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Effects of SiO_2 and Rare-Earth Oxide Additions on Densification and Mechanical Properties of Silicon Carbide Ceramics

机译:SiO_2和稀土氧化物对碳化硅陶瓷致密化和力学性能的影响

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摘要

Effects of co-addition of SiO_2 and rare earth oxide (REO) such as Eu_2O_2, Sm_2O_3, Gd_2O_3, Y_2O_3 on densification and mechanical properties of SiC ceramics were studied. Sintering was performed using hot-pressing method at 1950℃ with applied pressure of 40MPa for wide ranges of additive composition. Relative densities of the specimens sintered with SiO_2-REO were improved compared with the specimen sintered with only REO. Grain growth of SiC was suppressed and higher bending strength more than 800 MPa was achieved via liquid phase sintering containing large amount of SiO_2. Secondary phases were mostly amorphous in the case of large amount of SiO_2, and rare earth silicates in the case of small amount of SiO_2 addition. It was suggested that addition of large amount of SiO_2 was effective to improve density and bending strength of SiC ceramics.
机译:研究了SiO_2与稀土氧化物(REO)如Eu_2O_2,Sm_2O_3,Gd_2O_3,Y_2O_3共添加对SiC陶瓷致密化和力学性能的影响。烧结是在1950℃下采用热压法,在40MPa的施加压力下进行的,以实现广泛的添加剂组成。与仅用REO烧结的样品相比,用SiO_2-REO烧结的样品的相对密度有所提高。通过含有大量SiO_2的液相烧结,抑制了SiC的晶粒长大,并获得了超过800 MPa的更高弯曲强度。在大量的SiO_2的情况下,第二相大部分为非晶态,而在少量的SiO_2的情况下为稀土硅酸盐。研究表明,大量加入SiO_2可以有效提高SiC陶瓷的密度和抗弯强度。

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