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Surface texturing of Si3N4-SiC ceramic tool components by pulsed laser machining

机译:通过脉冲激光加工对Si3N4-SiC陶瓷工具组件进行表面纹理化

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摘要

Traditional abrasive techniques such as grinding and lapping have long been used in the surface conditioning of engineering materials. However, in the processing of hard and brittle materials like silicon nitride (Si3N4), machining is often accompanied by numerous shortcomings which either lead to poor surface quality or residual surface damage of the workpiece. In this sense, this work focuses on the application of a pulsed mode, nanosecond Nd:YAG laser system for the surface texturing of Si3N4-SiC composites in the fabrication of machining tool inserts for various tribological applications. The samples were machined at varied laser energy (0.1-0.6 mJ) and lateral pulse overlap (50-88%) in order to generate a sequence of linear parallel micro-grooves on the sample surfaces. The results showed a logarithmic increase in material removal as pulse energy and lateral overlaps were increased. The material removal threshold was established at 0.1 mJ (0.78 x 10(5) j/m(2)). Optimum surface texturing was achieved at a combination of 0.3 mJ (2.38 x 10(5) j/m(2)) and 50%, pulse energy and lateral pulse overlap respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:长期以来,诸如研磨和研磨之类的传统磨料技术一直用于工程材料的表面处理。然而,在诸如氮化硅(Si 3 N 4)之类的硬而脆的材料的加工中,机械加工经常伴随着许多缺点,这些缺点要么导致较差的表面质量,要么导致工件的残余表面损坏。从这个意义上讲,这项工作的重点是在用于各种摩擦学应用的加工刀具刀片的制造中,将脉冲模式纳秒Nd:YAG激光系统应用于Si3N4-SiC复合材料的表面纹理化。样品以变化的激光能量(0.1-0.6 mJ)和横向脉冲重叠(50-8%)进行加工,以便在样品表面上产生一系列线性平行的微槽。结果表明,随着脉冲能量和横向重叠的增加,材料去除的对数增加。材料去除阈值确定为0.1 mJ(0.78 x 10(5)j / m(2))。在0.3 mJ(2.38 x 10(5)j / m(2))和50%的组合下可获得最佳的表面纹理,脉冲能量和横向脉冲重叠。 (C)2016 Elsevier B.V.保留所有权利。

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