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Investigating the Effects of Anchor Pretensioners, Knee Bolster Airbags and Seat Belt Changes in an IRL Tub

机译:调查IRL浴缸中锚固螺旋沉积物,膝盖垫气囊和安全带变化的影响

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The study looks at seating systems with respect to the seat belt loading characteristics and occupant kinematics in frontal and rear impacts to determine if improvements can be made with respect to major injury criteria of the occupant in lay-down style IRL cars. The study compares the seat belt loading characteristics between upright stock car seating positions and lay down seating position of an IRL car. This is being done because of the differences that have been seen in lower back injuries between the two types of seating positions. Three safety systems (V1, V1a, and V2) have been engineered to study the possibility of improving the system performance using basic restraint system principals. The study compares current IRL systems to 3 progressively more experimental safety systems using seat changes, a knee bolster airbag, lap belt pretensioners, lap belt load limiting and upper torso control utilizing seat belt elongation as a load limiter and head and neck restraint. The basis of the series is to begin restraint of the pelvis as early in the event as possible. Decreasing the pelvic acceleration and utilizing the available space can better control the torso loads and thus the head and neck loads in frontal impacts. Lower pelvic and chest loads along with modified occupant kinematics should translate into decreased loads on the lumbar spine area where injuries have been seen in the field. A modified Hybrid III dummy was used in the study. The modified Hybrid III did not allow for the use of a lower lumbar load cells to determine if the loads were reduced directly. Therefore, some assumptions must be made in this area. IRL cars accommodate a reclined seating position. During severe rear impacts in these seating systems, the occupant tends to rise in the seat, exposing the head over the head rest. Late in the event, the knees rise into the cockpit hitting the back of the steering wheel. The goal in an improved system is to, not only benefit the occupant in frontal impacts, but also to reduce the amount of upward movement and to keep the legs restrained in the foot well in rear impacts also. This is accomplished by using modified sub belt positions, buckle pretensioners and a knee bolster airbag.
机译:该研究在前后冲击的座椅带装载特性和乘员运动学中看着座椅系统,以确定是否可以在划线风格IRL汽车中的乘员的主要伤害标准方面进行改进。该研究比较了直立股车座位位置之间的安全带装载特性,并铺设了IRL汽车的座位位置。这是因为在两种座位位置之间的较低背部受伤中看到的差异而完成的。已经设计了三种安全系统(V1,V1A和V2),以研究使用基本克制系统原理提高系统性能的可能性。该研究将当前的IRLS系统与3使用座椅变化,膝盖垫气囊,膝盖带预紧器,搭接带载荷限制和上躯干控制利用座椅皮带伸长作为负载限制器和头部和颈部约束。该系列的基础是尽可能早日开始抑制骨盆。降低盆腔加速度并利用可用空间可以更好地控制躯干载荷,从而使头部和颈部负荷在正面冲击中。较低的骨盆和胸部负荷以及改进的乘员运动学应该转化为腰椎脊柱区域的减少载重,在该领域已经看到了伤害。在研究中使用了改进的杂交III虚拟体。修饰的杂交III不允许使用下腰部称重传感器,以确定负载是否直接降低。因此,必须在该地区进行一些假设。 irl汽车可容纳斜倚的座位位置。在这些座位系统中严重的后冲击期间,乘员往往会在座椅上升,将头部暴露在头部休息。在活动中晚了,膝盖升入驾驶舱,撞击方向盘后部。在改进系统的目标是,不仅有利于在正面碰撞乘员,还能减少向上运动的量和保持腿的脚限制以及在后部碰撞也。这是通过使用改进的子带位置,带扣预紧器和膝盖垫气囊来实现的。

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