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Effects of ZrO2 and Y2O3 on physical and mechanical properties of ceramic bond and ceramic CBN composites

机译:ZrO2和Y2O3对陶瓷键和陶瓷CBN复合材料的物理和力学性能的影响

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摘要

In order to optimize the structure performances of ceramic cubic boron nitride (CBN) grinding wheels, the effects of ZrO2 and Y2O3 addition on the physical and mechanical properties of ceramic bond and ceramic CBN composites were systematically investigated. The basic ceramic bond was composed of B2O3, Al2O3, SiO2, Li2O and Na2O. The additions of ZrO2 and Y2O3 had a certain effect on refractoriness, liquidity, flexural strength of ceramic bonds. The experimental results demonstrated that in the ceramic bonds, both ZrO2 and Y2O3 could promote the formation of glass grid, while the ceramic bond strength would further increase. In addition, the new phase of YBO3 appeared in the ceramic bond, due to the filling of Y2O3. When the contents of ZrO2 and Y2O3 were 4 wt% respectively, the strength of the ceramic bond was highest, increasing by 23% (16.1 Mpa) compared to the basic ceramic bond. The last point required to be pointed out was that the phase transformation toughening of ZrO2 cannot be achieved and it was limited by low temperature sintering.
机译:为了优化陶瓷立方硼氮化物(CBN)研磨轮的结构性能,系统地研究了ZrO2和Y2O3添加对陶瓷键和陶瓷CBN复合材料的物理和力学性能的影响。基本陶瓷键由B2O3,Al 2 O 3,SiO 2,Li2O和Na 2 O组成。 ZrO2和Y2O3的添加对陶瓷键的耐火性,流动性,弯曲强度有一定的影响。实验结果表明,在陶瓷键中,ZrO2和Y2O3都可以促进玻璃栅格的形成,而陶瓷粘合强度将进一步增加。另外,由于Y2O3的填充,YbO3的新阶段出现在陶瓷键中。当ZrO2和Y 2 O 3的含量分别为4wt%时,陶瓷键的强度最高,与基本陶瓷键相比,增加23%(16.1MPa)。需要指出的最后一点是,不能实现ZrO2的相变强化,并且它受低温烧结的限制。

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