在涂布后的干燥期间涂布部分脱涂或剥离以及涂布部分发生裂纹的发生, 从而使涂层表面光滑。
    • 8. 发明授权
    • Fluid drive device
    • 流体驱动装置
    • US08257042B2
    • 2012-09-04
    • US12445677
    • 2007-11-01
    • Takashi NoroHiroaki Takeuchi
    • Takashi NoroHiroaki Takeuchi
    • F01D5/22
    • F16H41/28F16H45/02F16H2045/0205F16H2045/0294
    • A torque converter includes a pump shell constituting an internal space for retaining ATF and capable of rotating about the rotation axis; a blade engaging with the pump shell; and an extension sleeve pressing the blade against the pump shell. The pump shell has a groove into which a tip portion of the blade is fit formed at its inner peripheral surface. In the state where the tip portion is fit into the groove, the extension sleeve presses the blade to fix the blade to the pump shell. The groove forms an acute angle θ with respect to a meridian of the shell passing through the groove. The groove extends in one direction, has one end opened and the other end closed, and has a width larger on the side of the one end than on the side of the other end. The groove has a portion smallest in width equal to the width of the tip portion.
    • 变矩器包括构成用于保持ATF并且能够围绕旋转轴旋转的内部空间的泵壳; 与泵壳接合的叶片; 以及将刀片压靠在泵壳上的延伸套筒。 泵壳具有凹槽,叶片的末端部分在其内周表面形成。 在顶部装配到槽中的状态下,延伸套筒按压刀片以将刀片固定到泵壳体。 凹槽形成锐角; 相对于穿过凹槽的壳的子午线。 槽沿一个方向延伸,其一端开放,另一端封闭,并且在一端侧比另一端侧更宽。 凹槽的宽度最小的部分等于尖端部分的宽度。
    • 9. 发明申请
    • FLUID DRIVE DEVICE
    • 流体驱动装置
    • US20100296919A1
    • 2010-11-25
    • US12445677
    • 2007-11-01
    • Takashi NoroHiroaki Takeuchi
    • Takashi NoroHiroaki Takeuchi
    • F01D5/02
    • F16H41/28F16H45/02F16H2045/0205F16H2045/0294
    • A torque converter includes a pump shell constituting an internal space for retaining ATF and capable of rotating about the rotation axis; a blade engaging with the pump shell; and an extension sleeve pressing the blade against the pump shell. The pump shell has a groove into which a tip portion of the blade is fit formed at its inner peripheral surface. In the state where the tip portion is fit into the groove, the extension sleeve presses the blade to fix the blade to the pump shell. The groove forms an acute angle θ with respect to a meridian of the shell passing through the groove. The groove extends in one direction, has one end opened and the other end closed, and has a width larger on the side of the one end than on the side of the other end. The groove has a portion smallest in width equal to the width of the tip portion.
    • 变矩器包括构成用于保持ATF并且能够围绕旋转轴旋转的内部空间的泵壳; 与泵壳接合的叶片; 以及将刀片压靠在泵壳上的延伸套筒。 泵壳具有凹槽,叶片的末端部分在其内周表面形成。 在顶部装配到槽中的状态下,延伸套筒按压刀片以将刀片固定到泵壳体。 凹槽形成锐角; 相对于穿过凹槽的壳的子午线。 槽沿一个方向延伸,其一端开放,另一端封闭,并且在一端侧比另一端侧更宽。 凹槽的宽度最小的部分等于尖端部分的宽度。
    • 10. 发明授权
    • Grinding method
    • 研磨方法
    • US07452263B2
    • 2008-11-18
    • US10578509
    • 2004-11-16
    • Yuji ItohTakashi Noro
    • Yuji ItohTakashi Noro
    • B24B49/00
    • B24B5/04B24B1/00
    • A method of grinding the outer circumferential surface of a workpiece 5 formed of a hard and brittle material into a predetermined shape using a grinding wheel while rotating the workpiece 5 is disclosed. The method includes plunge grinding the workpiece 5 at an arbitrary portion (plunge ground portion 21) in the longitudinal direction of the workpiece 5 by causing the grinding wheel to come in contact with the workpiece 5 in a direction which intersects a rotational axis 8 of the workpiece 5, and traverse grinding the workpiece 5 toward the plunge ground portion 21 by moving the grinding wheel relative to the workpiece 5 in a direction parallel to the rotational axis 8 of the workpiece 5. This allows the outer circumferential surface of the workpiece made of a hard and brittle material, such as a honeycomb structure used for a DPF, to be ground into a predetermined shape in a short time, and prevents occurrence of chipping during grinding.
    • 公开了一种在使工件5旋转的同时使用砂轮将由硬脆材料形成的工件5的外周面研磨成规定形状的方法。 该方法包括:通过使砂轮沿着与工件5的旋转轴线8相交的方向与工件5接触而在工件5的纵向上的任意部分(插入接地部21)处对工件5进行切削研磨 工件5,并且通过在平行于工件5的旋转轴线8的方向上相对于工件5移动砂轮,将工件5朝向插入接地部21移动。 由此,能够将由DPF所使用的蜂窝结构体等硬质脆性材料构成的工件的外周面在短时间内研磨成规定的形状,能够防止研磨时的切屑发生。