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Fly Ash Constituent-Silica and Alumina Role in the Synthesis and Characterization of Cordierite Based Ceramics

机译:粉煤灰成分 - 二氧化硅和氧化铝作用在堇青石陶瓷的合成和表征中

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摘要

Abundant availability of fly ash due to the combustion of coal in thermal power plants presents a major threat to rising environmental pollution. To preserve the environment, fly ash was explored as the starting material for cordierite synthesis. Cordierite ceramics are widely used in the production of microelectronic components, catalyst substrate material for internal combustion engine. Hence, this research was pursued to fabricate the cordierite in a cost effective manner using fly ash containing the major constituent's silica (SiO2) and alumina (Al2O3). Cordierite synthesis is carried out using raw materials fly ash, magnesia and dopants such as ZrO2, CeO2 and TiO2 at different composition (5-20 wt%). The properties and the microstructure of prepared samples were evaluated using X-ray diffraction (XRD), thermogravimetric and differential thermal analysis (TG/DTA), and scanning electron microscopy. Their mechanical and thermal properties such as the hardness, the fracture toughness, the flexural strength and the thermal expansion coefficient (CTE) were studied and compared with their morphology. It was found that the hardness, the fracture toughness, and the flexural strength were improved on the addition of the dopant in the cordierite matrix. The cordierite-ZrO2 ceramics (CZr20) exhibited a Vickers hardness value of 7.04 GPa, the fracture toughness of 3.47 MPa m(1/2), and flexural strength of 196.72 MPa. The results confirm the cordierite synthesized with fly ash along with dopants is found suitable for use as catalytic substrate materials with improved mechanical properties.
机译:由于热电厂中煤的燃烧,粉煤灰的丰富可用性提出了对环境污染上升的重大威胁。为了保持环境,探索粉煤灰作为堇青石合成的起始材料。堇青石陶瓷广泛用于微电子元件,内燃机的催化剂基材材料的生产。因此,追求该研究以使用含有主要成分二氧化硅(SiO 2)和氧化铝(Al2O3)的粉煤灰以成本有效的方式制造堇青石。堇青石合成使用原料粉煤灰,氧化镁和掺杂剂如ZrO2,CeO2和TiO 2处进行(5-20​​wt%)。使用X射线衍射(XRD),热重分析和差分热分析(Tg / DTA)和扫描电子显微镜评估制备样品的性质和微观结构。研究了它们的机械和热性能,例如硬度,断裂韧性,弯曲强度和热膨胀系数(CTE)与它们的形态进行了比较。发现硬度,断裂韧性和弯曲强度在堇青石基质中加入掺杂剂。堇青石 - ZrO2陶瓷(CZR20)表现出7.04GPa的维氏硬度值,骨折韧性为3.47mPa m(1/2),弯曲强度为196.72MPa。结果证实,用粉煤灰合成的堇青石以及掺杂剂被发现适用于具有改善的机械性能的催化基材材料。

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