Influence of offset Magnitude e c and Angular Location λ c on Different Parameters along with their Calibration Methods and Improvements: A review

Junaid Saeed
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Abstract

The purpose of this paper is to elaborate different methods and techniques used by various researchers as a scientist or engineers for the decrement of the effect of geometric parameters (offset magnitude ec and angular location vector λc ) on different machining parameters (cutting forces, high tool wear and etc.), cutting tools geometry, work piece material and etc. As three axis or five axis milling machine is used in different areas such as in mechanical, civil, aeronautical engineering fields and etc. for the machining of parts where we can’t make compromises in terms of dimensional accuracy such as for jet parts, automobile parts and etc. where highly qualified surface finished products were required. So it is very important to study all the aspects which create problems in the way of destination and do trial through different technical techniques along with the best decision in terms of selecting different cutting parameters (axial and radial depth of cut, feed rate and etc.), creation of mathematical models for cutting forces and etc. Presence of eccentricity or run out characteristics in between spindle and tool or tool and work piece creates uncompromising situations so it should be considered.
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偏移量e c和角度位置λ c对不同参数的影响及其校准方法和改进综述
本文的目的是阐述作为科学家或工程师的各种研究人员用于减少几何参数(偏移量ec和角位置向量λc)对不同加工参数(切削力,刀具高磨损等),刀具几何形状,工件材料等的影响的不同方法和技术。由于三轴或五轴铣床用于不同的领域,如机械,民用,航空工程等领域的零件加工,我们不能在尺寸精度方面妥协,如喷气零件,汽车零件等,高质量的表面成品的要求。因此,研究在目的地方式中产生问题的所有方面,通过不同的技术技术进行试验,并在选择不同的切削参数(轴向和径向切削深度,进给速度等)方面做出最佳决策,建立切削力的数学模型等等,这是非常重要的。在主轴和刀具之间或刀具和工件之间存在偏心或跑偏特性会造成不妥协的情况,因此应予以考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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