About this role
Responsibilities
Structural Modeling and Simulation
- Analyze the structural performance of plastic consumer products, including strength, modulus, creep, stress relaxation, and failure risk.
- Perform simulations for static and dynamic loading conditions, including nonlinear contact, modal response, random vibration, shock, and drop impact.
- Interpret simulation results and provide clear recommendations to improve product design, structural performance, and reliability.
- Identify potential design risks early and develop practical design improvement plans.
- Develop and calibrate material and constitutive models for plastic products. Validate simulation results against test data to improve prediction accuracy.
- Lead root-cause investigations of field failures using nonlinear FEA and manufacturing-process simulations. Reproduce failure conditions, identify design or processing issues, and recommend corrective actions.
- Use open-source python libraries like PyAnsys and PyMechanical for secondary development as needed to automate and extend simulation workflows.
New Product Development
- Work with product development teams from the early stages of design through commercialization.
- Use modeling and simulation to provide feedback throughout the product development process, improve product performance, and accelerate product development.
- Recommend key structural design parameters, such as wall thickness, ribs, and snap-fit features, based on simulation results.
- Recommend suitable processing and manufacturing parameters using FEA and process simulations for new materials and products.
- Support design for manufacturability (DFM) and help ensure that products can be manufactured consistently at-scale.
Technical Communication and Collaboration
- Prepare, review, and maintain simulation reports that clearly document assumptions, methods, results, conclusions, and design decisions.
- Ensure that simulation work is accurate, traceable, and properly documented.
- Communicate technical findings and recommendations effectively to cross-functional teams.
- Create and maintain a proprietary materials database, including measured and validated material properties for structural analysis.
- Collaborate with research institutions, industry partners, and suppliers on advanced simulation methods and technology development.
- Use Python and related tools, such as PyAnsys and PyMechanical, to automate and extend simulation workflows.
Qualifications
- PhD or Master’s degree in mechanical engineering, polymer engineering, materials engineering, or a related field.
- Preferably five years of experience using ANSYS Workbench for end-to-end modeling, solution setup, analysis, and post-processing.
- Experience using ANSYS LS-DYNA for nonlinear and dynamic simulations.
- Strong understanding of structural mechanics, materials science, creep, viscoelasticity, and elastic-plastic behavior.
- Hands-on experience with static analysis, nonlinear contact, implicit and explicit dynamic analysis, modal and transient response, creep, stress relaxation, and viscoelastic material behavior.
- Knowledge of plastic materials and manufacturing processes, including injection molding, extrusion and blow molding.
- Experience developing, calibrating, and validating material models using test data.
- Experience applying simulation to plastic product design, failure analysis, and manufacturing-process evaluation.
- Ability to complete iterative design and simulation updates efficiently and accurately.
- Strong attention to detail, including model setup, material data, boundary conditions, mesh quality, and result interpretation.
- Systematic problem-solving skills and the ability to work effectively with cross-functional teams.
- Coding experience in python to work seamlessly with Ansys simulation suites.
- Fluent in spoken and written English, with the ability to prepare technical documentation and interpret engineering standards.