1

Furnace Design Engineer Jobs in Indiana (NOW HIRING)

Tooling Engineer

Indianapolis, IN · On-site

$79K - $158K/yr

Carrier in Residential furnace factory in Indianapolis seeks a high energy, data driven, result ... Design, develop and test tools, dies, jigs, fixtures, and gauges, using CAD * Recommend materials ...

... furnace areas), noise, glass handling, forklift and overhead crane traffic, and use of personal ... Initiate capex plans to ensure that these meet business needs. Assist design engineers with new ...

Process Engineer

Lebanon, IN · On-site

$75K - $80K/yr

... Design fixturing and masking for customer parts as needed. 5. Work with R&D staff to develop new ... vacuum furnace equipment and controls. 8. Must have leadership experience and excellent ...

... furnace areas), noise, glass handling, forklift and overhead crane traffic, and use of personal ... System/Project design, costing and implementation from concept to completion to include capital ...

... furnace areas), noise, glass handling, forklift and overhead crane traffic, and use of personal ... System/Project design, costing and implementation from concept to completion to include capital ...

... furnace areas), noise, glass handling, forklift and overhead crane traffic, and use of personal ... Design new equipment or redesign existing equipment, and coordinate its fabrication, assembly ...

... furnace areas), noise, glass handling, forklift and overhead crane traffic, and use of personal ... Design new equipment or redesign existing equipment, and coordinate its fabrication, assembly ...

Showing results 21-40

Furnace Design Engineer information

What does a furnace design engineer do?

A Furnace Design Engineer is responsible for designing, developing, and optimizing industrial furnaces used in processes such as metal production, glass manufacturing, and chemical processing. They work on creating efficient heating systems, selecting appropriate materials, and ensuring safety and environmental compliance. Their role often includes collaborating with other engineers, overseeing installation, and troubleshooting furnace performance to improve productivity and reduce energy consumption.

What are some common challenges faced by furnace design engineers when working on custom industrial projects?

Furnace Design Engineers often encounter challenges such as balancing client-specific requirements with regulatory safety standards and energy efficiency goals. Custom projects may require tailored solutions for unique materials, temperatures, and production environments, which can complicate both the design and testing phases. Additionally, effective collaboration with multidisciplinary teams—such as process engineers, fabricators, and automation specialists—is crucial to ensure the final design is feasible, cost-effective, and meets performance expectations. Strong communication and problem-solving skills are essential to navigate these complexities successfully.

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

Thriving as a Furnace Design Engineer requires a solid background in mechanical or chemical engineering, with expertise in thermodynamics, heat transfer, and materials science, often supported by a relevant engineering degree. Familiarity with CAD software, simulation tools like ANSYS or COMSOL, and knowledge of industry standards and codes are typically essential. Strong problem-solving abilities, attention to detail, and effective communication skills help engineers excel in client interactions and multidisciplinary teams. These skills ensure safe, efficient, and innovative furnace designs that meet performance and regulatory requirements.

What is the difference between Furnace Design Engineer vs Mechanical Engineer?

AspectFurnace Design EngineerMechanical Engineer
CredentialsBachelor's in Mechanical Engineering, HVAC or furnace-specific certificationsBachelor's in Mechanical Engineering, Professional Engineer (PE) license often preferred
Work EnvironmentDesign labs, manufacturing plants, industrial facilitiesDesign offices, manufacturing sites, research labs
Industry UsageHeating systems, industrial furnace manufacturing, energy sectorBroad industry, including HVAC, manufacturing, aerospace, automotive

Furnace Design Engineers specialize in creating and optimizing furnace systems, focusing on thermal efficiency and safety, often within industrial or energy sectors. Mechanical Engineers have a broader scope, working on various mechanical systems across multiple industries. While both roles require mechanical engineering fundamentals, Furnace Design Engineers focus more on furnace-specific applications and standards.

