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Initial stages of Fe-C martensite decomposition

机译:Fe-C马氏体分解的初期

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The decomposition of Fe-C martensite (alpha') was studied using conventional transmission electron microscopy, high-resolution transmission electron microscopy, X-ray diffractometry and differential scanning calorimetry. The ageing and tempering of a at temperatures between room temperature and 423 K result in changes in the atomic structure of a' and subsequently precipitation of iron carbide. In an early stage of decomposition, carbon enrichments develop in the iron matrix. At temperatures below about 363 K, this development of carbon-enriched and carbon-depleted zones leads gradually to the formation of a modulated structure, as revealed by the observation of specific diffraction phenomena. The carbon enrichments possess variable carbon content. Their misfit with the matrix is, at least initially, accommodated elastically. At temperatures above about 363 K, the transition carbide precipitates. It could be shown that the transition carbide has the eta -carbide crystal structure and the orientation relationship with the matrix was determined. [References: 35]
机译:使用常规透射电子显微镜,高分辨率透射电子显微镜,X射线衍射法和差示扫描量热法研究了Fe-C马氏体(α')的分解。在室温和423 K之间的温度下a的老化和回火会导致a'的原子结构发生变化,并随后沉淀出碳化铁。在分解的早期,铁基质中会形成碳富集。在低于约363 K的温度下,富碳区和贫碳区的这种发展逐渐导致了调制结构的形成,如通过观察特定的衍射现象所揭示的那样。碳富集具有可变的碳含量。它们与基质的不匹配至少在开始时被弹性地解决。在高于约363 K的温度下,过渡碳化物沉淀。可以看出,过渡碳化物具有η-碳化物晶体结构,并确定了与基体的取向关系。 [参考:35]

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