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    • 5. 发明专利
    • Multimedia hardening system and method
    • 多媒体硬化系统及方法
    • JP2014111826A
    • 2014-06-19
    • JP2013201063
    • 2013-09-27
    • Ipsen Incイプセン,インコーポレイテッド
    • AYMERIC GOLDSTEINASGROBLER WERNER HENDRIK
    • C21D1/58C21D1/74
    • C21D1/18C21D1/58C21D1/62C21D1/63C21D1/64C21D1/70C21D11/005
    • PROBLEM TO BE SOLVED: To provide a method for hardening a metal workload starting at a high heat treatment temperature.SOLUTION: The provided method includes a step of making a vegetable oil hardening agent flow atop a metal workload and then cooling, within a predetermined period, the metal workload at a sufficient cooling rate for virtually entirely transforming the metal into a desired secondary phase including martensite, bainite, pearlite, or their combination. The apparatus for implementing the method includes a hardening chamber 12, and the hardening chamber 12 includes a base, an upper housing, a door, and an actuator for opening/closing the hardening chamber. This apparatus additionally includes a container for retaining a large volume of the vegetable oil hardening agent, a means for guiding the vegetable oil hardening agent from the container into the hardening chamber 12, and a means configured within the hardening chamber 12 for making the vegetable oil hardening agent flow atop a metal workload charged into the hardening chamber.
    • 要解决的问题:提供一种从高热处理温度开始硬化金属工作的方法。解决方案:提供的方法包括使植物油硬化剂在金属工作量之上流动,然后在预定时间内冷却的步骤 以足够的冷却速度使金属工作量几乎完全将金属转化成包括马氏体,贝氏体,珠光体或其组合的所需的第二相。 用于实施该方法的装置包括硬化室12,并且硬化室12包括基座,上壳体,门和用于打开/关闭硬化室的致动器。 该装置还包括用于保持大量植物油硬化剂的容器,用于将植物油硬化剂从容器引导到硬化室12中的装置,以及构造在硬化室12内的装置,用于制造植物油 硬化剂流入装在硬化室内的金属工作台上。
    • 6. 发明专利
    • Method of heat treating superalloy component and alloy component
    • 热处理超合金组分和合金组分的方法
    • JP2014062330A
    • 2014-04-10
    • JP2013257984
    • 2013-12-13
    • Rolls Royce Plcロールス・ロイス・ピーエルシーRolls−Royce Public Limited Company
    • ROBERT JOHN MITCHELLDAVID ULRICH FURRERJOSEPH ANDREW LEMSKYMARK CHRISTOPHER HARDY
    • C22F1/10C22C19/05C22F1/00F01D5/06F01D5/28F01D25/00F02C7/00F04D29/02
    • C21D1/70C21D1/26C21D9/0068C21D2221/00
    • PROBLEM TO BE SOLVED: To provide a method of heat treating a superalloy component.SOLUTION: The method comprises the step of solution heat treating the component at a temperature below the γ' solvus temperature to produce a fine grain structure in the component. Insulation is placed over a first area of the component to form an insulated assembly. The insulated assembly is placed in a furnace at a temperature below the γ' solvus temperature and maintained at that temperature for a predetermined time to achieve a uniform temperature in the component. The temperature is increased at a predetermined rate to a temperature above the γ' solvus temperature to maintain a fine grain structure in a first region, to produce a coarse grain structure in a second region and to produce a transitional structure in a third region between the first and second regions of the component. The insulated assembly is removed from the furnace when the second region of the component has been above the γ' solvus temperature for a predetermined time and/or the first region of the component has reached a predetermined temperature.
    • 要解决的问题:提供一种热处理超合金部件的方法。解决方案:该方法包括在低于γ'solvus温度的温度下对组分进行固溶热处理以在组分中产生细晶粒结构的步骤。 绝缘被放置在部件的第一区域上以形成绝缘组件。 将绝缘组件放置在低于γ'solvus温度的温度下的炉中,并在该温度下保持预定时间,以实现组分中均匀的温度。 温度以预定的速率增加到高于γ'solvus温度的温度,以保持第一区域中的细晶粒结构,以在第二区域中产生粗晶粒结构,并在第三区域中产生过渡结构 组件的第一和第二区域。 当组件的第二区域已经高于γ'solvus温度预定时间和/或部件的第一区域已经达到预定温度时,将绝热组件从炉中移除。