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Impact Toughness of Titanium Alloys with Different Strengthening Methods

机译:用不同的强化方法冲击钛合金的韧性

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In present paper effect of alloying elements and strengthening particle on the impact toughness were investigated. Load and energy in the impact tests were also discussed in detail for Ti-2Al, Ti-2Sn,Ti-2Zr, Ti-1Mo and Ti/TiC. Impact tests were carried out at room temperature (293K) and low temperature (83K) using a 300J capacity impact machine. Ti-1Mo, Ti-2Zr,Ti-2Sn alloys exhibit high impact toughness even at low temperature, while Ti-2Al and Ti/TiC only have high toughness at room temperature. At room temperature, general yielding occurred in all the materials, but it occurred only in Ti-1Mo, Ti-2Zr and Ti-2Sn at low temperature. It seemed that strengthening titanium couldn't affect the elastic energy (E_i) effectively, but bring about more changes to E_p (propagation energy of crack) than to E_i (initiation energy of crack). As for the effect of alloying elements on the impact toughness, it seems to be related to the comprehensive result of the concentration and electronegative property of alloying elements. The interface between the TiC particles and matrix resulted in low toughness, especially at cryogenic temperature.
机译:在合金元素和加强对冲击韧性颗粒的本纸效果进行了研究。负荷和能量在冲击试验也详细描述在钛2AL,的Ti-2SN,钛2ZR,的Ti-1Mo钢和Ti /的TiC讨论。冲击试验在室温(293K),使用300J容量冲击机低温(83K)下进行。的Ti-1Mo钢,钛2ZR,Ti系合金2SN表现出高冲击韧性即使在低温下,而Ti系2AL和Ti /只的TiC在室温下高韧性。在室温下,发生让步所有的材料一般,但只以Ti-1Mo钢,钛2ZR和Ti-2SN发生在低温。看来,加强钛不能影响弹性能量(E_i)有效,但实现向E_p比E_i更多的变化(裂纹扩展能量)(裂纹起始能量)。至于合金的冲击韧性元素的影响,这似乎是与浓度和合金元素电负性的属性的综合结果。所述的TiC颗粒和基质之间的界面导致韧性低,特别是在低温下。

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