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首页> 外文期刊>Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of nanocrystalline binder on the micro structure and mechanical properties of ultrafine Ti(CN) cermets
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Effect of nanocrystalline binder on the micro structure and mechanical properties of ultrafine Ti(CN) cermets

机译:纳米晶粘结剂对超细Ti(CN)金属陶瓷微观结构和力学性能的影响

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摘要

The influence of highly deformed nanocrystalline binder ingredient on the overall microstructure and mechanical properties of ultrafine grade Ti(C_(0.5)N_(0.5)) cermet was investigated. Nanocrystalline Ni and Ni-aluminides viz. NiAl and Ni_3Al, synthesized by mechanical milling/alloying, were blended to the cermet powder prior to sintering. The mechanically milled nano-Ni contained a mixture of f.c.c. and hexagonal Ni phases. The cermet with nanocrystalline Ni showed a considerably improved microstructure over cermets with commercial coarse grade Ni and exhibits a high Vickers hardness of approx 16.1 GPa, along with a good fracture toughness value of approx 9 MPa m~(1/2). However, no significant change in the mechanical properties could be detected in the case of nanocrystalline NiAl and Ni_3Al binder addition. The enhanced properties of the cermets containing nano-Ni were attributed to the finer particle size of the hard phase after sintering along with improved particle size distribution caused by rapid dissolution, which prevents excessive coalescence of the hard particles. On the other hand, the presence of high porosity in the cermets containing nano-NiAl and -Ni_3Al apparently nullified any such enhancement.
机译:研究了高度变形的纳米晶粘结剂成分对超细级Ti(C_(0.5)N_(0.5))金属陶瓷整体组织和力学性能的影响。纳米晶镍和镍铝化物。通过机械研磨/合金化合成的NiAl和Ni_3Al在烧结之前混入金属陶瓷粉末中。机械研磨的纳米镍包含f.c.c的混合物。和六角形的镍相。具有纳米晶态镍的金属陶瓷比具有商业粗品级镍的金属陶瓷具有显着改善的微观结构,并且具有约16.1 GPa的高维氏硬度,以及约9 MPa m〜(1/2)的良好断裂韧性值。但是,在添加纳米晶态的NiAl和Ni_3Al粘合剂的情况下,机械性能没有明显变化。包含纳米镍的金属陶瓷的增强性能归因于烧结后硬相的更细粒度,以及由于快速溶解引起的改善的粒度分布,从而防止了硬颗粒的过度聚结。另一方面,在包含纳米-NiAl和-Ni_3Al的金属陶瓷中高孔隙率的存在显然抵消了任何这种增强。

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