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Rapid Prototyping en

Core Rapid Prototyping Technologies

🖨️

3D Printing (Additive Manufacturing)

Multiple processes including SLA, SLS, FDM, PolyJet, suitable for concept validation, assembly testing, and small-batch functional parts production.

  • SLA: High precision, smooth surface finish
  • SLS: Functional parts, support-free
  • FDM: Low cost, fast delivery
  • Metal 3D Printing: Complex structural parts
⚙️

CNC Prototype Machining

3-axis/5-axis CNC machining, suitable for high-precision, high-strength engineering verification samples with real materials.

  • Wide material selection (metal/plastic)
  • Dimensional accuracy ±0.05mm
  • Various surface treatments
  • Small batch production
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Silicone Molding (Vacuum Casting)

Rapid small-batch replication for product展示, market testing, assembly verification, optimal choice for cost and cycle time.

  • Small batches of 5-50 pieces
  • Lead time 2-3 weeks
  • Multiple material options
  • High cost-effectiveness

Typical Application Scenarios

Design Validation

Appearance review, ergonomic testing, assembly verification, spatial arrangement checks, identifying design issues early.

Functional Testing

Structural strength testing, motion mechanism verification, environmental testing, electronic component assembly testing.

Market Testing

Customer feedback collection, exhibition samples, pre-sale validation, packaging design verification.

Low-volume Trial Production

Market launch before mold development, special customized products, medical/aerospace verification parts.

Sample Development Process

1

Requirements Analysis & Technology Selection

Clarify sample purpose (appearance/function/testing), quantity, budget, timeline, recommend optimal technical solution.

2

Data Preparation & Optimization

3D data checking, wall thickness analysis, support optimization, machining strategy development to ensure manufacturability.

3

Process Execution & Monitoring

Material selection, parameter setting, process monitoring, post-processing (sanding, painting, silk screening, etc.).

4

Quality Verification & Delivery

Dimensional inspection, functional testing, appearance review, packaging and shipping, complete deliverable management.

Quick Reference for Technology Selection

Requirement Characteristics Recommended Technology Typical Lead Time Cost Range
Concept validation, single piece, fast FDM 3D Printing 1-3 days Low
High-precision appearance parts, assembly testing SLA 3D Printing 3-7 days Medium
Functional testing, small batch (5-20 pieces) Silicone Molding 2-3 weeks Medium
Engineering verification, real materials, high precision CNC Machining 1-2 weeks Medium-High
Complex metal parts, lightweight structures Metal 3D Printing 2-4 weeks High

Need Sample Development Solution Advice?

Unsure which technology is best for your project? Based on 20 years of experience, I can provide technology selection, cost evaluation, and supplier recommendations.

Consult Aman