Recycling of Reinforced Plastics

被引:0
|
作者
R. D. Adams
Andrew Collins
Duncan Cooper
Mark Wingfield-Digby
Archibald Watts-Farmer
Anna Laurence
Kayur Patel
Mark Stevens
Rhodri Watkins
机构
[1] University of Bristol,Department of Mechanical Engineering
[2] University of Oxford,Department of Engineering Science
来源
Applied Composite Materials | 2014年 / 21卷
关键词
Recycling; Remanufacturing; Composite materials; GFRP; CFRP;
D O I
暂无
中图分类号
学科分类号
摘要
This work has shown is that it is possible to recycle continuous and short fibre reinforced thermosetting resins while keeping almost the whole of the original material, both fibres and matrix, within the recyclate. By splitting, crushing hot or cold, and hot forming, it is possible to create a recyclable material, which we designate a Remat, which can then be used to remanufacture other shapes, examples of plates and tubes being demonstrated. Not only can remanufacturing be done, but it has been shown that over 50 % of the original mechanical properties, such as the E modulus, tensile strength, and interlaminar shear strength, can be retained. Four different forms of composite were investigated, a random mat Glass Fibre Reinforced Plastic (GFRP) bathroom component and boat hull, woven glass and carbon fibre cloth impregnated with an epoxy resin, and unidirectional carbon fibre pre-preg. One of the main factors found to affect composite recyclability was the type of resin matrix used in the composite. Thermoset resins tested were shown to have a temperature range around the Glass Transition Temperature (Tg) where they exhibit ductile behaviour, hence aiding reforming of the material. The high-grade carbon fibre prepreg was found to be less easy to recycle than the woven of random fibre laminates. One method of remanufacturing was by heating the Remat to above its glass transition temperature, bending it to shape, and then cooling it. However, unless precautions are taken, the geometric form may revert. This does not happen with the crushed material.
引用
收藏
页码:263 / 284
页数:21
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