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Kings Industrial SLM 3D Printers

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Kings Industrial SLM 3D Printers

SLM 3D Printing – Precision, Strength, and Innovation

Take manufacturing to the next level with Selective Laser Melting (SLM) technology, the cutting-edge solution for producing high-performance metal parts with unmatched precision and complexity.

SLM uses a high-powered laser to melt and fuse metal powder layer by layer, directly from a 3D digital model. This advanced process enables the creation of intricate, high-strength components that traditional manufacturing simply cannot achieve.

How It Works:

🔹 A thin layer of fine metal powder—such as aluminium, titanium, or stainless steel—is evenly spread over the build platform.
🔹 A laser precisely scans each layer, melting and bonding the particles to form the object’s cross-section.
🔹 The build platform lowers, and the process repeats until the final part is fully formed.

Why Choose SLM?

✅ Complex Geometries – Design without limits, producing intricate, lightweight, and optimised structures.
✅ Superior Strength & Durability – Create components with exceptional mechanical properties, perfect for demanding applications.
✅ Rapid Prototyping & Production – Move from design to finished part quickly and efficiently, reducing lead times.
✅ Industry-Proven Performance – Used in aerospace, automotive, medical, and engineering, delivering reliable, high-quality results.

With SLM 3D printing, the future of manufacturing is here—where precision meets performance to create parts that push the boundaries of possibility.

Features

  • High-precision scanning galvanometer ensure high precision and strong stability

  • Dual circulation wind site protection system: Dual-circulation
    wind site protection system to extend the lifespan of the optical
    components

  • Fully pop-up piston system: Equipped with a fully pop-up piston
    system, it is more convenient and quicker to replace metal
    powders, and 100% eliminates cross powder contamination
    when replacing powders

  • All closed looped powder handling system: The low oxygen
    content in the manufacturing environment ensures that the
    metal is not oxidized, and is compatible with powders of
    different specifications

 

Ideal Applications

 

SLM printers can create models that are impossible to manufacture with standard manufacturing techniques. Models can be hollow or built with internal channels and components integrated into the design. SLM printing is commonly used in aerospace for reducing part counts and increasing reliability by creating a single part with coolant channels ducting and electrical components all integrated into one part.

 

  • Rapid Prototyping

 

SLM printers are highly effective for rapid prototyping due to their ability to swiftly produce intricate designs with minimal setup time. By fabricating parts layer by layer, these printers significantly reduce lead times compared to traditional manufacturing methods, making them ideal for quickly iterating on designs. Moreover, SLM technology enables the creation of complex geometries that would be challenging or impossible to achieve through conventional means, offering designers the freedom to explore innovative concepts without constraints. Additionally, SLM printers provide the flexibility to work with various metals, allowing engineers to prototype parts with specific material properties tailored to their requirements. While there may be higher upfront costs, the long-term cost-effectiveness of SLM printing, coupled with the ability to identify and address potential issues early in the development process, makes it a valuable tool for rapid prototyping across industries.

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  • Jewelry design 

SLM printers revolutionize the jewelry-making process by offering unparalleled precision and versatility. With these printers, intricate and customizable jewelry designs can be brought to life efficiently and with exceptional detail. The layer-by-layer fabrication method allows for the creation of complex geometries, intricate patterns, and delicate filigree work that traditional manufacturing techniques struggle to achieve. Jewelry designers can explore innovative concepts and experiment with various materials, including precious metals like gold, silver, and platinum. This technology enables the production of bespoke pieces tailored to individual preferences, whether it's personalized pendants, intricate earrings, or unique rings. While SLM printing may require initial investment, its ability to streamline production, minimize material waste, and deliver high-quality, customizable jewelry makes it an invaluable tool for modern jewelry design and manufacturing.

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  • Healthcare

 

SLM printers offer transformative capabilities in healthcare and dental applications, advancing both patient care and manufacturing processes. In healthcare, these printers facilitate the creation of patient-specific implants, prosthetics, and surgical instruments with unmatched precision and customization. Surgeons can leverage SLM technology to produce implants tailored to the unique anatomy of individual patients, leading to improved outcomes and reduced recovery times. Dental laboratories benefit from SLM printing by fabricating highly accurate crowns, bridges, and dental frameworks, streamlining production and ensuring optimal fit and functionality for patients. Additionally, SLM printers enable the fabrication of intricate dental models for treatment planning and educational purposes. The ability to work with biocompatible materials ensures that the final products meet stringent regulatory standards and provide safe, reliable solutions for patients. Overall, SLM printers are driving innovation in healthcare and dental industries, empowering practitioners to deliver personalized, high-quality care while enhancing manufacturing efficiency and quality control.

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Image Gallery

 

Below are examples of completed projects utilising SLM printers.

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Technical Specifications

General information

Printing technologySelective Laser Melting

Printing material316L,Ti6AI4V,AISi10Mg,In 718, CuSn10, CoCr,18Ni300 etc, more materials

Build Dimensions120x120x120mm

Printer Dimensions1200*800*1700mm

Laser TypeDual IPG Lasers, 2×500W

Max Scanning Speed15m/s

Powder DeliveryDouble Cylinder One Way Powder Feeding

Layer Thickness0.02 - 0.1mm

Inert Gas ProtectionNitrogen/Argon

Power

Rated Power220V AC 50/60HZ 32A Single Phase

Contact Mauritius

ARISE HARDWARE & SOLUTIONS LTD

Telegu Temple Road

Baramia

Rose Belle

Mauritius

Email : arise.hsltd@gmail.com

Contact Australia

ORIUS3D

1 Berry Street

Essendon North

Victoria 3041

Australia

Email : yanickbarry@orius3d.com

Talk to us 

For any inquiries or assistance with 3D printing and additive manufacturing, whether you're a hobbyist, a professional, or an educational institution, feel free to reach out. We provide expert guidance, tailored solutions, and dedicated support to help you achieve your goals.

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