Title :
A Multivariate Sensor for Intelligent Polymer Processing
Author :
Kazmer, David O. ; Gordon, Guthrie W. ; Mendible, Gabriel A. ; Johnston, Stephen P. ; Xinyao Tang ; Zhaoyan Fan ; Gao, Robert X.
Author_Institution :
Univ. Massachusetts Lowell, Lowell, MA, USA
Abstract :
A multivariate sensor is described for intelligent polymer processing that incorporates a piezoelectric ring to acquire melt pressure as well as a thermopile to acquire melt temperature and mold temperature. The mechatronic system analyzes the process states according to mechanistic relations to estimate the melt velocity and melt viscosity. Validation experiments are implemented to characterize the sensor´s performance against an array of commercial sensors. Models of product quality with the described sensor far outperform those based on data from commercial sensors. While system identification of the transient thermopile voltage indicates an underdamped response that limited the model fidelity, the existing capability suggests a new standard for mold design that incorporates multivariate sensors into the runner system to provide a consistent set of physical states for process tuning irrespective of molding machine manufacturer and model.
Keywords :
mechatronics; moulding; polymers; thermopiles; viscosity; intelligent polymer processing; mechatronic system; melt pressure; melt temperature; melt velocity estimation; melt viscosity estimation; model fidelity; mold design; mold temperature; multivariate sensors; physical states; piezoelectric ring; process tuning; product quality; runner system; system identification; transient thermopile voltage; underdamped response; Cavity resonators; Lenses; Polymers; Temperature measurement; Temperature sensors; Viscosity; Intelligent sensors; manufacturing automation; piezoelectric devices; thermistors; thermoelectric devices; thickness control;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2014.2363691