Strategic Procurement, Logistics, and Supply Chain Excellence Italy

Reliability-Centred Maintenance Training Course

Reliability-centred maintenance is a structured method for deciding which maintenance tasks actually protect function, reduce failure consequences, and justify cost in real operating assets. It is commonly applied through the seven questions of RCM and supported by tools such as FMEA and decision logic trees, while modern maintenance teams also face pressure from CMMS data quality gaps, automation, and the growing use of predictive analytics. Reliability-centred maintenance is a disciplined approach to selecting maintenance tasks based on asset functions, functional failures, failure consequences, and task effectiveness. It enables professionals to identify critical failure modes, choose preventive or condition-based actions, and produce defensible maintenance plans.

This advanced 5-day course is designed for reliability engineers, maintenance planners, asset integrity specialists, maintenance managers, and plant engineers who need to turn unreliable equipment performance into a clear RCM worksheet, task hierarchy, and execution roadmap. You will leave with practical outputs such as an asset criticality screen, FMEA worksheet, maintenance task selection matrix, and implementation plan that you can adapt to your own plant or fleet.

Duration
5 Days
Duration
Certificate
Certificate
Included
Delivery
Instructor-Led
Delivery
Level
Advanced
Level
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Live Online Training

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Starts
Ends
Weekend (4 Wks)
USD 850
Starts
Ends
Mon - Fri (5 Days)
USD 850
Starts
Ends
Weekend (4 Wks)
USD 850
Starts
Ends
Mon - Fri (5 Days)
USD 850
Starts
Ends
Mon - Fri (5 Days)
USD 850
Starts
Ends
Mon - Fri (5 Days)
USD 850
Starts
Ends
Mon - Fri (5 Days)
USD 850

Classroom Training

In-person sessions at premier locations

Nairobi Kenya
Mon - Fri
5 Days
USD 1,600
Kigali Rwanda
Mon - Fri
5 Days
USD 1,900
Dubai United Arab Emirates (UAE)
Mon - Fri
5 Days
USD 4,100
Zanzibar Tanzania
Mon - Fri
5 Days
USD 2,400
Customized Content
Team Training
Flexible Dates

In-person training at our premier venues — pick a city and date that works for you.

Location Duration Fee Language
Nairobi, Kenya Mon - Fri (5 Days) USD 1,600 English See dates & reserve →
Kigali, Rwanda Mon - Fri (5 Days) USD 1,900 English See dates & reserve →
Dubai, United Arab Emirates (UAE) Mon - Fri (5 Days) USD 4,100 English See dates & reserve →
Zanzibar, Tanzania Mon - Fri (5 Days) USD 2,400 English See dates & reserve →
Abuja, Nigeria Mon - Fri (5 Days) USD 2,800 English See dates & reserve →
Addis Ababa, Ethiopia Mon - Fri (5 Days) USD 2,400 English See dates & reserve →
Mombasa, Kenya Mon - Fri (5 Days) USD 1,700 English See dates & reserve →
Cape Town, South Africa Mon - Fri (5 Days) USD 3,900 English See dates & reserve →
Johannesburg, South Africa Mon - Fri (5 Days) USD 3,500 English See dates & reserve →
Kampala, Uganda Mon - Fri (5 Days) USD 1,900 English See dates & reserve →
Pretoria, South Africa Mon - Fri (5 Days) USD 3,300 English See dates & reserve →
Lagos, Nigeria Mon - Fri (5 Days) USD 2,500 English See dates & reserve →
Arusha, Tanzania Mon - Fri (5 Days) USD 2,000 English See dates & reserve →
Dar es Salaam, Tanzania Mon - Fri (5 Days) USD 1,900 English See dates & reserve →
Accra, Ghana Mon - Fri (5 Days) USD 3,800 English See dates & reserve →
Bangalore, India Mon - Fri (5 Days) USD 4,200 English See dates & reserve →
Muscat, Oman Mon - Fri (5 Days) USD 4,300 English See dates & reserve →
Naivasha, Kenya Mon - Fri (5 Days) USD 1,700 English See dates & reserve →

Live, instructor-led sessions you can join from anywhere — pick the next start date below.

