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A METHOD TO PREDICT FATIGUE LIFE OF ADDITIVELY MANUFACTURED METALLIC PARTS

机译:一种预测含有制造金属部件的疲劳寿命的方法

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Additive manufacturing (AM) of metallic parts is rapidly evolving and the fatigue behavior of AM parts has become a significant concern in both industry and academia. In this paper, a method to predict the fatigue life of additively manufactured metallic parts is presented based on the electrical resistance measurement. The damage of the AM parts is characterized by the resistance change during the fatigue process. By combining the electrical resistance measurement with a continuum damage mechanics theory, a mathematical model is developed to predict the fatigue life of the AM samples. Fatigue tests were conducted under different loading conditions with AM 316L stainless steel samples. The result showed that the electrical resistance held steady at the beginning and increased gradually with the number of fatigue loading cycles. The resistance increased dramatically as the sample approached the fracture point, and this sudden increase can be used to indicate the beginning of fracture. By converting the electrical resistance to fatigue damage, experimental data was used to estimate parameters of the fatigue life model. By comparing the model prediction with experimental data, it is shown that the change of electrical resistance can be used to predict the fatigue life of additively manufactured metallic parts.
机译:添加剂制造(AM)的金属部件正在快速发展,AM部件的疲劳行为已成为行业和学术界的重要关注。本文基于电阻测量,提出了一种预测加成制造金属部件的疲劳寿命的方法。 AM部件的损坏的特征在于疲劳过程中的电阻变化。通过将电阻测量与连续损伤力学理论相结合,开发了一种数学模型来预测AM样品的疲劳寿命。疲劳试验在不同的负载条件下进行含量316L不锈钢样品进行。结果表明,电阻在开始时稳定稳定,随着疲劳载荷循环的数量逐渐增加。当样品接近裂缝点时,电阻急剧增加,并且这种突然增加可用于表示骨折的开始。通过转换疲劳损坏的电阻,实验数据用于估计疲劳寿命模型的参数。通过将模型预测与实验数据进行比较,示出了电阻的变化可用于预测含有瘾制造的金属部件的疲劳寿命。

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