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| | Reliability Engineering University - Sessie 4: Life Cycle Reliability Optimization - Bemas - Opleiding | |
Reliability Engineering University
Session 4 Datum: 30 november - 02 december 2010 Life Cycle Reliability Optimization In samenwerking met:

RELIABILITY ENGINEERING UNIVERSITY
BEMAS en GPAllied organiseren een complete opleiding over reliability engineering. Gedurende 4 sessies, telkens 3 dagen, leert u de nieuwste denkkaders en ziet u uitgewerkte casestudies. Dit alles gegeven door onderhoudsverantwoordelijken en betrouwbaarheidsexperts met een internationale naam.
Download hier het volledige programma.
SESSION 4: LIFE CYCLE RELIABILITY OPTIMALIZATION In sessie 4 leert u hoe u aan de hand van simulaties en statistische methodes toegepast op Reliability, het beheer van uw assets optimaliseert en zo nog beter in staat bent tot 'Maintenance decision making'.
Lesgever: Bill Keeter, Senior Technical Advisor at Allied Reliability. Participant will learn
- The important terms and definitions in reliability statistics
- How to apply basic statistics in the maintenance environment
- How to apply reliability statistics to improve asset management
-
Fundamental concepts of measuring variability
-
The characteristics of Normal, Weibull, and Exponential distributions
-
How to calculate and utilize MTBF as a reliability predictor
-
How to calculate and predict system reliability
-
How to use statistics for component replacement prior to wear-out failure
-
How to determine conditional failure probability
-
Introduction of the use of Monte Carlo simulation in Availability analyses
-
What is the LCC philosophy
-
Learn the steps for performing a LCC analysis
-
How to calculate net present value (NPV)
-
How to quantify reliability engineering activity into financial terms
-
Components of Human Factors Engineering in reliability
-
How to leverage the knowledge of the crafts personnel in building work procedures
-
How to make work procedures clear, concise, quantifiable and repeatable
-
How to utilize the LEAN concepts of the visual workplace to increase human performance
-
The use and importance of FRACAS (Failure Reporting)
Course outline
|
Reliability Engineering Fundamentals
- Reliability Engineers vs. Maintenance Engineering
- The Engineered Maintenance Strategy
Reliability Statistics
- Mean, Median and Mode
- Standard Deviation
- Linear Regression
- MTBF and MTTF
- Reliability Predictions
- Basis System Analysis
- Weibull Calculations
Life Cycle Cost Analysis
- LCC Philosophy and Benefits
- Financial Statements
- The Cost of Money
- ROI & ROA
- Life Cycle Cost Calculations
Failure Modes and Effects and Criticality Analysis (FMECA) - continues
- Different TYpes of FMECAS
- Functions - Primary and Secondary
- Functional Failures & Hidden Failures
- Failure Modes
- Effects
- Criticality
Weibull Analysis
- Introduction
- Definition of Reliability
- Weibull Shapes
- Maintenance Tactics
- Understanding Failure Distributions
- Weibull in Complex Systems
- Weibayes
|
RCM with Monte Carlo Simulation
- Exercises using RCM and Monte Carlo Simulations
Availability Simulation
- Reliability Block Diagrams
- Series and Parallel Systems
- Management Considerations
- System Complexity
- Simulation Benefits
Human Factors Engineering
- Procedures Based Maintenance
- Basic Job Mapping
- Introduction to Work Procedures
Reliability Centered Design (RDC)
- Purpose of RCD
- Importance of RCD
- RCD Process
- RCD FMEA
- Ramifications of RCD
Setting up a Reliability Program: Failure Reporting, Analysis and Corrective Action System (FRACAS)
- Policies and Procedures
- Basic Elements
- Failiure Reporting
- Roles and Responsibilities
- Analysis Methods
- Database Elements
|
RELIABILITY UNIVERSITY SESSIES
The Reliability Engineering University presenteert volgende 4 sessies:
- Sessie 2 (4-6 mei 2010)
Finding and Eliminating Root Causes of Failure meer info
- Sessie 3 (7-9 september 2010)
Best in Class Inspection & Condition Monitoring Practices for Improving Asset Health meer info
- Sessie 4 (30 november - 2 december 2010)
Life Cycle Reliability Optimization
- Sessie 1bis (22-24 maart 2011)
The Basics of Equipment Reliability meer info
PRAKTISCHE INFO
Deelname: € 1.995,- *
€ 1.820,- * voor BEMAS-leden
Taal: Engels
De deelname prijs is voor de 3-daagse sessie. Cursusmateriaal en lunches zijn inbegrepen. Hotel en diner zijn niet inbegrepen.
* Prijzen excl. 21% BTW.
Schrijf u nu in !
