BOZE CNC Ti | Manufacturing Engineering Data Sheet

Technical Capabilities

Certified precision manufacturing infrastructure — from micron-level CNC tolerancing to full material traceability. A detailed technical reference for procurement and engineering teams.

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5 Capability Pillars
AS9100D Aerospace
±0.005mm Dimensional
Manufacturing Engineering Capacity Quality Inspection Traceability Certifications

CNC Tolerance Feasibility Checker

Select a feature type and enter your tolerance requirement — instantly see if it falls within our standard, precision, or ultra-precision capability bands.

Feature Type

Precision hole sizing for dowel pin fit, bearing seats, and alignment features.

Hole Diameter (Dowel Pins)(Unit: mm)
0.0010.5
mm
Quick values:
Capability Bands for Hole Diameter (Dowel Pins):
Ultra Precision0.0030.01 mm)← Your Value
Precision0.010.05 mm)← Your Value
Standard0.050.1 mm)
±0.01 mmFEASIBLE ✓

Within our ultra-precision envelope. Full CMM verification included. AS9100 standard.

Hole location tolerance is separate — see Position.

Surface Roughness Comparator

Compare surface finishes from mirror polish to as-rough — with Ra/Rz values, everyday object comparisons, and achievable processes.

Filter by process:
Ra Roughness Scale (µm)
Ra 0.1
Ra 0.2
Ra 0.4
Ra 0.8
Ra 1.6
Ra 3.2
Ra 6.3
MirrorAs-Rough
Mirror FinishRa 0.025
Rz 0.1 – 0.4 µm
Like a high-quality bathroom mirror
Ultra-Fine FinishRa 0.05
Rz 0.4 – 0.8 µm
High-end phone screen protector — smooth, barely any texture
Fine FinishRa 0.1
Rz 0.8 – 1.6 µm
New ceramic knife blade — smooth with faint lines
Smooth FinishRa 0.2
Rz 1.6 – 3.2 µm
New laptop chassis — smooth with slight directional texture
Standard MachinedRa 0.4
Rz 3.2 – 6.3 µm
Cast iron skillet — visible but uniform machining marks
Commercial MachinedRa 0.8
Rz 6.3 – 12.5 µm
Standard steel ruler — visible machining texture
Rough MachinedRa 1.6
Rz 12.5 – 25 µm
Coarse nail file — distinctly rough but uniform
Very RoughRa 3.2
Rz 25 – 50 µm
Unfinished concrete wall — rough, irregular texture
As-Rough / UnfinishedRa 6.3
Rz 50 – 100 µm
Rough gravel road — very coarse and irregular

GD&T Symbol Reference

Interactive reference for ASME Y14.5 GD&T symbols — form, orientation, location, profile, and runout controls with tolerance zone explanations and application guidance.

StraightnessForm

Controls how straight a line element or axis must be. Can be applied to a surface element (line straightness) or an axis (derived median line).

No Datum Required· ASME Y14.5 Section 5.4
FlatnessForm

Controls the deviation of a surface from a perfect plane. All points on the surface must fall between two parallel planes spaced at the tolerance value.

No Datum Required· ASME Y14.5 Section 5.5
Circularity (Roundness)Form

Controls how close a circular cross-section is to a perfect circle. Each circular element of the surface must independently conform.

No Datum Required· ASME Y14.5 Section 5.6
CylindricityForm

Simultaneously controls roundness, straightness, and taper of a cylindrical surface. More comprehensive than circularity.

No Datum Required· ASME Y14.5 Section 5.7
Profile of a LineProfile

Controls the variation of a line element along a surface profile. Each cross-section independently evaluated.

No Datum Required· ASME Y14.5 Section 8.3
Profile of a SurfaceProfile

The most versatile GD&T control. Can control form, orientation, location, AND size of any surface simultaneously.

No Datum Required· ASME Y14.5 Section 8.4
ParallelismOrientation

Controls how parallel a surface or axis is relative to a datum. The tolerance zone is oriented parallel to the datum.

Requires Datum· ASME Y14.5 Section 6.3
Perpendicularity (Squareness)Orientation

Controls the angular relationship of a surface or axis at 90° to a datum.

Requires Datum· ASME Y14.5 Section 6.4
AngularityOrientation

Controls the angular relationship of a surface or axis at any specified angle (not 90°) to a datum.

Requires Datum· ASME Y14.5 Section 6.5
PositionLocation

The most commonly used location control. Defines the allowable deviation of a feature from its true position. Can be applied with MMC for bonus tolerance.

Requires Datum· MMC, LMC, RFS· ASME Y14.5 Section 7.3
ConcentricityLocation

Controls the coaxial relationship of two or more features. Unlike runout, concentricity controls the derived median points rather than the surface.

Requires Datum· ASME Y14.5 Section 7.6
SymmetryLocation

Controls how symmetrical a feature is relative to a datum center plane. Controls the median points of opposed elements.

Requires Datum· ASME Y14.5 Section 7.7
Circular RunoutRunout

Controls the variation of a surface as it rotates about a datum axis. Checks circular elements independently.

Requires Datum· ASME Y14.5 Section 9.3
↗↗
Total RunoutRunout

Controls ALL surface elements simultaneously — roundness, straightness, taper, and coaxiality along the entire feature length as it rotates.

