Kmetty Ákos, Litauszki Katalin
Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3., H-1111 Budapest, Hungary.
MTA-BME Research Group for Composite Science and Technology, Műegyetem rkp. 3., H-1111 Budapest, Hungary.
Polymers (Basel). 2020 Feb 17;12(2):463. doi: 10.3390/polym12020463.
This study presents the investigation of different content of thermally expandable microsphere (EMS) type of a physical blowing agent added to polylactic acid (PLA). The effects of the different doses of EMS, processing temperatures, and d-lactide content of the polylactic acid were analyzed for foam properties and structures. We characterized the different PLAs and the physical blowing agent with different testing methods (gel permeation chromatography, rotational rheometry, isothermal thermogravimetric analysis, and thermomechanical analysis). The amounts of the foaming agent were 0.5, 1, 2, 4, 8 wt%, and processing temperatures were 190 °C, 210 °C, and 230 °C. The foam structures were produced by twin-screw extrusion. We used scanning electron microscopy to examine the cell structure of the foams produced, and carried out morphological and mechanical tests as well. The result of extrusion foaming of PLA using different amounts of EMS shows that an exponentially decreasing tendency of density reduction can be achieved, described by the following equation, ρ(x)=1.062∙e-x7.038+0.03 (R = 0.947) at 190 °C. With increasing processing temperature, density decreases at a lower rate, due to the effect that the microspheres are unable to hold the pentane gas within the polymer shell structure. The d-lactide content of the PLAs does not have a significant effect on the density of the produced foam structures.
本研究对添加到聚乳酸(PLA)中的不同含量的热膨胀微球(EMS)型物理发泡剂进行了研究。分析了不同剂量的EMS、加工温度和聚乳酸的d-丙交酯含量对泡沫性能和结构的影响。我们用不同的测试方法(凝胶渗透色谱法、旋转流变学、等温热重分析和热机械分析)对不同的聚乳酸和物理发泡剂进行了表征。发泡剂的用量为0.5、1、2、4、8 wt%,加工温度为190℃、210℃和230℃。泡沫结构通过双螺杆挤出制备。我们用扫描电子显微镜检查所制备泡沫的泡孔结构,并进行了形态学和力学测试。使用不同量的EMS对PLA进行挤出发泡的结果表明,在190℃下,密度降低呈指数下降趋势,可用以下方程描述:ρ(x)=1.062∙e-x7.038+0.03(R = 0.947)。随着加工温度的升高,由于微球无法在聚合物壳结构内保持戊烷气体的影响,密度下降速率降低。聚乳酸的d-丙交酯含量对所制备泡沫结构的密度没有显著影响。