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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Crystallographic and morphological aspects of AlN precipitation in high Al, TRIP steels
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Crystallographic and morphological aspects of AlN precipitation in high Al, TRIP steels

机译:高Al,TRIP钢中AlN析出的晶体学和形貌

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摘要

The dendritic AlN associated with poor ductility on straightening during continuous casting is believed to always crystallise out in the hcp structure. The present paper shows that AlN precipitation can also be present as an fcc phase. Because AlN precipitation is sluggish and needs suitable nucleants like MnS to aid its precipitation, the crystal structure of AlN is dependent on the order in which the austenite and MnS precipitate out during solidification. When austenite forms first, as with the 1%Al transformation induced plasticity (TRIP) steel, MnS nucleants are not available and AlN is forced to precipitate at the austenite grain boundaries as fcc so encouraging intergranular failure. With the 1.5%Al TRIP steel, on solidification, MnS is present in abundance, giving rise to the conventional hcp AlN.
机译:据认为与连铸过程中矫直时延展性差相关的树枝状AlN总是会在hcp结构中结晶出来。本文表明,AlN沉淀也可以以fcc相存在。由于AlN沉淀缓慢并且需要诸如MnS的合适成核剂来帮助其沉淀,因此AlN的晶体结构取决于凝固过程中奥氏体和MnS沉淀出来的顺序。当首先形成奥氏体时,与1%Al相变诱发塑性(TRIP)钢一样,没有MnS成核剂,并且AlN被迫以fcc的形式沉淀在奥氏体晶界,从而促进了晶间破坏。对于1.5%Al的TRIP钢,在凝固时会大量存在MnS,从而产生了常规的hcp AlN。

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