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Strength and failure characteristics of hard rock containing a single structural plane under varied loading angles : A true triaxial investigation
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作者 XU Huai-sheng LI Shao-jun +3 位作者 XU Ding-ping LIU Xu-feng FENG Guang-liang WANG Zhao-feng 《Journal of Central South University》 2025年第5期1903-1921,共19页
The spatial relationship between structural planes and principal stresses significantly affects the mechanical properties of deep hard rock.This paper examines the effect of the loading angle under true triaxial compr... The spatial relationship between structural planes and principal stresses significantly affects the mechanical properties of deep hard rock.This paper examines the effect of the loading angle under true triaxial compression.While previous studies focused on the angleβbetween the maximum principal stress and the structural plane,the role of angleω,between the intermediate principal stress and the structural plane,is often overlooked.Utilizing artificially prefabricated granite specimens with a single non-penetrating structural plane,we set the loading angleβto range from 0°to 90°across seven groups,and assignedωvalues of 0°and 90°in two separate groups.The results show that the peak strength is negatively correlated withβup to 45°,beyond which it tends to stabilize.The angleωexerts a strengthening effect on the peak strength.Deformation mainly occurs post-peak,with the strain values ε_(1) and ε_(3) reaching levels 2−3 times higher than those in intact rock.The structural plane significantly influences failure mode whenω=0°,while failure localizes near the σ_(3) surface of the specimens whenω=90°.The findings enhance data on structural plane rocks under triaxial compression and inform theoretical research,excavation,and support design of rock structures. 展开更多
关键词 true triaxial compression hard rock structural plane loading angle strength failure characteristics
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Stress gradient analytic solution and reasonable support prestress of roadway surrounding rock based on unified strength criterion:A case study
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作者 JING Suo-lin WEN Zhi-jie +2 位作者 ZUO Yu-jun LI Qiu-ju HAO Peng 《Journal of Central South University》 2025年第2期449-468,共20页
The stress gradient of surrounding rock and reasonable prestress of support are the keys to ensuring the stability of roadways.The elastic-plastic analytical solution for surrounding rock was derived based on unified ... The stress gradient of surrounding rock and reasonable prestress of support are the keys to ensuring the stability of roadways.The elastic-plastic analytical solution for surrounding rock was derived based on unified strength theory.A model for solving the stress gradient of the surrounding rock with the intermediate principal stress parameter b was established.The correctness and applicability of the solution for the stress gradient in the roadway surrounding rock was verified via multiple methods.Furthermore,the laws of stress,displacement,and the plastic zone of the surrounding rock with different b values and prestresses were revealed.As b increases,the stress gradient in the plastic zone increases,and the displacement and plastic zone radius decrease.As the prestress increases,the peak stress shifts toward the sidewalls,and the stress and stress gradient increments decrease.In addition,the displacement increment and plastic zone increment were proposed to characterize the support effect.The balance point of the plastic zone area appears before that of the displacement zone.The relationship between the stress gradient compensation coefficient and the prestress is obtained.This study provides a research method and idea for determining the reasonable prestress of support in roadways. 展开更多
