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Effects of Grinding Conditions on Bending Strength in Silicon Nitride and Alumina

机译:研磨条件对氮化硅和氧化铝弯曲强度的影响

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Ceramic materials after sintering process are usually ground to improve the accuracy of dimension in finished components. Previous investigations reveal that strength properties are influenced by grinding conditions. It is noted that residual stresses as well as surface flaws, which are generated in grinding process of ceramics, may remarkably affect strength properties of ceramics. For successful applications of ceramics to engineering components, strength characteristics of notched components should also be elucidated because actual components have portions with stress concentration. Considering aspects as noted above, it is important to clarify effects of grinding conditions, including a notch-machining effect, on the strength in applications of ceramics. Since a strength scatter is very large in ceramics [ex. 9], a statistical approach is also required to investigate the influence of grinding conditions on the ceramic strength. In this work, the effect of grinding conditions, especially variations of the grit size of grinding wheel and the cutting depth, on a three-point bending strength was examined using smooth specimens of a pressureless sintered silicon nitride. In this case, the strength depending on distinct grinding conditions was discussed in the correlation with a grind-ing-induced residual stress. Form another aspect, four-point bending tests of a gas pressured silicon nitride and a pressure-less alumina were carried out using notched specimens with different notch shapes as well as smooth specimens of distinct sizes. The influence of notch machining on the bending strength was experimentally clarified.
机译:烧结过程之后的陶瓷材料通常是研磨的,以提高成品组分中尺寸的准确性。以前的研究表明,强度性质受磨削条件的影响。应注意,在陶瓷研磨过程中产生的残余应力以及表面缺陷可能显着影响陶瓷的强度性质。对于陶瓷的成功应用于工程部件,还应阐明缺口组分的强度特性,因为实际部件具有应力浓度的部分。考虑到上文所述的方面,重要的是阐明磨削条件的影响,包括Notch加工效果,陶瓷应用中的强度。由于陶瓷中强度散射非常大[Ex。如图9所示,还需要一种统计方法来研究研磨条件对陶瓷强度的影响。在这项工作中,采用无压烧结氮化硅的光滑标本检查研磨条件的磨削条件,砂轮的砂砾尺寸和切割深度的变化,特别是在三点弯曲强度上。在这种情况下,根据与研磨诱导的残余应力的相关性讨论了取决于不同的研磨条件的强度。形成另一个方面,使用具有不同凹口形状的缺口样品以及不同尺寸的平滑样品进行气体压力氮化硅的四点弯曲试验和减压氧化铝。实验阐明了槽口加工对弯曲强度的影响。

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