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Surface Finish and Back-Wall Dross Behavior during the Fiber Laser Cutting of AZ31 Magnesium Alloy

机译:AZ31镁合金纤维激光切割过程中的表面光洁度和后壁腐蚀行为

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摘要

Magnesium alloys are of increasing interest in the medical industry due to their biodegradability properties and better mechanical properties as compared to biodegradable polymers. Fiber laser cutting of AZ31 magnesium alloy tubes was carried out to study the effect of cutting conditions on wall surface roughness and back-wall dross. During the experiments, an argon gas chamber was adapted in order to avoid material reactivity with oxygen and thus better control the part quality. A surface response methodology was applied to identify the significance of pulse overlapping and pulse energy. Our results indicate minimum values of surface roughness (Ra < 0.7 μm) when the spot overlapping is higher than 50%. A back-wall dross range of 0.24% to 0.94% was established. In addition, a reduction in back-wall dross accumulations was obtained after blowing away the dross particles from inside the tube using an argon gas jet, reaching values of 0.21%. Laser cutting experimental models show a quadratic model for back-wall dross related with the interaction of the pulse energy, and a linear model dependent on pulse overlapping factor for surface roughness.
机译:镁合金由于与生物可降解聚合物相比具有生物降解性能和更好的机械性能,因此在医疗行业中受到越来越多的关注。进行了AZ31镁合金管的光纤激光切割,以研究切割条件对壁表面粗糙度和后壁浮渣的影响。在实验过程中,对氩气室进行了调整,以避免材料与氧气发生反应,从而更好地控制零件质量。应用表面响应方法来确定脉冲重叠和脉冲能量的重要性。我们的结果表明,当光斑重叠超过50%时,表面粗糙度的最小值(Ra <0.7μm)。建立了0.24%至0.94%的后墙渣dro范围。另外,使用氩气喷射器从管内吹走浮渣颗粒后,减少了浮渣积累量,达到了0.21%。激光切割实验模型显示了与脉冲能量相互作用相关的后壁浮渣的二次模型,以及依赖于表面粗糙度的脉冲重叠因子的线性模型。

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