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An Instrumented Sharp Indentation Method for Measuring Equibiaxial Residual Stress without Using Stress-Free Specimens
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作者 Guangjian Peng saifei li +3 位作者 liang Zhang Peijian Chen Wei Xiong Taihua Zhang 《Acta Mechanica Solida Sinica》 2025年第2期290-299,共10页
The presence of residual stresses in materials or engineering structures can significantly influence their mechanical per-formance.Accurate measurement of residual stresses is of great importance to ensure their in-se... The presence of residual stresses in materials or engineering structures can significantly influence their mechanical per-formance.Accurate measurement of residual stresses is of great importance to ensure their in-service reliability.Although numerous instrumented indentation methods have been proposed to evaluate residual stresses,the majority of them require a stress-free reference sample as a comparison benchmark,thereby limiting their applicability in scenarios where obtaining stress-free reference samples is challenging.In this work,through a number of finite element simulations,it was found that the loading exponent of the loading load-depth curve and the recovered depth during unloading are insensitive to residual stresses.The loading curve of the stress-free specimen was virtually reconstructed using such stress-insensitive parameters extracted from the load-depth curves of the stressed state,thus eliminating the requirement for stress-free reference samples.The residual stress was then correlated with the fractional change in loading work between stressed and stress-free loading curves through dimensional analysis and finite element simulations.Based on this correlation,an instrumented sharp indentation method for measuring equibiaxial residual stress without requiring a stress-free specimen was established.Both numerical and experimental verifications were carried out to demonstrate the accuracy and reliability of the newly proposed method.The maximum relative error and absolute error in measured residual stresses are typically within±20%and±20 MPa,respectively. 展开更多
关键词 Experimental mechanics Residual stress measurement Instrumented indentation Finite element simulation Dimensional analysis
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休闲运动公园可持续景观设计初探
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作者 萧英男 黄磊昌 +1 位作者 李赛飞 李哲 《城镇化与集约用地》 2014年第4期59-62,共4页
运动中休闲,休闲中健身,这是对现代快速城市化以及全球一体化高效率发展背景的应对,界定休闲运动公园的内涵与外延,解析休闲与运动的关系特点以及问题,系统化提出现代休闲运动公园可持续景观设计的基于设计过程中场址选择、空间布局、... 运动中休闲,休闲中健身,这是对现代快速城市化以及全球一体化高效率发展背景的应对,界定休闲运动公园的内涵与外延,解析休闲与运动的关系特点以及问题,系统化提出现代休闲运动公园可持续景观设计的基于设计过程中场址选择、空间布局、成本控制的策略;基于地域文化传承等方面响应策略。 展开更多
关键词 休闲运功 公园 可持续景观设计 成本控制
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