MOHAMMED ADNAAN HUSSAIN
***-* **** ***. ***** RICHMOND HILL, NY 11419
PHONE: 480-***-****
E-MAIL: ********@**.**********.***
OBJECTIVE
Technically skilled and diligent Mechanical Engineer actively looking for full-time opportunities in the field of Design, Optimization, Modeling, and Analysis. Aspire to take up challenging team projects and looking for hands-on experience in the industry to further enhance my knowledge and to add value to the industry.
EDUCATION
University of Bridgeport, Bridgeport
December 2016
Masters of Science in Mechanical Engineering
GPA: 3.54
JNTU- Hyderabad, India
May 2014
Bachelors of Technology in Mechanical Engineering
GPA: 3.8
Employment Authorization Card: Issued by USCIS on March 23, 2017 for Student Post-Completion OPT
TECHNICAL SKILLS
Computer Skills: Microsoft Excel, PowerPoint, Word, Outlook, Google Docs.
Software Languages: C, MATLAB.
Technical Software: AutoCAD, SolidWorks, JMP, Minitab, ANSYS, Inventor, EES, PRO-E.
Machine Experience: Lathe, Saws, Drill press, Grinders, Carpentry, Foundry, CNC Machine testing.
ACADEMIC PROJECTS
Design and Analysis of Pressure Vessel Fall 2016
Designed a Pressure vessel as per the ASME Section VIII for a horizontal saddle support vessel used to store compressed air at high pressures using SolidWorks.
Performed a static structural analysis using SolidWorks Simulations to understand the effects of pressure acting on the internal surfaces of the vessel.
Static Structural Analysis of Flywheel Summer 2016
Explained the mechanical behavior of the real physical system being modeled.
Analyzed the flywheel using ANSYS software to determine Deformation, Stress, Shear, Elastic Strain and Factor of Safety and then investigated the design parameters to optimize them for better results.
Automated Assembling Machinery Design Summer 2016
Designed an automated high-speed assembly machine using SolidWorks for a gas pressurized ball point pen.
Fabricated a system to enhance and simplify the ink and gas filling. Maintained the design fit needed between the parts and prepared a Bill of Materials for easy understanding of the manufacturing process.
Finite Element Analysis of GE Jet Engine Bracket Spring 2016
Performed a Finite Element Analysis (FEA) using ANSYS software to compare the Structural analysis results of Modified and Unmodified GE bracket under varied loading conditions.
Enhanced the performance of the GE bracket by significantly reducing the mass and volume of the original GE jet engine bracket and manufactured it using additive manufacturing techniques.
Additive Manufacturing Project – Raspberry Pi2 Case Spring 2016
Designed the case using SolidWorks in such a way that the RasPi2 could be mounted on a wall with provisions for enhancements like an LCD unit and a CCTV camera module.
Installed Yahoo Weather module into the RasPi2 to display live weather using the Internet.
Solar Still Optimization Fall 2015
Co-led a team of 6 master students by assigning tasks, managing the project and organizing weekly meetings to ensure that the critical deadlines were met.
Designed a single sloped solar still with the different degrees of slope to determine which prototype received the most solar radiation by collecting distilled water.
Design of Aircraft Fuselage Section Spring 2015
Determined the stresses acting on the thin sheets, stringers and fuselage frames as per the given loading condition for the given metallic and ceramic materials.
Optimized the dimensions of the parts to produce a safe design with minimal weight.
Simulation of Dye mixing with a Fluid using C Programming Spring 2015
Simulated the 2-D flow described by the Navier-Stokes Equations using the Fractional Step Method on a Staggered Mesh using C language.
Utilized the Crank-Nicholson method for the predicting the step and performed a Grid Convergence Analysis by mesh refinement to estimate the velocity of the fluid within 0.25% accuracy.
Analysis of Factors Affecting Metal Removal Rate in Cylindrical Grinding Operation Fall 2014
Performed an experiment to distinguish the elements that influence the metal removal rate of the AISI M2 steel undergoing a cylindrical grinding operation.
Randomized the runs using JMP Pro 11 and performed Analysis of Variance (ANOVA) to find significant factors affecting the Metal Removal Rate (MRR).
Probabilistic Approach to Analysis of Deflection in A Cantilever Beam Fall 2014
Applied probabilistic and reliability measures on a Cantilever beam of a uniform rectangular cross for analyzing the deflections due to a point load acting on its free end.
Explained the sensitivity of the parameters used and performed the reliability analysis to know the probability of failure of the beam by applying FORM and Monte Carlo Simulation Method.
Optimization of Weld Bead Geometry and Tensile Strength Using Grey Taguchi Method Spring 2014
Applied Taguchi method coupled with Grey relation analysis for solving the multi-criteria optimizing problem in the field of Tungsten inert gas welding (TIG) process.
Optimized the tensile strength of TIG welding using Taguchi method to obtain highly significant results which were verified using Analysis of Variance method (ANOVA).
WORK EXPERIENCE
University of Bridgeport – IDEAL Program July 2016-December 2016
Front Desk Assistant
Assisted students in class enrollment and in scheduling appointments via telephone, email, and in-person.
Aided Staff in the filing, documenting and typesetting.
Arizona State University – Follet: December 2014 – January 2015
Bookstore Associate
Assisted and directed students and staff to locate items in the store.
Handled phone calls to take orders, track shipping and notify staff members of the delivery.
JNTU- Hyderabad, India December 2013- April 2014
Placement Coordinator for Purple Leap – Industry-Academic Partnership Program
Coordinated the campus placements for senior year engineering students.
Helped in the efficient implementation of Campus Recruitment Training program(CRT).