ICTQual AB Level 5 Diploma in Quality Assurance / Quality Control (QA/QC) and Piping Engineering
The ICTQual AB Level 5 Diploma in Quality Assurance / Quality Control (QA/QC) and Piping Engineering is a high-level professional qualification developed for experienced learners aiming to advance their technical expertise and leadership capabilities in quality management and piping systems. This diploma provides in-depth knowledge of complex engineering processes and prepares learners for strategic roles across a variety of industrial sectors.
Covering advanced topics such as lean quality principles, corrosion prevention, integrity management, enterprise risk control, and stakeholder communication, this programme equips learners with the skills to manage high-risk engineering environments while ensuring strict compliance with international quality standards.
Learners will also explore the integration of QA/QC systems within large-scale projects, enhancing their ability to lead multidisciplinary teams, perform strategic audits, and ensure long-term asset reliability. The curriculum blends technical precision with strategic planning, making it ideal for professionals progressing into senior roles.
Whether employed in oil and gas, construction, manufacturing, or infrastructure, learners will gain career-boosting competencies that support global employability and long-term advancement. The ICTQual AB Level 5 Diploma empowers learners to confidently manage quality assurance frameworks and piping engineering challenges at an enterprise level.
Level 5 Diploma in Quality Assurance / Quality Control (QA/QC) and Piping Engineering
To enrol in ICTQual AB Level 5 Diploma in Quality Assurance / Quality Control (QA/QC) and Piping Engineering, learner must meet the following entry requirements:
This qualification, the ICTQual AB Level 5 Diploma in Quality Assurance / Quality Control (QA/QC) and Piping Engineering, consists of 6 mandatory units.
- Integrated Quality Management Systems & Lean QA Principles
- Complex Piping Systems: High‑Pressure, High‑Temperature & Exotic Materials
- Advanced Corrosion Control, Coatings, and Integrity Management
- Quantitative Risk Assessment, Root Cause Methodologies & Business Continuity
- Quality Governance, Contractual Compliance and Stakeholder Communication
- Continuous Improvement Tools: Six Sigma, Kaizen and Performance Metrics
Learning Outcomes for the Study Units:
Integrated Quality Management Systems & Lean QA Principles
By the end of this unit, the learner will be able to:
- Design and implement integrated quality management systems (QMS) aligned with ISO and international standards
- Apply lean QA methodologies to eliminate waste and improve process efficiency
- Evaluate the effectiveness of quality systems across project phases and departments
- Develop policies and procedures that align quality goals with organisational performance
- Drive cultural change towards quality excellence within engineering teams
Complex Piping Systems: High Pressure, High Temperature & Exotic Materials
By the end of this unit, the learner will be able to:
- Understand the behaviour and risks of complex piping systems operating under extreme conditions
- Select suitable materials for high-pressure, high-temperature, and corrosive environments
- Apply advanced inspection and testing methods to ensure system integrity
- Interpret engineering standards related to exotic alloys and critical piping applications
- Implement safe fabrication, installation, and operational practices for specialised systems
Advanced Corrosion Control, Coatings, and Integrity Management
By the end of this unit, the learner will be able to:
- Identify types of corrosion affecting piping and industrial systems
- Recommend appropriate protective coatings and material treatments for corrosion prevention
- Develop and manage asset integrity programmes for long-term reliability
- Conduct failure analysis and implement corrective actions for corrosion-related issues
- Ensure compliance with industry standards for integrity and material protection
Quantitative Risk Assessment, Root Cause Methodologies & Business Continuity
By the end of this unit, the learner will be able to:
- Perform quantitative risk assessments using statistical and analytical tools
- Apply root cause analysis methods such as FMEA, 5 Whys, and Fault Tree Analysis
- Link risk mitigation strategies to quality assurance processes and continuity planning
- Evaluate the impact of quality failures on business operations and safety
- Develop risk-based plans that ensure resilience and operational continuity
Quality Governance, Contractual Compliance and Stakeholder Communication
By the end of this unit, the learner will be able to:
- Interpret and apply quality governance frameworks within engineering projects
- Ensure contractual compliance across QA/QC activities, documentation, and delivery
- Manage communication between internal teams, contractors, and clients
- Monitor quality performance against project and legal requirements
- Lead quality reviews and effectively present outcomes to stakeholders
Continuous Improvement Tools: Six Sigma, Kaizen and Performance Metrics
By the end of this unit, the learner will be able to:
- Implement continuous improvement strategies using Six Sigma, Kaizen, and PDCA cycles
- Analyse and optimise processes using key performance indicators (KPIs)
- Lead improvement projects to reduce variation, enhance quality, and boost efficiency
- Foster a culture of continuous improvement within QA/QC teams
- Integrate performance metrics into daily operations for sustainable quality outcomes
The ICTQual AB Level 5 Diploma in QA/QC and Piping Engineering is a strategic qualification that unlocks advanced academic and career opportunities for learners aiming to lead in complex engineering environments. It equips professionals with high-level expertise in quality governance, risk control, and integrity management—essential for progression into leadership roles.
Academic Progression
- Move to Higher Diplomas – Level 6 and Level 7
Learners can progress to the ICTQual AB Level 6 Diploma, which focuses on project management, reliability engineering, and strategic QA planning. The ultimate academic progression is the Level 7 Diploma, preparing learners for master-level leadership in global QA/QC and engineering consultancy roles. - Specialist Training and Certification
Learners may also pursue advanced certifications in areas such as:- Asset integrity and reliability engineering
- Lean Six Sigma Black Belt
- Advanced welding inspection
- Enterprise risk and quality strategy
Career Development Opportunities
- Senior Technical and Leadership Roles
This diploma prepares learners for senior positions such as:- Quality Manager
- QA/QC Lead Engineer
- Piping Integrity Specialist
- Reliability Engineer
- Vendor Compliance Auditor
- Cross-Sector Mobility
Learners are well-positioned for roles in high-impact industries including:- Oil and gas
- Petrochemical plants
- Infrastructure and energy
- Marine and offshore engineering
- Industrial manufacturing
Global Recognition and Strategic Readiness
- Work on International Projects
The Level 5 Diploma is aligned with global quality standards, allowing learners to contribute to multi-national engineering projects with confidence and technical authority. - Prepare for Executive-Level Impact
Graduates are equipped to influence quality strategy, manage multi-disciplinary teams, and implement sustainable improvement initiatives at the enterprise level.
