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Study of the influence of cutting parameters on the Ultimate Tensile Strength (UTS) of UNS A92024 alloy dry turned bars

机译:切削参数对Unt A92024合金干杆的最终拉伸强度(UTS)的影响

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High compression forces developed during machining processes-and the subsequent energy transferred-carry on changes in the workpiece surface. These changes are usually evaluated only from dimensional or geometrical viewpoints and less frequently form the point of view of the physicochemical surface properties. Notwithstanding, some works relating geometrical and physicochemical properties of machined surfaces can be found in the literature. It is well known that geometrical features of machined surfaces are strongly related to the cutting parameters. Therefore, it can be thought that physicochemical properties of machined surfaces depend strongly on machining parameters. This work reports on the results of a study of the influence of the turning parameters on the Ultimate Tensile Strength (UTS) of turned bars of UNS A92024 Aluminium-Copper alloy.
机译:在加工过程中产生的高压缩力 - 以及随后的能量转移 - 延续工件表面的变化。这些变化通常仅从尺寸或几何观点评估,并且不太频繁地形成物理化学表面特性的观点。尽管如此,在文献中可以找到有关机床化学和物理化学性质的一些作品。众所周知,加工表面的几何特征与切削参数强烈相关。因此,可以认为机加工表面的物理化学特性强烈地取决于加工参数。这项工作报告了研究转向参数对Unt A92024铝 - 铜合金的转动杆的最终拉伸强度(UTS)的影响的研究结果。

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