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德国克劳斯塔尔工业大学教授Gerhard Ziegmann教授学术讲座通知

发布时间:2019-05-05 点击数:

 

德国德国克劳斯塔尔工业大学Clausthal University of Technology教授Gerhard Ziegmann教授来我院讲座,欢迎各位感兴趣的老师和同学参加。


讲座时间201957日上午1000

讲座地点:西安交通大学曲江校区西五楼北楼A302 会议室

摘要: Characterization of Polymer and Composite Materials

Lightweight applications in transportation industry can be realized with fibre reinforced polymer systems, called “Composites” . Those composites are defined by the reinforcing fibre and the embedding matrix system, mainly composed by polymer material – either thermoplastic or thermo set characteristic.

In this presentation some special aspects of materials as well as of the processing technologies will be discussed in detail. The rheological characterization is defining the processing behaviors of composites and the mechanical characteristics. The processing of impregnate of the fibres will define the effective usage of fibres in a structure, i.e. in aircraft of automotive applications.

讲座时间201958日上午1000

讲座地点:西安交通大学曲江校区西五楼北楼A302 会议室

摘要: New Aspect in Polymer Materials and Processing

Thermoplastic polymers are very interesting materials for different applications. By describing the rheological behaviors in the melting phase the processing i.e. in injection moulding gives the chance to produce even very complicated structures with in this process.

In this presentation the flow characteristics of filled and unfilled thermoplastics will be discussed. Some applications examples will be presented with showing the possibilities for complicated structures with thermo plastics.

Ziegmann教授主要研究方向:

- Processing of highly filled thermoplastics (compounding, rheology, injection moulding, multi-component injection moulding)

- Micro injection moulding (tooling conception, design of weld lines)

- Processing technologies for composite materials with natural and high performance fibres (filament winding, press technique, autoclave technology, diaphragm technique, Liquid-Composite-Moulding technologies (LCM))

- Natural fibre systems (modification/functionalization of natural fibres, fibre-matrix coupling)

- Modelling and simulation of flow processes (reaction kinetics, permeability, rheology)

- Characterization of materials (mechanical, physical, thermal and electrical properties of material systems)


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