期刊名称:Lecture Notes in Engineering and Computer Science
印刷版ISSN:2078-0958
电子版ISSN:2078-0966
出版年度:2018
卷号:2235&2236
页码:700-707
出版社:Newswood and International Association of Engineers
摘要:Effects of process parameters on vibration
frequency of Perspex round plastic bars was investigated
experimentally under clamped - free (C - F) boundary
condition during turning operation. Mathematical models were
developed using Taguchi L9 orthogonal array design. Spindle
speed (V), feed rate (f), and depth of cut (d) were selected as
input variables in order to predict the effects of vibration
frequency on the work-piece. Nine samples were run in a CNC
lathe machine, and each of the experimental result was
measured using DTO 32105 frequency analyser and a MXC1600
digital frequency counter. A minimum vibration
frequency of 104.8 Hz was obtained at a cutting speed of 320
m/min, feed rate 0.05 min/rev and at a depth of cut of 0.5 mm.
The mathematical model developed shows the accuracy of
predicting the vibration frequency to be 99.5% and the various
combinations of parameters that results in the minimum
vibration frequency were determined. Obtained optimum
input parameters for vibration frequency indicated that
production operations of Perspex round plastic bars could be
enhanced.