Field Failures That Passed QC: Cross-Sectioning, Hydrogen Embrittlement and the Root Cause Chain Routine Testing Missed
Quality & Testing Technician - Senior

Field Failures That Passed QC: Cross-Sectioning, Hydrogen Embrittlement and the Root Cause Chain Routine Testing Missed

Springs cracked in service six weeks after shipment, yet every QC check had passed. The deposit was in spec; the interface was not.

This case shows how senior QC finds what routine testing misses: cross-sectioning, microhardness, adhesion testing and tracing the fault chain from pre-treatment to baking.

Cross-section
Mount, polish, 1 micrometer finish
Microhardness
HV per coating spec
Hydrogen control
Bake 4-24 h by strength class
Adhesion test
Bend or thermal shock
Root cause
Traced to one process step
Field Failures That Passed QC: Cross-Sectioning, Hydrogen Embrittlement and the Root Cause Chain Routine Testing Missed
Field Failures That Passed QC: Cross-Sectioning, Hydrogen Embrittlement and the Root Cause Chain Routine Testing Missed
Factory overview with assembly line and machines
Factory overview with assembly line and machines
An industrial machine, which appears to be a piece of laboratory equipment, possibly a device for measuring...
An industrial machine, which appears to be a piece of laboratory equipment, possibly a device for measuring...

Common Mistakes and How to Avoid Them

MistakeWhy It HappensPractical Fix
1. Passing thickness and stopping thereInterface faults pass unnoticedCross-section parts in every dispute
2. Polishing destroys the interfaceFaults are polished awayFinish with 1 micrometer diamond
3. Etching too longLayer structure is wiped outEtch in short steps and inspect
4. Blaming the coating firstThe real fault is underneath itSection before blaming the deposit
5. No microhardness baselineSoft deposits fail lateMeasure HV against the spec
6. Baking skipped for small partsDelayed hydrogen crackingBake per strength class and drawing
7. One section, one conclusionA local fault is misread as generalSection 3 or more parts from different positions
8. Records without photosNo evidence for the analysisPhotograph every stage with a scale
9. Root cause stops at the labThe process keeps making faultsClose the loop with a process change

Best Practices

  • Cross-section at least three parts from every failure investigation
  • Document every stage with scale-marked photos
  • Measure microhardness against the coating specification
  • Inspect the interface before blaming the deposit
  • Confirm hydrogen risk and bake compliance for high-strength steel
  • Close every failure with a process change and a verification run

Implementation Roadmap

StepFrequency
Section and photograph the failed partPer failure
Measure microhardness and adhesionPer failure
Review the failing lot's process logsPer failure
Verify the fix across 3 production lotsAfter each change
Trend failure types by monthMonthly

Field failure analysis flow

  1. Section - Mount, polish to 1 micrometer. (Poor polishing erases the fault.)
  2. Inspect - Interface, layers, cracks. (Surface checks alone mislead.)
  3. Measure - Microhardness and thickness. (Out-of-spec layers fail early.)
  4. Fix - Change process, verify 3 lots. (Analysis without a fix repeats.)

Hydrogen embrittlement shows weeks after plating. | The interface, not the surface, carries the truth.

Failure analysis reference data

Reference values for sectioning and failure analysis of plated parts.

ParameterReferenceWhy It Matters
Section finish1 micrometer diamond polishCoarse finish hides cracks
MicrohardnessPer spec, e.g. 500-900 HV for hard chromeSoft deposits fail early
Hydrogen bake190-230 C, 4-24 h per strength classSkipped bake risks delayed cracks
Adhesion testBend, file or thermal shock 150-250 CDetects interface failure
Sections per failure3 or more partsOne section misreads the lot
Etch timeShort steps with inspectionOver-etch removes the layer
Thickness Cpk1.33 or higher at sectioned pointsLinks field life to the process

Sectioning record card

StageParameterEvidence
MountingCold resin, vacuumPhoto
Polishing9 to 3 to 1 micrometerPhoto
EtchingShort stepsPhoto
MeasurementMicrohardness and thicknessValues
ConclusionFault and process stepReport

Hydrogen bake decision table

Tensile strengthBake time at 190-230 C
Below 1000 MPa4 hours
1000-1400 MPa8-16 hours
Above 1400 MPa24 hours per spec
Springs and high-carbon steelFollow the drawing

Case 1 - springs cracking six weeks after shipment

Scenario. High-carbon steel springs cracked in service six weeks after shipment even though thickness and salt spray passed every QC gate.

Action. Cross-sections showed cracks starting at the deposit-substrate interface, and the lot's process log revealed the bake step had been shortened to one hour.

Result. Bake time was restored to 8 hours started within 4 hours of plating, field claims stopped, and the adhesion test Cpk rose from 0.9 to 1.6.

Case 2 - chromium flaking on hydraulic rods in a Gulf state

Scenario. Hydraulic rods flaked after three months in a hot, humid Gulf environment, and the customer blamed the hard chrome deposit, which measured in spec.

Action. Sectioning showed the fault at the nickel underlayer interface, and humidity checks traced it to a rinse that ran dry during summer water restrictions.

Result. The rinse timer was interlocked with the line, and flaking claims dropped to zero over the following two quarters.

Frequently Asked Questions

Why do parts fail when QC passes?

Routine QC checks surfaces; many field failures start at the interface and appear under load or time.

When do I cross-section?

For any field failure, any adhesion complaint, and any dispute where surface checks disagree with performance.

How many parts should I section?

At least three from different positions in the failing lot before drawing any conclusion.

What finish do I need?

A 1 micrometer diamond final polish; coarse finishes wipe out cracks and layer detail.

How long should high-strength steel bake?

190-230 C for 4-24 hours depending on strength class, started within 4 hours of plating.

What is microhardness for?

It catches soft deposits that wear or crack early even when thickness is correct.

How do I test adhesion?

Use bend, file or thermal shock tests per ASTM B571, combined with a cross-section for proof.

What records prove the analysis?

Scale-marked photos at every stage plus the process log of the failing lot.

When is a failure closed?

When the root cause is traced to a process step, a fix is implemented, and three lots verify it.

What Would You Like to Solve?

Describe the failure mode, material, coating and process history of your failing part, and share what routine QC currently passes.

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