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Precision Surface Metrology
Non-contact white light interferometry, roughness topography mapping, and micro-honing of high-strength titanium alloys and precision metal interfaces — eliminating friction wear under ASME compliance.
Vertical Resolution
< 1 nm
Material Hardness
Ti-6Al-4V
Non-contact white light interferometry, micro-honing of high-strength titanium alloys, and roughness topography mapping for sub-nanometer surface finishes on precision metal interfaces under ASME compliance.
Sub-nanometer vertical resolution for non-contact 3D profiling of titanium alloys and precision metal interfaces. Measures step heights, roughness, and topography with repeatable results on high-reflectivity surfaces. Complies with ASME B46.1 standards for R&D and quality control.
Controlled abrasive process that eliminates friction wear in critical cinematic joints. Achieves surface finishes optimized for aerospace actuators, medical implant components, and high-performance automotive parts. Includes pre- and post-process roughness mapping to verify ASME compliance.
Advanced software for analyzing surface texture data from interferometry. Generates 2D and 3D maps, calculates Ra, Rz, Rq parameters, and supports custom filtering. Integrates with measurement hardware for seamless data acquisition and exports PDF/CSV reports for documentation.
Certified measurement protocols for verifying surface finishes below 1 nm Ra on high-strength metal interfaces. Uses calibrated reference standards and statistical process control to ensure repeatability across production batches. Ideal for cinematic joints requiring zero friction wear.
Full compliance with ASME B46.1 surface texture standards. Provides detailed reports including roughness parameters, bearing ratio curves, and 3D topography images. Supports audit-ready documentation for aerospace, medical, and automotive quality systems.
Choose a package based on your measurement depth, reporting needs, and compliance requirements. Each option includes ASME B46.1 traceable data.
Non-contact 3D surface profiling with sub-nanometer vertical resolution. Includes raw topography data and standard roughness parameters (Ra, Rz, Rq). Suitable for single-surface verification.
02Controlled abrasive finishing for titanium alloys and precision metal interfaces. Includes before-and-after roughness topography mapping to verify friction wear reduction in cinematic joints.
03Comprehensive surface analysis with 2D/3D maps, custom filtering, and a PDF/CSV export package. Delivered with an ASME compliance certificate for audit-ready documentation.
Non-contact white light interferometry and micro-honing for titanium alloys — delivering sub-nanometer surface finishes that eliminate friction wear in critical cinematic joints under ASME compliance.
White light interferometry achieves 0.1 nm repeatability on titanium and precision alloys. Noise filtering algorithms remove vibration artifacts, giving you true surface data for R&D and QC.
Controlled abrasive process reduces friction wear in aerospace actuators, medical implants, and high-performance automotive parts. Pre- and post-process topography mapping confirms compliance.
Every measurement includes Ra, Rz, Rq parameters with 2D/3D maps. Export PDF or CSV reports for audits. Our suite integrates directly with measurement hardware for seamless data flow.
Tested on Ti-6Al-4V, Ti-6Al-2Sn-4Zr-2Mo, and hardened stainless steels. Surface finishes below 0.5 nm Ra eliminate micro-welding and galling in sliding interfaces.
Used by aerospace OEMs, orthopedic implant manufacturers, and precision tooling shops. Repeat customers cite our turnaround time and traceable calibration as key differentiators.
Non-contact method avoids surface damage and tip wear. Measures steep slopes and high-reflectivity surfaces that confound contact probes. Faster setup and higher throughput for production lines.
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