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Industrialization Engineer Jobs in Michigan (NOW HIRING)

Showing results 41-60

Industrialization Engineer information

See Michigan salary details

$31.4K

$72.8K

$101.1K

How much do industrialization engineer jobs pay per year?

As of Aug 22, 2026, the average yearly pay for industrialization engineer in Michigan is $72,776.00, according to ZipRecruiter salary data. Most workers in this role earn between $61,000.00 and $82,400.00 per year, depending on experience, location, and employer.

What is an industrialization engineer?

Industrialization Engineers are professionals who focus on designing, optimizing, and implementing manufacturing processes to efficiently bring new products from the design phase into mass production. They work closely with design, production, and quality teams to ensure that products can be manufactured reliably, cost-effectively, and at scale. Their responsibilities often include process planning, equipment selection, workflow optimization, and continuous improvement initiatives. By bridging the gap between product development and manufacturing, Industrialization Engineers help companies deliver high-quality products to market faster and more efficiently.

How does an industrialization engineer typically collaborate with production and design teams during new product launches?

Industrialization Engineers play a pivotal role in bridging the gap between design and production teams, especially during new product launches. They work closely with design engineers to review product specifications and provide input on manufacturability, often suggesting modifications to streamline the production process. Simultaneously, they coordinate with production teams to develop efficient workflows, implement tooling and equipment, and ensure that quality and safety standards are met. This cross-functional collaboration helps to minimize production issues, reduce costs, and accelerate time-to-market for new products.

What are the key skills and qualifications needed to thrive as an industrialization engineer, and why are they important?

To thrive as an Industrialization Engineer, you need a solid background in manufacturing processes, process optimization, and mechanical or industrial engineering, often supported by a relevant engineering degree. Familiarity with CAD software, ERP systems, and lean manufacturing methodologies is typically required, and certifications like Six Sigma or Lean may be advantageous. Strong problem-solving skills, effective communication, and the ability to work collaboratively across teams are vital soft skills in this role. These skills ensure efficient production ramp-up, reduced costs, and high product quality in a competitive manufacturing environment.

What is the difference between Industrialization Engineer vs Manufacturing Engineer?

AspectIndustrialization EngineerManufacturing Engineer
Primary FocusStreamlining production processes, scaling product manufacturing, and optimizing workflowsDesigning, developing, and improving manufacturing methods and equipment
Required CredentialsBachelor's in Industrial Engineering, Mechanical Engineering, or related fields; certifications like Six Sigma are commonBachelor's in Mechanical, Industrial, or Manufacturing Engineering; similar certifications often used
Work EnvironmentFactories, production lines, and industrial settingsFactories, workshops, and engineering labs
Industry UsageUsed across manufacturing sectors to improve efficiency and reduce costsUsed to develop and implement manufacturing processes and equipment

In summary, Industrialization Engineers focus on scaling and optimizing production processes, while Manufacturing Engineers concentrate on designing and improving manufacturing methods. Both roles require similar credentials and work in industrial settings, but their core responsibilities differ slightly in scope and focus.

What type of jobs do industrialization engineers get?

Industrialization engineers typically find jobs in manufacturing, automotive, aerospace, and consumer electronics industries, where they focus on streamlining production processes, improving efficiency, and implementing new manufacturing technologies. They often work in factories, plants, or corporate offices, utilizing skills in process optimization, project management, and engineering tools like CAD and Lean methodologies.
Infographic showing various Industrialization Engineer job openings in Michigan as of August 2026, with employment types broken down into 87% Full Time, 6% Part Time, 2% Temporary, 4% Contract, and 1% Nights. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $72,776 per year, or $35 per hour.

Tooling Development Engineer 方法/工业化

ARaymond Network

Rochester Hills, MI • On-site

$90 - $130/hr

Other

Posted 4 days ago


Job description

Position Summary:

The Tooling Development Engineer plays a critical role in validating and industrializing injection-molded tooling for plastic quick connectors, clips, and fastening solutions. This position supports product development and industrialization activities for NA customers while partnering closely with global engineering, process teams, and tooling suppliers. This role will use simulation and tooling expertise to ensure molds built for North American programs meet ARaymond standards for performance, manufacturability, cost efficiency, and long-term reliability.

