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Additively manufactured pressure vessel exceeds expectations in testing

Additively manufactured pressure vessel exceeds expectations in testing
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A digital shadow approach for enhancing process monitoring in wire arc by Haochen Mu, Fengyang He et al

With the development of Industry 4.0 and smart manufacturing, improving production automation, intelligence, and digitalization has become a research trend in the Wire Arc Additive Manufacturing (WAAM) field. This study introduces a digital shadow that aims to improve the adaptiveness and dimensionality of monitoring systems in WAAM. Three sensors are used in the digital shadow: a welding electric signal sensor, a camera, and a laser profilometer to collect welding current and voltage data, image data, and point cloud data. The collected multi-scaled data are time and spatially synchronized by sampling multiple points along the welding path. Three ML algorithms are used for decision-making: Multi-layer Perceptron (MLP) classifier and YOLOv5 are used for time and spatial-scale detection, respectively, and a Variational Autoencoder (VAE) is used for the decision-level fusion. The system performance is then tested to detect defects and geometric errors in practical experiments and the res

The Effects of Processing Parameters during the Wire Arc Additive Manu by Bang Liu, Jun Lan et al

Wire arc additive manufacturing (WAAM) excels in producing medium to large components with a high deposition rate. Process optimization is crucial for uniform, defect-free components. This research employs orthogonal experimental design and response surface methodology (RSM) to control TIG WAAM-ed 308L stainless steel components. Varied parameters, including tungsten electrode angle, welding current, and speed, target weld bead attributes. Analysis of variance (ANOVA) evaluates multi-processing parameter influence on weld bead formation. Comparison with experimental results confirms accurate modeling of the relationship between parameters and bead attributes. The study optimizes process parameters and swing to enhance dimensional accuracy in single-layer and multi-layer components, improving precision, quality, and accuracy in thin-walled structures.

AML3D s metal 3D printer operational at US Navy manufacturing centre

AML3D s metal 3D printer operational at US Navy manufacturing centre
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AML3D s Ohio Expansion: Capital Infusion and Defense Contracts to Boost U S 3D Printing Operations - 3DPrint com | The Voice of 3D Printing / Additive Manufacturing

AML3D s Ohio Expansion: Capital Infusion and Defense Contracts to Boost U S 3D Printing Operations - 3DPrint com | The Voice of 3D Printing / Additive Manufacturing
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