Characterization of Micro-Crystalline Diamond Tools Synthesized by HFCVD Process with Different Seeding Powders

M. Behera, S. K. Pattnaik, S. K. Sarangi
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Abstract

Synthesis of diamond films on carbide insert is a recent area of research in surface engineering. This research is carryout to know the effect of different seeding powders on diamond coating of WC tool by Hot Filament Chemical Vapor Deposition (HFCVD) method. Here, the formation of microcrystalline diamond (MCD) on SPUN tungsten carbide (WC-Co) cutting tool insert is carried out. Basically, before coating in HFCVD method, the substrate cobalt content should minimize by ultra-sonic etching. The uncoated tools are seeded ultrasonically by Diamond, Iridium, Platinum and Tungsten powder at the same coating condition to observe the growth of diamond crystals. X- ray diffraction gives clear results of diamond plane and adhesion of coating. The purity of diamond crystal after coating can be clear by observing the Raman shift in Raman spectroscopy (RS). The tool is seeded with diamond powder gives more nucleation density due to the presence of more sp3 bond as compared with sp2. Use of diamond and platinum powder as a seeding material gives fully developed crystal and uniform coating during diamond film deposition by HFCVD technique, rather in case of other powder coating the discrete crystals were formed.
不同种子粉HFCVD工艺合成微晶金刚石工具的表征
在硬质合金镶片上合成金刚石薄膜是表面工程研究的一个新领域。采用热丝化学气相沉积(HFCVD)方法,研究了不同播种粉对WC刀具金刚石涂层的影响。在此,在SPUN碳化钨(WC-Co)刀具刀片上形成微晶金刚石(MCD)。基本上,在HFCVD镀膜之前,基材的钴含量应该通过超声波蚀刻降到最低。将金刚石、铱、铂和钨粉在相同的涂层条件下超声播种,观察金刚石晶体的生长情况。X射线衍射给出了清晰的金刚石平面和涂层附着力的结果。通过观察拉曼光谱(RS)中的拉曼位移,可以明确涂层后金刚石晶体的纯度。与sp2相比,由于存在更多的sp3键,因此该工具含有金刚石粉末,从而获得更高的成核密度。采用HFCVD技术沉积金刚石薄膜时,金刚石和铂粉作为播种材料,使其晶体发育充分,涂层均匀,而其他粉末涂层则形成离散晶体。
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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