5,413 Stress Analysis jobs in India
Stress Analysis Engineer
Posted today
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Job Description
We are seeking experienced Mechanical Integrity Engineers with strong expertise in Stress Analysis and Finite Element Analysis (FEA) to ensure the structural integrity and reliability of aerospace components. This role involves detailed mechanical analysis across a wide range of engine commodities and supports the full lifecycle of product development—from concept to in-service support and disposal.
Key Responsibilities:
- Perform stress analysis and FEA simulations to validate mechanical integrity of components such as fans, compressors, casings, combustors, turbines, and structures.
- Apply FEA tools (e.g., Abaqus, Ansys, LS-Dyna) to predict mechanical behavior under various loading conditions including fatigue (low & high cycle), creep, vibration, thermal loads, and extreme operating scenarios (blade-out, over-speed, burst duct).
- Conduct mechanical integrity assessments to ensure product robustness and compliance with design requirements.
- Support in-service engine safety through stress analysis and mechanical evaluations.
- Lead Design of Experiments (DoE) and mechanical testing to validate stress predictions and improve design reliability.
- Collaborate with multi-disciplinary teams to ensure designs meet performance, manufacturability, cost, and weight targets.
- Define and execute analysis plans aligned with project milestones, cost, and quality goals.
- Recommend design optimizations using Robust Engineering principles and stress analysis insights.
- Drive continuous improvement in FEA methods , stress analysis processes, and mechanical integrity tools.
- Act as a subject matter expert in stress analysis and FEA , sharing knowledge across engineering functions.
Technical Skills Required:
- Strong experience in Finite Element Analysis (FEA) using tools such as Abaqus, Ansys, LS-Dyna .
- Proficiency in stress analysis , mechanical behavior prediction, and failure mechanism evaluation.
- Familiarity with meshing tools (e.g., Hypermesh, Unigraphics) and data management systems (e.g., Teamcenter).
- Understanding of material science, crack propagation, contact mechanics, and thermo-mechanical fatigue.
- Ability to communicate complex FEA and stress analysis results to internal and external stakeholders.
- Knowledge of aerospace product integrity, liability, and certification frameworks.
Qualifications:
- Degree in Mechanical, Aerospace, or Structural Engineering (BE/BTech/MSc/MEng).
- 1 to 10 years of hands-on experience in FEA , stress analysis , and mechanical integrity in aerospace or related industries.
Lead Stress Analysis Engineer
Posted 6 days ago
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Job Description
Key Responsibilities:
- Perform advanced stress, strain, vibration, and fatigue analysis using FEA software.
- Develop and validate complex FEA models for mechanical components and systems.
- Define appropriate boundary conditions, loads, and material properties for analysis.
- Interpret simulation results and generate detailed technical reports with recommendations.
- Collaborate with design engineers to optimize component design for strength, stiffness, and durability.
- Validate FEA results through correlation with test data.
- Lead and mentor junior stress analysis engineers, including review of their analyses.
- Develop and implement standardized analysis methodologies and best practices.
- Contribute to the selection and procurement of analysis software and hardware.
- Stay updated with the latest advancements in FEA techniques and simulation technologies.
- Bachelor's or Master's degree in Mechanical Engineering or a related field.
- Minimum of 8 years of experience in stress analysis and FEA.
- Expertise in using FEA software such as ANSYS, Abaqus, or NASTRAN.
- Strong knowledge of structural mechanics, continuum mechanics, and material science.
- Experience with various analysis types including static, modal, harmonic, transient, and fatigue analysis.
- Proficiency in CAD software for model preparation.
- Excellent analytical and problem-solving skills.
- Strong technical communication skills, with the ability to present complex technical information effectively.
- Proven leadership and mentoring capabilities.
Lead Stress Analysis Engineer
Posted 8 days ago
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Job Description
Key responsibilities will include defining analysis requirements, creating detailed FE models, performing simulations, interpreting results, and providing clear, concise recommendations to design and manufacturing teams. The successful candidate will possess a deep understanding of material science, mechanics of materials, and structural dynamics. You will collaborate closely with cross-functional teams, including designers, R&D, and quality assurance, to identify potential issues early in the design cycle and propose effective solutions. Strong communication skills are essential for presenting complex technical findings to both technical and non-technical audiences.
Responsibilities:
- Lead and execute stress analysis projects for new and existing mechanical components and systems.
