工程的经验表明,氮化铬(Chromium nitride, CrN)在特定的环境具备优异的性能:如改善加工 铝合金的成形刀具的性能 [1] ,增加加工木材的碳 化钨(T...
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chromium nitride precipitation 氮化铬析出
chromium-nitride coatings 铬氮涂层
titanium aluminum chromium nitride 氮化钛铝铬
Chromium Metal Nitride 氮化金属铬
Due to their excellent mechanical properties,chromium nitride(CrN_x)and amorphous carbon nitride(a-CN_x)films have been widely employed as protective hard coatings in the areas of cutting tools,biomedical enginerring and microelectromechanical systems(MEMS).
氮化铬(CrN_x)薄膜和非晶态氮化碳(a-CN_x)薄膜具有良好的机械性能,被广泛应用作切削刀具、生物医学工程以及微机电系统(MEMS)等领域的耐磨涂层。
参考来源 - 氮化铬和氮化碳薄膜的径向纳动运行与损伤研究·2,447,543篇论文数据,部分数据来源于NoteExpress
Moreover, re elements can fine the structure of the layer, improve precipitating carbonous chromium nitride formed and increase the hardness of the layer.
而且稀土元素显著地细化渗层组织,促进氮碳化合物弥散细小析出,提高渗层硬度。
The application and preparation of ultra-fine chromium nitride powders are presented. Specially, the progress in preparation technique is reviewed. with evaluation and directions for further study.
综述了超细氮化铬粉体的用途、制备方法,着重介绍了近年来超细氮化铬粉体的制备方法的研究进展,分析了各种方法的利弊以及以后的研究方向。
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