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Reliability Engineer Jobs in Spring, TX (NOW HIRING)

Reliability Engineer-US Remote (East)

Houston, TX · On-site +1

$97K - $123K/yr

Network Reliability Engineer | Plant Reliability Engineer | Maintenance & Reliability Engineer The Reliability Engineer is an individual contributor on a centralized reliability team supporting a ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Risk Technology team, you will solve complex and broad business problems with simple and straightforward ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Corporate Know Your Customer (KYC) team, you will solve complex and broad business problems with simple and ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Risk Technology team, you will solve complex and broad business problems with simple and straightforward ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Corporate Know Your Customer (KYC) team, you will solve complex and broad business problems with simple and ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Risk Technology team, you will solve complex and broad business problems with simple and straightforward ...

Site Reliability Engineer III

Houston, TX · On-site

$54.50 - $72.25/hr

As a Site Reliability Engineer III at JPMorgan Chase within the Corporate Technology, Corporate Know Your Customer (KYC) team, you will solve complex and broad business problems with simple and ...

Site Reliability Engineer

Houston, TX · On-site

$52.75 - $70.25/hr

Collaborate with Level 2 Site Reliability Engineering teams offshore as well as Level 1 on and offshore management. * Complete RCA on critical and high impact issues to reduce and ultimately ...

Site Reliability Engineer

Houston, TX · On-site

$55.25 - $73.50/hr

As a Site Reliability Engineer, you will be responsible for: Operational Excellence & Incident Management - Maintain and monitor production systems for availability, latency, and performance. - Lead ...

Site Reliability Engineer

Houston, TX · On-site

$55.25 - $73.50/hr

As a Site Reliability Engineer, you will be responsible for: Operational Excellence & Incident Management - Maintain and monitor production systems for availability, latency, and performance. - Lead ...

Site Reliability Engineer

Houston, TX · On-site

$55.25 - $73.50/hr

As a Site Reliability Engineer, you will be responsible for: Operational Excellence & Incident Management - Maintain and monitor production systems for availability, latency, and performance. - Lead ...

Senior Site Reliability Engineer NEX

Houston, TX · On-site

$54.50 - $72.25/hr

Reliability Engineering Design, implement, and operate scalable, resilient, and highly available systems on Google Cloud Platform. Improve service availability, latency, performance, scalability, and ...

Showing results 41-60

Reliability Engineer information

See Spring, TX salary details

$54.3K

$105K

$125.5K

How much do reliability engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for reliability engineer in Spring, TX is $104,983.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,200.00 and $114,800.00 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 Spring, TX?

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

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

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

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

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

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

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

Infographic showing various Reliability Engineer job openings in Spring, TX as of August 2026, with employment types broken down into 91% Full Time, and 9% Contract. Highlights an 92% In-person, and 8% Remote job distribution, with an average salary of $104,983 per year, or $50.5 per hour.

Reliability Engineer-US Remote (East)

Houston, TX • On-site

$97K - $123K/yr

Full-time

Re-posted 4 days ago


Key responsibilities

  • Drive bad actor elimination and downtime reduction by analyzing failure data and focusing reliability efforts on the largest sources of unplanned downtime

  • Establish and maintain asset criticality rankings, facilitate cross-functional workshops, and prioritize maintenance strategies based on failure consequences

  • Lead root cause analysis and failure elimination efforts, including conducting FMEAs and developing lasting corrective actions


Job description

Company Overview
 

Imagine Everything. Build the Future with Hexion.

At Hexion, we push boundaries, rethink possibilities, and create real impact. We activate science to deliver progress—developing breakthrough solutions that strengthen industries, protect communities, and drive a more sustainable future.

This is where bold thinkers, problem-solvers, and innovators come together to shape what’s next. Whether you're engineering advanced materials, transforming manufacturing technologies, or leading strategic innovation, your ideas and actions leave a lasting mark. We cultivate an inclusive culture of growth, collaboration, and accountability, ensuring every contribution propels us forward.

We don’t follow the status quo—we challenge it, disrupt it, and improve it. Every role at Hexion is part of something bigger.

