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Fabrication and characterization of Sialon-Si3N4 graded nano-composite ceramic tool materials

机译:Sialon-Si3N4梯度纳米复合陶瓷刀具材料的制备与表征

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摘要

Sialon-Si3N4 graded nano-composite ceramic tool materials with five-layered symmetrical distribution were fabricated by using hot pressing technique. Mechanical property tests have been conducted to determine the optimal structural parameters and sintering parameters. The residual stresses in the surface layer of the graded ceramic tool materials were calculated by the indentation method. The experiment results showed that Sialon-Si3N4 graded ceramic tool materials with a thickness ratio of 0.3, which were sintered under a pressure of 35 MPa at a sintering temperature of 1700-1750 ℃ for 60 min, had optimum mechanical properties. And the graded structure can induce residual compressive stresses in the material surface layer. The characterization revealed a typical duplex distribution with small |3-Si3N4 grains embedded in the matrix of large p-Si3N4 grains. This duplex microstructure can contribute to the improvement of flexural strength and fracture toughness. Additionally, a mix of intergran-ular and transgranular fracture, crack deflection and crack bridging in the material surface layer contributed to the strengthening and toughening mechanisms for Sialon-Si3N4 graded ceramic tool materials.
机译:采用热压技术制备了具有五层对称分布的Sialon-Si3N4梯度纳米复合陶瓷刀具材料。进行了机械性能测试,以确定最佳的结构参数和烧结参数。通过压痕法计算出梯度陶瓷工具材料的表面层中的残余应力。实验结果表明,在35 MPa的压力下于7000〜1750℃的烧结温度下烧结60 min,厚度比为0.3的Sialon-Si3N4梯度陶瓷工具材料具有最佳的力学性能。并且该渐变结构可以在材料表面层中引起残余压应力。表征揭示了典型的双相分布,其中| 3-Si3N4小晶粒嵌入大p-Si3N4晶粒的基质中。这种双相微观结构可以有助于提高抗弯强度和断裂韧性。此外,材料表面层中晶间和晶间断裂,裂纹变形和裂纹桥接的混合有助于增强Sialon-Si3N4梯度陶瓷刀具材料的增韧机制。

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  • 来源
    《Composites 》 |2011年第7期| p.1813-1820| 共8页
  • 作者单位

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture ofMOE, School of Mechanical Engineering, Shandong University, 77923 Jingshi Road, Jinan 250061, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Ceramic-matrix composites (CMCs); A. Layered structures; B. Mechanical properties; B. Microstructures;

    机译:A.陶瓷基复合材料(CMC);A。分层结构;B.力学性能;B.微观结构;

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