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首页> 外文期刊>CERAMICS INTERNATIONAL >Mechanical properties and microstructure of Al2O3-SiCw ceramic tool material toughened by Si3N4 particle
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Mechanical properties and microstructure of Al2O3-SiCw ceramic tool material toughened by Si3N4 particle

机译:Si3N4颗粒增韧Al2O3-SiCW陶瓷工具材料的力学性能和微观结构

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摘要

Al2O3-SiCw toughened ceramic tools play vital role in high-speed machining of nickel-based superalloys due to their superior mechanical properties. Herein, owing to synergistic toughening mechanism, alpha-Si3N4 particles are employed as reinforcement phase into Al2O3-SiCw ceramic composite to optimize mechanical properties of Al2O3-SiCw ceramic tools. Moreover, the influence of Si3N4 content and sintering parameters on microstructure and mechanical properties of Al2O3-20 vol%SiCw ceramic tool material is systematically investigated. Results reveal that appropriate amount of Si3N4 particles is required to effectively increase the density of Al2O3-SiCw ceramic composites. The presence of Si(3)N(4 )particles leads to formation of novel beta-sialon phase during hot-press sintering, which effectively enhances fracture toughness and flexural strength of Al2O3-SiCw ceramic composites. It is observed that grain size of newly formed beta-sialon phase is extremely sensitive to hot-pressing sintering conditions. The degree of chemical transformation of alpha-Si3N4 into Si6-zAlzOzN8-z (beta-sialon) and z-value of Si6-zAlzOzN8-z, are significantly influenced by sintering temperature. Overall, Al2O3-20 vol%SiCw-15 vol%Si3N4 ceramic tool material, with 1.5 vol%Y2O3-0.5 vol%La2O3-0.5 vol%CeO2 (YLC) sintering additive, rendered optimal mechanical properties after sintering at 1600 degrees C under 32 MPa for 30 min. Improved mechanical performance can be ascribed to synergistic toughening and strengthening influence of whiskers and particles.
机译:AL2O3-SICW增韧陶瓷工具由于其优越的机械性能而在高速加工的高速加工中起着至关重要的作用。在此,由于协同增韧机制,α-Si3N4颗粒作为增强相中的增强相,以优化Al2O3-SiCW陶瓷工具的机械性能。此外,系统地研究了Si3N4含量和烧结参数对Al2O3 -20 Vol%SiCW陶瓷工具材料的微观结构和机械性能的影响。结果表明,需要适当量的Si3N4颗粒来有效地增加Al2O3-SiCW陶瓷复合材料的密度。 Si(3)N(4)颗粒的存在导致热压烧结过程中的新型β-唾液相,这有效提高了Al2O3-SiCW陶瓷复合材料的断裂韧性和抗弯强度。观察到,新形成的β-唾液相的粒度对热压烧结条件非常敏感。通过烧结温度显着影响α-Si3N4至Si6-ZALZOZN8-Z(β-唾液管)和Z值的化学转化程度。总体而言,Al2O3-20 Vol%SiCW-15 Vol%Si3N4陶瓷工具材料,具有1.5 Vol%Y2O3-0.5 Vol%La2O3-0.5 Vol%CeO2(YLC)烧结添加剂,在烧结后的1600摄氏度下烧结后的最佳机械性能MPA 30分钟。改善的机械性能可以归因于晶须和颗粒的协同增韧和强化影响。

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