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DYNAMIC RESPONSE NEAR CRITICAL BUILD HEIGHTS IN ULTRASONIC ADDITIVE MANUFACTURING

机译:超声添加剂制造中临界构建高度附近的动态响应

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Previous ultrasonic additive manufacturing (UAM) models ignore higher-order modes or do not simulate the entire weld cycle when studying the dynamics near critical height-to-width ratios. A multi-modal model was developed to study the dynamics near critical build heights. The cause for the critical height-to-width ratio is dynamic interaction between the substrate and sonotrode. As the build height approaches the critical height-width-ratio, the current model predicts a local maxima in the transverse velocity response directly under the moving load (simulated sonotrode excitation). This is validated by experimental observations from previous studies. However, the current model predicts that as the height is further increased, a maximum in the transverse velocity response occurs at a height-to-width ratio of 1.2 due to resonance of higher-order modes. This result indicates that a single mode-approximation is insufficient to describe the dynamics near critical build heights. In studying the time response for an entire weld cycle (1.5 s), the amplitude of the velocity response in the transverse direction varies greatly. This indicates that assuming a quasi-static or analyzing a short time period in a model excludes potential dynamics during an entire weld cycle (on the order of 1 s).
机译:以前的超声波添加剂制造(UAM)型号忽略高阶模式,或者在研究临界高度到宽度比附近的动态时,不要模拟整个焊接周期。开发了一种多模态模型来研究临界构建高度附近的动态。临界高度到宽度比的原因是基板和超声波之间的动态相互作用。当构建高度接近临界高度宽度比时,电流模型在移动负载下直接预测横向速度响应中的局部最大值(模拟超声波激励)。这是通过先前研究的实验观察验证的。然而,当前模型预测,随着高度进一步增加,由于高阶模式的谐振,横向速度响应中的最大值发生在1.2的高度到宽度比。该结果表明单个模式近似不足以描述关键构建高度附近的动态。在研究整个焊接循环的时间响应(1.5秒)中,横向速度响应的幅度大大变化。这表明假设模型中的短时间句点在整个焊接周期(约为1 S的顺序)中排除潜在动态。

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