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Maximum Force of Inclined Pullout of A Torpedo Anchor in Cohesive Beds 被引量:4
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作者 WANG Cheng CHEN Xiao-hui YU Guo-liang 《China Ocean Engineering》 SCIE EI CSCD 2019年第3期333-343,共11页
Torpedo anchors have been used in mooring systems for deep-water oil and gas projects owing to their prominent advantages, such as low cost and easy installation. The maximum force of torpedo anchors is crucial not on... Torpedo anchors have been used in mooring systems for deep-water oil and gas projects owing to their prominent advantages, such as low cost and easy installation. The maximum force of torpedo anchors is crucial not only to the safety and stability of vessels and other marine facilities, but also for an economical design. It is necessary to develop reliable formula for fast predicting their maximum inclined force of a torpedo anchor in cohesive beds. In this study, the maximum inclined force of a torpedo anchor vertically embedded in cohesive beds was extensively investigated. 316 sets of inclined pullout laboratory tests were carried out for 9 differently shaped torpedo anchors which were vertically embedded in different cohesive beds. The loading curves were automatically acquisitioned and their characteristics were analyzed. The load angle relative to the horizontal varied from 20° to 90°. A new formula for fast calculating the maximum inclined force of the torpedo anchor vertically embedded in cohesive beds was obtained based on force analysis and a nonlinear regression on the data from the present and other studies. Effect aspects on the tests are discussed and further studies are highlighted. 展开更多
关键词 TORPEDO anchor MAXIMUM inclined force COHESIVE bed load angle EMBEDMENT depth
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Optical Fiber Grating Sensor for Force Measurement of Anchor Cable 被引量:2
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作者 JIANG Desheng FU Jinghua +2 位作者 LIU Shengchun SUI Lingfeng FU Rong 《Wuhan University Journal of Natural Sciences》 EI CAS 2006年第3期662-666,共5页
The development of the sensor suitable for measuring large load stress to the anchor cable becomes an important task in bridge construction and maintenance. Therefore, a new type of optical fiber sensor was developed ... The development of the sensor suitable for measuring large load stress to the anchor cable becomes an important task in bridge construction and maintenance. Therefore, a new type of optical fiber sensor was developed in the laboratory - optical fiber grating sensor for force measurement of anchor cable (OFBFMAC). No similar report about this kind of sensor has been found up to now in China and other countries. This sensor is proved to be an effective way of monitoring in processes of anchor cable installation, cable cutting, cable force regulation, etc, with the accurate and repeatable measuring results. Its successful application in the tie bar cable force safety monitoring for Wuhan Qingchuan bridge is a new exploration of optical fiber grating sensing technology in bridge tie bar monitoring system. 展开更多
