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Dimensional Control Engineer Jobs in Michigan (NOW HIRING)

Strong ability to interpret engineering drawings for dimensional control requirements. * Proficiency in 3D mathematics and experience with programming in modern scientific computing languages.

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CNC Programmer

Rochester Hills, MI · On-site

$24.50 - $33.25/hr

The CNC Programmer/Operator at 3-Dimensional Services Group is responsible for operating and maintaining computer numerical control (CNC) machinery to produce precision parts and components. This ...

CNC PROGRAMMER

Lapeer, MI · On-site

$24.50 - $33.50/hr

The CNC Programmer/Operator at 3-Dimensional Services Group is responsible for operating and maintaining computer numerical control (CNC) machinery to produce precision parts and components. This ...

CNC PROGRAMMER

Lapeer, MI · On-site

$24.50 - $33.50/hr

The CNC Programmer/Operator at 3-Dimensional Services Group is responsible for operating and maintaining computer numerical control (CNC) machinery to produce precision parts and components. This ...

... engineering changes to tools in production * Ensure all pre-production documentation, testing, drawings, process analysis, dimensional control, and capacity analysis are completed prior to launch ...

Quality Engineer

Freeland, MI · On-site

$61K - $79K/yr

Bachelor's degree in a relevant engineering field and 5+ years of quality engineering experience in aerospace, precision machining, or motion-control components. * Strong proficiency in dimensional ...

Quality Engineer

Freeland, MI · On-site

$61K - $79K/yr

Bachelor's degree in a relevant engineering field and 5+ years of quality engineering experience in aerospace, precision machining, or motion-control components. * Strong proficiency in dimensional ...

Quality Engineer

Freeland, MI · On-site

$61K - $79K/yr

Bachelor's degree in a relevant engineering field and 5+ years of quality engineering experience in aerospace, precision machining, or motion-control components. * Strong proficiency in dimensional ...

Showing results 41-60

Dimensional Control Engineer information

What are some typical challenges a dimensional control engineer faces during large-scale construction projects?

Dimensional Control Engineers often encounter challenges such as ensuring precise alignment of structures despite environmental factors like weather or ground movement, managing tight tolerances with complex geometries, and coordinating measurements across multiple teams and contractors. They must also stay up-to-date with the latest surveying technology and software, and often work in fast-paced environments where schedules can change rapidly. These challenges require strong communication skills and proactive problem-solving to maintain accuracy and project timelines.

What are the key skills and qualifications needed to thrive as a dimensional control engineer, and why are they important?

To thrive as a Dimensional Control Engineer, you need a solid understanding of engineering principles, metrology, and geometric dimensioning and tolerancing (GD&T), typically supported by a degree in engineering or a related field. Proficiency with measurement tools such as laser trackers, coordinate measuring machines (CMMs), and CAD software, as well as certifications like ASME GD&T, is often required. Strong analytical thinking, attention to detail, and effective communication skills help ensure precision and facilitate collaboration with cross-functional teams. These capabilities are crucial for maintaining quality and accuracy in manufacturing processes and meeting stringent industry standards.

What is a dimensional control engineer?

A Dimensional Control Engineer is a professional who specializes in ensuring that manufactured components and assemblies meet precise dimensional specifications. They use advanced measurement techniques and instruments, such as laser scanners and coordinate measuring machines (CMMs), to verify and control the geometry of products during and after production. Dimensional Control Engineers play a critical role in industries like aerospace, automotive, and construction, where exact measurements are essential for safety and performance. Their work helps prevent costly errors, reduce waste, and maintain product quality throughout the manufacturing process.

What is the difference between Dimensional Control Engineer vs Quality Control Engineer?

AspectDimensional Control EngineerQuality Control Engineer
CertificationsASME, ISO, CMM certificationsISO, Six Sigma, ASQ certifications
Work EnvironmentManufacturing, construction, aerospaceManufacturing, production, industrial facilities
Primary FocusPrecise measurements, geometric accuracy, dimensional inspectionProduct quality, defect detection, process compliance
Tools & TechniquesCMM, laser scanners, calipersInspection reports, statistical analysis, sampling

While both roles focus on quality and precision, a Dimensional Control Engineer specializes in ensuring the geometric accuracy of components through detailed measurements, often using advanced metrology tools. In contrast, a Quality Control Engineer oversees overall product quality and process adherence. Both roles are essential in manufacturing and engineering industries, but their specific responsibilities and tools differ.

What are popular job titles related to Dimensional Control Engineer jobs in Michigan?

For Dimensional Control Engineer jobs in Michigan, the most frequently searched job titles are:

What job categories do people searching Dimensional Control Engineer jobs in Michigan look for?

The top searched job categories for Dimensional Control Engineer jobs in Michigan are:

Infographic showing various Dimensional Control Engineer job openings in Michigan as of August 2026, with employment types broken down into 1% As Needed, 74% Full Time, 18% Part Time, 1% Temporary, 5% Contract, and 1% Nights. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution.

Body Structure and Closure Design Engineer (Catia)

Detroit Engineered Products

Troy, MI • On-site

Other

Re-posted 10 days ago


Job description


Role & responsibilities
  • Develop and optimize complex sheetmetal component designs (body panels, closures, hoods, underbody, and reinforcements) using advanced CATIA V5 Sheetmetal modeling techniques, ensuring compliance with detailed engineering specifications and manufacturing constraints.
  • Execute CAD modeling adhering to strict Geometric Dimensioning and Tolerancing protocols to guarantee dimensional accuracy, assembly fit-up, and proper interfacing within multi-component assemblies.
  • Perform tolerance stack-up analysis and variation management for critical Sheetmetal interfaces to preempt and mitigate assembly and quality issues.
  • Conduct in-depth forming feasibility analyses, including material flow, thinning, springback prediction, and wrinkle prevention using simulation tools, to ensure manufacturability within stamping process capabilities.
  • Interface with stamping and tooling engineering teams to review and provide technical design input for die robustness, tool clearance, blank development, and hardware integration to reduce production variability and defects.
  • Lead sheetmetal joinery design, optimally specifying welds, clinches, adhesives, and mechanical fasteners aligned with structural and NVH requirements.
  • Manage PLM processes within Teamcenter, encompassing design data revision control, Engineering Change Notices (ECNs), and adherence to automotive change management protocols to ensure traceability and configuration control.
  • Utilize digital mockup tools such as Vismockup for integrated vehicle assembly validation, clash detection, and maintenance of digital master models throughout vehicle development cycles.
  • Collaborate cross-functionally with structural engineers, CAD specialists, material engineers, and manufacturing process engineers to solve complex problems related to sheetmetal formability, tool wear, and part distortion.

Preferred candidate profile
  • 5+ years in sheetmetal design for body, closures, and hoods.
  • Expert in CATIA V5 and automotive GD&T.
  • Strong knowledge of stamping, forming, and material behavior (HSS, AHSS, aluminum).
  • Skilled in tolerance analysis, assembly fit, and manufacturing collaboration.
  • Proficient with Teamcenter PLM and Vismockup.
  • Experienced in welding and joining methods for structural integrity.
  • Self-motivated with excellent problem-solving and communication skills.