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基于材料形态变化的制造技术逻辑分类体系
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作者 钟康民 《航空制造技术》 2005年第12期71-73,88,共4页
介绍了一种以材料形态信息的改变为脉络,对制造技术进行逻辑分类的方法。将现有的和未来可能创造出来的制造技术分别纳入到改变几何形态、改变微观状态、同时改变几何形状和微观状态3个框架上,而后进行进一步分解。这种分类方法能反映... 介绍了一种以材料形态信息的改变为脉络,对制造技术进行逻辑分类的方法。将现有的和未来可能创造出来的制造技术分别纳入到改变几何形态、改变微观状态、同时改变几何形状和微观状态3个框架上,而后进行进一步分解。这种分类方法能反映各种制造技术的内在联系,对学科发展和技术创新具有积极意义。 展开更多
关键词 制造技术 逻辑分类 形态信息 微观变态
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Dislocation density model and microstructure of 7A85 aluminum alloy during thermal deformation 被引量:10
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作者 HU Jian-liang WU Xiu-jiang +3 位作者 BO Hong JIAO Zi-teng HUANG Shi-quan JIN Miao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期2999-3007,共9页
The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffract... The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffraction(EBSD).Based on the K-M dislocation density model,a two-stage K-M dislocation density model of 7A85 aluminum alloy was established.The results reveal that dynamic recovery(DRV)and dynamic recrystallization(DRX)are the main mechanisms of microstructure evolution during thermal deformation of 7A85 aluminum alloy.350−400°C is the transformation zone from dynamic recovery to dynamic recrystallization.At low temperature(≤350°C),DRV is the main mechanism,while DRX mostly occurs at high temperature(≥400°C).At this point,the sensitivity of microstructure evolution to temperature is relatively high.As the temperature increased,the average misorientation angle(θˉ_(c))increased significantly,ranging from 0.93°to 7.13°.Meanwhile,the f_(LAGBs) decreased with the highest decrease of 24%. 展开更多
关键词 hot deformation microstructure evolution dynamic recrystallization dislocation density model
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Microstructure evolution of Al-Si semi-solid slurry by gas bubble stirring method 被引量:3
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作者 张磊 董选普 +4 位作者 李继强 李侃 张宗奎 王文俊 樊自田 《Journal of Central South University》 SCIE EI CAS 2011年第6期1789-1794,共6页
A novel technique of introducing gas bubble stirring during solidification was studied to prepare Al-Si semi-solid slurry. The microstructure evolution of the slurry during slow cooling process after stirring was inve... A novel technique of introducing gas bubble stirring during solidification was studied to prepare Al-Si semi-solid slurry. The microstructure evolution of the slurry during slow cooling process after stirring was investigated. The effects of the solidification rate on the microstructure of the semi-solid slurry were investigated under three different solidification conditions. The results show that fine non-dendritic slurry can be obtained using the gas bubble stirring method. Ripening and coarsening of primary Al grains are observed during the slow cooling process, and at last coarsened eutectic Si appears. Primary Al grains with different sizes and eutectic Si are obtained, corresponding to three different solidification rates. 展开更多
关键词 gas bubble stirring semi-solid slurry solidification rate MICROSTRUCTURE
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