PZL M28飞机机体在疲劳试验中修理的应力分析

Q4 Engineering
J. Brzęczek, Henryk Gruszecki, L. Pieróg, Franciszek Deszcz, J. Pietruszka
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引用次数: 1

摘要

摘要通过机翼和机翼承载结构的疲劳试验,确定了PZL M28的使用寿命。在疲劳测试中,首先出现的重要现象是在机翼区域出现了a,在该区域,来自支柱的载荷被施加。在进一步的活动中,机翼和其他基本组件的维修在适当的时候进行,可以显着增加飞机的使用寿命。在对接受疲劳试验的机身进行每次设计更改的情况下,需要对机身进行应力分析,以检查局部更改(即局部修理)是否不会影响其他测试区域的应力水平。这有助于避免修复后机体内显著的应力重新分布,因此疲劳测试仍然适用于所有感兴趣的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress Analysis of the PZL M28’s Airframe Subjected to Repairs During Fatigue Tests
Abstract The PZL M28’s service life is determined based on the fatigue tests of the wing and wing loads-carry-through structure. During the fatigue test, the first occurrence of significance was the appearance of a in the area of the wing where loads are applied from the strut. It was demonstrated during further activities that repairs of the wing and other basic assemblies enabled, when performed at an appropriate time, the airplane’s service life to be significantly increase. In the case of each design change implemented in the airframe subject to the fatigue testing, a stress analysis of the airframe was required in order to check if local changes, i.e. local repairs, did not affect the stress level in other tested areas. This helped to avoid significant stress redistribution in the airframe after the repair, so the fatigue test was still valid for all areas of interest.
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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%
发文量
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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