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Failure Simulation Testing of the Z-1 Spacesuit Titanium Bearing Assemblies

机译:Z-1 Spacesuit钛轴承组件的故障模拟测试

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The Z-2 is a candidate for NASA's next generation spacesuit, designed for a range of possible missions with enhanced mobility for spacewalks both on planetary surfaces and in microgravity. Increased mobility was accomplished through innovations in shoulder and hip joints, using a number of new bearings to allow spacesuit wearers to dip, walk, and bend with ease; all important tasks for a planetary explorer collecting samples or traveling over rough terrain. The Advanced Spacesuit Development Team of NASA Johnson Space Center requested that the NASA White Sands Test Facility (WSTF) perform a series failure simulation tests on three titanium bearing assemblies, an elemental part of the joint construction used in new spacesuit designs. This testing simulated two undetected failures within the bearings and as a result the objective of this test program was to evaluate whether a failed or failing bearing could result in ignition of the titanium race material due to friction. The first failure was an inner seal leak sufficient to pressurize the race with +99 percent oxygen. The second failure was an improperly installed or mismatched ball port that created a protrusion in the ball bearing race, partially obstructing the nominal rolling path of each ball bearing. When the spacesuit bearings are assembled, bearing balls are loaded into the assembly via a ball port. The ball port is specific and unique to each bearing assembly (matched pair). The simulated mismatched ball port is a significant source of friction, which would be caused by an assembly error. To evaluate this risk, the bearings were cycled in a simulated worst-case scenario environment, with operational loads, and potential flaw conditions. During test the amount of actuation torque required and heat generated through continuous operation were measured and the bearings were observed for sparks or burning events. This paper provides detailed descriptions of the test hardware, methodology, and results.
机译:Z-2是NASA的下一代Spaceue的候选者,该候选者设计用于一系列可能的任务,该任务具有增强的行星表面和微匍匐的太空行动的移动性。通过肩部和髋关节的创新来实现增加的移动性,使用一些新的轴承,使Spacesue佩戴者能够轻松地倾斜,步行和弯曲;行星探险家的所有重要任务收集样品或在崎岖的地形上行驶。美国宇航局约翰逊航天中心的先进太空飞行器开发团队要求NASA白沙试验设施(WSTF)在三个钛轴承组件上进行系列故障仿真试验,这是一种用于新的Spaceue设计的联合结构的元素部分。该测试模拟了轴承内的两个未检测到的故障,因此该测试程序的目的是评估失败或失败的轴承是否可能导致由于摩擦引起的钛血材料点燃。第一个故障是内部密封泄漏,足以用+99%的氧气加压竞争。第二次故障是一个不正确安装或不匹配的球端口,在滚珠轴承座圈中产生突起,部分阻挡每个滚珠轴承的标称滚动路径。当刨花板轴承组装时,轴承球通过球端口装入组件中。球端口是特定的,每个轴承组件(匹配对)是独特的。模拟错配的球端口是一个重要的摩擦来源,这将是由装配误差引起的。为了评估这种风险,轴承在模拟最坏情况场景环境中循环,具有操作负载和潜在的缺陷条件。在测试期间,测量所需的致动扭矩和通过连续操作产生的热量,并且观察到火花或燃烧事件的轴承。本文提供了测试硬件,方法和结果的详细说明。

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