首页> 外文会议>Advances in Material amp;amp;amp; Processing Technologies Conference >The Effect of Space Holder Content and Sintering Temperature of Magnesium Foam on Microstructural and Properties Prepared by Sintering Dissolution Process (SDP) using Carbamide Space Holder
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The Effect of Space Holder Content and Sintering Temperature of Magnesium Foam on Microstructural and Properties Prepared by Sintering Dissolution Process (SDP) using Carbamide Space Holder

机译:使用氨基胺空间支架烧结溶解过程(SDP)制备的镁泡沫含量和镁泡烧结温度的影响

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Magnesium foam has gained a significant interest in structural application due to low density and greater strength than aluminium foam. In this study, magnesium foam was produced by sintering dissolution process (SDP) using spherical carbamide as the space holder. Magnesium foam was prepared using SDP at sintering temperatures (600 °C, 630 'C, 650 °C) and carbamide composition (30 wt.%, 50 wt.%, and 70 wt.%). The foams produced were characterized for morphology, density, porosity and compressive strength. Porosity of the magnesium foam increased with increasing amount of space holder at all the sintering temperatures while the density showed the reversed trend. Magnesium foam with 50 wt.% carbamide at all the sintering temperatures showed the acceptable range of density and porosity for energy absorbent which are in the range of 0.57-0.61 g/cm~3 and 64.7-67.3%. Magnesium foam with 50 wt.% carbamide at sintering temperature of 630°C has density, porosity and compressive strength of 0.61 g/cm~3, 64.7% and 5 MPa.
机译:由于低密度和比铝泡沫更大的强度,镁泡沫在结构施用中获得了显着兴趣。在该研究中,使用球形碳酰胺作为空间支架,通过烧结溶解方法(SDP)产生镁泡沫。使用SDP在烧结温度下(600℃,630'C,650℃)和氨基甲酰胺组合物(30重量%,50重量%,70重量%)制备镁泡沫。产生的泡沫的特征在于形态,密度,孔隙率和抗压强度。镁泡沫的孔隙率随着在所有烧结温度下的增加量的空间支架而增加,而密度显示逆转趋势。具有50重量%的镁泡沫。在所有烧结温度下,%氨基甲酸酯显示出可接受的密度范围和能量吸收性的孔隙率,其在0.57-0.61g / cm〜3和64.7-67.3%的范围内。镁泡沫泡沫,50重量%。烧结温度为630°C的%氨基甲酰胺具有密度,孔隙率和抗压强度为0.61g / cm〜3,64.7%和5MPa。

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