Ceramic Fiber Blanket - Furnace Heat Resistant
- Loading Port:
- Tianjin
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1000 roll
- Supply Capability:
- 10000 roll/month
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Description
Ceramic Fiber Blanket is made by continuous processing method. The fiber interweave shapely after being needled. It has excellent tensile strength. The blanket do not contains any bonding agent.
Ceramic Fiber Blanket not only can resist the chemical species, but also the hydrofluoric acid, phosphoric acid and strong base. The Fiber Blanket has excellent capability of resisting the oil. After being dried, it will repossess the thermal characteristic and the physical feature.
Okorder providers various densities and thickness of Ceramic Fiber Blanket, pleases contact us for your needs.
Ceramic Fiber Blanket Advantages:
-Low heat conductivity and thermal capacity
-Excellent thermal stability and shock resistance
-Strong tensile resistance
-Excellent heat insulation, fireproof and sound insulation
Ceramic Fiber Blanket Applications:
-Industrial kiln, heating device, high-temperature pipeline wall lining.
-Heat insulation of electric boiler, steam turbine and nuclear electricity.
-Wall lining of chemical high-temperature conversion unit and heating equipment.
-Fireproof and heat insulation of tall buildings.
-Heat insulation of kiln door and roofs.
-Materials of high-temperature filtration.
Technical Parameters:
Type | Ordinary | Standard | High Purity | High Aluminium | Zirconia | |
Classification temperature (°C) | 1100 | 1260 | 1260 | 1360 | 1430 | |
Working Temperature (°C) | < 1000 | 1050 | 1100 | 1200 | 1350 | |
Color | white | spotlessly white | spotlessly white | spotlessly white | spotlessly white | |
Density (kg/m3) | 96 | 96 | 96 | 128 | 128 | |
Shrinkage on heating (%) (24 hours,density as 128/m3) | -4 | -3 | -3 | -3 | -3 | |
Thermal conductivity by different temperature (w/m.k) (density as 128kg/m3) | 0.09(400°C) | 0.09(400°C) | 0.09(400°C) 0.16(800°C) | 0.12(600°C) | 0.16(800°C) | |
Tensile strength (MPa) | 0.04 | 0.04 | 0.04 | 0.04 | 0.04 | |
Chemical composition (%) | AL2O3 | 44 | 46 | 47-49 | 52-55 | 39-40 |
AL2O3+SIO2 | 96 | 97 | 99 | 99 | - | |
AL2O3+SIO2+ZrO2 | - | - | - | - | 99 | |
ZrO2 | - | - | - | - | 15-17 | |
Fe2O3 | <1.2< span=""> | <1.0< span=""> | 0.2 | 0.2 | 0.2 | |
Na2O+K2O | ≤0.5 | ≤0.5 | 0.2 | 0.2 | 0.2 | |
Size (mm) | Spec. 7200×610×10-50 Other sizes can be available. |
Grade | COM | ST | HP | HA | HZ | |
Tenglong Style | 4220C | 4220ST | 4220HP | 4220HA | 4220HZ | |
Category temperature (°C) | 1050 | 1260 | 1260 | 1360 | 1430 | |
Operating Temperature(°C) | <1000< span=""> | 1050 | 1100 | 1200 | 1350 | |
Color | white | spotlessly white | spotlessly white | spotlessly white | spotlessly white | |
volume concentration (kg/m3) | 96 | 96 | 96 | 128 | 128 | |
permanent linear shrinkage rate (%)(Insulation 24 hours, volume concentration 128/m3 ) | -4 | -3 | -3 | -3 | -3 | |
The hot surface temperature thermal conductivity (w/m.k) volume concentration 128kg/m3 128kg/m3) | 0.09(400C) | 0.09(400C) | 0.09(400C) | 0.132(600C) | 0.76(600C) | |
tensile strength (MPa) | 0.08-0.12 | 0.08-0.12 | 0.08-0.12 | 0.08-0.12 | 0.08-0.12 | |
elemental composition | AL2O3 | 44 | 46 | 47--49 | 52-55 | 39-40 |
AL203+SIO2 | 96 | 97 | 99 | 99 | - | |
AL2O3+SIO2+Zro2 | - | - | - | - | 99 | |
Zro2 | - | - | - | - | 15-17 | |
Fe2O3 | <1.2< span=""> | <1.0< span=""> | 0.2 | 0.2 | 0.2 | |
Na2O+K2O | ≤0.5 | ≤0.5 | 0.2 | 0.2 | 0.2 | |
Products size (mm) | Common Specifications7200×610×10-50Other specifications on request made |
Professional fire brick manufacturer. We have being specialized in producing refractory fireclay brick for more than 40 years so that we can guarantee a stable quality.
Guaranteed quality. Our production process conforms strictly to the requirements of ISO9000 quality management system. Quality inspection is carried out in every links of our production. SGS third party inspection is available.
