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1. 研究不同变质剂组成以及含量对铸造Al-Cu合金显微组织和室温力学性能的影响规律,优化出最佳变质剂含量及组成和揭示其作用机制。 2. 研究最佳变质剂组成和不同热处理工艺对沉淀析出的纳米尺寸相形核、生长(形态、尺寸、数量、分布)的动力学条件的影响规律。揭示影响纳米尺寸相形核、生长的动力学规律与条件。 3. 研究不同应变速率下最佳变质剂变质合金的室温力学行为,揭示不同应变速率控制下变质合金室温变形行为的作用机制。 |
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syh9288
捐助贵宾 (著名写手)
海军上将
- 翻译EPI: 6
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1. study the discipline that the composition and content of modifier have influences on the microstructure and mechanical properties at RT(room temperature) of Al-Cu alloy in order to optimize the best content and composition of the modifier and reveal its mechanism of interaction. 2. study the discipline that the best composition of modifier and different heatly-treating process affect the dynamic conditions of formation and growth(shape,size,quantity,distribution)of nano-sized nuclear precipitated, growth . Reveal the discipline of kinetics and conditions having impacts on formation and growth of nano-sized nuclear. 3. study the mechanical activity(at RT)of the best modifier under different strain rate and reveal the mechanism of alloy's deformation behavior(at RT) under different mechanical strain rate. |

3楼2009-12-12 23:18:03
syh9288
捐助贵宾 (著名写手)
海军上将
- 翻译EPI: 6
- 应助: 2 (幼儿园)
- 金币: 1598.6
- 散金: 543
- 红花: 1
- 帖子: 1046
- 在线: 475.4小时
- 虫号: 735351
- 注册: 2009-03-30
- 性别: GG
- 专业: 应用高分子化学与物理
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zap65535(金币+18,VIP+0):补发 12-24 19:22
zap65535(金币+18,VIP+0):补发 12-24 19:22
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1. study the discipline that the composition and content of modifier have influences on the microstructure and mechanical properties at RT(room temperature) of Al-Cu alloy in order to optimize the best content and composition of the modifier and reveal its mechanism of interaction. 2. study the discipline that the best composition of modifier and different heatly-treating process affect the dynamic conditions of formation and growth(shape,size,quantity,distribution)of nano-sized nuclear precipitated, growth . Reveal the discipline of kinetics and conditions having impacts on formation and growth of nano-sized nuclear. 3. study the mechanical activity(at RT)of the best modifier under different strain rate and reveal the mechanism of alloy's deformation behavior(at RT) under different mechanical strain rate. |

2楼2009-12-12 23:15:39













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