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1)  strain-induced melt activation (SIMA)
应力诱发熔体激活法
1.
The microstructure of AZ61 magnesium alloy by strain-induced melt activation (SIMA) process was studied to reveal the effects of prior compressive deformation,isothermal temperature and holding time.
研究了AZ61镁合金在应力诱发熔体激活法(SIMA)制备半固态坯料过程中预变形量、等温温度和保温时间对其组织的影响。
2)  strain-induced melt activation(SIMA)
应变诱发熔体激活法
1.
This paper studied the SIMA process used to prepare the semi-solid ingots of AZ61 magnesium alloy,and structure evolution of semi-solid AZ61 magnesium alloy was observed,The microstructure and mechanical properties of AZ61 magnesium alloy by strain-induced melt activation(SIMA) process were studied to investigate the effects of prior compressive deformation and heat treatment conditions.
采用应变诱发熔体激活法(SIMA)制备出AZ61镁合金半固态坯料,同时对其组织演变过程进行观察,并研究预形变量和等温处理对组织及其机械性能的影响。
3)  strain-induced melt activation
应变诱发熔化激活法
1.
The influences of strain and temperature on microstructure of AZ91D alloy for upsetting in the strain-induced melt activation process were investigated.
研究了AZ91D镁合金在应变诱发熔化激活法处理过程中形变率和形变温度对组织的影响。
4)  strain induced melt activation
应变诱发熔化激活
5)  stress-induced martensite
应力诱发马氏体
1.
The reverse transformation temperature interval of the stress-induced martensite is much sm.
用在(Ms+30℃)温度下的拉伸实验和差示扫描量热仪(DSC)较系统地研究了 Ti44Ni47Nb9 宽滞后形状记忆合金应力诱发马氏体的相变行为。
2.
The results showed that cold rolling process can induce texture of stress-induced martensite and two-way shape memory effect in specific direction.
5Mn合金的双程形状记忆效应的各向异性及其产生机制进行了研究·结果表明,冷轧可造成马氏体织构,且马氏体织构按最大程度缓和外加应力的方式产生,并在特定方向上产生形状记忆效应·通过对压下量的控制,可以在一定范围内任意获得正、负的自发形状变化和热膨胀性·随着加工量的增加,马氏体相变温度区间大幅度扩大·随着温度变化,具有择优取向的应力诱发马氏体晶核的生长和消失是导致可逆的自发形状变化各向异性的根本原因
3.
The reverse transformation temperature interval of the stress-induced martensite was found to be much smaller than that of the thermally induced m.
采用差示扫描量热仪(DSC)系统研究了在(Ms+30℃)温度下拉伸形变对Ti44Ni47Nb9形状记忆合金应力诱发马氏体(SIM)相变行为的影响。
6)  stress induced martensite
应力诱发马氏体
1.
The results show that the reverse transformation temperature of stress induced martensite is higher than that of thermal induced martensite and with the increase of deformation the reverse transformation temperature increases.
0 4 9N(质量分数 ,% )合金预应变对应力诱发马氏体相变量及其逆相变温度的影响 。
2.
The volume fraction of stress induced martensite (SIM) in Fe Mn Si Cr N shape memory alloy was determined by X ray diffraction method.
通过 X射线衍射峰位置和强度的计算 ,可以测定 Fe- Mn- Si- Cr- N形状记忆合金中应力诱发马氏体 (ε相 )体积分数 。
3.
The reverse transformation of thermal induced martensite, general stess induced martensite, the stress induced martensite after thermomechanical training in Fe Mn Si based shape memory alloys were studied by an electrostatic audio frequency internal friction instrument.
利用音频内耗仪测试了Fe-Mn-Si基形状记忆合金热诱发马氏体、一般应力诱发马氏体和热-机械训练后的应力诱发马氏体的逆相变过程。
补充资料:轧辊残余应力(见轧辊应力)


轧辊残余应力(见轧辊应力)
residual stresses in roll

zhagun eanyu yingli轧辊残余应力(residual stresses in roll)见礼辐应力。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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