- Develop and validate Finite Element Analysis (FEA) models using industry-standard software (e.g., ANSYS, Abaqus).
- Perform linear and non-linear static, dynamic, thermal, and fatigue analyses.
- Interpret simulation results, identify failure modes, and recommend design improvements.
- Mentor and guide junior stress analysis engineers, fostering their technical growth.
- Collaborate with design engineers to ensure structural requirements are met throughout the product development lifecycle.
- Develop and maintain analysis procedures, standards, and best practices.
- Prepare technical reports and present findings to project teams and management.
- Stay abreast of the latest advancements in stress analysis techniques and software.
Qualifications:
- Master's or Ph.D. in Mechanical Engineering or a related field.
- Minimum of 7 years of experience in stress analysis and FEA.
- Proven experience leading analysis projects and mentoring engineers.
- Expertise in FEA software such as ANSYS, Abaqus, or similar.
- Strong understanding of material properties, failure theories, and fatigue analysis.
- Excellent analytical, problem-solving, and critical thinking skills.
- Proficiency in CAD software is a plus.
- Strong verbal and written communication skills.
- Ability to work effectively in a collaborative, hybrid work environment.
Lead Stress Analysis Engineer
Posted 12 days ago
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Job Description
The ideal candidate will possess a strong foundation in mechanical engineering principles, advanced knowledge of FEA software (e.g., ANSYS, ABAQUS, NASTRAN), and a proven track record in stress analysis of metallic and non-metallic structures. You will work closely with design engineers, manufacturing teams, and project managers to address structural challenges and optimize product performance. Responsibilities include developing analysis plans, creating mesh models, performing static, dynamic, and fatigue analyses, and interpreting results to provide clear and actionable recommendations. You will also be expected to mentor junior engineers, review their work, and contribute to the continuous improvement of analysis methodologies and best practices.
Key Responsibilities include:
- Leading and executing stress analysis for new product development and existing product improvements.
- Performing advanced FEA, including modal, transient, static, buckling, and fatigue analyses.
- Validating simulation results with hand calculations and experimental data where applicable.
- Collaborating with cross-functional teams to ensure structural integrity and performance requirements are met.
- Developing and maintaining analysis procedures and documentation.
- Mentoring and guiding junior stress analysis engineers.
- Staying current with the latest advancements in FEA technology and stress analysis techniques.
- Ensuring all analyses adhere to quality standards and regulatory requirements.
Lead Stress Analysis Engineer
Posted 12 days ago
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Job Description
Primary responsibilities will include:
- Leading and conducting advanced stress, strain, and fatigue analysis using Finite Element Analysis (FEA) software.
- Developing and validating FEA models for complex mechanical components and assemblies.
- Interpreting simulation results and providing actionable design recommendations to product development teams.
- Mentoring and guiding junior stress engineers, fostering technical growth and best practices.
- Managing project timelines, resources, and deliverables for stress analysis tasks.
- Collaborating closely with design engineers, material scientists, and testing teams to ensure product reliability.
- Developing and implementing advanced analysis techniques and methodologies.
- Performing root cause analysis for field failures related to structural performance.
- Presenting complex technical findings to internal stakeholders and external clients.
- Staying current with industry trends, new materials, and advanced simulation technologies.
- Ensuring compliance with automotive industry standards and regulations.
- Defining testing requirements to validate simulation results and product performance.
- Contributing to the continuous improvement of the engineering analysis process.
The successful candidate will have a Master's degree in Mechanical Engineering, Aerospace Engineering, or a related discipline, with at least 7-10 years of hands-on experience in stress and FEA analysis, preferably within the automotive or aerospace industry. Demonstrated leadership experience is essential. Expertise in industry-standard FEA software such as ANSYS, Abaqus, or Nastran is mandatory. A strong understanding of material science, mechanics of materials, and failure modes is required. Excellent analytical, problem-solving, and communication skills are necessary. The ability to manage multiple projects simultaneously and work effectively in a fast-paced environment is key. Experience with design optimization techniques and topology optimization is a plus. This is an exciting opportunity to work on cutting-edge automotive technology in **Chennai, Tamil Nadu, IN**, and shape the future of vehicle engineering.
Lead Stress Analysis Engineer
Posted 14 days ago
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Job Description
Key Responsibilities:
- Lead and manage stress analysis activities for new product development and existing product improvements.
