Cellulose man-made fibre reinforced polypropylene--correlations between fibre and composite properties
A series of viscose fibres from the tyre cord type varying in mechanical parameters and titre were compounded with polypropylene to produce fibre reinforced composites. Single fibre strength is analysed in detail and conclusions are drawn with respect to effective strength values in composite applic...
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Published in | Cellulose (London) Vol. 15; no. 4; pp. 561 - 569 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Dordrecht
Dordrecht : Springer Netherlands
01.08.2008
Springer Netherlands Springer Nature B.V |
Subjects | |
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Abstract | A series of viscose fibres from the tyre cord type varying in mechanical parameters and titre were compounded with polypropylene to produce fibre reinforced composites. Single fibre strength is analysed in detail and conclusions are drawn with respect to effective strength values in composite applications. Composites were analysed in terms of tensile and impact properties. Correlations between single fibre and composite properties are studied. High fibre elongation leads to favourable composite impact properties via high composite elongations at break. Using water as a plastisizing agent increasing fibre elongation, notched Charpy impact strength can be improved by more than 50%. Using a modified rule of mixtures and a shear lag model for the composite modulus it was shown how a titre reduction improves the composite stiffness by an increased interfacial area. A direct fibre-composite strength correlation was not found. |
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AbstractList | A series of viscose fibres from the tyre cord type varying in mechanical parameters and titre were compounded with polypropylene to produce fibre reinforced composites. Single fibre strength is analysed in detail and conclusions are drawn with respect to effective strength values in composite applications. Composites were analysed in terms of tensile and impact properties. Correlations between single fibre and composite properties are studied. High fibre elongation leads to favourable composite impact properties via high composite elongations at break. Using water as a plastisizing agent increasing fibre elongation, notched Charpy impact strength can be improved by more than 50%. Using a modified rule of mixtures and a shear lag model for the composite modulus it was shown how a titre reduction improves the composite stiffness by an increased interfacial area. A direct fibre-composite strength correlation was not found. |
Author | Ganster, Johannes Fink, Hans-Peter Uihlein, Kurt Zimmerer, Britta |
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Cites_doi | 10.1007/s10570-005-9045-9 10.1023/A:1017969916020 10.1016/1359-835X(95)00065-A 10.1007/s002890050249 10.1016/j.compositesa.2005.09.005 10.1016/S0167-6636(97)00023-9 10.1016/S0032-3861(99)00273-6 10.1002/app.11919 10.1002/app.13450 10.1007/BF01154577 10.1002/pol.1961.1205115509 |
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Keywords | Injection moulding Mechanical properties Rayon Reinforced polypropylene Viscose Cellulose fibres |
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SubjectTerms | Bioorganic Chemistry Cellulose fibers Ceramics Chemistry Chemistry and Materials Science Composites Elongation Fiber composites Fiber reinforced polymers Glass Impact strength Mechanical properties Natural Materials Organic Chemistry Physical Chemistry Polymer matrix composites Polymer Sciences Polypropylene Stiffness Sustainable Development |
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Title | Cellulose man-made fibre reinforced polypropylene--correlations between fibre and composite properties |
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