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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Abrasive waterjet micro-machining of channels in metals: Comparison between machining in air and submerged in water
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Abrasive waterjet micro-machining of channels in metals: Comparison between machining in air and submerged in water

机译:金属通道的磨料水射流微加工:空气加工和浸入水中的比较

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摘要

Abrasive water jet technology can be used for micro-milling using recently developed miniaturized nozzles. Abrasive water jet (AWJ) machining is often used with both the nozzle tip and workpiece submerged in water to reduce noise and contain debris. This paper compares the performance of submerged and unsubmerged abrasive water jet micro-milling of channels in 316L stainless steel and 6061-T6 aluminum at various nozzle angles and standoff distances. The effect of submergence on the diameter and effective footprint of AWJ erosion footprints was measured and compared. It was found that the centerline erosion rate decreased with channel depth due to the spreading of the jet as the effective standoff distance increased, and because of the growing effect of stagnation as the channel became deeper. The erosive jet spread over a larger effective footprint in air than in water, since particles on the jet periphery were slowed much more quickly in water due to increased drag. As a result, the width of a channel machined in air was wider than that in water. Moreover, it was observed that the instantaneous erosion rate decreased with channel depth, and that this decrease was a function only of the channel cross-sectional geometry, being independent of the type of metal, the jet angle, the standoff distance, and regardless of whether the jet was submerged or in air, in either the forward or backward directions. It is shown that submerged AWJM results in narrower features than those produced while machining in air, without a decrease in centerline etch rate. (C) 2014 Elsevier Ltd. All rights reserved.
机译:磨料水射流技术可用于使用最近开发的微型喷嘴进行微铣削。喷水嘴(AWJ)加工经常用于喷嘴头和浸没在水中的工件,以减少噪音并包含碎屑。本文比较了在各种喷嘴角度和支座距离下,在316L不锈钢和6061-T6铝中通道的浸入式和非浸入式水刀微铣削的性能。测量并比较了浸没对AWJ侵蚀足迹的直径和有效足迹的影响。结果发现,中心线侵蚀率随着通道深度的增加而降低,这是由于射流的扩展随着有效对峙距离的增加而增加,并且由于通道越深,停滞效应的影响越大。侵蚀性射流比空气中的空气在空气中的有效足迹更大,这是因为由于阻力增加,射流周边的颗粒在水中的速度要快得多。结果,在空气中加工的通道的宽度比在水中加工的通道的宽度宽。此外,观察到瞬时腐蚀速率随通道深度而降低,并且这种降低仅是通道横截面几何形状的函数,与金属类型,喷射角,支座距离无关,并且与无论喷头是浸没在空中还是向前或向后都在空中。结果表明,与在空气中加工时相比,浸没式AWJM所产生的特征更窄,而中心线蚀刻速率却没有降低。 (C)2014 Elsevier Ltd.保留所有权利。

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