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Development of Fabric Constitutive Behavior for Use in Modeling Engine Fan Blade-Out Events

机译:织物本构行为用于发动机风扇叶片熄灭事件建模的开发

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The development of a robust and reliable material model for fabrics used to prevent fan blade-out events in propulsion engines has significant importance in the design of fan-containment systems. Currently, Kevlar is the only fabric approved by the Federal Aviation Administration to be used in fan-containment systems. However, very little work has been done in building a mechanistic-based material behavior model, especially one that can be used to quantify the behavior of Kevlar when subjected to high-velocity projectiles. Experimental static and high strain rate tensile tests have been conducted at Arizona State University to obtain the material properties of Kevlar fabric. In this paper we discuss the development and verification of a constitutive model for dry fabrics for use in an explicit finite-element program. Results from laboratory tests such as tension tests including high-strain rate tests, picture frame shear tests, and friction tests yield most of the material properties needed to define a constitutive model. The material model is incorporated in the LS-DYNA commercial program as a user-defined subroutine. The validation of the model is carried out by numerically simulating actual ballistic tests conducted at NASA-GRC and fan blade out tests conducted at Honeywell Aerospace (Propulsion Engines).
机译:对于用于防止推进发动机中的风扇叶片熄灭事件的织物而言,鲁棒和可靠的材料模型的开发在风扇围护系统的设计中具有重要意义。目前,凯夫拉尔纤维是美国联邦航空管理局批准的唯一用于风扇控制系统的织物。但是,在建立基于机械的材料行为模型方面所做的工作很少,特别是可以用来量化凯夫拉尔在承受高速弹丸时的行为的模型。已在亚利桑那州立大学进行了静态和高应变率拉伸试验,以获得芳纶织物的材料性能。在本文中,我们讨论了用于显式有限元程序的干织物本构模型的开发和验证。实验室测试的结果,例如拉伸测试(包括高应变率测试,相框剪切测试和摩擦测试),产生了定义本构模型所需的大多数材料特性。物料模型作为用户定义的子例程包含在LS-DYNA商业程序中。通过对在NASA-GRC上进行的实际弹道测试和在Honeywell Aerospace(推进发动机)上进行的扇叶熄灭测试进行数值模拟,可以对模型进行验证。

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