Experimental Studies on Abrasive Water Jet Cutting of Nano SiC Particles Filled Hybrid Basalt-Glass Fibre-Reinforced Epoxy Composites

S. Vijayabhaskar, T. Rajmohan, D. Vijayan, K. Palanikumar
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Abstract

Abrasive water jet machining (AWJM) is extensively beneficial in machining materials that are hard to cut. This investigation deals with AWJM of Nano SiC filled Epoxy reinforced with basalt-glass fiber hybrid composite. The composite is prepared by compression moulding technique. Experimental trails are performed to evaluate the impact of every process parameter on the responses i.e., surface roughness (Ra) and Material Removal Rate (MRR). The experiments are conducted by changing the standoff distance (SD), traverse speed (TS) and water pressure. The performance of the conducted experiment is analysed using a Swarm intelligence algorithm. Surface roughness and MRR are maximized by using the combination of optimum process parameter levels of 9.72 mm/min speed, 5.78 mm stand-off distance and 553 MPa jet pressure. Scanning Electron Microscopic (SEM) images are employed in detecting the morphology of machined surface and confirmed the presence of voids and fibre pull-out.
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磨料水射流切割纳米碳化硅颗粒填充玄武岩-玻璃纤维增强环氧复合材料的实验研究
磨料水射流加工(AWJM)广泛应用于难切削材料的加工。研究了玄武岩-玻璃纤维杂化复合材料纳米SiC填充环氧树脂的AWJM。该复合材料采用压缩成型技术制备。进行实验跟踪以评估每个工艺参数对响应的影响,即表面粗糙度(Ra)和材料去除率(MRR)。实验通过改变离体距离(SD)、横移速度(TS)和水压进行。利用群智能算法对实验结果进行了分析。采用9.72 mm/min速度、5.78 mm隔离距离和553 MPa喷射压力的最佳工艺参数组合,使表面粗糙度和MRR最大化。利用扫描电镜(SEM)图像对加工表面形貌进行检测,确认存在空洞和纤维拔出现象。
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