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The effect of plasticizers on the glass-to-rubber behavior of Desmo-phen~? 220p based elastomers used for composite propellants

机译:增塑剂对Desmo-phen的玻璃到橡胶行为​​的影响〜?用于复合推进剂的220p基弹性体

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The aim of this work was to evaluate the effect of changing the plasticizer type and its amount on the glass-rubber transition temperatures, the shape of the loss factor curve and mechanical properties of Desmophen~? 2200 based binders, using DMA loss factor curve, tensile testing and DSC. One of the main challenges concerning energetic materials regards not only on the establishments and evaluations of new energetic binders and plasticizers, but also on how their mixtures behave mechanically when concerning its glass-rubber transition range. Despite being inert, the polyester polyol Desmophen~? 2200 (D2200~?) has been investigated because of its potential glass-rubber transition properties when mixed with polar energetic plasticizers. Also previous work has indicated that composite propellant based on D2200~? binder mixed with 35 mass-% TMETN as energetic plasticizer can give good ballistic performance properties compared to HTPB and GAP based formulations, but with still poor strain capability and high glass-rubber transition. However, no screening has been done regarding the behaviour of D2200~? with different energetic plasticizers. Thus, in the present work different pure binders with plasticizers were formulated and characterized. The inert polar binder D2200~? was mixed individually with TMETN, Bu-NENA, BDNPF-A, GAP-A, EGBAA and TEGDA (BATEG) in amounts of 5, 20 and 35 mass-%, and cured with Desmodur~? N3400. The cured elastomers were characterized using torsion DMA, tensile properties and thermal properties (DSC). The loss factor curves obtained by DMA were modelled with exponentially modified Gaussian (EMG) functions, and the effects of the plasticizer on the EMG parameters were evaluated. The description of the shift of the glass-rubber transition temperature with plasticizer concentration is undertaken.
机译:这项工作的目的是评估改变增塑剂类型及其对玻璃 - 橡胶过渡温度的影响的效果,损耗因子曲线的形状和脱蛋白的机械性能〜? 2200基于粘合剂,使用DMA损耗因子曲线,拉伸试验和DSC。关于高能量粘合剂和增塑剂的企业和评价的主要挑战之一是,还要在其玻璃橡胶过渡范围内的混合物机械地表现。尽管是惰性的,聚酯多元醇Desmophen〜?已经研究了2200(D2200〜?),因为其潜在的玻璃橡胶过渡性能与极性充电增塑剂混合时。之前的工作也表明,基于D2200的复合推进剂〜?粘合剂与35质量%TMETN混合,与能量增塑剂相比,与HTPB和基于间隙的配方相比,可以提供良好的弹道性能特性,但仍然具有较差的应变能力和高玻璃橡胶过渡。但是,没有对D2200的行为做出的筛选?用不同的能量增塑剂。因此,在本工作中,配制并表征具有增塑剂的不同纯粘合剂。惰性极性粘合剂D2200〜?用TMETN,BU-NENA,BDNPF-A,GAP-A,EGBAA和TEGDA(Bate)单独混合,其中5,20和35质量%,并用DESMODUR固化〜? n3400。使用扭转DMA,拉伸性能和热性能(DSC)表征固化的弹性体。 DMA获得的损耗因子曲线用指数改性的高斯(EMG)功能建模,评价增塑剂对EMG参数的影响。采用增塑剂浓度的玻璃 - 橡胶转变温度偏移的描述。

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