Effect of Accelerated Weathering on Physico-Mechanical Properties of Polylactide Bio-Composites

被引:25
作者
Sawpan, Moyeenuddin Ahmad [1 ]
Islam, Muhammad Remanul [2 ]
Beg, Mohammad Dalour Hossain [3 ]
Pickering, Kim [4 ]
机构
[1] Pultron Composites Ltd, Composite Mat Res, Gisborne 4010, New Zealand
[2] Univ Kuala Lumpur, Malaysian Inst Chem & Bioengn Technol, Sect Chem Engn Technol, Alor Gajah 78000, Melaka, Malaysia
[3] Univ Malaysia Pahang, Fac Chem & Nat Resources Engn, Gambang 26300, Pahang, Malaysia
[4] Univ Waikato, Hamilton 3240, New Zealand
关键词
Accelerated weathering; Bio-composite; Crystallinity; Hemp fibre; Polylactide; LACTIC-ACID PLA; MECHANICAL-PROPERTIES; POLY(LACTIC ACID); BIODEGRADABLE COMPOSITES; HYDROLYTIC DEGRADATION; TENSILE PROPERTIES; BEHAVIOR; BIOCOMPOSITES; CRYSTALLINITY; CELLULOSE;
D O I
10.1007/s10924-019-01405-2
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this work, injection moulded hemp fibre reinforced polylactide bio-composites of different fibre contents (0, 10, 20 and 30wt%) were subjected to accelerated weathering of 12h cyclic exposures of UV-light at 60 degrees C, water spray and condensation at 50 degrees C for 8, 16, 32, 48 and 64 cycles to study the changes in properties such as crystallinity, tensile, flexural, plane-strain fracture toughness (KIc) and strain energy release rate (GIc). The crystallinity of neat polylactide (PLA) was found to increase up to 50.6% after 64 cycles, whereas the crystallinity of composites of different fibre contents was found to increase in the range of 30.6 to 34.5% for 8 to 64 cycles. The overall mechanical properties (tensile, flexural, KIc and GIc) of the composites decreased as the number of cycles increased from 8 to 64. The crystallinity and the residual tensile strength, tensile modulus, tensile strain, KIc and GIc of the composites of 20wt% fibres were found to be the highest after 64 cycles. In contrast, the residual flexural strength and flexural modulus of the composites of 30wt% fibres were found to be the maximum after 64 cycles. Absorption of water, destruction of fibre integrity, degradation of PLA matrix, formation of cracks and pores were found to be the main causes of reduction in the mechanical properties of PLA bio-composites.
引用
收藏
页码:942 / 955
页数:14
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