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Determination of the deflected contact surface between human body and seat under realistic individual sitting conditions - A mixed experimental and numerical approach

机译:确定人体与逼真的个体休息条件下围座之间的偏转接触表面 - 一种混合实验和数值方法

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For the development of sophisticated digital (e.g., Finite-Element models like CASIMIR) or physical (e.g., ASPECT-Dummy) models of the mechanisms of human-seat interaction it is very important to know the shape of the contact surface between the human buttocks and back and the seat cushion and backrest, respectively. Currently, these surfaces are usually determined by purely experimental procedures that require complicated and expensive measuring equipment. This paper presents an alternative hybrid approach of standard experimental investigations of the pressure distributions between human body and seat (cushion and backrest) and proceeding numerical simulations with the Finite-Element-Method (FEM). Pressure distributions are measured with standard measuring equipment for individual persons or defined percentile groups. Due to the simplicity of these measurements, they can be performed for a larger number of individuals at low cost. The results of these measurements - the pressure distributions on seat cushion and backrest - are then appropriately applied to a nonlinear FEM model of the seat the measurements have been performed on. The material properties of the highly nonlinear foam materials are described by a hyperelastic material constitutive law, parameters of which have to be identified from material test data. This identification is performed by a special nonlinear gradient optimization procedure. The result of the numerical simulation is the desired contact surface that results from the human gravity loading acting on the undeflected seat surface. This method has been applied for the determination of deflected contact surfaces for different percentile groups, ranging from the 5th female to the 95th male percentile group.
机译:为了开发人们的复杂数字(例如,有限元模型)或人座间相互作用机制的物理(例如,宽高的态度)模型,了解人臀部之间的接触表面的形状非常重要和背部和座垫和靠背。目前,这些表面通常由纯粹的实验程序确定,需要复杂和昂贵的测量设备。本文介绍了人体和座椅(靠垫和靠背)之间的压力分布的标准实验研究的替代混合方法,以及使用有限元方法(FEM)进行数值模拟。压力分布用标准测量设备为个体或定义百分位组测量。由于这些测量的简单性,它们可以以低成本为更大数量的个体进行。这些测量结果 - 座垫和靠背上的压力分布 - 然后适当地应用于测量的座椅的非线性有限元模型。高度非线性泡沫材料的材料特性由高级塑料本构规定描述,其参数必须从材料测试数据中识别。该识别由特殊的非线性梯度优化过程执行。数值模拟的结果是所需的接触表面,从而由作用在未定方的座椅表面上的人重力载荷产生的所需接触表面。该方法已被应用于确定不同百分位数的偏转接触表面,从第5个雌性到第95个雌性百分位组的范围。

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