关键词 new type of optical fiber sensor anchor cable tie bar cable force health condition OFBFMAC
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Study on the Influence of Radial Pressurization on Anchoring Performance of Bolts
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作者 Shuo Wang 《World Journal of Engineering and Technology》 2023年第4期732-744,共13页
Supporting soft rock roadways in coal mines has long posed a formidable challenge. Addressing issues such as the formation of soft rock strata, poor fracture development, limited tolerance, and the frequent and severe... Supporting soft rock roadways in coal mines has long posed a formidable challenge. Addressing issues such as the formation of soft rock strata, poor fracture development, limited tolerance, and the frequent and severe damage sustained by conventional bolts due to their low elongation and bearing capacity, this study employs bottom expansion and filling technology. It combines theoretical analysis with booster bolt pull-out tests to scrutinize the radial stress distribution of bolts under extrusion forces. Moreover, it conducts a comparative analysis of bolt bearing characteristics under varying radial pressurization conditions, delving into the impact of radial directional increases in compressive stress on bolt anchoring performance. 展开更多
关键词 anchorS Pressure Dispersion Axial forces anchoring Effect
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Effect of a preload force on anchor system frequency 被引量:2
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作者 Lu Aihong Xu Jinhai Liu Haishun 《International Journal of Mining Science and Technology》 SCIE EI 2013年第1期135-138,共4页
The interrelationship between preload forces and natural frequencies of anchors was obtained from the structure of an anchor and its mechanical characteristics. We established a numerical model for the dynamic analysi... The interrelationship between preload forces and natural frequencies of anchors was obtained from the structure of an anchor and its mechanical characteristics. We established a numerical model for the dynamic analysis of a bolt support system taking into consideration the working surroundings of the anchor. The natural frequency distribution of the system under various preload forces of the anchor was analyzed with ANSYS. Our results show that each order of the system frequency varied with an increase in preload forces. A single order frequency decreased with an increase in the preload force. A preload force affected low-order frequencies more than high-order frequencies. We obtained a functional relationship by fitting preload forces and fundamental frequencies, which was in agreement with our theretical considerations. This study provides theoretical support for the detection of preload forces. 展开更多
关键词 Frequency Preload force anchor detection Numerical simulation
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Study on Ultimate Pullout Force of Grouting Anchors of the Anchor-Pull Retaining Wall
