Unit of competency Outline
Date retreived
22/07/2026 9:06 AM AWST
22/07/2026 9:06 AM AWST
Whilst all efforts are made to provide accurate and timely information from the relevant source/documentation, please be aware that the information supplied may not be the most current version. The accuracy of the detail has not been confirmed by the Department and therefore should not be relied upon without first confirming the contents.
Adapt a proactive maintenance strategy for a seasonal or cyclical manufacturing operation
Adapt a proactive maintenance strategy for a seasonal or cyclical manufacturing operation
Unit of competency
National Code
MSACMT683A
MSACMT683A
State Code
W9033
W9033
TGA Status
Replaced
Replaced
DTWD Status
Replaced
Replaced
State Implementation and Classification
Approved Date
18/12/2009
Field of Education
030101 - Manufacturing Engineering
Original Release Date
18/12/2009
Nominal Hours
60
Description
This unit covers the knowledge and skills needed to develop a standard proactive maintenance strategy for a seasonal or cyclical manufacturing processes or similar.
Notes
Elements and Performance Criteria
1. Interpret proactive maintenance strategy
- 1.1. Analyse proactive maintenance strategy
- 1.2. Identify areas which may conflict with cyclical requirements
- 1.3. Identify critical conditions which must be met in order to maintain plant reliability until season end
- 1.4. Compile cycle requirements for proactive maintenance strategy
2. Identify cyclical requirements of the process
- 2.1. Establish when the season finishes and the expected cycle duration
- 2.2. Identify plant items and maintenance activities which production imperatives dictate can only be completed after season end
- 2.3. Identify critical conditions which must be met in order to maintain plant reliability until season end
- 2.4. Compile cycle requirements for proactive maintenance strategy
3. Identify maintenance requirements of ancillary equipment
- 3.1. Identify proactive maintenance requirements of ancillary equipment
- 3.2. Identify maintenance which can only be done at season end
- 3.3. Compile ancillary equipment requirements for proactive maintenance strategy
4. Identify maintenance requirements during season
- 4.1. Identify critical maintenance activities which must be done during season
- 4.2. Negotiate conflicts with cyclical manufacturing or processing requirements
- 4.3. Compile proactive maintenance strategy requirements during season
5. Adapt proactive maintenance strategy
- 5.1. Compare identified requirements to the proactive maintenance strategy
- 5.2. Negotiate a proactive maintenance strategy which meets these requirements
- 5.3. Involve team members in relating identified problems and opportunities for improvement to the maintenance strategy, and involve them in developing any required changes, to ensure awareness, learning and commitment
- 5.4. Monitor the implementation of the strategy to ensure the identified requirements are met
- 5.5. Make required adjustments and arrange review schedule
RANGE STATEMENT
The range statement relates to the unit of competency as a whole. It allows for different work environments and situations that may affect performance. Bold italicised wording, if used in the performance criteria, is detailed below. Essential operating conditions that may be present with training and assessment (depending on the work situation, needs of the candidate, accessibility of the item, and local industry and regional contexts) may also be included.
Competitive manufacturing
Competitive manufacturing is used to describe the range of systemic manufacturing practice concepts and approaches. It covers but is not limited to:
lean manufacturing
agile manufacturing
preventative and predictive maintenance approaches
monitoring and data gathering systems such as Systems control and data acquisition software (SCADA), enterprise resource planning systems (ERP), Manufacturing resource planning (MRP), and proprietary systems such as SAP
statistical process control systems including six sigma and three sigma
Just In Time (JIT), kanban and other pull related manufacturing control systems
supply, value, and demand chain monitoring and analysis
other continuous improvement systems
Competitive manufacturing should be interpreted so as to take into account the stage of implementation of competitive manufacturing approaches, the enterprise's size and work organisation, culture, regulatory environment and manufacturing sector.
Critical conditions
Critical conditions are those factors which must be undertaken or determined in order to maintain plant reliability during processing season. These may include:
maximum load factors
lubrication schedules
correct operating temperatures
cleaning and waste removal schedules
equipment inspection and test schedules
development of standard operating procedures and training of operators
Ancillary equipment
Ancillary equipment includes other plant such as boilers, utilities plants, waste treatment and hazard control equipment includes equipment such as fire ring mains, fire monitors, steam curtains, gas (or other loss of containment) monitors, blast protection and flare stacks.
Strategies and techniques may include:
Total Productive Maintenance (TPM)
Reliability Centred Maintenance (RCM)
Root Cause Analysis (RCA)
Mean Time Between Failures (MBTF)
Failure Mode and Effects Analysis (FMEA)
Condition monitoring
Total Preventative Maintenance/Total Productive Maintenance (TPM) is an application of total quality management to maintenance with the intention of increasing reliability, getting it right first time and increasing OEE.
Reliability Centred Maintenance (RCM) moves maintenance from reactive, or even planned/programmed towards a focus on uptime and OEE.
RCA There are many possible causes of any problem. Eliminating some will have no impact, others will ameliorate the problem. However elimination of the root cause will eliminate the problem. There should only be one root cause for any problem and so the analysis should continue until this one cause is found. Elimination of the root cause permanently eliminates the problem.
