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护理器具双楔形气囊的数值模拟建模与运动学分析

Numerical simulation modeling and kinematic analysis onto double wedge-shaped airbag of nursing appliance.

作者信息

Xiao Yunxuan, Liu Teng, Meng Chuizhou, Jiao Zi'ang, Meng Fanchao, Guo Shijie

机构信息

Engineering Research Centre of the Ministry of Education for Intelligent Rehabilitation Devices and Testing Technology, Tianjin, 300401, China.

State Key Laboratory of Reliability and Intelligence of Electrical Equipment, Jointly Established By Hebei University of Technology and the Provincial Ministry, Tianjin, 300401, China.

出版信息

Sci Rep. 2023 Aug 31;13(1):14261. doi: 10.1038/s41598-023-41619-y.

Abstract

In previous studies, the numerical modeling and analyzing methods onto industrial or vehicle airbags dynamics were revealed to have high accuracy regarding their actual dynamic properties, but there are scarcely airbag stiffness modeling and comfortableness investigations of nursing cushion or mattress airbags. This study constructs a numerical model illustrating the association between the stiffness property and the internal gas mass of the wedge-shaped airbag of nursing appliance, and then the airbag stiffness variation discipline is described based on various inflation volumes. To start with, based on an averaged pressure prerequisite, a dynamic simulation model of the wedge-shaped airbag is established by the fluid cavity approach. For this modeling, the elastic mechanical behaviors of airbag material are determined according to a material constitutive model built by the quasi-static uniaxial tensile test. Besides, verification experiments clarify that the presented modeling method is accurate for airbag stiffness behavior prediction, and then can be effectively applied into design and optimization phases of wedge-shaped airbags. Ultimately, based on the simulation and experimental results, it is found that the wedge-shaped airbag stiffness exhibits a three stages characteristic evolution with the gas mass increase. Then the mathematical relationship between the airbag stiffness and gas mass is obtained by numerical fitting, which provides a vital basis for structural optimization and differentiated control of nursing equipment airbags.

摘要

在以往的研究中,工业或汽车安全气囊动力学的数值建模和分析方法在反映其实际动态特性方面具有较高的准确性,但对于护理垫或床垫安全气囊的刚度建模和舒适性研究却很少。本研究构建了一个数值模型,阐述了护理器具楔形安全气囊的刚度特性与内部气体质量之间的关联,然后基于不同的充气量描述了安全气囊刚度的变化规律。首先,基于平均压力前提,采用流体腔方法建立了楔形安全气囊的动态仿真模型。在此建模过程中,根据通过准静态单轴拉伸试验建立的材料本构模型确定安全气囊材料的弹性力学行为。此外,验证实验表明所提出的建模方法对于安全气囊刚度行为预测是准确的,进而可有效应用于楔形安全气囊的设计和优化阶段。最终,基于仿真和实验结果发现,随着气体质量的增加,楔形安全气囊刚度呈现出三个阶段的特征演变。然后通过数值拟合得到了安全气囊刚度与气体质量之间的数学关系,这为护理设备安全气囊的结构优化和差异化控制提供了重要依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f23/10471570/ad75768a42f7/41598_2023_41619_Fig1_HTML.jpg

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