Oil & Gas
Oil and gas operations require disciplined review of asset criticality, material exposure, inspection requirements, and documentation before local manufacturing routes are considered. D2M supports candidate part assessment, workflow design, technology selection, inspection planning, documentation, and handover for oil and gas support contexts.

Application Suitability
Candidate applications are reviewed against operating conditions, material requirements, inspection needs, and commercial constraints.
Workflow Definition
The equipment, software, material route, records, and approval points are mapped before implementation decisions are made.
Implementation Planning
Training, documentation, governance, and handover requirements are defined so the capability can be managed by internal teams.
Industry Overview
Oil and gas operations require disciplined review of asset criticality, material exposure, inspection requirements, and documentation before local manufacturing routes are considered.
D2M supports candidate part assessment, workflow design, technology selection, inspection planning, documentation, and handover for oil and gas support contexts.
Common Applications
Technology Routes for Oil & Gas
Review hardware and material routes that may be suitable after application, workflow, and qualification requirements are understood.
3D Printers

Stratasys F370®CR
Accessible industrial composite printing for strong, stiff, carbon-fiber-reinforced parts and everyday manufacturing needs.

Stratasys Fortus 450mc
Industrial FDM for tooling and parts needing engineering thermoplastics.

Stratasys F190™CR
System route for application and workflow review.

XACT Metal XM200G
Configurable metal powder-bed fusion for prototypes, tooling and small parts.

Stratasys F900
High-capacity FDM engineered for reliable, precise, and consistent manufacturing at scale.

Stratasys F3300
Next-generation FDM performance for faster, stronger, and more consistent part production.
3D Scanners

Scanology KSCAN-MAGIC
Composite laser 3D scanning for ultra-fast, ultra-accurate measurement of any size part.

Scanology KSCAN-E
Flagship wireless 3D scanner with ultra-high accuracy, multiple scan modes and fully portable metrology-grade performance.

Scanology TrackProbe
Metrology-grade optical 3D probing for large-scale, high-precision industrial measurement.

Scanology NimProbe
Portable, high-precision optical 3D probing and scanning system - measurement freedom without cables or constraints.

Scanology SIMSCAN-E
Palm-sized, wireless 3D scanning with high-speed, industrial-grade accuracy.

Scanology NimbleTrack GEN2
Wireless, high-precision 3D scanning for fast, detailed measurement anywhere.

Scanology KSCAN-X
Scanning system for workflow and inspection review.

Scanology TrackScan Sharp
Industrial-grade, large-volume optical 3D scanning - fast, accurate, and target-free for parts from small components to huge assemblies.

Scanology MSCAN-L15
High-precision photogrammetry for accurate measurement of large-scale parts.

Scanology NimbleTrack
Wireless, compact 3D scanning system delivering high-precision measurement for small-to-medium parts with total freedom of movement.

Scanology SIMSCAN-Gen2
Palm-sized laser 3D scanner delivering metrology-grade accuracy, speed and portability.

Scanology NimbleTrack-CR
Wireless, high-precision 3D scanning system - portable and engineered for detailed industrial or heritage-grade scanning.
Related Insights & Resources

Measurement Uncertainty in Portable 3D Scanning: Bias, Repeatability and Volumetric Error
A portable 3D scan can look reliable in a brochure and still create scrap, delay or false acceptance when bias, repeatability and volumetric error are treated as one number.

Build Time Is Not Delivery Time in Industrial 3D Printing
Industrial 3D printing speed should be judged by usable-part delivery, not machine build time alone. File preparation, machine setup, warm-up, post-processing, support removal, inspection and operator time can change which route actually delivers parts fastest.

Dimensional Change in Service: When Scan Data Reveals Wear Patterns You Can Act On
Repeated 3D scans can show where an industrial component is changing during service. With a controlled comparison and enough operating context, the scan record can support a maintenance decision, repair plan, or remake route.

Portable CMM vs Scan-Led Reverse Engineering: Choosing the Right Measurement Workflow for Legacy Parts
Legacy-part work becomes expensive when the wrong measurement route is chosen too early. Portable CMM inspection and scan-led reverse engineering answer different questions, and the right workflow depends on access, geometry, data quality, and what the team needs to decide after capture.
