4.7 Article

Improving Layer Adhesion of Co-Extruded Polymer Sheets by Inducing Interfacial Flow Instabilities

期刊

POLYMERS
卷 14, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/polym14030587

关键词

polymer processing; layer adhesion; multi-layer structure; confocal Raman microscopy; flow instabilities; interfaces

资金

  1. FFG [881844]
  2. Austrian COMET Program Competence Centers for Excellent Technologies under the auspices of the Austrian Federal Ministry for Climate Action, Environment, Energy, Mobility, Innovation and Technology
  3. Austrian Federal Ministry for Digital and Economic Affairs and of the Provinces of Upper Austria and Styria
  4. Johannes Kepler University Linz

向作者/读者索取更多资源

Co-extrusion is a commonly used method for producing polymer multilayer products. The adhesion between layers is crucial for the overall performance of the structure. This study investigated the influence of different processing conditions on layer adhesion and found that adjusting the shear load can significantly improve the adhesion. These findings open up new opportunities and potentials for multi-layer products.
Co-extrusion is commonly used to produce polymer multilayer products with different materials tailoring the property profiles. Adhesion between the individual layers is crucial to the overall performance of the final structure. Layer adhesion is determined by the compatibility of the polymers at the interface and their interaction forces, causing for example the formation of adhesive or chemical bonds or an interdiffusion layer. Additionally, the processing conditions, such as temperature, residence time, cooling rate, and interfacial shear stress, have a major influence on the interactions and hence resulting layer adhesion. Influences of temperature and residence time are already quite well studied, but influence of shear load on the formation of an adhesion layer is less explored and controversially discussed in existing literature. In this work, we investigated the influence of different processing conditions causing various shear loads on layer adhesion for a two-layer co-extruded polymer sheet using a polypropylene and polypropylene talc compound system. Therefore, we varied the flow rates and the flow geometry of the die. Under specific conditions interfacial flow instabilities are triggered that form micro layers in the transition regime between the two layers causing a major increase in layer adhesion. This structure was analyzed using confocal Raman microscopy. Making use of these interfacial flow instabilities in a controlled way enables completely new opportunities and potentials for multi-layer products.

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