1) martensitic twining deformation
马氏体孪生形变
2) martensitic twin
马氏体孪晶
1.
The Ni-Mn-Ga crystal growth direction is along [100] with the deviation less than 5° The martensitic twins reorientation process was detected by the stress-strain curves.
沿单晶试样的3个边分别进行压缩实验,研究马氏体孪晶再取向应力应变行为。
3) twin martensite
孪晶马氏体
1.
Lowering the cooling rate leads to the decrease of the plasticity, fracture toughness and corrosion resisence of the back material, mainly due to the increase of twin martensites(including those existing in lathmartensites) after quehching.
降低淬火冷却速率,使背部材料塑性以及抗疲劳性能有一定的下降,这主要是由于淬火后孪晶马氏体(含板条内微孪晶马氏体)量有所增加,回火后,使孪晶马氏体发生退化产生脆性片状碳化物,进一步增加了回火脆
4) twin deformation
孪生变形
1.
The microstructure and twin deformation properties of WC phases were investigated by loading alloy specimen.
通过对硬质合金试样施加一定应力,使之产生应变,对其微观组织进行TEM分析,研究了孪生变形特性。
6) deformation martensite
形变马氏体
1.
To introduce the situation of possible occurrence of deformation martensite in the course of application of wire rod products.
介绍线材制品在使用过程中可能出现形变马氏体的情况。
补充资料:形变孪生
deformationtwinning:晶体受力后以产生孪晶的方法而进行的切变过程称为形变孪晶。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条