In custom CNC machining and sheet metal fabrication, quality control isn’t a final checkbox — it’s a continuous process that runs from raw material receiving through final shipment. The instruments and devices used at each stage determine whether your parts meet print, or whether a dimensional error reaches your assembly line.
At BravoFabs, we maintain a comprehensive QC lab with calibrated inspection equipment covering dimensional, surface, and material testing. This guide walks through the key devices used in metal fabrication QC, what they measure, and the tolerances each can verify.
Dimensional Inspection — The Foundation of QC
Every machined part starts with dimensions. These are the tools that verify your part matches the drawing — from simple length checks to complex 3D geometric validation.
Calipers
The workhorse of any QC bench. Digital calipers provide quick measurements of external dimensions, internal diameters, depths, and steps. At BravoFabs, we use Mitutoyo digital calipers with 0.01mm (0.0005″) resolution for first-article and in-process checks. A caliper check takes seconds and catches gross errors before they propagate through a production run.
Typical use: Verifying overall length, width, hole center distances, and wall thickness on parts with tolerances ≥±0.05mm.
Micrometers
When tolerance calls for ±0.01mm or tighter, calipers aren’t enough. Outside micrometers measure external diameters and thicknesses to 0.001mm (0.00005″) resolution. Our QC lab uses Mitutoyo QuantuMike digital micrometers with 0.001mm resolution and ratchet thimbles for consistent measuring force. We also maintain inside micrometers for bore diameters and depth micrometers for blind hole inspection.
Typical use: Shaft diameters, bearing fits (H7/g6 tolerances), pin gauges, and any feature with a ±0.01mm callout.
Height Gauge and Dial Indicators
A height gauge on a surface plate measures vertical distances from a reference plane — critical for checking parallelism, flatness, and step heights. Our digital height gauge with 0.001mm resolution, combined with a dial test indicator (0.002mm graduation), lets us verify that two faces are parallel within 0.01mm across a 100mm span.
Dial indicators are also mounted on magnetic stands for runout checks: mount the part in a V-block, rotate, and the indicator reveals shaft concentricity within 0.005mm.
Coordinate Measuring Machine (CMM)
The CMM is the centerpiece of precision QC. A ruby-tipped probe touches the part surface at programmed points, recording X-Y-Z coordinates to build a 3D point cloud. This is compared against the CAD model to generate a deviation report — every hole position, every surface profile, every angular relationship.
Our CMM achieves volumetric accuracy of ±0.003mm, making it the gold standard for verifying parts with geometric tolerances (GD&T) — true position, profile, concentricity, and perpendicularity. For a production run of 500 parts, we’ll CMM-inspect the first article (FAI), then sample every 50th part with the CMM while using gauges for routine checks.
Typical use: Complex CNC-machined housings, parts with true position callouts, first article inspection reports (FAIR), and supplier qualification.
Need parts inspected with these devices? BravoFabs runs every CNC machined part through our Mitutoyo CMM and provides a dimensional inspection report with every order — no extra charge. See our CNC machining services or request a quote.
🔗 Related Manufacturing Services & Articles
- Precision CNC Machining Service — 3-axis & 5-axis milling, turning, CMM-verified inspection
- Quality Control in Metal Fabrication — full QC process from incoming inspection to final reports
- How Does a CMM Work in Metal Fabrication? — understanding coordinate measuring machine inspection
- Tolerance Standards: ISO 2768 & ASME Y14.5 Guide — how to specify tolerances so QC can verify them
- Custom Sheet Metal Fabrication — laser cutting, bending, welding with full QC inspection
Surface and Material Testing
Hardness Testers
Material hardness directly affects machinability, wear resistance, and structural integrity. We use a digital Rockwell hardness tester to verify incoming material certs and post-heat-treat results. Common scales:
| Scale | Indenter | Typical Range | Application |
|---|---|---|---|
| Rockwell B (HRB) | 1/16″ steel ball, 100kg | 35–100 | Aluminum, brass, mild steel |
| Rockwell C (HRC) | Diamond cone, 150kg | 20–70 | Hardened steel, tool steel |
| Brinell (HB) | 10mm carbide ball, 3000kg | 80–600 | Castings, forgings, rough stock |
| Vickers (HV) | Diamond pyramid | 1–3000 | Thin cases, coatings, micro-hardness |
If your part print specifies HRC 58–62 after heat treat, we test every batch before shipment and include hardness values on the inspection report. For critical aerospace or oil & gas parts, we’ll do Brinell on raw stock and Rockwell C after heat treat — dual verification.
