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- eutectoid microstructure 共析组织
- The eutectoid compounds are very slow in forming. 共析物的形成是非常缓慢的。
- The effect of cold rolling followed by annealing on the ultra-refinement of microstructure and the mechanical properties of eutectoid steel was investigated. 摘要研究了冷轧变形并结合退火处理对共析钢组男球化超细化与性能的影响。
- The eutectoid reactions which can occur are extremely sluggish. 可能发生的共折反应是非常缓慢的。
- Microstructure of Steels and Cast Irons. 钢与铸铁的显微组织。
- Its microstructure is fine pearlite and carbides. 它的微观结构是细珠光体和碳化物。
- Microstructure evaluation for the samples. 显微镜观察评估样品。
- Heat treatments of DET(Divorced Eutectoid Transformation) and quenching+tempering were carried out to obtain the microstructure of ferrite with ultra-fine carbides for a 1.6%C ultra-high carbon steel. 摘要对1.;6%25C超高碳钢进行离异共析和淬火+高温回火两种工艺球化预处理,获得了铁素体基体上分布超细碳化物组织,在此基础上进行了两类淬火处理。
- A nanostructural surface layer was synthesized on a eutectoid steel by surface mechanical attrition (SMAT) treatment and its microstructure and evolution were characterized by means of X-ray and TEM. 摘要利用表面研磨处理(SMAT)在共析钢上制备出具有纳米晶体结构的表面层,并利用X射线衍射和透射电镜分析了纳米表面层的微观组织结构及其演变。
- Diffraction Analysis of the Microstructure of Materials. 材料显微组织衍射分析。
- The microstructure has been studied using SEM, EDS and XRD. 用扫描电镜(SEM)、能谱(EDS)和X射线衍射(XRD)测试其微观结构。
- The microstructure and morphology of single polymer chain. 单个高分子链的结构和形态。
- The microstructure of the Nidoped SiC is studied in detail. 同时还分析了镍的存在方式及其相结构。
- Relationship between temperature and phase tran sition,cold minification of hypo eutectoid steel has been analysied. 分析了亚共析钢的相变和冷缩率与温度的关系。
- Homogeneous microstructure which is most suitable for the etching process. 组织均匀,最适用于精密蚀花加工。
- There is a lean house model,which divide lean introduction into 3 phases: Cementite, eutectoid and core. 论文构建了一个精益管理屋模型,将精益管理的导入划分为渗碳、共析和晶相3 个层次。
- Fina a way to analyze the microstructure of the heavily deformed wire. 寻找分析钢丝绳深度变形的显微组织的方法。
- It is important to understand the difference of bainite transformation and eutectoid decomposition in steels. 研究贝氏体相变的特点,弄清贝氏体相变反应与共析分解的区别极为重要。
- Microstructure of working layer in the barrel: pearlite or tempered sorbite. 辊身工作层金相组织为:珠光体或回火索氏体。
- And microstructure of cement paste is also observed by SEM technology. 同时,还应用sem对混合水泥硬化浆体的微观结构进行了观察。