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Using wire shaping techniques and holographic optics to optimise deposition characteristics in wire-based laser cladding

机译:使用线成形技术和全息光学技术优化线基激光熔覆中的沉积特性

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摘要

In laser cladding, the potential benefits of wire feeding are considerable. Typical problems with the use of powder, such as gas entrapment, sub-100% material density and low deposition rate are all avoided with the use of wire. However, the use of a powder-based source material is the industry standard, with wire-based deposition generally regarded as an academic curiosity. This is because, although wire-based methods have been shown to be capable of superior quality results, the wire-based process is more difficult to control. In this work, the potential for wire shaping techniques, combined with existing holographic optical element knowledge, is investigated in order to further improve the processing characteristics. Experiments with pre-placed wire showed the ability of shaped wire to provide uniformity of wire melting compared with standard round wire, giving reduced power density requirements and superior control of clad track dilution. When feeding with flat wire, the resulting clad tracks showed a greater level of quality consistency and became less sensitive to alterations in processing conditions. In addition, a 22% increase in deposition rate was achieved. Stacking of multiple layers demonstrated the ability to create fully dense, three-dimensional structures, with directional metallurgical grain growth and uniform chemical structure.
机译:在激光熔覆中,送丝的潜在好处是巨大的。使用金属丝可避免使用粉末的典型问题,例如气体截留,低于100%的材料密度和低沉积速率。但是,使用粉末基原料是行业标准,通常将基于线的沉积视为一种学术好奇心。这是因为,尽管已证明基于导线的方法能够获得优异的质量结果,但是基于导线的过程更难以控制。在这项工作中,结合现有的全息光学元件知识,研究了线成形技术的潜力,以进一步改善加工特性。预先放置的金属丝的实验表明,与标准的圆形金属丝相比,异形金属丝能够提供均匀的金属丝熔化,从而降低了功率密度要求,并能更好地控制包层轨迹稀释。当用扁线进给时,所得到的包层轨迹显示出更高的质量一致性水平,并且对加工条件的变化不那么敏感。此外,沉积速率提高了22%。多层堆叠显示了能够创建完全致密的三维结构,具有定向冶金晶粒生长和均匀化学结构的能力。

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