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The effect of nano-sized sintering aids on toughening behavior of silicon nitride

机译:纳米烧结助剂对氮化硅增韧行为的影响

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摘要

Processing plays an important role in determining the microstructure of silicon nitrides which in turn influences the mechanical properties, such as hardness and toughness. Sintering aids are an important processing parameter. The influence of the chemistry of sintering aids on properties of silicon nitrides is a well-explored subject. Here the size of sintering aids used and its impact on microstructure and mechanical properties is explored. Specifically the use of nano-scale versus micron-scale sintering aids is examined. Microstructures and mechanical properties for silicon nitrides hot-pressed with nano-sized sintering aids are compared with a reference silicon nitride hot-pressed with micron-sized sintering aids. Hardness and fracture toughness are determined at room temperature using hardness indents. Grain size and aspect ratio distributions are determined for the two silicon nitrides and their impact on mechanical properties are examined. Toughening behavior is studied by experimentally determining R-curves. Both toughness and toughening (R-curve) behavior are shown to improve with the use of nano-scale sintering aids.
机译:加工在确定氮化硅的微观结构方面起着重要作用,而氮化硅的微观结构又会影响机械性能,例如硬度和韧性。烧结助剂是重要的加工参数。烧结助剂的化学性质对氮化硅性能的影响是一个有待深入研究的课题。在此探讨了所用烧结助剂的尺寸及其对微结构和机械性能的影响。具体地,检查了纳米级与微米级烧结助剂的使用。将纳米尺寸的烧结助剂热压的氮化硅的微观结构和力学性能与微米尺寸的烧结助剂热压的参考氮化硅进行了比较。硬度和断裂韧性在室温下使用硬度压痕确定。确定两种氮化硅的晶粒尺寸和纵横比分布,并检查其对机械性能的影响。通过实验确定R曲线研究增韧行为。随着纳米级烧结助剂的使用,韧性和韧性(R曲线)行为均得到改善。

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