关键词 PRESTRESS support compensation surrounding rock damage stress gradient analytic solution unified strength theory
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Anisotropic strength and deformation of irregular columnar jointed rock masses under triaxial stress
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作者 QUE Xiang-cheng ZHU Zhen-de +1 位作者 NIU Zi-hao ZHU Shu 《Journal of Central South University》 2025年第2期643-655,共13页
The special columnar jointed structure endows rocks with significant anisotropy,accurately grasping the strength and deformation properties of a columnar jointed rock mass(CJRM)under complex geological conditions is c... The special columnar jointed structure endows rocks with significant anisotropy,accurately grasping the strength and deformation properties of a columnar jointed rock mass(CJRM)under complex geological conditions is crucial for related engineering safety.Combined with the irregular jointed networks observed in the field,artificial irregular CJRM(ICJRM)samples with various inclination angles were prepared for triaxial tests.The results showed that the increase in confining pressure can enhance the ability of the ICJRM to resist deformation and failure,and reduce the deformation and strength anisotropic degrees.Considering the field stress situation,the engineering parts with an inclination angle of 30°−45°need to be taken seriously.Four typical failure modes were identified,and the sample with an inclination angle of 15°showed the same failure behavior as the field CJRM.Traditional and improved joint factor methods were used to establish empirical relationships for predicting the strength and deformation of CJRM under triaxial stress.Since the improved joint factor method can reflect the unique structure of CJRM,the predictive ability of the empirical relationship based on the improved method is better than that based on the traditional joint factor method. 展开更多
关键词 irregular columnar jointed rock mass triaxial stress strength DEFORMATION anisotropic mechanical property empirical relation
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A cohesion loss model for determining residual strength of deep bedded sandstone
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作者 SONG Zhi-xiang ZHANG Jun-wen +12 位作者 ZHANG Yu-jie WU Shao-kang BAI Xu-yang ZHANG Li-chao ZHANG Sui-lin ZHANG Xu-wen FAN Guang-chen LI Wen-jun ZENG Ban-quan WANG Shi-ji SUN Xiao-yan SANG Pei-miao LI Ning 《Journal of Central South University》 2025年第7期2593-2618,共26页
Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep ch... Rock residual strength,as an important input parameter,plays an indispensable role in proposing the reasonable and scientific scheme about stope design,underground tunnel excavation and stability evaluation of deep chambers.Therefore,previous residual strength models of rocks established were reviewed.And corresponding related problems were stated.Subsequently,starting from the effects of bedding and whole life-cycle evolution process,series of triaxial mechanical tests of deep bedded sandstone with five bedding angles were conducted under different confining pressures.Then,six residual strength models considering the effects of bedding and whole life-cycle evolution process were established and evaluated.Finally,a cohesion loss model for determining residual strength of deep bedded sandstone was verified.The results showed that the effects of bedding and whole life-cycle evolution process had both significant influences on the evolution characteristic of residual strength of deep bedded sandstone.Additionally,residual strength parameters:residual cohesion and residual internal friction angle of deep bedded sandstone were not constant,which both significantly changed with increasing bedding angle.Besides,the cohesion loss model was the most suitable for determining and estimating the residual strength of bedded rocks,which could provide more accurate theoretical guidance for the stability control of deep chambers. 展开更多