Infographic showing various Furnace Design Engineer job openings in Indiana as of August 2026, with employment types broken down into 1% Internship, 85% Full Time, 9% Part Time, and 5% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.

Thermal Systems Engineer (Prometheus)

Bloomington, IN

Kratos Defense
National Security and International Affairs • 1 - 5K employees

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 7 days ago


Key responsibilities

  • Own the design, modeling, testing, and lifecycle integration of Thermal Protection Systems (TPS), internal case insulation, and ablative nozzle components.

  • Develop and maintain thermal and ablative response models, perform trade studies, and conduct sensitivity analyses to optimize TPS design and performance.

  • Plan, execute, and evaluate subscale testing, analyze test data, and correlate it with thermal models to ensure TPS performance and reliability.


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Prometheus Energetics is an independent U.S.-based merchant supplier of solid rocket motors and warheads. A joint venture between Kratos Defense & Security Solutions and Rafael Advanced Defense Systems, Prometheus combines U.S. industrial speed and credibility with decades of combat-proven designs, manufacturing know-how, and technical training to deliver field-ready products at scale.

Position Summary


Prometheus Energetics is seeking an experienced Thermal Systems Engineer / Senior Thermal Systems Engineer to own the design, modeling, testing, and lifecycle integration of Thermal Protection Systems (TPS), internal case insulation, and ablative nozzle components. Reporting directly to the Director of Engineering, this role serves as a primary technical authority driving TPS development from initial concept and material characterization through motor qualification and high-rate production.
Solid Rocket Motor (SRM) interiors demand extreme thermal protection solutions capable of withstanding hypergolic/corrosive combustion environments, rapid thermal transients, particle erosion, and alumina slag impingement. The ideal candidate brings 4 to 10 years of hands-on aerothermal, propulsion, or high-temperature materials engineering experience, combining strong computational modeling skills with practical experience in hot-fire analysis, subscale testing, and factory floor integration.

Key Responsibilities

TPS Design & Material Selection

  • Lead the design, sizing, and qualification of thermal protection systems for solid rocket motor assemblies, including internal case insulation, elastomeric liners, nozzle ablatives, igniter insulation, and flame barriers.
  • Evaluate and select high-temperature material systems: elastomeric compounds (EPDM, NBR, silicone-based rubbers), carbon-phenolic, silica-phenolic, carbon-carbon composites, bulk graphite, and ceramic/silica insulation.
  • Define mechanical, adhesive, and chemical compatibility requirements for TPS integration into composite and metallic motor cases, ensuring structural integrity across cure cycles, storage, and operational temperature extremes.
  • Evaluate material response phenomena—including thermochemical recession, pyrolysis gas generation, char formation, oxidation, and heat soak—to maintain motor case structural margins throughout burn and post-burn phases.
  • Support scalable manufacturing processes (e.g., tape wrapping, compression molding, hand layup, mandrel winding, and automated insulation placement) to transition designs from prototype to high-rate production.

Thermal Modeling & Analysis

  • Develop and maintain 1D, 2D, and 3D transient thermal and ablative response models using industry-standard software (e.g., Thermal Desktop, SINDA/FLUINT, ANSYS Thermal, Abaqus, FIAT/CMA, or equivalent solvers).
  • Translate internal ballistic environments, gas chemistry, convective heat transfer coefficients, radiative flux, and slag/particle impingement profiles into robust thermal analysis boundary conditions.
  • Conduct trade studies and design optimization to balance TPS mass, thermal margin, structural integrity, and manufacturability.
  • Perform sensitivity analyses and model uncertainty assessments to establish reliable flight and ground test design envelopes.
  • Provide thermal boundary conditions and temperature distribution fields to structural analysts for coupled thermal-mechanical stress evaluations of motor cases, grains, and nozzles.

