Investigation on Cutting Force, Flank Wear, and Surface Roughness in Machining of the A356-TiB2/TiC in-situ Composites

Ismail Kakaravada, A. Mahamani, V. Pandurangadu
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引用次数: 7

Abstract

This article reveals the experimental investigation on the machinability of A356-TiB2/TiC in-situ composites prepared by a mixed salt reaction system. The fabricated composites are characterized by Energy dispersive analysis (EDAX), X-ray Diffraction (XRD), scanning electron microscopy (SEM) and micro-hardness analysis. Multi-coated tungsten carbide tool was used to examine the influence of TiB2/TiC reinforcement ratio on machinability behaviour of composites. The variations in cutting speed, feed rate and depth of cut upon cutting force, surface roughness and flank wear were examined. The experimental results revealed that the enhancement of a reinforcement ratio causes the decrease in cutting force and increase in flank wear and surface roughness. Higher flank wear is observed, when machining the A356-TiB2/TiC composites at higher cutting speed due to the generation of high temperature at the machining interface. The increment in surface roughness, flank wear and cutting force is experienced at higher depth of cut and feed rate. Further, the mechanisms of chip formation and surface generation under different machining parameters are addressed. The outcome of this experimental investigation helps to utilize the turning process for machining the in-situ composites at economic machining rate without compromising the surface quality.
A356-TiB2/TiC原位复合材料切削力、侧面磨损及表面粗糙度研究
本文对采用混合盐反应体系制备的A356-TiB2/TiC原位复合材料的可加工性进行了实验研究。通过能量色散分析(EDAX)、x射线衍射(XRD)、扫描电镜(SEM)和显微硬度分析对复合材料进行了表征。采用多层涂层碳化钨刀具,研究TiB2/TiC增强比对复合材料切削性能的影响。研究了切削速度、进给速度和切削深度随切削力、表面粗糙度和侧面磨损的变化规律。实验结果表明,增强率的增大导致切削力的减小,刃口磨损和表面粗糙度的增大。当以较高的切削速度加工A356-TiB2/TiC复合材料时,由于在加工界面处产生高温,观察到较高的侧面磨损。在较高的切削深度和进给速度下,表面粗糙度、侧面磨损和切削力均有增加。进一步讨论了不同加工参数下切屑形成和表面生成的机理。本实验研究的结果有助于利用车削工艺以经济的加工速度加工原位复合材料而不影响表面质量。
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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