Nano Microporous Insulation Plate
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Nano Microporous Insulation Plate

Nano Microporous Insulation Plate is a high-performance heat insulation board with a microporous structure based on amorphous fumed silica agglomerated particle chains.Its thermal conductivity coefficient is 2–10 times lower than that of traditional thermal insulation materials, and its long-term use temperature is 1100 °C.
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Product Introduction
Nano Microporous plate Description

 

 

Nano Microporous Insulation plate thermal insulation effect is more than double that of traditional fiber materials. It has the ability to decrease the insulation layer's thickness by over 50%. The product has a compressive strength of up to 2-4 Mpa, which is 3-5 times that of regular nanomaterials, in addition to having good thermal insulation performance.

 

Nano Microporous Insulation Plate Characteristics:

 

1,Consistent physical characteristics in high-temperature operational environments

2, Factory customization is possible if certain requirements are met; manufacturing can be tailored to the actual use scale.

3,One can choose from a range of packing material forms.

4,Certain products can fulfill their hydrophobic needs by offering hydrophobic treatment services.

5,Simple to install and cut, quick to set up, and handy

6,It doesn't include any fibers that can be inhaled and doesn't harm the environment.

 

nano board

 

Nano Microporous Insulation Plate parameter

 

Brand

Property

JC950

JC1000

JC1100

Melting Point ()

≥1200

≥1200

≥1200

Operating Temperature ()

950

1000

1100

Density (kg/m³)

280-350

550-650

550-650

Compressive strength (MPa)

0.5

0.8-1.2

0.8-1.2

800℃

Heating wire shrink 800℃ (%)

≤1.9

≤1.9

≤1.9

 

 

Thermal Conductivity

(w/m.k)

 

 

 

 

200℃

0.016

/

/

400℃

0.021

0.043

0.047

600℃

0.026

0.057

0.058

800℃

0.035

0.063

0.069

 

Products Application

 

Application of Nano Microporous Insulation plate on Ladle 

1. Decrease the ladle's outer wall temperature by a significant amount, as well as the thermal stress of the ladle shell, rate of temperature change, ladle heat loss, and waste steel billet.

2. Lower the tapping temperature, reduce blowing time, use less energy and raw materials, and enhance the output and quality of steel

3. Enhance the ladle's lining structure, decrease the refractory layer's thickness, raise the ladle's effective volume, lessen the temperature differential between the refractory's hot and cold sides, and boost steel output.

 

 

application

 

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