Consumer Products
Consumer product teams balance design iteration, fixture demand, material choice, and launch constraints while keeping the manufacturing route practical. D2M helps teams assess where additive manufacturing supports product development, tooling, validation aids, and controlled small-batch workflows.

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
Consumer product teams balance design iteration, fixture demand, material choice, and launch constraints while keeping the manufacturing route practical.
D2M helps teams assess where additive manufacturing supports product development, tooling, validation aids, and controlled small-batch workflows.
Technology Routes for Consumer Products
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 Origin® Two
P3 photopolymer 3D printing system for selected applications where accuracy, material route, workflow, and production requirements need to be reviewed.

Stratasys J850™ Pro
Multi-material PolyJet prototyping that delivers parts which look, feel and function like final products.

Stratasys Neo® 800+
Large-format SLA system for applications where accuracy, surface finish, resin route, and workflow requirements need to be reviewed.

Stratasys Neo® 450s
System route for application and workflow review.

Stratasys J850™ Prime
System route for application and workflow review.

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 H350™
Industrial SAF™ 3D printing for consistent, high-volume production with competitive part costs and streamlined workflows.

Stratasys J826™ Prime
Compact, full-colour, multi-material PolyJet printing for fast, high-fidelity product prototypes.

Stratasys F170™
Accessible industrial-grade 3D printing with dependable accuracy, easy operation and versatile materials for classrooms and offices.

Stratasys Neo® 800
System route for application and workflow review.

Stratasys J35™ Pro
Compact PolyJet for detailed prototypes with rigid, clear and flexible regions.

Stratasys F370®
Accessible industrial FDM printing with reliable performance, versatile materials, and easy operation for office or shop-floor use.

Stratasys F770®
Large-format industrial FDM printing for full-scale parts, production tooling and big builds at an accessible price point.

Stratasys J55™ Prime
Compact full-color PolyJet printing with tactile, functional and multi-material capability for office-ready design workflows.

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

Stratasys J850™ TechStyle™
Direct-to-textile PolyJet printing for full-color, multi-material fashion designs impossible with traditional methods.

Stratasys F870
Large-format industrial FDM printing for tooling, jigs and functional parts.
3D Scanners

Scanology 3DeVOK MQ
A wireless, marker-free professional 3D scanner designed for flexible, everyday creation and measurement.

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

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 3DeVOK MT
A versatile professional 3D scanner combining laser and speckle technology for fast, accurate, marker-free scanning.

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.
Compatible Materials

ABS-M30

ABS-M30i

FDM Support Materials

ASA

ABS-CF10

HIPS (High Impact Polystyrene)

ABSi P500

Nylon 12

ABS-ESD7

Agilus 30 Family

Polylactic Acid (PLA)

Somos® DMX SL™-100

Somos® EvoLVe™ 128

Somos® NeXt™

Somos® ProtoGen™ 18420

Somos® WaterShed® XC 11122

SUP705™

Vero™ContactClear
Related Insights & Resources

How Realistic Can a Full-Colour 3D Printed Prototype Be?
See what full-colour PolyJet prototypes can reproduce, what affects realism and when the added visual fidelity is worth the cost.

Recycled Powder in Additive Manufacturing: How to Assess Fit
Recycled or reused powder may support material-efficiency goals when application suitability, powder condition, handling, traceability, testing, and quality controls are defined. This article explains how teams should evaluate powder reuse before making ESG, cost, or production claims.

3D Printing Packaging Machinery Parts: How to Assess Suitability
Additive manufacturing can support selected packaging machinery change parts, guides, guards, brackets, fixtures, jigs, nests, covers, and replacement components when part function, material route, hygiene requirements, inspection, documentation, and operational risk are reviewed first.

SAF Batch Manufacturing: How to Assess Fit After Prototyping
SAF additive manufacturing can support selected bridge production, low-volume production, spare parts, jigs, fixtures, and controlled batch manufacturing when part suitability, demand profile, nesting, post-processing, inspection, documentation, and qualification requirements are assessed first.




