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首页> 外文期刊>Journal of Materials Engineering and Performance >Liquid impact erosion of single-crystal and coated material
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Liquid impact erosion of single-crystal and coated material

机译:单晶和涂层材料的液体冲击腐蚀

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摘要

Lithium fluoride in its single-crystal form is an interesting material for investigating the development of fracture by multiple liquid impact owing to its well-characterized crystal structure. The development of fracture during liquid impact is attributed to the extension of short circumferential cracks produced around the loaded area by the passing Rayleigh stress wave after the impact event. The damage threshold of single-crystal lithium fluoride is developed using the multiple-impact jet apparatus (MIJA) as a result of identifying the characteristic fracture annulus associated with liquid impact during a controlled experimental procedure. The observation of damage produced in solids by liquid impact has practical significance in the problems associated with supersonic aircraft flying through rain and in the erosion of turbine blades. The addition of coatings to the surface provides a form of protection at higher speeds but may not completely inhibit damage.
机译:单晶氟化锂由于其良好的晶体结构,是研究多种液体冲击引起的裂缝发展的有趣材料。液体冲击过程中断裂的发展归因于冲击事件之后通过的瑞利应力波在加载区域周围产生的短周向裂纹的扩展。由于在受控的实验过程中识别了与液体冲击有关的特征性断裂环空,因此使用多重冲击射流设备(MIJA)开发了单晶氟化锂的损伤阈值。观察由液体撞击产生的固体损害对与超音速飞机飞过雨水相关的问题以及涡轮叶片的腐蚀具有实际意义。在表面上添加涂层可在较高速度下提供一种保护形式,但可能无法完全抑制损坏。

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