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作者 Hongbo Zhang Yifan Yu +2 位作者 Xiuguang Song Yingyong Li Jianqing Wu 《Journal of Geoscience and Environment Protection》 2014年第5期32-37,共6页
Determination of the grouting anchor pullout force is a key step during the design of anchor-pull retaining wall, but it is mostly determined relied on empirical formula at present, and the rationality and the safety ... Determination of the grouting anchor pullout force is a key step during the design of anchor-pull retaining wall, but it is mostly determined relied on empirical formula at present, and the rationality and the safety cannot be effectively guaranteed. Based on the engineering case of the gravity retaining wall of Qinglin Freeway, the model test was designed, and combined with the results of the ABAQUS finite element numerical analysis, it was analyzed that how the anchor axial pulling force distributes. The results showed that the force of the anchor near the wall bolt was large and which far from the wall was small and the ultimate pullout force was proportional to the length, diameter and shear strength. When the end tension of the anchor was small, the top load played a leading role on the anchor tension. This conclusion confirmed the calculation formula of ultimate pullout force was and provided a theoretical basis for anchor-pull retaining wall design and calculation. 展开更多
关键词 anchor-Pull Retaining Wall ULTIMATE PULLOUT force Lateral Earth Pressure Model Test Numerical Analysis
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Anchoring mechanism and application of hydraulic expansion bolts used in soft rock roadway floor heave control 被引量:20
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作者 Chang Qingliang Zhou Huaqiang +1 位作者 Xie Zhihong Shen Shiping 《International Journal of Mining Science and Technology》 SCIE EI 2013年第3期323-328,共6页
Comparing with the resin bolt, the hydraulic expansion bolt has different anchoring mechanism and application advantage. According to the working mechanism of the hydraulic expansion bolt, its anchoring force is expre... Comparing with the resin bolt, the hydraulic expansion bolt has different anchoring mechanism and application advantage. According to the working mechanism of the hydraulic expansion bolt, its anchoring force is expressed in four forms including support anchoring force, tension anchoring force, expansion anchoring force and tangent anchoring force, and their values can be obtained on the basis of each calculation formula. Among them, the expansion anchoring force, which is the unique anchoring force of the hydraulic expansion bolt, can provide confining pressure to increase the strength of rock. Aiming at solving the problem of stability control in the soft rock roadway in Jinbaotun Coal Mine which has a double layer of 40 U-type sheds and cannot provide enough resistance support to control floor heave, the study reveals the mechanism of floor heave in the soft rock roadway, and designs the reasonable support parameters of the hydraulic expansion bolts. The observed results of floor convergence indicate that the hydraulic expansion bolts can prevent the development and flow of the plastic zone in the floor rock to control floor heave. Research results enrich the control technology in the soft rock roadway. 展开更多
