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    • 7. 发明专利
    • Method of forming molded article of amorphous alloy with high elastic limit
    • 形成具有高弹性极限的非晶态合金的成型方法
    • JP2011080152A
    • 2011-04-21
    • JP2010232372
    • 2010-10-15
    • Liquidmetal Technologies Incリキッドメタル テクノロジーズ,インコーポレイティド
    • PEKER ATAKAN
    • C22C1/00B22D11/00C22C14/00C22C16/00C22C45/00C22C45/10C22F1/18
    • C22F1/186C22C45/00C22C45/10C22F1/183
    • PROBLEM TO BE SOLVED: To provide a method for forming a molded article of bulk-solidifying amorphous alloys, which keeps the high elastic limit after the completion of molding process. SOLUTION: The method for forming the molded article having the high elastic limit includes: a step of preparing a feedstock of bulk-solidifying amorphous alloy having a glass transition point (Tg), a supercooling temperature (Tsc) and a crystallization temperature (Tx) wherein a difference between the Tsc and Tx defines a supercooling temperature range (ΔTsc); a step of heating the feedstock to a molding temperature; and a step of molding the feedstock for a time shorter than the prescribed maximum allowable molding time and at a temperature lower than the maximum molding temperature prescribed in the vicinity of the glass transition temperature of the feedstock, and forming the molded part so as to hold the elastic limit of at least 1.2%, wherein the maximum molding temperature is proportional to the size of ΔTsc, and also, the prescribed allowable molding time is proportional to both of the molding temperature and the ΔTSc. COPYRIGHT: (C)2011,JPO&INPIT
    • 待解决的问题:提供一种在成型工艺完成后保持高弹性极限的非晶态合金的固化成型体的方法。 解决方案:用于形成具有高弹性极限的模塑制品的方法包括:制备具有玻璃化转变点(Tg),过冷却温度(Tsc)和结晶温度(Tsc)的非晶合金本体固化原料的步骤 (Tx),其中Tsc和Tx之间的差定义了过冷却温度范围(ΔTsc); 将原料加热至成型温度的步骤; 以及在比规定的最大允许成型时间短的时间和低于原料玻璃化转变温度规定的最大成型温度的温度下成型原料的步骤,并且形成模制部件以便保持 弹性极限为至少1.2%,其中最大成型温度与ΔTsc的尺寸成比例,并且规定的允许成型时间与成型温度和ΔTSc成正比。 版权所有(C)2011,JPO&INPIT