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- Keywords TC21 Titanium alloy;lamellar microstructure;basketweave microstructure;tensile properties;fracture toughness;fatigue crack propagation; TC21钛合金;片状组织;网篮组织;拉伸性能;断裂韧性;疲劳裂纹扩展;
- fully lamellar microstructure 全片层组织
- lamellar microstructure 片层组织
- Otherwise, when the microstructure of surface layer is in the form of lamellar graphite and rough acicular or blocky carbi... 当气门挺杆组织中的石墨以片状均匀分布,碳化物呈粗大针状、块状,分布不均匀时,耐磨性较差,磨损形式以剥落为主。
- Having the form of a thin plate or lamella. 薄片形的有薄片或鳃瓣状形体的。
- There is not lamella in the ingot. 钢锭没有明显的片层状组织。
- 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。
- Through the TEM microstructure observation of the area adjacent to the BCC/C14 interface in TiMnV, a very fine lamellar structure (10nm thickness) was found. Akiba等用TEM方法观测TiMnV合金的BCC相和C14相的交界面,发现了一个很好的薄层(厚度为10nm)。
- Through the TEM microstructure observation of the area adjacent to the BCC/C14 interface in TiMnV,a very fine lamellar structure(about 10 nm thickness) has been found. Akiba等用TEM(透射电子显微镜)方法观测TiMnV合金的BCC相和C14相的交界面,发现存在一个厚度为10 nm的薄层。
- the increment of strain and strain rate induces mechanical twinning, and lamellar microstructures form; 应变量和应变速率的增加诱发了机械孪生,形成了片层状孪晶;
- 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 result is a patchwork mosaic of bone without an even lamellar structure. 结果形成了不均一的板层结构的骨的不协调嵌合体。
- 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。
- The lamellar complex disintegrate and protrude outward to form the spike. 棘突由片层复合体衍生物汇集并延伸而成。
- At 12 weeks, the frozen mandibles and ilia had formed lamellar bone. 12周时冷冻骨及髂骨皮质形成较成熟的板层骨。
- Homogeneous microstructure which is most suitable for the etching process. 组织均匀,最适用于精密蚀花加工。
