Work Experience
Work Experience
Metal Forming
Die Design Experience
Welding Process Specification for SAW, SMAW, GTAW (WPS & PQR)
ASME B31.3 Compliance Design
ASME Section VIII Compliance Design
ASTM and API 5L Design Compliance
Creating Designs That Can Be Produced With Minimal Complexity.
Reducing Production Costs.
Improving Quality
Hand-on CNC Cutting
CNC Rolling
Arc Welding
Heat Treatment ( Normalizing, Quenching & Tempering)
Tensile
Fatigue
Creep
Compression
DIC
Optical Micropscopy
Amusement Ride Designs (FEA, Code Compliance)
Rigid Body Dynamics
Frisbee Design
Dynamic motion simulation is performed using MSC Adams software.
Velocity, acceleration, and forces are defined using this software.
The restraint system design is based on these calculations.
Finite Element Analysis
Gyroscope
Designed portable gyroscope ride for adults
Analyzed multiaxial loads using dynamic simulation
Applied fatigue-resistant welds and coatings
Ensured safety via anthropometric reach limits
Complied with ASTM, EN, and Iranian standards
Sky Flyer
Engineered flying swing ride structural integrity (height=60m)
Calculated seismic, wind, and working loads
Performed modal analysis using ANSYS APDL
Verified materials with KISSSOFT, MITCalc tools
Designed occupant safety and backup systems
Conducted fatigue and electrical risk analysis
Complied with ISIRI and BS EN standards
Crazy Mouse (Roller Coaster)
Verified ride safety using ISIRI standards
Calculated dead, live, wind, and seismic loads
Analyzed structural components with ANSYS software
Selected ST-37 and UNS 41300 steels
Assessed fatigue, electrical, and rollback risks
Kiddie Ferris Wheel
3D design
Kinematic calculations
fatigue life assessment using ANSYS and En 1993
Virtial Reality
3D design
Occupant Reach Envelope
Restrain system design
FEA using ANSYS Mechanical
Other Kiddie Rides
Design: Simulate dynamics, analyze loads, ensure compliance.
Fabrication: Cut, weld, treat, and assemble per standards.
Inspection: Verify fatigue, safety, and commission for operation.
Beveling Machine Design
Shaft design based on speed and load
Bearing selection based on machinery handbooks
Material selection and hardening process design
GD&T and fabrication process supervision