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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Quantitative evaluation of abrasive contamination in ductile material during abrasive water jet machining and minimizing with a nozzle head oscillation technique
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Quantitative evaluation of abrasive contamination in ductile material during abrasive water jet machining and minimizing with a nozzle head oscillation technique

机译:定量评估磨料水射流加工过程中延展性材料中的磨料污染,并通过喷嘴头振动技术使其最小化

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摘要

In the area of grit blasting, it is well known that microscopically small abrasive debris gets trapped on the surface, and due to impact this grit might cause the surface to fracture and a fraction of it to embed. The same problem appears in abrasive aqua jet machining (AAJM), especially in the so-called deformation wear zone or striation zone. An experimental study was undertaken on a commonly used ductile material, aluminium Al-Mg4, 5Mn, which is used as a base material for manufacturing most of the aircraft/aerospace components. The results indicated that as the depth of cut increases the grit contamination decreases. A comparison was made between straight cutting and oscillation cutting, and it was observed that oscillation cutting is 10 times better than straight cutting for ductile material with respect to particle contamination. Alternative technology is suggested to overcome the grit contamination problem.
机译:在喷砂区域,众所周知,微观上小的磨料碎片会滞留在表面上,由于撞击,这种砂砾可能会导致表面破裂并部分嵌入其中。同样的问题在磨料水射流加工(AAJM)中也会出现,特别是在所谓的变形磨损区或条纹区中。对常用的易延展材料Al-Mg4、5Mn铝进行了实验研究,该材料用作制造大多数飞机/航空航天部件的基础材料。结果表明,随着切深的增加,砂砾污染减少。在直线切割和摆动切割之间进行了比较,并且观察到,就颗粒污染而言,对于韧性材料,摆动切割比直线切割好10倍。建议使用替代技术来克服砂砾污染问题。

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