会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明申请
    • Single crystal component and a method of heat treating a single crystal component
    • 单晶成分和单晶成分的热处理方法
    • US20100043929A1
    • 2010-02-25
    • US12461012
    • 2009-07-29
    • Robert A. HobbsSammy TinCatherine M.F. RaeRobert J. Mitchell
    • Robert A. HobbsSammy TinCatherine M.F. RaeRobert J. Mitchell
    • C22F1/00C21D9/00
    • F01D5/28C22F1/10F01D5/225F01D5/3007F05D2300/607
    • A single crystal component comprising a first region and a second region. The component comprising a nickel base single crystal superalloy having a gamma phase matrix and gamma prime phase precipitates distributed in the gamma phase matrix. The first region of the component comprises a bi-modal distribution of gamma prime phase precipitates in the gamma phase matrix and the second region of the component comprising a uni-modal distribution of gamma prime phase precipitates in the gamma phase matrix. The uni-modal distribution of gamma prime phase precipitates consisting of primary cuboidal gamma prime phase precipitates and the bi-modal distribution of gamma prime phase precipitates consisting of primary cuboidal gamma prime phase precipitates and secondary spherical gamma prime phase precipitates and/or cuboidal gamma prime phase precipitates whereby the first region of the component has enhanced resistance to low cycle fatigue and the second region of the component has enhanced resistance to creep deformation.
    • 一种单晶组分,包括第一区和第二区。 该组分包含具有分布在伽马相基质中的γ相和γ初相的镍基单晶超合金。 该组件的第一区域包括在伽马相基质中的γ相相沉淀物的双模式分布,并且该组分的第二区域包含γ相基质中γ相析出物的单模分布。 由初始立方γ相析出物组成的γ初相相沉淀物的单态分布以及由原始立方体γ相析出物和二次球形γ初相相析出物和/或立方形γ原子组成的γ初相析出物的双峰分布 相沉积物,由此部件的第一区域具有增强的耐低循环疲劳性,并且部件的第二区域具有增强的抗蠕变变形性。
    • 9. 发明授权
    • Method of heat treating a superalloy component and an alloy component
    • 高温合金部件和合金部件的热处理方法
    • US08083872B2
    • 2011-12-27
    • US12155826
    • 2008-06-10
    • Robert J MitchellDavid U FurrerJoseph A LemskyMark C Hardy
    • Robert J MitchellDavid U FurrerJoseph A LemskyMark C Hardy
    • C21D9/00C22F1/10
    • C21D1/70C21D1/26C21D9/0068C21D2221/00
    • A method of heat treating a superalloy component includes solution heat treating the component at a temperature below the gamma prime solvus temperature to produce a fine grain structure. Insulation is placed over a first area to form an insulated assembly that is placed in a furnace at a temperature below the solvus temperature and maintained at that temperature for a predetermined time to achieve a uniform temperature. The temperature is increased at a predetermined rate to a temperature above the solvus temperature to maintain a fine grain structure in a first region, produce a coarse grain structure in a second region and produce a transitional structure in a third region between the first and second regions. The insulated assembly is removed from the furnace when the second region has been above the solvus temperature for a predetermined time and/or the first region has reached a predetermined temperature.
    • 热处理超合金部件的方法包括在低于γ'固溶温度的温度下对组分进行固溶热处理以产生细晶粒结构。 将绝缘材料放置在第一区域上以形成绝缘组件,其被放置在低于固溶温度的温度下的炉中,并在该温度下保持预定时间以达到均匀的温度。 将温度以预定的速率增加到高于溶剂温度的温度以保持第一区域中的细晶粒结构,在第二区域中产生粗晶粒结构,并在第一和第二区域之间的第三区域中产生过渡结构 。 当第二区域已经超过固溶温度达预定时间和/或第一区域已经达到预定温度时,将绝热组件从炉中移出。