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    • 2. 发明授权
    • Iron-based sintered powder metal body, manufacturing method thereof and manufacturing method of iron-based sintered component with high strength and high density
    • 铁基烧结粉末金属体及其制造方法以及高强度,高密度的铁基烧结体的制造方法
    • US06514307B2
    • 2003-02-04
    • US09934428
    • 2001-08-21
    • Naomichi NakamuraSatoshi UenosonoShigeru UnamiMasashi FujinagaTakashi YoshimuraMitsumasa IijimaShin KoizumiHiroyuki AnmaYasuo Hatai
    • Naomichi NakamuraSatoshi UenosonoShigeru UnamiMasashi FujinagaTakashi YoshimuraMitsumasa IijimaShin KoizumiHiroyuki AnmaYasuo Hatai
    • C22C3302
    • C22C33/0264B22F3/1007B22F2998/10B22F2999/00C22C33/02B22F3/02B22F3/10C22C33/0207B22F1/0096
    • An sintered iron-based powder metal body with outstandingly lower re-compacting load and having a high density and a method of manufacturing an iron-based sintered component with fewer pores of a sharp shape and having high strength and high density, the method comprising mixing, an iron-based metal powder containing at most about 0.05% of carbon, at most about 0.3% of oxygen, at most about 0.010% of nitrogen, with at least about 0.03% and at most about 0.5% of graphite powder and a lubricant, preliminarily compacting the mixture into a preform, the density of which is about 7.3 Mg/m3 or more, and preliminarily sintering the preform in a non-oxidizing atmosphere in which a partial pressure of nitrogen is about 30 kPa or less at a temperature of about 1000° C. or higher and about 1300° C. or lower, thereby forming a sintered iron-based powder metal body with outstandingly lower re-compacting load and having high deformability, the density of which is about 7.3 Mg/m3 or more and which contains at least about 0.10% and at most about 0.50 of carbon, at most about 0.010% of oxygen and at most about 0.010% of nitrogen, and which comprises at most about 0.02% of free carbon, and, further applying re-compaction and re-sintering and/or heat treatment thereby forming a sintered component, as well as the method alternatively comprising applying preliminary sintering in an atmosphere with no restriction of the nitrogen partial pressure and then annealing instead of the sintering step, thereby obtaining a sintered iron-based powder metal body with the nitrogen content of at most about 0.010%.
    • 一种烧结铁基粉末金属体,具有显着降低的再压实载荷并具有高密度,并且制造具有较少的尖锐形状的孔并具有高强度和高密度的铁基烧结组分的方法,该方法包括混合 ,含有最多约0.05%的碳,至多约0.3%的氧,至多约0.010%的氮,至少约0.03%和至多约0.5%的石墨粉末和润滑剂的铁基金属粉末, 将混合物预先压实成预制件,其密度为约7.3Mg / m 3以上,并且在约10分钟的温度下在氮气分压为约30kPa以下的非氧化性气氛中预先烧结预成型体 1000℃以上约1300℃以下,从而形成烧结的铁基粉末金属体,具有显着降低的再压缩载荷,并具有高变形能力,其密度为约7.3Mg / m 3以上, 其中 至少约0.10%,至多约0.50碳,至多约0.010%的氧和至多约0.010%的氮,并且其包含至多约0.02%的游离碳,并且进一步应用再压实和 再烧结和/或热处理,从而形成烧结组分,以及所述方法或者包括在不限制氮分压的气氛中进行初步烧结,然后退火而不是烧结步骤,由此获得烧结的铁 - 含氮量最多为0.010%的粉末金属体。
    • 5. 发明授权
    • Method of producing valve lifter
    • 生产气门挺杆的方法
    • US5918367A
    • 1999-07-06
    • US839339
    • 1997-04-18
    • Tamotsu TodoYasuo FukudaNoriomi HosakaSeiji TsurutaKenji SuzukiShin Koizumi
    • Tamotsu TodoYasuo FukudaNoriomi HosakaSeiji TsurutaKenji SuzukiShin Koizumi
    • B23P15/00F01L1/14F01L1/20
    • F01L1/205B23P15/00F01L1/143F01L2101/00F01L2103/00F02B2275/18Y10T29/49304Y10T29/4935
    • A method of producing a valve lifter to be used in a valve operating mechanism of an automotive vehicle. The valve lifter includes a skirt section, a crown section formed one end of the skirt section so that a cam of a camshaft is slidably contactable with the crown section, and a contacting section formed at an inside surface of the crown section and contactable with a valve stem of an engine valve. The production method comprises the following steps in the sequence set forth: (a) cold-forging a base material to form a valve lifter-shaped base material; (b) cold-pressing the base material to shape the valve lifter-shaped base material; (c) grinding an outer surface of the valve lifter-shaped base material to trim an outer shape of the valve-lifter-shaped base material; (d) totally machining the outer surface and an inner surface of the valve-shaped base material to adjust dimensions of parts of the valve lifter-shaped base material; (e) heat-treating only a part of the valve lifter-shaped base material, corresponding to the contacting section, to increase a hardness of the contacting section; and (f) grinding the contacting section to finish the contacting section.
