1

Corrosion Engineer Jobs (NOW HIRING)

We are seeking an experienced Corrosion Prevention Engineer who has knowledge and experience in the design, monitoring and scoping of mitigative activities of impressed current cathodic protection ...

We are seeking an experienced Corrosion Prevention Engineer who has knowledge and experience in the design, monitoring and scoping of mitigative activities of impressed current cathodic protection ...

Olefins and Polymers USA LLC Job title Corrosion and Materials Engineer Grade 37 Offer Range $161,100 - 200,365 (commensurate with experience) Location TBD - (Hybrid) How the job fits In The ...

Concrete Corrosion Engineer

Chalfont, PA · On-site

$75K - $100K/yr

Corrosion Control Engineers are expected to retain AMPP Cathodic Protection Certifications. Term: This position is a permanent, fulltime, salary position. Travel: Travel obligation is expected to be ...

Corrosion Analyst

San Diego, CA · On-site

$68K - $114K/yr

Apply practical engineering and analytical judgment while tracking corrosion work reported by ... assessment activities to support the maintenance planning process * Develop and present findings ...

Must have knowledge of basic engineering procedures and of the specific procedures related to corrosion engineering. * Ability to read and understand maps. * Familiar with all relevant municipal ...

Must have knowledge of basic engineering procedures and of the specific procedures related to corrosion engineering. * Ability to read and understand maps. * Familiar with all relevant municipal ...

next page

Showing results 1-20

Corrosion Engineer information

See salary details

$31K

$95.8K

$127.5K

How much do corrosion engineer jobs pay per year?

As of Jul 23, 2026, the average yearly pay for corrosion engineer in the United States is $95,796.00, according to ZipRecruiter salary data. Most workers in this role earn between $81,000.00 and $116,000.00 per year, depending on experience, location, and employer.

What is the difference between Corrosion Engineer vs Materials Engineer?

AspectCorrosion EngineerMaterials Engineer
CredentialsBachelor's in corrosion engineering, materials science, or related field; certifications like NACE CIPBachelor's or higher in materials science, metallurgy, or engineering; certifications vary
Work EnvironmentIndustrial plants, oil & gas, pipelines, maritime, power plantsManufacturing, product development, research labs, construction
Industry UsageSpecialized in corrosion prevention, inspection, and mitigationFocuses on material selection, testing, and development for various applications

While both roles involve materials and engineering principles, Corrosion Engineers specialize in preventing and managing corrosion issues in industrial settings, whereas Materials Engineers focus on developing and testing materials for diverse applications. The roles often overlap but serve distinct purposes within engineering projects.

What are some common challenges faced by Corrosion Engineers in managing aging infrastructure?

Corrosion Engineers often encounter challenges such as limited access to historical data, outdated materials, and budget constraints when assessing and maintaining aging infrastructure. They must devise inspection and mitigation strategies that balance safety, regulatory compliance, and cost-effectiveness. Collaborating closely with operations, maintenance, and safety teams is crucial to implement preventative measures and ensure the long-term integrity of assets.

What are corrosion engineers?

Corrosion engineers are specialists who identify, prevent, and control the degradation of materials—mainly metals—caused by environmental factors such as moisture, chemicals, or salt. They develop strategies and recommend materials or coatings to extend the life of structures, machinery, and pipelines in industries like oil and gas, marine, and construction. Their work is vital to ensuring safety, reliability, and cost-effectiveness of industrial assets by minimizing the risk of failures due to corrosion.

What Is a Corrosion Engineer?

A corrosion engineer determines ways to repair or prevent corrosion on industrial machinery at a manufacturing plant or infrastructure projects, such as metal bridges, oil and gas pipelines, mines, and waste management facilities. Although closely related to metallurgy, corrosion engineering can address issues in non-metallic objects, such as ceramics, carbon, graphite, and cement. Your duties and responsibilities in this career include both fieldwork repair and lab work, where you try to determine ways to prevent corrosion on materials. In the field, you perform maintenance and repair work and collect data on the environmental conditions that affect corrosion.

