首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Experimental Investigation and Optimization of Cutting Force and ToolWear in Milling Al7075 and Open-Cell SiC Foam Composite
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Experimental Investigation and Optimization of Cutting Force and ToolWear in Milling Al7075 and Open-Cell SiC Foam Composite

机译:铣削AL7075中切割力和工具包装的实验研究和优化开放式电池SIC泡沫复合材料

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摘要

In the present study, aluminium alloy-based metal matrix composites were fabricated by infiltrating Al7075 into a three-dimensional open-cell silicon carbide (SiC) foam using the liquid metallurgy method. The effects of machining variables on the milling force and tool wear during milling of both Al7075 and the open-cell SiC foam metal matrix composite (MMC) using an uncoated carbide cutting tool were studied. The milling experiments were performed based on the Taguchi L_(27) full-factorial orthogonal array, and the milling variables were optimized for cutting force and tool wear. The test results showed that the cutting depth was the most significant cutting parameter affecting milling force in themilling of bothworkpiece materials. Cutting tool wearwas directly affected by the cutting depth in the milling of MMC, and the feed rate was the most influential factor on the tool wear in the milling of Al7075. Uncoated carbide tool showed an excellent machining performance below a machining speed of 220 m/min in finish milling Al7075workpiece material, but excessive edge chippingwas observed on the cutting tool surface in the milling of MMCs. Second-order mathematical models with respect to milling parameters were created for prediction of cutting force and tool wear.
机译:在本研究中,通过液体冶金方法将Al70​​75渗透到三维开孔碳化物(SiC)泡沫中,制造基于铝合金的金属基质复合材料。研究了使用未涂覆的碳化物切削工具研磨过程中铣削力和刀具磨损过程中的加工变量对铣削力和工具磨损的影响。基于Taguchi L_(27)全因子正交阵列进行铣削实验,并针对切割力和工具磨损优化铣削变量。测试结果表明,切削深度是影响磨损磨损的最重要的切割参数。切割工具耐磨直接受到MMC铣削中的切削深度影响的切削深度,并且进料速率是AL7075铣削工具磨损中最有影响力的因素。未涂覆的硬质合金工具在终止铣削AL7075 Working材料中低于220米/分钟的加工速度的优异加工性能,但在铣削MMC的铣削中观察到过度的削皮。为预测切割力和刀具磨损而产生相对于研磨参数的二阶数学模型。

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