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The Role of Foaming Agent and Processing Route in Mechanical Performance of Fabricated Aluminum Foams

机译:发泡剂和加工路线在铝泡沫机械性能中的作用

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The results of this study highlight the role of foaming agent and processing route in influencing the contamination of cell wall material by side products, which, in turn, affects the macroscopic mechanical response of closed-cell Al-foams. Several kinds of Al-foams have been produced with pure Al/Al-alloys by the Alporas like melt process, all performed with and without Ca additive and processed either with conventional TiH2foaming agent or CaCO3as an alternative one. Damage behavior of contaminations was believed to affect the micromechanism of foam deformation, favoring either plastic buckling or brittle failure of cell walls. No discrepancy between experimental values of compressive strengths for Al-foams comprising ductile cell wall constituents and those prescribed by theoretical models for closed-cell structure was found while the presence of low ductile and/or brittle eutectic domains and contaminations including particles/layers of Al3Ti, residues of partially reacted TiH2, and Ca bearing compounds, results in reducing the compressive strength to values close to or even below those of open-cell foams of the same relative density.
机译:这项研究的结果突出了发泡剂和加工路线在影响副产物对细胞壁材料的污染中的作用,继而影响了闭孔铝泡沫的宏观机械响应。通过Alporas的熔融工艺已经用纯Al / Al合金生产了几种Al泡沫,这些泡沫均在有或没有Ca添加剂的情况下进行,并使用常规的TiH2发泡剂或CaCO3作为替代材料进行加工。污染物的破坏行为被认为会影响泡沫变形的微观机制,有利于细胞壁的塑性屈曲或脆性破坏。包含延性和/或脆性的低共晶域以及包括Al3Ti颗粒/层在内的污染物存在时,未发现包含延性细胞壁成分的Al泡沫的抗压强度实验值与闭孔结构理论模型规定的抗压强度之间没有差异。 ,部分反应的TiH2和含Ca的化合物的残留物会导致压缩强度降低到接近或什至低于相同相对密度的开孔泡沫的值。

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