针对超弹性材料压入问题,本文基于能量密度中值等效原理,提出了描述球、平面、锥3类压头独立压入下载荷、深度、压头几何尺寸和Mooney-Rivlin本构关系参数之间关系的半解析超弹性压入模型(semi-theoretical hyperelastic-material inden...针对超弹性材料压入问题,本文基于能量密度中值等效原理,提出了描述球、平面、锥3类压头独立压入下载荷、深度、压头几何尺寸和Mooney-Rivlin本构关系参数之间关系的半解析超弹性压入模型(semi-theoretical hyperelastic-material indentation model,SHIM),进而提出了球、平面、锥压入组合的双压试验方法(indentation method due to dual indenters,IMDI).正向验证表明,基于系列超弹性材料的本构关系参数,由SHIM分别预测的球、平面、锥3类压入下的载荷-位移曲线与有限元分析(finite element analysis,FEA)结果之间密切吻合;反向验证表明,基于系列超弹性材料的FEA条件本构关系下3类压入的载荷-位移曲线,由双压试验方法预测的Mooney-Rivlin本构关系与FEA条件本构关系密切吻合.针对3种超弹性橡胶,完成了球、平面、锥压入试验,应用双压试验方法获得的3组Mooney-Rivlin本构关系均与单轴拉伸试验结果吻合良好.展开更多
The present study proposes a new semi-immersed Jarlan-type perforated breakwater including a perforated front wall, a solid rear wall, and a horizontal perforated plate connecting the lower tips of the two walls. An a...The present study proposes a new semi-immersed Jarlan-type perforated breakwater including a perforated front wall, a solid rear wall, and a horizontal perforated plate connecting the lower tips of the two walls. An analytical solution is developed to estimate the hydrodynamic performance of the new breakwater. The analytical solution is confirmed by solutions for special cases, an independently developed multi-domain boundary element method solution and experimental data. Numerical examples based on the analytical solution indicate that compared with previous semi-immersed breakwaters, the new breakwater may have better wave-absorbing performance and smaller wave forces. Some useful results are presented for practical designs of semi-immersed Jarlan-type perforated breakwaters.展开更多
文摘针对超弹性材料压入问题,本文基于能量密度中值等效原理,提出了描述球、平面、锥3类压头独立压入下载荷、深度、压头几何尺寸和Mooney-Rivlin本构关系参数之间关系的半解析超弹性压入模型(semi-theoretical hyperelastic-material indentation model,SHIM),进而提出了球、平面、锥压入组合的双压试验方法(indentation method due to dual indenters,IMDI).正向验证表明,基于系列超弹性材料的本构关系参数,由SHIM分别预测的球、平面、锥3类压入下的载荷-位移曲线与有限元分析(finite element analysis,FEA)结果之间密切吻合;反向验证表明,基于系列超弹性材料的FEA条件本构关系下3类压入的载荷-位移曲线,由双压试验方法预测的Mooney-Rivlin本构关系与FEA条件本构关系密切吻合.针对3种超弹性橡胶,完成了球、平面、锥压入试验,应用双压试验方法获得的3组Mooney-Rivlin本构关系均与单轴拉伸试验结果吻合良好.
基金financially supported by the National Natural Science Foundation of China(Grant Nos.51322903 and 51279224)Program for New Century Excellent Talents in University(Grant No.NCET-13-0528)
文摘The present study proposes a new semi-immersed Jarlan-type perforated breakwater including a perforated front wall, a solid rear wall, and a horizontal perforated plate connecting the lower tips of the two walls. An analytical solution is developed to estimate the hydrodynamic performance of the new breakwater. The analytical solution is confirmed by solutions for special cases, an independently developed multi-domain boundary element method solution and experimental data. Numerical examples based on the analytical solution indicate that compared with previous semi-immersed breakwaters, the new breakwater may have better wave-absorbing performance and smaller wave forces. Some useful results are presented for practical designs of semi-immersed Jarlan-type perforated breakwaters.