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WC-Co cutting tool surface modifications induced by pulsed laser treatment

机译:脉冲激光处理诱导的WC-CO切削刀具表面修饰

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Many innovative industrial materials like carbon fibers, metal matrix composites (MMC), hypereutectic Al/Si alloys are very hard and difficult to machine with traditional cutting tools. CVD diamond coated inserts seem to be the most promising system to overcome the problem. The WC, xCo hard metal, a widespread used and cheaper bulk material, could be a convenient substrate for diamond film coatings. The Co-rich binder phase, however, constitutes a severe obstacle for diamond deposition and adhesion, owing to its catalytic effect for amorphous carbon or soot formation. Several chemical and physical methods have been developed to etch Co from the surface; however, no definite and reliable procedure has been achieved. In our experiments, we treated the WC, xCo hard metal substrates with ArF (λ= 193 nm, hv = 6.4 eV) and CO{sub}2 (λ= 10.6μm, hv = 0.12 eV) pulsed lasers, at different fluences and incident angles, to modify both the chemical composition and the structure of the surfaces. The morphological and chemical effects have been studied by SEM/EDAX microscopy and XPS surface analysis. Diamond nucleation and adhesion are compared with results obtained on the plain tool substrates.
机译:许多创新的工业材料如碳纤维,金属基质复合材料(MMC),过度化AL / Si合金非常艰难,难以通过传统的切割工具机。 CVD金刚石涂层插入似乎是最有希望的克服问题的系统。 WC,XCO硬金属,广泛使用的和更便宜的散装材料,可以是金刚石薄膜涂层的方便基材。然而,由于其对无定形碳或烟灰形成的催化作用,其具有金刚石沉积和粘合的严重障碍构成了严重障碍。已经开发了几种化学和物理方法来蚀刻来自表面的CO;但是,没有实现明确和可靠的程序。在我们的实验中,我们对不同的流利和不同流量的XCE(λ= 193nm,HV = 6.4eV)和CO {Sub} 2(λ=10.6μm,HV = 0.12eV)脉冲激光器的WC入射角,改变化学成分和表面的结构。通过SEM / EDAX显微镜和XPS表面分析研究了形态学和化学效果。将金刚石成核和粘附性与在普通工具基材上获得的结果进行比较。

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