Refractory high temperature Cordierite kiln post 265*60*60mm
The refractory product is composed of high uality mullite and high
purity fused cordierite as raw materials with addition of specified
binder by shaping at high pressure and sintering at high
temperature. With features of high refractoriness under load,
compact structure, low porosity and high resistance to corrosion.
High strength,high thermal shock resistance,heat-resistant and low
A simple firing to 1300C (about cone 11 and within the reach of
many ordinary kilns) and soaked may produce some crystal
development. However firing (actually sintering) at 1400C+ with
significant soaking time is needed for the best results. Thermal
expansion measuring equipment is needed to determine if your firing
is actually developing the crystal matrix or not.
As noted, a continuous crystal matrix is the object of cordierite
creation (not just the presence of the crystals in an otherwise
typical ceramic). Notwithstanding this, cordierite powder is
available, it is prefired and finely ground. It can be plasticized
for forming and bonded during firing (at much lower than normal
cordierite creation temperatures) to produce a ceramic that
certainly has lower expansion.
|Modulus of rupture,||20℃||≥5|
|Max. service temp.||1280℃|
3. Advantages of Cordierite
A. Weight reduction of approximately 35% - 50%, whilst increasing
the load capacity of the batt. For example, a 38mm-thick extruded
batt has the same weight as a 23mm-thick pressed batt of the same
size, but can bear 5 times the load.
B. Energy Savings. Tests have shown that using extruded batts in a
shuttle kiln firing glass panels, fuel consumption can be reduced
by between 30% and 70%.
C. Reduced bend at high temperatures. 1200mm long extruded batts
supported by silicon carbide beams have shown virtually no bend
during use. This is extremely useful where flatness is critical,
such as in the firing of glass panels.
D.Their ability to disperse heat is twice that of a solid batt of
similar size, allowing them to bear extremes of hot and cold much
better, thereby increasing their service life. This makes extruded
batts especially suitable for faster firings.
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