Preparation, Microstructure Evaluation and Performance Analysis of Diamond-Iron Bonded Magnetic Abrasive Powder

Q4 Materials Science
Palwinder Singh, L. Singh, Sehijpal Singh
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引用次数: 6

Abstract

Abstract The customary edged tool for machining is uneconomical for harder and hard to machine materials and furthermore the level of surface finish accomplished is not that great. As of late, a lot of consideration in mechanical engineering has been centered on finishing tasks. Not many investigations have been accounted for till date on the advancement of substitute magnetic abrasive powder (MAP). In this paper, to improve the finishing performance, the abrasive powder were prepared by mechanical alloying of diamond powder and iron (Fe) powder, compacting these with universal testing machine (UTM) and then sintered at different temperature in a sintering machine in an inert gas (H2) atmosphere. These compacts were crushed and sieved to obtain various sizes of MAP. This abrasive powder were micro-structurally examined. The results indicate that the densification increases and porosity decreases with increasing temperature. Moreover, the prepared bonded MAP has potential performance as a new MAP for fine finishing in Magnetic Abrasive Flow Machining (MAFM) process.
金刚石-铁结合剂磁性磨料的制备、微观结构评价及性能分析
摘要对于较硬、较难加工的材料,传统的刃具加工不经济,而且表面光洁度也不高。最近,机械工程中的许多考虑都集中在完成任务上。迄今为止,关于替代磁性磨料粉(MAP)的研究还不多。为了提高磨料的精加工性能,本文将金刚石粉和铁粉机械合金化,在万能试验机(UTM)上进行压实,然后在烧结机上在惰性气体(H2)气氛中进行不同温度的烧结。这些压实物被粉碎和筛分得到不同尺寸的MAP。对该磨料粉末进行了显微结构检测。结果表明:随着温度的升高,致密性增大,孔隙率减小;此外,所制备的粘结MAP具有作为磁磨料流加工(MAFM)精细精加工的新型MAP的潜在性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
CiteScore
1.00
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