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The influence of process parameters on in situ inorganic foaming of alkali-bonded SiC based foams

机译:工艺参数对碱结合SiC基泡沫原位无机发泡的影响

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Silicon carbide (SiC) foams were developed with a low temperature process by using an inorganic alkali aluminosilicates binder, also known as geopolymer. The foaming agent was the metallic silicon present as impurity in the SiC powder. Si0 in the alkaline solution led to gas evolution that induced the foaming of the slurries. The binder was a geopolymeric resin with atomic ratio Si/Al = 2 and potassium as alkaline cation, classified as (K)poly(silalate-siloxo). The geopolymeric resin was prepared using metakaolin as aluminosilicatic raw powder, while the alkali aqueous solution was KOH/K_2SiO_3. Metakaolin in alkaline conditions dissolved and re-precipitated to form geopolymeric nano-particulates that acted as a glue to stick together SiC particles (90 wt.%). Process parameters such as water addition, mixing time and curing temperature were correlated to the foam structure. The formation of prolate pores induced anisotropy in the compressive strength. The foams were studied by dilatometric analysis in inert and oxidative atmospheres up to 1200 °C.
机译:碳化硅(SiC)泡沫是通过使用无机碱铝硅酸盐粘合剂(也称为地质聚合物)以低温工艺开发的。发泡剂是作为杂质存在于SiC粉末中的金属硅。碱性溶液中的SiO 2导致气体逸出,从而引起浆料的发泡。粘合剂是原子比为Si / Al = 2且钾为碱性阳离子的地聚合物树脂,分类为(K)聚(硅酸盐-硅氧烷)。使用偏高岭土作为铝硅原粉制备地聚树脂,而碱水溶液为KOH / K_2SiO_3。偏高岭土在碱性条件下溶解并重新沉淀,形成地聚合物纳米颗粒,该颗粒充当胶粘剂,将SiC颗粒(90 wt。%)粘在一起。诸如水添加,混合时间和固化温度的工艺参数与泡沫结构相关。长孔的形成引起了抗压强度的各向异性。通过膨胀计分析在高达1200°C的惰性和氧化气氛中对泡沫进行了研究。

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