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Superplastic Forming and Foaming Process for Porous Aluminum Plates

机译:多孔铝板的超塑性成型和发泡工艺

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A new application of superplasticity has been developed in the field of porous metals. Porous metals manufactured through a liquid-state foaming process often include large pores and inhomogeneous pore distribution which decrease in the mechanical properties. A solid-state foaming process enables to suppress the collapse and coalescence of pores, but high porosity is not achieved due to the large flow stress. Superplastic flow during the solid-state foaming is effective to accelerate the foaming rate and to increase the porosity. Superplastic 5083 aluminum alloy sheets are used as a starting material for manufacturing of porous aluminum. A preform plate containing titanium hydride particles as a foaming agent is produced through roll-bonding processing. Porous aluminum with small pores and relatively high porosity is manufactured through superplastic foaming process. A thin sandwich panel with a porous aluminum core and porous bulge structures can be manufactured by utilizing the superplastic flow. This technique of superplastic forming and foaming (SPFF) processing has a potential for near net-shape forming as well as evaluation of the solid-state foaming of porous metals.
机译:多孔金属领域已经开发出一种新的超塑性应用。通过液态发泡过程制造的多孔金属通常包括大孔和不均匀的孔径分布,其降低了机械性能。固态发泡过程能够抑制孔的塌陷和聚结,但由于大的流量应力,不会实现高孔隙率。固态发泡过程中的超塑性流动可有效地加速发泡率并增加孔隙率。超塑性5083铝合金板用作制造多孔铝的原料。通过轧制加工制造含有氢化钛颗粒作为发泡剂的预制件板。具有小孔的多孔铝和相对高的孔隙率通过超塑性发泡过程制造。通过利用超塑性流动,可以制造具有多孔铝芯和多孔凸起结构的薄夹层面板。这种超塑性成型和发泡(SPFF)处理技术具有近净形状的潜力以及多孔金属的固态发泡的评估。

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