直升机螺栓用钢合金低温脆性分析

F. Schild, V. M. Costa, L. V. Biehl, P. H. C. P. Cunha
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引用次数: 0

摘要

直升机上使用的钢部件在机械性能和安全问题方面至关重要,因为故障可能导致灾难性后果。本研究的目的是通过冲击试验,评估低温对用于制造直升机旋翼螺栓的45NiCrMo16钢合金韧性的影响。所研究的螺栓所使用的飞机可以在南极环境中运行。夏比试验中使用的温度为-40ºC、-20ºC、0ºC和25ºC。此外,进行了显微组织分析(光学和扫描显微镜)和显微硬度来识别钢相/微成分和任何表面处理的存在。结果表明,随着温度的降低,合金的冲击韧性逐渐降低,并由韧性断裂向脆性断裂转变。这些结论表明,在极端温度条件下,限制或限制该钢等级应用的行为,即从-20℃开始温度下降的韧脆过渡区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fragility analysis under low temperature of steel alloy used in helicopter bolt
Steels parts used in helicopters are critical in terms of mechanical performance and safety issues where failure can lead to catastrophic consequences. The objective of this study was to evaluate the influence of low temperatures on toughness, through impact testing, on 45NiCrMo16 steel alloy used in the manufacture of bolts used on a helicopter rotor. The aircraft that the studied bolt is used can operate in the Antarctic environment. The temperatures used in the Charpy tests were -40 ºC, -20 ºC, 0 ºC, and 25 ºC. Besides, microstructural analysis (optical and scanning microscopy) and microhardness were done to identify the steel phases/microconstituents and any surface treatment presence. The results showed the presence of a hardened layer, a decrease in impact toughness with decreasing temperature, and a transition from ductile to brittle fracture. The conclusions indicate behavior that can restrict or limit this steel grade application in extreme temperature conditions, that is the ductile-brittle transition region begins from a decrease in temperature starting from -20 ºC.
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