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44 results on '"Rao, Ziyuan"'

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1. Interpretable Machine Learning for High-Strength High-Entropy Alloy Design

3. The Premartensite and Martensite in Fe50Rh50 System

4. Machine learning-enabled high-entropy alloy discovery

5. Martensitic phase transformation in short-range ordered Fe50Rh50 system induced by thermal stress and mechanical deformation

15. Boosting Coercivity of 3D Printed Hard Magnets through Nano‐Modification of the Powder Feedstock.

16. Active learning strategies for the design of sustainable alloys.

19. Location and morphology of ferromagnetic precipitates in Ni-Mn-Sn

21. Influence of silver nanoparticle additivation on Nd-Fe-B permanent magnets produced by Laser Powder Bed Fusion

23. Machine learning–enabled high-entropy alloy discovery

24. Quantitative three-dimensional imaging of chemical short-range order via machine learning enhanced atom probe tomography

27. Design of invar and magnetic high-entropy alloys

29. Beyond Solid Solution High-Entropy Alloys: Tailoring Magnetic Properties via Spinodal Decomposition

33. Beyond Solid Solution High‐Entropy Alloys: Tailoring Magnetic Properties via Spinodal Decomposition

34. Crystal–Glass High‐Entropy Nanocomposites with Near Theoretical Compressive Strength and Large Deformability

35. Role of magnetic ordering for the design of quinary TWIP-TRIP high entropy alloys

36. Unveiling the mechanism of abnormal magnetic behavior of FeNiCoMnCu high-entropy alloys through a joint experimental-theoretical study

38. Unveiling the mechanism of abnormal magnetic behavior of FeNiCoMnCu high-entropy alloys through a joint experimental-theoretical study

39. Invar effects in FeNiCo medium entropy alloys: From an Invar treasure map to alloy design

40. Beyond Solid Solution High‐Entropy Alloys: Tailoring Magnetic Properties via Spinodal Decomposition.

42. Microstructure, Mechanical Properties, and Oxidation Behavior of Al xCr0.4CuFe0.4MnNi High Entropy Alloys.

44. Ductilization of 2.6-GPa alloys via short-range ordered interfaces and supranano precipitates.

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