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Integrated Manufacturing Engineering – Lead Structures Producibility Engineer

Job Description Summary

The Integrated Manufacturing Engineering team is looking for an energetic engineer to partner with suppliers to improve the producibility and throughput of structural components across GE Aerospace’s Commercial & Aeroderivative product lines. This role involves partnering with Engineering, Quality and Suppliers to solve manufacturing challenges, implement proactive design and process changes, and drive engineering and manufacturing excellence across the organization. Includes activities linked to technical improvement of existing manufacturing processes and new processes. Support suppliers in implementing Flight Deck tools for operational visual management. Has the ability to work with autonomy guided by established policies or review of end results. Primary objective is to enabling the source for the component or product to meet the agreed upon production rate within the expected quality of a GE Aerospace product. The role is subject to operating policy objectives. High levels of operational judgment are required to achieve outcomes required.

Job Description

Roles and Responsibilities

  • Execute the design, analysis, or evaluation of assigned projects using sound engineering principles and adhering to business standards, practices, procedures, and requirements
  • Collaborate with design engineers, manufacturing engineers, quality and delivery leaders, and product line focals to drive open dialogue, gain consensus, and drive meaningful outcomes
  • Travel to supplier sites to gain practical knowledge of hardware manufacture
  • Utilize in-depth discipline knowledge, analytical thinking, and technical experience to execute moderately complex projects to meet technical requirements and business goals
  • Provide support for nonconformance reviews (MRB), process qualification (SPS), producibility improvements, and hardware delivery
  • Use engineering judgement and experience to challenge entrenched processes and recommend improvements

 
Required Qualifications

  • Bachelor’s Degree accredited college or university in Mechanical, Aerospace, or Materials Engineering (or a high school diploma / GED with a minimum of 4 years of experience in design engineering experience)  +  Minimum of 3 years of design engineering experience  

Desired Characteristics

  • Minimum of 3 years experience in design engineering
  • Previous experience in the design and manufacture of variety of structural hardware types
  • Fundamental understanding of aerospace component and turbomachinery design
  • Flexible and respectful approach to working in cross-functional global teams
  • Strong oral and written communication skills
  • Established project management skills
  • Ability to document, plan, market, and execute programs
  • Certification in ASME Y14.5 or practical experience with GD&T
  • Self-starter with a passion for problem solving and driving solutions
  • Open to learning and mentoring others
  • Familiarity with Flight Deck practices and behaviors

This role requires access to U.S. export-controlled information. Therefore, for applicants who are not asylees, refugees, lawful permanent residents or U.S. Citizens (i.e., not a protected individual under the Immigration and Naturalization Act, 8 U.S.C. 1324b(a)(3), otherwise known as a U.S. Person), final offers will be contingent on the ability to obtain authorization for access to U.S. export-controlled information from the U.S. Government.

Additional Information

GE Aerospace offers a great work environment, professional development, challenging careers, and competitive compensation. GE Aerospace is an Equal Opportunity Employer. Employment decisions are made without regard to race, color, religion, national or ethnic origin, sex, sexual orientation, gender identity or expression, age, disability, protected veteran status or other characteristics protected by law.

GE Aerospace will only employ those who are legally authorized to work in the United States for this opening. Any offer of employment is conditioned upon the successful completion of a drug screen (as applicable).

Relocation Assistance Provided: Yes

Average salary estimate

$100000 / YEARLY (est.)
min
max
$80000K
$120000K

If an employer mentions a salary or salary range on their job, we display it as an "Employer Estimate". If a job has no salary data, Rise displays an estimate if available.

What You Should Know About Integrated Manufacturing Engineering – Lead Structures Producibility Engineer, GE Aerospace

Are you ready to take your engineering career to the next level? Join GE Aerospace as an Integrated Manufacturing Engineering – Lead Structures Producibility Engineer in West Chester! This exciting role invites you to partner with suppliers and enhance the producibility and throughput of structural components in our cutting-edge Commercial and Aeroderivative product lines. As a key player on our Integrated Manufacturing Engineering team, you'll collaborate with design, quality, and manufacturing engineers, tackling complex challenges head-on while driving efficiency in our processes. You'll leverage your expertise to execute technical improvements, engage in open dialogues with diverse teams, and often find yourself on-site with suppliers, gaining firsthand insights into hardware manufacture. It’s a rewarding position where your analytical thinking and engineering knowledge will shine as you promote engineering and manufacturing excellence. Your primary focus will be ensuring that components meet production targets without compromising on the quality that GE Aerospace is known for. With responsibilities spanning from nonconformance reviews to supporting process qualifications, this is a chance to make a substantial impact. If you have a Bachelor's degree in Mechanical, Aerospace, or Materials Engineering, along with a passion for problem-solving and solid communication skills, we want to hear from you. Enjoy a collaborative environment with opportunities for professional growth at GE Aerospace, where your contributions help shape the future of aviation.

