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液体对岩石非线性弹性行为的影响 被引量:8
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作者 席道瑛 杜赟 +1 位作者 易良坤 宛新林 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2009年第4期687-696,共10页
通过多种试验方法、多种频段对沉积岩、变质岩、火成岩进行干燥和有液体饱和状态的对比试验研究,得出低频时干燥岩石的衰减、色散小,相对饱和岩石而言可以忽略。饱和岩石具有衰减峰,其特征随饱和液体黏性而变化。在声频时,干燥岩石的应... 通过多种试验方法、多种频段对沉积岩、变质岩、火成岩进行干燥和有液体饱和状态的对比试验研究,得出低频时干燥岩石的衰减、色散小,相对饱和岩石而言可以忽略。饱和岩石具有衰减峰,其特征随饱和液体黏性而变化。在声频时,干燥岩石的应力–历史波形与饱和岩石相比差别较大。饱和液体的黏滞作用引起弥散和阻止卸载的后沿缓波,并随黏性增大而增强,体现了黏弹性材料特有的属性。全程σ-ε曲线得到干燥岩石的强度大于饱和岩石,平行层理大于垂直层理的强度,具有各向异性。干燥岩石各向异性很弱,液体促进了饱和岩石各向异性的增强。低饱和度时,模量和波速随饱和度增大而降低;高饱和度时模量又随饱和度增大而增大;中等饱和度时,模量、波速基本不随饱和度变化。用PM模型中微观非经典单元在饱和液体的作用下易于被激活,导致PM空间对角密度增大,非线性增强的变化基本能解释上述试验的结果。液体对岩石非线性弹性行为的这些影响,从长期效应来看将会给重大岩石工程的安全带来隐患,必须引起足够的重视。 展开更多
关键词 岩石力学 饱和液体 饱和岩石 非线性弹性行为 岩石强度和模量 改进的PM模型
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Thermal-mechanical and springback behavior of dual-phase steel at warm temperatures 被引量:1
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作者 LIN Qi-quan WANG Zhen-zhu +2 位作者 DONG Wen-zheng BU Gen HUANG Jin-shan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1895-1905,共11页
For non-quenchable dual-phase(DP)steel sheet,the warm forming process can effectively reduce the amount of springback,and the mechanical parameters that influence its elastic and inelastic recovery to decrease exhibit... For non-quenchable dual-phase(DP)steel sheet,the warm forming process can effectively reduce the amount of springback,and the mechanical parameters that influence its elastic and inelastic recovery to decrease exhibit a strong temperature dependence,especially under cyclic loading conditions.In this paper,the monotonic and cyclic loading tests of DP980 steel sheets are conducted at the temperatures ranging from 25℃ to 500℃.The temperature-dependent flow stress,nonlinear elastic recovery,and Bauschinger effect are investigated.The results demonstrate that both the elastic modulus and Bauschinger effect show an exponential law with pre-strain,and decrease with the increase of forming temperature,while there will be an abnormal phenomenon of rebound due to the influence of dynamic strain aging effect.Meanwhile,a linear relationship between the Bauschinger effect and inelastic strain is observed at various temperatures,and the weight of the Bauschinger effect in the total strain reduces with temperature increasing,which indicates that the springback is dominated by linear elastic recovery.Furthermore,the U-draw bending tests are carried out to clarify the influence of Vickers hardness distribution and martensite size effect on the springback behavior. 展开更多
关键词 warm forming dual-phase steel springback behavior nonlinear elastic recovery Bauschinger effect
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高强度多功能Ti-Nb-Zr-Sn合金 被引量:4
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作者 郝玉琳 杨锐 《中国基础科学》 2007年第5期19-21,共3页
本文报道了一种兼具高强度和低弹性模量、低泊松比、超弹性及高阻尼性能等多功能特性的柔韧钛合金(Ti-24Nb-4Zr-7.9Sn)的研究背景、设计思路、主要性能及所蕴含的基础科学问题,介绍了该合金在医疗等领域的应用前景和研究进展。
关键词 多功能钛合金 非线性弹性行为 局域化塑性变形
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Weak fatigue notch sensitivity in a biomedical titanium alloy exhibiting nonlinear elasticity 被引量:2
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作者 Jinrui Zhang Syed A. A. Shah +2 位作者 Yulin Hao Shujun Li Rui Yang 《Science China Materials》 SCIE EI CSCD 2018年第4期537-544,共8页
It is well known that metallic materials exhibit worse fatigue damage tolerance as they behave stronger in strength and softer in modulus. This raises concern on the long term safety of the recently developed biomecha... It is well known that metallic materials exhibit worse fatigue damage tolerance as they behave stronger in strength and softer in modulus. This raises concern on the long term safety of the recently developed biomechanical compatible titanium alloys with high strength and low modulus. Here we demonstrate via a model alloy, Ti-24 Nb-4 Zr-8 Sn in weight percent, that this group of multifunctional titanium alloys possessing nonlinear elastic deformation behavior is tolerant in fatigue notch damage. The results reveal that the alloy has a high strength-to-modulus(σ/E) ratio reaching2% but its fatigue notch sensitivity(q) is low, which decreases linearly from 0.45 to 0.25 as stress concentration factor increases from 2 to 4. This exceeds significantly the typical relationship between σ/E and q of other metallic materials exhibiting linear elasticity. Furthermore, fatigue damage is characterized by an extremely deflected mountain-shape fracture surface, resulting in much longer and more tortuous crack growth path as compared to these linear elastic materials. The above phenomena can be explained by the nonlinear elasticity and its induced stress relief at the notch root in an adaptive manner of higher stress stronger relief. This finding provides a new strategy to balance high strength and good damage tolerance property of metallic materials. 展开更多
关键词 FATIGUE FRACTURE notch sensitivity biomedical metal titanium alloy
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Viscoelastic plastic continuous physical model of a magnetorheological damper applied in the high speed train 被引量:1
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作者 LI ZhongJi NI Yi-Qing +1 位作者 DAI HuanYun YE ShuQin 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第10期2433-2446,共14页
In the preliminary design stage of high-speed train smart suspension,a simple,yet accurate magnetorheological(MR)damper model whose parameters have clear physical meaning is needed.Based on the working mechanism analy... In the preliminary design stage of high-speed train smart suspension,a simple,yet accurate magnetorheological(MR)damper model whose parameters have clear physical meaning is needed.Based on the working mechanism analysis and the dynamic behavior study of the MR damper,a new consecutive viscoelastic plastics(VEP)model is proposed.A methodology to find the parameters of the proposed model directly has been proposed.The comparison with experimental results indicates that the proposed model could adequately characterize the intrinsic nonlinear behavior of the MR damper,including the hysteretic behavior,roll-off phenomenon,and the variation of the hysteresis width in terms of the frequency and magnitude of excitation.The results of experimental testing prove that the accuracy of the proposed model is higher than that of the phenomenological model while only containing four undetermined parameters with clear physical meaning.Moreover,based on the proposed VEP model,a nonlinear stiffness VEP(nkVEP)model is developed with higher precision in the hysteretic region.The nkVEP model,which can reproduce the behavior of the damper with fluctuating input current,is developed.The proposed model could predict accurately the response of the MR damper in a wide range of frequency and displacement. 展开更多
关键词 magnetorheological (MR) damper physical model viscoelastic plastics (VEP) model nonlinear stiffness VEP (nkVEP)model parameters identification
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