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    • 44. 发明授权
    • Apparatus for measuring the velocity of ultrasonic sound in terms of
V(Z) characteristics and ultrasonic microscope using that apparatus
    • 根据V(Z)特性和使用该装置的超声波显微镜测量超声波速度的装置
    • US5349862A
    • 1994-09-27
    • US795041
    • 1991-11-20
    • Noriyoshi ChubachiHiroshi Kanai
    • Noriyoshi ChubachiHiroshi Kanai
    • G01N29/06G01H5/00G01N29/26G01N29/44G01N29/18G01N29/24
    • G01H5/00
    • The ultrasonic sound velocity measuring apparatus or ultrasonic microscope moves the sample to be measured or examined relative to a focusing acoustic probe from its focal point to a defocus point closer to the probe; subjects the intensity of a first reception signal in the peripheral portion of the transducer of the acoustic probe as obtained therefrom in response to said relative movement of the sample, the phase difference between the first reception signal and either the signal for driving the acoustic probe or the corresponding reference signal, the intensity of a second reception signal in the central portion of the transducer of the acoustic probe as obtained therefrom in response to said relative movement of the sample, and the phase difference between the second reception signal, and either the signal for driving the acoustic probe or the corresponding reference signal to more than one sampling at time intervals corresponding to positions in the defocus direction; and obtains data on the intensity and phase difference of the plurality of the first reception signals as obtained by the sampling step as well as data on the intensity and phase difference of the plurality of the second reception signals as obtained by the sampling step as data for vector functions, with respect to the position in the defocus direction, of the wave of interference between the leaky elastic surface wave component and the reflected wave component near the central axis of the acoustic probe so as to calculate the velocity of the leaky elastic surface wave component.
    • 超声波声速测量装置或超声波显微镜使待测样品或相对于聚焦声探头从其焦点移动到靠近探头的离焦点; 响应于样品的所述相对移动,第一接收信号和用于驱动声学探针的信号之间的相位差,或者用于驱动声学探针的信号之间的相位差,从而从其获得的声探针的换能器的周边部分中的第一接收信号的强度 相应的参考信号,响应于样品的所述相对运动而从其获得的声探针的换能器的中心部分中的第二接收信号的强度,以及第二接收信号与信号之间的相位差 用于以对应于散焦方向上的位置的时间间隔驱动声探针或相应的参考信号到多于一个采样; 并且获得关于通过采样步骤获得的多个第一接收信号的强度和相位差的数据以及通过采样步骤获得的多个第二接收信号的强度和相位差的数据作为数据, 相对于散焦方向上的位置的向量函数来说,泄漏弹性表面波分量与声探测器的中心轴附近的反射波分量之间的干涉波,以计算泄漏弹性表面波的速度 零件。
    • 48. 发明授权
    • Paint composition for under coating
    • 涂层组合物
    • US4826895A
    • 1989-05-02
    • US139616
    • 1987-12-30
    • Hiroshi KanaiJoji OkaHidehiko Kojo
    • Hiroshi KanaiJoji OkaHidehiko Kojo
    • C09D5/00C08G59/06C08G59/14C08G59/56C09D163/00C08K3/36
    • C08G59/56C08G59/066C08G59/1422C09D163/00
    • The paint composition for under coating of the present invention comprises 60 to 90% by weight of an epoxy polyol resin optionally together with a hardener therefor and 10 to 40% by weight of silica particles. Said epoxy polyol resin is obtained by reacting an optionally substituted glycidyl-etherified product of an alkylene oxide adduct of a dihydric phenol with a phosphorus acid having at least one P--OH bond, an ester or a salt thereof to thereby give a precondensate, reacting said precondensate with a dihydric phenol to give an epoxy resin of a high molecular weight, and further reacting said epoxy resin with a compound having an amino group capable of reacting with an epoxy group. Said silica particles comprise a primary particle having an average particle size of 1 to 10 m.mu., a surface area of 270 m.sup.2 /g or above and a concentration of silanol groups on the particle surface of 0.25 mM/100 m.sup.2 or above.
