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Fabrication of coated tool with femtosecond laser pretreatment and its cutting performance in dry machining SLM-produced stainless steel

机译:用飞秒激光预处理制造涂层工具及其在干式加工SLM制造的不锈钢中的切割性能

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摘要

Selective Laser Melting (SLM) technique applied to the stainless steel has been developing rapidly in the biomedical and aerospace industries. However, a post-machining is still needed to efficiently improve the surface finish and dimensional precision of the SLM-produced stainless steel parts. Dry machining (machining without the using of cutting fluid) is attracting interest around the world, which can reach green manufacturing without water pollution, residue on the swarf, and danger to health. In this work, to achieve the green finishing machining of SLM-produced AISI 316 L stainless steel, the hard coated tools with a nanotextured substrate were designed, and the key preparation methods of this developed tools were presented. First, a periodic nano-ripple structure (nanotexture) was induced by femtosecond laser scanning on the WC/Co substrate tool with different processing parameters, then TiAlN film was deposited on the nanotextured substrate surface using the cathode arc-evaporation technique without employing any interlayer. The surface micro-topography and mechanical property of the nanotextured TiAlN coated surface were studied. Machining tests without cutting fluid were performed on the SLM-produced stainless steel using the developed tool, and the cutting tool without laser pretreatment was also employed for the comparison. The obtained results demonstrate that, the TiAlN coatings adhesiveness is significantly enhanced by the femtosecond laser-induced periodic structure on the WC/Co substrate, and the critical load of the TiAlN coatings is increased from 57 to 73 N. The improved machining performances of nanotextured tools in drying cutting SLM 316 L stainless steel are achieved, resulting in a decrease of 10-20% in cutting forces, a decrease of 10-15% in cutting temperature and a high surface quality of the machined workpieces at the high cutting speed. The possible mechanisms for the effects of femtosecond laser pretreatment are discussed.
机译:适用于不锈钢的选择性激光熔化(SLM)技术在生物医学和航空航天行业中迅速发展。然而,仍然需要进行后加工,以有效地改善SLM制造的不锈钢部件的表面光洁度和尺寸精度。干式加工(无需使用切削液的加工)正在吸引世界各地的兴趣,这可以在没有水污染的情况下达到绿色制造,伤员的残留物以及健康的危险。在这项工作中,为了实现SLM制作的AISI 316 L不锈钢的绿色精加工加工,设计了具有纳米纹理基板的硬涂层工具,并提出了该开发工具的关键制备方法。首先,通过不同的处理参数对WC / Co衬底工具上的飞秒激光扫描诱导周期性纳米纹扫描结构(NanoTexture),然后使用阴极弧蒸发技术在纳米夹层基板表面上沉积TiAln薄膜,而不使用任何中间层。研究了纳米纹理TiAln涂层表面的表面微观形貌和机械性能。使用开发工具在SLM制造的不锈钢上进行加工试验,并且还采用了没有激光预处理的切削工具进行比较。所得结果表明,通过WC / Co衬底的飞秒激光诱导的周期性结构显着提高了TiAln涂层粘合性,并且TiAln涂层的临界负荷从57到73 N增加。纳米纹理的改进的加工性能实现干燥切割SLM 316 L不锈钢的工具,导致切割力减小10-20%,切割温度降低10-15%,加工工件的高度切削速度的高表面质量。讨论了飞秒激光预处理效果的可能机制。

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