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Reliability Engineer Jobs in Beaumont, TX (NOW HIRING)

Partner with maintenance, operations, and engineering teams to plan and execute repairs, modifications, upgrades, and replacement strategies that improve equipment reliability, availability, and ...

Partner with Maintenance, Reliability, Engineering, and Supply Chain teams to execute maintenance strategies, turnarounds, and key operational initiatives. * Develop, coach, and lead Shift Leads and ...

Partner with Maintenance, Reliability, Engineering, and Supply Chain teams to execute maintenance strategies, turnarounds, and key operational initiatives. * Develop, coach, and lead Shift Leads and ...

Turnaround Superintendent

Sulphur, LA · On-site

$120 - $180/hr

The Turnaround Superintendent drives a structured, disciplined Turnaround process, ensuring alignment across Operations, Maintenance, Reliability, Engineering, and contractor organizations. The ...

New

RT Assistant

Orange, TX · On-site

$16.25 - $21.75/hr

... engineering, reliability engineering, drones, robotics, V-Deck and condition-based monitoring services. Our work is critical to the integrity and safety of industrial firms, including petroleum ...

Engineer I, II, III, or Sr. (Utility)

Beaumont, TX · On-site

$100K - $137K/yr

Job Title: Engineer I, II, III, or Sr. (Utility) Work Place Flexibility: Onsite Legal Entity ... reliability, computer applications, safety, and root cause failure analysis. JOB DUTIES ...

Senior Electrical Engineer

Port Arthur, TX · On-site

$91K - $118K/yr

... power reliability within and outside the refinery's electrical system. * Must be able to ... Develop and/or update the existing I&E engineering standards and establish guidelines for ...

Showing results 41-60

Reliability Engineer information

See Beaumont, TX salary details

$58.4K

$113K

$135.1K

How much do reliability engineer jobs pay per year?

As of Aug 21, 2026, the average yearly pay for reliability engineer in Beaumont, TX is $113,019.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,200.00 and $123,600.00 per year, depending on experience, location, and employer.

What is a reliability engineer?

Reliability Engineers are professionals responsible for ensuring that systems, equipment, or processes function consistently and efficiently over time. They analyze data, identify potential points of failure, and develop maintenance strategies to improve system reliability and minimize downtime. Their work spans various industries, including manufacturing, energy, and technology, and often involves collaborating with design, operations, and maintenance teams. By implementing reliability-centered maintenance and predictive analysis, they help organizations save costs and increase safety.

What does a reliability engineer do?

As a reliability engineer, your duties are to test and evaluate the manufacturing of products and components and ensure that the procedures are efficient and do not lead to abnormally high maintenance or operational costs. Your other responsibilities are to find solutions to product reliability risks. You may manage risk in a supply chain, develop loss prevention strategies, and track the entire lifecycle of product development, from building prototypes to moving a product into full-scale production. You analyze information from department heads and recommend strategies to reduce risk and ensure that the product works reliably.

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

To thrive as a Reliability Engineer, you need a solid background in engineering principles, failure analysis, and reliability modeling, typically with a degree in engineering or a related field. Familiarity with tools such as FMEA, Root Cause Analysis (RCA), reliability-centered maintenance (RCM) software, and certifications like Certified Reliability Engineer (CRE) are highly valued. Strong problem-solving abilities, attention to detail, and effective communication are crucial soft skills in this role. These skills ensure systems are dependable, downtime is minimized, and organizational performance and safety are optimized.

What are some typical challenges reliability engineers face when implementing preventive maintenance strategies?

Reliability Engineers often encounter challenges such as balancing preventive maintenance schedules with production demands, ensuring buy-in from operations teams, and accurately predicting equipment failures. They must analyze large sets of historical data to identify trends and root causes, which can be complex in facilities with diverse machinery. Collaboration with maintenance, operations, and engineering teams is essential to develop effective strategies that minimize downtime while optimizing resources.

What is the difference between Reliability Engineer vs Maintenance Engineer?