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

To thrive as a Corrosion Engineer, you need a solid background in materials science, chemistry, and engineering principles, typically supported by a degree in chemical, materials, or mechanical engineering. Familiarity with industry-standard testing methods, corrosion modeling software, and certifications such as NACE or AMPP are commonly required. Strong problem-solving skills, attention to detail, and effective communication are essential soft skills in this field. These abilities are crucial for accurately diagnosing corrosion issues, developing mitigation strategies, and ensuring the safety and longevity of infrastructure and equipment.
What cities are hiring for Corrosion Engineer jobs? Cities with the most Corrosion Engineer job openings:
What are the most commonly searched types of Corrosion Engineer jobs? The most popular types of Corrosion Engineer jobs are:
Who are the top companies hiring for Corrosion Engineer jobs? The top employers for Corrosion Engineer jobs are:
What states have the most Corrosion Engineer jobs? States with the most job openings for Corrosion Engineer jobs include:
Infographic showing various Corrosion Engineer job openings in the United States as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $95,796 per year, or $46.1 per hour.
Corrosion and Materials Engineer

Corrosion and Materials Engineer

INEOS

League City, TX • On-site

Full-time

Posted 6 days ago


INEOS rating

7.4

Company rating: 7.4 out of 10

Based on 23 frontline employees who took The Breakroom Quiz

56th of 92 rated chemical manufacturers


Job description

Company:
INEOS Olefins & Polymers USA
Interested in joining a winning team? A team whose employees are empowered to make a difference?
Interested in joining a winning Team? A team whose employees are empowered to make a difference?
Company:
Olefins and Polymers USA LLC
Job title
Corrosion and Materials Engineer
Grade
37
Offer Range
$161,100 - 200,365 (commensurate with experience)
Location
TBD - (Hybrid)
How the job fits In
The Corrosion & Materials Engineer is the recognized enterprise subject matter expert for metallurgy, corrosion control, damage mechanisms, and welding practices across INEOS O&P USA. Reporting to the Equipment Integrity Manager & Technical Authority, this role provides the deep technical expertise that underpins sound materials and corrosion decisions across pressure vessels, piping, storage tanks, and critical equipment representing $15B+ in enterprise replacement value assets. Technical guidance provided by this role directly protects long-term asset integrity, weld and material reliability, and the company's license to operate.
Within the discipline of materials, welding, and corrosion engineering, the Corrosion & Materials Engineer defines enterprise standards for material selection, welding procedures, damage mechanism reviews, and corrosion control. Site engineering and inspection teams operate within the technical framework established by this role and rely on it as the senior technical resource for severe or complex problems involving metallurgy, weld repair, or corrosion threats. While the position has no direct line authority over site personnel, its functional leadership and structured technical guidance establish how materials and corrosion decisions are made across all O&P USA sites.
The role spans three major manufacturing sites and the O&P USA pipeline business, leading enterprise programs for damage mechanism reviews, corrosion control documents, welding procedures, and CUI inspection and mitigation. Through technical leadership in these specialized programs, the role shapes the materials, welding, and corrosion-related portion of $175MM+ in annual maintenance and inspection spend and informs the technical foundations of major capital and turnaround decisions.
The Corrosion & Materials Engineer is recognized as a technical authority within INEOS and is expected to actively participate in relevant industry forums and committees, including API committees and NACE/AMPP corrosion groups, ensuring that O&P remains aligned with emerging codes, NDE technologies, and best practices in materials science, corrosion control, and welding engineering.
A significant intervention to address this structural threat to the Business has been defined and actioned by the O&P USA Board and endorsed by INEOS Capital. Central to this intervention is creation and implementation of a corporate Operations Management System (OMS) that will define, at a corporate level, how all elements of engineering, operations and technology will be defined, structured, standardised and managed going forward.
Critical to the successful delivery of the OMS is creation of a Corporate Engineering & Technology Organization, and population of that organization with senior, competent and experienced discipline leaders, with the technical capability and gravitas to design, communicate and manage their engineering / operational discipline to significantly improved and consistent standards across the entire O&P USA Business.
The E&T organization will hold all discipline engineering Technical Authorities in the Business, who will set corporate standards, practices, procedures and competency requirements across all operating locations. This is a purposeful and complete reversal in structure to previous / current where personnel at the operating Sites had an assumed authority for all technical discipline policies, practices, structures and standards at their individual location; an approach that has not worked and is the root cause of the many performance issues encountered today.
The post holder must have deep understanding of their engineering discipline and have successful experience of setting policy and driving compliance to required standards across a large and diverse manufacturing organization. The post holder must be a proven and resilient agent for change.
Materials, welding, and corrosion engineering decisions made by this role directly support long-term equipment reliability, the company's regulatory compliance posture, and the avoidance of asset failures with potential for major safety, environmental, and financial impact. This person serves as the enterprise senior technical resource for all materials, welding, and corrosion matters affecting fixed equipment integrity across the O&P USA Business.
Job Accountabilities and Responsibilities
Materials & Metallurgy Technical Support
Most important activities:
  • Serve as the enterprise senior technical resource for materials of construction for pressure vessels, piping, storage tanks, and critical equipment across O&P USA, providing authoritative guidance on alloy selection, welding compatibility, and material upgrades.
  • Provide authoritative input on fitness-for-service evaluations, repair strategies, and material substitutions for severe or complex integrity challenges that exceed routine site capability.
  • Support site projects and Management of Change processes requiring evaluation of exotic materials, elevated service requirements, or non-routine material decisions.
  • Lead and support failure analyses and root cause investigations involving materials or metallurgical failures, contributing technical expertise on failure mechanisms, contributing factors, and systemic corrective actions.
  • Maintain enterprise materials engineering standards and reference documents that guide consistent application across all O&P USA sites.

