Shear strain gradient in Cu/Nb nanolaminates: Strain accommodation and chemical mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta, M Song… - Acta Materialia, 2022 - Elsevier
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …

Shear strain gradient in Cu/Nb nanolaminates: Strain accommodation and chemical mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta, M Song… - Acta Materialia, 2022 - osti.gov
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …

Shear strain gradient in Cu/Nb nanolaminates: Strain accommodation and chemical mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta… - Acta …, 2022 - ui.adsabs.harvard.edu
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …

Shear Strain Gradient in Cu/Nb Nanolaminates: Strain Accommodation and Chemical Mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta… - … and Chemical Mixing - papers.ssrn.com
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …

Shear strain gradient in Cu/Nb nanolaminates: Strain accommodation and chemical mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta… - Acta …, 2022 - scholars.cityu.edu.hk
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …

Shear strain gradient in Cu/Nb nanolaminates: Strain accommodation and chemical mixing

X Ma, B Gwalani, J Tao, M Efe, M Olszta, M Song… - Acta Materialia, 2022 - Elsevier
Disentangling the intragranular and interfacial plasticity contribution to the overall strain
accommodation is crucial to understanding the microstructural evolution and mass transport …