Bio-based thermoplastic natural rubber based on poly(lactic acid)/thermoplastic starch/calcium carbonate nanocomposites

被引:10
作者
Wongwat, Sukanya [1 ]
Yoksan, Rangrong [1 ,2 ]
Hedenqvist, Mikael S. [3 ]
机构
[1] Kasetsart Univ, Fac Agroind, Dept Packaging & Mat Technol, Bangkok 10900, Thailand
[2] Kasetsart Univ, Kasetsart Univ Inst Adv Studies, NRU KU, Ctr Adv Studies Agr & Food CASAF, Bangkok 10900, Thailand
[3] KTH Royal Inst Technol, Sch Engn Sci Chem Biotechnol & Hlth, Dept Fibre & Polymer Technol, S-10044 Stockholm, Sweden
关键词
Natural rubber; Poly(lactic acid); Thermoplastic starch; Calcium carbonate; Thermoplastic natural rubber; Extrusion; MECHANICAL-PROPERTIES; ACID) NANOCOMPOSITES; STARCH; EXTRUSION; COMPOSITES;
D O I
10.1016/j.ijbiomac.2022.03.175
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bio-based thermoplastic natural rubber (TPNR) has recently received much attention due to its sustainability. TPNR based on natural rubber (NR), poly(lactic acid) (PLA), thermoplastic starch (TPS), and nano-precipitated calcium carbonate (NPCC) was fabricated using a twin-screw extruder with two different mixing sequences: MI (NPCC was first compounded with PLA) and MII (NPCC was initially compounded with TPS), and then converted to a sheet through cast sheet extrusion. A constant weight ratio of NR:PLA:TPS at 30:40:30 and varying concentrations of NPCC at 0.5, 1, 3, and 5 wt% were employed. The effects of NPCC and mixing sequence on the properties of NR/PLA/TPS/NPCC nanocomposites were investigated. The NR and TPS phases were dispersed in the PLA matrix. The nanocomposites loaded with a small amount of NPCC (0.5 and 1 wt%) showed increased tensile strength and Young's modulus. NPCC enhanced melt flowability, slightly improved the water vapor barrier property of the NR/PLA/TPS blend and caused decreased T-g, T-cc, and T-m of PLA in the nanocomposites. The PLA phase of the MI nanocomposites contained a higher amount of NPCC, consequently having greater PLA chain scission and poorer tensile properties than that of the MII nanocomposites.
引用
收藏
页码:973 / 982
页数:10
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