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Development of CAMUI hybrid rocket to create a market for small rocket experiments

机译:开发CAMUI混合火箭为小型火箭实验创造市场

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By introducing various innovative ideas, the difficult-to-develop small hybrid-type rocket is successfully developed. The main purpose is to drastically reduce the cost of rocket experiments and thus, attract potential users such as metrological and microgravity researchers. A key idea is a new fuel grain design to accelerate the gasification rate of solid fuel. The new fuel grain design, designated as CAMUI as an abbreviation of "cascaded multistage impinging-jet", is that the gas flow repeatedly collides with the solid fuel surface to accelerate the heat transfer to the fuel. To install a regenerative cooling system using cryogenic liquid oxygen as coolant in a small launcher, the authors devised a valveless supply system (with no valves in the liquid oxygen flow line). Four serial successful launch verification tests by 10 kg vehicle equipped with a 50kgf thrust CAMUI motor have shown the feasibility of the motor system. The meteorological observation model of 400 kgf class motor is under development and the development of microgravity experiment class of 1.5-2tonf motor will follow subsequently. The authors plan to complete the development of the 400 kgf class motor for meteorological observation model by the end of FY2005.
机译:通过引入各种创新思想,成功开发了难以开发的小型混合动力火箭。主要目的是大大降低火箭实验的成本,从而吸引潜在的用户,例如计量和微重力研究人员。一个关键思想是采用新的燃料颗粒设计来加快固体燃料的气化速率。这种新的燃料颗粒设计被称为CAMUI,是“级联多级冲击射流”的缩写,它的作用是使气流反复与固体燃料表面碰撞,以加速热量向燃料的传递。为了在小型发射器中安装使用低温液态氧作为冷却剂的蓄冷系统,作者设计了一种无阀供应系统(液氧流线中没有阀)。装有50kgf推力CAMUI电机的10kg车辆进行的四次连续成功发射验证测试证明了该电机系统的可行性。正在开发400 kgf级电动机的气象观测模型,随后将开发1.5-2tonf级电动机的微重力实验级。作者计划在2005财年底之前完成400 kgf级的用于气象观测模型的电动机的开发。

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