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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Experimental assessment of droplet impact erosion resistance of steam turbine blade materials
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Experimental assessment of droplet impact erosion resistance of steam turbine blade materials

机译:汽轮机叶片材料抗液滴冲击侵蚀的实验评估

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摘要

The droplet impact erosion resistance of five different but highly relevant steam turbine blade materials is investigated with the help of an erosion test rig. The rig adapts wetness and droplet impact speed conditions in the last stages of condensing steam turbines in such a way that the material degradation is greatly accelerated in order to establish monotonic saturating material loss gradients - ideally within a testing time interval of 50 h. Repeatability and reproducibility of the evaluation method is ensured to facilitate the representative ranking of materials based on droplet impact erosion resistance being a key material property for durable steam turbine blade designs. A selection of three blade steels (X20Cr13, a steel similar to X5CrNiMoCuNb 14-5, X5CrNiCuNb 16-4) and one titanium alloy (Ti6A14V) is tested and analysed. Additionally, X5CrNiCuNb 16-4 in a laser-hardened condition is investigated. Besides the influence of droplet impact speed and droplet impact angle on erosion, the generated surface jaggedness, the level of material degradation as well as the material loss gradients are discussed and utilised for further deductions. Among the high yield strength blade steels, the laser-hardened X5CrNiCuNb 16-4 exhibits the best erosion resistance while Ti6Al4V exhibits a higher erosion resistance than all the steel alloys tested. Finally, a simplified but functional model is inferred from the test data to estimate the droplet impact erosion resistance of alternative steel and titanium blade materials relative to the materials discussed in this text.
机译:借助腐蚀试验台,研究了五种不同但高度相关的汽轮机叶片材料的抗液滴冲击侵蚀性。该设备在冷凝蒸汽轮机的最后阶段适应湿度和液滴冲击速度的条件,从而大大加速了材料降解,以建立单调饱和材料损耗梯度-理想的是在50小时的测试时间间隔内。确保评估方法的可重复性和可重复性,以促进基于耐冲击冲击性的材料的代表性排名,而耐冲击性是耐久的蒸汽轮机叶片设计的关键材料性能。测试并分析了三种刀片钢(X20Cr13,类似于X5CrNiMoCuNb 14-5,X5CrNiCuNb 16-4的钢)和一种钛合金(Ti6A14V)的选择。另外,研究了在激光硬化条件下的X5CrNiCuNb 16-4。除了液滴冲击速度和液滴冲击角对侵蚀的影响外,还讨论了产生的表面锯齿度,材料降解程度以及材料损失梯度,并将其用于进一步推论。在高屈服强度的刀片钢中,激光硬化的X5CrNiCuNb 16-4表现出最好的耐蚀性,而Ti6Al4V表现出比所有测试的合金更高的耐蚀性。最后,从测试数据中推断出一个简化但实用的模型,以估计替代钢和钛叶片材料相对于本文中讨论的材料的抗液滴冲击侵蚀性。

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