Industrial Furnace – TT-IF-X-1200

Parent Product

The TT-IF-X-1200 is a high-temperature industrial furnace designed for precision heat treatment applications, featuring an automatic door system for safe and efficient operation. With a maximum operating temperature of 1200°C and a continuous working temperature of 1100°C, it is well-suited for processes such as quenching, tempering, normalizing, and annealing of metal components. Beyond metallurgical use, this furnace is also effective for the sintering of non-metallic ceramic materials, making it a versatile solution across research, testing, and industrial environments.

Equipped with a 500 × 600 × 500 mm chamber, the TT-IF-X-1200 offers ample capacity for small-scale production and laboratory testing. It utilizes alloy resistance wire (HRE) heating elements combined with an N-type thermocouple, ensuring precise temperature accuracy of ±1°C. Operating at 380V, the furnace combines durability, reliability, and consistent performance to meet the rigorous demands of both laboratory research and industrial production workflows.

Industrial Furnace – TT-IF-X-1200

Industrial Furnace – TT-IF-X-1200

  • Metallurgical Heat Treatment – Supports quenching, tempering, normalizing, and annealing of steel, alloys, and other metal components with uniform thermal performance and precise control.

  • Ceramic Sintering – Suitable for sintering and densification of non-metallic ceramic materials, ensuring stable structural integrity and consistent material properties.

  • Research & Laboratory Testing – Provides reliable, repeatable results for academic and industrial R&D, ideal for small-scale production runs and experimental studies.

  • Tooling & Machining Industries – Delivers accurate heat treatment for high-speed steels, cutting tools, dies, and molds to enhance strength, durability, and wear resistance.

  • Construction Material Processing – Supports the thermal treatment of metal-based construction materials, improving hardness, stability, and structural performance.

  • Quality Control & Certification – Enables precise and repeatable high-temperature testing for product validation, compliance verification, and certification under ISO, CE, SGS, and TÜV standards.

Furnace Shell

  • The shell is constructed from Q235 low-carbon steel, featuring an electrostatically resistant and corrosion-resistant surface.
  • Its durable metal frame structure helps maintain a low external temperature.
  • The electro-hydraulic lifting door includes a built-in limit switch.
  • Users can choose between a push-button or foot-pedal operated automatic door opener.

Refractory

  • The furnace includes a multi-layer insulation system with double-layer lightweight refractory brick lining for enhanced structural integrity.
  • It’s free of asbestos, offers strong thermal resistance, and ensures minimal heat loss with reduced energy consumption.

Heating System

  • Equipped with high-quality metal or ceramic heating elements, the system delivers efficient, radiation-based heating throughout the chamber.
  • Heating is applied on three sides—left, right, and bottom—for consistent temperature distribution.
  • A silicon carbide base plate shields the bottom heating elements, offering excellent mechanical strength and thermal conductivity while supporting horizontal loading.

Temperature Control Panel

  • The system uses PID and SCR control modes for precise temperature regulation.
  • An international-standard thermocouple extends service life.
  • For added safety, the door is fitted with a power-cut switch that activates when opened.
  • The temperature controller is located on the right side of the furnace, with an optional external control cabinet available.

Program Controller

  • Features advanced controls to meet complex thermal processing requirements.
  • User-friendly interface with flexible programming options.
  • Supports up to 30 programmable segments per temperature curve.
  • Built-in alarms for over-temperature and system faults, along with automatic safety shutdown.
  • Optional features include manual air intake and an automatic lift-type exhaust system.
  • A rapid cooling system is also available for quick cooling when chamber temperatures fall below 400°C.

Model

Chamber size(mm)

Chamber volume

Max temp.

Working temp.

Voltage

Power

Heating element

Temp Precision

TT-IF-100-1200P400×530×460100L1200℃1100℃380V15KWHRE±1℃
TT-IF-150-1200P450×530×590150L1200℃1100℃380V24KWHRE±1℃
TT-IF-200-1200P500×530×720200L1200℃1100℃380V27KWHRE±1℃
TT-IF-300-1200P550×700×780300L1200℃1100℃380V45KWHRE±1℃
TT-IF-660-1200P600×1100×1000660L1200℃1100℃380V60KWHRE±1℃
TT-IF-1000-1200P800×1000×12501000L1200℃1100℃380V80KWHRE±1℃
TT-IF-96-1400P400×600×40096L1400℃1300℃380V21KWSIC±1℃
TT-IF-150-1400P450×530×590150L1400℃1300℃380V25KWSIC±1℃
TT-IF-200-1400P500×530×720200L1400℃1300℃380V28KWSIC±1℃
TT-IF-288-1400P600×800×600288L1400℃1300℃380V30KWSIC±1℃
TT-IF-640-1400P800×1000×800640L1400℃1300℃380V50KWSIC±1℃
TT-IF-1200-1400P1000×1200×10001200L1400℃1300℃380V100KWSIC±1℃
TT-IF-96-1700P400×600×40096L1700℃1600℃380V25KWMoSi2±1℃
TT-IF-150-1700P450×530×590150L1700℃1600℃380V30KWMoSi2±1℃
TT-IF-200-1700P500×530×720200L1700℃1600℃380V40KWMoSi2±1℃
TT-IF-288-1700P600×800×600288L1700℃1600℃380V50KWMoSi2±1℃
TT-IF-640-1700P800×1000×800640L1700℃1600℃380V80KWMoSi2±1℃
TT-IF-1200-1700P1000×1200×10001200L1700℃1600℃380V150KWMoSi2±1℃

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