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双相TiAl基合金的室温孪生变形机制
引用本文:梁伟,刘会亭,陆路,杨德庄,李强,康五星. 双相TiAl基合金的室温孪生变形机制[J]. 材料热处理学报, 1995, 0(3)
作者姓名:梁伟  刘会亭  陆路  杨德庄  李强  康五星
作者单位:太原工业大学,哈尔滨工业大学,太原冶金工业学校
基金项目:山西省青年科学基金资助项目
摘    要:研究了Ti-48Al双相合金在室温下以不同压缩量(2%、8%、15%、20%)变形后的徽观组织结构。试验结果表明,形变挛生是双相TiAl合金的重要变形机制,孪生系统为{111}<112]。随着变形量的增加,形变李晶数量增多,但即使经历较大变形,形变孪晶仍然很薄。理论分析表明,在有序Ll_o结构中,形变不可能导致伪孪晶。

关 键 词:TiAI基合金,金属间化合物,形变孪生

Mechanical Twinning Behavior in Two PhaseTiAl-based Alloy at Rcom Temperature
Liang Wei,Liu Huiting,Lu Lu. Mechanical Twinning Behavior in Two PhaseTiAl-based Alloy at Rcom Temperature[J]. Transactions of Materials and Heat Treatment, 1995, 0(3)
Authors:Liang Wei  Liu Huiting  Lu Lu
Abstract:This paper studies the microstructures of Ti-48Al alloy deformed incompression at room temperature. The compraseion strains are about 2%, 8%, 15% and20%. The result shows that mechanical twinnins plays an important role in deformation fortwo phase TiAl alloy. The twinning system is found to be {111}<112]. The quantity ofmechanical twins increases with the increase of strain, but it remains very thin at roomtemperature even after deforming at large strains. Theoretical analysis indicates that peudotwin can not be resulted from deformation for ordered L1_0 structure.
Keywords:TiAl alloy   mechanical twinning   intermetallic compound  
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