|
 |
| Wet Steel Frame Fire-Resistance Coat made up of natural material, volcanic ash |
Greenness Environmentally Materials - volcanic ash
Environmentally-friendly fire-resistance coat, ANGEL COAT seeks a pleasant environment that starts from nature and ends in nature! |
| |
 |
| |
 |
| Item |
Content |
Remarks |
| Main ingredients |
volcanic ash, perlite, plaster, cement, pulp, agent, etc. |
|
Product name
|
Angel Coat - AT, AX |
|
| Angel Coat - ST |
|
| classification |
General facilities, residential facilities, industrial facilities |
|
| Quality |
Construction density: 350kg/§³ |
|
| Attachment strength: 6,800kgf/§³ |
|
| Dust grade: 0.01g/§³ |
|
| Use |
Angel Coat - AT, AX (Steel Frame Fire-Resistance Coat ) |
|
| Angel Coat - ST (Insulating sound absorption finish) |
|
| Weight |
1Pack: 18kg |
|
| Price |
Not determined |
|
| Function (features) |
deodorization, flame resistance, adiabaticity, VOC
attachment/decomposition function, humidity adjustment function, anti-
fungus, |
|
|
|
| |
 |
| Superior Quality |
| ANGEL COAT is a wet fire-resistance coat. It was developed by a leading enterprise in the field of environmental industry, Singang Hi-Tech Co., Ltd based on its rich experience and excellent technologies and it has various qualities such as excellent fire resistance, durability, anti-bacteria, anti-fungus, deodorization, dust-proof, anti-corrosion and earthquake-proof, anti-fungus, deodorization, dimensional stability, attachment, and workability |
| |
| Environmentally-friendly Quality |
| ANGEL COAT is made up of natural material, volcanic ashes created 250million years ago as its main ingredient so it is not harmful to the environment. It is environmentally-friendly fire-resistance coat that considers not only the safety of building but also environment and human health. |
| |
| Economic Feasibility |
| As ANGEL COAT is highly fire-resistant, it only needs a thinner coat, on spraying. Thus it can shorten the period of time necessary for work and its anti-fungus quality obviates the need for additional maintenance work for fungus so reducing the overall construction expenses. |
| |
 |
| Type of Angel Coat |
| Type name |
Use |
Related law |
| Angel Coat - AT |
Ground Steel Frame fire-resistance coat |
Ministry of Construction & Transportation Notice
No. 0000-00 |
Angel Coat - AX
|
Underground Steel Frame fire-resistance coat |
Ministry of Construction & Transportation Notice
No. 0000-00 |
| Angel Coat - ST |
Insulating sound absorption finish |
Energy Saving Design Standard |
|
|
| |
| Use of Angel Coat |
- Steel Frame beam for buildings - fire-resistance coat of pillar
- Heat insulation, sound absorption, noise-proof
- Fire-resistance coat for steel structure
- Fire-resistant coat for subway structure (Repressing fungus) |
| |
 |
Quality of Angel Coat |
| Item |
Content |
| Density |
350kg/§³ |
Binding power
|
6,800kgf/§³ |
| Dust grade |
0.01g |
|
|
| |
Coat Thickness of Angel Coat by time |
| Tank |
Fire-Resistance time |
Coat thickness (mm) |
Test method |
Beam
(Ends of flange on the lower part of steel frame)
|
1 hr
2 hrs
3 hrs
|
15mm (over 10)
20mm (over15)
28mm (over22)
|
Korea Institute of Construction Technology |
Pillar
|
1 hr
2 hrs
3 hrs
|
12mm
20mm
28mm |
Operation principle details |
|
|
| |
 |
| Excellent fire-resistance |
| Use volcanic ash a natural material that has lowest thermal conduction to maximize fire-resistance and there is no toxic gas generation in case of fire. |
| |
| Excellent durability by strong binding power |
| As it uses a natural binder with strong durability, it has an excellent measuring stability as there is no shrinkage in drying. In addition, there is no dew condensation while its anti-fungus trait ensures the absence of fungus which is often a problem for underground levels. |
| |
| Dust-resistance |
| Easy to install in any structure, with no exfoliation and cracks. Also as it is free from water-fast or dust, it does not require top coat treatment |
| |
| Workability and economic feasibility |
| The minimum coat thickness allows one application so that it reduces material costs and construction period, thereby maximizing overall economic feasibility |
| |
 |