Bekijk het volledige programma hier.
| |
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| | |
| | Reliability Engineering University - Sessie 4: Life Cycle Reliability Optimization - Bemas - Opleiding | |
Reliability Engineering University
Session 4 Datum: 30 november - 02 december 2010 Life Cycle Reliability Optimization In samenwerking met:

RELIABILITY ENGINEERING UNIVERSITY
BEMAS en GPAllied organiseren een complete opleiding over reliability engineering. Gedurende 4 sessies, telkens 3 dagen, leert u de nieuwste denkkaders en ziet u uitgewerkte casestudies. Dit alles gegeven door onderhoudsverantwoordelijken en betrouwbaarheidsexperts met een internationale naam.
Download hier het volledige programma.
SESSION 4: LIFE CYCLE RELIABILITY OPTIMALIZATION In sessie 4 leert u hoe u aan de hand van simulaties en statistische methodes toegepast op Reliability, het beheer van uw assets optimaliseert en zo nog beter in staat bent tot 'Maintenance decision making'.
Lesgever: Bill Keeter, Senior Technical Advisor at Allied Reliability. Participant will learn
- The important terms and definitions in reliability statistics
- How to apply basic statistics in the maintenance environment
- How to apply reliability statistics to improve asset management
-
Fundamental concepts of measuring variability
-
The characteristics of Normal, Weibull, and Exponential distributions
-
How to calculate and utilize MTBF as a reliability predictor
-
How to calculate and predict system reliability
-
How to use statistics for component replacement prior to wear-out failure
-
How to determine conditional failure probability
-
Introduction of the use of Monte Carlo simulation in Availability analyses
-
What is the LCC philosophy
-
Learn the steps for performing a LCC analysis
-
How to calculate net present value (NPV)
-
How to quantify reliability engineering activity into financial terms
-
Components of Human Factors Engineering in reliability
-
How to leverage the knowledge of the crafts personnel in building work procedures
-
How to make work procedures clear, concise, quantifiable and repeatable
-
How to utilize the LEAN concepts of the visual workplace to increase human performance
-
The use and importance of FRACAS (Failure Reporting)
Course outline
|
Reliability Engineering Fundamentals
- Reliability Engineers vs. Maintenance Engineering
- The Engineered Maintenance Strategy
Reliability Statistics
- Mean, Median and Mode
- Standard Deviation
- Linear Regression
- MTBF and MTTF
- Reliability Predictions
- Basis System Analysis
- Weibull Calculations
Life Cycle Cost Analysis
- LCC Philosophy and Benefits
- Financial Statements
- The Cost of Money
- ROI & ROA
- Life Cycle Cost Calculations
Failure Modes and Effects and Criticality Analysis (FMECA) - continues
- Different TYpes of FMECAS
- Functions - Primary and Secondary
- Functional Failures & Hidden Failures
- Failure Modes
- Effects
- Criticality
Weibull Analysis
- Introduction
- Definition of Reliability
- Weibull Shapes
- Maintenance Tactics
- Understanding Failure Distributions
- Weibull in Complex Systems
- Weibayes
|
RCM with Monte Carlo Simulation
- Exercises using RCM and Monte Carlo Simulations
Availability Simulation
- Reliability Block Diagrams
- Series and Parallel Systems
- Management Considerations
- System Complexity
- Simulation Benefits
Human Factors Engineering
- Procedures Based Maintenance
- Basic Job Mapping
- Introduction to Work Procedures
Reliability Centered Design (RDC)
- Purpose of RCD
- Importance of RCD
- RCD Process
- RCD FMEA
- Ramifications of RCD
Setting up a Reliability Program: Failure Reporting, Analysis and Corrective Action System (FRACAS)
- Policies and Procedures
- Basic Elements
- Failiure Reporting
- Roles and Responsibilities
- Analysis Methods
- Database Elements
|
RELIABILITY UNIVERSITY SESSIES
The Reliability Engineering University presenteert volgende 4 sessies:
- Sessie 2 (4-6 mei 2010)
Finding and Eliminating Root Causes of Failure meer info
- Sessie 3 (7-9 september 2010)
Best in Class Inspection & Condition Monitoring Practices for Improving Asset Health meer info
- Sessie 4 (30 november - 2 december 2010)
Life Cycle Reliability Optimization
- Sessie 1bis (22-24 maart 2011)
The Basics of Equipment Reliability meer info
PRAKTISCHE INFO
Deelname: € 1.995,- *
€ 1.820,- * voor BEMAS-leden
Taal: Engels
De deelname prijs is voor de 3-daagse sessie. Cursusmateriaal en lunches zijn inbegrepen. Hotel en diner zijn niet inbegrepen.
* Prijzen excl. 21% BTW.
Schrijf u nu in !
Bekijk het volledige programma hier.
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