- Perform linear and non-linear static and dynamic stress analysis using FEA software (e.g., ANSYS, ABAQUS, NASTRAN).
- Interpret FEA results, identify potential failure modes, and recommend design modifications to meet strength, stiffness, and fatigue requirements.
- Develop and validate analytical models, ensuring accuracy and correlation with test data where applicable.
- Collaborate closely with design engineers, manufacturing engineers, and project managers throughout the product lifecycle.
- Define material selection criteria based on mechanical properties and operating environments.
- Develop and implement best practices for stress analysis processes and methodologies.
- Mentor and guide junior stress analysis engineers, fostering a culture of technical excellence.
- Prepare detailed technical reports and present findings to cross-functional teams and senior management.
- Stay current with advancements in stress analysis techniques and simulation technologies.
- Master's degree or Ph.D. in Mechanical Engineering or a related discipline with a specialization in Solid Mechanics or Structural Analysis.
- 10+ years of progressive experience in stress analysis and FEA, preferably in demanding industries.
- Expert proficiency in commercial FEA software packages and pre/post-processors.
- Strong knowledge of material behavior, failure theories (e.g., fatigue, creep, fracture mechanics), and experimental validation.
- Demonstrated leadership experience, with the ability to effectively manage projects and mentor engineers.
- Excellent analytical, problem-solving, and critical thinking skills.
- Superior communication and interpersonal skills, with the ability to effectively collaborate with diverse teams.
- Experience in developing and automating analysis workflows is a plus.
Senior Stress Analysis Engineer
Posted 20 days ago
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Job Description
Responsibilities:
- Conduct comprehensive stress, strain, and vibration analyses on mechanical components and systems using FEA software (e.g., ANSYS, ABAQUS, NASTRAN).
- Develop and validate FEA models, ensuring accuracy and appropriate boundary conditions for various loading scenarios.
- Interpret simulation results, identify potential failure mechanisms (e.g., fatigue, buckling, yielding), and recommend design modifications for improvement.
- Collaborate closely with design engineers, R&D teams, and manufacturing personnel to integrate analysis findings into the product development lifecycle.
- Define testing requirements and support experimental validation of simulation results.
- Prepare detailed technical reports documenting analysis methodologies, findings, and recommendations.
- Mentor junior engineers and provide technical guidance on stress analysis techniques.
- Stay abreast of the latest advancements in FEA technology, material science, and industry best practices.
- Contribute to the development and improvement of internal analysis procedures and standards.
- Ensure compliance with relevant industry codes and regulations.
- Participate in design reviews and provide expert insights on structural integrity.
- Master's degree or Ph.D. in Mechanical Engineering, Aerospace Engineering, or a closely related field with a specialization in Solid Mechanics or Computational Mechanics.
- Minimum of 6 years of professional experience in mechanical stress analysis and FEA.
- Proficiency in industry-standard FEA software packages such as ANSYS Workbench, ABAQUS, or MSC Nastran.
- Strong understanding of continuum mechanics, material behavior under various conditions (static, dynamic, thermal), and failure theories.
- Experience with scripting languages (e.g., Python, APDL) for automating analysis tasks is a plus.
- Excellent analytical, problem-solving, and critical-thinking skills.
- Strong technical writing and communication skills, with the ability to present complex information clearly.
- Ability to work effectively in both independent and team-oriented environments.
- Experience in relevant industries (e.g., automotive, aerospace, industrial machinery) is advantageous.
- Familiarity with CAD software (e.g., SolidWorks, CATIA) for model import/export.
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Lead Stress Analysis Engineer
Posted 23 days ago
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Job Description
Responsibilities:
- Lead the structural and stress analysis of complex mechanical components and assemblies using FEA software.
- Develop and validate sophisticated FEA models to predict product performance under various static and dynamic loading conditions.
- Interpret simulation results to identify potential failure modes, optimize designs for strength, stiffness, and fatigue life.
- Collaborate closely with design engineers, manufacturing engineers, and test engineers to implement design improvements and resolve structural issues.
- Define material properties and boundary conditions accurately for simulation purposes.
- Develop and implement best practices for FEA modeling and analysis processes.
- Mentor and guide junior stress analysis engineers, providing technical direction and fostering skill development.
- Stay updated on the latest advancements in FEA technology, simulation techniques, and material science.
