Work from Office
Full Time
Roles and Responsibilities:
Perform FEA on aero engine components using ANSYS Classic/Workbench, following standard simulation practices.
Deliver analysis results on time with full compliance to team lead expectations, especially for NCs, QNs, and OTCs.
Conduct static and non-linear analysis of metallic/ composite aero components including material, geometric, and contact behaviors.
Create detailed stress analysis reports and perform self-review to ensure quality and accuracy.
Should work on Aero engine components using ANSYS classic/ Workbench
Execute a standard FEA process for aero engine components and deliver results on time set by team lead with 100%, especially NCs, QNs, and OTCs.
Exhibit a proactive attitude, strong communication skills, and self-learning capability.
Understand and follow structural analysis quality processes and engineering workflows.
Apply strong fundamentals in mechanical engineering, solid mechanics, fatigue, and machine design.
Perform design modifications and validate them using Finite Element Analysis (FEA).
Exhibit strong technical, interpersonal and problem-solving skills.
Provide alternative solutions for field issues and support root cause analysis.
Mandatory skills:
3 to 5 years of experience in stress analysis of mechanical aerospace components using ANSYS APDL/Workbench/HyperMesh/OptiStruct.
Proficient in F&DT and lifing processes for structural components.
Experience handling NCs, QNs, and OTCs.
Solid understanding of FEA theory, solid mechanics, machine design, and fatigue analysis.
Skilled in 2D & 3D finite element modeling (Hexahedral & Tetrahedral elements).
Expertise in linear and non-linear static stress analysis, modal, harmonic, and transient dynamic analysis using ANSYS tools.
Knowledge of strength, stability, durability, and damage tolerance analysis.
Ability to modify APDL macros, update FE models in Hypermesh
Desired Skills:
Familiarity with structural component lifing tools.
Experience in scripting languages such as MATLAB, VB, TCL/Tk, or Python.
Knowledge of hand calculations, engineering standards, and design codes.
Basic proficiency in CAD tools.
Roles and ResponsibilitiesRoles and Responsibilities: Perform FEA on aero engine components using ANSYS Classic/Workbench, following standard simulation practices. Deliver analysis results on time with full compliance to team lead expectations, especially for NCs, QNs, and OTCs. Conduct static and non-linear analysis of metallic/ composite aero components including material, geometric, and contact behaviors. Create detailed stress analysis reports and perform self-review to ensure quality and accuracy. Should work on Aero engine components using ANSYS classic/ Workbench Execute a standard FEA process for aero engine components and deliver results on time set by team lead with 100%, especially NCs, QNs, and OTCs. Exhibit a proactive attitude, strong communication skills, and self-learning capability. Understand and follow structural analysis quality processes and engineering workflows. Apply strong fundamentals in mechanical engineering, solid mechanics, fatigue, and machine design. Perform design modifications and validate them using Finite Element Analysis (FEA). Exhibit strong technical, interpersonal and problem-solving skills. Provide alternative solutions for field issues and support root cause analysis. Mandatory skills: 3 to 5 years of experience in stress analysis of mechanical aerospace components using ANSYS APDL/Workbench/HyperMesh/OptiStruct. Proficient in F&DT and lifing processes for structural components. Experience handling NCs, QNs, and OTCs. Solid understanding of FEA theory, solid mechanics, machine design, and fatigue analysis. Skilled in 2D & 3D finite element modeling (Hexahedral & Tetrahedral elements). Expertise in linear and non-linear static stress analysis, modal, harmonic, and transient dynamic analysis using ANSYS tools. Knowledge of strength, stability, durability, and damage tolerance analysis. Ability to modify APDL macros, update FE models in Hypermesh Desired Skills: Familiarity with structural component lifing tools. Experience in scripting languages such as MATLAB, VB, TCL/Tk, or Python. Knowledge of hand calculations, engineering standards, and design codes. Basic proficiency in CAD tools.
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