MTI CORPORATION, USA


1500°C Atmosphere Controlled Quenching Furnace with 82 mm OD Mullite Tube - OTF-1500X-80-VTQ


   

      Product Introduction

      OTF-1500X-80-VTQ is a split vertical quenching tube furnace with 84 mm OD mullite tube, which is designed for
      quenching sample from high temperature ( Max. 1500 ° C) into ice water or oil rapidly to study material
      phase transition and microstructure.

      Specifications :

     Furnace Structure
  • Double layer steel structure with air cooling to keep case temperature less than 65°C.
  • Vertical and splittable for easy installation.
  • The tube is sealed by a gate valve at the bottom flange. For quenching, open the gate valve and let the sample
    drop directly into the liquid container by activating the electromagnetic sample release.
  • Operation control made easy with a newly designed electric gate valve.
  • Electromagnet sample release flange with water cooling is included.
      Input Power
  • AC 208-240V Single Phase, 50/60 Hz
  • 6 KW (40A Breaker)
      Heating Temperature
  • 1500°C < 30 minutes
  • 1400°C < continuous
      Max. Heating Rate
  • ≤ 10°C /min
      Click on the picture

      


      Electromagnet Sample Release Flange & Quenching Media Tank

             
  • Fully automatic electromagnet sample release flange.
  • Hinged plate hooks the cable, which pulls the sample.
  • Hinged plate drops when the electromagnet powers off. The sample and the cable fall into the quenching tank.
  • Rings are available for hanging the tube block with cables.
  • Improved top flange design allows easy sample reload without uninstalling all parts of the flange.
  • Bottom flange is connected with a 4" gate valve ( electrically operated ) via CF-100 adaptor.
  • The gate valve is connected with a quenching media container in size 400 L x400 W x 200 H mm.
  • Caution: You must use ice water or cooled oil as quenching agent if quenching under vacuum.
      Click on the picture

                           

         1. Flange Structure                  2. Flange Operation                   3. Gate Valve                  4. Quenching Tank

             

         5. Quenching                              6. Pulling Cable
  • Compared to electromagnet cable drop quenching, traditional approach (Cable Cut Quenching) consumes cables.

 

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