首页> 外文期刊>CERAMICS INTERNATIONAL >The comparison of mechanical behavior of MgO-MgAl_2O_4 with MgO-ZrO_2 and MgO-MgAl_2O_4-ZrSi04 composite refractories
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The comparison of mechanical behavior of MgO-MgAl_2O_4 with MgO-ZrO_2 and MgO-MgAl_2O_4-ZrSi04 composite refractories

机译:MgO-MgAl_2O_4与MgO-ZrO_2和MgO-MgAl_2O_4-ZrSiO4复合耐火材料力学性能的比较

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摘要

Mechanical properties of different compositions obtained from the additions of 5, 10, 20 and 30 wt.% zircon (ZrSiO_4) into the MgO-spinel composite refractories and ZrO_2 into MgO have been examined, the variations that occurred have been determined, and the parameters affecting those factors have been investigated with the reasons. The density, strength, Young's modulus, fracture toughness, fracture surface energy and work of fracture were measured and evaluated. Microstructural variations and fracture surfaces have been examined and the formation of new phases has been identified depending on the additive type and quantity. The relationships between mechanical properties and structural variations for different compositions have been examined. In MgO-spinel materials, strength, Young's modulus and fracture toughness values decrease up to 20% spinel addition and stay almost constant for further loads. ZrO_2 addition displays same trend but not as effective as spinel. Besides, since ZrO_2 is stable in cubic form, it does not show any toughening mechanism. Forsterite formation is the most important factor for 2-fold improvement in the mechanical properties of MgO-spinel-zircon refractories. The more the zircon addition, the more the mechanical properties improve. The generation of natural bonding between matrix particles with forsterite formation, on the other hand, causes the fracture path to turn to transgranular fracture with an increase in fracture surface energy and a decrease in work of fracture, among which the latter is considered as an indicator of thermal shock resistance of the materials being high.
机译:研究了在MgO-尖晶石复合耐火材料中添加5、10、20、30%的锆石(ZrSiO_4)和在MgO中添加ZrO_2所获得的不同成分的机械性能,确定了变化并确定了参数已经调查了影响这些因素的原因。测量和评估密度,强度,杨氏模量,断裂韧性,断裂表面能和断裂功。已经检查了微观结构变化和断裂表面,并已根据添加剂的类型和数量确定了新相的形成。已经检查了不同组成的机械性能和结构变化之间的关系。在MgO-尖晶石材料中,强度,杨氏模量和断裂韧度值最多降低20%的尖晶石添加量,并且对于进一步的负载几乎保持恒定。 ZrO_2的添加趋势相同,但不如尖晶石有效。另外,由于ZrO 2以立方形式稳定,因此没有显示任何增韧机理。镁橄榄石形成是MgO-尖晶石-锆石耐火材料力学性能提高2倍的最重要因素。锆石的添加量越多,机械性能的改善就越多。另一方面,在具有镁橄榄石形成的基体颗粒之间自然结合的产生,使断裂路径转变为经晶断裂,其断裂表面能增加而断裂功降低,其中后者被认为是指示剂。材料的抗热震性高。

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