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Approach to Fabricating Thermoplastic Polyurethane Blends and Foams with Tunable Properties by Twin-Screw Extrusion and Microcellular Injection Molding

机译:双螺杆挤出和微孔注射成型制备可调节性能的热塑性聚氨酯共混物和泡沫的方法

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Thermoplastic polyurethane (TPU) has been widely used in many applications because of its broad range of properties. However, synthesis of TPU with desirable properties is time consuming and only produces limited quantities. In this paper, twin-screw extrusion was used to produce TPU blends of varying soft and hard segments with tunable properties. Foamed samples of TPU blends were produced by microcellular injection molding. Multiple characterization tests were performed to confirm the miscibility and tunability of the blends. It was confirmed that soft and hard TPUs were compatible at ratios of 2:1 and 1:2, but partially miscible at a ratio of 1:1. Rigidity increased while the shape-recovery rate decreased with increasing the hard TPU content. The blend ratio influenced the foaming morphology, solid skin-layer thickness, as well as mechanical properties. It was found that microcellular injection molding could reduce the injection-shot volume without sacrificing too much mechanical property and, compared with their solid counterparts, the foamed blends could retain mechanical properties better than foamed pure TPUs. Decomposition and degradation behaviors were also studied. The biocompatibility of soft and hard TPU-foamed samples, which could be potentially used as tissue engineering scaffolds, was confirmed by fibroblast cytotoxicity test.
机译:热塑性聚氨酯(TPU)由于其广泛的性能而已广泛用于许多应用中。然而,具有期望性质的TPU的合成是耗时的并且仅产生有限的量。在本文中,使用双螺杆挤出来生产具有可调特性的各种软硬段的TPU共混物。 TPU共混物的发泡样品是通过微孔注塑成型生产的。进行了多次表征测试,以确认混合物的混溶性和可调性。可以确定的是,软硬TPU和硬TPU的比例为2:1和1:2,但部分互溶的比例为1:1。随着硬质TPU含量的增加,刚度增加,而形状恢复率降低。共混比例影响发泡形态,固体表皮层厚度以及机械性能。发现微孔注射成型可以在不牺牲太多机械性能的情况下减少注射量,并且与它们的固体对应物相比,发泡共混物比发泡纯TPU保留更好的机械性能。还研究了分解和降解行为。通过成纤维细胞的细胞毒性试验证实了软和硬的TPU发泡样品的生物相容性,这些样品可潜在地用作组织工程支架。

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