关键词 Hydraulic expansion bolt anchoring force Soft rock roadway Floor heave Shed support
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Study of Slope Reinforcement Force Based on FLAC 被引量:8
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作者 HUANG Xian-wu MAO xian-biao +1 位作者 MIAO Xie-xing CHEN Zhan-qing 《Journal of China University of Mining and Technology》 EI 2006年第2期123-127,共5页
A slope will slide if the unbalanced force does not tend to zero when the stability of the slope is analyzed with the help of FLAC. Thus the ultimate reason of slope sliding is the unbalanced force determined by FLAC.... A slope will slide if the unbalanced force does not tend to zero when the stability of the slope is analyzed with the help of FLAC. Thus the ultimate reason of slope sliding is the unbalanced force determined by FLAC. The slope will remain stable if the unbalanced force is counterbalanced by a reinforcement force which is produced by a suitable reinforcement method. In this paper, the stability of the slope was analyzed by using FLAC, and the unbalanced force of the slope was obtained through the FISH function in FLAC. According to the equilibrium conditions, the rela- tionship between the reinforcement force and unbalanced force was derived and accordingly the reinforcement force was determined. The reinforcement design was adopted by using pre-stressed anchor bars on the basis of the reinforce- ment force. An example is used to show that the effect of slope reinforcement based on the reinforcement force is safe and economical. The method doesn’t need to suppose a sliding surface to obtain the reinforcement force, and it is also clear in physical meaning. So this method realized the organic unification of the stability analysis and the slope rein- 展开更多
关键词 边坡加固 加固力 FLAC 不平衡力 稳定性分析 预压锚固
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Study on damage-stress loss coupling model of rock and prestressed anchor cable in dry-wet environment
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作者 Yu Zhao Huasu Wang +3 位作者 Jing Bi Zhijun Wu Chaolin Wang Jiabao Ma 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第12期1451-1467,共17页
The loss of anchoring force is one of the problems to be solved urgently.The anchorage loss is a key factor causing the failure of anchoring engineering,so it is crucial to study the time-dependent variation of anchor... The loss of anchoring force is one of the problems to be solved urgently.The anchorage loss is a key factor causing the failure of anchoring engineering,so it is crucial to study the time-dependent variation of anchoring force.Alternating dry and wet(D-W)conditions have a significant effect on deformation of rock.The anchoring system is composed of anchoring components and rock mass,and thus rock deformation has a significant impact on the loss of anchoring force.Quantifying rock deformation under the effects of