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DESIGN AND DEMONSTRATION OF BOLT RETRACTOR SEPARATION SYSTEM FOR X-38 DEORBIT PROPULSION STAGE

机译:X-38脱毛推进阶段螺栓牵开器分离系统的设计与演示

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A separation system was designed for the X-38 experimental crew return vehicle program to allow the Deorbit Propulsion Stage (DPS) to separate from the X-38 lifting body during reentry operations. The configuration chosen was a spring-loaded plunger, known as the Bolt Retractor Subsystem (BRS), that retracts each of the six DPS-to-lifting body attachment bolts across the interface plane after being triggered by a separation nut mechanism. The system was designed to function on the ground in an atmospheric environment as well as in space. The BRS provides the same functionality as that of a completely pyrotechnic shear separation system that would normally be considered ideal for this application, but at a much lower cost. This system also could potentially be applied to future space station crew return vehicles. The design goal of 40 ms retraction time was successfully met in a series of demonstrations performed at the NASA Marshall Space Flight Center's Pyrotechnic Shock Facility (PSF) and Flight Robotics Laboratory (FRL). It must be emphasized that a full-scale test series was not performed on the BRS due to program schedule and cost constraints.
机译:设计了分离系统,用于X-38实验机组人员返回车辆程序,以允许脱毛推进阶段(DPS)在再入操作期间与X-38升降体分离。所选择的配置是弹簧加载的柱塞,称为螺栓牵发器子系统(BRS),其在通过分离螺母机构触发之后通过界面平面缩回横跨界面平面中的每一个。该系统被设计成在大气环境以及空间中的地面上运行。 BRS提供了与完全烟火剪切分离系统相同的功能,这些剪切分离系统通常被认为是本申请的理想选择,但成本低得多。该系统也可能适用于未来的空间站船员返回车辆。在NASA Marshall Space Flight Centre(PSF)和飞行机器人实验室(FRL)的一系列演示中成功达到了40毫秒收缩时间的设计目标。必须强调的是,由于方案计划和成本限制,在BRS上未执行全规模的测试系列。

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