日本語

Artificial intelligence accelerates the process design of 3D printing of metal alloys

196
2024-02-27 17:00:47
翻訳を見る

In order to successfully 3D print metal parts to meet the strict specifications required by many industries, it is necessary to optimize process parameters, including printing speed, laser power, and layer thickness of deposited materials.

However, in order to develop additive manufacturing process diagrams that ensure these optimal results, researchers have to rely on traditional methods, such as using off-site material characterization to test laboratory experiments on parts printed with various parameters. Testing so many parameter combinations to develop the best process may be time-consuming and expensive, especially considering the various metals and alloys available for additive manufacturing.

David Guirguis, Jack Beuth, and Conrad Tucker from the Department of Mechanical Engineering at Carnegie Mellon University have developed a system that utilizes ultra high speed in situ imaging and visual transformers. This system not only optimizes these process parameters, but also has scalability, making it applicable to various metal alloys.

Their research findings are published in the journal Nature Communications.
Visual converter is a form of machine learning that applies neural network architectures originally developed for natural language processing tasks to computer vision tasks, such as image classification. The video visual converter goes further by using video sequences instead of still images to capture spatial and temporal relationships, enabling the model to learn complex patterns and dependencies in video data.

The self attention mechanism allows natural language processing models to balance the importance of different words in a sequence, and allows models created by Guirguis to balance the importance of different parts of the input sequence to predict the occurrence of defects.

"We need to automate this process, but it cannot be achieved solely through computer programming," explained Guirguis, a postdoctoral researcher in mechanical engineering. To capture these patterns, we need to apply machine learning.

"We are pleased to have developed an artificial intelligence method that utilizes the temporal characteristics of additive manufacturing imaging data to detect different types of defects. This demonstrates the groundbreaking generalizability of AI methods using different AM metals and reveals that the same trained AI model can be used without the need for expensive retraining with additional data," commented Professor Tucker of Mechanical Engineering.

Guirguis said he is fortunate to have received such powerful machine learning training at Carnegie Mellon University because mechanical engineers know how to apply experimental and computational solutions to the problems they solve, which is more important than ever before.

In this case, Guirguis attempts to overcome the main limitations of in-situ imaging in laser powder bed melt additive manufacturing processes. This technology uses high-power laser as an energy source to melt and melt powder at specific locations to form certain shapes, then a new layer of powder is spread out by a recoating machine, and the process is repeated until a 3D object is formed.

However, during the printing process, the molten metal seen by the camera is saturated, so its physical characteristics cannot be seen, which can identify defects that may reduce mechanical performance and fatigue life of printed parts.

Source: Laser Net

関連のおすすめ
  • New Progress: III-V Laser and Silicon Optics Technology Achieve Single Chip High Integration

    Recently, Scientific Photonics, a supplier of silicon photonic integrated circuits (PICs) headquartered in Grenoble, announced that it has successfully integrated III-V-DFB lasers and amplifiers with standard silicon photonic technology into the production process of Tower Semiconductor.By utilizing proprietary technology and standard silicon photonics, Scientific Photonics has achieved full inte...

    2024-03-01
    翻訳を見る
  • Defects and solutions that are prone to occur when laser welding square shell battery explosion-proof valves for power batteries

    For example, the commonly used square shell battery cells for power batteries include laser welding of cover explosion-proof valves, laser welding of pole columns, and laser welding of cover plates and shells. During the process of laser welding of aluminum alloy, it is easy to generate unqualified phenomena such as explosion points, pores, welding cracks, excessive depth and width of fusion. ...

    2023-09-15
    翻訳を見る
  • AEROTECH releases updated AUTOMATION1 motion control platform

    Aerotech is a global leader in precision motion control and automation, and every release has made the Automation1 motion control platform even stronger and more user-friendly. Version 2.5 brings TCP socket interface (test version), Automation1 MachineApps HMI development, new auxiliary module for motor settings, and improved machine settings for galvanometer laser scanning heads.Automation1 conti...

    2023-08-14
    翻訳を見る
  • Ecken develops a new type of iron silicon powder for 3D printing of motors

    Through the SOMA project funded by the European Union, organic silicon material expert Aiken has collaborated with research partners and clients to develop a new specialized iron silicon powder that can more efficiently 3D print motor components.Yesterday's electric motor was usually made by cutting and shaping parts from a metal plate. 3D printing can fundamentally improve efficiency and...

    2024-01-20
    翻訳を見る
  • LAP launches CAD-PRO Xpert, an industrial laser projector using cutting-edge technology platforms

    LAP launched its latest version of the industrial laser projection system CAD-PRO Xpert at this year's JEC World. This innovation signifies the company's commitment to providing the most advanced laser engineering for various industries to achieve precise, efficient, and reliable laser guidance and positioning tasks, which is an important milestone.Redefining laser projection in the production pro...

    2024-03-07
    翻訳を見る