Will “Aeronautical Test Engineer” be Replaced By Robots? 🤔
1.7% Chance of Automation
“Aeronautical Test Engineer” will not be replaced by robots.
This job is ranked #79 out of #702. A higher ranking (i.e., a lower number) means the job is less likely to be replaced.
Care to share? Click for Facebook, Twitter, LinkedIn, or XING. 👍
Job Description
Perform engineering duties in designing, constructing, and testing aircraft, missiles, and spacecraft. May conduct basic and applied research to evaluate adaptability of materials and equipment to aircraft design and manufacture. May recommend improvements in testing equipment and techniques.
Job Details
- The SOC (Standard Occupational Classification) code is 17-2011.00
- The Mean Annual Wage in the U.S. is $ 112,010.00
- The Mean Hourly Wage is $ 53.00
- Currently, there are 68,510 people on this job
☝️ Information based on the reference occupation “Aerospace Engineers”.
Also Known As…
- Aerospace Engineers
- Test Engineer
- Systems Engineer
- Structural Analysis Engineer
- Flight Test Engineer
- Flight Controls Engineer
- Design Engineer
- Avionics Engineer
- Aerospace Stress Engineer
- Aerospace Engineer
- Aeronautical Engineer
- Wind Tunnel Engineer
- Weight Engineer
- Weight Control Engineer
- Vibration Engineer
- Value Engineer
- Transonic Engineer
- Thermodynamics Engineer
- Thermodynamicist
- Test Facility Engineer
- Test Analyst
- Supplier Quality Engineer (SQE)
- Supersonic Engineer
- Structures Engineer
- Stress Engineer
- Space Engineer
- Service Engineer
- Rocket Scientist
- Propulsion Engineer
- Propeller Engineer
- Pipe Stress Engineer
- Physical Aerodynamicist
- Military Aircraft Designer
- Master Lay Out Specialist
- Helicopter Engineer
- Fuel-Efficient Aircraft Designer
- Flight Engineer
- Flight Dynamicist
- Field Service Engineer
- Dynamicist
- Designer
- Design Analyst
- Aviation Engineer
- Aviation Consultant
- Automation Engineer
- Astronautical Engineer
- Airplane Engineer
- Airplane Designer
- Aircraft Stress Analyst
- Aircraft Instrument Engineer
- Aircraft Engineer
- Aircraft Designer
- Aeronautical Research Engineer
- Aeronautical Project Engineer
- Aeronautical Design Engineer
- Aerodynamicist
Tasks for “Aeronautical Test Engineer”
- Evaluate product data or design from inspections or reports for conformance to engineering principles, customer requirements, environmental regulations, or quality standards.
- Evaluate biofuel performance specifications to determine feasibility for aerospace applications.
- Design or engineer filtration systems that reduce harmful emissions.
- Formulate mathematical models or other methods of computer analysis to develop, evaluate, or modify design, according to customer engineering requirements.
- Direct aerospace research and development programs.
- Plan or conduct experimental, environmental, operational, or stress tests on models or prototypes of aircraft or aerospace systems or equipment.
- Develop design criteria for aeronautical or aerospace products or systems, including testing methods, production costs, quality standards, environmental standards, or completion dates.
- Evaluate and approve selection of vendors by studying past performance or new advertisements.
- Diagnose performance problems by reviewing performance reports or documentation from customers or field engineers or inspecting malfunctioning or damaged products.
- Formulate conceptual design of aeronautical or aerospace products or systems to meet customer requirements or conform to environmental regulations.
- Design new or modify existing aerospace systems to reduce polluting emissions, such as nitrogen oxide, carbon monoxide, or smoke emissions.
- Maintain records of performance reports for future reference.
- Direct or coordinate activities of engineering or technical personnel involved in designing, fabricating, modifying, or testing of aircraft or aerospace products.
- Write technical reports or other documentation, such as handbooks or bulletins, for use by engineering staff, management, or customers.
