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Reverse Transformation Behavior of Martensite Formed during Cooling Proce under Constant Stress in TiNi Alloys 被引量:1

TiNi合金在恒应力约束降温过程中形成马氏体的逆相变行为
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摘要 The reverse transformation temperature and recovery strain ratio of the martensite formed during the cooling process under a constant stress in TiNi shape memory alloy wires are studied in this paper. Results show that a higher level of the applied constant stress during the cooling process will induce martensite with a higher reverse martensitic transformation start temperature As and a smaller recovery strain ratio. Similarly, a prestrain at the room temperature elevates the As temperature and decreases the recovery strain ratio. However, the As temperature and the recovery strain ratio of the martensite formed during the cooling process under a constant stress are lower than those of the martensite formed by prestrain at the room temperature. The reverse transformation temperature and recovery strain ratio of the martensite formed during the cooling process under a constant stress in TiNi shape memory alloy wires are studied in this paper. Results show that a higher level of the applied constant stress during the cooling process will induce martensite with a higher reverse martensitic transformation start temperature As and a smaller recovery strain ratio. Similarly, a prestrain at the room temperature elevates the As temperature and decreases the recovery strain ratio. However, the As temperature and the recovery strain ratio of the martensite formed during the cooling process under a constant stress are lower than those of the martensite formed by prestrain at the room temperature.
出处 《Petroleum Science》 SCIE CAS CSCD 2004年第3期62-65,共4页 石油科学(英文版)
基金 supported by the National Natural Science Foundation of the People’s Republic of China under grant No.50071037.
关键词 Shape memory alloy TINI reverse martensitic transformation constant stress Shape memory alloy, TiNi, reverse martensitic transformation, constant stress
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