首页> 外国专利> Process for crushing or pulverizing a shape memory alloy or a superelastic alloy of nickel and titanium comprises converting the starting alloy into a brittle hydride, crushing or pulverizing, optionally sieving, and heat treating

Process for crushing or pulverizing a shape memory alloy or a superelastic alloy of nickel and titanium comprises converting the starting alloy into a brittle hydride, crushing or pulverizing, optionally sieving, and heat treating

机译:破碎或粉碎形状记忆合金或镍和钛的超弹性合金的方法包括将起始合金转变为脆性氢化物,粉碎或粉碎,可选地过筛和热处理

摘要

Crushing or pulverizing a shape memory alloy or a superelastic alloy of nickel and titanium, optionally with additional alloying partners comprises converting the starting alloy electrochemically as the cathode into a brittle hydride in an electrolytic process releasing hydrogen; mechanically crushing or pulverizing the hydride; optionally sieving the hydride during and/or after crushing or pulverizing; driving or pumping off the hydrogen in a reaction vessel by heating the crushed or pulverized hydride; and heat treating the crushed or pulverized hydride. The temperature in the reaction vessel and in the heat treatment step can reach the maximum temperature of the solid starting alloy (approximately 1240 [deg] C). Preferred Features: The starting alloy is located during the electrolytic process in a network or lattice made from a gold alloy which assures an electrical connection to the alloy even if the starting alloy consists of several pieces or breaks into several pieces during the electrolytic process.
机译:将形状记忆合金或镍和钛的超弹性合金压碎或粉碎,必要时与其他合金配合物,包括在电解过程中将作为阴极的电化学起始原料电化学转化为脆性氢化物,从而释放出氢气;机械粉碎或粉碎氢化物;任选在粉碎或粉碎过程中和/或之后筛分氢化物;通过加热破碎或粉碎的氢化物来驱动或抽出反应容器中的氢气;并对粉碎的或粉碎的氢化物进行热处理。反应容器中和热处理步骤中的温度可以达到固体起始合金的最高温度(约1240℃)。优选特征:起始合金在电解过程中位于由金合金制成的网络或晶格中,即使在电解过程中起始合金由几部分组成或分成几部分,也可确保与合金的电连接。

著录项

  • 公开/公告号DE10002823A1

    专利类型

  • 公开/公告日2001-08-23

    原文格式PDF

  • 申请/专利权人 WIPF HELMUT;

    申请/专利号DE2000102823

  • 发明设计人 WIPF HELMUT;

    申请日2000-01-24

  • 分类号B22F9/16;

  • 国家 DE

  • 入库时间 2022-08-22 01:10:01

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