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High speed cryogenic finish machining of Ti-6Al4V with polycrystalline diamond tools

机译:具有多晶金刚石工具的Ti-6Al4V高速低温结合加工

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摘要

In this work, Ti-6Al4 V alloy was machined using polycrystalline diamond (PCD) tools under three different cooling/lubricating environments: cryogenic cooling (liquid nitrogen (LN2) at - 195.8 degrees C), hybrid cooling/lubrication (LN2 and oil based MQL - minimum quantity lubrication) as well as conventional flood cooling (emulsion). The machining parameters were selected to achieve very low kinematic surface roughness (f = 0.01 mm/rev, a(p) = 0.1 mm) and three cutting speeds of v(c) = 120, 240 and 360 m/min were evaluated. The as-machined surface integrity was compared for all conditions, showing significant improvements in surface and sub-surface properties with both cryogenic and hybrid cooling as compared to flood cooling. Although the PCD tools are not commonly used in high speed machining of Ti alloys because of the problem of thermally induced chemical wear, it was found that with the use of cryogenic cooling, the tribological system changed sufficiently to allow for sustained machining performance, with very low tool-wear (VBc(cryogenic) < 10 pm after 65 min of cutting at v(c) = 240 m/min). Surface roughness values were as low as R-a = 40 nm for cryogenic machining. Interestingly, flood machining did not lead to reduce surface roughness values. However, hybrid cooling/lubrication did yield the lowest cutting forces compared to both flood and cryogenic conditions. All conditions evaluated during this study resulted in cutting forces of less than 15 N, suggesting that cryogenic precision machining with PCD tools may be a suitable alternative to grinding, even for slender and thin-walled components.
机译:在这项工作中,钛 - 6Al4 V合金体系是用多晶金刚石(PCD)在三个不同的冷却/润滑环境中的工具加工:(在液氮(LN2) - 195.8℃)的低温冷却,混合冷却/润滑(LN2和油基MQL - 最小量润滑)以及常规的洪水冷却(乳液)。选择加工参数以实现非常低的运动的表面粗糙度(F = 0.01毫米/转,第(p)= 0.1毫米),进行评价V(C)= 120,240和360米/分三个切割速度。将如此机加工的表面完整性在所有条件下进行比较,示出了表面和亚表面特性与两个低温和混合冷却相比洪水​​冷却作为显著改进。尽管PCD工具不因热引起的化学磨损的问题,钛合金的高速加工常用的发现与使用低温冷却的,摩擦学系统足够的变化,使得持续的机械加工性能,具有非常低工具磨损(VBC(低温)<之后在v(C 65分钟切削的下午10点)= 240米/分钟)。表面粗糙度值分别为低到R-A = 40纳米用于低温加工。有趣的是,洪水加工并没有导致减少的表面粗糙度值。然而,混合冷却/润滑确实产生相比,无论洪水和低温条件的最低切削力。该研究期间评估的所有条件导致切割不足为15N的力,这表明与PCD刀具低温精密机械加工可以是合适的替代磨削,即使对于细长和薄壁部件。

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