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Effects of seat and seat-belt design on car occupant response in frontal and rear impacts: A study combining mechanical and mathematical modelling.

机译:座椅和安全带设计对乘员在正面和背面碰撞中的反应的影响:结合机械和数学建模的研究。

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摘要

The objective of the present work is to determine the potential injury-reducing benefits to car occupants in accidents of seat and seat-belt design. The main problems addressed are the risk of injury to head, neck, and upper torso in frontal impacts, and the risk of minor neck-injuries--whiplash-injuries--in rear-end collisions. The approach is to combine mathematical and mechanical modelling of representative frontal and rear-end crash-situations, thereby enabling general-purpose parametric studies of relevant design factors. Thus the crash situations are first modelled mechanically because this enables realistic occupant environments. The next step is to transfer the scenario into the mathematical model MADYMO, where the seat and seat-belt design are further elaborated on in order to resolve the detailed effects of changes to the occupant environment.;The coupling between design parameters of a seat-belt system which has all anchorages incorporated in the seat structure, i.e. a belt-in-seat system, is analysed. The results show system response to be more sensitive to lap-belt geometry and seat properties than to shoulder-belt geometry. In fact, the small differences in occupant response obtained when the shoulderbelt geometry has been changed indicate most occupant sizes may be accommodated without elaborate devices for adjustment of the upper point of belt-presentation.;A number of parameters with possible effects on the risk of injury in rear-end collisions are also analysed. The results show the following (1) For a given impact velocity, the risk of injury increases when crash-pulse duration decreases. (2) Seat-belt usage only influences occupant response during rearward motion in severe impacts. (3) For strengths and stiffnesses below a threshold level, occupant protection decreases with decreasing stiffness and strength of the seat-back recliner. For strengths and stiffnesses above the threshold, occupant response is less sensitive to changes of these properties. (4) Recliner energy absorption is important for reducing occupant rebound, as well as for the protection of out-of-position occupants in severe impacts.;MADYMO proved effective for evaluating relations between car design parameters and occupant responses, although its algorithm for rigid body contacts was considered inadequate in applications involving analysis of contacts between the occupant and its environment.;Since designs for increased restraining effect of the seat-belt may adversely affect the risk of occupant submarining, a means of assessing the tendency for submarining in MADYMO-simulations of frontal impacts is developed. This method can predict lap-belt-slip off the pelvis, which is the first step in the submarining event. The risk of submarining is then predicted in subsequent simulations. A means of reducing the belt-force while still maintaining the full protective capacity of the belt, is also studied. This principle allows for an increase in impact velocity of up to 25% without increased risk for belt-induced injury.
机译:本工作的目的是确定在座椅和安全带设计事故中对乘员潜在的减少伤害的好处。解决的主要问题是正面碰撞可能会伤及头部,颈部和上身,而追尾事故中可能会造成轻微的颈部伤害(鞭打伤害)。该方法是将代表性的前端和后端碰撞情况的数学和机械建模相结合,从而实现对相关设计因素的通用参数研究。因此,首先要对碰撞情况进行机械建模,因为这可以实现真实的乘员环境。下一步是将场景转移到数学模型MADYMO中,在该模型中进一步详细说明座椅和安全带的设计,以便解决乘员环境变化的详细影响。分析了将所有锚固件合并到座椅结构中的安全带系统,即座椅安全带系统。结果表明,系统响应对腰带几何形状和座椅特性比对肩带几何形状更敏感。实际上,改变肩带的几何形状后,乘员的反应差异很小,这表明可以容纳大多数乘员,而无需使用复杂的装置来调节安全带的上点。还分析了追尾事故中的伤害。结果表明:(1)对于给定的冲击速度,当碰撞脉冲持续时间减少时,受伤的风险就会增加。 (2)安全带的使用仅会在严重撞击时向后移动时影响乘员的反应。 (3)对于低于阈值水平的强度和刚度,乘员保护会随着座椅靠背躺椅的刚度和强度的降低而降低。对于高于阈值的强度和刚度,乘员响应对这些属性的变化不太敏感。 (4)躺椅能量吸收对于减少乘员回弹以及在严重撞击中保护错位乘员来说很重要。MADYMO被证明对评估汽车设计参数和乘员反应之间的关系有效,尽管其刚性算法在涉及乘员与周围环境之间的接触分析的应用中,人体接触被认为是不充分的。由于安全带的约束作用增强的设计可能会对乘员潜艇的风险产生不利影响,因此一种评估MADYMO中潜艇趋势的方法-模拟了正面碰撞。这种方法可以预测腰带滑落在骨盆上,这是潜艇事件的第一步。然后在随后的模拟中预测潜艇的风险。还研究了在保持皮带的全部保护能力的同时减小皮带力的方法。该原理可将冲击速度提高至25%,而不会增加皮带引起的伤害风险。

著录项

  • 作者

    Nilson, Gert.;

  • 作者单位

    Chalmers Tekniska Hogskola (Sweden).;

  • 授予单位 Chalmers Tekniska Hogskola (Sweden).;
  • 学科 Engineering Automotive.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

  • 入库时间 2022-08-17 11:49:56

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