Ibebunjo Kosisochi, Tella Susanna, Kiljunen Samantha, Repo Eveliina
Department of Separation Science, School of Engineering Science, LUT University, FI-53850 Lappeenranta, Finland.
Faculty of Health Care and Social Services, LAB University of Applied Sciences, FI-53850 Lappeenranta, Finland.
Polymers (Basel). 2023 Apr 13;15(8):1859. doi: 10.3390/polym15081859.
The emergence of COVID-19 has spurred demand for facemasks and prompted many studies aiming to develop masks that provide maximum protection. Filtration capacity and fit define the level of protection a mask can provide, and the fit is in large part determined by face shape and size. Due to differences in face dimensions and shapes, a mask of one size will not be likely to fit all faces. In this work, we examined shape memory polymers (SMPs) for producing facemasks that are able to alter their shape and size to fit every face. Polymer blends with and without additives or compatibilizers were melt-extruded, and their morphology, melting and crystallization behavior, mechanical properties, and shape memory (SM) behavior were characterized. All the blends had phase-separated morphology. The mechanical properties of the SMPs were modified by altering the content of polymers and compatibilizers or additives in the blends. The reversible and fixing phases are determined by the melting transitions. SM behavior is caused by physical interaction at the interface between the two phases in the blend and the crystallization of the reversible phase. The optimal SM blend and printing material for the mask was determined to be a polylactic acid (PLA)/polycaprolactone (PCL) blend with 30% PCL. A 3D-printed respirator mask was manufactured and fitted to several faces after being thermally activated at 65°C. The mask had excellent SM and could be molded and remolded to fit a variety of facial shapes and sizes. The mask also exhibited self-healing and healed from surface scratches.
新冠病毒病(COVID-19)的出现刺激了对面罩的需求,并促使许多研究致力于开发能提供最大防护的面罩。过滤能力和贴合度决定了面罩所能提供的防护水平,而贴合度在很大程度上由面部形状和尺寸决定。由于面部尺寸和形状存在差异,单一尺寸的面罩不太可能适合所有人的面部。在这项工作中,我们研究了形状记忆聚合物(SMP)用于生产能够改变其形状和尺寸以贴合每个人面部的面罩。对添加和未添加添加剂或增容剂的聚合物共混物进行了熔融挤出,并对其形态、熔融和结晶行为、力学性能以及形状记忆(SM)行为进行了表征。所有共混物都具有相分离形态。通过改变共混物中聚合物、增容剂或添加剂的含量来改变SMP的力学性能。可逆相和固定相由熔融转变决定。SM行为是由共混物中两相界面处的物理相互作用以及可逆相的结晶引起的。确定用于面罩的最佳SM共混物和打印材料为含30%聚己内酯(PCL)的聚乳酸(PLA)/聚己内酯(PCL)共混物。制造了一个3D打印的呼吸面罩,并在65°C下热激活后适配了几个人的面部。该面罩具有出色的形状记忆性能,能够被塑形和重新塑形以适应各种面部形状和尺寸。该面罩还表现出自修复能力,表面划痕能够自行愈合。