Code Start Date End Date Duration Fee
RCM-02 Weekend (4 Weeks) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Mon - Fri (5 Days) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Weekend (4 Weeks) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Mon - Fri (5 Days) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Mon - Fri (5 Days) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Mon - Fri (5 Days) USD 850 Reserve my seat → Reserve team seats →
RCM-02 Mon - Fri (5 Days) USD 850 Reserve my seat → Reserve team seats →

Our instructor comes to your office — same curriculum and accredited certificate, with case studies built around the work your team actually does.

Team Training

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Content tailored to your industry, tools, and specific business challenges

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Save on travel & accommodation costs when training multiple employees

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Choose dates that work best for your team's availability and projects

How It Works
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About the Course

Organizations invest in maintenance because they need results they can prove in asset availability, failure consequence control, and lifecycle cost discipline. In reliability-centred maintenance, those results must stand up to FMEA logic, the seven RCM questions, and the operational reality of maintenance execution. You need to demonstrate asset function analysis, failure mode identification, task selection, consequence evaluation, and maintainability judgement, not just general maintenance awareness.

This course turns scattered maintenance knowledge into a structured RCM system you can apply to real equipment. You will develop capability in functional block diagrams, failure modes and effects analysis, RCM decision logic, PM optimisation, condition-based maintenance selection, CMMS task structuring, criticality ranking, and implementation planning. In practical terms, you will learn how to build an RCM worksheet, complete a failure modes and effects analysis, and create a defensible maintenance task strategy for selected equipment. You will practice the core methods hands-on, while more advanced topics such as predictive analytics integration and reliability-centred maintenance governance will be introduced at operational level rather than treated as full engineering design work.

Asset-intensive operations rarely have ideal data, unlimited shutdown windows, or spare engineering capacity. You will see how to apply reliability-centred maintenance when failure history is incomplete, maintenance budgets are constrained, and production priorities compete with reliability objectives. This course is built for professionals who must deliver credible decisions under those conditions and explain them clearly to operations, engineering, and leadership stakeholders.


Target Audience

This course is designed for professionals who already work with maintenance strategy, equipment reliability, or asset performance decisions and need a sharper RCM method for real operations.

  • Reliability Engineers managing functional failure analysis and task selection
  • Maintenance Managers overseeing RCM reviews and maintenance strategy
  • Asset Integrity Engineers linking failure consequences to maintenance controls
  • Maintenance Planners building CMMS task plans from RCM outputs
  • Plant Engineers evaluating equipment functions and performance standards
  • Condition Monitoring Specialists interpreting inspection and predictive data
  • Rotating Equipment Engineers analysing failure modes and maintenance intervals
  • Production Supervisors balancing uptime needs with maintenance shutdown windows
  • RCM Facilitators structuring workshops and decision logic sessions
  • Operations and Maintenance Leaders reporting reliability risks to executives

Course Objectives

This course equips you to plan, execute, and measure reliability-centred maintenance initiatives that improve asset availability, control failure consequences, and strengthen maintenance governance.

  • Assess equipment criticality using the RCM seven questions and FMEA logic.
  • Apply functional failure analysis to identify dominant failure modes and consequences.
  • Design an RCM worksheet and decision logic tree for selected assets.
  • Build a maintenance task selection matrix using PM, CBM, and run-to-failure options.
  • Evaluate maintenance strategies against SAE JA1011-aligned RCM criteria and risk.
  • Navigate operations, maintenance, and engineering input for defensible task decisions.
  • Implement CMMS-ready task structures and KPI measures such as MTBF and downtime.
  • Synthesize findings into an RCM review report and implementation roadmap.

Requirements & Prerequisites

Prerequisites required: working knowledge of industrial maintenance, equipment operations, or asset management; familiarity with failure data, maintenance work orders, or maintenance planning is strongly recommended. This is an advanced course, so you should already work with plant equipment, reliability data, or maintenance strategy decisions. No coding is required. Participants should bring a laptop for spreadsheet-based exercises and be prepared to review sample CMMS extracts, failure logs, and maintenance task records.


Local Application and Business Return in Italy

How participants can apply the training in local operating conditions, and the return their organisation can plan for.

