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首页> 外文期刊>South African journal of industrial engineering >EFFECT OF MILLING STRATEGY AND TOOL GEOMETRY ON MACHINING COST WHEN CUTTING TITANIUM ALLOYS
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EFFECT OF MILLING STRATEGY AND TOOL GEOMETRY ON MACHINING COST WHEN CUTTING TITANIUM ALLOYS

机译:切削策略和刀具几何形状对切削钛合金时加工成本的影响

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The growing demands on aerospace manufacturers to cut more difficult-to-machine materials at increasing material removal rates require that manufacturers enhance their machining capability. This requires a better understanding of the effects of milling strategies and tool geometries on cutting performance. Ti6Al4V is the most widely-used titanium alloy in the aerospace industry, due to its unique combination of properties. These properties also make the alloy very challenging to machine. Complex aerospace geometries necessitate large material removal, and are therefore generally associated with high manufacturing costs. To investigate the effect of milling strategy and tool geometry on cutting performance, the new constant engagement milling strategy was firstly compared with a conventional approach. Thereafter, a component was milled with different cutting tool geometries. Cost savings of more than 40% were realised by using a constant engagement angle milling strategy. A reduction of 38% in machining time was achieved by using tools with a land on the rake side of the cutting edge. These incremental improvements made it possible to enhance the overall performance of the cutting process.
机译:航空制造商对以更高的材料去除率切削更难加工的材料的需求不断增长,这就要求制造商增强其加工能力。这需要更好地了解铣削策略和刀具几何形状对切削性能的影响。由于其独特的性能组合,Ti6Al4V是航空航天工业中使用最广泛的钛合金。这些性能也使合金的加工非常困难。复杂的航空几何形状需要大量的材料去除,因此通常伴随着高制造成本。为了研究铣削策略和刀具几何形状对切削性能的影响,首先将新的恒定啮合铣削策略与常规方法进行了比较。之后,用不同的切削刀具几何形状铣削零件。通过采用恒定啮合角铣削策略,可节省40%以上的成本。通过使用刃口在切削刃前刀面的刀具,加工时间减少了38%。这些渐进的改进使增强切割过程的整体性能成为可能。

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