关键词 residual strength deep bedded sandstone whole life-cycle evolution process cohesion loss model rock mechanics
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Face stability analysis of longitudinally inclined shield tunnel considering the effect of tensile strength cut-off and pore water pressure
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作者 HUANG Fu WANG Yong-tao +1 位作者 ZHANG Min YANG Zi-han 《Journal of Central South University》 2025年第3期1080-1098,共19页
Because of actual requirement,shield machine always excavates with an inclined angle in longitudinal direction.Since many previous studies mainly focus on the face stability of the horizontal shield tunnel,the effects... Because of actual requirement,shield machine always excavates with an inclined angle in longitudinal direction.Since many previous studies mainly focus on the face stability of the horizontal shield tunnel,the effects of tensile strength cut-off and pore water pressure on the face stability of the longitudinally inclined shield tunnel are not well investigated.A failure mechanism of a longitudinally inclined shield tunnel face is constructed based on the spatial discretization technique and the tensile strength cut-off criterion is introduced to modify the constructed failure mechanism.The pore water pressure is introduced as an external force into the equation of virtual work and the objective function of the chamber pressure of the shield machine is obtained.Moreover,the critical chamber pressure of the longitudinally inclined shield tunnel is computed by optimal calculation.Parametric analysis indicates that both tensile strength cut-off and pore water pressure have a significant impact on the chamber pressure and the range of the collapse block.Finally,the theoretical results are compared with the numerical results calculated by FLAC3D software which proves that the proposed approach is effective. 展开更多
关键词 longitudinally inclined tunnel pore water pressure tensile strength cut-off spatial discretization technique limit analysis
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Mediating role of inner strength in the relationship between medication literacy and medication adherence among kidney transplant patients 被引量:1
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作者 WANG Liping FANG Chunhua +3 位作者 NIE Manhua ZHU Li LIU Sai LI Haiyang 《中南大学学报(医学版)》 CAS CSCD 北大核心 2024年第6期961-971,共11页
Objective:Compared with long-term renal replacement therapy,kidney transplantation is the ideal treatment for end-stage renal disease(ESRD),significantly extending patient life and improving quality of life.Kidney tra... Objective:Compared with long-term renal replacement therapy,kidney transplantation is the ideal treatment for end-stage renal disease(ESRD),significantly extending patient life and improving quality of life.Kidney transplant patients need to adhere to lifelong immunosuppressive medication regimens,but their medication adherence is generally poor compared with other organ transplant recipients.Medication adherence is closely related to medication literacy and psychological status,yet related studies are limited.This study aims to investigate the current status of medication adherence,inner strength,and medication literacy in kidney transplant patients,analyze the relationships among these 3 factors,and explore the mediating role of inner strength in the relationship between medication literacy and medication adherence.Methods:A cross-sectional survey was conducted from March to October 2023 involving 421 patients aged≥18 years who visited kidney transplantation outpatient clinics at 4 tertiary hospitals in Hunan Province.The inner strength,medication literacy,and medication adherence of kidney transplant patients were investigated using the Inner Strength Scale(ISS),the Chinese version of the Medication Literacy Assessment in Spanish and English(MedLitRxSE),and the Chinese version of the Morisky Medication