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Resolution of indeterminate landing gear structure design.

机译:不确定起落架结构设计的分辨率。

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Aircraft landing gear structural designs involves a balance of weight, cost and robustness while not compromising on safety. On some large commercial aircraft, the introduction of a second main supporting brace has led to an indeterminate structure in that there is redundancy in the load paths. This introduces two major challenges for structural design. The first challenge involves the introduction of a multiple load path. Understanding load path in the landing gear is critical in order to optimize the structure for weight. This report focuses on analysis techniques geared to resolving this indeterminate load path in order to mitigate this risk and optimize the design. The second major challenge is introduced by a compressive load in one of the braces during an in flight airload condition which impedes the ability for the landing gear to freefall, which is a requirement in aircraft design. Solving this problem involves introducing a pretension in the brace by force shortening the geometry. An indeterminate design introduces increased complexity and requires more simulation and analysis than that of a determinant design in order to accomplish the optimization demanded by the aerospace industry.
机译:飞机起落架结构设计在重量,成本和坚固性之间取得平衡,同时又不影响安全性。在某些大型商用飞机上,第二个主支撑支架的引入导致结构不确定,因为负载路径中存在冗余。这给结构设计带来了两个主要挑战。第一个挑战涉及引入多负载路径。了解起落架中的负载路径对于优化重量结构至关重要。本报告重点介绍旨在解决这种不确定的载荷路径的分析技术,以减轻这种风险并优化设计。第二个主要挑战是在飞行中的空载条件下,支架中的一个支撑件承受压缩载荷,这会限制起落架自由下落的能力,这在飞机设计中是必需的。解决该问题涉及通过力缩短几何形状而在支架中引入预应力。不确定的设计会增加确定性,并且比行列式设计需要更多的仿真和分析,才能完成航空航天业所需的优化。

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