Surface Roughness Testers
A profilometer drags a diamond stylus across the surface, measuring peak-to-valley variations in microns. The result is an Ra (arithmetic average roughness) or Rz (mean peak-to-valley) value. Common machining surface finishes:
| Process | Typical Ra (µm) | Typical Ra (µin) |
|---|---|---|
| CNC milling (roughing) | 3.2–6.3 | 125–250 |
| CNC milling (finishing) | 0.8–1.6 | 32–63 |
| CNC turning | 0.4–1.6 | 16–63 |
| Grinding | 0.1–0.4 | 4–16 |
| Bead blasting | 2.0–5.0 | 80–200 |
| Anodizing (over machined) | +0.2–0.5 µm over base | +8–20 over base |
When your print calls for Ra 1.6µm (63µin) or better, we verify with the profilometer and include the measured values in the inspection report. Surface finish isn’t cosmetic — it affects seal performance, fatigue life, and coating adhesion.
Non-Destructive Testing (NDT)
For welded assemblies, pressure vessels, and structural components, surface inspection alone isn’t enough. These NDT methods detect subsurface defects without damaging the part:
Ultrasonic Testing (UT)
High-frequency sound waves travel through the material and reflect off internal discontinuities — cracks, porosity, inclusions, or lamination. The transducer sends pulses and the reflected echo is displayed on a screen. A trained UT technician can locate a 1mm flaw 100mm deep in steel plate.
When we use it: Weld inspection on structural fabrications, verifying raw material (plate, bar) integrity before machining, and post-weld heat treat verification.
Dye Penetrant Inspection (DPI / PT)
For surface-breaking defects in non-porous materials. A colored or fluorescent dye is applied, allowed to seep into cracks, then the excess is removed. A developer draws the dye back out, making even hairline cracks visible under UV or white light. Simple, fast, and effective for aluminum, stainless steel, and titanium weld inspection.
Magnetic Particle Inspection (MPI / MT)
Only works on ferromagnetic materials (steel, cast iron). The part is magnetized, iron particles are applied, and they cluster at surface and near-surface discontinuities where the magnetic field leaks. More sensitive than DPI for subsurface flaws in steel.
Specialized Gauges for CNC Parts
- Go/No-Go gauges: Custom-made for production runs. The “Go” end must fit; the “No-Go” end must not. A semi-skilled operator can check 100 parts/hour with these — perfect for high-volume QC.
- Thread plug and ring gauges: For UNC, UNF, metric M, and custom threads. Go/No-Go principle applied to pitch diameter.
- Welding gauges: Measure fillet weld size, bevel angle, undercut depth, and reinforcement height. ASME and AWS compliant.
- Optical comparator (shadowgraph): Projects a magnified silhouette of the part onto a screen with a reticle overlay. Excellent for thread form inspection, radius verification, and complex profile comparison at 10x–100x magnification.
- Pin gauges: Precision-ground steel pins in 0.01mm increments. The fastest way to check hole diameters in production — insert the pin, if it fits, the hole is within tolerance.
BravoFabs QC Workflow — From Receiving to Shipping
Here’s how our QC process works for every order:
| Stage | What We Check | Tools Used | Frequency |
|---|---|---|---|
| 1. Incoming Material | Alloy grade, hardness, dimensions, surface condition, certs vs mill report | Hardness tester, calipers, spectrometer (outsourced) | Every batch |
| 2. First Article (FAI) | All dimensions on drawing, GD&T callouts, surface finish | CMM, micrometer, height gauge, profilometer | First piece of every run |
| 3. In-Process | Critical dimensions at risk of drift (tool wear, thermal expansion) | Calipers, micrometers, Go/No-Go gauges | Every 20–50 parts |
| 4. Final Inspection | All drawing dimensions, surface finish, thread fit, visual (burrs, scratches) | Full QC bench — CMM for critical, gauges for routine | 100% for critical; sampling for volume |
| 5. Pre-Shipment | Quantity, packaging, labels, cert documentation | Visual inspection, count verification | Every shipment |
For ISO 9001-compliant orders, we provide a full inspection report with measured values for every dimension on the drawing. Standard tolerance we hold: ±0.05mm general, ±0.01mm for critical features, ±0.005mm achievable with CMM verification.
Why QC Documentation Matters for Your Project
If you’re sourcing CNC parts from China, the inspection report is your proof that parts meet print before they leave the factory. Without it, you discover issues only after the shipment arrives — costing weeks of delay. Every order from BravoFabs includes dimensional inspection data for critical features, material certs, and process certificates (heat treat, plating, welding) when applicable. You review the report, approve the parts, and we ship.
Need QC-Certified CNC Parts?
BravoFabs provides ISO-certified CNC machining, sheet metal fabrication, and welding with full QC documentation. Upload your drawing or STEP file for a free quote — we’ll include a DFM review and confirm which inspection methods apply to your part.
Get your quote with QC documentation →
Related articles: How Does a CMM Work in Metal Fabrication? · Tolerance Standards in Metal Fabrication · STL vs STP: Which Format for Your CNC Quote?
