The enamel stainless steel reactor,as a technological integration in the field of chemical equipment,forms a special equipment that combines metal strength and glass corrosion resistance by composite sintering of austenitic stainless steel substrate and high silica glass glaze layer.Its technological breakthrough has solved the pain points of traditional carbon steel substrate reactors being prone to corrosion and lacking hygiene standards in low-temperature environments,making it a core equipment in manufacturing fields such as new energy materials,biomedicine,and fine chemicals.Our
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1、Technological breakthroughs in composite material structures
1.Austenitic stainless steel substrate:The glass lined stainless steel reactor adopts low nickel austenitic stainless steel such as 304L/316L,and achieves a leap in low-temperature toughness by optimizing the Cr/Ni ratio.
2.Glass glaze layer sintering process:The enamel stainless steel reactor adopts a stepped heating constant temperature cooling firing curve to complete the molecular level bonding between the glass phase and the metal phase in the range of 880-940℃.The test shows that the adhesion force of the sintered layer reaches 65MPa,and the mechanical impact resistance exceeds 282×10⁻³J,fully meeting the requirements of standard superior products.
The glass lined stainless steel reactor is reconstructing the technological paradigm of chemical equipment through the deep integration of material genetic engineering and intelligent manufacturing technology.With the continuous upgrading of equipment performance requirements in strategic emerging industries such as new energy and biomedicine,this equipment will achieve new technological breakthroughs in areas such as microstructure control,intelligent operation and maintenance,and green manufacturing,becoming a key infrastructure for promoting industrial upgrading.