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    With our in-house designers and technicians, we have the ability to work with you on nearly unlimited projects. Some examples: combination of printing and milling, Camera monitoring, Sensor Integration, plate separation and feeding for the production of hybrid components, high degree of automation for industrial level production, and much more. With the SpaceA C-Line Industrial Pellet 3D Printing, you also get an all-in-one solution.
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    Customize your own additive manufacturing centre

    Based on S-Line and B-Line.

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    Fully Automated

    Process Controlling. Line Production. ERP-System integration. Software interfaces.

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    Unlimited technical solutions for the best ROI

    Engineering. Service. Design. Market Know-How.

    SpaceA C-line 2500 | Cooperation with KUKA

    SpaceA C-line 2500 | Cooperation with KUKA
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    SpaceA Technology
    SpaceA technology is based on the layer-by-layer deposition of molten thermoplastic. A solid component can be built by solidifying this melt strand. YIZUMI′s SpaceA technology is based on 4 principles for economical use:
    - Use of a screw extruder
    - Use of a high plant modularity
    - Use of a high plant modularity
    - Use of a 6-axis positioning system Use of an industry standard control system
    Material Drying
    Material Drying
    An integrated drying unit can achieve raw material pretreatment.
    Single Screw Extruder
    Single Screw Extruder
    Most compact extruder technology with concentric feed zone and integrated drying unit.
    Positioning System
    Positioning System
    A 6-axis robotic system with positioning accuracies of 0.05 mm.
    Control on Industry Standard
    Control on Industry Standard
    Higher-level control concept with many interfaces available in the standard version.
    Material Diversity
    - The screw plasticizing unit is operated with conventional thermoplastic granulate.

    - Compared to filament-based production technologies, this enables the processing of unfilled, but also highly filled plastic compounds with simultaneously high and scalable throughputs. The possible high throughput leads to a considerable cost advantage in the processing of engineering thermoplastics. In addition, depending on the material, the low price of granulate (approx. 1 to 8 €/kg) compared to filament (approx. 20 to 500 €/kg) results in a considerable cost reduction potential.
    Productivity & Economical efficiency
    - The high productivity of the process used is based on the physical principle of shear heating within the screw extruder. In contrast to the pure plastification via heat conduction, a scalable conveying rate independent of the thermal conductivity of the material can be achieved. Depending on the process point, the throughput rate can be increased to several kilograms per hour.

    - Like previous manufacturing processes, additive manufacturing plants must also be subject to the usual investment calculations. Accordingly, the plant investment must be reduced and the material output increased at the same time. Only with high ratios of absolute investment and material output per year can an economic production be guaranteed in comparison to injection molding.
    Scalability
    - The flexibility of the system is based on the separation of the platform module and the print module.

    - Thus, a standardized production module can be combined with different platform modules, or several production modules can be combined with one platform module.

    - SpaceA, using high module design with print module and platform module, could match different products and systems for flexible production.
    High Potential of Automation
    - A 6-axis industrial robot overcomes the usual limitations of component size and design complexity. In order to ensure reproducible dimensional accuracy and high surface quality, and at the same time avoid a restriction of component complexity, subtractive processes are integrated into the manufacturing process by combining additive structure and machining in one manufacturing system.

    - Based on this approach, it is also possible to integrate inserts such as threaded or bearing bushes, injection molded parts, electronic or ceramic inserts, and to equip the component to be manufactured with additional functions. For this purpose, the machine used for extrusion and machining operations is equipped with a standardized tool-changing system, which guarantees a high degree of automation and flexibility.

    Industry Application

    Service Process

    01
    Process/Mold Analyse and Design
    • Raw materials selection
    • Product design
    • Mold flow analysis
    • Mold design suggestion
    02
    Equipment Selection Suggestions
    • Product performance
    • Product quality
    • Ease of use
    • Safety requirements
    03
    Whole Plant Planning Advice
    • Planning of production line
    • Arrangements for people, machines, and materials according to process flow
    • Peripheral automation
    • Smart connection
    04
    Delivery Solutions
    • Professional installation and debugging
    • On-site operation training
    • Molding process training
    05
    After Sales Solutions
    • YFO services
    • Preventive maintenance
    • Device upgrade
    Contact Us
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