حسین عربی

استاد، دانشکده مهندسی مواد و متالورژی، دانشگاه علم و صنعت ایران

[ 5 ] - Fabrication and characterization of the Ti-6Al-4V/Mg scaffold

Ti–6Al–4V scaffolds were fabricated by powder metallurgical space holder technique in this research. The most added magnesium (Mg) powder was evaporated and a skeleton of Ti-6Al-4V alloy was produced. For this purpose Ti-6Al-4V and Mg powders mixture compacted in a steel die by applying uniaxial pressure of 500 MPa before sintering the green product in a sealed quartz tubes at 900 °C for 2 hour...

[ 6 ] - بررسی تجربی آثار خستگی حرارتی و بارگذاری خمشی ثابت بر واماندگی یک نمونة پوشش‌ سد حرارتی

در این پژوهش واماندگی پوشش‌های سد حرارتی تحت تأثیر بارگذاری حرارتی سیکلی و بار مکانیکی ثابت به‌صورت تجربی بررسی شده است. آزمایش‌های تجربی روی نمونه‌هایی انجام‌شده است که از جنس آلیاژ اینکونل 617 بوده و با پوشش‌های سد حرارتی دولایة شامل پوشش پیوندی Ni22Cr10Al1Y و پوشش فوقانی ZrO2.8wt%Y2O3و به‌روش پاشش پلاسما در محیط هوا پوشش‌دهی شده‌اند. نمونه‌ها توسط یک دستگاه خستگی حرارتی که ...

[ 7 ] - Formation Mechanism of Silicon Modified Aluminide Coating on a Ni-Base Superalloy

Formation mechanism of silicon modified aluminide coating applied on a nickel base super alloy IN-738 LC by pack cementation process was the subject of investigation in this research. Study of the microstructure and compositions of the coating was carried out, using optical and scanning electron microscopes, EDS and X-ray diffraction (XRD) techniques. The results showed that due to low partial ...

[ 8 ] - Flow Stress Modeling in a γ-γ/ Cobalt Base Superalloy by Using the Hyperbolic Sine Equation and ANN Method

The new class of wrought γ-γ/ Co-base superalloys, which are based on Co-Al-W system,  was developed by conventional hot working routes with a high volume fraction of γ/ precipitates and good mechanical properties. The aim of the present study was to predict the flow stress and hot deformation modeling of a novel γ-γ/ Co-base superalloy. The hot compression test...

[ 9 ] - Non-isothermal Primary Crystallization Kinetics of the Amorphous Fe85.3B11P3Cu0.7 Alloy

In the present research, the primary crystallization kinetics of the amorphous Fe85.3B11P3Cu0.7 alloy was analyzed using non-isothermal DSC measurements. The average and local activation energies, Ea, were determined by different isokinetic and isoconversional methods. The results obtained for activation energy in this research, show that due to the complexity of the primary crystallization pro...