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Ultrasonic Characterization of Superhard Material: Osmium Diboride

机译:超硬材料的超声鉴定:锇Diboride

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Higher order elastic constants have been calculated in hexagonal structured superhard material OsB_2 at room temperature following the interaction potential model. The temperature variation of the ultrasonic velocities is evaluated along different angles with unique axis of the crystal using the second order elastic constants. The ultrasonic velocity decreases with the temperature along particular orientation with the unique axis. Temperature variation of the thermal relaxation time and Debye average velocities are also calculated along the same orientation. The temperature dependency of the ultrasonic properties is discussed in correlation with elastic, thermal and electrical properties. It has been found that the thermal conductivity is the main contributor to the behaviour of ultrasonic attenuation as a function of temperature and the responsible cause of attenuation is phonon-phonon interaction. The mechanical properties of OsB_2 at low temperature are better than at high temperature, because at low temperature it has low ultrasonic velocity and ultrasonic attenuation. Superhard material OsB_2 has many industrial applications, such as abrasives, cutting tools and hard coatings.
机译:在相互作用电位模型之后,在室温下,已经在六边形结构超硬材料OSB_2中计算了高阶弹性常数。使用二阶弹性常数,沿着具有独特晶体的不同角度评价超声速度的温度变化。超声波速度随着具有独特轴的特定取向而减小。沿相同的取向也计算热弛豫时间和德比平均速度的温度变化。超声波性能的温度依赖性与弹性,热和电性能相关。已经发现,随着温度的函数,导热性是超声衰减行为的主要因素,并且衰减的负责原因是声子位相互作用。 OSB_2在低温下的机械性能优于高温,因为在低温下,它具有低的超声波速度和超声衰减。超硬材料OSB_2具有许多工业应用,例如磨料,切割工具和硬涂层。

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