Brittleness in Copper and Copper Alloys With Particular Reference to Hydrogen Embrittlement

A. Matting, R. Ziegler
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引用次数: 1

Abstract

Hydrogen embrittlement is the brittleness affecting copper and copper alloys containing oxygen which develops during heat treatment at temperatures of about 400 deg C (752 deg F) and above in an atmosphere containing hydrogen. The phenomenon of hydrogen embrittlement of copper and its alloys is illustrated by examples from practice and reference is made to data from recent publications on the subject. Embrittlement due to this cause can only be identified by microscopic examination because other modes of failure in copper; e.g., from heat cracking, mechanical overload, the formation of low melting point eutectics or corrosion; show a similar appearance when investigated on a macroscopic scale.
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铜及铜合金的脆性,特别是氢脆
氢脆是影响铜和含氧铜合金的脆性,在含氢的气氛中,在约400℃(752℉)及以上的温度下进行热处理。用实例说明了铜及其合金的氢脆现象,并参考了有关这一问题的最新出版物的数据。由于铜中存在其他失效模式,因此这种原因导致的脆化只能通过显微检查来识别;例如,由热开裂、机械过载、形成低熔点共晶或腐蚀;在宏观尺度上研究时显示出类似的外观。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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