Sound after sales service. We provide sound after sales service. We provide 24 hours’ consultation service. We are ready to answer your consultations at any time.
- Q:I am looking to make a solar power hot dog cooker for a class project.I have pretty much decided on the tin-foil parabola design most website suggest, however I'd like to augment it with insulationLet me know what you think might work best, and why:The major idea I had was to enclose my cooking area by either black paper, saran wrap, or perhaps a glass containerThe idea is that the IR light would still hit the hotdog, but less air that was heated around it would escapeIf I use black paper though, I might absorb the energy before actually hitting the hot dogClearly using tin foil would reflect it back out against the original reflectors.Let me know what you think.Thanks!
- Saran wrap could easily melt and is not very easy to maneuver to pull out the hot dogs when they are finishedthe black paper is a bad idea since it would block all of the radiant energy that you are hoping will reach the hot dogsI would go with the glass coverThere are glass covers that one puts over cheeses to keep them freshThey are not huge, but would be enough to do 4 - 5 hot dogsThat would be the most elegant solutionIf you cannot find one of them, you could glue 5 pieces together with silicon sealantThat should work tooSilicon sealant can handle quite high temperaturesThere are varieties in auto supply stores that can handle up to 600 degrees F, but you do not need anything near to that highYou could use small steel 'corners'to make it more stable Glue them to the glass with the same sealantyou could use them on the outside and inside of the glass, at, say, two per edge: so you'd need 16 of themWell, a fish tank would also work, if you can relocate the fish!
- Q:Not sure what to doThe house is about older, the insulation in the attic seems dampThe electric company already told us we need insulationDo we need to get the old insulation up first? Or do we just blow quot;snowquot; on top of itI thought I once heard that wet insulation is worse than no insulationWhy? How do we get old insulation out?Thanks for your time.
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- Q:I have an old Belfast sink and thought it might make a good BBQ in the garden, will it withstand the heat?
- Probably notThe sink wasn't designed for the thermal stresses of holding a fire insideIt will probably crack the first time you use it.
- Q:We have lived here almost a month (in Columbus, Ohio) and have been using the attic for storage because our basement floods when it rains (another problem we've been trying to get them to take care of)Well today they showed up to take care of a few others problems we've had around the house, one of those being no insulation in the atticThey tell us they're going to build a wall in the closet leading to the attic so we cannot go up there.? Their reason was not mentionedNot quite sure how that works, but it seems they're trying to keep us from being able to go up and inspect if they actually insulated the placeMy question is if it is legal for them to close off a part of the house that was originally part of the house when leases were signed and the possesion of the house was handed over to us.
- I Carry the only Radiant Barrier insulation that actually has a true R-14.5 Value and is certified by Energy StarIts equal to 6 inches of fiberglass insulationMost have an assumed R valueView my 'Total Insulation' productI install it using a staple gun inside the attic on the back side of the roof trusses.
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- defining variables: a angle one 44,5 b angle two 24.3 T1 tension in rope one T2 tension in rope two you can solve this by using vector algebra or newtonian mechanicsboth will lead to the same answer, i will use newtonian mechanicsthis is a 2nd law problem i.eFmA we need to break this problem up into its componentsthe net force in the x direction is; Fnet,x T1cos(a) - T2cos(b) since the object is not moving in the x direction the forces must cancel out and equal zerotherefore; 0 T1cos(a) - T2cos(b) T2 [cos(a)/cos(b)](T1) the net force in the y direction is; Fnet,y T1sin(a) + T2sin(b) - Fg where Fg is the objects weight; 20240 lbs your problem suggests that the object is moving, but since there is not an acceleration the net forces must equal zerotherefore; Fg T1sin(a) + T2sin(b) now we have 2 equations and two unknownsso, we can solve this system using any method of choice ) Fg T1sin(a) + T2sin(b) Fg T1sin(a) +sin(b)[cos(a)/cos(b)](T1) T1{sin(a) +[cos(a)/cos(b)]} Fg T1 [Fg]/{sin(a) +[cos(a)/cos(b)]} - answer T2 [Fgcos(a)]/[sin(a)cos(b) + cos(a)] - answer sorry i don't have a calculator so i only can give you a general solution to this problemhope it was helpful none the less.
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- It comes from a mans; who wears polyester pants, left testicle.
- Q:I am completely new to this hobby, but I jumped in quickly, making an e-cig case/lanyardThe yarn isn't going to last thoughCould I use strips of fabric?
- Usually drive steel 'pilings' thru the sand into the bed rock below, then anchor the bridge towers to those pilings.
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Ceramic Fiber Blanket - Furnace Heat Resistant
- Loading Port:
- Tianjin
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 1000 roll
- Supply Capability:
- 10000 roll/month
OKorder Service Pledge
OKorder Financial Service
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