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    • 1. 发明专利
    • Electric equipment temperature rise monitoring function
    • 电气设备温度上升监测功能
    • JP2011175971A
    • 2011-09-08
    • JP2011035355
    • 2011-02-22
    • Toshihiro Uehara敏裕 上原
    • UEHARA TOSHIHIRO
    • H01R13/46H01R13/641
    • PROBLEM TO BE SOLVED: To carry out appropriate treatment at an early stage by being able to easily know abnormality of a receptacle in order to solve such a problem that it is difficult to request a user to maintain the initial performance since it is hard to check the defective place in a conventional receptacle and a receptacle plate in either of the cases of heat generation due to electrical or mechanical contact failure, overload, or secular deterioration, and of the heat generation or the like due to tracking phenomenon caused by dirt and dust accumulated in a receptacle portion.
      SOLUTION: For the conventional receptacle and the conventional receptacle plate 1a, a material having performance in which it is changed to a prescribed color due to the heat generation in the receptacle portion is used as a forming material of the receptacle, and a color change material used for a seal 1c, a label 1b, and coating is stuck to, mounted on, and coated on the surrounding of the receptacle, then appropriate treatment is carried out rapidly since the user can know the heat generation of the receptacle easily, thereby being able to prevent the occurrence of a serious fire accident or the like to affect even human life.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了解决难以请求用户维持初始性能的问题,为了能够容易地知道插座的异常,能够在早期阶段进行适当的处​​理,因为它是 在由于电气或机械接触故障,过载或长期恶化而导致的发热的情况下的任何一种情况下,难以检查常规插座和插座板中的有缺陷的位置,以及由于由于 积聚在容器部分中的污物和灰尘。 解决方案:对于传统的接收器和传统的插座板1a,将具有由于插座部分中的发热而变为规定颜色的性能的材料用作插座的形成材料,并且 用于密封件1c,标签1b和涂层的变色材料粘附到,安装在和涂覆在容器的周围上,然后由于用户可以容易地知道容器的发热而迅速进行适当的处​​理 从而能够防止发生严重的火灾事故等影响人的生命。 版权所有(C)2011,JPO&INPIT
    • 5. 发明申请
    • PROCESS FOR MANUFACTURING NI-BASE ALLOY AND NI-BASE ALLOY
    • 制造NI-BASE合金和NI-BASE合金的工艺
    • US20110171058A1
    • 2011-07-14
    • US13063414
    • 2009-09-25
    • Chuya AokiToshihiro UeharaTakehiro Ohno
    • Chuya AokiToshihiro UeharaTakehiro Ohno
    • C22C19/05C21D11/00C22F1/10
    • C22B9/04C22B9/18C22B9/20C22B23/06C22C19/055C22F1/02C22F1/10
    • Provided is an Ni-base alloy excellent in strength, ductility and other properties through the resolution of micro-segregation. Also provided is a process for manufacturing an Ni-base alloy containing by mass C: 0.15% or less, Si: 1% or less, Mn: 1% or less, Cr: 10 to 24%, Mo+(½)W (where Mo may be contained either alone or as an essential component): 5 to 17%, Al: 0.5 to 1.8%, Ti: 1 to 2.5%, Mg: 0.02% or less, and either B: 0.02% or less and/or Zr: 0.2% or less at an Al/(Al+0.56Ti) ratio of 0.45 to 0.70 with the balance consisting of Ni and impurities, which comprises subjecting, at least one time, an Ni-base alloy material which is prepared by vacuum melting and has the above composition to homogenization heat treatment at 1160 to 1220° C. for 1 to 100 hours. The Mo segregation ratio of the alloy is controlled to 1 to 1.17 by the homogenization heat treatment.
    • 提供了通过分离微分离而具有优异的强度,延展性等特性的Ni基合金。 还提供了以质量计C:0.15%以下,Si:1%以下,Mn:1%以下,Cr:10〜24%,Mo +(1/2)W(其中, Mo可以单独或作为必要成分含有):5〜17%,Al:0.5〜1.8%,Ti:1〜2.5%,Mg:0.02%以下,B:0.02%以下和/或 Zr:在Al /(Al + 0.56Ti)比为0.45〜0.70的情况下为0.2%以下,余量由Ni和杂质组成,其中包括至少一次将真空制备的Ni基合金材料 熔化并具有上述组成以在1160至1220℃进行均化热处理1至100小时。 通过均质化热处理将合金的Mo偏析比控制在1〜1.17。
    • 6. 发明申请
    • MARAGING STEEL AND MARAGING STEEL FOR METALLIC BELT
    • 用于金属带的马氏体和马氏体钢
    • US20100189590A1
    • 2010-07-29
    • US12668583
    • 2007-07-11
    • Katsuhiko OhishiToshihiro Uehara
    • Katsuhiko OhishiToshihiro Uehara
    • C22C38/52C22C38/44C22C38/54
    • C22C38/44C22C38/001C22C38/002C22C38/004C22C38/06C22C38/50C22C38/52C22C38/54
    • A maraging steel for metallic belts which has a composition capable of being reduced in the content of TiN serving as a starting point for fatigue fracture in a high-cycle-rate region. The composition facilitates nitriding to heighten the surface hardness. The steel has a nitrided surface layer having increased compressive residual stress and hence improved flexural fatigue strength. In the steel, former austenite crystal grains have been reduced in size in order to secure higher strength and higher ductility. The maraging steel consists of, by mass %, up to 0.01% C, up to 0.1% Si, up to 0.1% Mn, up to 0.01% P, up to 0.005% S, 17.0-22.0% Ni, 0.1-4.0% Cr, 3.0-7.0% Mo, from more than 7.0 to 20.0% Co, up to 0.1% Ti, up to 2.5% Al, up to 0.03% N, up to 0.005% 0, up to 0.01% B (exclusive zero), and the balance of Fe and unavoidable impurities, wherein Co/3+Mo+4Al is 8.0-15.0%.
