- Hydrotalcite
- Highly transparent hydrotalcite
- Catalyst carrier hydrotalcite
- Flame retardant hydrotalcite
- Stabilizer hydrotalcite
- Agricultural film hydrotalcite
- Nucleating agent hydrotalcite
- Magnesium hydroxide
- Mineral-derived magnesium hydroxide D100
- Synthesized magnesium hydroxide D110
- Electronic grade magnesium hydroxide D120
- Chemical method magnesium hydroxide D5
- Chemical method magnesium hydroxide D6
- Flame retardant
- Rubber specific flame retardant D130
- Efficient flame retardant D320/D320MD
- Efficient flame retardant D320T
- Efficient flame retardant H5VA/D330
- Thermal insulation materials
- Automotive lining
- Automotive insulation materials
- New energy battery insulation film
- Industrial insulation materials
Thermal insulation materials
Product Introduction
·Sodium boron silicon glass fibers are made by drawing, special chemical treatment, and special needle punching of high silicon oxide fibers, with a SiO2 content of over 96% in the product.
·No slag balls, slender and flexible fibers, high temperature resistance.
·A-class material. excellent flame retardant performance, insulation material.
·Good thermal stability.
·Single sided adhesive tape, fiberglass cloth/high silica cloth/ceramic fiber cloth composite, convenient for installation with metal shells.
·Recommended application environment: Long term working condition 1000 ℃± 50 ℃.
·Sodium boron silicon glass fibers are made by drawing, special chemical treatment, and special needle punching of high silicon oxide fibers, with a SiO2 content of over 96% in the product.
·No slag balls, slender and flexible fibers, high temperature resistance.
·A-class material. excellent flame retardant performance, insulation material.
·Good thermal stability.
·Single sided adhesive tape, fiberglass cloth/high silica cloth/ceramic fiber cloth composite, convenient for installation with metal shells.
·Recommended application environment: Long term working condition 1000 ℃± 50 ℃.
Product Application
Product specifications
|
Width,mm |
30-2400 |
|||||||||
|
Thickness,mm |
3 |
5 |
6 |
8 |
10 |
12 |
15 |
20 |
25 |
30 |
|
Unit weight,kg/m3 |
80 |
90 |
100 |
110 |
120 |
|
|
|
|
|
|
|
|
|
|
|
120 |
130 |
140 |
150 |
160 |
|
|
Thermal shrinkage rate and ablation rate |
8%-10% |
|||||||||
|
Width,mm |
30-2400 |
|||||||||
|
Thickness,mm |
3 |
5 |
6 |
8 |
10 |
12 |
15 |
20 |
25 |
30 |
|
Unit weight,kg/m3 |
80 |
90 |
100 |
110 |
120 |
|
|
|
|
|
|
|
|
|
|
|
120 |
130 |
140 |
150 |
160 |
|
|
Thermal shrinkage rate and ablation rate |
8%-10% |
|||||||||
Thermal conductivity
|
Temperature(℃) |
25 |
200 |
300 |
400 |
500 |
600 |
700 |
800 |
900 |
|
W/(m·K) |
0.028 |
0.044 |
0.055 |
0.069 |
0.099 |
0.119 |
0.140 |
0.170 |
0.184 |
|
Temperature(℃) |
25 |
200 |
300 |
400 |
500 |
600 |
700 |
800 |
900 |
|
W/(m·K) |
0.028 |
0.044 |
0.055 |
0.069 |
0.099 |
0.119 |
0.140 |
0.170 |
0.184 |