CUI Inspection & Mitigation Strategy
Most important activities:
  • Lead the enterprise CUI (Corrosion Under Insulation) inspection and mitigation strategy across all O&P USA sites, covering both piping and fixed equipment.
  • Develop and maintain the enterprise CUI inspection program, including risk-based inspection prioritization, sequencing, and coatings strategy to address susceptibility on piping, vessels, exchangers, and tanks.
  • Define enterprise standards for insulation systems, protective coatings, and weatherproofing as they relate to CUI prevention, inspection, and mitigation.
  • Track CUI program performance across sites and drive continuous improvement in inspection coverage, mitigation effectiveness, and risk reduction year over year.

Damage Mechanism Management & Corrosion Control
Most important activities:
  • Lead the identification, documentation, and management of active and potential damage mechanisms across all O&P USA assets, including high-temperature hydrogen attack, sulfidation, chloride stress corrosion cracking, amine cracking, and other common threats in hydrocarbon and polymer processing.
  • Conduct and maintain damage mechanism reviews (DMRs) for process units and critical equipment, ensuring DMRs are current, accurate, and reflect actual operating conditions.
  • Develop and maintain enterprise corrosion control documents (CCDs) that define expected degradation, inspection requirements, and mitigation strategies for each process environment.
  • Collaborate with the Chief Inspector and site inspection teams to ensure damage mechanisms are properly identified, monitored, and managed through appropriate inspection plans and techniques; collaborate with site process engineering and operations to understand how process conditions, upsets, and operating envelopes affect damage mechanisms and corrosion rates.
  • Review and interpret inspection data to identify systemic threats, emerging degradation risks, and trends that require enterprise-level attention or program updates.

Welding Engineering & Repair Practices
Most important activities:
  • Develop and approve welding procedures and repair practices used across all INEOS O&P USA assets, ensuring procedures are technically sound, code-compliant, and field-executable.
  • Support field execution of critical welds, fabrication methods, and in-service repairs, providing hands-on technical guidance where needed.
  • Ensure welding procedures comply with applicable codes and standards, including API 582, ASME Section IX, and applicable RAGAGEP.
  • Review and qualify contractor Welding Procedure Specifications (WPS) and Procedure Qualification Records (PQR) and ensure alignment with enterprise expectations.
  • Coach site engineers, maintenance leads, and welding contractors on proper welding practices, repair planning, and quality expectations.
  • Lead resolution of welding-related issues during turnarounds and capital projects, including hot tap evaluations, weld repair scope decisions, and quality assurance.

