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Restraint system design and evaluation for military specific applications.

机译:针对军事特定应用的约束系统设计和评估。

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摘要

This research focuses on designing an optimal restraint system for usage in a military vehicle applications. The designed restraint system must accommodate a wide range of DHM's and ATD's with and without PPE such as: helmet, boots, and body armor. The evaluation of the restraint systems were conducted in a simulated vehicle environment, which was utilized to downselect the ideal restraint system for this program.;In December of 2011 the OCP TECD program was formulated to increase occupant protection. To do this, 3D computer models were created to accommodate the entire Soldier population in the Army. These models included the entire PPE, which were later utilized for space claim activities and for designing new seats and restraints, which would accommodate them. Additionally, guidelines to increase protection levels while providing optimal comfort to the Soldier were created. The current and emerging threats were evaluated and focused on at the time of the program inception.;Throughout this program various activities were conducted for restraint downselection including Soldier evaluations of various restraint system configurations. The Soldiers were given an opportunity to evaluate each system in a representative seat, which allowed them to position themselves in a manner consistent with the mission requirements. Systems ranged from fully automated to manual adjustment type systems. An evaluation of each particular system was conducted and analyzed against the other systems. It was discovered that the restraint systems, which utilize retractors allowed for automatic webbing stowage and allowed for easier access and repeatability when donning and doffing the restraint. It was also found that when an aid was introduced to help the Soldier don the restraint, it was more likely that such system would be utilized.;Restraints were evaluated in drop tower experiments in addition to actual blast tests. An evaluation with this amount of detail had not been attempted previously.
机译:这项研究的重点是设计用于军事车辆应用的最佳约束系统。设计的约束系统必须适应多种DHM和ATD,无论是否装有PPE,例如头盔,靴子和防弹衣。约束系统的评估是在模拟的车辆环境中进行的,该系统被用来为该程序选择理想的约束系统。2011年12月,制定了OCP TECD程序以增强乘员保护。为此,创建了3D计算机模型以容纳陆军中的所有士兵。这些模型包括整个个人防护设备,后来用于空间要求活动以及设计可容纳它们的新座椅和约束装置。此外,还制定了在提高防护等级的同时为士兵提供最佳舒适感的准则。在计划开始之时,对当前和正在出现的威胁进行了评估并集中注意。在整个计划中,进行了各种活动以进行约束选择,包括士兵对各种约束系统配置的评估。士兵们有机会在具有代表性的座位上评估每个系统,这使他们能够以符合任务要求的方式摆放自己的位置。系统范围从全自动到手动调整类型的系统。对每个特定系统进行了评估,并针对其他系统进行了分析。已经发现,利用牵开器的约束系统允许自动织带存放,并且在穿戴和落下约束时更易于接近和可重复。还发现,当引入辅助工具来帮助士兵约束时,很有可能会使用这种系统。;除实际爆炸测试外,还通过落塔实验评估了约束条件。以前没有尝试过如此详细的评估。

著录项

  • 作者

    Karwaczynski, Sebastian.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Mechanical engineering.;Automotive engineering.;Aerospace engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 254 p.
  • 总页数 254
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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