With new suppliers and devices entering the market daily, and a greater range of materials and material suppliers, Laser Additive Manufacturing is one of the highest growth areas within manufacturing globally. The Laser Additive Manufacturing track shines a spotlight on the latest techniques in additive manufacturing—from part design and process chain to finished product. Don’t miss out!
Session Search
* Program subject to change.
| Day | Session | Title | Keywords |
|---|---|---|---|
| NA | On-demand Only | Experimental and Computational Analysis of Copper Wick Structures Using Laser Sintering Technology for Thermal Management Applications |
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| NA | On-demand Only | Effect of Heat Treatment on the Mechanical Properties of Laser Powder-Bed Fusion Made Ti-5553 Parts |
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| NA | On-demand Only | Cyber-Physical Approach Towards Semi-Autonomous Post-Processing of Additive Manufactured Parts and Components |
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| NA | On-demand Only | Single-shot Laser Additive Manufacturing of Customizable Micro-optics |
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| NA | On-demand Only | Laser-Induced Drop Transfer by the CYCLAM-Technique: Comparing Aluminium With Steel by High Speed Imaging |
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| NA | On-demand Only | Effect of Path Accuracy on Additively Manufactured Specimens by Laser Material Deposition 6-Axis Robots |
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| NA | On-demand Only | Study of the Mechanical Behavior of Solid Stainless Steel Parts Manufactured by Laser Metal Deposition |
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| NA | Poster | Cu Paste Sintering Using Laser Compression Bonder for Electric Vehicle's Power Semiconductor Chip Bonding |
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| NA | Poster | Thermal Conditions for 3D Printing Metal Structures by Selective Laser Melting |
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| NA | Poster | Effect of Input Energy on Hardness and Surface Quality in Ti64 by Sputter-Less SLM with Modulated Pulse |
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| NA | Poster | On-Axis Optical Emission Sensing and Calibration for Laser-Based Additive Manufacturing |
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| Monday | Direct Energy Deposition Process Technology | Effect of Heat Accumulation on the Single Track Formation During Laser Metal Deposition and Development of a Framework for Analyzing Advanced Process Strategies |
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| Monday | Direct Energy Deposition Process Technology | Development of SLM Process Using 200W Blue Diode Laser for Pure Copper Additive Manufacturing of High Density Structure |
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| Monday | Direct Energy Deposition Process Technology | Development of a High-Speed Laser Material Deposition Process for Additive Manufacturing |
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| Monday | Power Bed Fusion Process Technology | Transient Dynamics and Stability of Keyhole at Threshold in Laser Powder Bed Fusion (LPBF) Regime Investigated by Finite Element Modeling |
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| Monday | Power Bed Fusion Process Technology | Effect of Pre-HIP Defects, Part Position, and Powder Quality on the Fatigue Performance of Additively Manufactured Ti-6Al-4V |
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| Monday | Power Bed Fusion Process Technology | Non-Intrusive Estimation of Sub-Surface Geometrical Attributes of the Melt Pool Through the Sensing of Surface Oscillations in Laser Powder Bed Fusion |
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| Monday | Sensing Technology I | The Dynamic Relationship Between Laser Absorption and Keyhole Geometry |
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| Monday | Sensing Technology I | Investigations on Optical Emissions and Their Relation to Processing Parameters and Processing Regimes in the Laser Powder Bed Fusion Process |
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| Monday | Sensing Technology I | High-Speed Imaging of Internal Flaw Formation During Powder Bed Fusion Additive Manufacturing |
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| Monday | Sensing Technology I | Digitalization of Directed Energy Deposition Process Through a Multi-Directional Height Monitoring Sensor System |
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| Tuesday | Directed Energy Deposition Materials Technology | Integration of Pure Copper to Optimize Heat Dissipation in Injection Mould Inserts Using Laser Metal Deposition |
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| Tuesday | Directed Energy Deposition Materials Technology | Effect of Wire Feeder Force Control on Laser Metal Deposition Process Using Coaxial Laser Head |
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| Tuesday | Directed Energy Deposition Materials Technology | Laser Clading of Nickel Base Hardfacing Material: Material Analyses and Manufacturing Process Evaluation on a Scale One Demonstrator |
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| Tuesday | Directed Energy Deposition Materials Technology | OCT Sensor for Layer Height Control in DED Using Siemens Machine Control |
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| Tuesday | Sensing Technology II | Particle Velocity Measurement in Powder Gas Jets of Coaxial Powder Nozzles for Laser Material Deposition |
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| Tuesday | Sensing Technology II | CT Based Analysis of Generation and Characterization of Parameter- and Process-induced Defects in Powder Bed Fusion Additive Manufacturing |
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| Tuesday | Sensing Technology II | Advancement in Monitoring and Quality Assurance Paradigms for Laser Powder-Bed Fusion |
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| Tuesday | Specialized Materials and Applications | Optical Emission Sensing for Laser-Based Additive Manufacturing â What Are We Actually Measuring? |
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| Tuesday | Specialized Materials and Applications | Toward In-Situ Flaw Detection in Laser Powder Bed Fusion Additive Manufacturing Through Layerwise Imagery and Machine Learning |
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| Tuesday | Specialized Materials and Applications | Fabrication and Characterization of Transparent Spinel Ceramics Prepared by Laser Direct Deposition |
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| Tuesday | Specialized Materials and Applications | A Science-Based Paradigm Enabling Microstructure-Tailored Additive Manufacturing of Metals |
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