MECHANISM OF ENVIRONMENT-INDUCED CRACKING

Martin Moeser
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Abstract

Some media such as hydrogen, sulfides and carbides but also metals are known to be able to embrittle metals. The present paper tries to elucidate this medium-induced cracking (environmental cracking). In regions of current flow (slip bands) a fast transport of foreign atoms may occur along the dislocations in certain temperature ranges. This leads to supersaturation at sites where gliding is stopped. In form of pressure bubbles, as short-time precipitates, the medium inhibits further gliding. For hot cracking and relaxation cracking, the precipitation of the attacking medium (carbide or sulfide) along the grain boundaries represents the frozen-in state of the process of embrittlement.
环境致裂机理
已知一些介质,如氢、硫化物和碳化物,以及金属,能够使金属脆化。本文试图阐明这种介质诱发的开裂(环境开裂)。在电流区(滑移带),外来原子在一定温度范围内沿位错发生快速输运。这导致在停止滑行的地方过饱和。以压力气泡的形式,作为短时间的沉淀,介质抑制进一步的滑动。对于热裂纹和松弛裂纹,沿晶界析出的攻击介质(碳化物或硫化物)代表了脆化过程的冻结状态。
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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