How participants apply this

Participants apply this course by reviewing the critical assets in their plant or fleet, defining functions and functional failures, and building an RCM worksheet that ranks failure modes by consequence. They then translate that analysis into preventive, predictive, or run-to-failure tasks with clear intervals, ownership, and work instructions. In practice, this helps maintenance planners refine PM schedules, reliability engineers focus on the highest-risk failure modes, and managers defend maintenance budgets with a clearer logic. For Italian sites with mixed legacy equipment and newer automation, the course helps separate routine work from interventions that actually improve availability.

Expected ROI

Within 6–12 months, organisations typically see a more rational PM programme, fewer low-value tasks, and better prioritisation of labour and spare parts. The strongest gains usually come from reducing repeated failures on critical assets, cutting avoidable planned downtime, and improving planning quality. Teams also gain a cleaner basis for capital-versus-maintenance decisions because RCM makes the consequence of failure more explicit. Where maintenance history is poor, a secondary benefit is better data discipline, which improves future reliability decisions.

Training Methodology

This is a practical, outcome-driven course designed to turn reliability-centred maintenance aspiration into measurable action and credible reporting.

Methodology includes:

  • Calculate maintenance priority using MTBF, downtime, and criticality data from sample asset registers.
  • Simulate an RCM review for a production asset under outage and budget constraints.
  • Assess equipment using the SAE JA1011 seven-question logic and a failure mode checklist.
  • Map operations, maintenance, and engineering approval points for an RCM recommendation workflow.
  • Analyse case patterns from oil and gas, power generation, manufacturing, and mining.
  • Develop an RCM worksheet and maintenance task selection matrix in workshop time.
  • Challenge current PM routines against failure evidence, CMMS history, and consequence benchmarks.

Upcoming Sessions

Next available dates worldwide

Virtual

(Zoom) Training
USD 850
29th Jun-3rd Jul 2026

Nairobi

Kenya
USD 1,600
6th Jul-10th Jul 2026

Kigali

Rwanda
USD 1,900
29th Jun-3rd Jul 2026

Dubai

United Arab Emirates (UAE)
USD 4,100
29th Jun-3rd Jul 2026

Abuja

Nigeria
USD 2,800
29th Jun-3rd Jul 2026

Zanzibar

Tanzania
USD 2,400
13th Jul-17th Jul 2026

Addis Ababa

Ethiopia
USD 2,400
27th Jul-31st Jul 2026

Mombasa

Kenya
USD 1,700
20th Jul-24th Jul 2026

Cape Town

South Africa
USD 3,900
13th Jul-17th Jul 2026

Johannesburg

South Africa
USD 3,500
6th Jul-10th Jul 2026

Pretoria

South Africa
USD 3,300
29th Jun-3rd Jul 2026

Kampala

Uganda
USD 1,900
27th Jul-31st Jul 2026

Lagos

Nigeria
USD 2,500
6th Jul-10th Jul 2026

Certification

Recognized credentials that advance your career

Participants who complete the Reliability-Centred Maintenance Training Program earn a Trainingcred Certificate of Achievement, demonstrating professional competence and alignment with global standards in learning and development.

NITA Accredited

Accredited by the National Industrial Training Authority, ensuring programs meet nationally recognized standards of quality and relevance.

CPD Certified

Recognized by the CPD Certification Service, ensuring every program meets internationally benchmarked standards of professional excellence.

Why this course earns its place on your CV

Accredited training, practitioner trainers, and peers on the same career track — the three things real expertise is built on.

Effective Learning & Skill Development

  • Build expertise with structured, outcome-driven learning.
  • Equip individuals and teams with skills that grow with industry needs.
  • Reinforce learning through real-world scenarios, case studies and practical exercises.

Career Growth & Professional Advancement

  • Apply what you learn with a proven methodology that ensures lasting impact.
  • Develop immediately usable skills that translate directly into workplace success.
  • Gain the expertise needed for career advancement and leadership roles.

Training Optimization & Learning Excellence

  • Tailor training to industry-specific challenges and organizational goals.
  • Use data-driven insights and automation to enhance training effectiveness.
  • Evaluate progress and ensure long-term learning success.

