| 1. | The final configuration is identical to that in (a), and the total plastic strain is six atomic spacings . 最后的排列虽与图a一样,但总的塑性应变量是6个原子距。 |
| 2. | Standard test method for plastic strain ratio r for sheet metal 金属薄板塑性应变率的标准试验方法 |
| 3. | R metallic materials - sheet and strip - determination of plastic strain ratio r - values 金属薄板和薄带塑性应变比 |
| 4. | Multiaxial low cycle fatigue life prediction model based on plastic energy 基于塑性应变能的多轴低周疲劳寿命预测模型 |
| 5. | Method of determining the plastic strain ratio for metallic sheet and strip 测定金属薄板材和带材用塑性应变比试验方法 |
| 6. | Accumulated plastic strain 累积塑性应变 |
| 7. | Plastic strain increment 塑性应变增量 |
| 8. | Module of plastic strain 塑性应变模量 |
| 9. | Plastic strain ratio calculation of metal sheet from low - resolution texture analysis 从低分辨织构计算金属板材的塑性应变比 |
| 10. | The strain - fatigue - life of materials is related to the plastic strain at the crack - tip 摘要材料的应变疲劳寿命与裂端的塑性应变有关。 |