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Accelerating High-Throughput Screening for Structural Materials with Production Management Methods.

Alexander Bader1, Finn Meiners2, Kirsten Tracht3

  • 1Bremen Institute of Mechanical Engineering (BIME), University of Bremen, Badgasteiner Str. 1, 28359 Bremen, Germany. bader@bime.de.

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This study introduces a framework to accelerate high-throughput screening for metallic materials development. It optimizes material flow and handling to reduce testing times and improve efficiency.

Keywords:
manufacturing systemsmicro-manufacturingproduction planning

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Area of Science:

  • Materials Science
  • Engineering

Background:

  • High-throughput screening (HTS) is crucial for pharmaceutical development.
  • This principle is now being applied to metallic materials development.
  • Current HTS for materials requires improved logistical control for faster results.

Purpose of the Study:

  • To present a framework for accelerating high-throughput systems in metallic materials development.
  • To address the complex material flow and dynamic nature of these systems.
  • To reduce overall throughput time for material testing.

Main Methods:

  • Developing or adapting specialized methods for material generation, treatment, and testing.
  • Implementing strategies for processing trial plans and controlling test orders to minimize wait times.
  • Establishing efficient sample handling procedures to reduce non-productive time and lot processing.

Main Results:

  • The framework categorizes system acceleration into three key areas: process optimization, trial planning, and sample handling.
  • Specialized methods enhance the speed of material generation, treatment, and testing.
  • Efficient logistical control and sample handling reduce overall throughput time.

Conclusions:

  • The proposed framework provides a structured approach to accelerate high-throughput systems for metallic materials.
  • Optimizing material flow, test planning, and sample handling are critical for faster results.
  • This approach enhances the efficiency and speed of developing new metallic materials.