文章摘要
卢伟锋,刘志刚,李祖吉,周乐,王晓妮,张鹏娥.泡沫EPS非线性粘弹性本构模型在LS-DYNA空调跌落仿真中的研究[J].包装工程,2020,41(17):133-138.
LU Wei-feng,LIU Zhi-gang,LI Zu-ji,ZHOU Le,WANG Xiao-ni,ZHANG Peng-e.Nonlinear Viscoelastic Constitutive Model of Foam EPS in LS-DYNA Air Conditioner Drop Simulation[J].Packaging Engineering,2020,41(17):133-138.
泡沫EPS非线性粘弹性本构模型在LS-DYNA空调跌落仿真中的研究
Nonlinear Viscoelastic Constitutive Model of Foam EPS in LS-DYNA Air Conditioner Drop Simulation
投稿时间:2020-01-11  修订日期:2020-09-10
DOI:10.19554/j.cnki.1001-3563.2020.17.018
中文关键词: 空调跌落  应变率  Fu-Chang泡沫  仿真精度
英文关键词: air conditioner drop  strain rate  Fu-Chang foam  simulation accuracy
基金项目:
作者单位
卢伟锋 1.珠海格力电器股份有限公司广东 珠海 519070 
刘志刚 2.上海迅仿工程技术有限公司上海 201100 
李祖吉 1.珠海格力电器股份有限公司广东 珠海 519070 
周乐 1.珠海格力电器股份有限公司广东 珠海 519070 
王晓妮 1.珠海格力电器股份有限公司广东 珠海 519070 
张鹏娥 1.珠海格力电器股份有限公司广东 珠海 519070 
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中文摘要:
      目的 研究泡沫EPS非线性粘弹性本构模型对空调跌落仿真精度的影响。方法 通过动态压缩试验获得泡沫EPS在不同应变率下的应力-应变结果,使用LS-DYNA中的非线性粘弹性本构模型Fu-Chang泡沫准确模拟泡沫在不同应变率下的力学性能,并通过空调跌落仿真进行验证。结果 使用不同应变率下的泡沫EPS非线性粘弹性本构模型进行仿真,空调不同位置的仿真加速度曲线和实际试验加速度曲线相似度在90%以上。结论 不同应变率下的泡沫EPS非线性粘弹性本构模型可以准确模拟EPS泡沫在动态冲击下的材料力学性能,可以更加准确地模拟跌落工况中空调结构的动态反应及泡沫失效状态,提高仿真精度。
英文摘要:
      The work aims to study the influence of foam EPS nonlinear viscoelastic constitutive model on the accuracy of air conditioner drop simulation. The stress-strain results of foam EPS at different strain rates were obtained through dynamic compression tests. The nonlinear viscoelastic constitutive model Fu-Chang foam in LS-DYNA was used to accurately simulate the mechanical properties of the foam at different strain rates, and verified by air conditioner drop simulation. By using foam EPS nonlinear viscoelastic constitutive model under different strain rates for simulation, the similarity between the simulated acceleration curve and the actual test acceleration curve of different locations of the air conditioner was more than 90%. The EPS foam nonlinear viscoelastic constitutive model under different strain rates can accurately simulate the mechanical properties of EPS foam under dynamic impact, and can more accurately simulate the dynamic response of air conditioner structures and the state of foam failure under drop conditions, to improve simulation accuracy.
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