D-W cycles is a prerequisite to understanding the factors that influence loss of anchoring force in anchor bolts.In this study,we designed an anchoring device that enabled real-time monitoring of the variation in strain during D-W periods and rock testing.Nuclear magnetic resonance(NMR)measurements showed that under D-W conditions,the increment in porosity was smaller for prestressed rock than unstressed rock.The trends of prestress loss and strain variation are consistent,which can be divided into three characteristic intervals:rapid attenuation stage,slow attenuation stage and relatively stable stage.At the same stress level,the rate of stress loss and strain for the soaking specimen was the highest,while that of the dried specimen was the lowest.In the same D-W cycling conditions,the greater the prestress,the smaller the strain loss rate of the rock,especially under soaking conditions.The characteristics of pore structure and physical mechanical parameters indicated that prestress could effectively suppress damage caused by erosion related to D-W cycles.The study reveals the fluctuation behavior of rock strain and prestress loss under D-W conditions,providing a reference for effectively controlling anchoring loss and ideas for inventing new anchoring components. 展开更多
关键词 D-W cycles anchoring force loss Coupled model Pore structure Prestressed device
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锚杆岩体界面载荷传递规律及锚固长度设计
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作者 赵同彬 李龙飞 +2 位作者 邢明录 张玉宝 王学斌 《山东科技大学学报(自然科学版)》 CAS 北大核心 2024年第2期1-12,共12页
为揭示巷道围岩锚固界面脱粘失效机理,量化锚杆支护设计参数,采用三线性粘结滑移模型进行理论分析,对轴向载荷作用下锚固脱粘失效全过程中,锚固段界面剪应力、锚杆轴力分布演化规律以及界面极限锚固力进行研究,根据锚固段长度不同,得到... 为揭示巷道围岩锚固界面脱粘失效机理,量化锚杆支护设计参数,采用三线性粘结滑移模型进行理论分析,对轴向载荷作用下锚固脱粘失效全过程中,锚固段界面剪应力、锚杆轴力分布演化规律以及界面极限锚固力进行研究,根据锚固段长度不同,得到两种界面剪应力分布演化类型。研究结果表明:当锚固长度较短时,界面剪应力存在全长软化阶段;当锚固长度较长时,界面剪应力存在弹性-软化-滑移三段共存阶段。锚固粘结界面弹性段、软化段、摩擦段内的剪应力分别呈现双曲余弦函数衰减分布、余弦函数上升分布、均匀分布规律,锚杆轴力随界面剪应力分布演化呈现多种形态的衰减分布规律。根据锚固界面模型解析计算获得极限锚固力,当不考虑脱粘摩擦力时,极限锚固力随锚固长度的增加趋近于某一固定值;当考虑脱粘摩擦力时,增加锚固长度能够持续提高锚固界面安全系数。研究成果可为锚固机制分析、锚杆支护参数设计提供理论参考。 展开更多
关键词 锚固界面 粘结滑移模型 剪应力分布 极限锚固力 锚固长度
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公铁合建钢混板-桁斜拉桥悬挑式钢锚箱受力特性及结构优化
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作者 施洲 周勇聪 +3 位作者 江峰 刘振标 夏正春 印涛 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第3期50-60,共11页
为研究大跨度公铁合建钢混板-桁斜拉桥主梁悬挑式索梁钢锚箱结构的受力特性及结构优化,以主跨808 m的洪奇沥特大桥钢锚箱为背景,采用仿真分析方法,研究钢锚箱3个设计方案主要板件应力、焊缝应力以及推荐方案锚箱节点的传力特性和锚箱参... 为研究大跨度公铁合建钢混板-桁斜拉桥主梁悬挑式索梁钢锚箱结构的受力特性及结构优化,以主跨808 m的洪奇沥特大桥钢锚箱为背景,采用仿真分析方法,研究钢锚箱3个设计方案主要板件应力、焊缝应力以及推荐方案锚箱节点的传力特性和锚箱参数对钢锚箱受力的影响。结果表明:锚箱尺寸较大、顶底板加肋方案的主要板件应力最大为300 MPa,小于其他2种方案,且6条焊缝的最大应力和应力不均匀系数较优,因此确定该方案为最终设计方案;索力首先由锚垫板直接向钢锚箱顶、底板和内外腹板较为均匀传递,最终边弦杆底板、内腹板和外腹板分别承担了22.2%,46.4%和31.4%的索力;节点处副桁斜杆、近桥塔侧和远桥塔侧边弦杆、混凝土桥面、节点横梁分别传递约66.71%,9.72%,9.32%,9.68%和4.56%的斜拉索竖向分力;板件应力随顶底板厚度增加而减小,顶底板深入边弦杆长度增加可以降低底板-内腹板焊缝峰值应力,顶底板间距减小可降低内外腹板和顶底板与锚垫板接触区域应力;顶底板厚44 mm、锚箱顶底板深入边弦杆长度1800 mm、顶底板间距660 mm时较为合理。 展开更多
关键词 公铁合建斜拉桥 索梁钢锚箱 受力特性 传力特性 结构优化
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锚杆钻车运行中支护承载结构及围岩受力变形分析
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作者 王雁冰 梅洪嘉 +3 位作者 张京泉 李凯 刘珍 李杨 《安徽理工大学学报(自然科学版)》 CAS 2024年第1期1-11,共11页