Adherence Scale-8(C-MMAS-8),respectively.Univariate analysis was performed to examine the effects of demographic and clinical data on medication adherence.Correlation analysis was conducted to explore the relationships among medication literacy,medication adherence,and inner strength.Significant variables from univariate and correlation analyses were further analyzed using multiple linear regression,and the mediating effect of inner strength was explored.Results:Among the 421 questionnaires collected,408 were valid,with an effective rate of 96.91%.The scores of C-MMAS-8,MedLitRxSE,and ISS were 6.64±1.16,100.63±14.67,and 8.47±4.03,respectively.Among the 408 patients,only 86(21.08%)patients had a high level of medication adherence,whereas 230(56.37%)patients had a medium level of medication adherence,and 92(22.55%)patients had poor medication adherence.Univariate analysis indicated that the kidney transplant patients’age,marital status,education levels,years since their kidney transplant operation,number of hospitalizations after the kidney transplant,and adverse drug reactions showed significant differences in medication adherence(all P<0.05).Correlation analysis showed that inner strength positively correlated with both medication literacy(r=0.183,P<0.001)and medication adherence(r=0.201,P<0.001).Additionally,there was a positive correlation between medication adherence and medication literacy(r=0.236,P<0.001).Inner strength accounted for 13.22%of the total effect in the mediating role between medication literacy and medication adherence.Conclusion:The level of medication adherence among kidney transplant patients needs improvement,and targeted intervention measures are essential.Inner strength mediates the relationship between medication literacy and medication adherence in these patients.Healthcare professionals should focus on enhancing medication literacy and supporting patients’inner strength to improve medication adherence. 展开更多
关键词 inner strength medication literacy medication adherence kidney transplant patients
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Ultrahigh strength and improved electrical conductivity in an aging strengthened copper alloy processed by combination of equal channel angular pressing and thermomechanical treatment 被引量:1
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作者 WANG Xu LI Zhou +1 位作者 MENG Xiang-peng XIAO Zhu 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1823-1837,共15页
In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and proper... In this paper,equal channel angular pressing and thermomechanical treatment was employed to improve the strength and electrical conductivity of an aging strengthened Cu-Ti-Cr-Mg alloy,and the microstructure and properties of the alloy were investigated in detail.The results showed that the samples deformed by the combination of cryogenic equal channel angular pressing(ECAP)and rolling had good comprehensive properties after aging at 400℃.The tensile strength of the peak-aged and over-aged samples was 1120 MPa and 940 MPa,with their corresponding electrical conductivity of 14.7%IACS and 22.1%IACS,respectively.ECAP and cryogenic rolling introduced high density dislocations,leading to the inhibition of the softening effects and refinement of the grains.After a long time aging at 400℃,the alloy exhibited ultra-high strength with obvious increasing electrical conductivity.The high strength was attributed to the synergistic effect of work hardening,grain refinement strengthening and precipitation strengthening.The precipitation of a large amount of Ti atoms from the matrix led to the high electrical conductivity of the over-aged sample. 展开更多
关键词 Cu-Ti alloy equal channel angular pressing ROLLING aging treatment high strength
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稻壳灰与SAP协同内养护对碱激发矿渣胶凝材料性能的影响 被引量:1
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作者 吕阳 吴远帅 +6 位作者 葛云露 陈扬 许金生 蹇守卫 但建明 温小栋 李相国 《硅酸盐通报》 北大核心 2025年第2期634-641,共8页
