Antares

Clean Energy

ManufacturingEngineerIII,Machining

$90–150k Los Angeles, California, United States FULL TIME
The Brief

“Manufacturing Engineer I-II, Machining at Antares. Skills: Manufacturing processes, Special processes, Design for manufacturing. Develop manufacturing processes for critical sub-systems. Mature processes from prototype to production”

What You'll Achieve.

Growing our production capabilities from prototype to serialized production; Ensure parts and assemblies are manufacturable and integrable; Ensure that product is delivered on time and to specifications; Prevent repeat failures

Industry & Context.

Clean Energy
Problems you'll solve

Troubleshoot and find solutions; Root cause analysis; Problem solving

Eligibility Requirements

ITAR REQUIREMENTS

What They're Looking For.

Must Have

Bachelor's degree in an engineering discipline or physics, 2+ years of experience in one or more of the following areas: special process manufacturing, process qualification, aerospace/nuclear super alloys, handling hazardous materials (i. e. acids, alkali metals), manufacturing/production engineering, reliability engineering, work instruction creation, project/research-based student experience, Demonstrated ability to troubleshoot and find solutions to challenges faced during a hardware manufacturing based project, Experience creating work instructions and tracking BOM components from suppliers, Experience defining requirements for or designing tools and assembly fixtures using CAD systems, Experience implementing this tooling using internal and external tooling suppliers, Knowledge of PLM, ERP, MES, and other related manufacturing planning and management systems

Nice to Have

interpersonal and collaborative skills, enthusiasm for problem solving, desire to optimize modern nuclear design and operation, Master's degree or 5+ years of professional experience in mechanical or aerospace engineering, Demonstrable experience developing, testing, qualifying, and maintaining manufacturing especially systems containing complex special processes (i. e. welding, brazing, heat treatments, additive manufacturing, coatings, hydroforming, NDT), Experience creating factory layouts based on production demand and process requirements, General knowledge of GD&T as it relates to assembly and fabrication processes, Experience using CAD software (NX) as it relates to creating work instructions, Demonstrated track record of high impact / ROI contributions, project management skills, effective communication of technical concepts across multi-disciplinary teams, Hands-on experience with fluid, gas, or high voltage systems, Leadership experience on a project or research team, Experience using test instrumentation and control components (e. g. pressure transducers, thermocouples, strain gages, relays, solenoid valves, etc.), Experience with various part inspection methods and technologies (micrometers, CMM, white light, etc.)

What You'll Do.

Develop manufacturing processes for critical sub-systems

Mature processes from prototype to production

Participate in design reviews

Analyze parts/assemblies for manufacturability

Collaborate with design

and manufacturing teams

Analyze and disposition manufacturing discrepancies

Lead multi-disciplinary teams on root cause analysis

Develop new and evaluate existing manufacturing processes

Reduce non-conformance frequency/severity

Reduce operating costs

Identify and execute design-for-manufacturability improvements

Communicate with supporting departments

Drive process improvement

Provide training and information briefs

Demonstrate solutions

Participate in root cause investigations

Implement corrective actions

How You'll Work.

Team & Collaboration

Collaborate with design, materials, and manufacturing team members; Lead multi-disciplinary teams on root cause analysis and corrective actions; Communicate daily with supporting departments such as production, machining, maintenance, quality, and design engineering; Train technicians, engineers, and leaders on best-in-class operations practices; effective communication of technical concepts across multi-disciplinary teams

Communication Scope

effective communication of technical concepts across multi-disciplinary teams

Process & Methodology

project management skills

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