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Study of Mechanical Properties of 3D Printed Material for Non-Pneumatic Tire Spoke

机译:非充气轮胎辐条3D印刷材料力学性能研究

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The spokes of airless tire or non-pneumatic tire (NPT) are normally made with thermoplastic polyurethane (TPU), which is highly elastic material, to replace inflation pressure in conventional pneumatic tire. However there are limitation in designing of complex spoke geometries due to difficulty in manufacturing process, which normally involve molding process. Recently, the 3D printing technique has been improved and can be used to create highly complex geometries with wide range of materials. However the mechanical properties of printed spoke structure using 3D printing technique are still required to design and development of NPT. This research aim to study the mechanical properties of TPU while varying in printing conditions. The specimens were prepared from actual NPT spoke using waterjet cutting technique and 3D printing technique according to the testing standard ASTM D412 and D638, respectively. The tensile tests were performed on the specimens with corresponding crosshead speed. The testing speed of 3D printed specimen were also varied to 100 and 200 mm/min to study the effects of strain rate on mechanical properties. The stress-strain relationships were obtained from tensile testing and the important mechanical properties were then evaluated. The mechanical properties of specimens prepared from actual NPT spokes and 3D printed specimens were then compared. The ultimate stress of specimens prepared from actual NPT spokes in radial direction and 3D printed specimens with 100% infill were found to be 32.92 and 25.47 MPa, respectively, while the breaking strain were found to be 12.98 and 10.87, respectively. Thus, the information obtained from this research can be used to ensure the possibility in creating NPT spoke using 3D printing technique based on elastic material such as TPU.
机译:无气轮胎或非充气轮胎(NPT)的辐条通常用热塑性聚氨酯(TPU)制成,其是高弹性材料,以取代常规气动轮胎中的充气压力。然而,由于制造过程中的难以涉及模塑过程,在设计复杂的辐条几何形状时存在限制。最近,3D打印技术已经改进,可用于创造具有宽范围材料的高度复杂的几何形状。然而,使用3D打印技术的印刷辐条结构的机械性能仍然需要设计和开发NPT。该研究旨在研究TPU的机械性能,同时在印刷条件下变化。根据试验标准ASTM D412和D638,使用水射流切割技术和3D印刷技术从实际的NPT辐条制备标本。在具有相应的十字头速度的试样上进行拉伸试验。 3D印刷样品的测试速度也变化至100和200mm / min,以研究应变率对机械性能的影响。从拉伸试验中获得应力 - 应变关系,然后评价重要的机械性能。然后比较了由实际的NPT辐条和3D印刷样本制备的样品的力学性能。从实际NPT辐条中制备的标本的最终应力分别在径向方向和3D印刷样品中发现,分别为32.92和25.47MPa,同时发现断裂菌株分别为12.98和10.87。因此,可以使用从该研究获得的信息来确保使用基于诸如TPU的弹性材料的3D打印技术创建NPT辐条的可能性。

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