Uptime refers to the overall availability of the plant - it is the inverse of downtime - or the unavailability of the plant. Ideal uptime is 100%.
Overall equipment efficiency (OEE) is the combination of the main factors causing loss of productive capacity from equipment/plant and is where:
OEE = availability x performance x quality rate
availability takes into account losses due to breakdown, set up and adjustments
performance takes into account losses due to minor stoppages, reduced speed and idling
quality rate takes into account t losses due to rejects, reworks and start up waste
Mean time between failure (MBTF) is one key measure of the effectiveness of a maintenance procedure, and is an indicator as to whether root causes are being found and resolved. If MBTF is reducing, then it is an indicator that the maintenance regime is failing.
Failure Mode and Effects Analysis (FMEA) is a systematic approach that identifies potential failure modes in a system, product, or manufacturing / assembly operation caused by either design or manufacturing / assembly process deficiencies. It also identifies critical or significant design or process characteristics that require special controls to prevent or detect failure modes. FMEA is a tool used to prevent problems from occurring.
Some industry sectors have highly adapted forms of FMEA and may practice traditional FMEA in say their routine maintenance while using another technique (such as HAZOP) for design and modification.
Hazard and Operability Studies (HAZOP) is a form of FMEA which has been practiced by the process industries for over 30 years and examines the implications of changes in process conditions to process stability.
Condition monitoring involves often quite sophisticated monitoring of equipment including such things as vibration monitoring, instrumental analysis of lubricating oil etc to determine the current state of the equipment, monitor the change in this condition and predict when it needs servicing/maintenance to maintain reliability.
The range statement relates to the unit of competency as a whole. It allows for different work environments and situations that may affect performance. Bold italicised wording, if used in the performance criteria, is detailed below. Essential operating conditions that may be present with training and assessment (depending on the work situation, needs of the candidate, accessibility of the item, and local industry and regional contexts) may also be included.
Competitive manufacturing
Competitive manufacturing is used to describe the range of systemic manufacturing practice concepts and approaches. It covers but is not limited to:
lean manufacturing
agile manufacturing
preventative and predictive maintenance approaches
monitoring and data gathering systems such as Systems control and data acquisition software (SCADA), enterprise resource planning systems (ERP), Manufacturing resource planning (MRP), and proprietary systems such as SAP
statistical process control systems including six sigma and three sigma
Just In Time (JIT), kanban and other pull related manufacturing control systems
supply, value, and demand chain monitoring and analysis
other continuous improvement systems
Competitive manufacturing should be interpreted so as to take into account the stage of implementation of competitive manufacturing approaches, the enterprise's size and work organisation, culture, regulatory environment and manufacturing sector.
Critical conditions
Critical conditions are those factors which must be undertaken or determined in order to maintain plant reliability during processing season. These may include:
maximum load factors
lubrication schedules
correct operating temperatures
cleaning and waste removal schedules
equipment inspection and test schedules
development of standard operating procedures and training of operators
Ancillary equipment
Ancillary equipment includes other plant such as boilers, utilities plants, waste treatment and hazard control equipment includes equipment such as fire ring mains, fire monitors, steam curtains, gas (or other loss of containment) monitors, blast protection and flare stacks.
Strategies and techniques may include:
Total Productive Maintenance (TPM)
Reliability Centred Maintenance (RCM)
Root Cause Analysis (RCA)
Mean Time Between Failures (MBTF)
Failure Mode and Effects Analysis (FMEA)
Condition monitoring
Total Preventative Maintenance/Total Productive Maintenance (TPM) is an application of total quality management to maintenance with the intention of increasing reliability, getting it right first time and increasing OEE.
Reliability Centred Maintenance (RCM) moves maintenance from reactive, or even planned/programmed towards a focus on uptime and OEE.
RCA There are many possible causes of any problem. Eliminating some will have no impact, others will ameliorate the problem. However elimination of the root cause will eliminate the problem. There should only be one root cause for any problem and so the analysis should continue until this one cause is found. Elimination of the root cause permanently eliminates the problem.
Uptime refers to the overall availability of the plant - it is the inverse of downtime - or the unavailability of the plant. Ideal uptime is 100%.
Overall equipment efficiency (OEE) is the combination of the main factors causing loss of productive capacity from equipment/plant and is where:
OEE = availability x performance x quality rate
availability takes into account losses due to breakdown, set up and adjustments
performance takes into account losses due to minor stoppages, reduced speed and idling
quality rate takes into account t losses due to rejects, reworks and start up waste
Mean time between failure (MBTF) is one key measure of the effectiveness of a maintenance procedure, and is an indicator as to whether root causes are being found and resolved. If MBTF is reducing, then it is an indicator that the maintenance regime is failing.
Failure Mode and Effects Analysis (FMEA) is a systematic approach that identifies potential failure modes in a system, product, or manufacturing / assembly operation caused by either design or manufacturing / assembly process deficiencies. It also identifies critical or significant design or process characteristics that require special controls to prevent or detect failure modes. FMEA is a tool used to prevent problems from occurring.
