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Synthesis and characterization of novel ZnAl22 syntactic foam composites via casting

机译:新型ZnAl22复合泡沫复合材料的铸造合成与表征。

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New syntactic foam composites comprising ZnAl22 (Zn-22 wt.%Al) eutectoid alloy and varying volume fraction (6-50 vol.%) of Ni-coated fly ash microballoons were successfully prepared through stir casting (vortex) method. Solution treatment at 400 ℃ for 0.5 h followed by quenching resulted in changing the dendritic structure of the foam composite matrix to fine grains. The effect of microballoon volume fraction on the microstructure, compressive properties and strain rate sensitivity of the foam composites was characterized. The experimental results showed that the density of the foam composite containing 50 vol.% microballoons was 3.3g/cm~3, the plateau stress averaged 100 MPa over a region of 10-60% strain, densification began at approximately 60% strain and the energy absorption at 60% strain was 65.5 MJ/m~3. The strain rate sensitivity of foam composites was investigated under compression loading. Their responses to strain rate were tested over a range of strain rates from 4.16 × 10~(-4) s~(-1) to 1.25 × 10~(-3) s~(-1) at room temperature. Within this range, for the composites containing up to 25 vol.% microballoons, the yield strength increased with an increase of strain rate. However, the yield strength of the foam composites with 35 and 50 vol.% slightly decreased with increasing the strain rate. These novel foam composites developed in the present study displayed superior compressive properties and energy absorption capacity compared to those of the conventional foams, suggesting their potential use in the aerospace, automotive, and biomedical applications. The preparation of syntactic ZnAl22 syntactic foam composites by stir casting may open up the possibility of producing syntactic foam comprising other metal matrices with other microballoons in foundries.
机译:通过搅拌浇铸(涡旋)法成功地制备了包含ZnAl22(Zn-22 wt。%Al)共析合金和不同体积分数(6-50 vol。%)的Ni包覆粉煤灰微气球的新型复合泡沫复合材料。在400℃固溶处理0.5 h,然后淬火导致泡沫复合材料基体的树枝状结构变为细颗粒。表征了微球体积分数对泡沫复合材料的微观结构,压缩性能和应变速率敏感性的影响。实验结果表明,含50%(体积)微气球的泡沫复合材料的密度为3.3g / cm〜3,在10-60%应变范围内的平台应力平均为100 MPa,在约60%应变下开始致密化, 60%应变下的能量吸收为65.5 MJ / m〜3。在压缩载荷下研究了泡沫复合材料的应变率敏感性。在室温下,在从4.16×10〜(-4)s〜(-1)到1.25×10〜(-3)s〜(-1)的一系列应变速率下测试了它们对应变速率的响应。在此范围内,对于含有不超过25%(体积)微球的复合材料,屈服强度随应变率的增加而增加。然而,随着应变速率的增加,具有35和50体积%的泡沫复合材料的屈服强度略有降低。与常规泡沫相比,本研究中开发的这些新型泡沫复合材料显示出优异的压缩性能和能量吸收能力,表明它们在航空航天,汽车和生物医学应用中的潜在用途。通过搅拌浇铸制备ZnAl22复合泡沫复合材料可能为铸造厂生产包含其他金属基质和其他微球的复合泡沫提供了可能。

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