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Fabrication of a diamond impregnated tool using iron nanopowder binder

机译:使用铁纳米粉末粘合剂制造金刚石浸渍工具

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摘要

To replace the high cost material of cobalt matrix, the feasibility of diamond impregnated tools using structure-modified Fe nanopowder was investigated in terms of its compaction and related sintering properties. The structure was controlled that the spherical agglomerate shape for the easily rearrangement at low pressure range and the bimodal typed porous agglomerate structure are principally responsible for the green density improvement. The structure modified Fe nanopowder showed higher compactability than the structure non-treated Fe nanopowder during the compaction process and homogeneously dispersed diamond in the segment. After sintering, the structure modified Fe nanopowder showed sound segment shape and reached 93.7% T.D. without substantial grain growth. The characteristics of compaction and the sintered segments were evaluated in terms of the microstructure. Moreover, a prototype product was made and core-drilling test was carried out using the structure modified Fe nanopowder. The results are discussed in comparison with the standard of commercial products.
机译:为了更换钴基质的高成本材料,在其压实和相关烧结性能方面研究了使用结构改性的Fe纳米粉末的金刚石浸渍工具的可行性。控制结构,使球形聚集形状在低压范围内容易重排和双峰型多孔聚集结构主要负责绿色密度改善。该结构改性的Fe纳米粉芯在压实过程中的结构未处理过的Fe纳米粉末和均匀分散在区段中的均匀分散的金刚石。烧结后,结构改性的Fe纳米粉末显示出声音段形状,达到93.7%T.D.没有大量晶粒生长。根据微观结构评估压实的特性和烧结区段。此外,使用该结构改性Fe纳米粉末进行原型产物并进行核钻探试验。与商业标准相比,结果讨论了结果。

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