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    • 37. 发明申请
    • In-cylinder pressure detection device
    • 缸内压力检测装置
    • US20050229685A1
    • 2005-10-20
    • US11075754
    • 2005-03-10
    • Hideki SakamotoSatoshi YamaguchiYuuichi ShimasakiMakoto KobayashiMasaki UenoMamoru Hasegawa
    • Hideki SakamotoSatoshi YamaguchiYuuichi ShimasakiMakoto KobayashiMasaki UenoMamoru Hasegawa
    • G01L23/10F02D35/00F02D41/14F02D45/00G01M15/00
    • F02P19/028F02D35/023F23Q7/001F23Q2007/002G01L23/22
    • An in-cylinder pressure detection device which is capable of ensuring stable detection accuracy irrespective of tightening torque applied in mounting the in-cylinder pressure detection device and thermal expansion of component parts of the same. A housing 21 has a top wall 22a and a bottom wall 22b opposed to each other, and is screwed into the body of an internal combustion engine. An inner member 24 extends through the housing 21 such that one end thereof projects into a cylinder C, and has a flange part 24b accommodated in the housing 21. A first piezoelectric element 11c is accommodated in the housing 21 and sandwiched between the bottom wall 22b and the flange part 24b in a preloaded state, for outputting a first detection signal q1 according to the in-cylinder pressure transmitted via the inner member 24. A second piezoelectric element 12c is accommodated in the housing 21 and sandwiched between the top wall 22a and the flange part 24b in a preloaded state, for outputting a second detection signal q2 according to the in-cylinder pressure transmitted via the inner member 24.
    • 无论在安装缸内压力检测装置时施加的紧固扭矩和其组成部件的热膨胀,都能够确保稳定的检测精度的缸内压力检测装置。 壳体21具有彼此相对的顶壁22a和底壁22b,并被拧入内燃机的主体中。 内部构件24延伸穿过壳体21,使得其一端突出到气缸C中,并且具有容纳在壳体21中的凸缘部分24b。 第一压电元件11c容纳在壳体21中并且在预加载状态下夹在底壁22b和凸缘部分24b之间,用于根据经由内部传递的缸内压力输出第一检测信号q 1 会员24。 第二压电元件12c容纳在壳体21中,并且以预加载的状态夹在顶壁22a和凸缘部分24b之间,用于根据通过内部的内部传递的缸内压力输出第二检测信号q 2 会员24。
    • 39. 发明申请
    • Centrifugal clutch, and method of making same
    • 离心式离合器及其制造方法
    • US20050178637A1
    • 2005-08-18
    • US11050468
    • 2005-02-03
    • Ryuji TsuchiyaShin NabeyaSatoshi Yamaguchi
    • Ryuji TsuchiyaShin NabeyaSatoshi Yamaguchi
    • F16D43/18F16F15/10F16F15/14F16D23/10
    • F16D43/18
    • A centrifugal clutch includes vibration isolation ring. The vibration isolation ring reduces or prevents the occurrence of squeaking noises due to the vibration of the clutch outer cover. The vibration isolation ring can be made with a large wall thickness, thereby reducing or preventing deformation of an open-end of a drum wall in the clutch outer cover. The vibration isolation ring has a cylindrical shape and is disposed so as to surround the drum wall at a position substantially corresponding to the location at which a portion of a friction material makes a sliding contact with a drum wall. An end portion of the vibration isolation ring is welded to an outer periphery of the drum wall on a side thereof which is distant from a bottom wall of the clutch outer cover.
    • 离心式离合器包括隔振环。 振动隔离环减少或防止由于离合器外盖的振动引起的吱吱响声的发生。 振动隔离环可以制成具有较大的壁厚,从而减小或防止离合器外盖中鼓壁开口端的变形。 振动隔离环具有圆柱形形状,并且设置成围绕鼓壁的位置大致对应于摩擦材料的一部分与鼓壁滑动接触的位置。 隔振环的端部焊接在鼓壁的外周侧,该侧壁远离离合器外盖的底壁。
    • 40. 发明申请
    • Solder bonding method and solder bonding device
    • 焊接方法和焊接接合装置
    • US20050067395A1
    • 2005-03-31
    • US10947294
    • 2004-09-23
    • Osamu ShindoToru MizunoSatoshi Yamaguchi
    • Osamu ShindoToru MizunoSatoshi Yamaguchi
    • B23K1/005H05K3/34
    • H05K3/3494B23K1/0056H01L2224/11003H01L2224/742H05K3/3442H05K2203/041H05K2203/107
    • A solder bonding method and a solder bonding device are provided, in which solder is melted, and heating of electrode portions is performed by irradiating laser light to an inner side of a region where electrodes portions are provided, making the temperature difference between the electrode portions and the melted solder smaller to improve the wettability of the solder and increase bonding reliability. The solder bonding method and the solder bonding device perform bonding of the electrode portions that are formed on an object to be bonded by melting the solder. After supplying the solder onto the electrode portions before melting, a laser is irradiated to the solder and to the electrode portions in the periphery of the solder. The solder melts, and the electrode portions are heated. The wettability of the solder with respect to the electrode portions thus improves, and the reliability of an electrical connection between the electrode portions can be increased.
    • 提供焊料接合方法和焊接接合装置,其中焊料熔化,并且通过向设置有电极部分的区域的内侧照射激光来进行电极部分的加热,使得电极部分之间的温度差 并且熔化的焊料更小以改善焊料的润湿性并增加焊接可靠性。 焊接接合方法和焊接接合装置通过熔化焊料进行形成在待接合物体上的电极部分的接合。 在熔融之前将焊料供应到电极部分之后,激光照射到焊料和焊料周围的电极部分。 焊料熔化,电极部分被加热。 因此焊料相对于电极部的润湿性提高,可以提高电极部之间的电连接的可靠性。