Microstructural Evolution during Creep of the Mg-Al-Alloy AZ91hp

Microstructural Evolution during Creep of the Mg-Al-Alloy AZ91hp
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DOI:
10.4028/www.scientific.net/kem.171-174.609
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发表时间:
1999-10
期刊:
Key Engineering Materials
影响因子:
--
通讯作者:
Ping Zhang;B. Watzinger;Q. P. Kong;Wolfgang Blum
Ping Zhang;B. Watzinger;Q. P. Kong;Wolfgang Blum
中科院分区:
其他
文献类型:
--
作者:
Ping Zhang;B. Watzinger;Q. P. Kong;Wolfgang Blum

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本文介绍了工程材料蠕变和断裂的研究,重点是:高温变形和断裂机理、高温材料、单晶和多晶的行为、组分和结构、晶界和界面以及超弹性。特别关注的是蠕变裂纹扩展和疲劳;蠕变损伤,断裂和寿命评估;和工厂进行评估。涵盖的材料包括结构钢、镍基高温合金、有色合金、金属间化合物和陶瓷。
Research on the creep and fracture of engineering materials is presented in this text, with particular emphasis being placed on: mechanisms of high-temperature deformation and fracture, materials for high-temperature service, the behaviour of single and polycrystals, components and structures, grain boundaries and interfaces, and superelasticity. Special focus is placed on creep crack growth and fatigue; creep damage, rupture and life assessment; and plant conduct assessment. Materials covered include structural steels, nickel-based superalloys, nonferrous alloys, intermetallics and ceramics.