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Microstructural evolution and high strain rate mechanical propertyudof cobalt superalloy contain titanium

机译:显微组织演变和高应变速率力学性能 ud钴超合金含钛

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摘要

The high strain rate properties and microstructure observations of cobalt base superalloyd contains 0.9% Ti were investigated using Hopkinson bar. These cobalt base superalloys are tested at strain rates of 2×103, 3×103 and 4×103 s-1 and at different temperatures (25, 500 and 900°C), respectively. It is found that the stress flow and strain rate sensitivity increases with increasing strain rate but decrease with increasing temperature. The microstructure observations confirm that the high strain rate mechanical behavior of the cobalt base superalloys specimens are directly related to the effects of the strain rate, temperature and the evolution of the microstructural texture. The strengthening mechanism in cobalt base superalloys is the multiplication of dislocation. The dislocation density increases with increasing strain rate but decrease with increasing temperature.
机译:使用霍普金森棒对含0.9%Ti的钴基超合金的高应变速率性能和显微组织进行了观察。这些钴基高温合金分别在2×103、3×103和4×103 s-1的应变速率下以及在不同的温度(25、500和900°C)下进行测试。发现应力流和应变率敏感性随应变率的增加而增加,但随温度升高而减小。显微组织的观察证实,钴基高温合金样品的高应变速率机械行为与应变速率,温度和微观结构织构的演变直接相关。钴基高温合金的强化机制是位错的倍增。位错密度随应变率的增加而增加,但随温度的升高而减小。

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