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ECS-N Mini Microwave Furnace (Max. 1550℃) for Rapid Sintering, ENRSMMF

ECS-N Mini Microwave Furnace (Max. 1550℃) for Rapid Sintering, ENRSMMF

In Stock SKU: ENRSMMF
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A Mini Microwave Sintering Furnace is a high-speed, volumetric heating system designed for the rapid synthesis and densification of ceramic and battery materials. Unlike conventional muffle furnaces that heat from the outside-in via radiation, microwave furnaces heat the material itself from the inside-out, often reducing sintering times by 60% to 90%.

For microwave sintering, microwaves penetrate the material, causing molecular rotation (in dipoles) or ionic conduction. This generates heat volumetrically, ensuring the core and surface reach the target temperature almost simultaneously.

Part Number
  • ENRSMMF (EN-RS-MMF)
General Features
  • The microwave is directly applied on treated samples, which provides the heating rate is much faster than the conventional muffle furnace.
  • The energy consumption is 30%-60% less than the conventional resistance furnace. 
  • The heating distribution around samples are uniform that makes the sintering samples have higher density and homogeneity. 
  • Accurate temperature control and measurement. 
  • Multiple gas types can be applied for various experiments
Microwave Furnace Features
  • Power: AC220V±10%, single-phases, 50/60Hz, 1000 W
  • Heating Element: Magnetron tube
  • Heating Temperature: Max. 1550 ℃
  • Continuous Operation Temperature: 1530 ℃
  • Recommended Heating Rate: ≤10 ℃/min
  • Furnace Hearth: L120 * D120 * H60 mm
Heating Experimental Data
  • 0-1000 ℃, ~21 ℃/min
  • 1000-1200 ℃, ~10 ℃/min
  • 1200-1400 ℃, ~6 ℃/min
  • 1400-1530 ℃, ~3 ℃/min
  • Thermocouple: S-type, φ8*130mm
Notes
  • The door is not allowed to be opened when the furnace temperature higher than 300 ℃
  • The small crack appears on the furnace hearth is normal that won't affect the operation. 
Certification
  • CE certified
  • UL and CSA certification is available upon request at extra cost
Dimension
  • L514 × D480 × H720 mm
Weight
  • ~40 kg

References:

J. Wu, et al., Microwave sintering and in-situ transmission electron microscopy heating study of Li1·2(Mn0·53Co0.27)O2 with improved electrochemical performance, Journal of Power Sources, 2016, 326, 104-111.

X. Wang, et al., Low temperature and rapid microwave sintering of Na3Zr2Si2PO12 solid electrolytes for Na-Ion batteries, Journal of Power Sources, 2021, 481, 228924

K. I. Rybakov, et al., Microwave Sintering: Fundamentals and Modeling, J. Am. Ceramic Soc., 2013, 96, 1003-1020. 

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