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Aging Effects on the Burning Rates of Composite Solid Propellants with Nano-Additives

机译:老化对含纳米添加剂的复合固体推进剂燃烧速率的影响

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The aging behavior of composite propellant is a key parameter in determining the usable service life of an energetic system. The effects of aging on composite propellant burning rates is an understudied topic in the open literature. Recent research in the authors' laboratory has led to the development of high-burning rate propellants containing titania nanoparticles and fluorescing propellants containing quantum dots. The current study assessed the aging behavior of composite ammonium perchlorate (AP)/hydroxyl terminated polybutadiene (HTPB) propellants, with specific emphasis on fluorescent properties and burning rates. Propellant formulations were based upon either 80% monomodal or 85% bimodal AP distributions with and without titania nanoparticles and quantum dots. Propellant samples were thermally aged at temperatures of 63 and 85 °C and humidity levels of 25 and 75% for up to 195 days to yield approximate service lives in the range of 0-25 years. Fluorescent imaging experiments were conducted with an ultraviolet light source to measure the uniformity of propellant samples. Ballistic testing was conducted in a constant-volume strand burner over the pressure range of 500-2250 psia (3.5-15.5 MPa). Spatial uniformity of the propellant fluorescence was not significantly altered with propellant age, but did decrease in intensity to some degree. In general, the burning rate and pressure index of propellants decreased with increasing service life. Propellant formulations containing 85% bimodal AP were found to be more stable than formulations containing 80% monomodal AP. Inclusion of quantum dots or titania nanoparticles in the propellant formulation increased aging stability.
机译:复合推进剂的老化行为是确定高能系统使用寿命的关键参数。老化对复合推进剂燃烧速率的影响是公开文献中未充分研究的话题。作者实验室的最新研究已导致开发了包含二氧化钛纳米粒子的高燃烧速率推进剂和包含量子点的发荧光推进剂。当前的研究评估了复合高氯酸铵(AP)/羟基封端的聚丁二烯(HTPB)推进剂的老化行为,特别强调了荧光性质和燃烧速率。推进剂配方基于80%单峰或85%双峰AP分布,有或没有二氧化钛纳米颗粒和量子点。推进剂样品在63和85°C的温度下以及25%和75%的湿度下进行热老化长达195天,使用寿命约为0-25年。用紫外光源进行荧光成像实验,以测量推进剂样品的均匀性。弹道试验是在恒定体积的线束燃烧器中,在500-2250 psia(3.5-15.5 MPa)的压力范围内进行的。推进剂荧光的空间均匀性并没有随推进剂年龄的变化而显着改变,但是强度有所降低。通常,推进剂的燃烧速率和压力指数随着使用寿命的延长而降低。发现含有85%双峰AP的推进剂制剂比含有80%单峰AP的制剂更稳定。推进剂配方中包含量子点或二氧化钛纳米粒子可提高老化稳定性。

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