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Structural optimization of a composite launch tube of man portable air defense system

机译:男子便携式防空系统复合发射管的结构优化

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PurposeThe purpose of this paper is to find the optimum configuration of the composite launch tube currently being developed in Roketsan. The winding thicknesses and winding angles of the launch tube are selected as design variables, and three different composite material alternatives are evaluated: glass/epoxy, carbon/epoxy and aramid/epoxy.Design/methodology/approachIn this study, structural optimization of a composite launch tube of man portable air defense system is conducted. To achieve a cost-effective design, a cost scoring table that includes structural weight, material cost, availability and manufacturability is first introduced. Then, optimization for minimum weight is conducted, where the winding thicknesses and winding angle are taken as design variables, and the safety factor value obtained by using the Tsai-Wu damage criterion is used as constraint. A surrogate-based optimization approach is used where various options for surrogate models are evaluated. Glass/epoxy, carbon/epoxy and aramid/epoxy are considered as alternative materials for the launch tube. Finally, the selection of the most cost-effective design is performed to achieve optimum cost.FindingsCarbon fiber-reinforced epoxy matrix material provides the optimum cost-effective design for the launch tube.Practical implicationsThe findings of the paper can be used to design more cost-efficient composite launch tube currently being developed in Roketsan.Originality/valueThe existing studies are based on a design approach to achieve minimum weight of the launch tubes, whereas this study introduces a design approach to achieve optimum cost.
机译:本文的目的目的是找到目前正在Roketsan开发的复合发射管的最佳配置。发射管的绕组厚度和绕组角度被选为设计变量,并评估三种不同的复合材料替代品:玻璃/环氧树脂,碳/环氧树脂和芳纶/环氧树脂。设计/方法/方法本研究,结构优化复合材料的结构优化发射管的手工便携式防空系统。为实现具有成本效益的设计,首先介绍了包括结构重量,材料成本,可用性和可制造性的成本评分表。然后,进行最小重量的优化,其中绕组厚度和绕组角度被视为设计变量,并且使用通过使用TSAI-WU损伤标准获得的安全系数值作为约束。使用基于代理的优化方法,其中评估了代理模型的各种选项。玻璃/环氧树脂,碳/环氧树脂和芳族聚酰胺/环氧树脂被认为是发射管的替代材料。最后,执行最具成本效益的设计的选择以实现最佳成本.Findingscarbon纤维增强的环氧树脂基质材料为发射管提供了最佳的成本效益设计。本文的结果可用于设计更多成本 - 目前在Roketsan.Riginality / Valepe现有研究基于实现发射管最小重量的设计方法,而介绍了实现最佳成本的设计方法。

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