Chalissery Dilip, Pretsch Thorsten, Staub Sarah, Andrä Heiko
Fraunhofer Institute for Applied Polymer Research IAP, Geiselbergstr. 69, 14476 Potsdam, Germany.
Fraunhofer Institute for Industrial Mathematics ITWM, Fraunhofer-Platz 1, 67663 Kaiserslautern, Germany.
Polymers (Basel). 2019 Jun 5;11(6):1005. doi: 10.3390/polym11061005.
Shape memory polymers (SMPs) are stimuli-responsive materials, which are able to retain an imposed, temporary shape and recover the initial, permanent shape through an external stimulus like heat. In this work, a novel manufacturing method is introduced for thermoresponsive quick response (QR) code carriers, which originally were developed as anticounterfeiting technology. Motivated by the fact that earlier manufacturing processes were sometimes too time-consuming for production, filaments of a polyester urethane (PEU) with and without dye were extruded and processed into QR code carriers using fused filament fabrication (FFF). Once programmed, the distinct shape memory properties enabled a heating-initiated switching from non-decodable to machine-readable QR codes. The results demonstrate that FFF constitutes a promising additive manufacturing technology to create complex, filigree structures with adjustable horizontal and vertical print resolution and, thus, an excellent basis to realize further technically demanding application concepts for shape memory polymers.
形状记忆聚合物(SMPs)是刺激响应材料,能够保持施加的临时形状,并通过热等外部刺激恢复初始的永久形状。在这项工作中,引入了一种用于热响应快速响应(QR)码载体的新颖制造方法,QR码载体最初是作为防伪技术开发的。由于早期制造工艺有时对于生产来说耗时过长,因此将含有和不含染料的聚酯聚氨酯(PEU)长丝进行挤出,并使用熔融长丝制造(FFF)工艺加工成QR码载体。一旦编程,独特的形状记忆特性使得能够通过加热将不可解码的QR码切换为机器可读的QR码。结果表明,FFF构成了一种很有前景的增材制造技术,可用于创建具有可调节水平和垂直打印分辨率的复杂、精细结构,因此是实现形状记忆聚合物进一步技术要求高的应用概念的良好基础。