Laser Machining

N. Jeyaprakash, Che-Hua Yang, Manickam Bhuvanesh Kumar
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Abstract

The increasing demands of materials with superior properties are given priority by most of the industries in recent years due to their higher performance levels. Machining of hard materials is a challenging task since it involves higher cutting forces and rapid tool wear. This leads to complexity in shaping these difficult-to machine materials such as advanced composite and ceramics. There have been many alternative techniques developed to overcome the shortcomings of conventional machining processes. Laser beam machining (LBM) is one of the advanced noncontact machining processes that employ monochromatic light with high frequency for machining using thermal energy. The highly energized photos are focused on a material cause heating, melting and vaporizes the material which is effectively used to remove unwanted portion of a material. Due to higher coherency of laser beam, materials can be machined very precisely than conventional machining processes. Generally, the laser-based material processing is suitable for a brittle type of material with minimum conductivity. However, this laser machining can be used for all kinds of materials in most cases. This chapter provides the principle of laser and its types, mechanism of material removal using laser, applications, advantages, and limitations of LBM.
激光加工
近年来,由于具有更高的性能水平,对高性能材料的需求日益增长,受到大多数行业的重视。硬材料的加工是一项具有挑战性的任务,因为它涉及更高的切削力和快速的刀具磨损。这导致了这些难以加工的材料(如高级复合材料和陶瓷)成形的复杂性。已经开发了许多替代技术来克服传统机械加工工艺的缺点。激光束加工是利用高频单色光进行热能加工的一种先进的非接触加工方法。高能量的照片聚焦在材料上,使材料加热、熔化和汽化,有效地用于去除材料中不需要的部分。由于激光光束具有较高的相干性,可以比传统的加工工艺更精确地加工材料。一般来说,激光基材料加工适用于电导率最小的脆性材料。然而,这种激光加工在大多数情况下可以用于各种材料。介绍激光的原理、类型、激光材料去除机理、激光激光材料的应用、激光激光材料去除的优点和局限性。
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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