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Characteristics of sugar maple wood surfaces machined with the fixed-oblique knife pressure-bar cutting system

机译:固定斜刀压杆切割系统加工的枫木表面的特性

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摘要

Oblique cutting differs from orthogonal cutting by an inclination given to the knife edge, which induces several changes on tool geometry, cutting forces, as well as on the quality of machined surfaces. In this work, a pressure bar was used during oblique cutting to reduce the occurrence of torn grain. The effects of cutting depth, rake angle, and oblique angle on cutting forces and surface quality were studied. Surface topography, cell damage and wetting properties were used to assess surface quality. All force components were increased by increasing cutting depth and decreasing rake and oblique angles. The lateral force, however, increased as the oblique angle increased. The surface roughness increased with increasing the lateral cutting force. Higher cutting depths and oblique angles tended to provide higher surface roughness, while higher rake angles tended to reduce surface roughness. The pressure bar was not always able to completely prevent the occurrence of defects when cutting against the grain. The occurrence of machining defects increased at higher cutting depths and oblique angles. As the rake angle decreased, the type of machining defect tended to change from torn grain to slight fuzzy grain. Moreover, the best wetting properties were obtained at lower rake angles, as they induced higher surface roughness. A 25° rake angle, a 30° oblique angle, and thinner cutting depths should be preferred to reduce dependence on ulterior sanding.
机译:斜切削与正交切削的不同之处在于刀刃的倾斜度,这会引起刀具几何形状,切削力以及加工表面质量的若干变化。在这项工作中,在斜切过程中使用了压力杆,以减少出现谷物撕裂的情况。研究了切削深度,前角和倾斜角对切削力和表面质量的影响。表面形貌,细胞损伤和润湿性能用于评估表面质量。通过增加切削深度并减小前角和斜角,可以增加所有力分量。但是,横向力随着倾斜角度的增加而增加。表面粗糙度随着横向切削力的增加而增加。较高的切削深度和倾斜角倾向于提供较高的表面粗糙度,而较高的前角倾向于减小表面粗糙度。当压切谷物时,压力棒并不总是能够完全防止缺陷的发生。在较高的切削深度和倾斜角度下,加工缺陷的发生率增加。随着前角的减小,加工缺陷的类型倾向于从撕裂的晶粒变为轻微的模糊晶粒。此外,在较低的前角下可获得最佳的润湿性能,因为它们引起较高的表面粗糙度。倾斜角度为25°,倾斜角度为30°且切削深度较薄时,应优先选择,以减少对别处打磨的依赖性。

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