Turnaround & Capital Project Support
Most important activities:
  • Provide technical support for turnaround planning and execution from a materials, welding, and corrosion perspective, ensuring high-risk equipment receives appropriate technical scope.
  • Support post-turnaround reviews to capture learnings related to materials, welding, and corrosion, and feed findings back into damage mechanism reviews, corrosion control documents, and welding practices.
  • Support capital project teams with materials selection, fabrication specifications, and quality assurance requirements for new equipment and modifications.
  • Provide technical input on the materials and corrosion implications of major operational changes, process condition shifts, or feedstock changes.
  • Influence the materials, welding, and corrosion-related portion of $175MM+ in annual maintenance and inspection spend across approximately 20 distinct turnaround events on rotating multi-year cycles.

Program & Procedure Development
Most important activities:
  • Define and maintain technical procedures for weld repair approvals, metallurgy evaluations, fitness-for-service assessments, and material selection guidance across the enterprise for consistent application across all O&P USA sites.
  • Work with the Chief Inspector, site inspection leads, and site engineers to ensure programs meet risk tolerance, design expectations, and are sustainable over time.
  • Establish enterprise best practices for how materials engineering, welding, and corrosion control are documented, applied, and reviewed consistently across all sites.
  • Ensure programs and procedures align with applicable API codes, ASME standards, and corporate mechanical integrity expectations.
  • Drive continuous improvement and standardization of materials, welding, and corrosion control practices across O&P USA.

Discipline Coaching & Technical Capability Development
Most important activities:
  • Provide functional coaching and mentoring to site mechanical engineers, inspection professionals, and reliability personnel on materials, welding, and corrosion topics, growing technical capability across the discipline.
  • Develop and contribute to competency standards for the materials and corrosion engineering domain within the future INEOS O&P Business Competency Management System.
  • Build a network of site-based engineering and inspection professionals to share technical learnings, emerging threats, and consistent practices across the enterprise.

External Codes & Industry Engagement
Most important activities:
  • Ensure alignment of internal practices with applicable codes, including API 510, 570, 582, 579 (FFS), and ASME Section IX, and stay current as those codes evolve.
  • Maintain visibility in external forums, including API committees and NACE/AMPP corrosion groups, representing INEOS interests in materials, welding, and corrosion discussions.
  • Stay current on emerging threats, NDE technologies, repair strategies, and industry incidents relevant to corrosion control, materials science, and welding engineering.
  • Bring external learnings into enterprise standards and practices, and drive adoption where they strengthen internal programs.

Skills and Knowledge Requirements
Level of education & Experience in general
  • Bachelor's degree in Materials Science, Welding Engineering, Metallurgical Engineering, or Mechanical Engineering; advanced degree preferred.
  • 15-20 years of experience in welding, materials, or corrosion engineering in refining, petrochemical, or heavy industrial environments.
  • Certified or highly proficient with API 510, 570, 579 (FFS), 582, and ASME Section IX, with the ability to apply them to varied plant environments.
  • Experience developing or qualifying welding procedures and reviewing contractor WPS/PQR documents.
  • Strong understanding of corrosion mechanisms in hydrocarbon and polymer processing, including CUI, high-temperature sulfidation, and chloride stress corrosion cracking.
  • Demonstrated experience with damage mechanism reviews and corrosion control document development.
  • Active participation in external industry forums (e.g., API committees, NACE/AMPP) preferred.

Technical skills
  • Recognized company authority on metallurgy, materials selection, and fabrication methods for pressure equipment and piping in hydrocarbon and polymer service
  • Extensive knowledge of materials and welding codes, including API 510, 570, 571, 579, 580, 581, 582, 653, and ASME Section IX
  • Strong knowledge of degradation mechanisms, corrosion processes, and their interaction with materials of construction, process conditions, and operational history
  • Skilled in developing welding procedures, evaluating weld quality, and supporting field execution of critical repairs
  • Experienced in fitness-for-service assessments, failure analysis, and root cause

What INEOS employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom