首页> 外文期刊>Refractories and Industrial Ceramics >PHYSICOMECHANICAL PROPERTIES AND PHASE COMPOSITION OF UNFIRED PERICLASE-CARBON REFRACTORIES BASED ON MODIFIED PHENOL-FORMALDEHYDE RESIN
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PHYSICOMECHANICAL PROPERTIES AND PHASE COMPOSITION OF UNFIRED PERICLASE-CARBON REFRACTORIES BASED ON MODIFIED PHENOL-FORMALDEHYDE RESIN

机译:基于改性酚醛树脂的未引用蠕变 - 碳耐火材料的物理机械性能及相组成

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摘要

Possibilities for improving the physicomechanical properties of periclase-carbon materials by modifying phenol-formaldehyde resin (PFR) with organo-inorganic complexes are described. The composition of the modifying additives and phase composition of materials after PFR hardening are provided. The effect of modifiers on material structure formation is established. It is shown that introduction of ethyl silicate or hydrolyzed ethyl silicate into liquid PFR during charge preparation contributes to formation of SiC within the phase composition. It is concluded that it is rational to introduce ethyl silicate in an amount of from 0.66 to 1 wt.%, and it is promising to add nickel oxalate into a liquid PFR together with ammonium citrate to increase periclase-carbon material compressive strength up to 60 MPa.
机译:描述了通过改变具有有机无机络合物的酚醛 - 甲醛树脂(PFR)来改善纤溶 - 碳材料的物理机械性能的可能性。 提供了PFR硬化后改性添加剂和相相组成的组成。 建立了改性剂对材料结构形成的影响。 结果表明,在电荷制剂期间将硅酸盐或水解的硅酸盐硅酸盐的硅酸盐引入液态PFR中有助于在相组合物中形成SiC。 得出结论是,将硅酸乙酯的含量为0.66至1重量%是合理的,并且希望将草酸盐的镍与柠檬酸铵加入液态PFR中以增加最多60的液体 - 碳材料抗压强度 MPA。

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