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Effect of aluminium hydroxide loading on the compression stress and modulus, thermal conductivity and acoustic properties of palm-based polyurethane hybrid composite

机译:氢氧化铝负载量对棕榈基聚氨酯杂化复合材料压缩应力和模量,导热性和声学性能的影响

摘要

The effect of adding aluminum hydroxide (ATH) in the palm-based polyurethane hybrid composite was studied. The compression stress and modulus, thermal conductivity and acoustic property were determined. The hybrid composite was prepared by adding 10 wt% of oil palm empty fruit bunch fibre (EFB) followed by ATH at varying amount of 2, 4 and 6 wt% of the overall mass of the resin. The compression stress and modulus gave the highest values of 575 kPa and 2301 kPa, respectively at 2 wt% ATH. At 4 wt% ATH, the compression stress and modulus decreased to 431 kPa and 1659 kPa, respectively and further decreased at 6 wt% ATH to 339 kPa and 1468 kPa respectively. The k-value increased with the increment of the ATH loading exhibited a poor thermal conductivity. Sound absorption analysis indicated that the absorption coefficient was higher at higher frequency (4000 Hz) for all samples with PU-EFB/ATH with 4% ATH showed the highest absorption coefficient.
机译:研究了在棕榈基聚氨酯杂化复合材料中添加氢氧化铝(ATH)的效果。测定了压缩应力和模量,导热率和声学性质。通过添加10wt%的油棕空果束纤维(EFB),然后添加ATH,以树脂总质量的2、4和6wt%的变化量来制备杂化复合材料。在2 wt%ATH下,压缩应力和模量分别给出575 kPa和2301 kPa的最大值。在ATH含量为4 wt%时,压缩应力和模量分别降至431 kPa和1659 kPa,在ATH含量为6 wt%时分别降至339 kPa和1468 kPa。随着ATH负荷的增加,k值增加,表现出较差的导热性。吸声分析表明,所有PU-EFB / ATH和ATH含量为4%的样品在较高频率(4000 Hz)处的吸收系数都更高,显示出最高的吸收系数。

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