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The Nozzle Structure Design and Analysis for Continuous Carbon Fiber Composite 3D Printing

机译:连续碳纤维复合3D打印喷嘴结构设计与分析

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The 3D printing technology for continuous carbon fiber composite can combine the advantages of high mechanical properties and unlimited model structure complexity to complete the rapid prototyping. Because of the continuity characters of the carbon fiber composite, if the nozzle temperature is too high, the nozzle will be blocked due to material excessive softening. But if the temperature is low, it can't pile up in sequential layers. For this problem, the 3D printing nozzle structure was designed and optimized by the thermodynamic simulation, also, the relations between the nozzle structure and temperature field distribution was revealed. The rationality of nozzle design is proved by continuous carbon fiber 3D printing experiment.
机译:连续碳纤维复合材料的3D打印技术可以结合高机械性能和无限模型结构复杂性的优点,以完成快速原型设计。由于碳纤维复合材料的连续性特征,如果喷嘴温度过高,则由于材料过度软化,喷嘴将被阻挡。但如果温度低,则不能堆积在顺序层中。对于这个问题,通过热力学模拟设计和优化了3D打印喷嘴结构,也揭示了喷嘴结构和温度场分布之间的关系。连续碳纤维3D印刷实验证明了喷嘴设计的合理性。

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