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  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
  • Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts
Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts

Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts

  • 10 - 99 Pieces
    $4.19
  • 100 - 999 Pieces
    $3.18
  • >= 1000 Pieces
    $1.17

Customization:

Customized logo(Min.Order: 10 pieces)
Customized packaging(Min.Order: 10 pieces)
Graphic customization(Min.Order: 10 pieces)

Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Direct Metal Laser Sintering (DMLS): Enables rapid prototyping and production of complex metal parts using laser sintering technology, supporting materials like aluminum, titanium, stainless steel, and hardened metals.
  • Customization Solutions: Offers hard anodized CNC machining for precision parts, including turning, milling, and laser machining, with customizable surface treatments (anodizing/painting) and adaptable designs for specialized applications.

Key features

  • 1. Material Technology: Hard Anodized Aluminum & Corrosion-Resistant Metals

  • With hard anodized aluminum and corrosion-resistant metals like titanium and stainless steel, you can produce durable components that withstand extreme environments. This advanced material treatment offers ~30% higher durability than uncoated metals*, ensuring longevity in industrial and aerospace applications.

  • 2. Interactive Design: Customizable Mounting Solutions

  • With modular designs featuring threaded holes and customizable cutouts, you can adapt components to diverse systems. This flexibility outperforms rigid, non-modular parts, enabling tailored integration for machinery, electronics, or sports equipment.

  • 3. Performance Parameters: Rapid Prototyping & Multi-Material Compatibility

  • With rapid prototyping capabilities and compatibility with over 10 metals (including titanium and hardened alloys), you can reduce lead times by 40% versus traditional machining methods*. Precision CNC machining ensures intricate designs with micron-level accuracy.

  • 4. Scenario Solutions: Aerospace & Industrial Grade Reliability

  • With aerospace-grade material capabilities and robust construction, you can meet high-stress demands in industrial equipment, machinery, or commercial settings. The threaded mounting design ensures secure operation in continuous-use environments.

  • 5. Certification Standards: RoHS & CE Compliance

  • With RoHS and CE certifications, you can ensure regulatory compliance for global markets. These certifications guarantee safety and environmental standards, surpassing non-certified competitors in quality assurance.

Product details

Direct Metal Laser Sintering 3D Printer Rapid Prototyping Hard Anodized CNC Machining Turning Aluminum Rings Parts

The Direct Metal Laser Sintering (DMLS) 3D Printer is engineered for rapid prototyping and precision machining of complex metal components. With capabilities spanning aluminum, stainless steel, titanium, and hardened metals, it delivers high-strength parts for machinery, aerospace, and industrial equipment. Certified to RoHS and CE standards, it combines advanced laser sintering with CNC machining processes like turning, milling, and wire EDM for versatile production.

Technical specifications

FeatureSpecificationBenefit
Material CapabilitiesAluminum, stainless steel, titanium, brass, copper, bronze, steel alloys, hardened metalsSupports high-performance applications in aerospace and heavy industry
Finishing OptionsHard anodizing, painting, chemical etchingEnhances corrosion resistance, durability, and aesthetic customization
CertificationsRoHS, CEEnsures compliance with global safety and environmental regulations
Process Precision±0.005 mm tolerance (CNC machining), 20-100 µm layer resolution (DMLS)Delivers ultra-precise parts for critical engineering applications
ApplicationsRapid prototyping, aerospace components, industrial machinery, medical devicesVersatile for prototyping to end-use production across industries

Customization guide

Adjustable parameters include material composition, surface finish, and geometric tolerances to meet specialized needs. For example:

  • Optimize layer thickness (15–100 µm) for balancing speed and surface finish in DMLS.
  • Customize anodizing colors or paint coatings for branding or functional requirements.
  • Modify threaded hole dimensions (e.g., M3–M20) to align with mounting standards.

Get inspired

With the Direct Metal Laser Sintering 3D Printer, you can create lightweight yet robust components for aerospace, durable parts for industrial machinery, or intricate prototypes for rapid iteration. Its hard anodized finishes ensure corrosion resistance, while CNC precision guarantees reliability in high-stress environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Build Volume250×250×200 mm350×350×300 mm500×500×400 mm*
Layer Resolution50–100 µm30–60 µm20–40 µm
Material CompatibilityAluminum, steelStainless steel, bronzeTitanium, hardened metals
Build Speed15 mm³/s20 mm³/s (+33%)25 mm³/s (+67%)*
Surface Finish (Ra)6.3 µm3.2 µm1.6 µm

Supplier's note

  1. Three Technical Breakthroughs:

    • The Pro Model’s titanium compatibility enables aerospace-grade parts with 3x higher strength-to-weight ratios than aluminum.
    • The Advanced Model’s 30 µm layer resolution achieves smoother surfaces for medical implants or optical components.
    • All models feature dual-laser sintering, reducing build time by 20% compared to single-laser systems.
  2. Optimal Version Selection:

    • Base Model: Ideal for prototyping and small-batch production of non-critical parts (e.g., brackets, fixtures).
    • Advanced Model: Suited for industrial machinery and automotive components requiring mid-range precision and corrosion resistance.
    • Pro Model: Designed for aerospace and defense applications where extreme durability (e.g., titanium turbine blades) and micron-level accuracy are critical.

*Pro Model’s build speed and volume exceed industry benchmarks by 67% and 100%, respectively.

Frequently asked questions

  • Which Direct Metal Laser Sintering (DMLS) 3D printer model suits aerospace rapid prototyping needs?

  • How do I maintain CNC-machined aluminum rings to prevent corrosion?

  • Should I choose aluminum or stainless steel for industrial equipment parts?

  • Can parts be customized with hard anodizing or painting finishes?

  • Are your machined parts compliant with CE and RoHS standards?

  • What’s the process for rapid prototyping complex metal parts via DMLS?

  • Can CNC machining handle hardened metals like titanium or alloy steel?

  • How precise are CNC-turned aluminum rings for machinery applications?

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