Designer anujaha
FEA Engineer | Finite Element Analysis for Metal Components
analysis (FEA) on steel brackets, rigging thimbles, and structural components to evaluate stress and deformation under static and wind loads.
2D & 3D Modeling Solidworks 2D CAD Drafting Services 3D Modeling 3D Rigging Design 3D Solid Modeling CAD Design Concept Design Design Engineering Services Design for Assembly Services DFM Services Drafting and Design Services FEA FEA Finite Element Analysis Finite Element Analysis Hourly Services Mechanical Drawing Services Mechanical Engineering Metal Design and Fabrication Mold and Die Design Services Part-to-CAD Modeling Rigging SolidWorks Engineering Services Structural Engineering
Designer Lucas_Dovalina
Certified professional designer using Autodesk Inventor
in FTC robotics - Created multiple hyper-realistic CAD models of our robots, modeling textures, deformities, tolerances, appearances, materials, realistically moving in real-time, and dimensionally accurate
2D to 3D Modeling 3D Logo Design 3D Modeling 3D Presentation Design 3D Printing Design 3D Product Animation 3D Rendering Services 3D Solid Modeling Autodesk Fusion 360 Autodesk Inventor CAD Data Translation Services CAD Design Design Engineering Services Engineering Design General Design Generative Shape Design Image to CAD Conversion Services Mechanical CAD Design Mechanical Drafting Mechanical Engineering Part to CAD Inspection PDF to CAD Conversion PDF to DWG Conversion Robotics Standardization of Drawings
3D Model staticfigure106
Static Analysis: Static structural analysis was conducted using ANSYS Workbench to determine the deformation and equivalent stress under static loads, simulating normal operating conditions. Modal Analysis:
3D Model Twin-Cylinder 150 PSI Steam Engine
was meshed, boundary conditions were applied, and deformation and shear stress distributions were obtained. The study demonstrated the maximum deformation of 0.062 mm and shear stress distribution up to
3D Model FEA Model Aluminum Part under Load
was meshed, boundary conditions were applied, and deformation and shear stress distributions were obtained. The study demonstrated the maximum deformation of 0.062 mm and shear stress distribution up to
3D Model Titanium Canister
m underwater - 12,000 psi. For an application like this, it is essential to perform stress and deformation analysis.
3D Model NONLINEAR STRESS ANALYSIS OF SIDE ARM CHARGER
Objective was to carry out Nonlinear Static Stress analysis and to get the maximum stresses and deformation in individual components like Coupler Arm, Guide Roller & Pinion.
3D Model STRESS ANALYSIS OF TRANSFER PLATFORM
The Objective was to carry out Linear Static Stress analysis and to get the maximum stresses and deformation in individual components like Coupler Arm, Guide Roller & Pinion Cylinder
Service I will design SolidWorks assemblies with ANSYS structural or thermal simulation
components) and back them up with a single-load ANSYS Mechanical simulation, either static structural (deformation, von Mises stress) or steady-state thermal, to validate the design against real operating conditions
Ansys Simulation Ansys Structural Assembly Assembly Modeling Ansys Mechanical (FEA) Finite Element Analysis (FEA) Simulation and Analysis Engineering FEA Simulation SolidWorks Assembly Engineering Ansys static structural Assembly Modeling Services Mechanical Design Services FEA Finite Element Analysis
Service I will perform ANSYS finite element analysis (FEA) and structural simulation
services include: • Static Structural Analysis • Equivalent (Von Mises) Stress Analysis • Total Deformation Analysis • Safety Factor Evaluation • Strain Analysis • Contact Analysis • Bolt and Joint Simulation
Solidworks FEA Analysis Mesh Generation Engineering Simulations ANSYS Workbench ANSYS Workbench ANSYS Fluent SolidWorks ANSYS FEA Finite Element Analysis Design Engineering Services Engineering Design