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Cruciform Specimen Design for Testing Advanced Aeropropulsion Materials under Cyclic In-Plane Biaxial Loading

机译:在循环平面双轴载荷下测试高级航空推进材料的十字形标本设计

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Investigating material behavior under complex stress states is often done using in-plane biaxial loading approach. Utilizing such techniques requires using cruciform type specimens fabricated from plate material tested by gripping the specimen at four locations and loaded along two orthogonal axes. Servohydraulic systems are generally used in this application which is similar to those used for uniaxial testing. These kind of testing capabilities are currently being conducted at NASA Glenn Research Center via a new in-house testing facility. This is in support of the development of major components for the Stirling Radioisotope Generator (SRG). It is also used to assist in the generation of an analytical life prediction methodology and to experimentally verify the flight-design component's life. Further, this work is intended to carry the immediate goal of developing a specimen design that is fully compatible with the in-plane biaxial testing systems installed at NASA Glenn Research Center. Thus, details of the specimen design and its applicability to the ongoing experimental activities are being reported and discussed. Finite element analyses were carried out to optimize the geometry of specimen and to evaluate the stress response under biaxial loading conditions. The material of interest used in this research is nickel based superalloy. The data presented concluded that the specimen can be used to investigate the deformation behavior under general forms of biaxial loading. The provided measurement and observation are limited to 1-in [2.54 cm] diameter circular region at the specimen center.
机译:研究材料在复杂应力状态下的行为通常是使用面内双轴加载方法完成的。利用这种技术需要使用由板状材料制成的十字形试样,该试样是通过将试样夹在四个位置并沿两个正交轴加载而进行测试的。伺服液压系统通常用于此应用中,类似于单轴测试中使用的系统。 NASA Glenn研究中心目前正在通过新的内部测试设施来进行此类测试。这支持了斯特林放射性同位素发生器(SRG)的主要组件的开发。它也可用于辅助分析寿命预测方法的生成,并通过实验验证飞行设计组件的寿命。此外,这项工作旨在实现开发与美国宇航局格伦研究中心安装的面内双轴测试系统完全兼容的标本设计的直接目标。因此,正在报告和讨论标本设计的细节及其对正在进行的实验活动的适用性。进行了有限元分析,以优化试样的几何形状并评估双轴加载条件下的应力响应。在这项研究中使用的感兴趣的材料是镍基高温合金。给出的数据得出结论,该样本可用于研究一般形式的双轴载荷下的变形行为。提供的测量和观察仅限于样品中心直径为1英寸[2.54 cm]的圆形区域。

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