CV


FA
Majid Abbasi

Majid Abbasi

Associate Professor

College: Materials & Industrial Engineering

Department: Materials Engineering

CV
FA
Majid Abbasi

Associate Professor Majid Abbasi

College: Materials & Industrial Engineering - Department: Materials Engineering

Work Experience

activity_titleactivity_descstartedAtendedAt
Casting Principles(not set)(not set)
Quality Control(not set)(not set)
Non Destructive Tests(not set)(not set)
Technology Of Costing Methods(not set)(not set)
Metallurgy(not set)(not set)
Casting and Forging Workshop(not set)(not set)
Casting Principles Wokshop(not set)(not set)
Physical properties of Materials 2(not set)(not set)
Casting Laboratory(not set)(not set)
Non - Destractieve Evaluation Laboratory(not set)(not set)
SolidifiCation Laboratory(not set)(not set)
Scientific and Engineering Report(not set)(not set)
Casting 1(not set)(not set)
Non - Destructive Evaluation(not set)(not set)
SolidifiCation(not set)(not set)
Quality Control of Materials(not set)(not set)
Advanced solidification processes(not set)(not set)
Metals Extraction(not set)(not set)
Advanced non-destructive methods(not set)(not set)
Principles of solidification and Casting(not set)(not set)
activity_titleactivity_descstartedAtendedAt
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)
Microstructures and impact wear behavior of Al-alloyed ultra-high-Mn austenitic cast steel after aging treatment01 January 2019(not set)
Multi-scale microstructure high-strength titanium alloy lattice structure manufactured via selective laser melting01 January 2021(not set)
Optimization of centrifugal casting parameters to produce the functionally graded Al-15 wt.% Mg2Si composites with higher tensile properties01 January 2019(not set)

PresenceTime

Saturday Sat Sunday Sun Monday Mon Tuesday Tue Wednesday Wed Thursday Thu Friday Fri
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18-20 - - - - - - -
20-22 - - - - - - -
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