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Solidworks Inspection Jobs in Indiana (NOW HIRING)

... inspection * Familiarity with casting and machining blueprints * Capability in 3D drawing, component design, and model editing (i.e. SolidWorks) * Strong analytical and problem-solving skills ...

Controls Engineer

Franklin, IN · On-site

$78K - $101K/yr

Own setup, configuration, and performance improvement of plant vision inspection systems, including ... Ability to create designs in mechanical and electrical CAD software (AutoCAD, EPLAN, SolidWorks ...

Controls Engineer

Franklin, IN · On-site

$78K - $101K/yr

Own setup, configuration, and performance improvement of plant vision inspection systems, including ... Ability to create designs in mechanical and electrical CAD software (AutoCAD, EPLAN, SolidWorks ...

Documents test results/procedures, or inspection data, and evaluate compliance with standards and ... Solidworks preferred * In English; Ability to read, write, interpret and verbally communicate ...

... final inspections Improve processes, reduce cycle times, and support continuous improvement ... SolidWorks CAM, or similar software Strong blueprint reading skills and the ability to hold tight ...

... final inspections Improve processes, reduce cycle times, and support continuous improvement ... SolidWorks CAM, or similar software Strong blueprint reading skills and the ability to hold tight ...

CNC Machinist

Indianapolis, IN · On-site

$30 - $35/hr

Perform in-process and final inspections using precision measuring instruments, including ... Exposure to SolidWorks- Preferred Job Requirements * Must have High School Diploma or GED * Must ...

Showing results 41-60

Solidworks Inspection information

What is the difference between Solidworks Inspection vs CAD Technician?

AspectSolidworks InspectionCAD Technician
CertificationsSolidworks Certification, Inspection-specific trainingAutoCAD, Solidworks, or other CAD software certifications
Work EnvironmentManufacturing, quality control, engineering firmsDesign offices, engineering departments, manufacturing
Primary FocusCreating inspection reports, verifying part dimensionsDesigning, drafting, and modifying CAD models

Solidworks Inspection specialists focus on quality assurance by generating inspection reports and verifying part dimensions using Solidworks Inspection software. CAD Technicians primarily work on designing and modifying CAD models across various projects. While both roles require Solidworks skills, Solidworks Inspection emphasizes quality control, whereas CAD Technicians focus on design and drafting tasks.

What is a Solidworks Inspection inspector?

A Solidworks Inspection inspector is a professional responsible for using Solidworks Inspection software to verify and validate product dimensions and quality. They review CAD models, generate inspection reports, and ensure parts meet design specifications, often working with measurement tools and quality standards. Certification in quality management and familiarity with inspection processes are typically required.

What cities in Indiana are hiring for Solidworks Inspection jobs?

Cities in Indiana with the most Solidworks Inspection job openings:

Infographic showing various Solidworks Inspection job openings in Indiana as of August 2026, with employment types broken down into 89% Full Time, 6% Part Time, 4% Contract, and 1% Nights. Highlights an 99% Physical, and 1% Remote job distribution.

Process Engineer

Tech Castings LLC

Shirley, IN • On-site

Other

Re-posted 20 days ago


Job description

About Tech Castings:

Tech Castings is a leader in Aerospace Investment Casting with a steadfast commitment to investing in the best business tools and equipment available. We have grown revenue in every year of our existence since 2011, working with OEM’s including GE Aerospace, Rolls Royce and Honeywell, and recently completed a 5-million-dollar expansion.


Position Summary

The Investment Casting Process Engineer supports the development, optimization, and sustainment of manufacturing processes for precision aerospace components produced via the investment casting method. Working closely with senior engineers and production leadership, this role focuses on process stability, casting quality, and continuous improvement across wax, shell, vacuum and air casting, and finishing operations with a primary emphasis on nickel and cobalt-based superalloy systems.


Key Responsibilities

Process Support & Optimization

  • Support development and validation of casting processes for new and existing aerospace components, including gating/riser design, shell system parameters, and vacuum melt/pour parameters
  • Maintain and update process control plans, work instructions, and inspection criteria
  • Assist in root cause analysis and corrective action for casting defects common to superalloy systems shrinkage porosity, hot tearing, grain defects, ceramic inclusion, and surface oxidation
  • Track and analyze scrap and rework data to identify yield improvement opportunities

Technical & Production Support

  • Provide engineering support to wax, shell, vacuum furnace, and finishing operations on a day-to-day basis
  • Troubleshoot process deviations related to dimensional non-conformance, surface finish, and metallurgical properties
  • Interface with metallurgical lab for chemistry verification, microstructure review, and mechanical property evaluation (tensile, stress rupture, hardness)
  • Support fluorescent penetrant inspection (FPI) and X-ray review processes

New Product Introduction (NPI)

  • Participate in design-for-manufacturability (DFM) reviews for new aerospace castings
  • Assist in quoting new parts for customers including cost estimating, specification review, gating design, and tooling requirements
  • Assist in developing tooling specifications and coordinating wax die design, build, and qualification with tooling suppliers
  • Support first article inspection (FAI) and AS9102 documentation packages

Quality & Compliance

  • Support NADCAP and AS9100 audit preparation and surveillance activities
  • Maintain familiarity with customer-specific requirements and aerospace material specifications (AMS, PWA, GE, Rolls-Royce, etc.)
  • Assist with SPC implementation and control chart monitoring for critical casting parameters

Continuous Improvement

  • Participate in Lean and Kaizen events within the foundry
  • Contribute to PFMEA updates and process risk reviews
  • Collaborate with maintenance on PM programs for vacuum induction melting (VIM) furnaces, autoclaves, and shell room     equipment


Qualifications

Required

  • Bachelor's degree in Materials Science, Metallurgical Engineering, Mechanical Engineering, or related field
  • 1–4 years of experience in investment casting, precision casting, or aerospace manufacturing (internship or co-op experience in a foundry environment considered)
  • Basic understanding of superalloy metallurgy (nickel- and cobalt-based alloys, solidification behavior, oxidation resistance)
  • Familiarity with GD&T and CMM-based and/or laser dimensional inspection
  • Familiarity with casting and machining blueprints
  • Capability in 3D drawing, component design, and model editing (i.e. SolidWorks)
  • Strong analytical and problem-solving skills 

Preferred

  • Hands-on experience with vacuum induction and air melting operations 
  • Basic understanding of superalloy metallurgy (nickel- and cobalt-based alloys, solidification behavior, oxidation resistance)
  • Familiarity with ceramic shell systems used in superalloy casting (zircon face coats, alumina/silica backup systems)
  • Exposure to NADCAP or AS9100 quality environments
  • Six Sigma Green Belt or coursework toward certification


Work Environment

This position operates in both office and active foundry settings. Regular exposure to vacuum furnace operations, high-temperature environments, ceramic particulate, and chemical shell materials is expected. Full PPE compliance is required. Occasional travel to customer facilities or suppliers may be required.


Competencies

  • Detail-oriented with solid organizational and documentation habits
  • Eagerness to develop deep technical expertise in superalloy casting
  • Collaborative mindset with ability to work across engineering, quality, and production teams
  • Ability to communicate technical findings clearly to both engineers and operators