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Investigation on the cutting quality characteristics of abrasive water jet machining of AA6061-B4C-hBN hybrid metal matrix composites

机译:AA6061-B4C-HBN杂交金属基复合材料磨削水喷射切割质量特性研究

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摘要

Aluminum metal matrix composites (AMMCs) explicitly show better physical and mechanical properties as compared to aluminum alloys and results in a more preferred material for a wide range of applications. The acfdition of reinforcements embargo AMMCs employment to industry requirements by increasing order of machining complexity. However, it can be machined with a high order of surface integrity by nonconventional approaches like abrasive water jet machining. Hybrid aluminum alloy composites were reinforced by B4C (5-15 vol%) and solid lubricant hBN (15vol%) particles and fabricated using a liquid metallurgy route. This research article deals with the experimental investigation on the effect of process parameters such as mesh size, abrasive flow rate, water pressure and work traverse speed of abrasive water jet machining on hybrid AA6061-B4C-hBN composites. Water jet pressure and traverse speed have been proved to be the most significant parameters which influenced the responses like kerf taper angle and surface roughness. Increase in reinforcement particles affects both the kerf taper angle and surface roughness. SEM images of the machined surface show that cutting wear mechanism was largely operating in material removal.
机译:与铝合金相比,铝金属基质复合材料(AMMCs)明确地显示出更好的物理和机械性能,并导致更优选的材料进行广泛的应用。通过增加加工复杂性的顺序,加强禁止AMMCs就业对行业要求。然而,它可以通过像磨料水喷射加工等非转化方法以高阶的表面完整性加工。通过B4C(5-15体积%)和固体润滑剂HBN(15Vol%)颗粒加固混合铝合金复合材料,并使用液体冶金途径制造。本研究制品涉及对杂交AA6061-B4C-HBN复合材料磨削水喷射加工磨料流量,水压力等工艺参数效果的实验研究。被证明是水喷射压力和横向速度是最重要的参数,影响了Kerf锥角和表面粗糙度等响应。增强颗粒的增加会影响Kerf锥角和表面粗糙度。机加工表面的SEM图像显示,切割磨损机构在很大程度上在材料去除中运行。

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