目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩... 目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩协同受力变形特征。结果研究表明,钻车运行过程中吊挂板的受力变形在悬吊点处均达到峰值,工字钢在悬吊点的部分位移最小,与钻车直接接触的部分受力最大;锚索中部主要受到拉应力,靠近巷道一侧主要受到剪应力,而巷道两帮的锚杆拉应力主要分布在靠近巷道内部一侧;巷道顶板悬吊点处位移最大,两帮靠近顶板位移高于底板处,而巷道偏向低帮处底板的位移大于高帮处;以单轨液压锚杆钻车为核心的新型配套工艺可以有效控制围岩变形,支护效果良好,比传统以掘锚一体机为中心的机器化工艺掘进效率更高。结论研究明确了CMMD4-35煤矿用单轨液压锚杆钻车在实际应用的可行性,解决了现有掘锚一体机难以在复杂地质条件下大断面煤巷自动化掘进支护的问题,提升了煤巷支护效果掘进效率,为CMMD4-35煤矿用单轨液压锚杆钻车的现场应用提供了理论依据。 展开更多
关键词 锚杆钻车 锚杆锚索 承载结构 支护结构 巷道围岩 受力变形
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季冻黄土地区框锚边坡预应力锚杆内力计算方法
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作者 李伟 李元勋 +2 位作者 李辉 董勤喜 向田 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第4期75-81,共7页
冻融土体与锚杆之间相互作用机理研究的不足,导致工程实践中未能充分考虑土体冻融对锚杆内力的影响。针对该问题,基于西宁市季冻湿陷性黄土冻融循环三轴剪切试验,建立考虑冻融次数影响的湿陷性黄土黏聚力经验关系式;根据锚固体与周围土... 冻融土体与锚杆之间相互作用机理研究的不足,导致工程实践中未能充分考虑土体冻融对锚杆内力的影响。针对该问题,基于西宁市季冻湿陷性黄土冻融循环三轴剪切试验,建立考虑冻融次数影响的湿陷性黄土黏聚力经验关系式;根据锚固体与周围土层的变形协调关系,推导冻融条件下框架预应力锚杆锚固段轴力和剪应力的解析式,将理论计算结果与现场试验结果进行对比验证,并分析冻融次数对锚固段轴力和剪应力的影响。结果表明:随冻融次数的增加,土体黏聚力呈指数型下降,锚固段轴力和剪应力在前3次冻融循环中急剧增大,冻融次数达到7次后趋于稳定;相较锚固段末端,锚固段始端轴力受冻融次数的影响更大,但锚固段始端至末端的剪应力随冻融次数的变化规律基本相同;现场试验结果验证了计算方法的合理性。 展开更多
关键词 土体冻融 框锚边坡 湿陷性黄土 黏聚力 锚杆内力
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注浆支盘式锚杆承载特性数值模拟分析
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作者 谷复光 王军 常虹 《低温建筑技术》 2024年第7期134-138,共5页
注浆支盘式锚杆作为一种新型扩体锚杆,具有优越的抗拔性能。为进一步研究探索注浆支盘式锚杆抗拔承载力特性规律,拟用ABAQUS有限元分析软件对注浆支盘式锚杆进行数值模拟分析,通过改变锚杆支盘盘径、锚固段长度以及杆径研究其抗拔承载... 注浆支盘式锚杆作为一种新型扩体锚杆,具有优越的抗拔性能。为进一步研究探索注浆支盘式锚杆抗拔承载力特性规律,拟用ABAQUS有限元分析软件对注浆支盘式锚杆进行数值模拟分析,通过改变锚杆支盘盘径、锚固段长度以及杆径研究其抗拔承载力变化规律。模拟结果表明,当注浆支盘式锚杆盘径增大时,其抗拔承载力提升;当锚固段长度大于等于8m时,更能发挥支盘处盘端阻力与锚固段侧摩阻力的协同作用;杆径为100mm时注浆支盘式锚杆抗拔承载力显著不足。数值模拟数据可以为注浆支盘式锚固结构在实际工程上应用提供理论基础。 展开更多
关键词 支盘式锚杆 侧摩阻力 盘端阻力
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桩锚支护越冬基坑抗冻胀性能分析
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作者 孙超 温歆硕 +1 位作者 赵一恺 郭浩天 《低温建筑技术》 2024年第6期52-56,共5页
为解决桩锚支护基坑的越冬问题,对该类基坑负温状态下的抗冻胀性能进行研究。可为实际工程中越冬基坑的桩锚支护设计提供参考依据。考虑锚杆的预应力、层数、间距及锚固长度等因素,运用FLCA^(3D)软件在负温状态下对桩锚支护基坑进行数... 为解决桩锚支护基坑的越冬问题,对该类基坑负温状态下的抗冻胀性能进行研究。可为实际工程中越冬基坑的桩锚支护设计提供参考依据。考虑锚杆的预应力、层数、间距及锚固长度等因素,运用FLCA^(3D)软件在负温状态下对桩锚支护基坑进行数值模拟研究,分析桩侧冻胀力及桩体位移的变化规律。结果表明锚杆预应力对基坑桩体水平位移影响非常显著,随基坑深度增加,桩侧冻胀力呈增-减-增趋势;随锚杆层数增加,桩体水平位移逐渐减小,而桩侧冻胀力逐渐增大;锚杆竖向间距对桩体的水平位移及桩侧冻胀力的影响较小,桩体水平位移越小,桩侧冻胀力越大;桩体水平位移及桩侧冻胀力随锚固长度增加而增大。研究结果可为桩锚支护越冬基坑的设计和应用提供指导和参考。 展开更多
关键词 越冬基坑 桩侧冻胀力 桩锚支护 桩体位移
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基于预应力场分布的锚杆支护参数设计
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作者 王耀华 豆留盼 +3 位作者 余涛 满军 方勇 姚志刚 《铁道建筑》 北大核心 2024年第7期111-115,共5页
为优化隧道施工预应力锚杆支护参数,通过模型试验与数值模拟相结合的方法研究Ⅳ级围岩条件下锚杆支护参数对预应力场分布的影响。结果表明:预紧力对锚杆预应力场的影响显著,预紧力越大,预应力场分布范围越大,锚杆主动支护作用越好;锚固... 为优化隧道施工预应力锚杆支护参数,通过模型试验与数值模拟相结合的方法研究Ⅳ级围岩条件下锚杆支护参数对预应力场分布的影响。结果表明:预紧力对锚杆预应力场的影响显著,预紧力越大,预应力场分布范围越大,锚杆主动支护作用越好;锚固长度过长会减小预应力场分布范围,锚固长度过短则不利于形成连续的压应力区,建议锚固长度取锚杆长度的30%~50%;锚杆间距越小预应力场叠加效应越明显,锚杆间距过小时在锚杆末端会出现拉应力区,建议锚杆间距取锚杆长度的42%。 展开更多
关键词 隧道 预应力锚杆 支护参数 模型试验 数值模拟 预应力场 预紧力 锚固叠加
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硬岩地层超深基坑桩锚支护体系受力与变形特性实测分析
