iBond® Fire Proof

Product ConformationProduct Conformation

Our fire-resistant aluminum composite panel is made of fireproof plastic core with two layers of aluminum sheets. It is one kind of new decorative material. Thanks to the fireproof elements we add, its fireproof feature can reach Class B1 grade with the test of GB8624, which means it is hard to be fired. It is green material, as there is no harmful gas  is produced during burning.

Raw Material Product Specifications
Base material of aluminum panel: high strength aluminum coils
PE core: Fire-resist Core
surface coating:fluorocarbon coating
 
Thickness: 3-6mm; 3mm is recommended;
Width: 1000-2000mm; 1220mm, 1250mm and 1500mm are recommended;
Length: Maximum is up to 5800mm, 2440mm,3050mm and 4050mm are recommended.
Thickness of aluminum sheet: 0.2-0.5mm

 

Table 1 Levels and Names of? Combustion Performance

Level   Name Level Name
A   None-combustible material B2 Combustible material
B1   Flame-retardant material B3 Flammable material
   Classification              material Combustion performance index to be reached    
None-combustible material A Level composite (sandwich) Conduct the test as per GB/T8625, the average residual length of the groups of test pieces is ≤35cm with the residual length of every test pieces >20cm). the average gas thermal spike of every test is ≤125℃, no burning behavior on the back of the test pieces.
Conduct the test as per GB/8627, the gas density grade (SDR)is ≤15.
Conduct the test as per GB/T14002 and GB/T14403, the material clorific value of which is ≤4.2MJ/kg, and the heat release of the test pieces on unit area is ≤16.8MJ/m2;
The non-lethal thickness of the gas toxicity by the burning of material is ≥25mg/L.
Combustible material (level B) B1 level material (material that meets all the requirement on the right)

Conduct the test as per GB/T8626, the burning performance of which should be the standard specified in GB/T8626. phenomenon of ignition of the filter paper by burning drops.
Conduct the test as per GB/T8625, the average residual length of the groups of the test pieces is ≥15cm (the residual length of each of the test pieces should be >0cm)

 

Comparison on Fireproof Classification between National Standard GB/T8627

Standard No.Burning Degree

China German America Britain France Japan Russia
GB/T8627 DIN 4102 ASTM BS 476 NFF 16-101 JIS K6911 30244-94
Minimal A A1,A2 E84 O MO 1 T1
Minor B1 B1 NC 1 M1,M2 2 T2
Normal B2 B2 A 2,3 M3 3 T3
Severe B3 B3 B,C 4 M4,M5 - -

 

■ Parameter List of Fireproof Performance

Class B1 combustion test

 

Test Report for B1 Class Fire-proof Plate

Number Test Items Test Metho 技术指标 检验结果
1 Minimum value of remaining length after burning GB/T8625-88 >0 486
2 Average value of remaining length after burning GB/T8625-88 ≥150 163
3 Gas Temperature GB/T8625-88 ≤200 78
4 Height of the top of the flame GB/T8625-88 ≤150 10
5 Grade of smoke density GB/T8627-88 <75 9

 

Product Data Sheet

      Pivot ACM(architecture)   Pivot ACM(advertising)   Pivot ACM( fire)
Panel Thickness Standard Unit 3mm 4mm 6mm   2mm 3mm 4mm 6mm   3mm 4mm 6mm
Thickness of Aluminium  DIN 1784 mm 0.5 0.5 0.5   0.3 0.3 0.3 0.3   0.3 0.5 0.5
Aluminum thickness deviation  DIN 1784 mm ±0.01 ±0.01 ±0.01 ±0.01 ±0.01 ±0.01 ±0.01 ±0.01 ±0.01 ±0.01
Weight   Kg/m2 4.65 5.63 7.42 2.92 3.85 4.76 6.75 5.05 6.93 9.73
Tolerance in length DIN 16927 / ISO 11833-1 mm - 1 / +3 - 1/ +3 - 1/ +3 - 0 / +2 - 0 / +2 - 0 / +2 - 0 / +2 - 1 / +3 - 1/ +3 - 0 / +2
Tolerance in width DIN 16927 / ISO 11833-1 mm - 1 / +1.5 - 1 / +1.5 - 1 / +1.5 - 0 / +1.5 - 0 / +1.5 - 0 / +1.5 - 0 / +1.5 - 1 / +1.5 - 1 / +1.5 - 0 / +1.5
Tolerance in thickness DIN 16927 / ISO 11833-1 mm   ± 0.15   ± 0.15   ± 0.15   ± 0.15   ± 0.10   ± 0.10   ± 0.15   ± 0.15   ± 0.15   ± 0.15
Horizontal flatness DIN ISO 1101 mm 6 5 5 6 5 4 4 6 5 3
Longitudinal roughness DIN ISO 1101 mm 7 6 6 6 5 5 5 6 5 5
Technical Properties                        
Section Modulus W  DIN 53293 cm3/m 1.25 1.75 2.75 1.01 1.25 1.75 2.75 1.55 1.85 2.96
Rigidity (Poisson's ratio μ = 0.3) E.J   DIN 53293 kNm2/m 0.14 0.28 0.63 0.67 0.14 0.28 0.63 0.2 0.43 0.98
Alloy EN 573-3 ENAW 1100 1100 1100
Temper of Cover Sheets EN 515   H16/H18 H16/H18 H16/H18
Modulus of Elasticity EN 1999 1-1 N/mm2 70,000 70,000 70,000
Tensile Strength of Aluminium EN 485-2 N/mm2 Rm ≥ 145 Rm ≥ 145 Rm ≥ 145
0.2% Proof Stress EN 485-2 N/mm2 Rp0.2 ≥ 100 Rp0.2 ≥ 100 Rp0.2 ≥ 100
Elongation EN 485-2 % A50 ≥ 2 A50 ≥ 2 A50 ≥ 2
Linear Thermal Expansion EN 1999 1-1 mm/m/℃ 2.4 at 100℃ Temp difference 2.4 at 100℃ Temp difference 2.4 at 100℃ Temp difference
Core                        
Polyethylene, Typ LD-PE   g/cm3 0.935 0.935 1.39
Surface     Coil Coating Coil Coating Coil Coating
Lacquering     Fluorocarbon based (PVdF) Fluorocarbon based (PE) Fluorocarbon based (PVdF)
Thickness of coating    µm two coating:≥26,three coating:≥32 ≥16 ≥16 ≥16 ≥16 two coating:≥26,three coating:≥32    
Gloss (initial value) ECCA T2 % 30 - 80 20 - 100 30 - 80
Pencil Hardness ECCA T4   H 2H H
Acoustical Properties                        
Sound Absorption Factor   άs ISO 354   0.05 0.05 0.05
Sound Transmission Loss   RW ISO 717-1 DB 25 26 28 23 25 26 28 25 26 28
Loss Factor  d    EN ISO 6721   0.0072 0.0087 0.0138 0.0062 0.0072 0.0087 0.0138 0.0072 0.0087 0.0138
Thermal Properties                         
Thermal Resistance  R  DIN 52612 m2K/W 0.0069 0.0103 0.0172 0.0036 0.0069 0.0103 0.0172 0.0069 0.0103 0.0172
Heat Transition Coefficient  U  DIN 4108 W/m2K 5.65 5.54 5.34 5.98 5.65 5.54 5.34 5.65 5.54 5.34
Temperature Range    -50…+80 -50…+80 -50…+80
fire-protection rating EN—13501           B,S1,do,t1