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    • 4. 发明授权
    • Assisting device and method for variable valve mechanism
    • 辅助可变阀机构的装置和方法
    • US06742483B2
    • 2004-06-01
    • US10274402
    • 2002-10-21
    • Ken Asakura
    • Ken Asakura
    • F01L134
    • F01L13/0015F01L1/34F01L13/0021
    • An output from each of output rods is converted into an assisting force via a corresponding one of rollers, while an outer peripheral surface of each of the rollers moving together with a control shaft serves as a conversion plane. This output is applied to the control shaft. Hence, as the control shaft is moved in such a direction as to increase valve lift amounts of intake valves, the assisting force can be correspondingly increased. Thus, a suitable assisting force that can act against a thrust force can be applied to the control shaft. As a result, there is no apprehension that a minimum hydraulic fluid pressure will not be ensured on the side of a larger valve lift amount or that responding properties in movements of the control shaft will deteriorate.
    • 每个输出杆的输出通过相应的一个辊转换成辅助力,而与控制轴一起移动的每个辊的外周表面用作转换平面。 该输出应用于控制轴。 因此,当控制轴沿着增加进气门的气门升程量的方向移动时,可以相应地增加辅助力。 因此,可以对控制轴施加能够抵抗推力的合适的辅助力。 结果,不会担心在较大的气门升程量的一侧将不能确保最小的液压流体压力,或者控制轴的运动中的响应特性将变差。
    • 5. 发明授权
    • Cooler using cooling medium
    • 冷却器采用冷却介质
    • US08561676B2
    • 2013-10-22
    • US12669317
    • 2008-08-06
    • Ken Asakura
    • Ken Asakura
    • F28F27/00
    • F28F3/12B60K11/02B60K2001/003F28F9/0246F28F2265/00H05K7/20845H05K7/2089
    • A cooler (20) arranged in a PCU (12) is provided with a bottom plate (22), a top plate (28) and a shell (30) arranged between the bottom plate and the top plate. The shell (30) is provided with an inflow side pipe (32) and an outflow side pipe (34) for making a cooling medium flow inside. The bottom plate (22) is provided with fixing holes (36, 38) for fixing the cooler (20) at a suitable position in the PCU (12). Between the fixing hole (38) and the outflow side pipe (34), a notched section (42) is arranged on the bottom plate (22) to partially reduce rigidity so that the shell (30) does not break when an impulsive power is applied to the cooler (20). A notched section (40) may be arranged between the part where the fixing hole (36) is arranged and the inflow side pipe (32).
    • 布置在PCU(12)中的冷却器(20)设置有设置在底板和顶板之间的底板(22),顶板(28)和壳(30)。 壳体30具有用于使冷却介质流入内部的流入侧管道(32)和流出侧管道(34)。 底板(22)设置有用于将冷却器(20)固定在PCU(12)中的适当位置的固定孔(36,38)。 在固定孔(38)和流出侧管(34)之间,在底板(22)上设置有切口部(42),以部分地降低刚性,使得当脉冲动力为 施加到冷却器(20)。 切口部(40)也可以配置在配置有固定孔(36)的部分与流入侧管(32)之间。
    • 7. 发明申请
    • COOLER USING COOLING MEDIUM
    • 冷却器使用冷却介质
    • US20100206517A1
    • 2010-08-19
    • US12669317
    • 2008-08-06
    • Ken Asakura
    • Ken Asakura
    • F28D15/00
    • F28F3/12B60K11/02B60K2001/003F28F9/0246F28F2265/00H05K7/20845H05K7/2089
    • A cooler (20) arranged in a PCU (12) is provided with a bottom plate (22), a top plate (28) and a shell (30) arranged between the bottom plate and the top plate. The shell (30) is provided with an inflow side pipe (32) and an outflow side pipe (34) for making a cooling medium flow inside. The bottom plate (22) is provided with fixing holes (36, 38) for fixing the cooler (20) at a suitable position in the PCU (12). Between the fixing hole (38) and the outflow side pipe (34), a notched section (42) is arranged on the bottom plate (22) to partially reduce rigidity so that the shell (30) does not break when an impulsive power is applied to the cooler (20). A notched section (40) may be arranged between the part where the fixing hole (36) is arranged and the inflow side pipe (32).