Requires Datum· ASME Y14.5 Section 9.4
Physical Manufacturing Capacity

Capacity Dashboard

Verified production parameters across our CNC, additive, and metrology infrastructure. All figures represent current validated capabilities.

650 × 650 × 500 mm

CNC Work Envelope

3/5-Axis Milling & Turning capacity for medium-to-large titanium workpieces with simultaneous 5-axis contouring.

±0.005 mm

Tolerance Precision

Micron-level repeatable bounds maintained across production runs. Cpk ≥ 1.67 on all critical dimensional features.

≥ 20 µm

Additive Volume (SLM)

Selective Laser Melting with full powder-bed fusion. Layer resolution down to 20 µm. Build volume 250 × 250 × 300 mm.

1 – 5,000+ pcs

Production Flexibility

Rapid Prototyping (1–10 pcs) through Low-Volume (10–500 pcs) to Scaled Batch Production (500–5,000+ pcs) with consistent quality.

Pre-Production Engineering

Engineering Support

Full in-house CAD/CAM capability with proactive Design for Manufacturability (DFM) review — engineered specifically for titanium component optimization.

CAD/CAM Software Support

Our engineering team accepts native and neutral CAD formats for seamless import. All toolpaths are generated using Mastercam 2025 with titanium-specific feeds and speeds libraries.

STEP (AP203/AP214) IGES SolidWorks (.sldprt/.sldasm) Mastercam (.mcx) AutoCAD (.dwg/.dxf) Parasolid (.x_t/.x_b) STL / OBJ

24-Hour DFM Review

Proactive Protocol

Every submitted design undergoes a mandatory 6-point DFM analysis to eliminate costly titanium raw material waste before production begins.

  • Titanium-specific machinability assessment
  • Raw material utilization & yield optimization
  • Toolpath simulation & cycle time estimation
  • Tolerance stack-up & fixturing strategy
  • Surface finish specification validation
  • Cost-optimized production routing
Quality Management Framework

Quality Management

Certified quality management with a proven zero-defect pipeline. We deliver documentation packages that exceed aerospace and medical audit requirements.

AS9100 Rev D

Aerospace Quality Management Standard

Certified

Full-scope AS9100D quality management system covering design, development, production, and distribution of titanium aerospace components. Regular surveillance audits ensure continuous compliance.

  • Aerospace-specific risk management per AS9100D
  • Counterfeit part prevention (AS6174/AS5553)
  • First-article inspection (FAIR) per AS9102
  • Supplier control & incoming material validation
  • Configuration management & change control board

ISO 9001:2015

International Quality Management Standard

Certified

Globally recognized quality management framework with documented processes for continuous improvement, corrective action, and customer-focused output.

  • Documented quality manual & process workflows
  • Internal audit program with qualified lead auditors
  • Corrective & preventive action (CAPA) system
  • Management review & KPI-driven performance tracking
  • Supplier quality scorecard & performance evaluation

Zero-Defect Control Pipeline

1

IQC

Incoming Quality Control

Raw material verification — OES chemical analysis, dimensional check, MTR validation against PO specifications.

2

IPQC

In-Process Quality Control

In-process monitoring — dimensional hold-points, surface finish verification, and interpass weld inspection per approved WPS.

3

FQC

Final Quality Control

Final acceptance — full dimensional layout, NDT (RT/PT/UT), pressure testing, and documentation package for customer sign-off.

Metrology & Inspection Equipment

Inspection Lab Grid

In-house metrology laboratory equipped with industrial-grade inspection instruments for full dimensional, chemical, and surface integrity validation.

CMM

ZEISS CONTURA G2

Bridge-type 3D Coordinate Measuring Machine with active scanning. Dimensional accuracy to 1.9 µm. Full geometric dimensioning & tolerancing (GD&T) reporting per ASME Y14.5.

OES Spectrometer

SPECTROMAXx

Optical Emission Spectrometry for positive material identification (PMI). Confirms elemental composition of titanium alloys within 30 seconds per ASTM E415 standard.

Roughness Tester

Mitutoyo SJ-410

Surface finish measurement down to Ra 0.4 µm. Provides complete surface texture parameters (Ra, Rz, Rq, Rmax) with graphical profile recording per ISO 4287.

NDT Validation

Penetrant / Ultrasonic

Non-Destructive Testing capabilities including fluorescent dye penetrant (FPI) for surface flaw detection and ultrasonic (UT) for subsurface volumetric examination. Nadcap-accredited.

All inspection equipment calibrated per ISO 17025 traceable standards. Calibration certificates available on request.

Material Integrity Guarantee

100% Material Traceability

Every gram of titanium is fully documented — from mill source to finished serialized component — with certified test reports and full chain-of-custody traceability.

Mill Source

Certified original mill source with EN 10204 Type 3.1 MTR documentation for every incoming titanium batch.

Incoming Inspection

OES chemical analysis and positive material identification (PMI) verification per batch upon receipt.

Process Tracking

Serialized work order with job-specific material lot linking throughout the entire manufacturing process.

Final Documentation

Serialized part with complete MTR and inspection report package delivered with each finished component.

Ready to Start Your Project?

Get an immediate engineering review and competitive pricing. Our AS9100D-certified team responds within 48 hours.

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