Mechanical Designer- Secret Clearance

Quest Defense Systems & SolutionsCincinnati, OH
1d$62,000 - $72,000

About The Position

As a team of remarkably diverse engineers, we recognize that what we are really engineering is a brighter future for us all. If you want to contribute to meaningful work and be part of an organization that truly believes when you win, we all win, and when you fail, we all learn, then we’re eager to hear from you. The achievers, high performers, and courageous challenge-crushers we seek, have the following characteristics and skills: Roles & Responsibilities: Develop and/or modify designs related to Aero-engine components by analyzing product specifications, performance requirements, and existing manufacturing capabilities Execute mechanical design projects of gas turbine components on Structures/Rotating parts (Frames, Shaft, Disk, Blisk, seals etc.) Evaluate concepts of new designs/improvements, manufacturing methods, materials or processes and complete required documentation by applying engineering principles and Industry standards, and generating reports, procedures or change proposals Capture design & system requirements from the customer, and incorporate into the component design Support technical substantiation, contribute & present in technical and program reviews Develop components and modules keeping cost, performance, life, and system requirements in mind Design and Analysis of the component using CAE tools (NX, ANSYS Classic, ANSYS workbench) Direct interface with other internal/external engineering functions Apply technical principles, theories, and concepts to solve a wide range of challenging engineering problems Evaluate form, fit, function and life of the components relative to the certified configuration Evaluate non-conformances by reviewing, analyzing design criteria’s and acceptability limits, recommend disposition procedures and maximizing producibility

Requirements

  • 1-2+ years of experience in the mechanical design of Gas-turbine or Turbo-machinery components
  • Minimum BS/B.Tech in Mechanical or Aerospace engineering from an accredited university
  • Due to the nature of the work, a DoD Secret clearance is required that the candidate must be willing to maintain
  • Experience with NX and ANSYS (Classic or workbench) or other similar tools
  • Ability to easily interpret technical drawings with understanding of GD&T
  • Demonstrated ability to meet deadlines, work under time constraints, maintain composure and handle multiple tasks simultaneously
  • Ability to interact with employees/managers at all levels with strong oral and written communication skills
  • Strong interpersonal skills and ability to work in a team environment
  • Like to work in a fast paced, creative environment
  • Enjoy people and dynamic teams with diverse experiences. We have fun together!

Nice To Haves

  • Project Management experience is desired, but not required

Responsibilities

  • Develop and/or modify designs related to Aero-engine components by analyzing product specifications, performance requirements, and existing manufacturing capabilities
  • Execute mechanical design projects of gas turbine components on Structures/Rotating parts (Frames, Shaft, Disk, Blisk, seals etc.)
  • Evaluate concepts of new designs/improvements, manufacturing methods, materials or processes and complete required documentation by applying engineering principles and Industry standards, and generating reports, procedures or change proposals
  • Capture design & system requirements from the customer, and incorporate into the component design
  • Support technical substantiation, contribute & present in technical and program reviews
  • Develop components and modules keeping cost, performance, life, and system requirements in mind
  • Design and Analysis of the component using CAE tools (NX, ANSYS Classic, ANSYS workbench)
  • Direct interface with other internal/external engineering functions
  • Apply technical principles, theories, and concepts to solve a wide range of challenging engineering problems
  • Evaluate form, fit, function and life of the components relative to the certified configuration
  • Evaluate non-conformances by reviewing, analyzing design criteria’s and acceptability limits, recommend disposition procedures and maximizing producibility
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