We invest in innovation, sustainability, and continuous development—equipping you with the tools, training, and opportunities to excel. With an unwavering commitment to safety, partnership, belonging, and impact, we empower you to lead change and strengthen industries worldwide.

Your Future Starts Here.  

If you’re ready to push limits, reimagine what’s possible, and create the extraordinary, Hexion is where you belong. 

Anything is possible when you imagine everything. 

Role Impact
 

Remote / Multi-Site – North America (Travel Required) 

Alternate Titles: Network Reliability Engineer | Plant Reliability Engineer | Maintenance & Reliability Engineer 

The Reliability Engineer is an individual contributor on a centralized reliability team supporting a network of small manufacturing plants across North America. This role drives the transition from reactive maintenance to a proactive, data-driven reliability culture by leading bad actor elimination, root cause analysis, and preventive/predictive maintenance improvement across multiple sites. 


This position directly contributes to reduced unplanned downtime and improved asset performance by identifying the top failure drivers at each site, facilitating root cause analysis, and embedding sustainable reliability practices into the maintenance work management process. The Reliability Engineer serves as a key point of technical leadership and cross-site learning — replicating proven solutions across the plant network to prevent recurring failures and closing the loop between reliability data and executed work. 

What You Will Do
 

Drive Bad Actor Elimination & Downtime Reduction 

  • Pull and review downtime, failure, and repeat-work data from each site to identify the top 3–5 bad actors by highest loss or repeat failure 
  • Focus reliability efforts on the largest sources of unplanned downtime, transitioning sites from reactive to controlled, planned maintenance 
  • Monitor the effectiveness of corrective actions and system modifications to confirm sustained reliability improvement 

Lead Asset Criticality Assessment & Ranking 

  • Establish and maintain an asset criticality register across the plant network, ranking equipment by the safety, environmental, operational, and financial consequences of failure 
  • Facilitate cross-functional criticality workshops with site operations, maintenance, and HSE to calibrate rankings and ensure a consistent, defensible standard across all sites 
  • Use criticality rankings to prioritize maintenance strategy, PM coverage, spare parts stocking, and bad actor focus — directing limited central resources to the highest-consequence assets first 
  • Periodically review and update criticality rankings as equipment, processes, and failure data change 

Lead Root Cause Analysis & Failure Elimination 

  • Lead or facilitate lightweight root cause analysis (RCA) for top bad actors and recurring failures 
  • Determine the failure mode — design, operation, maintenance practice, or PM gap — and develop lasting corrective actions 
  • Conduct Failure Mode and Effects Analysis (FMEA) to proactively identify and mitigate potential equipment failures before they occur 

Develop Preventive & Predictive Maintenance Strategies 

  • Audit PM compliance and lubrication routes per site; flag gaps and update PM frequencies based on failure data 
  • Lead lubrication excellence initiatives including lubrication strategy development, route optimization, contamination control, lubricant selection, storage and handling standards, lubrication PM optimization, and lubrication KPI tracking. 
  • Apply predictive and condition-based maintenance techniques (e.g., vibration analysis, thermal imaging, ultrasonic testing) to anticipate failures and extend asset life 
  • Apply Reliability-Centered Maintenance (RCM) principles to determine the optimal maintenance strategy for critical assets 

Translate Reliability Actions into Executable Work 

  • Assign corrective actions to the Site Reliability Owner or Local Work Owner and enter PM changes and job plan updates into the CMMS 
  • Feed bad actor corrective actions into the weekly scheduling backlog to close the loop from data to execution 
  • Maintain reliability data quality in the CMMS — asset hierarchy, failure codes, and work-order history — so criticality, bad actor, and KPI analysis rest on accurate data 
  • Participate in weekly planning and scheduling reviews to ensure reliability actions, bad actor corrective work, PM improvements, and failure elimination activities are properly prioritized, planned, and scheduled for execution. 

