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Part Design Jobs in Michigan (NOW HIRING)

CNC Gundrill Machinist (UNISIG)

Rochester, MI

$18.75 - $25.75/hr

Experience with SolidWorks or CAD software for part design review is desirable. * Basic math skills for calculations related to measurements and tolerances. * Knowledge of manufacturing environments ...

Senior Program Manager

Lansing, MI · On-site

$117.70K - $118.20K/yr

Background in tooling launch, mold validation, or plastic part design * Lean Manufacturing or Six Sigma experience Key Competencies: * Cross-functional leadership * Customer focus and relationship ...

Senior Connector Engineer

Southfield, MI · On-site

$96.50K - $132.50K/yr

Knowledge of part design for progressive die and injection molding * Having seen successful launch of at least 1 or 2 connector products * Perform or support customer and Internal drawing releases

Senior Connector Engineer

Southfield, MI · On-site

$96.50K - $132.50K/yr

Knowledge of part design for progressive die and injection molding * Having seen successful launch of at least 1 or 2 connector products * Perform or support customer and Internal drawing releases

Participates in part design reviews to assure the manufacturability of the design. * Directs all activities of Advance Launch team members as they apply to each 'new business' project as well as all ...

Supports the part design using SET based options approach. Supports Kaizens and A3 development activities. * Participate in on going meetings with the customer to review concerns and issues. Prepare ...

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Showing results 1-20

Part Design information

See Michigan salary details

$12

$22

$35

How much do part design jobs pay per hour?

As of May 30, 2026, the average hourly pay for part design in Michigan is $22.08, according to ZipRecruiter salary data. Most workers in this role earn between $17.40 and $24.71 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Part Designer, and why are they important?

To thrive as a Part Designer, you need strong proficiency in mechanical design principles, CAD modeling, and a relevant engineering degree or equivalent experience. Familiarity with software such as SolidWorks, CATIA, or AutoCAD, as well as knowledge of manufacturing processes and industry standards, is essential. Attention to detail, problem-solving abilities, and effective communication skills help you collaborate with engineering teams and ensure design accuracy. These skills are crucial for creating manufacturable, high-quality parts that meet performance, safety, and cost requirements.

What are some typical challenges faced by professionals in Part Design and how can they be addressed?

In Part Design, common challenges include balancing functionality with manufacturability, managing tight project timelines, and ensuring cross-team collaboration with manufacturing and quality assurance. Designers often need to iterate their models based on feedback from prototyping and testing, which requires adaptability and strong problem-solving skills. Building effective communication with engineers and production teams early in the process helps streamline revisions and reduces costly delays. Staying updated with the latest CAD tools and industry standards also contributes to overcoming these challenges.

What is part design?

Part design refers to the process of creating and developing the specifications, geometry, and features of individual components used in products or systems. This often involves using computer-aided design (CAD) software to create detailed 2D or 3D models, considering factors such as material selection, manufacturability, and assembly requirements. Effective part design helps ensure that components perform their intended functions, are cost-effective to produce, and fit together properly with other parts in the final product.

What is the difference between Part Design vs Mechanical Drafter?

AspectPart DesignMechanical Drafter
Primary RoleCreating detailed 3D models and prototypes of individual partsPreparing technical drawings and schematics based on existing designs
Skills & CertificationsCAD software proficiency, engineering knowledge, certifications like SolidWorks or AutoCADDrafting skills, CAD proficiency, understanding of engineering standards
Work EnvironmentDesign offices, engineering departments, manufacturing firmsEngineering firms, manufacturing companies, construction sites
FocusDesign and development of parts from concept to detailed modelsCreating accurate technical drawings for manufacturing and assembly

Part Design involves developing detailed 3D models of individual components, focusing on design and engineering. Mechanical Drafters prepare technical drawings based on these designs, ensuring accurate documentation for manufacturing. While both roles require CAD skills and engineering knowledge, Part Designers focus on creating models, whereas Mechanical Drafters focus on producing detailed drawings for production.

Manufacturing Project Manager - Mid Level

Manufacturing Project Manager - Mid Level

Belmont Engineered Plastics

Belmont, MI • On-site

Full-time

This job post has expired today. Applications are no longer accepted.


Job description

Project Manager – Injection Molding (Mid‐Level / Engineering Transition Friendly)

We are seeking a mid‐level Project Manager to support new business development, manage RFQs, and coordinate program launches within our injection molding operations. This role is an excellent fit for candidates with 3–7 years of engineering or manufacturing experience who are ready to grow into project management or expand their customer‐facing responsibilities.

You'll work closely with engineering, tooling, quality, and operations teams to ensure new programs are launched successfully and efficiently, while developing strong customer and cross‐functional leadership skills.

Key Responsibilities

  • RFQ Coordination — Manage technical reviews of customer RFQs, including drawings, specifications, and manufacturability requirements.
  • Customer Support — Work with customers to understand application needs and help develop manufacturable, cost‐effective solutions.
  • Program Execution — Support new program launches from quote through production, ensuring alignment across engineering, tooling, quality, and manufacturing.
  • Technical Sales Assistance — Provide technical input during quoting and early customer discussions.
  • Design for Manufacturability — Identify opportunities to improve part design for manufacturability, quality, and cost.
  • Customer Communication — Deliver clear updates, timelines, and technical information throughout development and launch.
  • Cross‐Functional Collaboration — Ensure internal teams understand customer requirements and program expectations.
  • Continuous Improvement — Contribute to improving quoting accuracy, program execution, and customer satisfaction.

Core Capabilities

  • Manufacturing or Injection Molding Knowledge with the ability to deepen expertise over time
  • Engineering Drawing Interpretation
  • RFQ and Feasibility Evaluation
  • Strong problem‐solving, communication, and organizational skills
  • Ability to coordinate projects across engineering, quality, and operations
  • Customer‐focused mindset with the ability to balance technical and commercial considerations

Qualifications

  • Background in engineering, manufacturing, or a related technical field (degree or equivalent experience)
  • Ability to read and interpret engineering drawings and specifications
  • Strong analytical and communication skills
  • Ability to thrive in a fast‐paced manufacturing environment
  • Interest in developing or expanding project management capabilities

Preferred

  • Experience in plastics injection molding or similar manufacturing environments
  • Exposure to RFQ processes, cost modeling, or program launches
  • Familiarity with design for manufacturability (DFM) concepts

Work Environment

  • Mix of office, manufacturing floor, and customer‐site work
  • Occasional travel to customer locations
  • Ability to walk production areas and review molded components
  • Compliance with PPE and safety standards required