|
|
Improved dynamic simulation of end-milling process using time series analysis
|
|
|
|
|
نویسنده
|
Moetakef Imani B. ,Pour M. ,Ghoddosian A. ,Fallah M.
|
منبع
|
scientia iranica - 2012 - دوره : 19 - شماره : 2-B - صفحه:294 -302
|
چکیده
|
Milling is a competitive manufacturing process that is widely used in automotive, aerospace,biomechanical and die/mould industries. due to the complex geometry and intricate mechanics of milling,the realistic simulation of various milling processes is a challenging research task. accurate simulation ofthe milling process requires a proper knowledge of its dynamics. in this paper, a method is developedfor the accurate prediction of cutting forces and surface texture in the end-milling operation, based ontime series analysis (tsa). in the proposed approach, an equivalent damping ratio is defined for thecutting zone, while the damping ratio of the non-cutting zone is determined by experimental modalanalysis. using a correlation sum criterion, the simulation and experimental force signals are compared toanticipate the value of process damping inside the cutting zone, by assessing the variations in correlationdimensions for both signals. the simulation algorithm incorporates the time finite element analysis(tfea) for predicting the dynamics of the milling system. it also takes into account the effect of cutterdeflections and run out. the feasibility of the proposed algorithm is verified experimentally for the sidewall machining of aluminum 7075-t6, using a high speed steel (hss) helical end mill. the implementedmodel can accurately predict cutting forces and a 3d surface texture for low radial immersion cutting
|
کلیدواژه
|
End-milling process;TFEA;Dynamic cutting forces;Su
|
آدرس
|
ferdowsi university of mashhad, Professor, ایران, semnan university, Ph D degree student, ایران, ferdowsi university of mashhad, Assistant Professor, ایران, ferdowsi university of mashhad, M S degree student , ایران
|
پست الکترونیکی
|
desolids@gmail.com
|
|
|
|
|
|
|
|
|
|
|
|
Authors
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|