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- W2972162892 abstract "In recent years, polymer matrix composites (PMCs) have become excessively prevalent in the field of manufacturing science. These composites are highly applicable in aerospace, electronics, and the marine industry due to their superior properties. This chapter addresses the secondary processing of reinforced PMCs using conventional and nonconventional machining processes. In conventional techniques, machining processes such as milling, drilling, turning, grinding, and boring have been attempted by various researchers. However, the drilling process remains popular over other methods due to joining applications i.e. by mechanical fastening. The machining of PMCs by drilling is a challenging task because of the generation of uneven surface, i.e. delamination around the machining zone. To overcome this problem, researchers attempted machining of PMCs by vibration assisted drilling, drilling by special drill geometry, and nonconventional machining processes such as laser beam machining (LBM), ultrasonic machining (USM), abrasive water jet machining (AWJM), electrical discharge machining (EDM), and electrochemical discharge machining (ECDM). The machining of PMCs using nonconventional machining processes is highly acceptable because of the minimization of uneven surface in the machining zone. In this chapter, a state-of-the-art review on secondary processing of PMCs has been grouped into two domains, i.e. conventional machining and nonconventional machining. Additionally, secondary processing of PMCs includes machined surface characteristics such as delamination, cracks, surface damages, etc. Moreover, it highlights various problems encountered in machining and material removal mechanism. The conclusion of this chapter focuses on the future research trends for efficient secondary processing of fiber reinforced PMCs and tackles the problems encountered in machining. It has been observed that the future research work in secondary processing of PMC requires some attention to the process capability of nonconventional machining methods. This can be incorporated by numerous techniques such as ultrasonic vibrations, magnetic assistance, tool geometry, and rotary assistance." @default.
- W2972162892 created "2019-09-12" @default.
- W2972162892 creator A5040259936 @default.
- W2972162892 creator A5059410438 @default.
- W2972162892 creator A5073331547 @default.
- W2972162892 date "2019-09-06" @default.
- W2972162892 modified "2023-09-27" @default.
- W2972162892 title "Secondary Processing of Reinforced Polymer Composites by Conventional and Nonconventional Manufacturing Processes" @default.
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