At a Glance
- Tasks: Conduct stress analysis on gas turbine components and collaborate with global engineering teams.
- Company: Join Quest Global, a leading engineering services firm known for innovation across multiple industries.
- Benefits: Enjoy opportunities for growth, collaboration, and a supportive work culture that values learning.
- Why this job: Be part of meaningful projects that impact Fortune 500 companies and enhance your engineering skills.
- Qualifications: Degree in engineering; experience with gas turbines and stress analysis tools like ANSYS required.
- Other info: Candidates must be UK/EU citizens or valid work permit holders.
The predicted salary is between 36000 - 60000 £ per year.
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:
Engineer must have gas turbine experience, be familiar with 2D and 3D stress analysis, in particular gas turbine rotating parts (discs, blisk, shafts, seals, airfoils) using the latest in modeling techniques, such as friction at interfaces, elastic/plastic. Engineer must be proficient in ANSYS Mechanical APDL, a meshing application such as Hypermesh or UG NX, and a computer aided modelling program such as UG NX. Prior experience with life analysis (fatigue, damage tolerance, and fracture mechanics) is preferred.
Engineer must be capable of performing the following stress analysis tasks:
Computer Requirements:
PC-based Windows applications (Word, Excel, PowerPoint), ANSYS Classic, Hypermesh, UG NX, PLM Teamcenter, Salesforce, and other specified applications to complete mechanical design activities.
Familiarisation and training shall be provided on proprietary software applications.
DISCLAIMER: Due to the nature of work candidates should be UK citizen/ EU Citizen/ Valid work permit holder. For further information contact us on:
Stress analyst gas turbines employer: QuEST Global Services Pte. Ltd
Contact Detail:
QuEST Global Services Pte. Ltd Recruiting Team
StudySmarter Expert Advice 🤫
We think this is how you could land Stress analyst gas turbines
✨Tip Number 1
Familiarise yourself with the latest modelling techniques used in gas turbine stress analysis. Understanding friction at interfaces and elastic/plastic behaviour will give you an edge when discussing your expertise during interviews.
✨Tip Number 2
Network with professionals in the gas turbine industry, especially those who work with ANSYS Mechanical APDL and Hypermesh. Engaging in conversations with them can provide insights into the role and may even lead to referrals.
✨Tip Number 3
Prepare to discuss your previous experiences with life analysis, fatigue, and fracture mechanics. Being able to articulate how you've applied these concepts in real-world scenarios will demonstrate your capability to handle the responsibilities of the role.
✨Tip Number 4
Practice delivering technical presentations, as this role requires you to generate and present technical summaries. Being confident in your presentation skills will help you stand out during the interview process.
We think you need these skills to ace Stress analyst gas turbines
Some tips for your application 🫡
Tailor Your CV: Make sure your CV highlights relevant experience in stress analysis, particularly with gas turbines. Include specific projects or roles where you used ANSYS Mechanical APDL and other required software.
Craft a Compelling Cover Letter: Write a cover letter that showcases your passion for engineering and innovation. Mention how your skills align with the responsibilities listed in the job description, especially your experience with 2D and 3D stress analysis.
Highlight Technical Skills: In your application, emphasise your proficiency in tools like Hypermesh and UG NX. Provide examples of how you've used these tools in past projects to solve complex engineering problems.
Showcase Collaboration Experience: Since the role involves collaboration with various teams, include examples of how you've successfully worked with cross-functional teams in previous positions. This will demonstrate your ability to communicate effectively with stakeholders.
How to prepare for a job interview at QuEST Global Services Pte. Ltd
✨Understand the Role
Make sure you have a solid grasp of what a stress analyst for gas turbines does. Familiarise yourself with the specific responsibilities mentioned in the job description, such as stress analysis of components and collaboration with design teams.
✨Showcase Your Technical Skills
Be prepared to discuss your experience with ANSYS Mechanical APDL and other relevant software like Hypermesh or UG NX. Highlight any projects where you've applied 2D and 3D stress analysis techniques, especially related to gas turbine components.
✨Prepare for Technical Presentations
Since the role involves generating technical presentations, practice explaining complex concepts clearly and concisely. Think about how you would present your findings to both technical and non-technical stakeholders.
✨Demonstrate Team Collaboration
Emphasise your ability to work collaboratively with various engineering functions. Be ready to share examples of how you've successfully interfaced with different teams to achieve project goals, particularly in stress analysis and design.