Esmaeilzadeh Javad, Hesaraki Saeed, Hadavi Seyed Mohammad-Mehdi, Esfandeh Masoud, Ebrahimzadeh Mohammad Hosein
Biomaterials group, Nanotechnology and Advanced Materials Department, Materials and Energy Research Center, Karaj, Alborz, Iran.
Biomaterials group, Nanotechnology and Advanced Materials Department, Materials and Energy Research Center, Karaj, Alborz, Iran.
Mater Sci Eng C Mater Biol Appl. 2017 Feb 1;71:807-819. doi: 10.1016/j.msec.2016.10.070. Epub 2016 Oct 26.
In this study, polymer blends comprising poly(D/L) lactic acid (PDLLA) and 0-30wt% polycaprolactone (PCL) was prepared by a solvent-evaporation technique. The effect of PCL content on the dynamic-mechanical properties and tensile and flexural characteristics of the blends was evaluated. The creep and stress relaxation behaviors were also determined and using various known models such as power law, Burgers model and Weibull distribution equation. The results showed that by increasing the PCL content from 10 to 30wt%, the yield stress and flexural strength decreased from 47MPa to 26MPa and 72MPa to 29MPa respectively. In addition to tensile and flexural strength, the elastic modulus of neat PDLLA declined with increasing the PCL content, whereas the elongation or the strain percentage at the break point increased considerably. Biphasic regions were observed in the microstructures of the blends, indicating the immiscibility of PCL in PDLLA matrix. However, the PCL spherulites with an average particle diameter of 100nm to 5μm were homogeneously dispersed in PDLLA phase even at high PCL concentrations. Moreover, the microstructures of the fractured surfaces of the polymers confirmed that PDLLA with a brittle fracture behavior tends toward a soft fracture behavior when it is blended with PCL. The dynamic-mechanical tests indicated that the damping energy and dissipative ability of PDLLA improve by adding PCL. Moreover, T of neat PDLLA by adding of 10, 20 and 30wt% decreases from 67.3 to 66.2, 65.1 and 63.5°C respectively. Increasing in the recovered viscoelastic strain due to the addition of PCL was also experienced which can be attributed to the presence of large volumetric backbone of PCL chains as well as easy movement of them in the matrix. The results of modeling studies showed a good correlation between the experimentally obtained data.
在本研究中,通过溶剂蒸发技术制备了包含聚(D/L)乳酸(PDLLA)和0 - 30wt%聚己内酯(PCL)的聚合物共混物。评估了PCL含量对共混物动态力学性能以及拉伸和弯曲特性的影响。还测定了蠕变和应力松弛行为,并使用了各种已知模型,如幂律、伯格斯模型和威布尔分布方程。结果表明,通过将PCL含量从10wt%增加到30wt%,屈服应力和弯曲强度分别从47MPa降至26MPa以及从72MPa降至29MPa。除了拉伸和弯曲强度外,纯PDLLA的弹性模量随着PCL含量的增加而下降,而断裂点处的伸长率或应变百分比则显著增加。在共混物的微观结构中观察到双相区域,表明PCL在PDLLA基体中不相容。然而,即使在高PCL浓度下,平均粒径为100nm至5μm的PCL球晶也均匀地分散在PDLLA相中。此外,聚合物断裂表面的微观结构证实,具有脆性断裂行为的PDLLA与PCL共混时倾向于呈现软断裂行为。动态力学测试表明,添加PCL可提高PDLLA的阻尼能量和耗散能力。此外,添加10wt%、20wt%和30wt%的PCL后,纯PDLLA的玻璃化转变温度分别从67.3°C降至66.2°C、65.1°C和63.5°C。由于添加PCL,还观察到恢复的粘弹性应变增加,这可归因于PCL链的大体积主链的存在以及它们在基体中的容易移动。建模研究结果表明,实验获得的数据之间具有良好的相关性。