| 1. | Numerical simulations of martensitic transformation in ni - al alloy 合金马氏体相变 |
| 2. | Experiment on stress - induced 1 1 martensitic transformation of cualni single crystal 马氏体相变的实验 |
| 3. | Progress in research on martensitic transformation of nano - sized fe - ni materials 系纳米材料马氏体相变的研究进展 |
| 4. | Characteristics of martensitic transformation in fe - mn - si alloy during thermal cycles 合金热循环时马氏体相变特征 |
| 5. | Martensite formation during mechanical alloying of fe - ni and martensitic transformation 机械合金化过程中马氏体的形成及相变 |
| 6. | Effect of prestrain on the reverse martensitic transformation of tini fibers embedded in al matrix 合金丝马氏体逆相变的影响 |
| 7. | Martensitic transformation and damping capacity of co41ni33al26 alloy ribbons fabricated by cold rolling method 26合金冷轧带材相变与阻尼能力 |
| 8. | The mechanism of elastic energy releasing wave stimulating the nucleation of martensitic transformation had been studied on the basis of the experiment result 根据实验结果,研究了关于马氏体相变的弹性能释放波促发形核机制。 |
| 9. | According to the mechanism , the nucleation course of martensitic transformation requires energy ( i . e . elastic energy ) propagation in the form of wave in austenite 按此机制马氏体相变形核过程中需要有能量(弹性能)以波的形式在母相中传输。 |
| 10. | 5 ) as the deformation strain increases the reverse transformation temperature and thermal hystersis of tini film increase on the first heating , while the martensitic transformation temperature decreases and r phase transition temperature is constant 随预应变量增大, tint薄膜的第一次逆相变温度升高,相变热滞增大,马氏体相变温度降低, r相变温度无明显变化。 |