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Debinding Furnace for Thermal Post-Processing in Additive Manufacturing

$64.16 $127.68
ZYLAB 1200°C Debinding Furnace Introduction ZYLAB 1200°C Debinding Furnace is a high-performance solution tailored for thermal post-processing of metal and ceramic parts produced via additive manufacturing. Engineered for precision binder removal under vacuum or controlled atmosphere, this furnace is ideal for applications that require mid-range temperature debinding and pre-sintering treatment. It offers a cost-effective alternative to high-temperature systems, while maintaining high thermal uniformity, excellent process repeatability, and intuitive digital control — making it especially suitable for labs, research institutes, and pilot-scale production lines. Key Features 1150°C Max TemperaturePerfect for binder burnout and low-temperature sintering in metal or ceramic-based AM parts. Dual Atmosphere OperationCompatible with vacuum and inert gas environments (argon, nitrogen), ensuring clean and controlled processing. Precise PID Temperature ControlAdvanced fuzzy logic controller with ±1°C accuracy and multi-step programmable profiles. Uniform Heating with High-Efficiency InsulationAlumina fiber insulation and optimized heating layout deliver fast heating and uniform temperature distribution. User-Friendly InterfaceTouchscreen operation, curve display, auto-start, and real-time data logging for easy, intelligent control. Built-in Safety SystemIncludes over-temperature protection, gas pressure monitoring, and cooling system safeguards. Customizable Chamber DesignFurnace chamber size and structure can be tailored based on specific application needs. Applications of 1200°C Debinding Furnace Binder removal of 3D printed metal components in Metal Fused Filament Fabrication (Metal-FFF) or Metal SLA. Pre-sintering treatments for ceramics, including green body densification and phase stabilization. Debinding of MIM-like parts before high-temp sintering. Suitable for R&D, prototyping, and low-volume production. Technical Specifications Model VA1200-30 Power Supply AC 380V, 12KW Maximum Temperature 1150°C Continuous Working Temp 1100°C Furnace Chamber Size 300 × 300 × 400 mm Vacuum Level ≤100 Pa Recommended Heating Rate ≤20°C/min Temperature Accuracy ±1°C Heating Element Acid- and Corrosion-Resistant Alloy Heating Wire Control System Multi-step sintering curve setting with real-time curve display Scheduled sintering for unattended operation Real-time display of power/voltage and data logging with export Remote monitoring and control (IoT-enabled) Non-linear temperature correction during the entire sintering process Optional Configuration Copper electrode feedthrough (vacuum-sealed, connects to external heating system) Safety Notes Do not open the chamber above 300°C. Minor insulation cracks are normal. Support & Warranty 1-year warranty (excluding consumables); lifetime technical support FAQ – 1200°C Debinding Furnace Q: What is the ZYLAB 1200°C Debinding Furnace used for?A: It is designed for thermal post-processing of metal and ceramic parts made by additive manufacturing, particularly for debinding, low-temperature sintering, and pre-sintering under vacuum or inert gas. Q: What types of 3D printed materials are compatible with this furnace?A: The furnace is ideal for metal-polymer composite filaments (e.g. Metal FFF), ceramic green bodies, and other AM parts that require controlled binder removal or densification below 1200°C. Q: Can the system store and record thermal process data?A: Yes. It can store up to 20 temperature profiles and record key process data like temperature, power, and time. Data can be exported for analysis or documentation. Q: Does this furnace require external cooling?A: For high-temperature operation, connection to a water chiller is necessary to protect sealing components like silicone gaskets. Q: Can the furnace chamber be customized?A: Yes, ZYLAB offers customized chamber sizes and feedthrough options based on user requirements and sample dimensions. For More Content Please read our blog: Applications of Vacuum Furnaces in Materials Preparation: An In-Depth Guide For More Options on Additive Manufacturing(3D Printing) Please visit our website [Additive Manufacturing(3D Printing)] For More Options on High Temperature Furnaces Please visit our website [High Temperature Furnaces Collection] Get In TouchFill out the form below — free quote and professional suggestion will be sent for reference very soon! Name Email* Message Send
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