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Determining the Master Curve of Aged Solid Propellant Using a Dynamic Mechanical Analyzer

机译:用动态力学分析仪测定固体推进剂的老化曲线

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Understanding aging in solid propellants is important for predicting the service lifetime of solid rocket motors in aerospace and defense applications. The accurate measurement of the master curve of the propellant is necessary for input into finite element simulations of fracture and debonding in solid rocket motors that lead to their failure. The use of a dynamic mechanical analyzer over conventional stress relaxation tests presents several advantages including smaller specimen size, which simplifies the artificial aging procedure, and results in improved accuracy due to the application of smaller strains. A method is presented for measuring the master curve of a particular propellant, viz. hydroxyl-terminated polybutadiene (HTPB), using a dynamic mechanical analysis setup. Specimens were artificially aged at 50 and 60 °C for durations ranging from one to eight weeks in order to approximate up to six years of natural aging at room temperature. The measured master curves show that increasing the artificial aging time at 60 °C leads to a higher relaxation modulus for a given reduced time. This is attributed to higher cross-link density in aged HTPB specimens. Aging at 50°C for the given durations shows less of an effect, which indicates that 50°C is not a sufficiently high temperature for inducing aging in the time periods studied for the manufactured specimens. The measured master curves can be used to inform material models such as Prony series in finite element simulations for predicting the lifetime of solid rocket motors.
机译:了解固体推进剂的老化对于预测航空航天和国防应用中固体火箭发动机的使用寿命非常重要。精确测量推进剂主曲线对于将固体火箭发动机的断裂和脱粘的有限元模拟输入到导致其失败的有限元模拟中是必要的。在常规应力松弛测试上使用动态机械分析仪具有多个优点,包括较小的样本尺寸,这简化了人工时效程序,并由于施加了较小的应变而提高了精度。提出了一种用于测量特定推进剂的主曲线的方法。使用动态机械分析装置,对羟基封端的聚丁二烯(HTPB)进行分析。标本在50和60°C的温度下进行人工时效,持续时间为1至8周,以便在室温下大约可以自然老化6年。测得的主曲线表明,在给定的减少时间下,增加60°C的人工时效时间会导致较高的松弛模量。这归因于老化的HTPB标本中较高的交联密度。在给定的时间段内在50°C时效显示的影响较小,这表明50°C并不是足够高的温度,无法在针对制造的样品研究的时间段内引起老化。测得的主曲线可用于告知材料模型,例如Prony系列,用于有限元模拟中,以预测固体火箭发动机的寿命。

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