Hadrian

Materials Engineer, Additive Manufacturing

Hadrian$150K — $220K *
Aerospace & Defense
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Master's degree in Materials Science, Welding Engineering, Metallurgy, or related field
  • 4+ years in materials and processes engineering specifically for additive manufacturing
  • Strong understanding of aerospace alloys: nickel, copper, aluminum, and stainless
  • Experience with post processing and heat treatments for alloys
  • Background in material testing, metallurgical analysis, or failure investigations

Responsibilities

  • Lead materials development and qualification for LPBF, DED, and polymer processes
  • Collaborate with engineers to establish parameters for materials and equipment
  • Design and execute experiments and statistical analyses for material properties
  • Create materials allowables and related qualification documentation
  • Research and implement innovative materials and technologies
  • Coordinate cross-functionally with quality, supply chain, and design teams

Benefits

  • Medical, dental, vision, and life insurance
  • 401k plan
  • Possible relocation support based on business needs
  • Flexible vacation policy
  • Equity participation opportunity
Full Job Description
Within Additive Manufacturing, we're developing and qualifying materials and processes across LPBF, DED, and polymer applications. We own the materials engineering work that makes that possible, and we're looking for someone ready to be challenged and take on highly technical, independent work with the resources to push for innovation in the additive industry. You'll be relied on as the go to technical resource on materials for additive. The Role • Lead materials development and qualification across LPBF, DED, and polymer additive processes. • Work closely with process and applications engineers to develop parameters for various material and equipment configurations. • Design and execute DOEs, test plans, and statistical data analysis to develop material properties. • Develop materials allowables, author specifications, and supporting qualification documentation. • Discover, evaluate, and implement novel materials and technologies, owning everything from initial selection through parameter development, validation, and implementation. • Work cross functionally with quality, supply chain, designers, and applications engineers. What We're Looking For • Master's degree in Materials Science, Welding Engineering, Metallurgy, or a related engineering discipline. • 4+ years in a materials and processes engineering role developing and qualifying additive manufacturing processes for metal alloys, with a strong focus on laser powder bed fusion. • Strong working knowledge of alloy types common to aerospace and extreme environments, such as nickel based, copper, aluminum, and stainless. • Familiarity with post processing and heat treatments for these alloy types. • Background performing material testing, metallurgical analysis, or failure investigations in a production or laboratory setting. • Ability to interpret engineering drawings, specifications, and material requirements, and apply them within a manufacturing environment. What Will Set You Apart • An advanced degree relevant to the field. • Background in aerospace, aviation, defense, energy, or similar industries with high specification requirements. • Familiarity with industry specialized material standards, certification requirements, or quality systems such as NADCAP, AMS7000 series, AS9100, and relevant ASTM/AMS additive manufacturing specifications. • Familiarity with fracture control classification of components and associated qualification requirements. • Background across adjacent metal processes, such as casting, forging, and brazing. • Experience with in-situ process monitoring for laser powder bed fusion. • Knowledge of statistical methods for generating test data and building material allowables, informed by frameworks such as MMPDS. • Prior support of production scale up in high-rate manufacturing environments. • Ability to lead root cause investigations using fractography, metallography, and mechanical testing. Compensation: For this role, the target salary range is $150,000 - $220,000(actual range may vary based on experience). This is the lowest to highest salary we reasonably and in good faith believe we would pay for this role at the time of this posting. We may ultimately pay more or less than the posted range, and the range may be modified in the future. An employee's pay position within the salary range will be based on several factors, including, but not limited to, relevant education, qualifications, certifications, experience, skills, geographic location, performance, and business or organizational needs. Benefits for Full-time Employees • Medical, dental, vision, and life insurance plans for employees • 401k • Relocation support may be provided for certain situations, based on business need. • Flexible vacation policy • Equity ITAR Requirements To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR) you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Learn more about the ITAR here.

About Hadrian

Hadrianadri?ja?n?s]; 24 January 76 – 10 July 138) was Roman emperor from 117 to 138. He was born in Italica, a Roman municipium founded by Italic settlers in Hispania Baetica and he came from a branch of the gens Aelia that originated in the Picenean town of Hadria, the Aeli Hadriani. His father was of senatorial rank and was a first cousin of Emperor Trajan. Hadrian married Trajan's grand-niece Vibia Sabina early in his career before Trajan became emperor and possibly at the behest of Trajan's wife Pompeia Plotina. Plotina and Trajan's close friend and adviser Lucius Licinius Sura were well disposed towards Hadrian. When Trajan died, his widow claimed that he had nominated Hadrian as emperor immediately before his death. Rome's military and Senate approved Hadrian's succession, but four leading senators were unlawfully put to death soon after. They had opposed Hadrian or seemed to threaten his succession, and the Senate held him responsible for their deaths and never forgave him. He earned further disapproval among the elite by abandoning Trajan's expansionist policies and territorial gains in Mesopotamia, Assyria, Armenia, and parts of Dacia. Hadrian preferred to invest in the development of stable, defensible borders and the unification of the empire's disparate peoples. He is known for building Hadrian's Wall, which marked the northern limit of Britannia.
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