Some industry sectors have highly adapted forms of FMEA and may practice traditional FMEA in say their routine maintenance while using another technique (such as HAZOP) for design and modification.
Hazard and Operability Studies (HAZOP) is a form of FMEA which has been practiced by the process industries for over 30 years and examines the implications of changes in process conditions to process stability.
Condition monitoring involves often quite sophisticated monitoring of equipment including such things as vibration monitoring, instrumental analysis of lubricating oil etc to determine the current state of the equipment, monitor the change in this condition and predict when it needs servicing/maintenance to maintain reliability.
EVIDENCE GUIDE
The Evidence Guide describes the underpinning knowledge and skills that must be demonstrated to prove competence. it is essential for assessment and must be read in conjunction with the performance criteria, the range statement and the assessment guidelines of the relevant training package.
Overview of assessment requirements
The person will be able to select appropriate strategies, techniques and tools and adapt them to the organisation's needs. They will also be able to apply the strategies to new areas and improve their operation in existing areas.
What critical aspects of evidence is required to demonstrate competency in this unit?
Evidence of a functioning proactive maintenance strategy is required.
In what context should assessment occur?
Assessment will need to occur in an organisation using, or about to use, a proactive maintenance strategy or a case study or project.
Are there any other units which could or should be assessed with this unit or which relate directly to this unit?
This unit may be assessed concurrently with other relevant maintenance units and technical units related to the techniques and tools.
This unit is related to
MSACMT280A Undertake root cause analysis
MSACMT281A Contribute to the application of a proactive maintenance strategyand
MSACMT481A Undertake proactive maintenance analyses
which cover different aspects/levels of this area.
What method of assessment should apply?
Assessors must be satisfied that the person can consistently perform the unit as a whole, as defined by the Elements, Performance Criteria, skills and knowledge. A holistic approach should be taken to the assessment.
Assessors should gather sufficient, fair, valid, reliable, authentic and current evidence from a range of sources. Sources of evidence may include direct observation, reports from supervisors, peers and colleagues, project work, samples, organisation records and questioning. Assessment should not require language, literacy or numeracy skills beyond those required for the unit.
The assessee will have access to all techniques, procedures, information, resources and aids which would normally be available in the workplace.
The method of assessment should be discussed and agreed with the assessee prior to the commencement of the assessment.
What evidence is required for demonstration of consistent performance?
If evidence is provided from the initial introduction of a proactive maintenance strategy or a significant maintenance strategy, then one development and implementation may provide sufficient evidence. Where evidence is from the ongoing improvements of an existing strategy, then it will be needed from a range of activities to provide sufficient evidence.
The Evidence Guide describes the underpinning knowledge and skills that must be demonstrated to prove competence. it is essential for assessment and must be read in conjunction with the performance criteria, the range statement and the assessment guidelines of the relevant training package.
Overview of assessment requirements
The person will be able to select appropriate strategies, techniques and tools and adapt them to the organisation's needs. They will also be able to apply the strategies to new areas and improve their operation in existing areas.
What critical aspects of evidence is required to demonstrate competency in this unit?
Evidence of a functioning proactive maintenance strategy is required.
In what context should assessment occur?
Assessment will need to occur in an organisation using, or about to use, a proactive maintenance strategy or a case study or project.
Are there any other units which could or should be assessed with this unit or which relate directly to this unit?
This unit may be assessed concurrently with other relevant maintenance units and technical units related to the techniques and tools.
This unit is related to
MSACMT280A Undertake root cause analysis
MSACMT281A Contribute to the application of a proactive maintenance strategyand
MSACMT481A Undertake proactive maintenance analyses
which cover different aspects/levels of this area.
What method of assessment should apply?
Assessors must be satisfied that the person can consistently perform the unit as a whole, as defined by the Elements, Performance Criteria, skills and knowledge. A holistic approach should be taken to the assessment.
Assessors should gather sufficient, fair, valid, reliable, authentic and current evidence from a range of sources. Sources of evidence may include direct observation, reports from supervisors, peers and colleagues, project work, samples, organisation records and questioning. Assessment should not require language, literacy or numeracy skills beyond those required for the unit.
The assessee will have access to all techniques, procedures, information, resources and aids which would normally be available in the workplace.
The method of assessment should be discussed and agreed with the assessee prior to the commencement of the assessment.
What evidence is required for demonstration of consistent performance?
If evidence is provided from the initial introduction of a proactive maintenance strategy or a significant maintenance strategy, then one development and implementation may provide sufficient evidence. Where evidence is from the ongoing improvements of an existing strategy, then it will be needed from a range of activities to provide sufficient evidence.
Replaced By
| State Code | National Code | Title | Type |
|---|---|---|---|
| WD578 | MSS405083A | Adapt a proactive maintenance strategy for a seasonal or cyclical business | Unit of competency |
| State Code | National Code | Title | Type |
|---|---|---|---|
| W527 | MSA51108 | Diploma of Competitive Manufacturing | Qualification |
| W529 | MSA61108 | Advanced Diploma of Competitive Manufacturing | Qualification |