Common MRB disposition paths are rework, repair, use-as-is, scrap, return to supplier, sorting or screening, and in some cases downgrade or alternate use. The available path is not just a quality preference. It depends on engineering authority, customer flowdowns, regulatory obligations, product criticality, traceability requirements, and whether the disposition can be executed and recorded correctly in the site’s QMS, MES, ERP, PLM, and inventory systems.
Common disposition paths
- Rework: The item is brought back into full conformity with the original drawing, specification, work instruction, or approved process. This is usually the cleanest disposition from a configuration standpoint, but it still requires defined instructions, inspection evidence, and record control.
- Repair: The item is made acceptable for use but may not fully conform to the original requirement. Repair typically needs stronger engineering review than rework, and customer or design authority approval may be required depending on contract, product type, and severity.
- Use-as-is: The nonconformance is accepted without physical correction. This should not be treated as informal tolerance relief. It normally requires documented technical rationale, authorized approval, and sometimes customer concession or waiver.
- Scrap: The item is permanently removed from production or service use. Scrap decisions need inventory control, physical segregation or destruction where required, and accounting alignment so rejected material does not re-enter the flow.
- Return to supplier: The material is sent back to the supplier for replacement, correction, credit, or further evaluation. This requires clear linkage to the supplier nonconformance record, purchase order, lot or serial traceability, and any required supplier corrective action.
- Sort, screen, or inspect 100%: The affected population is examined to separate conforming from nonconforming units. This is often a containment action as much as a disposition, and it depends heavily on inspection method validity and traceability of the population screened.
- Downgrade or alternate use: The item is redirected to a lower-grade application, training use, test use, or another approved configuration. This is only appropriate when configuration control, marking, records, and customer or regulatory constraints allow it.
Important distinctions
Rework and repair are often confused. Rework returns the item to the original approved requirement. Repair accepts a controlled departure from that requirement after evaluation. In regulated manufacturing, that distinction matters because it affects engineering authority, customer approval, inspection planning, configuration records, and downstream disclosure.
MRB disposition is also different from corrective action. The disposition decides what happens to the specific nonconforming item or lot. CAPA, RCCA, or supplier corrective action addresses why the nonconformance occurred and whether recurrence controls are needed. A disposition without root cause follow-up may be acceptable for an isolated low-risk issue, but it is not enough for recurring, systemic, or safety-critical defects.
What is site-specific
The exact names and approval thresholds vary by plant, program, customer, and quality system. Some organizations separate preliminary review, quality disposition, engineering MRB, and customer concession. Others use one workflow with conditional routing. Critical parts, flight hardware, medical devices, defense work, serialized assets, and customer-owned material usually have tighter approval and record requirements.
In brownfield environments, the MRB decision often has to be reflected across several systems. The QMS may hold the nonconformance record, the MES may control work execution and electronic travelers, the ERP may control inventory status and financial disposition, and PLM may control drawings, revisions, and effectivity. If those systems disagree, the MRB decision can be technically approved but operationally unsafe to execute.
Common failure modes
- Use-as-is decisions made without adequate engineering rationale or required customer approval.
- Repair activity performed under a rework label to avoid additional approval burden.
- Scrap material not physically controlled, creating a risk of unintended reuse.
- Supplier returns disconnected from supplier corrective action and purchasing records.
- MES or ERP inventory status not updated after MRB disposition.
- Disposition instructions not validated, version-controlled, or linked to inspection evidence.
- Lot, serial, or effectivity boundaries not clearly defined before sorting or screening.
Digitizing MRB workflows can improve consistency and traceability, but it does not remove the need for qualified authority, clear procedures, validated system behavior, and change control. In mature regulated operations, MRB usually has to coexist with legacy MES, ERP, PLM, QMS, and supplier systems. Full replacement of those systems is often unrealistic because of qualification burden, validation cost, downtime risk, integration complexity, and long asset lifecycles.