Drive Cross-Site Learning & Standardization 

  • Share repeat failure patterns across the plant network and replicate proven solutions to prevent recurrence at other sites 
  • Apply reliability engineering principles and best practices consistently across sites, projects, and processes 
  • Support standardization of reliability processes, tools, and the monthly reliability cadence across the network 

Build Site Reliability Capability & Culture 

  • Train and coach Site Reliability Owners, Local Work Owners, and technicians on reliability fundamentals — defect identification, basic equipment care, and quality failure reporting — building lasting capability at each site 
  • Champion the shift from reactive to proactive reliability, reinforcing planned-over-reactive work and data-driven decision-making across the network 
  • Promote operator-driven reliability and basic-care routines so frontline teams catch early warning signs before they become failures 

Track Performance & Report Results 

  • Monitor key reliability KPIs — Mean Time Between Failures (MTBF), Mean Time To Repair (MTTR), asset availability, planned vs. reactive work ratio, and repeat failure rate per site 
  • Apply statistical and life-data analysis (e.g., Pareto and Weibull) to quantify failure risk, set maintenance intervals, and prioritize improvement effort 
  • Report reliability trends and improvement results to Maintenance Managers and Corporate Leadership 
  • Establish and maintain data and records for tracking performance failures and improvement measures 

Support Asset Lifecycle & Continuous Improvement 

  • Support asset lifecycle management and life-cycle cost analysis to guide repair, replace, or redesign decisions 
  • Analyze maintenance data to optimize spare parts inventory for critical components while controlling cost 
  • Apply design-for-reliability principles to new installations and equipment modifications — setting reliability and maintainability specifications, supporting commissioning, and providing reliability input to the Management of Change (MOC) process 
  • Ensure reliability activities align with site safety, environmental, and regulatory standards 
What You Bring
 

Required Qualifications 

  • Bachelor’s degree in Mechanical, Electrical, Industrial, or a related Engineering discipline (or equivalent technical experience) 
  • Experience in reliability, maintenance, or engineering within an industrial or manufacturing environment 
  • Working knowledge of reliability methodologies — root cause analysis (RCA), FMEA, and preventive and predictive maintenance 
  • Experience using CMMS/EAM systems (e.g., SAP PM, Maximo, Infor) 
  • Strong analytical and problem-solving skills, with the ability to interpret failure and downtime data 
  • Strong communication and collaboration skills to work effectively across multiple sites and functions 
  • Willingness to travel across the plant network as required 

Preferred Qualifications 

  • Certified Maintenance & Reliability Professional (CMRP) or Certified Reliability Engineer (CRE) certification 
  • Experience with predictive/condition-monitoring technologies (vibration analysis, thermal imaging, ultrasonic testing) and lubrication programs 
  • Familiarity with Reliability-Centered Maintenance (RCM) and Total Productive Maintenance (TPM) 
  • Experience performing asset criticality assessments and risk-based prioritization 
  • Experience supporting multiple sites or a multi-plant network 
  • Proficiency with statistical analysis tools and reliability KPIs (MTBF, planned vs. reactive ratio, repeat failure rate) 
  • Experience leading cross-functional reliability or continuous improvement initiatives 
  • Experience developing training or capability-building programs for site maintenance and operations teams 
  • Familiarity with process safety management (PSM) and mechanical integrity requirements in a chemical or process manufacturing environment 
Legal & Employment Notices
 

We are an Equal Opportunity, Affirmative Action employer. All qualified applicants will receive consideration for employment without regard to gender, pregnancy, race, national origin, religion, age, sexual orientation, gender identity, veteran or military status, status as a qualified individual with a disability or any other characteristic protected by law.

To be considered for this position candidates are required to submit an application for employment through our career site and, be at least 18 years of age.  Any offer of employment will be conditioned upon successful completion of a drug test and background investigation, as well as authorization for the Company to conduct additional periodic background checks as required by the Chemical Facility Anti-Terrorism Standards (CFATS) or regulations adopted by the department of Homeland Security or other regulatory agencies. A prior criminal record is not an automatic bar to employment, and the Company will conduct an individualized assessment and reassessment, consistent with applicable law, prior to making any final employment decision. 

This job description outlines the general nature and key responsibilities of the role but is not intended to be an exhaustive list of all duties, responsibilities, or qualifications. Job duties may change based on business needs. Nothing in this job description creates a contract of employment, express or implied.