    • 本发明的底涂层用涂料组合物含有60〜90重量%的环氧多元醇树脂,任选地与其硬化剂一起,还含有10〜40重量%的二氧化硅粒子。 所述环氧多元醇树脂是通过使任意取代的二元酚的烯化氧加成物的缩水甘油醚化产物与具有至少一个P-OH键的磷酸,其酯或其盐反应得到预缩合物,使 与二元酚预缩合得到高分子量的环氧树脂,并进一步使所述环氧树脂与具有与环氧基反应的氨基的化合物反应。 所述二氧化硅粒子包含平均粒径为1〜10μm,表面积为270m 2 / g以上的一次粒子,粒子表面的硅烷醇基浓度为0.25mM / 100m 2以上。
    • 49. 发明授权
    • Oil supply apparatus for internal combustion engine
    • 内燃机供油装置
    • US08985073B2
    • 2015-03-24
    • US13367737
    • 2012-02-07
    • Hiroshi Kanai
    • Hiroshi Kanai
    • F01L9/02F01L1/344
    • F01L1/3442F01L2001/3443F01L2001/34469F01L2800/01F01L2800/03
    • An oil supply apparatus includes an oil pump that is driven by an internal combustion engine; a supply passage that is connected to a discharge side of the oil pump; a lubricant passage that leads hydraulic fluid from the supply passage to a portion to be lubricated that is provided in the internal combustion engine; a hydraulic passage that leads hydraulic fluid from the supply passage to a variable valve mechanism; a flow regulating valve capable of regulating a flowrate of hydraulic fluid that flows through the lubricant passage; and a control apparatus that controls the flow regulating valve in a closing direction at startup of the internal combustion engine such that a pressure of hydraulic fluid that is led to the variable valve mechanism when the internal combustion engine is being cranked comes to be equal to or greater than a predetermined target pressure.
    • 供油装置包括由内燃机驱动的油泵; 供油通道,其连接到所述油泵的排出侧; 润滑剂通道,其将液压流体从所述供应通道引导到设置在所述内燃机中的待润滑部分; 液压通道,其将液压流体从供给通道引导到可变阀机构; 流量调节阀,其能够调节流过润滑剂通道的液压流体的流量; 以及控制装置,其在启动内燃机时控制流向调节阀的关闭方向,使得当内燃机被起动时被引导到可变气门机构的液压流体的压力等于或等于 大于预定的目标压力。
    • 50. 发明申请
    • VALVE TIMING CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的阀定时控制装置
    • US20140290606A1
    • 2014-10-02
    • US14241978
    • 2011-12-01
    • Hiroshi Kanai
    • Hiroshi Kanai
    • F02D13/02
    • F02D13/02F01L1/3442F01L2001/34423F01L2001/34453F01L2001/34473F01L2250/02F01L2800/01F02D13/0219
    • A valve timing control device includes: a vane rotor having a plurality of vanes; a housing having the vane rotor inside so that an advance chamber is formed on one side of each vane and a retard chamber is formed on the other side; a lock pin inserted in a cylinder provided in the vane and moves to a lock position and to an unlock position; and a feeding passage for feeding oil into the cylinder from the retard chamber adjacent to the vane provided with the cylinder to make the lock pin move to the unlock position, and controls an oil supplying unit to supply oil to each retard chamber, wherein a flow passage cross sectional area of the branch passage connected with the retard chamber linking with the cylinder is larger than a flow passage cross sectional area of the branch passage connected with the other retard chamber.
    • 一种气门正时控制装置,包括:具有多个叶片的叶片转子; 壳体,其内部具有叶片转子,使得在每个叶片的一侧上形成有前进室,另一侧形成有延迟室; 插入到设置在所述叶片中的气缸中的锁定销移动到锁定位置和解锁位置; 以及供给通道,用于从与设置有气缸的叶片相邻的延迟室将油输入到气缸中,以使锁定销移动到解锁位置,并且控制供油单元向每个延迟室供应油,其中流动 与与气缸连接的延迟室连接的分支通道的通道横截面面积大于与另一个延迟室连接的分支通道的流路横截面积。