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A leading engineering services firm seeks a Stress / FEA analyst specializing in gas turbines. The role requires expertise in 2D and 3D stress analysis, particularly on rotating parts, using tools like ANSYS and Hypermesh. Ideal candidates will have a degree in engineering and relevant experience in component life analysis.
QuEST Global Services Pte. Ltd
Other
-
Yes
81761995594b
8
16.07.2025
30.08.2025
Quest Global is an organization at the forefront of innovation and one of the world’s fastest growing engineering services firms with deep domain knowledge and recognized expertise in the top OEMs across seven industries. We are a twenty-five-year-old company on a journey to becoming a centenary one, driven by aspiration, hunger and humility.
We are looking for humble geniuses, who believe that engineering has the potential to make the impossible, possible; innovators, who are not only inspired by technology and innovation, but also perpetually driven to design, develop, and test as a trusted partner for Fortune 500 customers.
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 and courageous challenge-crushers we seek, have the following characteristics and skills:
Stress analysis
Education Requirements:
Degree or equivalent in an engineering discipline (mechanical, aerospace/aeronautical, manufacturing, preferred).
Capability Requirements:
The applicant must have gas turbine experience, be familiar with 2D and 3D stress analysis, in particular gas turbine rotating parts and/or structural components, using the latest in modelling techniques, such as friction at interfaces, elastic/plastic, for instance. You must have experience with ANSYS Mechanical APDL or Workbench, a meshing application such as Hypermesh or UG NX, and a computer aided modelling program such as UG NX. Prior experience with component life analysis (fatigue, damage tolerance, and fracture mechanics) is preferred.
Engineer must be capable of performing the following stress analysis tasks:
Quest Global is an organization at the forefront of innovation and one of the world’s fastest growing engineering services firms with deep domain knowledge and recognized expertise in the top OEMs across seven industries. We are a twenty-five-year-old company on a journey to becoming a centenary one, driven by aspiration, hunger and humility.
We are looking for humble geniuses, who believe that engineering has the potential to make the impossible, possible; innovators, who are not only inspired by technology and innovation, but also perpetually driven to design, develop, and test as a trusted partner for Fortune 500 customers.
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 and courageous challenge-crushers we seek, have the following characteristics and skills:
Stress analysis
Education Requirements:
Degree or equivalent in an engineering discipline (mechanical, aerospace/aeronautical, manufacturing, preferred).
Capability Requirements:
The applicant must have gas turbine experience, be familiar with 2D and 3D stress analysis, in particular gas turbine rotating parts and/or structural components, using the latest in modelling techniques, such as friction at interfaces, elastic/plastic, for instance. You must have experience with ANSYS Mechanical APDL or Workbench, a meshing application such as Hypermesh or UG NX, and a computer aided modelling program such as UG NX. Prior experience with component life analysis (fatigue, damage tolerance, and fracture mechanics) is preferred.
Engineer must be capable of performing the following stress analysis tasks:
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Created on 16/07/2025 by TN United Kingdom