首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Water droplet erosion behaviour of Ti-6Al-4V and mechanisms of material damage at the early and advanced stages
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Water droplet erosion behaviour of Ti-6Al-4V and mechanisms of material damage at the early and advanced stages

机译:Ti-6Al-4V的水滴腐蚀行为及早期和晚期材料破坏的机理

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摘要

In this study, the water droplet erosion (WDE) behaviour of Ti-6A1-4V and mechanisms of material damage were investigated. The WDE test was conducted in an advanced rig in accordance with the ASTM G73 standard. The influence of impact speed between 150 and 350 m/s on the WDE behaviour was explored and the cumulative mass losses versus the exposure timeumber of impingements were plotted. It was observed that the higher the impact speed the faster the erosion initiation time and greater the maximum erosion rate (ERmax). ERmax was also found to be related to the impact speed with an exponent of 9.9 in a log-log scale. SEM images showed that the early stages of erosion damage were mainly limited to the formation of microcracks, asperities and isolated pits of irregular shapes. It was found that the most profound mode of material removal during the advanced stage of water droplet erosion was hydraulic penetration. Sub-surface, side wall cracking and material folding/upheaving were also features observed. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,研究了Ti-6A1-4V的水滴侵蚀(WDE)行为以及材料破坏的机理。 WDE测试是在符合ASTM G73标准的先进钻机上进行的。探索了150和350 m / s之间的撞击速度对WDE行为的影响,并绘制了累积质量损失与暴露时间/撞击次数的关系图。观察到,冲击速度越高,腐蚀开始时间越快,最大腐蚀速率(ERmax)也越大。还发现ERmax与冲击速度有关,对数对数刻度的指数为9.9。 SEM图像表明,侵蚀破坏的早期阶段主要限于形成微裂纹,凹凸不平和不规则形状的孤立凹坑。已经发现,在水滴侵蚀的晚期,最深刻的材料去除方式是水力渗透。还观察到了地下,侧壁开裂和材料折叠/隆起的特征。 (C)2016 Elsevier B.V.保留所有权利。

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