纸质出版:2016
移动端阅览
[1]肖建清,张庆伟,张士科.循环加载试验中岩石单轴抗压强度的影响及洄溯测算法[J].防灾减灾工程学报,2016,36(05):804-810+852.
肖建清, 张庆伟, 张士科. Influence and Inverse Deriving Method of the Uniaxial Compressive Strength in Cyclic Loading Test of Rock[J]. 2016, 36(5): 804-810+852.
[1]肖建清,张庆伟,张士科.循环加载试验中岩石单轴抗压强度的影响及洄溯测算法[J].防灾减灾工程学报,2016,36(05):804-810+852. DOI: 10.13409/j.cnki.jdpme.2016.05.017.
肖建清, 张庆伟, 张士科. Influence and Inverse Deriving Method of the Uniaxial Compressive Strength in Cyclic Loading Test of Rock[J]. 2016, 36(5): 804-810+852. DOI: 10.13409/j.cnki.jdpme.2016.05.017.
由于岩石疲劳分析中岩样间的个体差异较大
常导致上限应力比计算不准
S与lnN之间的定量关系难以确立
因此准确地估算出岩样强度对于疲劳分析至关重要。首先
基于岩石大样本单轴压缩试验数据及S—N方程
研究了误差传播规律
分析了岩样的个体差异对于疲劳寿命的影响。可知
误差从单轴抗压强度传播至上限应力比
再从上限应力比传播至疲劳寿命
其数值急剧膨胀
单轴抗压强度很小的标准差就会产生疲劳寿命的极度离散
所以疲劳分析中必须使用岩样的强度;其次
构造一个修正回归峰值本构模型
提出了以曲线拟合法估算岩样单轴抗压强度的思路。由静态加载试验数据的拟合结果可知
该本构模型的拟合效果好
估算得出的单轴抗压强度非常接近真实值。最后
基于循环加载试验静态加载段的数据
运用曲线拟合法
分析了4个岩样的等精度试验数据。可知
各试样的单轴抗压强度各不相同
单轴抗压强度越大
则上限应力比越小
疲劳寿命也越高
S与lnN之间具有明确的线性规律。因此
用修正回归峰值本构模型估算岩样真实强度
修正上限应力比的方法
克服了常规疲劳分析法的固有缺陷。
Due to the large individual differences between rock samples
the upper stress ratio is unable to be determined and the quantitative relationship between Sand lnN can not be established in rock fatigue analysis.Therefore
it is important to estimate the unconfined compressive strength(UCS)of rock sample.Firstly
the error propagation law and the influence of the individual differences of rock samples on fatigue life are studied on the basis of a large number of test data under uniaxial compression and S-N equation.The results show that the error increases dramatically during spreading from UCS to upper stress ratio
then to fatigue life.A very small standard deviation in UCS may lead to great dispersion in fatigue life.So
the UCS of rock sample instead of the statistical average UCS of rock should be used in fatigue analysis.Secondly
an idea applying curve fitting method to evaluate the UCS of rock sample based on a modified regression peak constitutive model is put forward.And the test data under static loading is fitted with this model.The fitting result show that the evaluated UCS is very close to the true value.Finally
based on the tested data of the static loading segment in cyclic loading test
this curve fitting method is used to analyze the experimental data of four samples under the same test condition.The results show that the UCS of each sample is different and the greater the UCS
the smaller the upper stress ratio and the loger the fatigue life will be.Meanwhile
there is existing obvious linear law between Sand lnN.Therefore
the method revising the upper stress ratio with the sample UCS evaluated by the modified regression peak constitutive model can overcome the inherent defect of the conventional fatigue analysis method.
均匀地应力场下圆形隧道静态弹塑性解析方法 [J]. 肖建清,冯夏庭,张腊春,邱士利. 岩石力学与工程学报 . 2013(S2)
等幅循环加载与分级循环加载下砂岩声发射Felicity效应试验研究 [J]. 陈宇龙,魏作安,张千贵. 煤炭学报 . 2012(02)
基于声发射监测循环载荷下岩石损伤过程 [J]. 刘建坡,李元辉,杨宇江. 东北大学学报(自然科学版) . 2011(10)
不同频率循环荷载作用下花岗岩细观疲劳损伤特征研究 [J]. 倪骁慧,李晓娟,朱珍德. 岩石力学与工程学报 . 2011(01)
围岩强度和变形参数的分布特征及可靠性分析 [J]. 闫春岭,丁德馨,唐益群,毕忠伟. 岩土力学 . 2010(S2)
常幅循环荷载作用下岩石的滞后及阻尼效应研究 [J]. 肖建清,冯夏庭,丁德馨,蒋复量. 岩石力学与工程学报 . 2010(08)
循环荷载下岩石阻尼参数测试的试验研究 [J]. 刘建锋,徐进,李青松,李刚林. 岩石力学与工程学报 . 2010(05)
常幅循环荷载下岩石的变形特性 [J]. 肖建清,丁德馨,徐根,蒋复量. 中南大学学报(自然科学版) . 2010(02)
循环荷载下岩石损伤的CT细观试验研究 [J]. 李树春,许江,杨春和,蒲毅彬,马巍. 岩石力学与工程学报 . 2009(08)
循环荷载下砂岩疲劳损伤过程的声学特性分析 [J]. 樊秀峰,吴振祥,简文彬. 岩土力学 . 2009(S1)
岩石低周疲劳损伤模型与损伤变量表达方法 [J]. 李树春,许江,陶云奇,唐晓军,杨红伟. 岩土力学 . 2009(06)
岩石疲劳扰动模型的研究 [J]. 王德玲,沈疆海,葛修润. 水利与建筑工程学报 . 2006(02)
周期荷载作用下岩石疲劳变形特性试验研究 [J]. 葛修润,蒋宇,卢允德,任建喜. 岩石力学与工程学报 . 2003(10)
循环荷载作用下岩石疲劳特性的理论与实验研究 [D]. 肖建清. 中南大学 2009
大理岩在低频循环荷载作用下的力学特性研究 [A]. 程鸿鑫,蒋关鲁.岩土力学数值方法的工程应用——第二届全国岩石力学数值计算与模型实验学术研讨会论文集[C]. 1990
Fatigue damage variable and evolution of rock subjected to cyclic loading [J] . Jian-Qing Xiao,De-Xin Ding,Fu-Liang Jiang,Gen Xu. International Journal of Rock Mechanics and Mining Sciences . 2010 (3)
Fatigue properties of intact sandstone samples subjected to dynamic uniaxial cyclical loading [J] . International Journal of Rock Mechanics and Mining Sciences . 2004 (2)
An overview of the fatigue behaviour of plain and fibre reinforced concrete [J] . M.K. Lee,B.I.G. Barr. Cement and Concrete Composites . 2003 (4)
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