- Review aerospace engineering designs to determine how to reduce negative environmental impacts.
- Plan or coordinate activities concerned with investigating and resolving customers' reports of technical problems with aircraft or aerospace vehicles.
- Analyze project requests, proposals, or engineering data to determine feasibility, productibility, cost, or production time of aerospace or aeronautical products.
- Research new materials to determine quality or conformance to environmental standards.
Related Technology & Tools
- Electronic pressure scanners
- Laser Doppler velocimeters LDV
- Digital oscilloscopes
- Flight management systems FMS
- Force transducers
- Vibration isolation tables
- Cluster computers
- Personal computers
- Mainframe computers
- Axial flow research fans
- Profilometers
- Axial flow turbines
- Power microwave generators
- Digital pressure gauges
- Surface grinding machines
- Vacuum facilities
- UNIX work stations
- Strain gauge balances
- Atomic force microscopes
- Electronic flight instrument systems EFIS
- Laser velocimeters
- Reflection polariscopes
- Welders
- Ultrasonic inspection equipment
- Push/pull dynamometers
- Multi-axis mills
- Propellant combustion chambers
- Signal generators
- Laboratory centrifugal pumps
- Plotters
- Impact guns
- Centerless grinders
- Lathes
- Lasers
- Acoustic emissions systems
- Computer numerical controlled CNC milling machines
- Fiber optic interferometers
- Terminal computers
- Digital voltmeters DVM
- Parallel computers
- Flight simulators
- Anechoic chambers
- Spectrometers
- Wave analyzers
- Load frames
- Impinging jet apparatus
- Fatigue testing machines
- Viscometers
- Axial flow compressor facilities
- Argon-ion lasers
- Flow meters
- Thermal Synthesizer System TSS
- Cullimore & Ring Technologies SINDA/FLUINT
- Dassault Systemes SolidWorks
- Analytical Graphics STK Expert Edition
- TEAM Engineering FEMAP
- IBM Rational Requisite Pro
- Flexible dynamics modeling software
- IBM Rational ClearQuest
- Harvard Thermal TAS
- Microsoft Project
- Computer-aided engineering CAE software
- UGS Solid Edge
- Microsoft Access
- Digital Equipment Corporation DIGITAL Fortran 90
- Microsoft Excel
- Altera Quartus II
- MSC Software Fatigue
- Image processing systems
- Autodesk AutoCAD
- Thermal design software
- Alstom ESATAN
- Southwest Research Institute NASGRO
- Tecplot Focus
- Mathsoft Mathcad
- Network Analysis SINDA-G
- Maplesoft Maple
- Finite element method FEM software
- PTC Creo Parametric
- IBM Rational DOORS
- Microsoft PowerPoint
- Collier Research HyperSizer
- Alstom ESARAD
- Ada
- K&K Associates Thermal Analysis Kit TAK
- C
- Phoenix Integration ModelCenter
- Practical extraction and reporting language Perl
- PTC Pro/INTRALINK
- Wolfram Research Mathematica
- Microsoft Office
- MSC Software Nastran
- Grid generation software
- Microsoft Word
- ESI Group AutoSEA2
- The MathWorks MATLAB
- Hewlett-Packard HP OpenVMS
- National Instruments LabVIEW
- Data acquisition systems
- Sun Microsystems Java
- Universal Technical Systems TK Solver
- Dassault Systemes CATIA
- Verilog
- Computer aided manufacturing CAM software
- Xilinx TMRTool
- Stress analysis software
- ANSYS
- UNIX
- Fatigue analysis software
- Linux
- Microsoft Visual Basic
- Python
- Extensible markup language XML
- Computational fluid dynamics CFD software
- Thermal analysis software
- MSC Software Patran
- Thermal Radiation Analysis System TRASYS
- The MathWorks Simulink
- Microsoft Visual C++
- IBM Rational ClearCase
- Cullimore & Ring Technologies Thermal Desktop