Paul J. Huspeni
Amoco
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Paul J. Huspeni.
Journal of Rheology | 1990
Paul D. Frayer; Paul J. Huspeni
Independent LCP melt rheological measurements were performed using both capillary and slit rheometer die equipment. The latter was attached to the end of a laboratory extruder so that the attending rheological measurements were obtained under actual processing conditions. The viscosity–shear rate behavior determined by these two methods for the subject LCP melts was significantly different. For a specified melt temperature and shear rate, the viscosity measured by the slit rheometer was as much as 10× lower than that measured by capillary rheometry. The above measured viscosity differences appear real since corresponding viscosity measurements on conventional polymers such as LLDPE and HDPE by these two methods produced equivalent results. Thus, the rheology of these LCP melts is strongly dependent upon preshear history, die geometry, and residence time. This dependence is attributed to the highly anisotropic nature of the LCP melt, the tendency of the polymer ‘‘domains’’ or chains to orient when processe...
Archive | 1989
Brian Allen Stern; Marcus Matzner; Richard Layton; Paul J. Huspeni; Paul D. Frayer; James William Cleary
Archive | 1994
Paul J. Huspeni; John F. Petry; Roger W. Nelson; Steven R. Dunkle
Archive | 1990
Richard Layton; James William Cleary; Paul J. Huspeni; Paul D. Frayer; Markus Matzner
Archive | 1989
Paul J. Huspeni; Brian Allen Stern; Paul D. Frayer; Richard Layton; Markus Matzner
Archive | 1989
Richard Layton; James William Cleary; Paul J. Huspeni; Paul D. Frayer
Archive | 1991
Richard Layton; Paul J. Huspeni; Paul D. Frayer
Archive | 1990
Paul J. Huspeni; Richard Layton; Paul D. Frayer
Archive | 1990
Paul D. Frayer; Paul J. Huspeni
Archive | 1989
Richard Layton; James William Cleary; Paul J. Huspeni; Paul D. Frayer; Marcus Matzner