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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >High energy ball milling (HEBM) of high volume fraction hard-phase composite powder: Production and characterisation of Al4C3-27 vol.%NiCrAlY composite powder
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High energy ball milling (HEBM) of high volume fraction hard-phase composite powder: Production and characterisation of Al4C3-27 vol.%NiCrAlY composite powder

机译:高体积分数硬相复合粉末的高能球磨(HEBM):Al4C3-27体积%NiCrAlY复合粉末的生产与表征

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摘要

This work characterises the microstructural development of an Al4C3 based composite powder containing 27 vol.%NiCrAlY by high energy ball milling for up to 35 h in air. The observed mechanism of microstructural development was distinctly different to the traditional composite formation mechanism in which hard particles are folded into a ductile metal binder. During milling the isolated NiCrAlY particles were surrounded by a thick dense layer of Al4C3 particles, preventing cold welding of the ductile phase. With continued milling the consolidated carbide particles acted as the effective binder through which the NiCrAlY particles were dispersed. It was only after 15-20 h of milling that the NiCrAlY phase became distributed sufficiently to act as a binder in the traditional sense. The microstructural and compositional development of the composite powder as a function of milling time is discussed through analysis by scanning electron microscopy, X-ray diffraction and energy dispersive X-ray spectroscopy.
机译:这项工作的特点是通过在空气中长达35小时的高能球磨,对包含27%(体积)NiCrAlY的Al4C3基复合粉末的微观结构进行了研究。观察到的微观结构发展机理与传统的复合材料形成机理明显不同,在传统的复合材料形成机理中,硬颗粒被折叠成易延展的金属粘合剂。在研磨过程中,孤立的NiCrAlY颗粒被厚厚的Al4C3颗粒层包围,从而防止了韧性相的冷焊。通过继续研磨,固结的碳化物颗粒充当有效的粘合剂,NiCrAlY颗粒通过该粘合剂分散。仅在研磨15-20小时后,NiCrAlY相才充分分布以充当传统意义上的粘合剂。通过扫描电子显微镜,X射线衍射和能量色散X射线光谱分析,讨论了复合粉体的微观结构和组成随研磨时间的变化。

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