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Viscoelastic Behaviour of Flexible Thermoplastic Polyurethane Additively Manufactured Parts: Influence of Inner-Structure Design Factors

机译:柔性热塑性聚氨酯的粘弹性行为含量加工零件:内部结构设计因素的影响

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摘要

Material extrusion based additive manufacturing is used to make three dimensional parts by means of layer-upon-layer deposition. There is a growing variety of polymers that can be processed with material extrusion. Thermoplastic polyurethanes allow manufacturing flexible parts that can be used in soft robotics, wearables and flexible electronics applications. Moreover, these flexible materials also present a certain degree of viscoelasticity. One of the main drawbacks of material extrusion is that decisions related to specific manufacturing configurations, such as the inner-structure design, shall affect the final mechanical behaviour of the flexible part. In this study, the influence of inner-structure design factors upon the viscoelastic relaxation modulus, E(t), of polyurethane parts is firstly analysed. The obtained results indicate that wall thickness has a higher influence upon E(t) than other inner-design factors. Moreover, an inadequate combination of those factors could reduce E(t) to a small fraction of that expected for an equivalent moulded part. Next, a viscoelastic material model is proposed and implemented using finite element modelling. This model is based on a generalized Maxwell model and contemplates the inner-structure design. The results show the viability of this approach to model the mechanical behaviour of parts manufactured with material extrusion additive manufacturing.
机译:材料挤出基添加剂制造用于通过层在层沉积中制备三维部件。可以使用材料挤出加工各种各样的聚合物。热塑性聚氨酯允许制造可用于软机器人,可穿戴物和柔性电子应用的柔性部件。此外,这些柔性材料也存在一定程度的粘弹性。材料挤出的主要缺点是与特定制造配置相关的决策,例如内部结构设计,应影响柔性部分的最终机械行为。在该研究中,首先分析了聚氨酯部分的粘弹性弛豫模量,e(t)的内部结构设计因子对聚氨酯部分的影响。所获得的结果表明,壁厚对E(t)的影响比其他内部设计因子更高。此外,这些因素的不充分组合可以将E(t)降低到相当于模塑部件的一小部分。接下来,使用有限元建模提出和实现粘弹性材料模型。该模型基于广义麦克斯韦模型,并考虑了内部结构设计。结果表明,这种方法的可行性模拟了用材料挤出添加剂制造制造的部件的力学行为。

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