Based on the time-dependent strain cyclic characteristics and fatigue behaviors of SS304 stainless steel under multi-axial cyclic loading at 700 ? C, and in the frame of unified visoco-plastic cyclic constitutive mod...Based on the time-dependent strain cyclic characteristics and fatigue behaviors of SS304 stainless steel under multi-axial cyclic loading at 700 ? C, and in the frame of unified visoco-plastic cyclic constitutive model and continuum damage mechanics theory, the damage-coupled multi-axial time-dependent constitutive model and fatigue failure model were proposed. In the model, the evolution equation of damage was introduced in and the time-dependent effects, e.g. holding time, loading rate, were taken into account. The model was applied to the simulation of whole-life cyclic deformation behaviors and prediction of LCF life for SS304 stainless steel in multiaxial time-dependent low cycle fatigue tests. It is shown that the simulated results agree well with experimental ones.展开更多
研究了Cu-3%Ag-0.5%Zr合金在800K条件下的高温低周疲劳性能。对循环应力响应行为及循环应力-应变行为进行了分析,给出了Cu Ag Zr合金的疲劳参数,并根据试验数据拟合出了疲劳寿命曲线和方程。结果表明,Cu Ag Zr合金的位错密度较低,循环...研究了Cu-3%Ag-0.5%Zr合金在800K条件下的高温低周疲劳性能。对循环应力响应行为及循环应力-应变行为进行了分析,给出了Cu Ag Zr合金的疲劳参数,并根据试验数据拟合出了疲劳寿命曲线和方程。结果表明,Cu Ag Zr合金的位错密度较低,循环应力响应行为表现出循环软化特征,合金低周疲劳曲线方程为Δεt/2=0.003(2Nf)-0.1104+0.14(2Nf)-0.7792,合金具有较低的弹性应变幅和较低的过渡疲劳寿命,塑性对疲劳寿命起决定性作用。疲劳裂纹起源于试样表面,且存在有多个裂纹源,有大量微小孔洞存在,孔洞连接萌生裂纹,合金高温断裂方式为穿晶韧性断裂。展开更多
<div style="text-align:justify;"> In view of the serious lack and lag of the test and evaluation technology of non-metallic composite continuous pipe, and focusing on the characteristics of the applica...<div style="text-align:justify;"> In view of the serious lack and lag of the test and evaluation technology of non-metallic composite continuous pipe, and focusing on the characteristics of the application of non-metallic composite continuous pipe in oil field, this paper discusses a series of new full-scale test and evaluation technologies for accurately evaluating the product quality and practical application performance of non-metallic composite continuous pipe, which effectively solves the major technical problem that the new products of non-metallic pipe cannot be accurately evaluated. Based on the characteristics of the application of non-metallic composite continuous pipe in oil field, a series of new full-scale test evaluation technologies which can accurately evaluate the product quality and practical application performance of non-metallic pipe are designed through a large number of tests. The test and evaluation technology can accurately evaluate the key performance of high and low pressure cycle, high and low temperature cycle, gas permeability resistance, minimum bending radius etc. It provides a scientific evaluation basis for the standardized application of non-metallic continuous pipe and a reliable quality control method for the selection of products in oil field. </div>展开更多
基金supported by the Fundamental Research Funds for the Central Universities (No.SWJTU09ZT35)National Science Fund for Distinguished Young Scholars of China (No.11025210)
文摘Based on the time-dependent strain cyclic characteristics and fatigue behaviors of SS304 stainless steel under multi-axial cyclic loading at 700 ? C, and in the frame of unified visoco-plastic cyclic constitutive model and continuum damage mechanics theory, the damage-coupled multi-axial time-dependent constitutive model and fatigue failure model were proposed. In the model, the evolution equation of damage was introduced in and the time-dependent effects, e.g. holding time, loading rate, were taken into account. The model was applied to the simulation of whole-life cyclic deformation behaviors and prediction of LCF life for SS304 stainless steel in multiaxial time-dependent low cycle fatigue tests. It is shown that the simulated results agree well with experimental ones.
基金supported by the Natural Science Foundation of Sichuan Province(No.2022NSFSC0317)Key Laboratory of Icing and Anti/De-icing of Aircraft Project(No.IADL20190404)。
文摘研究了Cu-3%Ag-0.5%Zr合金在800K条件下的高温低周疲劳性能。对循环应力响应行为及循环应力-应变行为进行了分析,给出了Cu Ag Zr合金的疲劳参数,并根据试验数据拟合出了疲劳寿命曲线和方程。结果表明,Cu Ag Zr合金的位错密度较低,循环应力响应行为表现出循环软化特征,合金低周疲劳曲线方程为Δεt/2=0.003(2Nf)-0.1104+0.14(2Nf)-0.7792,合金具有较低的弹性应变幅和较低的过渡疲劳寿命,塑性对疲劳寿命起决定性作用。疲劳裂纹起源于试样表面,且存在有多个裂纹源,有大量微小孔洞存在,孔洞连接萌生裂纹,合金高温断裂方式为穿晶韧性断裂。
文摘<div style="text-align:justify;"> In view of the serious lack and lag of the test and evaluation technology of non-metallic composite continuous pipe, and focusing on the characteristics of the application of non-metallic composite continuous pipe in oil field, this paper discusses a series of new full-scale test and evaluation technologies for accurately evaluating the product quality and practical application performance of non-metallic composite continuous pipe, which effectively solves the major technical problem that the new products of non-metallic pipe cannot be accurately evaluated. Based on the characteristics of the application of non-metallic composite continuous pipe in oil field, a series of new full-scale test evaluation technologies which can accurately evaluate the product quality and practical application performance of non-metallic pipe are designed through a large number of tests. The test and evaluation technology can accurately evaluate the key performance of high and low pressure cycle, high and low temperature cycle, gas permeability resistance, minimum bending radius etc. It provides a scientific evaluation basis for the standardized application of non-metallic continuous pipe and a reliable quality control method for the selection of products in oil field. </div>