    • 一种制造用于机动车辆的气门操作机构的气门挺杆的方法。 该气门挺杆包括一个裙部,一顶部部分形成在裙部的一端,使得一凸轮轴的凸轮与该冠部可滑动接触;以及一接触部,该接触部形成于该冠部的内表面, 发动机气门的阀杆。 制造方法按照以下顺序包括以下步骤:(a)冷锻基材以形成气门挺杆状基材; (b)对基体材料进行冷压,以形成气门挺杆状基材; (c)研磨阀升降器基材的外表面,以修整升降器状基材的外形; (d)对所述阀状基材的外表面和内表面进行全面加工,以调节所述阀升降器基材的部件的尺寸; (e)仅对与所述接触部分相对应的所述阀提升器状基体的一部分进行热处理,以增加所述接触部的硬度; 和(f)研磨接触部分以完成接触部分。
    • 8. 发明授权
    • Adhesive sheet
    • 粘合片
    • US06485826B1
    • 2002-11-26
    • US09723085
    • 2000-11-27
    • Shunpei WatanabeTakeshi IkedaShin Koizumi
    • Shunpei WatanabeTakeshi IkedaShin Koizumi
    • B32B2700
    • B32B7/12B32B15/08B32B27/00B32B27/08B32B27/10B32B27/36B32B2323/10B32B2367/00B32B2369/00B32B2375/00B32B2377/00C09J7/22C09J7/38C09J7/385C09J2433/00Y10T428/28Y10T428/2891
    • An improved adhesive sheet can exhibit an excellent anti-blister characteristic without susceptible to the property of the base material. The adhesive sheet includes a base material that is formed from a base material film and a thin film laminated onto the base material film, an adhesive layer and a release sheet. The adhesive layer contains an adhesive component and a curing component as its main composition. The curing component is of the type that is to be cured by irradiation with radiation. As for such radiation-curing type component, materials containing acrylic-based monomer or oligomer can be used. The adhesive layer has a storage modulus (dynamic modulus) in which a ratio of storage modulus G2′/G1′ of the adhesive layer lies within the range of 1.2 to 50, wherein G1′ is a storage modulus of the adhesive layer before curing at a temperature of 25° C. and at a frequency of 1 Hz, and G2′ is a storage modulus of the adhesive layer after curing at a temperature of 25° C. and at a frequency of 1 Hz.
    • 改进的粘合片可以表现出优异的抗起泡特性,而不易受到基材的性能的影响。 粘合片包括由基材膜和层压到基材膜上的薄膜,粘合剂层和剥离片形成的基材。 粘合剂层包含粘合剂组分和固化组分作为其主要组成。 固化组分是通过辐射照射固化的类型。 对于这种辐射固化型组分,可以使用含有丙烯酸类单体或低聚物的材料。 粘合剂层具有其中粘合剂层的储能模量G2'/ G1'的比率在1.2至50的范围内的储能模量(动态模量),其中G1'是固化前的粘合剂层的储能模量 25℃的温度和1Hz的频率,G2'是在25℃的温度和1Hz的频率下固化后的粘合剂层的储能模量。