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Shock and Vibration Isolation System for Ambulatory and Litter Patients in Ground and Air Medical Transport

机译:地面和空气医疗运输中动态和垫料患者的冲击和隔振系统

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摘要

This project explored the effectiveness of seat and litter air bladder technologies in reducing patient exposure to whole body shock and vibration during ground borne and airborne medical transport. Several seat and litter air bladder configurations were examined during field tests in a U.S. Army RG-33 MRAP ambulance and a U.S. Army HH-60M Black Hawk helicopter. The MRAP field tests were conducted at Ft. Detrick, Maryland. The Black Hawk field tests were conducted at Ft. Rucker, Alabama.During the field tests, tri-axial vibration signals were recorded on a 16-channel CoCo90 Data Logger/Frequency Analyzer and then post processed in the laboratory to obtain three-axis 1/3 octave vibration spectra and vibration transmissibility values and low-pass, band-pass and ISO overall vibration values. Vibration reductions through the seat air bladder of up to 47 percent in the vertical direction were achieved. The vibration reducing characteristics of the litter air bladder were significantly affected by the flexibility of the litter webbing and were more difficult to evaluate. More testing is necessary on the litter air bladder to more accurately determine its effectiveness in reducing patient exposure to shock and vibration during medical transport.
机译:该项目探讨了座椅和垃圾气囊技术在减少地面传播和空中传播的医疗运输过程中减少患者暴露于全身震动和振动中的有效性。在美国陆军RG-33 MRAP救护车和美国陆军HH-60M黑鹰直升机的现场测试中,检查了几种座椅和垃圾垫气囊的配置。 MRAP现场测试在Ft进行。马里兰德里特里克。黑鹰野战测试是在英尺进行的。在阿拉巴马州的鲁克(Rucker),在现场测试期间,将三轴振动信号记录在16通道CoCo90数据记录仪/频率分析仪上,然后在实验室中进行后处理以获得三轴1/3倍频程振动光谱和振动传递率值,以及低通,带通和ISO总体振动值。通过座椅气囊在垂直方向上的振动减少了47%。垃圾气囊的减振特性受到垃圾带的柔韧性的显着影响,并且更难以评估。必须对垫料式气囊进行更多测试,才能更准确地确定其在减少患者在医疗运输过程中受到震动和冲击的能力。

著录项

  • 作者

    Hachem Mohamad R.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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