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Thermoplastic Polyurethane (TPU) Honeycomb Air Cushion Combined with Polylactic Acid (PLA) Nonwoven Fabric for Impact Protection

机译:热塑性聚氨酯(TPU)蜂窝气垫结合聚乳酸(PLA)无纺布用于冲击保护

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Honeycomb structures are widely used in various engineering fields, including construction, the auto industry, packaging, the aerospace industry, medicine, and sports. The hexagon cells generate excellent structures and reduce material waste. Honeycomb structures have very good mechanical properties and are low cost. Nonwoven fabric is widely used in many applications because the manufacturing process for nonwoven fabric is easy and fast. In this study, Polylactic Acid (PLA) nonwoven fabric and Thermoplastic Polyurethane (TPU) honeycomb air cushion (TPU-HAC) materials were combined in a sandwich structure for impact protection. The PLA fibers and low-melting-point PLA fibers were used as raw materials to create PLA nonwoven fabric. The PLA fibers and low-melting-point PLA fibers were mixed at weight ratios of (10%, 20%, 30%, 40%, 50%). The mixed fibers were processed using needle punching and thermal bonding to create PLA nonwoven fabric. Additionally, the TPU-HACs were layered to generate various thicknesses (2/8/10 mm, 4/6/10 mm, 6/4/10 mm, 8/2/10 mm). The layered TPU-HAC materials was clamped between two PLA nonwoven fabrics to form a sandwich structure. Impact resistance was assessed using a falling- weight impact-resistance machine. Experimental findings indicate that impact resistance of the sandwich structure of the TPU-HAC materials improved when thin TPU-HAC material was placed on the thick TPU-HAC material. This study demonstrates that the sandwich structure of TPU-HAC materials as excellent impact absorption.
机译:蜂窝结构广泛用于各种工程领域,包括建筑,汽车行业,包装,航空航天工业,医学和运动。六边形细胞产生优异的结构并减少材料废物。蜂窝结构具有非常好的机械性能,并且成本低。非织造织物广泛用于许多应用中,因为非织造织物的制造方法容易且快速。在该研究中,聚乳酸(PLA)非织造织物和热塑性聚氨酯(TPU)蜂窝气垫(TPU-HAC)材料在夹心结构中组合用于冲击保护。 PLA纤维和低熔点PLA纤维用作原料以产生PLA非织造织物。 PLA纤维和低熔点PLA纤维在重量比(10%,20%,30%,40%,50%)中混合。使用针刺和热粘合处理混合纤维以产生PLA非织造织物。另外,TPU-HACS分层以产生各种厚度(2/8/10mm,4/6 / 10mm,6/4 / 10mm,8/2/10mm)。层状TPU-HAC材料夹在两个PLA非织造织物之间以形成夹层结构。使用次级抗冲击机评估抗冲击性。实验结果表明,当将薄的TPU-HAC材料置于厚TPU-HAC材料上时,TPU-HAC材料的夹层结构的抗冲击性改善。本研究表明,TPU-HAC材料的夹心结构是优异的冲击吸收。

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