A multi modal approach to microstructure evolution and mechanical response of additive friction stir deposited AZ31B Mg alloy (open access)

A multi modal approach to microstructure evolution and mechanical response of additive friction stir deposited AZ31B Mg alloy

Article explores solid-state additive manufacturing of AZ31B-Mg alloy using additive friction stir deposition. Spatial and temporal evolution of temperature during additive friction stir deposition was predicted using multi-layer computational process model.
Date: August 2, 2022
Creator: Joshi, Sameehan; Sharma, Shashank; Radhakrishnan, M.; Pantawane, Mangesh V.; Patil, Shreyash M.; Jin, Yuqi et al.
System: The UNT Digital Library
Progress in Superlubricity Across Different Media and Material Systems—A Review (open access)

Progress in Superlubricity Across Different Media and Material Systems—A Review

Article provides an overview of recent progress in superlubricity research involving solid, liquid, and gaseous media and discuss the prospects for achieving superlubricity in engineering applications leading to greater efficiency, durability, environmental quality, and hence global sustainability.
Date: August 12, 2022
Creator: Ayyagari, Aditya; Alam, Kazi Istiaque; Berman, Diana & Erdemir, Ali
System: The UNT Digital Library
Effect of pressure quenching on the structures and properties of borosilicate glasses: Insights from molecular dynamics simulations (open access)

Effect of pressure quenching on the structures and properties of borosilicate glasses: Insights from molecular dynamics simulations

Article describes how processes including hot compression, cold compression and subsequent annealing on the structures and properties are investigated and compared. They found that applying pressure up to 10 GPa at the glass transition temperature led to permanent densifications and a dramatic increase of elastic moduli by 90%, while thermal annealing reversed the increase and applying pressure at ambient temperature did not increase the modulus.
Date: August 23, 2022
Creator: Ren, Mengguo & Du, Jincheng
System: The UNT Digital Library