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Recent Advances in Durability and Damage Tolerance Methodology at NASA Langley Research Center

机译:美国宇航局兰利研究中心在耐久性和耐损伤性方法学方面的最新进展

摘要

Durability and damage tolerance (D&DT) issues are critical to the development of lighter, safer and more efficient aerospace vehicles. Durability is largely an economic life-cycle design consideration whereas damage tolerance directly addresses the structural airworthiness (safety) of the vehicle. Both D&DT methodologies must address the deleterious effects of changes in material properties and the initiation and growth of damage that may occur during the vehicle s service lifetime. The result of unanticipated D&DT response is often manifested in the form of catastrophic and potentially fatal accidents. As such, durability and damage tolerance requirements must be rigorously addressed for commercial transport aircraft and NASA spacecraft systems. This paper presents an overview of the recent and planned future research in durability and damage tolerance analytical and experimental methods for both metallic and composite aerospace structures at NASA Langley Research Center (LaRC).
机译:耐用性和损坏容限(D&DT)问题对于开发更轻,更安全,更高效的航空航天器至关重要。耐用性在很大程度上是经济生命周期设计的考虑因素,而损坏容忍度则直接解决了车辆的结构适航性(安全性)。两种D&DT方法都必须解决材料性能变化的有害影响以及在车辆使用寿命内可能发生的损坏的产生和增长。意外D&DT响应的结果通常以灾难性和潜在致命事故的形式体现。因此,对于商用运输机和NASA航天器系统,必须严格满足耐用性和损坏容限的要求。本文概述了NASA Langley研究中心(LaRC)在金属和复合材料航空航天结构的耐久性和损伤耐受性分析和实验方法方面的最新研究和计划的未来研究。

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