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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Nanosecond Yb fibre laser milling of aluminium: effect of process parameters on the achievable surface finish and machining efficiency
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Nanosecond Yb fibre laser milling of aluminium: effect of process parameters on the achievable surface finish and machining efficiency

机译:纳秒级Yb光纤铝激光铣削:工艺参数对可获得的表面光洁度和加工效率的影响

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Pulsed ytterbium-doped fibre lasers based on a master oscillator power amplifier (MOPA) architecture possess attractive characteristics over their Q-switched diode-pumped solid-state counterparts. These include a relatively low cost of ownership and a flexible operating window with respect to the pulse duration, shape and repetition rate. For micro machining applications, given this inherent large processing window available with respect to the pulse characteristics, the effect of process parameters on particular machining outcomes needs to be investigated systematically. In this context, this paper considers the effect of a number of factors on the achievable material removal rate and surface roughness when processing aluminium with such fibre laser system operating at 1,064-nm wavelength and having built-in capabilities for selecting the duration of the delivered pulses in the nanosecond regime. The process parameters under investigation in this study were the pulse duration and repetition frequency, the pulse overlap, the scanning strategy and the distance between linear machined tracks. Initial results showed that, for pulse durations comprised between 25 and 140 ns, the specific frequency at which both the highest energy and average power are delivered leads to the maximum material removal rate (MRR) achievable and to high values of surface roughness. Following this, a design of experiments was conducted for a given pulse length with the aim of identifying an optimum combination of parameters with respect to the attained surface finish while operating at the frequency resulting in the highest MRR. This optimisation study resulted in a 60-% decrease in the achieved surface roughness and also showed that the distance between machined tracks had the highest influence on the surface finish.
机译:基于主振荡器功率放大器(MOPA)架构的掺脉冲光纤激光器比其Q开关二极管泵浦固态激光器具有吸引人的特性。这些包括相对较低的拥有成本和相对于脉冲持续时间,形状和重复率的灵活操作窗口。对于微加工应用,鉴于脉冲特性具有固有的固有大加工窗口,需要系统地研究工艺参数对特定加工结果的影响。在这种情况下,本文考虑了当使用这种光纤激光器系统在1,064-nm波长下操作并具有内置功能来选择传送时间的铝加工铝时,多种因素对可实现的材料去除率和表面粗糙度的影响。纳秒范围内的脉冲。在这项研究中研究的过程参数是脉冲持续时间和重复频率,脉冲重叠,扫描策略以及线性加工轨迹之间的距离。初步结果表明,对于介于25 ns和140 ns之间的脉冲持续时间,传递最高能量和平均功率的特定频率导致可达到的最大材料去除率(MRR)和较高的表面粗糙度值。此后,针对给定的脉冲长度进行了实验设计,目的是确定相对于所获得的表面光洁度的最佳参数组合,同时以导致最高MRR的频率进行操作。这项优化研究使所达到的表面粗糙度降低了60%,并且还表明,加工轨迹之间的距离对表面光洁度的影响最大。

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