Testing, Qualification & Post-Fire Correlation

  • Plan, execute, and evaluate subscale screening and material characterization tests (e.g., oxy-acetylene torch, radiant lamp, furnace, and arc-jet testing).
  • Collaborate with test facility personnel to define test objectives, instrumentation layout (thermocouples, heat flux sensors, ablation gauges), and data acquisition requirements for static fires and subscale evaluations.
  • Perform detailed post-test evaluations on fired hardware—including sectioned insulation, nozzle throats, and exit cones—measuring char depth, recession profiles, ply degradation, and bond line integrity.
  • Correlate analytical thermal models against measured test data to refine material property decks, recession rates, and thermochemical response parameters.
  • Lead root-cause investigations and failure analyses (FRACAS/MRB) for thermal or insulation anomalies, such as localized hot spots, unpredicted erosion, bond line debonding, or insulation burn-through.

Cross-Functional Leadership & Program Support

  • Work directly with internal ballisticians, structural engineers, materials scientists, and manufacturing teams to deliver fully integrated motor designs on schedule.
  • Author clear engineering documentation, including thermal analysis reports, material/process specifications, design verification vectors, and qualification test plans.
  • Present technical findings, analysis results, and design rationale at major program milestones (PDR, CDR, PQR, MRB).
  • Serve as a technical mentor to junior engineering staff in thermal analysis techniques, ablative material behavior, and testing methodologies.
  • Ensure strict compliance with ITAR, EAR, site energetics safety standards, and environmental safety guidelines across all design and lab operations.

 


Required Qualifications

  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Materials Science & Engineering, Chemical Engineering, or a closely related technical field from an accredited institution.

Experience:

  • Thermal Systems Engineer: Minimum of 4-6 years of relevant experience in thermal protection systems, propulsion thermal analysis, or high-temperature materials engineering.
  • Senior Thermal Systems Engineer: 7-10+ years of progressive engineering experience owning TPS/ablative design and qualification for solid rocket motors or hypersonic systems.
  • Proficiency in transient thermal analysis using industry tools (e.g., Thermal Desktop, SINDA/FLUINT, ANSYS, Abaqus, or custom thermochemical/ablative solvers).
  • Strong working knowledge of aerothermal fundamentals and high-temperature material behavior (pyrolysis, charring, recession, elastomeric insulation, composite ablators).
  • Hands-on experience with high-heat-flux material characterization, test instrumentation, or post-fire hardware sectioning/inspection.
  • U.S. Citizenship required (position involves ITAR/EAR restricted technology).
  • Ability to obtain and maintain a U.S. Government Secret Security Clearance.

Preferred Qualifications

  • Master's Degree or Ph.D. in Aerospace, Mechanical, or Materials Engineering with a focus on thermosciences, hypersonics, or composite material response.
  • Direct experience in Solid Rocket Motor (SRM) interior ballistic environment modeling, nozzle ablation analysis, or alumina slag accumulation modeling.
  • Familiarity with solid propellant liner/insulation/propellant (LIP) interface chemistry and bonding processes.
  • Applied experience with Python, MATLAB, or C/C++ for custom thermal automation, material deck generation, or data extraction scripts.
  • Background supporting production transition, supplier quality technical evaluations, or manufacturing nonconformance dispositions (MRB).
  • Active U.S. Government Secret Security Clearance.

Work Environment & Physical Requirements

  • Work is performed in office, machine shop, laboratory, and energetics manufacturing environments, including high-hazard areas subject to enhanced safety and security controls.
  • Must be able to wear required personal protective equipment (PPE) and comply with site safety, explosive-safety, electrostatic discharge (ESD), and access-control requirements.
  • Ability to move throughout a manufacturing site, inspect physical tooling, participate in shop-floor audits, and occasionally lift up to 25 pounds.
  • Regular, reliable attendance is required. Periodic travel to vendor machine shops, secondary company facilities, or customer sites may be required during startup, tool qualification, or critical production events.

Benefits

  • Medical, dental, and vision insurance
  • Life and AD&D insurance; short- and long-term disability coverage
  • 401(k) savings plan
  • Paid time off and company holidays

What Kratos Defense & Security Solutions employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom