iSLM350D

iSLM350D is an industrial-grade metal 3D printer, which can produce high-quality metal parts with a large build volume. The printer utilizes advanced technologies for gas recirculation and Dual Laser path generation, enabling efficient and cost-effective production of metal parts for various industries including aerospace, automotive, industrial, and medical.
3D Printing Technology
Selective Laser Melting (SLM)
Beam (diameter@1/e2)
0.06~0.20mm
Parts Scanning Speed
up to 10.000mm/sec
Build Volume
350mm × 350mm x 500mm

Printer Overview

The iSLM350/350D is an industrial machine focused at producing specialized, industrial components with complex geometries. Using advanced laser sintering, it offers incredible accuracy and flexibility, making it perfect for industries that need durable, high-performance components.

The printer's build space of 350mm(X) x 350mm(Y) x 500mm(Z) makes it a production machine. In aerospace, it produces components such as turbine blades, heat exchangers, and fuel system parts, designed to meet the industry’s performance and safety requirements. In the automotive sector, it is used to manufacture parts like exhaust manifolds and lightweight engine components, contributing to improved fuel efficiency and vehicle performance. In the medical field, it enables the production of patient-specific implants, surgical tools, and orthopedic devices with precision.

iSLM350D is also used in industrial tooling to create customized jigs, fixtures, and cutting tools that support production processes. In the energy sector, the printer is applied to produce components for turbines, pumps, and heat exchangers, designed for thermal and mechanical performance in demanding environments.

 

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Technical Advantages

• High Accuracy: Achieves up to 0.05 mm, ensuring precise manufacturing.

• Efficient Optical Scanning: High-speed scanning galvanometer with adjustable beam diameter (0.06–0.20 mm) enhances productivity.

• High-Quality Components: Built with high-quality components such as IPG Laser, Scanlab Galvos, Siemens PLCs, and Omron sensors.

• Open Parameters - Open Materials: More than 200 parameters are available to users, allowing full customization.

• Open Software: Supports GCode editing and custom parameter adjustments for enhanced control.

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ANiMA's 5 Core Pillars

At ANiMA, our offerings are guided by five core pillars that define our commitment to excellence:

• Quality Machines: We ensure every machine meets the highest standards of performance and reliability.

• Good Price: Our solutions are competitively priced to provide the best value without compromising quality.

• Great Parts: Each machine is designed to produce exceptional, high-precision parts that meet your needs.

• Open Materials: Flexibility is key, and our machines support a wide range of materials for diverse applications.

• Excellent Support: From installation to ongoing maintenance, we provide comprehensive support to ensure your success.

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Building Functional Metal Parts

The printer excels in directly producing functional complex geometric parts such as snap-fit or loose joint hinges, offering versatility and precision in its output. It accommodates a wide range of materials, including metal powders that can be single metals or alloys, providing flexibility to meet various application requirements.

Particularly suitable for manufacturing single parts or small batches of functional components, it caters to diverse industries including industrial production, prototyping, research, dental, and medical fields. With its ability to deliver intricate and high-quality prints efficiently, the printer serves as an indispensable tool for producing critical parts and prototypes with exceptional accuracy and reliability.

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Printing in SLM

SLM is a 3D printing technology that uses metallic powder to print metal objects instantly.

During printing, a coating mechanism (the recoater) spreads a layer of metallic powder on the printing plate and a powerful laser beam selectively melts the powder of the current layer. After the fusion is complete, the printing platform is moved down one layer, and the process is repeated until the entire object is fused. The whole process is carried out in a chamber, with a shielding gas, to prevent the metal from reacting with other gases at high temperatures.

The main advantage of SLM technology is that it offers many new options in manufacturing metal parts, such as geometric freedom in design, weight reduction, flexibility in prototyping, and speed in producing metal objects in small quantities.

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Laser Type Fiber laser × 2
Laser Wavelength 1064nm
Laser Power 500W×2 (Single laser optional)
Process The scraper spreads powder in both directions
Normal Build 0.05mm
Rapid Profile 0.05~0.15mm
Quality Profile 0.02~0.05mm
Beam (diameter@1/e2) 0.06~0.20mm
Scanning Galvanometer High Speed Scanning Galvanometer × 2
Parts Scanning Speed up to 10.000mm/sec
Reference Building Speed 15~50cm³/h
Protective Gas Nitrogen (N2) / Argon (Ar)
Flow Control 0~3 L/min intellient adjustment
Dust Extraction Control Efficient protective gas circulation system
Build Vat Volume About 63L
XY Platform 350mm(X)×350mm(Y)
Z Axis 500mm (Z height includes thickness of build plate)
Max Weight 150kg
Build Vat Type Precision resistance wire heating
Materials Titanium alloy, aluminum alloy, superalloy, cobalt-chromium alloy, stainless steel, copper alloy, high-strength steel, mold steel, etc
Network Ethernet, TCP/IP, IEEE802.3
Control Software 3D-Layer, Presto-SLM, ZRapid-Slice Viewer
Data Preparation Software 3dLayer
Data Interface CLI file, SLC file, STL file
Power 380V(±10%) AC 50/60Hz, three-phase, 25A
Ambient Temperature 20-26ºC
Relative Humidity Less than 40%, non-condensing
Installation Condition Size 1.95m(W)×1.43m(D)×2.5m(H)
Installation Condition Size Approx. 2500kg
Warranty Laser: 5000 hours or 12 months (whichever comes first) Main Machine: 12 months from installation date