Laser surface engineering of B4C/Fe nano composite coating on low carbon steel: Experimental coupled with computational approach (open access)

Laser surface engineering of B4C/Fe nano composite coating on low carbon steel: Experimental coupled with computational approach

Article describes a study where laser surface engineering was successfully used to engineer a nano carbide composite coating on a low carbon steel substrate.
Date: February 19, 2020
Creator: Salloom, Riyadh; Joshi, Sameehan; Dahotre, Narendra B. & Srinivasan, S. G.
System: The UNT Digital Library
High-Temperature Nano-Indentation Creep Behavior of Multi-Principal Element Alloys under Static and Dynamic Loads (open access)

High-Temperature Nano-Indentation Creep Behavior of Multi-Principal Element Alloys under Static and Dynamic Loads

Paper describes the results of studies testing the creep resistance of two multi-principal element alloys, CoCrNi and CoCrFeMnNi.
Date: February 13, 2020
Creator: Sadeghilaridjani, Maryam & Mukherjee, Sundeep
System: The UNT Digital Library
Editorial: Catalysts for Clean Energy Conversion and Storage (open access)

Editorial: Catalysts for Clean Energy Conversion and Storage

An introduction to a series of research articles submitted on the topic of "Catalysts for Clean Energy Conversion and Storage".
Date: February 21, 2020
Creator: Xia, Zhenhai & Xiang, Zhonghua
System: The UNT Digital Library
High-Temperature Nano-Indentation Creep of Reduced Activity High Entropy Alloys Based on 4-5-6 Elemental Palette (open access)

High-Temperature Nano-Indentation Creep of Reduced Activity High Entropy Alloys Based on 4-5-6 Elemental Palette

In this article the time-dependent plastic deformation behavior of two refractory high entropy alloys was investigated, namely HfTaTiVZr and TaTiVWZr. These alloys are based on reduced activity metals from the 4-5-6 elemental palette that would allow easy post-service recycling after use in nuclear reactors. The creep behavior was investigated using nano-indentation over the temperature range of 298 K to 573 K under static and dynamic loads up to 5 N.
Date: February 18, 2020
Creator: Sadeghilaridjani, Maryam; Muskeri, Saideep; Pole, Mayur & Mukherjee, Sundeep
System: The UNT Digital Library
Small-scale mechanical behavior of a eutectic high entropy alloy (open access)

Small-scale mechanical behavior of a eutectic high entropy alloy

Article describes study evaluating small-scale mechanical behavior was for AlCoCrFeNi2.1 eutectic high entropy alloy, consisting of a lamellar arrangement of L12 and B2 solid-solution phases.
Date: February 14, 2020
Creator: Muskeri, Saideep; Hasannaeimi, Vahid; Salloom, Riyadh; Sadeghilaridjani, Maryam & Mukherjee, Sundeep
System: The UNT Digital Library