Chapters 5 , 6 , and 7 reported the ML-driven mechanical characterization of different graphene configurations, which are the lower dimensional nanomaterials. To extend a similar approach in the nanoscale design of high-dimensional materials systems, this chapter presents the ML-driven strategy for designing lightweight AlCoCrFeNi high entropy alloys while enhancing Young’s modulus.

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High-Entropy Alloy: A Data-Driven Quasi-Static Characterization

  • Kritesh Kumar Gupta,
  • Sudip Dey,
  • Tanmoy Mukhopadhyay

摘要

Chapters 5 , 6 , and 7 reported the ML-driven mechanical characterization of different graphene configurations, which are the lower dimensional nanomaterials. To extend a similar approach in the nanoscale design of high-dimensional materials systems, this chapter presents the ML-driven strategy for designing lightweight AlCoCrFeNi high entropy alloys while enhancing Young’s modulus.