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首页> 外文期刊>International journal of applied mechanics >Energy Absorption of Thermoplastic Polyurethane Lattice Structures via 3D Printing: Modeling and Prediction
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Energy Absorption of Thermoplastic Polyurethane Lattice Structures via 3D Printing: Modeling and Prediction

机译:通过3D打印吸收热塑性聚氨酯晶格结构的能量:建模和预测

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This work investigates the energy absorption capacity of polymeric lattice structures through a systemic manufacturing, testing and modeling approaches. The lattice structures are designed to possess periodic cubic geometry with optimized spherical shells located at the cubic corners, and thermoplastic polyurethane (TPU) powders are used to fabricate such structures via selective laser sintering, a type of powder-based 3D printing technology. A hyperelastic model that considers the mullins effect and describes the cyclic compression stress-strain behavior of TPU is developed to simulate the mechanical response of its 3D-printed lattice structures under cyclic compression loading. After the validation of the model for printed structure, it is used to predict the energy absorption capacity of various designed structures.
机译:这项工作通过系统的制造,测试和建模方法研究了聚合物晶格结构的能量吸收能力。晶格结构被设计为具有周期性的立方几何形状,并在立方角处具有优化的球形外壳,热塑性聚氨酯(TPU)粉末用于通过选择性激光烧结(一种基于粉末的3D打印技术)来制造此类结构。开发了一种考虑了穆林斯效应并描述TPU循环压缩应力-应变行为的超弹性模型,以模拟其在3D打印的网格结构在循环压缩载荷下的机械响应。验证印刷结构模型后,可用于预测各种设计结构的能量吸收能力。

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