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In-House SLS Technology Since 1994

産業用 SLS 3Dプリンター for Sand Molds & Cores

Print coated-sand molds, cores and PSB wax patterns on one industrial platform — with zero support structures, ±0.1 mm accuracy and sand-mold strength up to 4–6 MPa. From prototype to serial production, 3DPTEK SLS systems have been proven in foundries for over 30 years.

30年以上 SLS & Casting
500+ Machines Installed
0 Support Structures
0.08-0.35mm 最小層厚
One Machine, Two Material Systems
4–6 MPa Sand Mold Strength
<0.02% Wax Ash Content
±0.1 mm Print Accuracy

What Is Selective Laser Sintering (SLS)?

SLS is a powder-bed fusion technology that uses a high-powered CO2 laser to selectively fuse powdered material layer by layer. Because the unsintered powder acts as a natural support, SLS requires no support structures — so you can print complex internal channels, thin walls and dense part nesting that would be impossible or costly with other processes.

3DPTEK builds two specialized SLS material systems on the same proven hardware platform. Our coated-sand system produces strong, dimensionally accurate sand molds and cores for direct metal pouring. Our PSB wax system creates detailed sacrificial patterns for investment casting with ash content below 0.02%.

Both systems share precision CO2 laser optics, automated powder handling and industrial-grade motion control. On LaserCore platforms you can switch between sand and wax on the same machine — one capital investment, two production lines.

Explore Wax 3D Printers for Investment Casting
SLS laser sintering process diagram showing powder bed fusion

±0.1 mm

Print Accuracy

0.08~0.35 mm

層の厚さ

4–6 MPa

Sand Mold Strength

<0.02%

Wax Ash Content

Why Foundries Choose SLS 3D Printing

Four reasons manufacturers select Selective Laser Sintering over alternative additive processes — and why our customers run their production on 3DPTEK SLS systems.

No Support Structures

Powder holds the part during printing, so complex channels, undercuts and thin walls print freely — no support design, no support removal, cleaner surfaces.

Maximum Nesting Density

Stack parts in 3D across the full build chamber. Pack dozens of molds, cores or patterns into a single print run to maximize machine value.

One Platform, Two Materials

Switch between coated sand and PSB wax on the same machine. Serve both sand casting and investment casting customers with one capital investment.

Rapid, Accurate Production

Up to 150–400 cm³/h on LaserCore-5300, with layers from 0.08 mm and ±0.1 mm accuracy. Prototypes and production run on the same system.

Dual‑Process Compatible SLS Platform

Our SLS platform hardware supports both coated sand and PSB wax materials. Machines ship in single‑material factory configuration, enabling flexibility for sand casting or investment casting workflows.

3DP + SLS Hybrid Process — Industry Recognized

The combined process of 3DP-printed outer molds and SLS-printed cores was selected into the MIIT Additive Manufacturing Typical Application List. It is the production-proven answer for complex pipeline and oil-passage castings.

SLS 3D Printing Applications

From sand casting molds to investment-casting wax patterns, SLS technology delivers results across the foundry workflow.

Sand Casting Molds & Cores

Direct-print complex sand molds and cores with 4–6 MPa strength. Eliminate patterns and cut lead times from weeks to hours.

Wax Patterns for Investment Casting

SLS-printed PSB patterns with <0.02% ash for clean burnout — ideal for thin-wall, complex, high-integrity castings.

大判印刷

LaserCore 6000 handles the biggest jobs. Print multiple molds or patterns simultaneously for maximum throughput.

Why Manufacturers Buy SLS Printers from 3DPTEK

An SLS printer is a long-term production asset. Here is why 500+ customers trust 3DPTEK to deliver machines that keep running.

30+ Years of SLS & Casting

3DPTEK has developed and refined SLS equipment and casting processes since 1994. Your production benefits from three decades of proven process know-how.

500+ Machines Installed

More than 500 3D printing systems are in daily production with manufacturers worldwide — a track record that de-risks your investment.

We Use Our Own Printers

3DPTEK operates 6 owned foundries running our own machines. Every system is refined in real production before it reaches your floor.

Self-Developed Software & Global Components

AFSWin V8.4 control software is developed in-house, while optics, drives and core components come from global first-tier brands — for stability you can schedule production around.

Trusted by Leading Manufacturers

AECC AVIC CASC NORINCO CETC YUCHAI GEELY CHERY CSSC SRIF

SLS 3D Printer Pricing & Investment Guide

Industrial SLS is a strategic investment. Understanding the cost drivers and expected returns helps you make a confident decision.

Entry-Level
$200K—$400K

Compact systems for in-house prototyping & small-batch production

  • Build volume: 500—800 mm
  • Single laser configuration
  • Ideal for pattern shops & small foundries
  • Typical ROI: 12—18 months
Large-Format
$700K—$1M+

Flagship systems for oversized castings & maximum throughput

  • Build volume: 1,000—1,500+ mm
  • High-power multi-laser options
  • For heavy industry & serial production
  • Typical ROI: 6—12 months

What Determines Your Final Price?

造形容積

Larger build chambers require more robust frames, longer linear rails, and higher-capacity powder handling systems.

Laser Configuration

Laser power (55W—120W), scanning speed and optical precision directly impact throughput and system cost.

Automation & Accessories

Automated powder recycling, breakout stations, and build platform exchange systems add capability and cost.

Installation & Training

On-site installation, operator training, and first-year service contracts are included in every quotation.

Every foundry has different needs. Tell us about your parts, materials, and volume targets, and we will build a tailored proposal — with a clear ROI projection.

よくある質問

  • Selective Laser Sintering (SLS) is a powder-bed fusion process where a CO2 laser selectively fuses powdered material layer by layer to create solid objects. A roller spreads a thin layer of powder across the build platform, the laser traces the cross-section, the platform lowers, and the process repeats. The unsintered powder acts as a natural support, eliminating the need for support structures.

  • Our SLS printers support two material families: coated sand (for foundry sand molds and cores) and PSB polystyrene wax (for investment casting patterns). Both materials are formulated and tested for optimal performance with our CO2 laser systems.

  • Coated-sand SLS molds reach a strength of approximately 4–6 MPa with high dimensional accuracy and good surface quality. They are ideal for complex pipeline and oil-passage castings and are frequently used for high-strength sand cores, often combined with 3DP-printed outer molds.

  • Yes. LaserCore-5300 and LaserCore-6000 are dual-purpose SLS platforms. Switch between coated sand for sand molds and cores and PSB wax powder for investment casting patterns on the same machine — two production lines from one capital investment.

  • 3DP binder jetting prints large outer molds quickly, while SLS produces strong, high-precision cores and complex sand structures. The hybrid process of 3DP-printed outer molds plus SLS-printed cores has been selected into the MIIT Additive Manufacturing Typical Application List — the proven answer for complex pipeline castings.

  • Industrial SLS 3D printers range from approximately $200,000 to over $1,000,000 depending on build volume, laser power, automation features, and options. Contact our sales team at sales@lyafs.com for a customized quotation based on your requirements.

  • SLS requires no support structures, allowing complex geometries and dense part nesting. It produces parts with isotropic mechanical properties suitable for functional use. The powder bed enables stacking parts in 3D for maximum throughput. For foundry applications, SLS delivers mold-ready surfaces and burnout-ready patterns with no post-curing required.

Ready to Add SLS to Your Foundry?

Tell us your application, target materials, and production volume. Our engineers will recommend the right system.