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ECS-N Mini Hybrid Tube/Muffle Furnace (Max. 1200℃), ENMHTMF

ECS-N Mini Hybrid Tube/Muffle Furnace (Max. 1200℃), ENMHTMF

In Stock SKU: ENMHTMF
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A hybrid tube/muffle furnace is a versatile 2-in-1 laboratory instrument designed to function as both a box (muffle) furnace for bulk air-heating and a vacuum tube furnace for controlled-atmosphere processing.

The hybrid system utilizes a standard rectangular heating chamber with a specialized "top-entry" or "side-entry" port. (1) Muffle Mode (Box Furnace): Operator removes the processing tube and insert a ceramic insulation block into the port. The chamber functions as a high-volume box furnace, ideal for ashing samples, calcining raw precursors for NFPP, or heat-treating large batches of materials in air. (2) Tube Mode (Controlled Atmosphere): Operator inserts a high-purity Quartz or Alumina tube through the port. With vacuum flanges attached, the furnace can now perform CVD, Annealing under Argon, or Hydrogen reduction, allowing you to protect reactive sodium compounds from oxygen and moisture.

Part Number
  • ENMHTMF (EN-MHTMF)
General Features
  • The vacuum level can be up to 10^(-3) ~ 10^(-5) Torr.
  • Inert gases (N2, Ar), reductive gas (H2), and mixed gases can be supplied for specific reactions.  
  • Both tube and muffle furnace can be easily switched.  
  • HMI touch screen control system for easy use
Hybrid Furnace Features
  • Power: AC220V±10%, single-phases, 50/60Hz, 3000 W
  • Heating Temperature: Max. 1200 ℃
  • Continuous Operation Temperature: 1150 ℃
  • Recommended Heating Rate: ≤10℃/min 
  • Furnace Hearth: L150 * D180 * H150 mm
  • Processing Tube: one-end sealed quartz with φ80*320 mm

                

Notes
  • The door is not allowed to be opened when the furnace temperature higher than 300 ℃
  • The minor cracks on the furnace hearth insulation layer is normal and won't affect its operaiton. 
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
  • One-year warranty and life-time technical support. 
Dimension
  • L350 × D370× H800 mm
Weight
  • ~50 kg

References:

C. A. Calderón, et al., Electrochemical comparison of LiFePO4 synthesized by a solid-state method using either microwave heating or a tube furnace, Journal of Applied Electrochemistry, 2017, 47, 1179–1188.

Y. Lee, et al., In-depth approach and establishment from a structural perspective of LiFePO4 cathodes for lithium-ion batteries by a two-step sintering, Journal of Power Sources, 2024, 624, 235524

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