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Preparation, microstructure and mechanical properties of SiC-SiC and B4C-B4C laminates

机译:SiC-SiC和B4C-B4C层压板的制备,显微组织和力学性能

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Silicon carbide and boron carbide are high hardness materials with a low density but, like most ceramics, with a low toughness, that limits their use in various applications. One approach to reinforce ceramic materials consists in using crack deflection by weakening the interfaces in laminar materials. In our study, ceramic layers of different compositions were prepared by tape casting and stacked in predefined sequences. Different weak layers were tested: porous layers made with different pore forming agents for SiC; porous layers made with pore forming agent or by varying the quantity of sintering aid and weak interfaces made with graphite spray for B4C. After debinding, SiC (Al2O3, Y2O3 additions) and B4C (C addition) were pressureless sintered. For evaluation of the sintered parts, firstly the macrostructure and microstructure were characterized. Then, mechanical properties of multi-layered materials, obtained by stacking dense and porous layers that should contain enough porosity to initiate crack deflection, according to the models, were evaluated. (C) 2003 Elsevier Inc. All rights reserved. [References: 15]
机译:碳化硅和碳化硼是具有低密度的高硬度材料,但与大多数陶瓷一样,具有低韧性,这限制了它们在各种应用中的使用。增强陶瓷材料的一种方法是通过弱化层状材料中的界面来使用裂纹变形。在我们的研究中,通过流延铸造制备了不同成分的陶瓷层,并以预定的顺序堆叠。测试了不同的弱层:用不同的SiC造孔剂制成的多孔层;用成孔剂制成的多孔层,或通过改变烧结助剂的量和用B4C石墨喷涂制成的弱界面。脱脂后,将SiC(添加Al2O3,Y2O3)和B4C(添加C)进行无压烧结。为了评估烧结零件,首先表征了宏观结构和微观结构。然后,根据模型评估了多层材料的机械性能,该材料是通过堆叠致密且多孔的层而获得的,这些层应包含足够的孔隙率以引发裂纹偏斜。 (C)2003 Elsevier Inc.保留所有权利。 [参考:15]

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