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Biodegradable Poly Lactic Acid and Its Composites

Tongji University, No. 1239, Siping Road, Shanghai, 200092, China [Pg.857]

Handbook of Sustainable Polymers Processing and Applications Edited byVijay Kumar Thakur and Manju KumariThakur Copyright 2016 Pan Stanford Publishing Pte. Llxl. [Pg.857]

However, for PLA, the disadvantages such as the inherent brittleness, poor heat resistance, and low melt strength limit the applications. Modifications of PLA and PLA-based composites are common ways to solve these problems. [Pg.858]

Three parts are covered in the chapter. First, the synthesis and properties of PLA are described. The modification and process of PLA are also discussed. Then, the composites with PLA as matrix and natural fiber or nanoparticles as reinforcement are reported in the second part. The processing and the properties of the composites are also given. The interface between PLA and the reinforcement and the surface treatment methods are discussed. Finally, the application and the development of PLA and PLA-based composites in the future are proposed. [Pg.858]


In the present study, we investigate the influence of bamboo fibers on the mechanical, thermal properties of bamboo-polyethylene terephthalate (PET) composites prepared using wetlay process. PET was selected as the matrix polymer due to its ready availability and its similarity in mechanical properties with the biodegradable polymer, poly(lactic acid) (PLA), originally planned for this work. [Pg.373]


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Biodegradability and

Biodegradability and biodegradation

Biodegradable compositions

Biodegradable poly

Biodegradation composite

Composites biodegradable

Poly acid

Poly lactic acid

Poly lacticity

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