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Design and topological optimization of rear pressure bulkhead for a typical aircraft

机译:典型飞机后压舱壁的设计与拓扑优化

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Purpose The purpose of this paper is to evaluate the model of a rear pressure bulkhead with different design optimizations to meet the pressurized cabin requirements of an aircraft. Design/methodology/approach This paper presents the results of the static analysis of a dome-shaped rear pressure bulkhead model designed in Catia-v5. Numerical analysis of model meshed in hyper-mesh and solved using Opti-Struct for iterative design optimizations. Findings All the iterative models are analyzed at 9 Psi. Rear pressure bulkhead designed with L-section stringer shows better results than the model optimized with T-section stringer for the same thickness. The model optimized with L-shaped stinger also reduces the weight of the bulkhead without affecting the structural integrity. Practical implications It has been concluded in this paper that the selection of specific shapes of the stringers shows a significant influence on weight reduction. Originality/value This paper provides a topical, technical insight into the design and development of a rear pressure bulkhead. It also outlines the future development of dome-shaped rear pressure bulkhead.
机译:目的本文的目的是评估具有不同设计优化的后压舱壁模型,以满足飞机的加压舱需求。本文设计/方法/方法本文介绍了CATIA-V5设计的圆顶形后压舱壁模型的静态分析结果。超网眼网格化模型的数值分析,用OPTI-struct进行迭代设计优化解决。调查结果所有迭代模型都在9 psi下分析。设计与L型纵梁设计的后压舱壁显示出比用T型纵梁优化的模型更好地显示出相同厚度的型号。用L形刺刀进行优化的模型也降低了舱壁的重量,而不会影响结构完整性。在本文中已经结束了实际意义,即桁条的特定形状的选择显示出对重量减轻的显着影响。原创性/价值本文提供了对后压舱壁的设计和开发的局部,技术洞察力。它还概述了圆顶形后压舱壁的未来发展。

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