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首页> 外文期刊>Engineering Fracture Mechanics >Experimental determination and numerical simulation of material and damage behaviour of 3D printed polyamide 12 under cyclic loading
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Experimental determination and numerical simulation of material and damage behaviour of 3D printed polyamide 12 under cyclic loading

机译:循环载荷下3D印刷聚酰胺12材料材料及损伤行为的实验测定与数值模拟

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摘要

The material and damage behaviour of additively manufactured polyamide 12 under cyclic loading was characterized by cyclic tests and microstructure analysis by using microscopy, X-ray refraction, and computed tomography. The results were used to determine parameters for the viscoplastic material model by Chaboche and a damage model by Gurson-Tvergaard-Needleman. The temperature was monitored during the experiments and the self-heating effect was observed. By including this effect, a higher accuracy could be achieved with the results of mechanical experiments.
机译:通过使用显微镜,X射线折射和计算机断层扫描的环状试验和微观结构分析,表征含有加载聚酰胺12的材料和损伤行为。 结果用于通过Chaboche确定粘胶材料模型的参数和Gurson-Tvergaard-Charememan的损伤模型。 在实验期间监测温度,观察到自热效果。 通过包括这种效果,可以通过机械实验的结果来实现更高的准确度。

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