Dynamic Fatigue Tests Of Landing Gears

Q4 Engineering Fatigue of Aircraft Structures Pub Date : 2020-12-01 DOI:10.2478/fas-2020-0007
Z. Skorupka
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引用次数: 1

Abstract

Abstract Landing gears are one of the main components of an aircraft. The landing gear is used not only during take-off and landing but also, in most cases, during ground manoeuvres. Due to its function, the landing gear is also one of the key safety components of the aircraft due to dissipating landing loads acting on the aircraft. The mentioned loads come from both the vertical and horizontal speeds during touchdown and by the aircraft’s losing the speed by braking. The landing gear is then loaded with constantly changing forces acting in various directions during every landing, with the only difference coming from their magnitude. The repeatable loading conditions cause significant wear of the landing gear. This wear can be divided into two categories, one is the wear of consumable parts such as the brake linings and the other is the fatigue wear of the structural components. The latter type of wear is much more dangerous due to its slow, and in many cases, unnoticeable progression. Fatigue wear can be estimated by numerical analyses – this method works with a great degree of probability on single components but due to the complexity of the landing gear as a whole it is not precise enough to be applied to the full structure. In order to evaluate the fatigue of the whole landing gear the best method accepted by regulations is the laboratory testing method. It involves a series of various drop tests resembling the real landing condition distribution. The aim of the tests is to check the fatigue wear of the landing gear and to prove its reliability for certification and/or operational purposes. In this paper the author describes the basics of the landing gear fatigue wear, possibilities of its evaluation and presents laboratory dynamic method used for extensive tests in life-like operation conditions.
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起落架的动态疲劳试验
起落架是飞机的主要部件之一。起落架不仅在起飞和降落时使用,而且在大多数情况下,在地面演习期间也使用。由于起落架的功能,它也是飞机的关键安全部件之一,因为它可以消散作用在飞机上的着陆载荷。上述载荷来自着陆时的垂直和水平速度以及飞机因制动而失去速度。每次着陆时,起落架都承受着不断变化的力,这些力作用在不同的方向上,唯一的区别在于它们的大小。重复的载荷条件造成起落架的严重磨损。这种磨损可分为两类,一类是刹车片等易耗件的磨损,另一类是结构部件的疲劳磨损。后一种类型的磨损是更危险的,因为它的缓慢,在许多情况下,不明显的进展。疲劳磨损可以通过数值分析来估计——这种方法在单个部件上有很大的概率,但由于起落架作为一个整体的复杂性,它不够精确,不能应用于整个结构。为了评估整个起落架的疲劳性能,目前公认的最佳方法是实验室试验方法。它包括一系列类似于真实着陆条件分布的各种跌落试验。测试的目的是检查起落架的疲劳磨损,并证明其认证和/或操作目的的可靠性。本文介绍了起落架疲劳磨损的基本原理、评估的可能性,并提出了在逼真操作条件下进行大量试验的实验室动态方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Fatigue of Aircraft Structures
Fatigue of Aircraft Structures Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
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0
期刊介绍: The publication focuses on problems of aeronautical fatigue and structural integrity. The preferred topics include: full-scale fatigue testing of aircraft and aircraft structural components, fatigue of materials and structures, advanced materials and innovative structural concepts, damage tolerant design of aircraft structure, life extension and management of ageing fleets, structural health monitoring and loads, fatigue crack growth and life prediction methods, NDT inspections, airworthiness considerations.
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