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Porosity and Strength of Silicon Carbide Foams Prepared Using Preceramic Polymers

机译:用陶瓷前体聚合物制备的碳化硅泡沫的孔隙率和强度

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Two types of polymeric precursors for silicon carbide (SiC) were dissolved in dichloromethane. Subsequently, between 10-80 wt% of silicon nitride (Si_3N_4) and titanium carbide (TiC) powder were added separately into the solutions to make SiC-Si_3N_4 and SiC-TiC suspensions. Cubes of polyurethane (PU) foams were soaked in precursor solution and suspensions and pyrolyzed in flowing nitrogen to produce SiC, SiC-Si_3N_4 and SiC-TiC composite foams. Some foams were heated further in nitrogen to 1600℃. Shrinkage observed after pyrolysis and further heating the foams was measured and can be reduced by varying the concentration of polymeric precursor, Si_3N_4 and TiC content. The foams produced have porosities in the range 85-96%. The average compressive strength of the foams is in the range of 1.1-1.6 MPa.
机译:将两种类型的碳化硅(SiC)聚合前体溶解在二氯甲烷中。随后,将10-80重量%的氮化硅(Si_3N_4)和碳化钛(TiC)粉末分别添加到溶液中以制备SiC-Si_3N_4和SiC-TiC悬浮液。将聚氨酯(PU)泡沫的立方体浸泡在前体溶液和悬浮液中,并在流动的氮气中热解,以生产SiC,SiC-Si_3N_4和SiC-TiC复合泡沫。将一些泡沫在氮气中进一步加热到1600℃。测量了在热解和进一步加热后观察到的泡沫的收缩率,并且可以通过改变聚合物前体的浓度,Si_3N_4和TiC含量来降低其收缩率。产生的泡沫的孔隙率在85-96%的范围内。泡沫的平均抗压强度在1.1-1.6MPa的范围内。

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