Jiang Long, Wolcott Michael P, Zhang Jinwen
Wood Materials and Engineering Laboratory, Washington State University, Pullman, WA 99164, USA.
Biomacromolecules. 2006 Jan;7(1):199-207. doi: 10.1021/bm050581q.
Both polylactide (PLA) and poly(butylene adipate-co-terephthalate) (PBAT) are biodegradable polymers. They are thermoplastics which can be processed using most conventional polymer processing methods. PLA is high in strength and modulus (63 MPa and 3.4 GPa, respectively) but brittle (strain at break 3.8%) while PBAT is flexible and tough (strain at break approximately 710%). In view of their complementary properties, blending PLA with PBAT becomes a natural choice to improve PLA properties without compromising its biodegradability. In this study, PLA and PBAT were melt blended using a twin screw extruder. Melt elasticity and viscosity of the blends increased with the concentration of PBAT. Crystallization of the PLA component, phase morphology of the blend, mechanical properties, and toughening mechanism were investigated. The blend comprised an immiscible, two-phase system with the PBAT evenly dispersed in the form of approximately 300 nm domains within the PLA matrix. The PBAT component accelerated the crystallization rate of PLA but had little effect on its final degree of crystallinity. With the increase in PBAT content (5-20 wt %), the blend showed decreased tensile strength and modulus; however, elongation and toughness were dramatically increased. With the addition of PBAT, the failure mode changed from brittle fracture of the neat PLA to ductile fracture of the blend as demonstrated by tensile test and scanning electron microcopy (SEM) micrographs. Debonding between the PLA and PBAT domains induced large plastic deformation in PLA matrix ligaments.
聚乳酸(PLA)和聚己二酸丁二醇酯-对苯二甲酸丁二醇酯共聚物(PBAT)都是可生物降解的聚合物。它们是热塑性塑料,可以使用大多数传统的聚合物加工方法进行加工。PLA具有较高的强度和模量(分别为63 MPa和3.4 GPa),但很脆(断裂应变3.8%),而PBAT则具有柔韧性和韧性(断裂应变约为710%)。鉴于它们的互补性能,将PLA与PBAT共混成为在不损害其生物降解性的前提下改善PLA性能的自然选择。在本研究中,使用双螺杆挤出机对PLA和PBAT进行熔融共混。共混物的熔体弹性和粘度随PBAT浓度的增加而增加。研究了PLA组分的结晶、共混物的相形态、力学性能和增韧机理。该共混物由一个不相容的两相体系组成,PBAT以约300 nm的微区形式均匀分散在PLA基体中。PBAT组分加速了PLA的结晶速率,但对其最终结晶度影响不大。随着PBAT含量(5-20 wt%)的增加,共混物的拉伸强度和模量降低;然而,伸长率和韧性显著提高。通过拉伸试验和扫描电子显微镜(SEM)照片表明,添加PBAT后,破坏模式从纯PLA的脆性断裂转变为共混物的韧性断裂。PLA和PBAT微区之间的脱粘在PLA基体韧带中引起了大的塑性变形。