Material description

Material ID: ACP31

Material type: Aluminium alloy composite panel with a core consisting of an aluminium foil honeycomb structure connected with a ethylene-acrylate acid (EAA) copolymer adhesive.

Polymer: Ethylene-acrylate acid copolymer (0%)

Additives (fire retardants, fillers or traces of inorganic elements): Aluminium (47%), Zinc (22%), Iron (21%), Sodium (14%), Silicon (1%), Magnesium (1%), traces of other elements (<1%)

Table 1. Estimated mass concentration of compounds.
CompoundMass Concentration (%)
Ethylene-acrylate acid copolymer (EAA)0
Aluminium (Al)47
Zinc (Zn)22
Iron (Fe)21
Sodium (Na)14
Silicon (Si)1
Magnesium (Mg)1
Traces of chlorine (Cl)<1
Traces of hafnium (Hf)<1
Traces of tantalum (Ta)<1

A. Material composition identification

A.1 Attenuated total reflection – Fourier transform infrared spectroscopy (ATR-FTIR)

Table 2. FTIR compound identification.
Identified Compounds
Ethylene-acrylate acid copolymer (EAA)
Aluminium (Al)
Zinc (Zn)
Iron (Fe)

Figure 1 . FTIR spectra: Absorbance percentage versus wavenumber from the sample.

Figure 2. FTIR spectra: Absorbance percentage versus wavenumber from the sample and the identified compounds.

 

A.2 Energy Dispersive X-Ray Fluorescence (EDXRF)

Table 2. Inorganic elements and their mass concentration identified with EDXRF.
ElementMass Concentration (%)
Al47
Zn22
Fe21
Na14
Si1
Mg1
Cl<1
Hf<1
Ta<1
Mn<1

B. Thermogravimetric analysis

Table 3. Mass fraction of residue after thermal decomposition.
ConditionFraction of mass residue at 800°C
Non-oxidative (nitrogen)0.01
Oxidative (air)0
Table 4. Temperature and amplitude of main peaks in non-oxidative conditions.
Peak IDTemperature peak (°C)Amplitude of peak (°C-1)
Peak 14762.229 x 10-2
Table 5. Temperature and amplitude of main peaks in oxidative conditions.
Peak IDTemperature peak (°C)Amplitude of peak (°C-1)
Peak 12801.21 x 10-3
Peak 24049.64 x 10-3
Peak 34281.07 x 10-2
Peak 44721.372 x 10-2
Peak 55301.87 x 10-3

Figure 4. Normalised mass (solid line) and derivative of the normalised mass (dashed line) in 150 ml min-1 of nitrogen and a heating rate of 20°C min-1.

Figure 5. Normalised mass (solid line) and derivative of the normalised mass (dashed line) in 150 ml min-1 of air and a heating rate of 20°C min-1 .