Tools and platforms relevant to this field

Examples Italy teams may encounter, and that may be featured in training where they support the confirmed course scope.

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These are field-relevant examples, not a promise that every tool will be covered. Exact coverage depends on the confirmed course scope, participant needs, and delivery format.

  • SAP S/4HANA SAP
    Used by maintenance and asset-management teams to connect work orders, equipment history, and planning data that support RCM analysis and task prioritisation.
  • IBM Maximo Application Suite IBM
    Used to manage asset histories, failure records, inspections, and preventive work packages that can feed RCM worksheets and maintenance task hierarchies.
  • Microsoft Power BI Microsoft
    Used to visualise failure trends, downtime, maintenance backlogs, and criticality screens so RCM findings can be communicated to operations and leadership.

Real Results from Real Professionals

Thousands of professionals have transformed their careers through our training programs. Now, it's your turn.

Local market advisory

Course relevance for Italy

A country-specific view of market pressure, regulatory context, and practical business return behind this training.

  • Market context
  • Regulatory fit
  • Business application

Why this course matters in Italy

A market-specific advisory on the operating pressures this course helps teams address.

Reliability-centred maintenance matters in Italy because industrial operators need to protect uptime, safety, and cost discipline while moving away from calendar-based maintenance toward evidence-based task selection. The course is especially relevant for maintenance, reliability, and asset-integrity teams in manufacturing, utilities, transport, and process industries that run high-value equipment and face pressure to justify every maintenance action. It helps leaders decide which failures warrant preventive work, which should be monitored conditionally, and which can be accepted, so maintenance spend is directed to assets that truly affect operations.
Task selection must be defensible

RCM’s seven-question logic is directly relevant to Italian plants that need to document why a task exists, because every task should be linked to a functional failure and the consequence it prevents.

Condition-based work is increasingly valuable

Where equipment condition data is available, the course supports a shift from fixed-interval maintenance to condition-based or predictive actions, which is useful for firms trying to reduce unnecessary interventions and downtime.

Maintenance data quality affects ROI

Italian teams using CMMS or reliability dashboards need cleaner failure coding and better work-order discipline, because weak history data undermines FMEA quality, task selection, and the credibility of maintenance decisions.

This training is timely because Italian asset-intensive sectors continue to depend on tighter maintenance planning, better reliability analysis, and stronger justification for maintenance spend. It is also useful where teams are digitising maintenance workflows and want to turn equipment history into a practical RCM worksheet rather than a static record.

Regulatory context in Italy

The local regulators, laws, and frameworks shaping this discipline, with the curriculum mapped to what teams need to know.

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Regulators

  • MIMIT Relevant where maintenance strategy affects industrial operations, engineering standards, and productivity in Italian manufacturing and process sectors.
  • INAIL Important for maintenance programmes that influence worker safety, machine guarding, inspection discipline, and accident prevention.
  • MASE Relevant where equipment reliability affects environmental performance, emissions control, and safe operation of industrial assets.

Frameworks the course aligns with

  • 01 Decreto Legislativo 9 aprile 2008, n. 81 · 2008
  • 02 Decreto Legislativo 3 aprile 2006, n. 152 · 2006
  • 03 Decreto Legislativo 26 giugno 2015, n. 105 · 2015

Frequently Asked Questions

Got questions? We've gathered the answers to common queries to help you feel confident and informed.

No. RCM is most visible in large plants, but the same logic works for fleets, utilities, logistics assets, and any operation where failure consequences justify disciplined task selection. The method scales to the size of the asset base as long as the team can define functions, failures, and consequences clearly.

Good data helps, but it is not a prerequisite. Teams can begin with engineering knowledge, failure workshops, and historical work orders, then improve the data structure as the RCM programme matures. Better CMMS coding usually becomes one of the first implementation actions after training.

Preventive maintenance is one possible output of RCM, not the whole method. RCM decides whether the right response is preventive, condition-based, redesign, inspection, or run-to-failure based on the asset function and failure consequence.

They should leave with a practical asset criticality screen, an FMEA-style failure analysis, a task selection matrix, and an implementation roadmap. Those outputs are designed to move the organisation from theory to a usable maintenance plan.

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