Senior Materials Engineer, Liquid Cooling Systems, Hardware Engineering Thermal & Mechanical
Amazon
- Location
- US, WA, Seattle
- Employment
- Full Time
- Work model
- On-Site
- Level
- Senior
- Posted
- Sep 11, 2026
Skills
About this role
Amazon Web Services (AWS) Hardware Engineering is a leading-edge product development team that creates enterprise compute and storage server designs for our innovative web service and e-commerce technology platforms. Our designs are industry-leading in terms of performance, frugality, and operational excellence, and are critical to the success of the AWS business and the hundreds of thousands of customers who use utility computing today. We are seeking an experienced Materials Engineer with a strong foundation in materials science, chemistry, and fluid physics to build the next generation of our liquid-cooled cloud platforms. Our success depends on our truly innovative server infrastructure; we are handling massive scale and rapid integration of emergent technologies. You will join a diverse team of software, hardware, and network engineers, supply chain specialists, security experts, operations managers, and other vital roles. You will collaborate with people across AWS to help us deliver the highest standards for safety and security while providing seemingly infinite capacity at the lowest possible cost for our customers. And you will experience an inclusive culture that welcomes bold ideas and empowers you to own them to completion. Are you interested in developing solutions that have big impact? Are you someone who likes to challenge the status quo and work on developing innovative material solutions for advanced thermal systems? If you are a materials engineer or scientist with expertise in liquid cooling, coolant chemistry, wetted materials, and thermal management, and you are looking for an exciting career in cloud infrastructure, come join a team that constantly seeks ways to build things better and faster for our customers. AWS is looking for a Sr. Materials Engineer to become part of a mechanical engineering team, responsible for materials selection, qualification, and continuous innovation in liquid cooling systems within our rapidly expanding data center footprint. This role is designed to augment the traditional capabilities of the mechanical engineering team by bringing deep materials science, coolant chemistry, and fluid physics expertise that bridges the gap between mechanical design and chemical engineering. Our Senior Materials Engineer partners with Mechanical Design Engineers and Chemical Engineers to identify, validate, and ensure continuous quality of the correct materials, coolants, and processes for our Data Center liquid cooling systems. You will serve as the materials science subject matter expert within the mechanical engineering organization, mentoring and upskilling mechanical engineers on materials compatibility, coolant chemistry, and advanced thermal materials. As engineers at Amazon, we are responsible for achieving a world class uptime for our customers. We drive continuous advancements and improvements with our designs, and communicate technical direction to Sr. Management. We seek new ways to enhance the reliability, scalability, and cost effectiveness of our engineering designs. As an engineer at Amazon, you have the ability to drive change and make a substantial impact in the systems our customers rely on. Key job responsibilities Identify, evaluate, and qualify coolant formulations (propylene glycol-based, water-based, and advanced coolants) from multiple vendors for current and next-generation liquid-cooled datacenter servers Own the wetted materials specification and compliance for server hardware and coolant loops, including alloys, plastics, rubbers, elastomers, and sealing materials in contact with cooling fluids Evaluate and select materials for compatibility within wetted systems, considering long-term chemical interactions between coolants, metals, polymers, and elastomers Perform and direct thermodynamic and fluid physics calculations for cooling system design, including heat transfer, pressure drop, flow distribution, and system-level thermal stack analysis Assess coolant