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41.
石天阳  余红发  麻海燕  李颖 《盐湖研究》2021,29(3):38-46, 55
氯氧镁水泥(Magnesium oxychloride cement, MOC)具有快凝、早强、高强、防火和不腐蚀玻璃纤维等优点,非常适合于制作玻璃纤维增强薄壁制品,在农业灌溉工程中具有良好的应用前景。采用XRD和TOPAS分析了新型抗水氯氧镁水泥制成内蒙古防渗渠的物相组成,探讨了氯氧镁水泥制品在自然环境的水化产物与相转变规律、以及相组成对强度的影响。结果表明,在水分缺少的条件下,氯氧镁水泥的水化产物主要为5Mg(OH)_2·MgCl_2·8H_2O(5·1·8)和Mg(OH)_2;在水分充足的条件下,水化产物主要为Mg(OH)_2和5·1·8,碳化产物为碳化氯氧化镁Mg(OH)_2·MgCl_2·2MgCO_3·6H_2O(1·1·2·6)和水菱镁矿4MgCO_3·Mg(OH)_2·4H_2O(4·1·4)。水化产物对强度有促进作用,而碳化产物会降低强度。通过10年的工程环境考验,证明新型氯氧镁水泥制品在环境中能够保持主要强度相5·1·8的稳定性,具有良好的长期力学性能。  相似文献   
42.
为考虑岩溶区基桩嵌岩段侧阻力的影响,提出了一组确定岩溶区桩端顶板安全厚度的计算方法。考虑顶板的整体承载效应,结合弹性力学及第一强度理论,得到了顶板抗弯安全厚度计算式;考虑嵌岩段桩侧摩阻力对桩顶荷载的分担作用,结合格里菲斯判据及摩尔判据,获得了顶板抗冲切和剪切的安全厚度计算公式,进而运用ABAQUS建立了岩溶顶板与基桩整体分析计算模型,有限元计算结果与理论计算值吻合良好。结合工程实例重点分析了顶板厚跨比对抗弯安全厚度的影响,顶板岩层厚度对抗冲切、剪切安全厚度的影响以及嵌岩段侧摩阻力系数?对顶板安全厚度计算的影响。  相似文献   
43.
A series of 1 g model tests was conducted to investigate the accumulated vertical pullout displacement and unloading stiffness of bucket foundations embedded in dry and saturated sands. The foundations were subjected to vertical pullout cyclic loading with different load amplitudes. Cyclic load was applied up to 104 cycles. Test results showed that the accumulated vertical pullout displacement increased with the increase in the number of load cycles and cyclic load amplitudes. The unloading stiffness of the bucket foundations decreased with the increase in load amplitude and number of cycles. Empirical equations were proposed based on the test results to evaluate the accumulated vertical pullout displacement and unloading stiffness of the bucket foundations in saturated sand. These equations can be used for the preliminary design of single or tripod bucket foundations.  相似文献   
44.
Softening and strength loss of sands with increasing excess pore water pressure under repeated loads is well-known. However, extensive damage to the built environment also occurs at the sites underlain by fine grained soils during seismic shaking. The primary objective of this study is to investigate the factors affecting cyclic behavior of saturated low-plastic silt through laboratory testing. For this purpose, an extensive laboratory testing program including conventional monotonic and cyclic triaxial tests was carried out over reconstituted silt samples. The effects of the inherent soil properties and the effects of loading characteristics on the cyclic response of saturated low-plastic reconstituted silt samples were examined separately. Based on the test results, a model was introduced to estimate the effect of initial shear stress on the cyclic response. Besides, liquefaction susceptibility of the samples was examined via current liquefaction susceptibility criteria.  相似文献   
45.
Stiffness degradation and damping represent some of the most well-known aspects of cyclic soil behavior. While standard equivalent linear approaches reproduce these features by (separately) prescribing stiffness reduction and damping curves, in this paper a multiaxial, 3D, viscoelastic – plastic model is developed for the simultaneous simulation of both cyclic curves over a wide cyclic shear strain range.The proposed constitutive relationship is based on two parallel resisting/dissipative mechanisms, purely frictional (elastic–plastic) and viscous. The frictional mechanism is formulated as a bounding surface plasticity model with vanishing elastic domain, including pressure-sensitive failure locus and non-associative plastic flow – which are essential for effective stress analysis. At the same time, the use of the parallel viscous mechanism is shown to be especially beneficial to improve the simulation of the overall dissipative performance.In order to enable model calibration from stiffness degradation (G/Gmax) and damping curves, the constitutive equations are purposely kept as simple as possible with a low number of material parameters. Although the model performance is here explored with reference to pure shear cyclic tests, the 3D, multiaxial formulation is appropriate for general loading conditions.  相似文献   
46.