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作者 郝增明 闫楠 +4 位作者 刘作岩 银吉超 孙培富 王砚廷 白晓宇 《科学技术与工程》 北大核心 2024年第15期6398-6404,共7页
为探究硬岩地层超深基坑桩锚支护体系随基坑开挖的受力与变形演化规律,依托于崂山公卫中心基坑支护工程,对南侧支护完成区域基坑的预应力锚索轴力、基坑水平和竖向位移进行了实时监测,分析桩锚支护体系在该地质条件下的力学性能,探讨锚... 为探究硬岩地层超深基坑桩锚支护体系随基坑开挖的受力与变形演化规律,依托于崂山公卫中心基坑支护工程,对南侧支护完成区域基坑的预应力锚索轴力、基坑水平和竖向位移进行了实时监测,分析桩锚支护体系在该地质条件下的力学性能,探讨锚索轴力急速下降与基坑水平位移增大的影响因素。研究表明:预应力锚索轴力持续、急速的下降与基坑紧邻原状山体的土压力和北侧后挖区域的持续施工有关,工程中采取预应力锚索2次补偿张拉适用效果良好;基坑最大水平位移为19.98 mm,最大竖向位移为12.11 mm,南侧支护完成区域基坑支护体系的变形受后续施工区域的影响明显;桩锚支护体系在硬岩及土岩二元地层超深基坑中具有较好的适用性和可靠性。类似工程支护结构设计应重视周边地质环境、邻近区域持续施工等因素的影响。 展开更多
关键词 超深基坑 硬岩地层 桩锚支护 锚索轴力 基坑变形
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霍尔锚落锚贯入力峰值及相应深度的分析
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作者 羊玓雯 王闻恺 +2 位作者 杨少鹏 张民曦 喻国良 《船海工程》 北大核心 2024年第3期101-106,共6页
针对霍尔锚在静水中的垂直落锚情况,通过理论分析和物理试验,分析锚质量、触地速度、海床土体强度,以及土体粒径等对霍尔锚贯入力峰值及相应贯入深度的影响。结果表明,贯入力峰值及其对应的贯入深度与锚质量和触地速度呈二次函数关系,... 针对霍尔锚在静水中的垂直落锚情况,通过理论分析和物理试验,分析锚质量、触地速度、海床土体强度,以及土体粒径等对霍尔锚贯入力峰值及相应贯入深度的影响。结果表明,贯入力峰值及其对应的贯入深度与锚质量和触地速度呈二次函数关系,与土体粒径呈指数函数关系,以此分别提出霍尔锚贯入力峰值及相应贯入深度的计算公式,为海底结构物强度的设计与防护提供技术支撑。 展开更多
关键词 霍尔锚 落锚 贯入力 贯入深度 海床
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上拔荷载作用下装配式输电线路岩石群锚基础受力特性研究
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作者 王瑞成 张琦 +3 位作者 聂少锋 张斌 张清政 王志丰 《水利与建筑工程学报》 2024年第2期164-170,206,共8页
为解决传统岩石群锚基础材料耗量大、运输不便的问题,提出一种新型装配式输电线路岩石群锚基础。采用有限元方法建立新型群锚基础的三维精细化数值模型,研究上拔荷载作用下群锚基础受力特性,分析锚杆间距、长度及直径等参数对新型群锚... 为解决传统岩石群锚基础材料耗量大、运输不便的问题,提出一种新型装配式输电线路岩石群锚基础。采用有限元方法建立新型群锚基础的三维精细化数值模型,研究上拔荷载作用下群锚基础受力特性,分析锚杆间距、长度及直径等参数对新型群锚基础锚杆内力的影响规律。结果表明:锚杆内力在钢骨架连接处最大,随深度增加逐渐减小;锚杆距群锚基础形心越远,其内力越大;锚筋长度相同时,随着锚杆间距的增大,锚杆内力呈逐渐变小的趋势,而锚筋长度及直径对内力的变化影响较小。将数值计算结果与规范计算结果进行对比发现:处于与水平荷载方向相反且与群锚中心相距最远的两根锚杆的规范计算结果与数值计算结果吻合度高,其余锚杆两种计算结果的吻合度相对较低。 展开更多
关键词 输电线路 群锚基础 上拔荷载 锚杆内力 数值分析
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可滑动钢锚箱组合索塔锚固结构力学性能试验研究
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作者 孙迎春 张育智 +2 位作者 谭珂 赵灿晖 舒本安 《桥梁建设》 EI CSCD 北大核心 2024年第4期86-92,共7页
佛山富龙西江特大桥4~26号斜拉索塔上锚固采用可滑动钢锚箱组合索塔锚固结构,为掌握这种新型索塔锚固结构的力学性能,开展1∶2缩尺模型试验,对滑动副的工作性能、钢锚箱和混凝土塔柱应力状态、钢锚箱与混凝土塔柱间竖向相对滑移量、斜... 佛山富龙西江特大桥4~26号斜拉索塔上锚固采用可滑动钢锚箱组合索塔锚固结构,为掌握这种新型索塔锚固结构的力学性能,开展1∶2缩尺模型试验,对滑动副的工作性能、钢锚箱和混凝土塔柱应力状态、钢锚箱与混凝土塔柱间竖向相对滑移量、斜拉索索力传递路径及混凝土塔壁裂缝的发展规律进行研究。结果表明:镜面不锈钢与双组份石墨烯改性氟碳漆涂层组成的滑动副摩擦系数为0.055,适合作为可滑动钢锚箱的滑动副;钢锚箱侧拉板在斜拉索索力作用下处于拉、弯、剪复合受力状态,最大应力为150 MPa,应力水平较低,混凝土塔柱顺桥向最大拉应力仅为0.57 MPa,即使不设预应力也无开裂风险;钢锚箱与混凝土塔柱间的竖向相对滑移量很小,二者间连接可靠,能够很好地共同承受竖向索力;滑动端锁定前,竖向索力几乎全部由钢锚箱的固定端通过剪力连接件传递给混凝土塔柱,水平索力几乎全部由钢锚箱承担,滑动端锁定后,斜拉索索力增量由钢锚箱与混凝土塔柱共同承担;加载至2.5倍标准组合索力过程中,结构依次出现竖向裂缝和水平裂缝,所有裂缝宽度均较小,最大宽度仅0.2 mm。 展开更多
关键词 斜拉桥 组合索塔锚固结构 滑动副 可滑动钢锚箱 混凝土塔柱 索力传递路径 裂缝 模型试验
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桩锚结构体系在深基坑支护中应用研究 被引量:1
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作者 张广乾 李向阳 +2 位作者 张利芳 杨明 刘先成 《广东建材》 2024年第2期109-112,共4页
桩锚支护结构具有合理的受力形式,较大的支护刚度,节约施工空间等优点,在深基坑支护中被广泛应用,文中以定西市某基坑桩锚支护结构为依托,通过计算分析不同预应力锚索组合下,桩身最大内力与位移的影响,合理选取桩身及锚索参数,能有效降... 桩锚支护结构具有合理的受力形式,较大的支护刚度,节约施工空间等优点,在深基坑支护中被广泛应用,文中以定西市某基坑桩锚支护结构为依托,通过计算分析不同预应力锚索组合下,桩身最大内力与位移的影响,合理选取桩身及锚索参数,能有效降低桩身内力及桩顶位移,使护坡桩结构受力更合理,可取得更可靠经济的支护方案。 展开更多
关键词 桩锚支护体系 深基坑 预应力锚索 桩身内力
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