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Effect of forming methods on porosity and compressive strength of polysiloxane-derived porous silicon carbide ceramics

机译:形成方法对聚硅氧烷衍生多孔多孔碳化硅陶瓷孔隙率和抗压强度的影响

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Open-cell silicon carbide foams were fabricated from a blend of carbon-filled polysiloxane using three different plastic forming methods: compression molding, injection molding, and extrusion. Compression molding process led to more homogeneous microstructure than the other forming methods, resulting in superior compressive strength (20.6 MPa at 72.4% porosity). In contrast, extrusion molding led to higher porosity (~84%) than the other forming methods (72–74%) as a result of a higher level of expansion of expandable microspheres. Injection molding process led to a partial segregation of expanded microspheres and resulted in moderate compressive strength (9.1 MPa at 74.1% porosity).
机译:使用三种不同的塑料成形方法,由碳填充聚硅氧烷的混合物制成开放式碳化硅泡沫:压缩成型,注塑和挤出。压缩成型过程LED比其他成形方法更加均匀的微观结构,导致抗压强度优异(20.6MPa为72.4%孔隙率)。相反,由于可膨胀微球的膨胀水平较高,挤出成型比其他成形方法(72-74%)更高的孔隙率(〜84%)。注塑方法导致膨胀微球的部分偏析,并导致中等压缩强度(9.1MPa,孔隙率为74.1%)。

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