To identify the effect of non-plastic silt on the cyclic behavior of sand–silt mixtures, total sixty undrained cyclic triaxial stress-control tests were carried out on sand–silt mixtures. These tests were conducted on specimens of size 71 mm diameter and 142 mm height with a frequency of 1 Hz. Specimens were prepared at a constant relative density and constant density approach. The effect of relative density, confining pressure as well as magnitude of cyclic loading was also studied. For a constant relative density (Dr=60%) the effect of limiting silt content, pore pressure response and cyclic strength was observed. The rate of generation of excess pore water pressure with respect to cycles of loading was found to initially increase with increase in silt content till the limiting silt content and thereafter it reverses its trend when the specimens were tested at a constant relative density. The cyclic resistance behavior was observed to be just opposite to the pore pressure response. Permeability, CRR and secant shear modulus decreased till limiting silt content; after that they became constant with increasing silt content.  相似文献   
47.
选取已有钢筋混凝土柱—钢梁组合结构(RCS)框架的低周期反复试验数据,采用地震工程开源模拟软件OpenSees对其进行有限元模拟,对比骨架曲线与滞回曲线,试验结果与有限元结果吻合较好。随后考察弯矩放大系数(Mc/Mb=0.86、1.48、2.04)、柱轴压比(n=0.06、0.2、0.3、0.6、0.8)对抗震性能的影响,得到了各参数下框架的滞回曲线、骨架曲线和各特征阶段的荷载与位移值。分析了框架的破化过程、延性与强度退化。结果表明:RCS组合框架滞回曲线饱满,具有良好的变形及耗能能力;随着弯矩放大系数的减小、柱轴压比的增大,框架的水平极限承载力降低、屈服状态提前、位移延性降低。分析结果可供有关研究或工程应用参考。  相似文献   
48.
针对线路矢量数据实时采集和同步压缩应用需求,本文提出具有高压缩率、低失真度特点的累积偏移实时压缩算法(CORC Algorithm)。算法突出对弯曲极值点和距离偏移的感知,创新性地提出累积变向点和累积变向拐点的弯曲极值点探测方法,提出距离累积偏移临界点的线路偏移快速判断方法,从而有效提高算法对方向连续偏移的敏感度和对摇摆偏移的高压缩率,提高线路矢量数据实时压缩的高保真性。累积偏移实时压缩算法在高限差阈值情况下仍能有效发现各类弯曲极值点和距离累积偏移临界点,在O(N)时间复杂性和O(1)空间复杂性下取得高压缩率、低失真度的理想压缩效果,实现了线路采集的零延时同步压缩。应用定时、定距两种采集策略生成的线路矢量数据集,与垂距法(VD Algorithm)、分段道格拉斯-普克法(Subsection DP Algorithm)进行实时压缩性能实验对比,结果表明,累积偏移法作为实时压缩方法,与上述两种主流实时压缩算法相比,在压缩实时性、压缩率失真度平衡、限差阈值可控性3方面都具有明显的优越性。在同等压缩率情况下,累积偏移压缩算法失真度普遍降低达10%,且压缩率与失真度的平衡性受限差阈值取值和线路轨迹特征影响最小,可实现线路的定位采集、实时压缩、同步网络上传,在交通、旅游、探险搜救等领域的实时定位监控中具有广阔的应用前景。  相似文献   
49.
根据考虑几何和材料非线性及温度沿杆件截面高度线性分布等因素对钢结构常温和高温响应影响的基本方程,用自行编制的计算程序对单层双跨钢框架进行结构非线性温度响应研究,分析了弯曲应变、屈强比、梁柱刚度比、初始弹性模量等因素对结构响应的影响,并研究了温度步长、保护层厚度对结构耐火时间的影响。由计算结果发现,弯曲应变、初始弹性模量、梁柱线刚度比对梁跨中挠度及边柱柱顶水平位移影响较大,而对柱顶竖向位移影响不明显;当结构有防火保护层时,时间步长对结构耐火时间的影响不大,而保护层厚度对结构耐火时间的影响较明显。  相似文献   
50.
Short-leg shear wall structures are a new form of building structure that combine the merits of both frame and shear wall structures. Its architectural features, structure bearing and engineering cost are reasonable. To analyze the elastic-plastic response of a short-leg shear wall structure during an earthquake, this study modified the multiple-vertical-rod element model of the shear wall, considered the shear lag effect and proposed a multiple-vertical-rod element coupling beam model with a new local stiffness domain. Based on the principle of minimum potential energy and the variational principle, the stiffness matrixes of a short-leg shear wall and a coupling beam are derived in this study. Furthermore, the bending shear correlation for the analysis of different parameters to describe the structure, such as the beam height to span ratio, short-leg shear wall height to thickness ratio, and steel ratio are introduced. The results show that the height to span ratio directly affects the structural integrity; and the short-leg shear wall height to thickness ratio should be limited to a range of approximately 6.0 to 7.0. The design of short-leg shear walls should be in accordance with the "strong wall and weak beam" principle.  相似文献   
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