Roles and Responsibilities:

Conduct mold flow analysis (Fill, Pack, Cool, Warp, Fiber Orientation) for NA quick connector, clip, and fastening programs.

Interpret simulation results and propose part or tooling modifications to optimize quality, cycle time, gate placement, weld‑line behavior, and dimensional stability.

Develop simulation reports and recommendations used by Product Engineering, Tooling, and Process Engineering teams.

Maintain alignment with ARaymond global simulation standards while adapting to NA‑specific tooling practices.

Review, guide, and validate mold designs developed by external North American tool shops.

Ensure tools meet ARaymond tooling guidelines, cooling requirements, gating standards, and maintainability expectations.

Support tool trials (T0/T1/Tn), gate freeze studies, capability builds (SOP readiness), and troubleshooting.

Participate in supplier reviews, design‑for‑manufacture (DFM) sessions, and onsite tool tryouts when needed.

Work closely with Product Engineering/Manufacturing, Product Development, Supplier Tooling Teams, and Global Industrialization Teams to evaluate and optimize part designs prior to release.

Support design reviews, feasibility reviews, PFMEAs, and customer launch readiness activities.

Provide technical input during APQP milestones and PPAP preparation.

Identify manufacturability risks specific to connector and clip families

Provide recommendations aligned with ARaymond DFM rules and NA customer expectations

Develop detailed tooling cost models during RFQ phase

Partner with Costing team to ensure accuracy of cost models, quote validation, alignment of cycle time, piece price, etc.

Contribute to North American tooling standards, simulation templates, and best practices.

Support problem‑solving efforts for molding issues at NA plants (e.g., dimensional drift, flash, warpage, short shot conditions).

Stay up to date on material behavior, new molding methodologies, and improvements that can strengthen ARaymond NA competitiveness.

Other related duties and/or projects as assigned.

Education and Experience:

5+ years of mold flow simulation and/or injection mold tooling experience.

Strong proficiency with Moldflow, Moldex3D, or equivalent CAE tools.

Solid CAD competency (CATIA preferred; NX/SolidWorks also acceptable).

Understanding of polymer materials used in ARaymond components (GF nylon, PPA, PP, elastomeric materials).

Experience supporting automotive or industrial injection‑molded product launches.

Experience with PLM, ERP, or PDM systems used in automotive environments, preferred.

Experience with plastic quick connectors, clips, fasteners, or fluid handling components, preferred.

Hands‑on experience with NA mold shops and tool trials, preferred.

Knowledge of GD&T, tolerance stack‑ups, and dimensional control strategies, preferred.

Skills

Strong analytical mindset and problem‑solving ability.

Ability to independently evaluate complex simulation data and translate it into actionable tooling direction.

Comfortable working cross‑functionally across departments, sites, and/or global teams.

Strong communication skills, especially when working with external suppliers/internal engineering teams.

Ability to think strategically and understand customer priorities.

Ability to work closely with others in a collaborative team environment.

Proficient in Microsoft Office 365 (Teams, Outlook, Excel, PowerPoint, Word).

Professional demeanor and ethical conduct, including handling confidential information appropriately.

Reporting to this position

NA

Physical Demands

Frequent sitting, walking, standing.

Use of computer with repetitive mouse use, keyboarding and visual demands.

Must be able to work in the office for collaborative purposes.

Ability to lift and handle parts or small tooling components up to 25 lbs.

Travel by air, car, or other methods of travel; up to 10%.

Measure of Performance

Core Behaviors and Skills

Collaborating with Others

Creating Change

Technical/Functional Job Performance.

Customer and Quality Focus.

Timely Completion of assigned tasks and annual goals.

Accuracy and integrity of work.

Health & Safety

As an employee at ARaymond you play a crucial role in maintaining a safe and healthy workplace. Your responsibilities include, but are not limited to:

Complying with all company health and safety guidelines and procedures.

Participating in all required health and safety trainings to stay informed about best practices and regulatory requirements.

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