A thorough analysis of the effect of operative conditions of injection molding process on the morphology distribution inside the obtained molded is performed, with particular reference to semi-crystalline polymers. In particular, fully characterized injection molding tests are presented using an isotactic polypropylene, previously carefully characterized as far as most of properties of interest. The effects of mold temperature and packing conditions are analyzed. The mold temperature was controlled by a thin heating device, composed by polyimide as insulating layer and polyimide loaded carbon black as electrical conductive layer, that is able to increase temperature on mold surface in few seconds (70 degrees C/s) by joule effect and cool down soon after. The shear layer thickness in the molded is reduced in the samples produced at high mold temperatures, that means high electrical power and long heating time, and this reduction is more significant at lower packing pressures, indeed, at 360bar as packing pressure and 20s as heating time the shear layer disappear. The resulting morphology was analyzed by optical microscope.

Rapid Control of mold Temperature during Injection Molding Process: Effect of Packing Pressure

Sorrentino Andrea;
2015

Abstract

A thorough analysis of the effect of operative conditions of injection molding process on the morphology distribution inside the obtained molded is performed, with particular reference to semi-crystalline polymers. In particular, fully characterized injection molding tests are presented using an isotactic polypropylene, previously carefully characterized as far as most of properties of interest. The effects of mold temperature and packing conditions are analyzed. The mold temperature was controlled by a thin heating device, composed by polyimide as insulating layer and polyimide loaded carbon black as electrical conductive layer, that is able to increase temperature on mold surface in few seconds (70 degrees C/s) by joule effect and cool down soon after. The shear layer thickness in the molded is reduced in the samples produced at high mold temperatures, that means high electrical power and long heating time, and this reduction is more significant at lower packing pressures, indeed, at 360bar as packing pressure and 20s as heating time the shear layer disappear. The resulting morphology was analyzed by optical microscope.
2015
Istituto per i Polimeri, Compositi e Biomateriali - IPCB
Inglese
POLYMER PROCESSING WITH RESULTING MORPHOLOGY AND PROPERTIES: FEET IN THE PRESENT AND EYES AT THE FUTURE: PROCEEDINGS OF THE GT70 INTERNATIONAL CONFERENCE
THE GT70 INTERNATIONAL CONFERENCE
1695
4
Sì, ma tipo non specificato
15-17 October 2015
Salerno, Italy
Rapid Control
Mold Temperature
Injection Molding
3
none
Liparoti, Sara; Sorrentino, Andrea; Titomanlio, Giuseppe
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/309218
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