Strano Matteo, Marra Alessandro, Mussi Valerio, Goletti Massimo, Bocher Philippe
Politecnico di Milano, Dipartimento di Meccanica, via La Masa 1, Milan 20156, Italy.
MUSP Lab, via Tirotti 9, Piacenza 29122, Italy.
Materials (Basel). 2015 Jul 7;8(7):4061-4079. doi: 10.3390/ma8074061.
The favorable energy-absorption properties of metal foams have been frequently proposed for damping or anti-crash applications. The aim of this paper is to investigate the endurance of these properties for composite structures, made by a metal or a hybrid metal-polymeric foam used as the core filling of a tubular metal case. The results of experimental tests are shown, run with two types of structures: 1) square steel tubes filled with aluminum or with hybrid aluminum-polymer foams; 2) round titanium tubes filled with aluminum foams. The paper shows that the damping properties of a foam-filled tube change (improve) with the number of cycles, while all other dynamic properties are nearly constant. This result is very important for several potential applications where damping is crucial, e.g., for machine tools.
金属泡沫良好的能量吸收特性经常被用于减震或防撞应用。本文的目的是研究这些特性对于复合结构的耐久性,该复合结构由用作管状金属外壳芯填充物的金属或混合金属-聚合物泡沫制成。文中展示了对两种类型结构进行实验测试的结果:1)填充铝或混合铝-聚合物泡沫的方形钢管;2)填充泡沫铝的圆形钛管。本文表明,填充泡沫管的阻尼特性会随循环次数而变化(改善),而所有其他动态特性几乎保持不变。这一结果对于诸如机床等若干减震至关重要的潜在应用而言非常重要。