- Prepare detailed technical reports, documentation, and presentations for design reviews and project stakeholders.
- Participate in cross-functional team meetings to contribute structural analysis expertise to product development efforts.
- Validate FEA results through correlation with experimental test data.
- Contribute to the selection of appropriate materials and manufacturing processes based on structural requirements.
Qualifications:
- Master's degree in Mechanical Engineering or a related field with a specialization in Solid Mechanics or Structural Analysis.
- Minimum of 7 years of experience in stress analysis and FEA within an engineering environment.
- Expert proficiency in FEA software packages such as ANSYS, Abaqus, or similar.
- Strong understanding of material science, mechanics of materials, fatigue analysis, and fracture mechanics.
- Experience with CAD software (e.g., SolidWorks, CATIA) for model preparation.
- Proven ability to develop accurate and efficient FEA models for complex geometries.
- Excellent analytical, problem-solving, and critical thinking skills.
- Strong technical communication and presentation skills.
- Leadership experience with the ability to mentor junior engineers.
- Ability to work effectively in a hybrid environment, managing both remote and on-site responsibilities.
- Experience in the industrial equipment or heavy machinery sector is advantageous.
This is an excellent opportunity to make a significant impact on product design and reliability, based in Vadodara, Gujarat, IN , with hybrid work flexibility.
Principal Stress Analysis Engineer
Posted 23 days ago
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Job Description
The ideal candidate will have a distinguished academic background in Mechanical Engineering or Aerospace Engineering, with significant experience in stress analysis for critical applications, potentially in aerospace, automotive, or energy sectors. You will be expected to provide technical leadership, mentor junior engineers, and contribute to the overall engineering strategy. Strong analytical and problem-solving skills are paramount, as is the ability to interpret complex simulation results and translate them into actionable design recommendations. Excellent communication and interpersonal skills are necessary to collaborate effectively with design teams, project managers, and external stakeholders. This role offers a challenging and rewarding opportunity to work on groundbreaking projects and influence product design at the highest level. Responsibilities include:
- Conducting comprehensive stress, strain, and fatigue analysis on mechanical components and systems.
- Developing and validating complex Finite Element Analysis (FEA) models.
- Performing modal, transient dynamic, and thermal analysis.
- Interpreting simulation results and providing clear, concise design recommendations.
- Collaborating with design engineers to optimize product performance and reliability.
- Leading stress analysis efforts for major projects and ensuring compliance with design specifications.
- Mentoring and guiding junior stress analysis engineers.
- Staying abreast of the latest advancements in simulation technology and methodologies.
- Developing and maintaining best practices for FEA.
Senior Stress Analysis Engineer (Aerospace)
Posted 15 days ago
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Job Description
Key Responsibilities:
- Perform detailed stress analysis on aerospace components and structures using advanced FEA software (e.g., ANSYS, NASTRAN, Abaqus).
- Develop and validate analytical models to predict structural performance under static, dynamic, thermal, and fatigue loading conditions.
- Interpret FEA results, identify potential failure modes, and recommend design modifications to enhance structural integrity.
- Collaborate closely with design engineers, manufacturing engineers, and test engineers to ensure that structural requirements are met throughout the product lifecycle.
- Create comprehensive analysis reports documenting methodologies, results, and conclusions.
- Contribute to the development of new analysis techniques and tools.
- Ensure compliance with aerospace industry standards and regulatory requirements (e.g., FAR, EASA).
- Mentor junior stress analysts and provide technical guidance.
- Support structural testing activities and correlate analytical results with experimental data.
- Participate in design reviews and provide expert structural recommendations.
- Bachelor's degree in Mechanical Engineering, Aerospace Engineering, or a related field. Master's or Ph.D. is highly preferred.
- Minimum of 7 years of progressive experience in stress analysis, with a significant focus on the aerospace industry.
- Extensive experience with FEA software and techniques.
- Solid understanding of mechanics of materials, structural dynamics, fatigue, and fracture mechanics.
- Knowledge of aerospace materials and manufacturing processes.
- Proficiency in scripting languages (e.g., Python, APDL) for automation is a plus.
- Excellent analytical, problem-solving, and critical thinking skills.
- Strong communication and collaboration abilities, with the capacity to work effectively in a multidisciplinary team.
- Familiarity with composite materials analysis is desirable.
- Ability to work independently and take ownership of complex analysis tasks.