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首页> 外文期刊>International Journal of Surface Science and Engineering >Superficial alterations in the generation of a 3D surface. The case of machining by turning. Application of principal component analysis to the study of the various factors involved
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Superficial alterations in the generation of a 3D surface. The case of machining by turning. Application of principal component analysis to the study of the various factors involved

机译:3D表面产生的肤浅改变。 通过转动加工的情况。 主要成分分析在各种因素研究中的应用

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摘要

Surface quality is an essential requisite in the manufacturing industry. In order to perform an in-depth study into the mechanisms that govern the formation of this surface, all factors involved in the machining process must be ascertained. The resulting surface after turning (real surface) is studied as the superposition of multiple surfaces. A first surface, (tool surface), is generated from the geometry of the tool and machining parameters. A second surface (vibration surface) is generated from the vibration of the tool. Finally, a third surface (other-factors surface) is taken as the joint result of fracture of material, elastic recoveries, plastic deformations, hardness, kinematic, deposits and/or adhesions of material and/or tool wear. The comparison of these four surfaces enables this objective to be reached. A new parameter denominated dispersion is defined. Principal component analysis (PCA) is used in the definition of this parameter.
机译:表面质量是制造业的必要条件。 为了对管理该表面形成的机制进行深入研究,必须确定加工过程中涉及的所有因素。 在转弯(真实表面)之后的所得表面作为多个表面的叠加。 从工具和加工参数的几何形状产生第一表面(工具表面)。 从工具的振动产生第二表面(振动表面)。 最后,将第三表面(其他因子表面)作为材料破裂的关节结果,弹性回收,塑性变形,硬度,运动,沉积和/或材料粘连和/或工具磨损的粘连。 这四个表面的比较使得能够达到该目标。 定义了一个新的参数计数分散。 主成分分析(PCA)用于该参数的定义。

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