    • 布置在PCU(12)中的冷却器(20)设置有设置在底板和顶板之间的底板(22),顶板(28)和壳(30)。 壳体30具有用于使冷却介质流入内部的流入侧管道(32)和流出侧管道(34)。 底板(22)设置有用于将冷却器(20)固定在PCU(12)中的适当位置的固定孔(36,38)。 在固定孔(38)和流出侧管(34)之间,在底板(22)上设置有切口部(42),以部分地降低刚性,使得当脉冲动力为 施加到冷却器(20)。 切口部(40)也可以配置在配置有固定孔(36)的部分与流入侧管(32)之间。
    • 8. 发明授权
    • Engine variable valve timing mechanism
    • 发动机可变气门正时机构
    • US5724929A
    • 1998-03-10
    • US835252
    • 1997-04-07
    • Kazuhisa MikameKen AsakuraTatsuo Iida
    • Kazuhisa MikameKen AsakuraTatsuo Iida
    • F01L3/14B21D22/21B21K1/22B23P15/00F01L1/34F01L1/344F01L3/02F01L3/20F02D13/02F16D3/10
    • F01L1/3442B21D22/21B21K1/22B23P15/002F01L3/02F01L3/14F01L3/20F16D3/10F01L2001/34426
    • A variable valve timing mechanism is provided at the distal end of a camshaft for changing a valve timing of an engine valve. A rotor is fixed to the distal end face of the camshaft, and the rotor has four vanes protruding radially outward. A housing is disposed to surround the rotor to be rotatable relative to the rotor and the camshaft, and the housing has recesses on the inner circumference. Each recess is divided by the vane into a first pressure chamber and a second pressure chamber. A first passage is defined in the camshaft, for supplying a hydraulic fluid pressure to the first pressure chamber so as to change the rotational phase of the second rotor with respect to the camshaft, and the first passage has an opening at the distal end face of the camshaft. A second passage is defined in the camshaft, for supplying a fluid pressure to the second pressure chamber so as to change the rotational phase of the second rotor with respect to the camshaft, and the second passage has an opening at outer circumference of the camshaft.
    • 在可变气门正时机构设置在凸轮轴的远端,用于改变发动机气门的气门正时。 转子固定在凸轮轴的远端面上,转子具有径向向外突出的四个叶片。 壳体设置成围绕转子相对于转子和凸轮轴可旋转,并且壳体在内圆周上具有凹部。 每个凹槽由叶片分成第一压力室和第二压力室。 第一通道限定在凸轮轴中,用于向第一压力室供应液压流体压力,以便相对于凸轮轴改变第二转子的旋转相位,并且第一通道在前端面具有开口 凸轮轴。 第二通道限定在凸轮轴中,用于向第二压力室提供流体压力,以便相对于凸轮轴改变第二转子的旋转相位,并且第二通道在凸轮轴的外圆周处具有开口。
    • 10. 发明申请
    • REACTOR-SECURING STRUCTURE
    • 反应器安全结构
    • US20120223794A1
    • 2012-09-06
    • US13501153
    • 2009-11-26
    • Ken Asakura
    • Ken Asakura
    • H01F27/06
    • H01F37/00H01F27/06
    • A reactor-securing structure includes, one end of a first-side stay and one end of a second-side stay that are connected to portions of a reactor which are separated from each other at the two sides of a coil axial direction. The other end of the first-side stay and the other end of the second-side stay are fastened in states overlapping the inverter case. A first-side overlapping portion is formed by having the other end of the first-side stay overlap the inverter case, and a second-side overlapping portion is formed by having the other end of the second-side stay overlap the inverter case, A portion of the first-side overlapping portion and a portion of the second-side overlapping portion, when seen from a plan view, are provided in the same range relating to the length direction of the I-shaped section forming the reactor.
    • 反应堆固定结构包括:第一侧撑的一端和与在线圈轴向的两侧彼此分离的反应器的部分连接的第二侧撑的一端。 第一侧支架的另一端和第二侧支架的另一端固定在与逆变器壳体重叠的状态。 第一侧重叠部分通过使第一侧支架的另一端与逆变器壳体重叠而形成,并且通过使第二侧支架的另一端与逆变器壳体重叠而形成第二侧重叠部分A 当从平面图看时,第一侧重叠部分和第二侧重叠部分的一部分设置在与形成反应器的I形截面的长度方向相同的范围内。