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首页> 外文期刊>International journal of energetic materials and chemical propulsion >IGNITION AND COMBUSTION OF HYDROXYL-TERMINATED POLYBUTADIENE (HTPB)-BASED SOLID FUELS LOADED WITH INNOVATIVE MICROMETER-SIZED METALS
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IGNITION AND COMBUSTION OF HYDROXYL-TERMINATED POLYBUTADIENE (HTPB)-BASED SOLID FUELS LOADED WITH INNOVATIVE MICROMETER-SIZED METALS

机译:载有新型微米级金属的羟基封端的聚丁二烯(HTPB)基固体燃料的着火和燃烧

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摘要

This paper discusses experimental investigations on the effects of innovative micrometer-sized metal additives on the ignition and burning of solid fuel formulations based on Hydroxyl-Terminated PolyButadiene (HTPB). Gaseous oxygen was selected as the oxidizer for ignition delay and regression rate tests. A relative grading of solid fuel performance was carried out taking unloaded HTPB as the baseline. Three different micrometer-sized metallic additives were investigated: conventional magnesium (Mg), amorphous aluminum (am_Al,) and magnesium-boron composite (MgB). Ignition delay is highly depending on pressure, while the linear regression rate was not appreciably affected as the pressure increased from 1.0 to 1.9 MPa. All of the micrometer-sized additives have a positive effect on enhancing both linear regression rate and mass burning rate, while amorphous aluminum (am_Al) demonstrated a larger effect than Mg and composite MgB powders.
机译:本文讨论了实验性研究,研究了新型微米级金属添加剂对基于羟基封端的聚丁二烯(HTPB)的固体燃料配方着火和燃烧的影响。选择气态氧作为氧化剂,以进行点火延迟和回归速率测试。以空载HTPB为基准对固体燃料性能进行了相对分级。研究了三种不同的微米级金属添加剂:常规镁(Mg),无定形铝(am_Al)和镁-硼复合材料(MgB)。点火延迟高度依赖于压力,而线性回归率在压力从1.0 MPa增加到1.9 MPa时并未受到明显影响。所有微米级添加剂对提高线性回归速率和质量燃烧速率均具有积极作用,而无定形铝(am_Al)表现出比Mg和复合MgB粉更大的作用。

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