MEM14092 — Integrate maintenance fundamentals into an engineering task
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What an assessment for MEM14092 must cover
39 assessable components: 3 elements (16 performance criteria), 10 performance evidence and 13 knowledge evidence requirements. An audit-defensible tool maps every question and task back to these — that mapping is the coverage matrix Auditori generates alongside the assessment.
Elements & performance criteria
1 Investigate scope of engineering task
- 1.1Follow standard operating procedures (SOPs)
- 1.2Comply with WHS requirements at all times
- 1.3Identify the breakdown and preventative maintenance and other related fundamentals to be integrated into engineering task
- 1.4Identify stakeholders to be consulted
- 1.5Identify maintainable features of plant, facilities and services affected by integration task
- 1.6Identify methods, processes and workshop techniques required by task
- 1.7Review sustainability implications for task
- 1.8Review software techniques required for task analysis and graphics
- 1.9Plan task to maximise performance and reliability and prevent future breakdowns
2 Integrate maintenance fundamentals
- 2.1Evaluate mathematical fundamentals, scientific principles, workshop skills, materials and processes, and software required by the task
- 2.2Use systems thinking to address contingencies and constraints, problem-solving and decision-making, and continuous improvement to achieve integration task
- 2.3Consult with stakeholders on timing and scope of integration task
- 2.4Integrate maintenance fundamentals to achieve task objectives
- 2.5Identify and seek required technical and professional assistance or clarification of design information
3 Report results
- 3.1Record results of investigation, evaluation and integration
- 3.2Provide supporting documentation that includes accurate and comprehensive details about maintenance fundamentals used
Performance evidence
- following work instructions, standard operating procedures (SOPs) and safe work practices
- communicating, cooperating and negotiating with stakeholders to achieve integration task
- determining task parameters, context and chain of responsibility
- identifying work health and safety (WHS), regulatory and risk management requirements and organisational procedures
- evaluating task requirements, principles, techniques, typical applications and software
- selecting and using software and graphics for required analysis and graphics
- planning the task
- integrating maintenance fundamentals to achieve task objectives on at least two occasions
- reviewing sustainability implications, functions and features for the engineering task
- reporting and documenting results on at least two occasions
Knowledge evidence
- safe work practices and procedures
- maintenance and related fundamentals including: materials properties, maintenance methods and processes, mechanics, chemistry, thermodynamics, fluid mechanics, fluid power, electrical and electronic fundamentals, fundamentals of controller programming, interfacing and signal conditioning, computing, graphics, including computer-aided design (CAD), workshop and maintenance equipment
- functions and maintainable features of plant, facilities and services
- sources of maintenance systems data
- maintenance methods and procedures including: breakdown maintenance, preventive maintenance, predictive maintenance (on-condition), precision maintenance, proactive maintenance, reliability centred maintenance and modification, total productive maintenance, repair and replace methods and processes
- role and application of maintenance-related risk management procedures and analysis
- systems thinking, problem-solving and decision-making, and continuous improvement methods
- WHS and regulatory requirements, codes of practice, standards, risk management and registration requirements
- sources of professional and technical assistance
- constraints on the integration of maintenance fundamentals into an engineering task
- sustainability considerations
- current options and tends in maintenance software
- typical software applications for engineering maintenance fundamentals
Unit content sourced from training.gov.au — © Commonwealth of Australia, licensed under CC BY 4.0. Auditori is not affiliated with the Department of Employment and Workplace Relations.
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Questions about assessing MEM14092
What does an assessment tool for MEM14092 need to cover?
To satisfy the Principles of Assessment and Rules of Evidence, an assessment for MEM14092 needs to address all 39 unit components: 3 elements with 16 performance criteria, 10 performance evidence requirements, 13 knowledge evidence requirements, and the foundation skills. A coverage matrix mapping each question and task to these components is what an auditor looks for.
How does Auditori generate an assessment tool for MEM14092?
Auditori pulls the current release of MEM14092 from training.gov.au and generates a complete package: candidate assessment, assessor guide with model answers and observation criteria, and a coverage matrix mapping every component. A suitably qualified person then reviews and approves the draft in a built-in workflow — consistent with ASQA's guidance on AI use in VET — before export as branded PDF and editable Word.
Is the first assessment tool really free?
Yes. Every new account includes one free credit — enough to generate the complete assessment tool for MEM14092 — with no card and no subscription required. After that it's pay-as-you-go per unit.
Can I check my existing MEM14092 assessment instead of generating a new one?
Yes — upload your existing assessment or learner guide and Auditori maps it against every element, performance criterion, PE and KE of MEM14092, showing exactly what's covered and what's missing. Mapping costs a quarter of a credit.
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