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Analysis of Secondary Adhesion Wear Mechanism on Hard Machining of Titanium Aerospace Alloy

机译:钛合金航空硬加工中二次附着磨损机理的分析

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摘要

Titanium alloys are widely used in important manufacturing sectors such as the aerospace industry, internal components of motor or biomechanical components, for the development of functional prostheses. The relationship between mechanical properties and weight and its excellent biocompatibility have positioned this material among the most demanded for specific applications. However, it is necessary to consider the low machinability as a disadvantage in the titanium alloys features. This fact is especially due to the low thermal conductivity, producing significant increases in the temperature of the contact area during the machining process. In this aspect, one of the main objectives of strategic industries is focused on the improvement of the efficiency and the increase of the service life of the elements involved in the machining of this alloy. With the aim to understand the most relevant effects in the machinability of the Ti6Al4V alloy, an analysis is required of different variables of the machining process like tool wear evolution, based on secondary adhesion mechanisms, and the relation between surface roughness of the work-pieces with the cutting parameters. In this research work, a study on the machinability of Ti6Al4V titanium alloy has been performed. For that purpose, in a horizontal turning process, the influence of cutting tool wear effects has been evaluated on the surface finish of the machined element. As a result, parametric behavior models for average roughness (Ra) have been determined as a function of the machining parameters used.
机译:钛合金广泛用于重要的制造领域,例如航空航天工业,电机的内部组件或生物机械组件,以开发功能性假体。机械性能和重量之间的关系及其出色的生物相容性使该材料跻身于特定应用最需要的位置。但是,必须考虑将低切削性作为钛合金特征的缺点。这一事实尤其是由于导热系数低而导致在加工过程中接触区域的温度显着升高。在这方面,战略性工业的主要目标之一是提高这种合金加工中涉及的元素的效率并延长其使用寿命。为了理解与Ti6Al4V合金的切削性最相关的影响,需要基于辅助粘合机理,分析加工过程的不同变量,例如刀具磨损的演变,以及工件表面粗糙度之间的关系。与切割参数。在这项研究工作中,已经对Ti6Al4V钛合金的切削性进行了研究。为此,在水平车削过程中,已经评估了切削刀具磨损效果对加工元件表面光洁度的影响。结果,已根据所使用的加工参数确定了平均粗糙度(Ra)的参数行为模型。

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