Frequently Asked Questions (FAQs) for Integrated Manufacturing Engineering – Lead Structures Producibility Engineer Role at GE Aerospace
What does the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer role at GE Aerospace involve?

The Integrated Manufacturing Engineering – Lead Structures Producibility Engineer role at GE Aerospace involves collaborating with suppliers and various internal teams to improve the manufacturability and throughput of structural components. Responsibilities include executing technical improvements, engaging in nonconformance reviews, and supporting process qualifications while ensuring production targets are met without sacrificing quality.

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What qualifications are required for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer position at GE Aerospace?

To qualify for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer position at GE Aerospace, candidates must hold a Bachelor’s degree in Mechanical, Aerospace, or Materials Engineering, or have a high school diploma with at least four years of relevant design engineering experience. A minimum of three years of design engineering experience is also required, along with strong analytical and communication skills.

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What skills will help me succeed as an Integrated Manufacturing Engineering – Lead Structures Producibility Engineer at GE Aerospace?

Success as an Integrated Manufacturing Engineering – Lead Structures Producibility Engineer at GE Aerospace hinges on a flexible mindset for collaborating in cross-functional global teams, established project management skills, and a passion for problem-solving. Candidates with familiarity in Flight Deck tools, GD&T certification, and a strong foundation in aerospace component design are particularly well-suited for this role.

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What is the work environment like for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer at GE Aerospace?

The work environment for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer at GE Aerospace is dynamic and collaborative. You'll have the opportunity to engage with various departments, travel to supplier sites, and contribute to exciting projects that push the boundaries of aviation technology while receiving support for your professional development.

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Are relocation assistance and employment eligibility needed for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer role at GE Aerospace?

Yes, relocation assistance is provided for the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer role at GE Aerospace. Additionally, it’s important to note that candidates must be legally authorized to work in the United States, with final offers being contingent on obtaining access to U.S. export-controlled information.

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Common Interview Questions for Integrated Manufacturing Engineering – Lead Structures Producibility Engineer
Can you describe your experience with design engineering relevant to the Integrated Manufacturing Engineering – Lead Structures Producibility Engineer role?

When discussing your design engineering experience, focus on specific projects where you successfully applied engineering principles to solve complex problems. Highlight your collaboration with cross-functional teams and the outcomes of your contributions to design processes and product quality.

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What strategies do you use for improving manufacturability in engineering projects?

In your response, outline your systematic approach to assess existing manufacturing processes and design practices. Emphasize any examples where your recommendations led to measurable improvements in efficiency, cost reductions, or enhanced quality.

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How do you handle conflicts or disagreements in a cross-functional team setting?

Stress the importance of open communication and active listening when addressing conflicts. Share a specific instance where you successfully navigated a disagreement by finding common ground and moving the team towards a mutually beneficial resolution.

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Describe your experience with project management and how it relates to engineering tasks.

Explain your project management methodology, including how you plan, execute, and evaluate engineering projects. Discuss tools or frameworks you use for tracking progress and maintaining clear communication with stakeholders.

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What is your experience with GD&T and how do you apply it to your engineering work?

Highlight your understanding of GD&T and its importance in engineering design and manufacturing. Provide an example where your application of GD&T standards enhanced the accuracy of a component or assembly.

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Can you give an example of a time when you implemented a solution to improve a production challenge?

Outline a specific challenge you faced in a previous role and the steps you took to analyze and implement a solution. Discuss the results and how your initiative positively affected production outcomes.

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How do you ensure quality in your engineering designs and processes?

Discuss the methods you use for quality assurance, such as thorough testing, adherence to industry standards, and regular audits. Share specific examples that illustrate your commitment to maintaining high-quality outcomes.

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What tools or software do you use for engineering analysis and design?

List the specific tools or software you are proficient with, such as CAD programs or simulation software. Discuss how these tools have enhanced your efficiency or accuracy in engineering projects.

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How do you stay current with advancements in aerospace engineering technologies?

Explain your approach to professional development, including attending industry conferences, webinars, and pursuing further education. Highlight your proactive efforts to keep abreast of trends and technologies that can benefit your work.

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What motivates you to engage in problem-solving within engineering contexts?

Share your passion for engineering challenges and how solving complex problems drives your work. Highlight the satisfaction you gain from contributing to innovative solutions and enhancing manufacturing processes.

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Full-time, on-site
DATE POSTED
April 6, 2025

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