论文标题
不同的Ca $^{2+} $源对高温下热绝缘的巨型晶状体耐火材料的物理特性的影响
Impact of Distinct Ca$^{2+}$ Sources on the Physical Properties of Alumina-based Macroporous Refractories for Thermal Insulation at High Temperature
论文作者
论文摘要
Calcium aluminate cement (CAC), calcium carbonate (CaCO$_3$), calcium hydroxide [Ca(OH)$_2$] and calcium oxide (CaO) were investigated in alumina-based macroporous compositions for $\textit{in situ}$ formation of hibonite (also known as CaO.6Al$_2$O$_3$ or ca $ _6 $)。由于其体积扩展,此阶段可以抵消当发射大型陶瓷时观察到的线性收缩。为了评估每个CA $^{2+} $源对物理特性的影响,对其总孔隙率,压碎强度和线性收缩进行了处理和表征。 Caco $ _3 $ - 含有样品在热处理后表现出高孔隙率和小尺寸变化。因此,用$ CACO_3 $制定了一种新颖的成分,以便在热力学平衡上产生100%CA $ _6 $。除了通常的属性外,评估了热弹性模量($ e _ {\ rm in \ situ} $)的$ \ textIt {int intu} $更改和热导率($ k _ {\ rm eff} $)。该构图带来了令人鼓舞的结果,作为恒定且低$ k _ {\ rm eff} $,低温和年轻模量在低温下增加。这些属性使生产更有效的绝缘子具有更好的服务性能。
Calcium aluminate cement (CAC), calcium carbonate (CaCO$_3$), calcium hydroxide [Ca(OH)$_2$] and calcium oxide (CaO) were investigated in alumina-based macroporous compositions for $\textit{in situ}$ formation of hibonite (also known as CaO.6Al$_2$O$_3$ or CA$_6$). Due to its volumetric expansion, this phase could counteract the linear shrinkage observed when macroporous ceramics are fired. In order to evaluate the impact of each Ca$^{2+}$ source on the physical properties, different formulations were processed and characterized for their total porosity, crushing strength and linear shrinkage. CaCO$_3$-containing samples presented high porosity and small dimensional changes after thermal treatment. Thus, a novel composition was formulated with $CaCO_3$ in order to result in 100 % CA$_6$ on thermodynamic equilibrium. Besides the usual properties, its $\textit{in situ}$ changes in the hot elastic modulus ($E_{\rm in\ situ}$) and thermal conductivity ($k_{\rm eff}$), were evaluated. This composition presented promising results, as a constant and low $k_{\rm eff}$, low linear expansion and Young modulus increase at low temperatures. These properties make it possible to produce more efficient insulators with better performance in service.