Pcd Polymere Gesellschaft Mbh

Austria Private R&D centre
Contact
Phone :
Mail :
Address :
21-25,Mannswörther StraÙe
2323 Schwechat
Austria
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Partial scientific profile
Some documents of Pcd Polymere Gesellschaft Mbh
Structure Development During Solidification in the Processing of Crystalline Polymers
1996 - 2000

Subjects :
Industrial Manufacture, Safety, Materials Technology
Contract type :
Cost-sharing contracts
Participants :
Johannes Kepler Universität Linz ÖSTERREICH
Johannes Kepler Universität Linz
Education

Institut für Chemie - Technisch-Naturwissenschaftliche Fakultät 69,AltenbergerstraÙe 4040
ÖSTERREICH
BRUNEL UNIVERSITY UNITED KINGDOM
BRUNEL UNIVERSITY
Education

WOLFSON CENTRE FOR MATERIALS PROCESSING - FACULTY OF TECHNOLOGY Kingston Lane UB8 3PH
UNITED KINGDOM
UNIVERSITÀ DEGLI STUDI DI PALERMO ITALIA
UNIVERSITÀ DEGLI STUDI DI PALERMO
Education

DEPARTMENT OF CHEMICAL ENGINEERING, PROCESSES AND MATERIALS Viale delle Scienze 90128
ITALIA
PCD Polymere Gesellschaft mbH ÖSTERREICH
PCD Polymere Gesellschaft mbH
Industry

21-25,Mannswörther StraÙe 2323
ÖSTERREICH
Shell Research SA BELGIQUE-BELGIË
Shell Research SA
Research

Centre de Recherche Louvain-la-Neuve 1,Avenue Jean Monnet 1 1348
BELGIQUE-BELGIË
Sinco Engineering SpA ITALIA
Sinco Engineering SpA
Other

Centro Ricerche di Pozzilli Triverno Zona Industriale sn 86077
ITALIA
Technische Universiteit Eindhoven NEDERLAND
Technische Universiteit Eindhoven
Education

Department of Fundamental Mechanics -Faculty of Mechanical Engineering Centre for Polymers and Composites PO Box 513 2,Den Dolch 5600 MB
NEDERLAND
DSM Research BV NEDERLAND
DSM Research BV
Industry

Polymeric Construction Materials PO Box 18 6160 AP
NEDERLAND
PCD Polymere Gesellschaft mbH Austria
PCD Polymere Gesellschaft mbH
Industry

21-25,Mannswörther StraÙe 2323
Austria
DSM RESEARCH Netherlands
DSM RESEARCH
Industry

PERFORMANCE MATERIALS - CHEMISTRY AND TECHNOLOGY Koestraat 3
Netherlands
Hide general information
Objectives and content This research proposal is based on the general experience that processing of crystallizable thermoplastic polymers is still a highly empirical matter. This holds notwithstanding the fact that, nowadays, the major amount of polymeric materials, as processed world-wide, is of this type. This statement may be surprising in an area of computer simulation and automation. Curiously enough, the reason for this omission must be sought in an already well-recognized problem, viz. the lack of overlapping knowledge and experience of scientists and engineers. But, with such statements alone no problems can be solved. The present group consists of people who have been discussing this matter at length. So, a combined effort is proposed of specialists in polymer science, crystallization kinetics, heat transfer, flow and practical processing. By the interaction of these disciplines new effects are unearthed as flow induced enhanced crystallization, producing special morphologies, or temperature gradient dependent kinetics, also reflected in the product morphology. Model experiments are proposed which, as a general goal, have to deliver the necessary data for modelling and computer simulation. The influences of additives, as nucleation agents etc., will not be overlooked. Last and not least the consequences of any purposely created structure (morphology) on the product quality (dimensional stability, outward appearance, ageing, mechanical test results) will be investigated in the hope to arrive at more than qualitative guidelines.

Source : cordis  





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