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首页> 外文期刊>Journal of Failure Analysis and Prevention >Damage Tolerance Evaluation of Rotorcraft Horizontal Tail Under Variable Amplitude Service Loading Conditions
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Damage Tolerance Evaluation of Rotorcraft Horizontal Tail Under Variable Amplitude Service Loading Conditions

机译:可变幅度服务负载条件下旋翼飞机水平尾部的损伤公差评估

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To ensure the safe operation of the helicopter throughout its lifetime, the primary structure has to be designed taking into account damage tolerance criteria. This has been considered in the design process, for example, by using multiple load paths as well as by taking into account the presence of certain structural defects like impacts or manufacturing defects in composite parts when performing the dimensioning and lifetime calculations. This paper describes and presents an effort performed for damage tolerance (DT) aspects of rotorcraft horizontal tail (HT) through multi-scale (MS) modeling computational approach to assess the growth rate of damages from fatigue under spectrum loading from rotorcraft mission profile and consideration of the effects of material variability to assess structural advantages. Main emphasis was laid on the design of the cyclic loaded components in order to achieve unlimited life with high flaw tolerance. A micromechanics-based multi-scale progressive failure analysis (MS-PFA) approach that detects damage and fracture evolution is carried out to assess the durability and damage tolerance (D&DT) of HT with effect of defects: (1) ply drop-off and features at the reduced skin thicknesses along the length of spar; (2) fiber waviness exhibited in thick sections; and (3) void shape, size, distribution. Fatigue life is estimated under service spectrum block loading conditions in critical mission by determining the material stiffness and strength degradation, failure load and cycles.
机译:为了确保直升机的安全运行在整个寿命中,必须考虑到损坏公差标准的主要结构。例如,通过使用多个负载路径以及考虑在执行尺寸和寿命计算时,通过使用多个负载路径以及通过多重负荷路径以及在复合部件中的撞击或制造缺陷时存在的某些结构缺陷的存在。本文介绍了对旋翼飞机水平尾部(HT)的损坏公差(DT)方面的努力通过多尺度(MS)建模计算方法来评估旋翼飞机特派团简介和考虑的频谱载荷下疲劳损坏的增长率材料变异性对评估结构优势的影响。主要重点是循环装载部件的设计,以实现具有高缺陷的无限寿命。进行了一种检测损伤和骨折演化的基于微机械的多尺度渐进式故障分析(MS-PFA)方法,以评估HT的耐久性和损伤耐受性(D&DT),具有缺陷的效果:(1)PLY下降和沿翼梁长度降低的皮肤厚度特征; (2)厚截面展示的纤维波纹; (3)空隙形状,尺寸,分布。通过确定材料刚度和强度降解,破坏载荷和循环,在关键任务中估算疲劳寿命在危急的任务中估算。

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