    • 一种用于金属带的马氏体时效钢,具有能够在高循环率区域中作为疲劳断裂起点的TiN含量降低的组成。 该组合物有助于氮化以提高表面硬度。 钢具有具有增加的压缩残余应力并因此改善的弯曲疲劳强度的氮化表面层。 在钢中,为了确保更高的强度和更高的延展性,原奥氏体晶粒尺寸已经减小。 马氏体时效钢以质量%计,高达0.01%的C,高达0.1%的Si,至多0.1%的Mn,至多0.01%的P,至多0.005%的S,17.0-22.0%的Ni,0.1-4.0% Cr,3.0-7.0%Mo,7.0〜20.0%Co,0.1%Ti以下,Al:2.5%以下,N:0.03%以下,B:0以下,不超过0.01% ,余量为Fe和不可避免的杂质,其中Co / 3 + Mo + 4Al为8.0〜15.0%。
    • 7. 发明授权
    • Heat resistant alloy for use as material of engine valve
    • 用作发动机阀门材料的耐热合金
    • US07481970B2
    • 2009-01-27
    • US11134329
    • 2005-05-23
    • Akihiro TojiToshihiro UeharaKatsuhiko TominagaShoichi NakayaKatsuaki Sato
    • Akihiro TojiToshihiro UeharaKatsuhiko TominagaShoichi NakayaKatsuaki Sato
    • C22C19/051
    • C22C19/051
    • A low cost, economical and less resource-consuming heat resistant alloy for use as material of engine valve is disclosed, while the alloy has excellent mechanical properties at high temperature and excellent toughness after heated for a long time that conventional heat resistant alloys have not had. The alloy consists essentially of, in mass percent, C of 0.01 to 0.15%, Si of 0.01 to 0.8%, Mn of 0.01 to 0.8, Cr of 14 to 17%, Mo of more than 3.0% but equal to or less than 5.0%, Al of 1.6 to 2.5%, Ti of 1.5 to 3.0%, Nb or Nb+Ta of 0.5 to 2.0%, Ni of 50 to 60%, B of 0.001 to 0.015%, at least one of Mg of 0.001 to 0.015% and Ca of 0.001 to 0.015%, and the balance being Fe, wherein value A defined by 0.293[Ni]−0.513[Cr]−1.814[Mo] is 2.0 to 5.8, value B defined by [Al]/([Al]+[Ti]+[Nb]+[Ta]) is 0.45 to 0.65, and value C defined by [Al]+[Ti]+[Nb]+[Ta] is 6.2 to 7.6, wherein brackets mean atomic % of each element in the alloy.
