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1)  thermal dendrite
热枝晶体
2)  arborescent crystal
枝晶;树枝形晶体
3)  austenite dentrites
A体枝晶
4)  dendrite [英]['dendraɪt]  [美]['dɛn'draɪt]
枝晶体
5)  austenite dendrite
奥氏体枝晶
1.
The formation and classsification of austenite dendrite in spsheroidal graphite cast iron as well as the relevant influencing factorss were introduced.
介绍了球墨铸铁中奥氏体枝晶的形成、分类及影响因素,指出奥氏体枝晶排列方向的控制对进一步挖掘球铁力学性能潜力的意义;同时阐述了溶质元素、凝固速度等因素对球铁偏析的影响规律。
2.
The morphology of austenite dendrites in shrinkage porosity in nodular iron is displayed by the color etching technique and the formation mechanism of shrinkage porosity has been analyzed.
采用着色腐蚀技术 ,金相显示了球墨铸铁缩松区中奥氏体枝晶组织形貌 ,分析了球铁缩松的形成机制。
3.
A optical microscope(OM) and a scanning electronic microscope((SEM) have been used to investigate the morphology characterization and the microstructure of the prime austenite dendrite in a Cu-Cr alloyed cast iron camshaft.
采用光学显微镜和扫描电子显微镜分析了Cu-Cr系合金铸铁凸轮轴中的初生奥氏体枝晶的形貌特征和显微组织。
6)  austenite dendrites
奥氏体枝晶
1.
The high temperature solidification structure in hypereutectic nodular iron has been showed clearly by the color etching technique and the formation mechanism of the austenite shell (the austenite shell is a part of the austenite dendrites) around the nodular graphite has been observed and analyzed.
采用着色腐蚀技术 ,可清晰地显示出过共晶球墨铸铁中的高温凝固组织 ,观察分析了石墨球周围奥氏体壳 (奥氏体壳是奥氏体枝晶的一部分 )的形成机制。
2.
The effect of some common alloying elements on austenite dendrites forming had been analyzed by differential thermal-liquid quenching analysis.
用微分热分析-液淬法研究几种常用合金元素对奥氏体枝晶形成与长大形态的影响。
补充资料:A1-Cu-Co合金中十次对称准晶单晶体及其衍射图


A1-Cu-Co合金中十次对称准晶单晶体及其衍射图


  ‘ Al Cu—Co合金中十次对称准晶堕晶体e1)及其衍射圈(z) 中国科学盹垒禹研览听供稿
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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