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High Temperature Mechanical Properties of Ti(C, N)-Mo2C-Ni Cermets Studied by Internal Friction Measurements

机译:内摩擦测量研究Ti(C,N)-Mo2C-Ni金属陶瓷的高温力学性能

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摘要

internal friction measurements were performed on TiC0.7N0.3Mo2C-Ni metal-bonded refractory materials, in order to study how the composition and the microstructure of cermets control the mechanical properties of these materials. A free inverted torsion-pendulum was used, oscillating in the 0.2-2 Hz frequency range, up to 1273K. Isothermal I.F. spectra were measured in a forced torsion-pendulum in the 10-10-4 Hz range, and up to 1400K. One thermally activated IF. peak at 1100K (at 0.5Hz), is superimposed with a high temperature I.F. background. The amplitude of the background and the activation energy of the peak are strongly dependent on the Mo and C content in the material. Transmission electronic microscope observations give complementary results to identify the relaxation mechanisms. In the physical model proposed to describe the anelastic behaviour of these materials, the 1100K peak is attributed to the dragging of Mo atoms by dislocations in Ni-Mo-Ti alloy, while the high temperature background is associated with long distance displacements of dislocations in this binder phase. The refractory skeleton gives a contribution to the high temperature background, and to another peak at 900K. A comparison is made with I.F. measurements in WC-Co, that confirms the specific role of the metallic phase for each system.
机译:为了研究金属陶瓷的组成和微观结构如何控制这些材料的机械性能,对TiC0.7N0.3Mo2C-Ni金属粘结耐火材料进行了内部摩擦测量。使用了自由的倒立扭摆,在0.2-2 Hz的频率范围内振荡,最高可达1273K。等温IF在10-10-4 Hz范围内,最高1400K的强制扭摆中测量光谱。一个热激活的中频。 1100K(0.5Hz)的峰值与高温I.F.背景。背景的振幅和峰的活化能强烈取决于材料中的Mo和C含量。透射电子显微镜的观察结果可提供补充结果,以识别松弛机制。在描述这些材料的非弹性行为的物理模型中,1100K峰归因于Ni-Mo-Ti合金中位错对Mo原子的拖动,而高温背景与位错的长距离位移有关。粘结相。耐火骨架对高温背景和900K处的另一个峰有贡献。与IF进行比较在WC-Co中进行的测量可以确认每个系统中金属相的特定作用。

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