AspectReliability EngineerMaintenance Engineer
CredentialsTypically requires engineering degree, certifications in reliability or asset managementOften requires engineering or technical diploma, certifications in maintenance or equipment repair
Work EnvironmentFocuses on analysis, design, and improvement of systems for reliabilityHands-on maintenance, repair, and troubleshooting of equipment
Industry UsageCommon in manufacturing, energy, aerospace, and industrial sectorsPrevalent in manufacturing, facilities, and industrial plants

Reliability Engineers focus on designing and improving systems to prevent failures, using data analysis and modeling. Maintenance Engineers perform hands-on repairs and upkeep of equipment to ensure operational continuity. While both roles aim to optimize equipment performance, Reliability Engineers work proactively on system reliability, whereas Maintenance Engineers handle reactive and scheduled maintenance tasks.

Are reliability engineers in demand?

Reliability engineers are in high demand across industries such as manufacturing, energy, and aerospace due to their role in improving system performance and reducing downtime. Employers seek professionals with skills in data analysis, failure modes, and maintenance strategies, often requiring certifications like Certified Reliability Engineer (CRE). The job outlook is positive, with steady growth expected as companies prioritize operational efficiency and risk management.

How much do reliability engineers get paid?

Reliability engineers typically earn a median annual salary ranging from $70,000 to $110,000, depending on experience, location, and industry. Senior or specialized reliability engineers with certifications and advanced skills can earn higher salaries, often exceeding $120,000 annually.

What are the most commonly searched types of Reliability Engineer jobs in Beaumont, TX?

The most popular types of Reliability Engineer jobs in Beaumont, TX are:

What are popular job titles related to Reliability Engineer jobs in Beaumont, TX?

For Reliability Engineer jobs in Beaumont, TX, the most frequently searched job titles are:

What job categories do people searching Reliability Engineer jobs in Beaumont, TX look for?

The top searched job categories for Reliability Engineer jobs in Beaumont, TX are:

What cities near Beaumont, TX are hiring for Reliability Engineer jobs?

Cities near Beaumont, TX with the most Reliability Engineer job openings:

Infographic showing various Reliability Engineer job openings in Beaumont, TX as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $113,019 per year, or $54.3 per hour.

Sr. Instrumentation & Electrical Engineer Job

Arkema

Beaumont, TX

Full-time

Re-posted 5 days ago


Job description

Sr. Instrumentation & Electrical Engineer 

Arkema's Beaumont Plant is seeking an experienced Senior I&E Engineer to lead instrumentation and electrical engineering initiatives that support safe, reliable, and efficient plant operations. This role plays a key part in driving capital projects, supporting process control systems, improving electrical reliability, and providing technical leadership across the site.  

As a senior technical resource on-site, you will collaborate closely with Engineering, Reliability, Maintenance, Operations, and corporate teams to troubleshoot complex instrumentation and electrical issues, implement improvement projects, and optimize plant control systems. This position requires strong technical expertise in instrumentation, controls, electrical distribution systems, and project management, along with the ability to lead continuous improvement efforts and mentor developing engineers 

Key Responsibilities 

  • Lead I&E capital projects from design through construction, commissioning, and startup.  

  • Provide technical support and troubleshooting for instrumentation, analyzers, controls, PLCs, DCS, electrical systems, and plant utility assets.  

  • Drive reliability and continuous improvement initiatives through root cause investigations, performance analysis, and execution of reliability projects.  

  • Partner with Production, Maintenance, and Reliability teams to ensure safe, reliable, and efficient plant operations.  

  • Mentor and develop I&E personnel while supporting turnarounds, training, and site-wide technical initiatives. 

Minimum Qualifications 

  • Bachelor's Degree in Electrical Engineering required.  

  • Minimum of eight (8) years of experience in a manufacturing environment.  

  • Instrumentation project engineering and design experience required.  

  • Strong knowledge of instrumentation, process controls, electrical systems, and industrial troubleshooting.  

  • Experience supporting DCS and PLC-based control systems in a manufacturing environment preferred.  

  • Strong project management, analytical, and problem-solving skills. 

Why Join Arkema? 

Be part of a global leader in specialty materials where innovation, safety, and operational excellence guide everyday decisions. In this role, you'll lead impactful instrumentation and electrical engineering projects, provide critical technical support to manufacturing operations, and help ensure the reliability of essential plant systems. You'll collaborate with experienced professionals, expand your leadership capabilities, and play an important role in delivering safe, stable, and efficient plant performance.Â