Senior Material Design and Simulation Engineer
Avery Dennison
- Location
- Mill Hall, PA, United States
- Employment
- Full Time
- Work model
- On-Site
- Level
- Senior
- H-1B history
- 7 approvals (FY2023)
- Posted
- 1h ago
Skills
About this role
Company Description
Senior Material Design & Simulation Engineer Why join Avery Dennison We are a global materials science and digital identification solutions company with locations in over 50 countries, and approximately 35,000 employees worldwide. As a science and innovation company, we believe that diverse teams are stronger teams. We are committed to fostering a culture of curiosity and courage, where you can grow your career with a company that has innovation in its DNA. Founded on creating real-world impact to enable a better future, we strive to provide an open, collaborative culture where diversity of thought is encouraged and respected. Hear from our employees about what it's like working at Avery Dennison. Learn more at www.averydennison.com .
Benefits
At Avery Dennison, some of the great benefits we provide are: Inclusive Healthcare: Access to our large network of medical and behavioral health professionals. 401(k) Retirement Savings: You receive an automatic contribution of 3% of eligible pay (even if you contribute $0) plus a matching contribution of 50% on the first 7% of eligible pay you contribute. Life Insurance: Basic Life Insurance (Company paid): Provides twice your base annual salary up to a $50,000 maximum at no cost to you. Paid Time Off: We offer a generous vacation program that varies based upon your experience and position within Avery Dennison.
Job Description
About the role Avery Dennison is seeking a Senior Material Design & Simulation Engineer to join the global Advanced Materials Solutions (AMS) team within the Materials Group Division. You will support business growth and work to expand Avery Dennison’s focus in the area of Computational Fluid Dynamics (CFD) and Finite Element Analysis (FEA) related to multi-component synergistic materials design and polymer synthesis and processing. Specifically, you will work across our global businesses and technical teams to identify, develop, and deploy computational design and analysis to aid in solving rapidly evolving market-driven material needs. You will support multi-functional teams in the ideation of new product designs and commercialization chemistries, while collaborating directly with product development scientists, pilot facility teammates, operations associates, third-party contract manufacturers, and equipment vendors. A progressive problem solver is needed to leverage scientific fundamentals, robust experimentation, and computational theory. You will propose practical solutions for complex product and process development challenges through creative and agile technical leadership. You will leverage active engagement with multi-functional teams and drive to work independently toward business and organizational needs. We are looking for someone with a growth mentality to bring new and evolving ideas.
Key Responsibilities
This position operates in a hybrid work environment based in Mill Hall, PA. Application of mathematical modeling and numerical simulation to optimize product design, polymer processing, and synergistic material performance. Partner directly with product development scientists, pilot facility teams, operations, third-party contract manufacturers, and equipment vendors to accelerate R&D and commercialization. Provide technical feedback for business case development, assist with presentations to senior management, and complete feasibility assessments of complex problems. Participate in new process technology development, including fluid flow design, specifying new equipment, and reactor design. Collaborate with corporate intellectual property counsel regarding right to market, patent applications, and office actions, while utilizing strong problem-solving skills to anticipate potential obstacles.
Qualifications
Qualifications Minimum of 5 years of experience using numerical simulations, mathematical modeling, and experimentation for application to product and process