VMC端面铣刀振动幅值比的优化及与设计专家的分析,为垫片设计提供依据

Nayana B. Gandhi, D. Pandya
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引用次数: 0

摘要

为提高平面铣刀高主轴转速机床运行的稳定性,提出了一种新型的被动阻尼器的概念、设计和研制。本文的目的是研究不同类型垫片的面铣刀在VMC上的动态行为,包括对面铣刀的动态运动行为的研究,不同类型垫片设计的行为和振动行为,采用幅值比法和设计专家的分析。研究工作支持Ansys计算分析,35个VMC实验记录,并通过ANOVA/Design Expert分析不同类型垫片的颤振动力学行为。研究了切削速度(250,200,150 m/min)、每齿进给量(0.05,0.1,0.15mm/齿)、切削深度(1.2 mm, 1.0 mm, 0.8 mm)和不同类型的面铣刀材料(垫片)等工艺参数对VMC的影响,利用方差分析分析了X方向、Y方向振幅比等响应,并利用Design Expert对AISI 2062钢进行了优化。采用实验设计(DOE)技术开发了一种实验方法。采用最佳析因法设计4个因子3个水平的正交阵列。在这里,主要的结果是基于幅度比、方差分析和优化。采用方差分析确定加工参数对X中振动幅值比的影响;这有助于通过时域FFT评估铣削操作的稳定性,并通过方差分析进行分析。数据通过35组VMC实验进行验证。在高水平的研究人员、学者和实业家看来,物理实验可能不足以得出薄板的使用及其在VMC面铣刀上的需求。因此,这里基于最优因子法的优化是使用Design Expert软件执行的,其中使用了35个实验和70个群体的迭代来运行程序。研究发现,在本研究中最关键的参数是垫片的材料。采用方差分析和设计专家优化方法对高切削参数下的硬质合金垫片和低、中切削参数下的SS垫片进行了验证,并进行了35组VMC实验。因此,这些垫片设计支持通用解决方案。
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Optimization of vibration amplitude ratio of face mill tool of VMC and analysis with design expert to endorsing shim design
This paper presents the concept, design and development of shim (passive damper) to improve the stability for high spindle speed machine operation of face mill tool. The objective of this paper is to learning the dynamic behavior of a face mill tool on VMC with dissimilar types of shims which cover investigation of dynamic motion behavior of the face mill tool, the behavior of different types of shim design and behavior of vibration by using the amplitude ratio method and analysis by a Design Expert. Research work supported computational analysis with Ansys, 35 VMC experimental records and analyzed by ANOVA/Design Expert with different type of shims to observe a dynamic behavior of chatter. It include of the effect of process parameters like Cutting speed (250,200,150 m/min), feed per tooth (0.05, 0.1, 0.15mm/tooth), depth of cut (1.2 mm, 1.0 mm, 0.8 mm), and different types of materials (shims) for face mill tool on VMC, for analyzing the responses like amplitude ratio in X – direction, Y- direction with ANOVA and optimizing for AISI 2062 steel by Design Expert. An experimental methodology was developed using the DOE (Design of experiment) technique. The optimum factorial method was used to design an orthogonal array of four factors having three levels. Here, the main results are based on amplitude ratio, ANOVA analysis and optimization. ANOVA was used to decide the effects of the machining parameters on the vibration amplitude ratio in X; and vibration amplitude ratio in Y. This is useful for evaluating the stability of milling operations via time domain FFT and analyzed by ANOVA. Data are validated by 35 sets of VMC experiments. Physical 35 experiments may be not enough in a view of high level researchers, academicians and industrialist to conclude the use of shim and it need in face mill tool on VMC. Hence here optimization based on optimum factorial method is executed using Design Expert software in which 35experiments and its iterations with 70 populations were used to run the program. It is found that the most critical parameter in this study is the material of Shim. At high cutting parameters carbide shim, at low and medium cutting parameters SS shim are given better results by ANOVA and Optimization of Design Expert also validated by 35 sets of VMC experiments. Hence these shim designs endorse versatile solutions.
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