محمد رضا طرقی نژاد toroghi@iut.ac.ir Google Scholar نشانی دفتر اصفهان، دانشگاه صنعتی اصفهان، دانشکده مهندسی مواد، کد پستی ۸۳۱۱۱-۸۴۱۵۶ شماره تماس +98 (31) 33915726 فکس +98 (31) 33915726 پست ها و موقعیت های شغلی و سازمانی استاد زمینه های مورد علاقه شکل دهی فلزات بافت کریستالی مواد Mohammad Reza Toroghinejad نوع: Journal عنوان عنوان کنفرانس Date Emergence of hierarchical textural pattern in a Fe-rich FeMnNiCr high-entropy alloy: Identification of Goss texture MATERIALS CHARACTERIZATION 1404-11 Static recrystallization and texture evolution in multiphase FeCrCuMnNi high-entropy alloys: Mechanisms and strength-ductility synergy JOURNAL OF ALLOYS AND COMPOUNDS 1404-07 Evolution of Rotated Cube Texture and Its Influence on the Mechanical and Fracture Properties of Al/Ti/Alumina Composites Fabricated via ARB Metallography Microstructure and Analysis 1404-06 Data-driven prediction of ultimate tensile strength in low alloy steel: A machine learning approach COMPUTATIONAL MATERIALS SCIENCE 1404-05 Enhancing microstructure and mechanical properties of FeNi1.5CrCu0.5 high-entropy alloy through precipitation treatment and cold rolling Results in Materials 1404-03 Effect of prior austenite grain size on strength-ductility trade-off, phase evolution, and fracture behavior in a fully austenitizated QP steel: Insights into TRIP behavior Journal of Materials Research and Technology-JMR and T 1404-03 Characterization of dynamic recrystallization and development of a processing map during hot deformation of FeCoCrNi high-entropy alloy Journal of Materials Research and Technology-JMR and T 1404-03 Enhancement of strength and toughness of multicomponent Al-alloy via nano twining and nano precipitate through heat treatment Results in Engineering 1403-12 Microstructural evolution of Bi-layered NiCrAlY/CeO2 - Graphene Nanoplatelet coatings by air plasma spray and spark plasma sintering Heliyon 1403-12 The influence of precipitation on the microstructure, texture, and mechanical properties of high entropy FeNi1.5CrCu0.5 alloy following cold deformation and annealing Heliyon 1403-10