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Effect of Sheet Nanocarbon on Properties of Low Carbon Al2O3-C Refractories

机译:片状纳米碳对低碳Al2O3-C耐火材料性能的影响

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Sheet nanocarbon-Al2O3 composite powders were produced by vibratory milling using expanded graphite and Al2O3 powders as raw materials.The effect of different vibratory milling time on phase compositions and microstructure of the composite powders were investigated by X-ray diffraction (XRD),field emission scanning electron microscope (FESEM).Then sheet nanocarbon-Al2O3 composite powders were used as additives to produce low carbon Al2O3-C refractories which had a carbon content of 6%.The results showed that about 50nm thickness sheet nanocarbon and Al2O3 composite powders were produced via 15h milling with expanded graphite to Al2O3 powders weight ratio of 1:2.With the increasing of milling time,the (002) diffraction peaks of graphite wear off gradually and nano-sheet was desquamated from expanded graphite; It is beneficial to improve the bulk density,cold modulus of rupture(CMOR) and thermal shock resistance of Al2O3-C refractories when adding certain sheet nanocarbon-Al2O3 composite powders.The sample containing 0.5% sheet nanocarbon had a CMOR of 18.51MPa after 1000 oC heat processing in N2 atmosphere,while sample without adding any sheet nanocarbon was only 12.35MPa; The residual cold modulus of rupture(CMORTS) of sample containing 1% sheet nanocarbon was 4.22MPa after thermal shock test,while that of sample without nanocarbon was only 2.18MPa.
机译:以膨化石墨和Al2O3为原料,通过振动研磨制备了片状纳米碳-Al2O3复合粉末。通过X射线衍射(XRD),场发射研究了不同振动时间对复合粉末相组成和微观结构的影响。然后用片状纳米碳-Al2O3复合粉末作为添加剂制备碳含量为6%的低碳Al2O3-C耐火材料。结果表明,制备了约50nm厚度的片状纳米碳和Al2O3复合粉末。通过15h的膨胀石墨与Al2O3粉末的重量比为1:2的研磨。随着研磨时间的增加,石墨的(002)衍射峰逐渐磨损,纳米片从膨胀石墨中脱出。加入一定量的片状纳米碳-Al2O3复合粉体时,有利于提高Al2O3-C耐火材料的堆积密度,冷断裂模量和耐热冲击性。1000%加入0.5%片状纳米碳时,CMOR为18.51MPa。在氮气气氛中进行oC热处理,而未添加任何片状纳米碳的样品仅为12.35MPa;经热冲击试验,含1%片状纳米碳的样品的残余冷断裂模量(CMORTS)为4.22MPa,而不含纳米碳的样品的残余冷断裂模量仅为2.18MPa。

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