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Featured researches published by Dieter Lilge.


THE XV INTERNATIONAL CONGRESS ON RHEOLOGY: The Society of Rheology 80th Annual#N#Meeting | 2008

On the Use of Indexes for Quantifying Long‐Chain Branching in Polyethylene: Can We Describe the Rheology of LCB PE and Correlate it to Processing Performance by Using a Single Number?

Iakovos Vittorias; Dieter Lilge

Numerous analytical techniques and methods have been developed in the last decades, to study macromolecular architecture, especially for the case of polyethylene. The goal was to detect with an enhanced sensitivity long‐chain branching (LCB) in polyethylene and accurately quantify the branching degree and structure. These studies resulted in a large number of different methods and LCB indexes (LCBI), derived mainly from rheological techniques, as well as size‐exclusion chromatographic and spectroscopical measurements (GPC‐MALLS, NMR). Within this work, these were applied in a series of polyethylenes, produced by various processes and catalysts, with varying mol. weight distribution and LCB concentration. The combination of GPC‐MALLS, the δ vs. G* plot and elongational rheology was found to be the only possibility to realistically describe the different polyethylene structures and their distribution.


Macromolecular Materials and Engineering | 2005

Detailed Molecular Structure Modeling - A Path Forward to Designing Application Properties of ldPE

Christian-Ulrich Schmidt; Markus Busch; Dieter Lilge; M. Wulkow


Rheologica Acta | 2011

Linear and non-linear rheology of linear polydisperse polyethylene

Iakovos Vittorias; Dieter Lilge; Vitor Baroso; Manfred Wilhelm


Macromolecular Theory and Simulations | 2014

Modeling the Polymeric Microstructure of LDPE in Tubular and Autoclave Reactors with a Coupled Deterministic and Stochastic Simulation Approach: Modeling the Polymeric Microstructure of LDPE…

Eric Neuhaus; Thomas Herrmann; Iakovos Vittorias; Dieter Lilge; Gerd Mannebach; Andrei Gonioukh; Markus Busch


Macromolecular Chemistry and Physics | 2010

From Fundamental Polymerization Kinetics to Process Application—A Realistic Vision?

Christian Bauer; Katrin Becker; Thomas Herrmann; Dieter Lilge; Marion Roth; Markus Busch


Macromolecular Theory and Simulations | 2014

Modeling the Polymeric Microstructure of LDPE in Tubular and Autoclave Reactors with a Coupled Deterministic and Stochastic Simulation Approach

Eric Neuhaus; Thomas Herrmann; Iakovos Vittorias; Dieter Lilge; Gerd Mannebach; Andrei Gonioukh; Markus Busch


Macromolecular Symposia | 2013

Coupling Deterministic and Stochastic Simulation to Model the Polymeric Microstructure of LDPE

Eric Neuhaus; Markus Busch; Andrei Gonioukh; Thomas Herrmann; Dieter Lilge; Gerd Mannebach; Iakovos Vittorias


Archive | 2012

Vortrag: Modelling the Polymeric Microstructure of LDPE with a Novel Hybrid Simulation Approach

Eric Neuhaus; Markus Busch; Andrei Gonioukh; Thomas Herrmann; Dieter Lilge; Gerd Mannebach; Iakovos Vittorias


Archive | 2012

Vortrag und Poster: Modelling the Polymeric Microstructure of LDPE with a Novel Hybrid Simulation Approach

Eric Neuhaus; Markus Busch; Andrei Gonioukh; Thomas Herrmann; Dieter Lilge; Gerd Mannebach; Iakovos Vittorias


Macromolecular Chemistry and Physics | 2010

Macromol. Chem. Phys. 5/2010

Christian Bauer; Katrin Becker; Thomas Herrmann; Dieter Lilge; Marion Roth; Markus Busch

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Markus Busch

Technische Universität Darmstadt

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Eric Neuhaus

Technische Universität Darmstadt

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Katrin Becker

Technische Universität Darmstadt

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Marion Roth

Technische Universität Darmstadt

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Manfred Wilhelm

Karlsruhe Institute of Technology

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Vitor Baroso

Karlsruhe Institute of Technology

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