    • 公开了低成本,经济且耗资较少的用作发动机气门材料的耐热合金,同时合金在高温下具有优异的机械性能,并且在常规耐热合金没有加热之后长时间加热后具有优异的韧性 。 该合金基本上以质量%计含有0.01至0.15%的C,0.01至0.8%的Si,0.01至0.8的Mn,14至17%的Cr,大于3.0%但等于或小于5.0的Mo %,Al:1.6〜2.5%,Ti:1.5〜3.0%,Nb:Nb + Ta:0.5〜2.0%,Ni:50〜60%,B:0.001〜0.015%,Mg:0.001〜 %和Ca为0.001〜0.015%,余量为Fe,其中由0.293 [Ni] -0.513 [Cr] -1.814 [Mo]定义的值A为2.0〜5.8,由[Al] /([Al ] [Ti] + [Nb] + [Ta])为0.45〜0.65,由[Al] + [Ti] + [Nb] + [Ta]定义的值C为6.2〜7.6, 合金中的每个元素。
    • 9. 发明申请
    • Heat resistant alloy for use as material of engine valve
    • 用作发动机阀门材料的耐热合金
    • US20050265887A1
    • 2005-12-01
    • US11134329
    • 2005-05-23
    • Akihiro TojiToshihiro UeharaKatsuhiko TominagaShoichi NakayaKatsuaki Sato
    • Akihiro TojiToshihiro UeharaKatsuhiko TominagaShoichi NakayaKatsuaki Sato
    • C22C19/05
    • C22C19/051
    • A low cost, economical and less resource-consuming heat resistant alloy for use as material of engine valve is disclosed, while the alloy has excellent mechanical properties at high temperature and excellent toughness after heated for a long time that conventional heat resistant alloys have not had. The alloy consists essentially of, in mass percent, C of 0.01 to 0.15%, Si of 0.01 to 0.8%, Mn of 0.01 to 0.8, Cr of 14 to 17%, Mo of more than 3.0% but equal to or less than 5.0%, Al of 1.6 to 2.5%, Ti of 1.5 to 3.0%, Nb or Nb+Ta of 0.5 to 2.0%, Ni of 50 to 60%, B of 0.001 to 0.015%, at least one of Mg of 0.001 to 0.015% and Ca of 0.001 to 0.015%, and the balance being Fe, wherein value A defined by 0.293[Ni]−0.513[Cr]−1.814[Mo] is 2.0 to 5.8, value B defined by [Al]/([Al]+[Ti]+[Nb]+[Ta]) is 0.45 to 0.65, and value C defined by [Al]+[Ti]+[Nb]+[Ta] is 6.2 to 7.6, wherein brackets mean atomic % of each element in the alloy.
    • 公开了低成本,经济且耗资较少的用作发动机气门材料的耐热合金,同时合金在高温下具有优异的机械性能,并且在常规耐热合金没有加热之后长时间加热后具有优异的韧性 。 该合金基本上以质量%计含有0.01至0.15%的C,0.01至0.8%的Si,0.01至0.8的Mn,14至17%的Cr,大于3.0%但等于或小于5.0的Mo %,Al:1.6〜2.5%,Ti:1.5〜3.0%,Nb:Nb + Ta:0.5〜2.0%,Ni:50〜60%,B:0.001〜0.015%,Mg:0.001〜 %和Ca为0.001〜0.015%,余量为Fe,其中由0.293 [Ni] -0.513 [Cr] -1.814 [Mo]定义的值A为2.0〜5.8,由[Al] /([Al ] [Ti] + [Nb] + [Ta])为0.45〜0.65,由[Al] + [Ti] + [Nb] + [Ta]定义的值C为6.2〜7.6, 合金中的每个元素。
    • 10. 发明授权
    • Ferritic Fe-Cr-Ni-Al alloy having exellent oxidation resistance and high strength and a plate made of the alloy
    • 具有耐氧化性和高强度的铁素体Fe-Cr-Ni-Al合金和由合金制成的板
    • US06692585B2
    • 2004-02-17
    • US10000079
    • 2001-12-04
    • Toshihiro UeharaYoshihiro MinagiKenichi Inoue
    • Toshihiro UeharaYoshihiro MinagiKenichi Inoue
    • C22C3850
    • C22C38/50C22C38/004C22C38/06
    • Disclosed is a ferritic Fe—Cr—Ni—Al alloy having excellent oxidation resistance and high strength, which consists essentially of, by mass, 0.003 to 0.08% C, 0.03 to 2.0% Si, not more than 2.0% Mn, from more than 1.0% to not more than 8.0% Ni, from not less than 10.0% to less than 19.0% Cr, 1.5 to 8.0% Al, 0.05 to 1.0% Zr, and the balance of Fe and incidental impurities, wherein an F value is not less than 12% and an S value is not more than 25%, where the F value is defined by the following equation (1) and the S value is defined by the following equation (2): (1) F=−34.3C+0.48Si−0.012Mn−1.4Ni+Cr+2.48Al, and (2) S=Ni+Cr+Al. The Fe—Cr—Ni—Al alloy, after an annealing heat treatment at 600 to 1050° C., has 0.2% yield strength of 550 to 1,000 MPa by a tensile test at room temperature.
    • 公开了一种具有优异的抗氧化性和高强度的铁素体Fe-Cr-Ni-Al合金,其基本上由以下组成:质量为0.003至0.08%的C,0.03至2.0%的Si,不超过2.0%的Mn, 1.0%以上且8.0%以下的Ni,不低于10.0%至小于19.0%的Cr,1.5至8.0%的Al,0.05至1.0%的Zr,余量为Fe和杂质,其中F值不为 小于12%,S值不大于25%,其中F值由下式(1)定义,S值由下式(2)定义:(1)F = -34.3C + 0.48Si-0.012Mn-1.4Ni + Cr + 2.48Al,(2)S = Ni + Cr + Al。 Fe-Cr-Ni-Al合金在600〜1050℃的退火热处理后,在室温下进行拉伸试验,屈服强度为0.2〜0.2MPa。