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1)  surface self-nano-crystallization
表面自纳米化
1.
The research state of self-nanocrystallization technology on iron and steel surface, nano-crystallization principle and the application prospect of surface self-nano-crystallization were introduced.
介绍了钢铁材料表面自纳米化的研究现状、纳米晶化机制和表面自身纳米化技术的应用前景,表明表面自身纳米化能显著提高钢铁材料的表面强度,硬度、耐磨和耐疲劳性能,在化学热处理和电化学防护方面也展示了广阔的应用前景。
2)  surface self-nanocrystallization
表面自身纳米化
1.
This paper has introduced briefly the characteristics of the surface self-nanocrystallization and the principle of making the materials,and reviewed the progress of the surface self-nanocrystallization in mechanics,corrosion and fatigue,etc.
简要介绍了表面自身纳米化技术的特点,表面自身纳米化材料的制备原理,综述了表面自身纳米化对材料的力学、腐蚀、疲劳等性能的影响。
2.
In this paper, present progress in researches on mechanically induced surface self-nanocrystallization technology of metallic materials is described, involving grain refinement mechanism and properties of the nanostructured surface layer, and preparation method.
综述了机械加工法实现金属材料表面自身纳米化的研究现状,分别从制备方法、纳米化层的形成机制、纳米化层的特点和性能等方面的研究进展进行了阐述,并对表面自身纳米化技术的发展趋势进行了简单的分析。
3.
The USSP induced surface nanocrystallization products were characterized by XRD,the fatigue tests were carried out in 316L stainless steel before and after USSP treatment,and reviewed the progress of the surface self-nanocrystallization in fatigue.
文章分析研究了表面纳米层的微观组织结构特征,并对试件进行了疲劳试验,分析结果后,简述了表面自身纳米化对材料疲劳性能的影响。
3)  surface nanocrystallization
表面纳米化
1.
The effect of surface nanocrystallization on oxidation resistance of 1Cr17 stainless steel;
表面纳米化对1Cr17不锈钢耐氧化性的影响
2.
The corrosion property of 316L stainless steel aftersurface nanocrystallization in acid solution;
表面纳米化316L不锈钢在酸性介质中腐蚀性能的研究
3.
Microstructure and characterization of surface nanocrystallization of aluminum alloy;
铝合金表面纳米化处理及显微结构特征
4)  surface nanocrystalline
表面纳米化
1.
Influence of surface nanocrystalline of copper on Ti ions implantation
纯铜表面纳米化对Ti离子注入的影响
5)  nano-structure surface
表面纳米化修饰
1.
It is exhibited that polypropylene (PP) composites filled by the composite powders with nano-structure surface have better properties because the nano-structured mineral powders have bigger.
 通过化学方法成功地实现了矿物粉体在Ca(OH)2 H2O CO2体系中的表面纳米化修饰,即在微米级重质碳酸钙、硅灰石粉体表面形核生成粒径均匀的纳米碳酸钙颗粒层。
6)  surface nano-structured particle
表面纳米化颗粒
补充资料:表面


表面


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