Mechanical and Energy Absorption Performance of Expanded Perlite Foam-filled Steel Tubes

Sadman Shahriar, M. Arifuzzaman, Pranto Karua
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Abstract

The main objective of this research is to manufacture expanded perlite (EP) foam-filled stainless steel tubes for energy absorption application and to investigate their physical and compressive behavior. Foam-filled steel tubes (FFT) were manufactured by consolidating expanded perlite/sodium silicate composite foam inside the tube. The EP particles of size 5-6 mm were taken for manufacturing FFTs. Two different sodium silicate solution to water (S/W) ratios and three compaction ratios (CR) were the manufacturing parameters of the foams. The manufactured FFTs were characterized for density, yield stress, plateau stress, energy absorption, and energy absorption efficiency. The compression test results showed that the foam filling improved the compressive properties and energy absorption ability of the steel tube significantly. The failure analysis along with the stress-strain curves was also conducted. The change in failure mechanism is found to be the reason for high energy absorption and energy absorption efficiency for high-density foam-filled tubes.
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膨胀珍珠岩泡沫填充钢管的力学和吸能性能
本研究的主要目的是制备用于吸能的膨胀珍珠岩(EP)泡沫填充不锈钢管,并研究其物理和压缩性能。采用膨胀珍珠岩/水玻璃复合泡沫在管内固结的方法制备了泡沫填充钢管。取5-6 mm大小的EP颗粒用于制造fft。两种不同的水玻璃溶液与水(S/W)比和三种压实比(CR)是泡沫的制备参数。对制备的fft进行了密度、屈服应力、平台应力、能量吸收和能量吸收效率的表征。压缩试验结果表明,泡沫填充显著提高了钢管的压缩性能和吸能能力。根据应力-应变曲线进行了破坏分析。发现这种破坏机制的变化是高密度泡沫填充管具有高吸能和高吸能效率的原因。
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