确定不同润滑条件下未涂层硬质合金刀具与 Ti-6Al-4V 合金之间的摩擦系数

Achraf Fersi
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引用次数: 0

摘要

摘要在加工过程中,刀具和工件(切削面和侧面)之间的摩擦是一种重要的摩擦学现象,因为它对切削操作有很大影响。事实上,较高的摩擦力会导致切削力增加、发热量增大、刀具过早磨损和表面退化。本研究的重点是不同冷却条件(干式、乳化、低温)下的刀具(WC/Co)/工件(Ti-6Al-4V)摩擦。摩擦系数的确定需要通过数值模拟来分离摩擦学现象。为此,比较了几种建模方法(拉格朗日、CEL 和 ALE)。实验测试表明,摩擦系数不仅取决于滑动速度,还取决于润滑模式。特别是在低温条件下,摩擦系数最小。在摩擦区域观察到了 WC/Co 销上的粘附现象,尤其是在高滑动速度下。
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Identification of friction coefficient between uncoated carbide tool and Ti-6Al-4V alloy under different lubrication conditions
Abstract. During machining, the friction between the tool and the workpiece (cutting face and flank face) is a significant tribological phenomenon because it strongly influences the cutting operation. Indeed, higher friction leads to an increase of cutting forces, a greater heat generation, a premature tool wear and a surface degradation. This study focuses on tool (WC/Co)/workpiece (Ti-6Al-4V) friction under different cooling conditions (dry, emulsion, cryogenic). Determining the friction coefficient requires numerical simulations to separate the tribological phenomena. For this purpose, several modeling methods are compared (Lagrangian, CEL, and ALE). Experimental tests revealed that the friction coefficient depends not only on the sliding velocity but also on lubrication modes. Specifically, the lowest friction coefficient is obtained under cryogenic condition. Adhesive phenomena on the WC/Co pin are observed in the friction zone, particularly at high sliding velocities.
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