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Carbon nanotube reinforced metal binder for diamond cutting tools

机译:用于金刚石切削工具的碳纳米管增强金属粘结剂

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摘要

The potential of carbon nanotube reinforcement of metallic binders for the improvement of quality and efficiency of diamond cutting wheels is studied. The effect of multi-walled carbon nanotube (MWCNT) reinforcement on the mechanical properties i.e. hardness, Young modulus, strength and deformation behavior of copper and iron based binder for diamond cutting wheels is investigated experimentally and numerically. Computational micromechanical studies were carried out to clarify the mechanisms of the MWCNT material strengthening. It is demonstrated that the adding of MWCNTs leads to the decrease of grain size of the structural constituents of the binder, what in turn leads to the improved simultaneously hardness, Young modulus, plastic extension, bending strength and performances of the metallic binders. Comparing service properties of diamond end-cutting drill bits with and without MWCNT one observed the drastic increase of the cutting speed as a result of MWCNT reinforcement.
机译:研究了碳纳米管增强金属粘结剂对改善金刚石切割轮质量和效率的潜力。实验和数值研究了多壁碳纳米管(MWCNT)增强对金刚石切割轮用铜铁基粘合剂的机械性能即硬度,杨氏模量,强度和变形行为的影响。进行了计算微机械研究,以阐明MWCNT材料增强的机理。已经证明,MWCNT的添加导致粘合剂的结构成分的晶粒尺寸的减小,这进而导致金属粘合剂的同时改善的硬度,杨氏模量,塑性延伸,弯曲强度和性能。比较有和没有MWCNT的金刚石端切钻头的使用性能,人们观察到由于MWCNT的增强,切削速度急剧增加。

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