Cutting Mould Downtime 40 Percent: A Toolroom Card System That Actually Ran
Mould Technician - Management

Cutting Mould Downtime 40 Percent: A Toolroom Card System That Actually Ran

Mould faults caused 25 percent of all downtime on a zinc line, and every break-in was fixed ad hoc with no history. A card per mould, service by shot count and a weekly review cut mould downtime 40 percent in three months.

This management case guide covers the toolroom card system, shot-count maintenance and the review rhythm that keeps it running.

Downtime share
25% from mould faults
Card per mould
Shots, faults, spares
Service trigger
Shot count, e.g. 20k-50k
MTBF after
41,000 shots
Review
Weekly downtime board
Cutting Mould Downtime 40 Percent: A Toolroom Card System That Actually Ran
Cutting Mould Downtime 40 Percent: A Toolroom Card System That Actually Ran
A precision screwing machine with a single screw being inserted into a metallic fixture
A precision screwing machine with a single screw being inserted into a metallic fixture
The image is a flowchart that outlines the process of manufacturing QLQ mould production
The image is a flowchart that outlines the process of manufacturing QLQ mould production

Common Mistakes and How to Avoid Them

MistakeWhy It HappensPractical Fix
1. No mould historySame fault re-fixedOne card per mould
2. Service by failureBreakdowns drive the weekTrigger by shot count
3. Spares not stockedRepairs wait on partsStock 80% of critical parts
4. Faults not loggedTrends invisibleLog every repair and time
5. Repairs untestedFault returns next shiftGate 10 shots after repair
6. Downtime not measuredImprovement unprovableTrack by cause weekly
7. Cards updated lateData goes staleUpdate at the repair, not the month
8. Moulds treated equallyWrong prioritiesRank by downtime share
9. No ownerSystem fades in a monthName a card owner per mould

Best Practices

  • Keep one card per mould with shots, faults and spares
  • Trigger service by shot count, not failure
  • Stock the critical spares that fail most
  • Log every repair with time and cause
  • Gate test shots after every repair
  • Review the downtime board weekly with owners

Implementation Roadmap

StepFrequency
Open cardsOne per mould, one-time setup
Log repairsEvery event, same day
Review boardWeekly, per cause
Stock sparesMonthly, top failures
Update cardsAfter every repair

Toolroom card flow

  1. Card - Shots, faults, spares per mould. (No history means re-fixing the same fault.)
  2. Trigger - Service by shot count. (Failure-based service stops the line first.)
  3. Repair and log - Time, cause, parts used. (Late logs poison the trend.)
  4. Review - Weekly board, named owners. (No review, no system.)

Mould downtime follows history, not luck. | A stocked spare cuts repair time more than a fast fitter.

Toolroom control data

Reference values for mould maintenance management.

ParameterReferenceWhy It Matters
Service triggerEvery 20k-50k shots per mouldSet per mould class and wear rate
Card fieldsShots, faults, spares, next serviceWritten at the repair, not later
Spare stockTop 20% of parts = 80% of failuresStock what fails most
MTBF targetOver 30,000 shotsBaseline here was 18,000
Repair gate10 test shots after repairProves the fix before the line
Downtime reviewWeekly, per causeTrends beat anecdotes
Downtime KPIUnder 5% of available timeMeasured, published, owned

Mould downtime board

MouldDowntime hoursTop causeOwner
Slider A12Ejector pinsToolroom lead
Frame B8Parting flashToolroom lead
Puller C3Spare waitStores
Total23Review FridayManager

Case 1 - mould downtime cut 40% in three months

Scenario. Mould faults caused 25 percent of all downtime on a zinc line. Every break-in was fixed ad hoc, the same ejector pin fault returned monthly, and repairs waited on parts that were not stocked.

Action.

Result.

Case 2 - one card system across three plants

Scenario. A group with three plants ran identical moulds with completely different maintenance; the worst plant had triple the mould downtime of the best.

Action.

Result.

Frequently Asked Questions

Why a card per mould?

History is the only way to see recurring faults; the same ejector pin fault returned monthly until it was logged.

What goes on the card?

Shot count, fault history, spares used, next service date and the repair time.

How often should I service?

By shot count, about every 20k-50k shots depending on the mould class and wear rate.

Do I need software?

No - a paper card and a weekly board run the system; software comes later if it earns its cost.

Which spares to stock?

The top 20% of parts that cause 80% of failures; waiting on parts was a third of the repair time here.

How do I prove the fix?

Ten gated test shots after every repair before the mould returns to the line.

Why review weekly?

Trends need a regular beat; monthly reviews lose the detail and the owners.

What KPI should I watch?

Mould downtime as a share of available time, plus MTBF per mould; both moved together here.

Who owns the cards?

A named owner per mould; without an owner the system fades within a month.

What Would You Like to Solve?

Tell us your mould downtime share, fault history and spare situation, and we can work through the card system and review rhythm for your toolroom.

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