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Moving Aerospace Structural Design Practice to a Load and Resistance Factor Approach

机译:将航空航天结构设计实践转变为载荷和阻力因子方法

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Aerospace structures are traditionally designed using the factor of safety approach. The limit load on the structure is determined and the structure is then designed for FOS times the limit load - the ultimate load. Probabilistic approaches utilize distributions for loads and strengths. Failures are predicted to occur in the region of intersection of the two distributions. The load and resistance factor design (LRFD) approach judiciously combines these two approaches by intensive calibration studies on loads and strength to result in structures that are efficient and reliable. This paper discusses these three approaches and proposes that it is time for the aerospace structures community to adopt LRFD.
机译:传统上,航空航天结构是使用安全系数方法来设计的。确定结构上的极限载荷,然后将结构设计为FOS乘以极限载荷-极限载荷。概率方法利用载荷和强度的分布。预计在两个分布的相交区域会发生故障。载荷和阻力因子设计(LRFD)方法通过对载荷和强度进行深入的标定研究,明智地将这两种方法结合在一起,从而形成高效可靠的结构。本文讨论了这三种方法,并建议该是航空航天结构界采用LRFD的时候了。

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