A gel/solid bipropellant propulsion system employs fuel-rich combustion gs from a solid gas generator and an oxidizer gel in a highly efficient combustion chamber wherein the fuel-rich combustion gases and the oxidizer gel are each metered through a vortex injector into a combustion chamber to produce a hypergolic reaction. The solid gas generator (SSG) has a preferred composition of glycidly azide polymer (GAP). The GAP SSG is composed of GAP diol and/or triol polymerized with a di-or tri-function isocyanate, such as isophorone diisocyanate. The gel/solid bipropellant propulsion system comprises the SSG in combination with an oxidizer storage/extrusion vessel system, a combustion chamber system, and a system controller which controls initial ignition of the SSG to produce fuel rich combustion gas which pressurize the system. The system controller monitors pressures and flow rates of fuel and gel oxidizer. System shut-down is achieved by closing valves in fuel-rich combustion gases supply line, gel oxidizer supply line, and a pressurization line to gel oxidizer storage/extrusion vessel. A blow-down line is opened to de-pressurize the SSG container which extinguishes the SSG. When start up is desired, a reignition shut-off valve is reopened which permits the injection of the gel oxidizer from the line retained under pressure and achieves reignition of the SSG.
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机译:凝胶/固体双推进剂推进系统在高效燃烧室中使用来自固体气体发生器和氧化剂凝胶的富燃料燃烧气,其中,分别通过涡流喷射器将富燃料燃烧气体和氧化剂凝胶计量加入燃烧室产生高声反应。固体气体发生器(SSG)具有缩水甘油叠氮化物聚合物(GAP)的优选组成。 GAP SSG由与二或三官能异氰酸酯(例如异佛尔酮二异氰酸酯)聚合的GAP二醇和/或三醇组成。凝胶/固体双推进剂推进系统包括SSG与氧化剂存储/挤出容器系统,燃烧室系统和系统控制器的组合,该系统控制器控制SSG的初始点火以产生富燃料的燃烧气体,从而对该系统加压。系统控制器监视燃料和凝胶氧化剂的压力和流速。通过关闭富燃料燃烧气体供应管线,凝胶氧化剂供应管线和通往凝胶氧化剂存储/挤压容器的加压管线中的阀门,可以实现系统关闭。打开排污管线以使SSG容器减压,从而使SSG熄灭。当需要启动时,重新打开点火截止阀,以允许从保持压力的管线中注入凝胶氧化剂,从而实现SSG的点火。
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