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22 results on '"Timothy G. Lach"'

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1. Precipitation-site competition in duplex stainless steels: Cu clusters vs spinodal decomposition interfaces as nucleation sites during thermal aging

2. Monte Carlo simulations of Cu/Ni–Si–Mn co-precipitation in duplex stainless steels

3. Fission recoil-induced microstructural evolution of the fuel-cladding interface [FCI] in high burnup BWR fuel

4. Effects of thermal aging on the fracture toughness of cast stainless steel CF8

8. Co-dependent microstructural evolution pathways in metastable δ-ferrite in cast austenitic stainless steels during thermal aging

9. Evolution of the role of molybdenum in duplex stainless steels during thermal aging: From enhancing spinodal decomposition to forming heterogeneous precipitates

10. Irradiation stability and thermomechanical properties of 3D-printed SiC

11. Mechanical property degradation and microstructural evolution of cast austenitic stainless steels under short-term thermal aging

12. Correlative STEM-APT characterization of radiation-induced segregation and precipitation of in-service BWR 304 stainless steel

13. Deuterium permeation and retention in 316L Stainless Steel Manufactured by Laser Powder Bed Fusion

14. Mechanical behavior of additively manufactured and wrought 316L stainless steels before and after neutron irradiation

15. A pathway to synthesizing single-crystal Fe and FeCr films

16. Degradation of impact toughness in cast stainless steels during long-term thermal aging

17. Focused ion beam for improved spatially-resolved mass spectrometry and analysis of radioactive materials for uranium isotopic analysis

18. Role of interfaces on the trapping of He in 2D and 3D Cu–Nb nanocomposites

19. Microstructural evolution of nanolayered Cu–Nb composites subjected to high-pressure torsion

20. Characterization of slag and metal from uranium bomb reduction: Morphology, speciation, and the search for thorium

21. Dependence of shear-induced mixing on length scale

22. Corrigendum to 'Microstructural evolution of nanolayered Cu–Nb composites subjected to high pressure torsion' [Acta Materialia 72 (2014) 178–191]

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