早期自收缩大和开裂风险高是限制碱激发矿渣(AAS)胶凝材料推广应用的重要难题,利用高吸水树脂(SAP)进行内养护是解决这些问题的有效方法之一,但这种方法会降低AAS的力学性能。本研究将多孔活性稻壳灰(RHA)与SAP复配形成复合内养护组分(S... 早期自收缩大和开裂风险高是限制碱激发矿渣(AAS)胶凝材料推广应用的重要难题,利用高吸水树脂(SAP)进行内养护是解决这些问题的有效方法之一,但这种方法会降低AAS的力学性能。本研究将多孔活性稻壳灰(RHA)与SAP复配形成复合内养护组分(SAP-RHA,SR),对比分析了SR与SAP内养护对AAS工作性能、收缩特性、水化产物及力学性能的影响。结果表明,相比于单独使用SAP内养护,SR内养护不仅进一步降低了AAS的自收缩,还有效提高了AAS的抗压强度,在一定程度上解决了SAP内养护所导致的力学性能降低的问题。 展开更多
关键词 碱激发矿渣 高吸水树脂 稻壳灰 自收缩 抗压强度
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基于3D打印技术的软弱夹层干湿循环作用强度劣化试验研究 被引量:1
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作者 刘浩 张文 芦磊 《水文地质工程地质》 北大核心 2025年第3期125-133,共9页
软弱夹层是一类较为特殊敏感的地质体,其存在对水电工程边坡的稳定性起控制性作用。为了深入探讨库岸边坡中软弱夹层在干湿循环条件下的剪切力学特性及破坏机制,以菜籽坝抽水蓄能电站下水库坝址左岸坝肩边坡为研究对象,利用3D打印技术... 软弱夹层是一类较为特殊敏感的地质体,其存在对水电工程边坡的稳定性起控制性作用。为了深入探讨库岸边坡中软弱夹层在干湿循环条件下的剪切力学特性及破坏机制,以菜籽坝抽水蓄能电站下水库坝址左岸坝肩边坡为研究对象,利用3D打印技术制备具有真实岩石形貌特征的结构面,并计算出结构面的粗糙度系数JRC,然后开展干湿循环作用下含人工节理面的软弱夹层剪切试验。研究结果表明,经过不同次数干湿循环,抗剪强度随循环次数增加呈负指数型降低,最终会趋于一个极低的稳定值,为初始强度的5%,且抗剪强度与结构面粗糙度呈正相关。软弱夹层的剪切应力-应变曲线在破坏阶段会呈阶梯式降低,结构面粗糙度越大,残余曲线阶梯式降低次数越多,且结构面粗糙度大的试样会在更短的剪切位移到达残余强度阶段,残余强度也随干湿循环次数的增加而降低。研究成果对抽水蓄能电站岸坡的稳定性评价具有较大的参考意义。 展开更多
关键词 软弱夹层 干湿循环 3D打印 强度劣化 粗糙度 残余强度
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基于微CT建模的小麦籽粒力学特性有限元分析 被引量:1
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作者 任广跃 张帅 +5 位作者 李琳琳 刘文超 曹伟伟 卫新雨 吴向天 段续 《农业工程学报》 北大核心 2025年第10期80-89,共10页
为探究不同粒型小麦在挤压破碎过程中的力学行为,探索粒型对小麦力学特性、应力、应变及总变形规律的影响,该研究以含水率为16%的小麦籽粒为研究对象,采用微CT(X-ray micro-computed tomography)扫描建模与有限元分析相结合的方法,精确... 为探究不同粒型小麦在挤压破碎过程中的力学行为,探索粒型对小麦力学特性、应力、应变及总变形规律的影响,该研究以含水率为16%的小麦籽粒为研究对象,采用微CT(X-ray micro-computed tomography)扫描建模与有限元分析相结合的方法,精确构建小麦籽粒的三维模型,系统分析了不同粒型小麦在挤压破碎过程中的力学特性、应力、应变及总变形分布规律。结果表明,小麦粒型与力学响应行为密切相关,较大小麦籽粒具有更高的抗压强度和弹性模量,且应力集中主要发生在籽粒腹沟区域。整体挤压分析表明,不同粒型的小麦裂纹生成规律相似;在腹式和侧式压缩下,裂纹均沿腹沟处产生,并延腹沟向内部延伸,这一结果通过微CT扫描模型的精确建模与有限元模拟得到了验证,同时将小麦颗粒受挤压时的应力应变及总变形分布情况可视化,以表征小麦颗粒在挤压过程中的力学行为。通过微CT扫描小麦压缩后的裂纹与有限元模拟后腹沟处应力集中的现象进行对比,从试验与仿真双重角度验证了腹沟区域其特有的结构特征。本研究通过微CT扫描与有限元分析的结合,揭示了小麦腹沟作为力学薄弱区域的结构特性,构建了精准的挤压模型,为优化制粉工艺参数、实现小麦精准低损加工提供了理论模型与设计依据。 展开更多
关键词 小麦籽粒 力学特性 抗压强度 微CT扫描 有限元
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钻锚一体化锚杆随钻测量岩石强度试验研究 被引量:1
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作者 姜鹏飞 张炜 +5 位作者 陈志良 王子越 罗超 郭吉昌 刘畅 孙洋 《采矿与岩层控制工程学报》 北大核心 2025年第1期63-81,共19页
岩石单轴抗压强度是评估岩石力学性质的重要参数,实时、准确地获取锚杆钻进过程中的岩石单轴抗压强度对于指导巷道顶板支护设计、锚固作业具有重要意义。基于钻锚一体化锚杆和钻臂搭建了钻锚一体化锚杆随钻感知试验系统,试验系统可实时... 岩石单轴抗压强度是评估岩石力学性质的重要参数,实时、准确地获取锚杆钻进过程中的岩石单轴抗压强度对于指导巷道顶板支护设计、锚固作业具有重要意义。基于钻锚一体化锚杆和钻臂搭建了钻锚一体化锚杆随钻感知试验系统,试验系统可实时监测液压系统的液压缸、液压马达及钻箱位移等参数。通过对各参数特性、单一参数及组合参数随岩石强度变化的关系进行分析,获得钻进单位体积岩石时液压缸、液压马达及系统所做总功与岩石强度的关系,并对比了各参数的优劣性。研究结果表明:液压系统单一参数及组合参数与岩石单轴抗压强度有一定的相关性,部分参数相关性系数较高,液压缸进油端、回油端拟合函数相关性系数分别为0.840 8和0.849 7;钻箱钻进速度随试样单轴抗压强度变化的拟合函数相关性系数最高,为0.953 3;其次是液压马达做功、系统总功以及液压缸做功,分别为0.921 5、0.895 0和0.855 2。液压缸回油端压力拟合函数效果最好,误差率为14.33%,小于15%;其次是钻箱钻进速度,误差率为16.12%,小于20%;钻进系统所做总功、液压马达做功、液压缸做功误差率分别为20.73%、21.79%和23.78%,均小于25%,预测效果较好。液压马达做功系统做功占主要部分,平均占比99.22%,随着岩石强度的增加,液压马达做功占系统总功逐渐下降。总体来看,液压缸进油端压力、回油端压力、钻箱钻进速度、液压马达做功、系统总功及液压缸做功随试样单轴抗压强度变化的拟合函数相关性系数较高。研究结果为钻锚一体化快速掘进、巷道围岩稳定性评估、锚杆支护方案优化等提供了依据。 展开更多
关键词 巷道支护 快速掘进 钻锚一体化 随钻测量 单轴抗压强度
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基于机器学习的煤系地层TBM掘进巷道围岩强度预测 被引量:1
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作者 丁自伟 高成登 +6 位作者 景博宇 黄兴 刘滨 胡阳 桑昊旻 徐彬 秦立学 《西安科技大学学报》 北大核心 2025年第1期49-60,共12页
为研究全断面掘进机(TBM)掘进参数与煤系地层岩体力学参数之间的互馈关系,准确、实时预测巷道围岩强度特征,基于TBM掘进过程中的现场监测,通过岩-机互馈关系分析,确定模型的输入特征参数,并建立了对应的数据库;将梯度提升决策树(GBDT)... 为研究全断面掘进机(TBM)掘进参数与煤系地层岩体力学参数之间的互馈关系,准确、实时预测巷道围岩强度特征,基于TBM掘进过程中的现场监测,通过岩-机互馈关系分析,确定模型的输入特征参数,并建立了对应的数据库;将梯度提升决策树(GBDT)、随机森林(RF)、支持向量回归(SVR)3种机器学习算法作为基学习器,线性回归(LR)算法作为元学习器,提出了一种基于Stacking集成算法的预测模型,并对比分析了Stacking集成算法与单一机器学习算法模型的预测性能。结果表明:二值判别与箱线图可有效对原始数据进行预处理;模型的主要输入特征参数为刀盘推力F、刀盘扭矩T、贯入度FPI、刀盘转速RPM、刀盘振动加速度A;Stacking模型在测试集上的拟合优度可达0.976,而均方误差、平均绝对误差、平均绝对百分误差分别仅有0.031,0.148和0.092,与其他3种模型相比,其拟合优度最高,误差指标数值最小,集成模型具有更高的预测精度,能够有效地预测煤矿TBM掘进巷道围岩点荷载强度。研究验证了Stacking模型的准确性,可为煤矿TBM掘进参数控制和巷道支护参数调整提供科学的参考依据。 展开更多
关键词 煤矿全断面掘进机 TBM掘进参数 Stacking集成算法 数据预处理 围岩强度预测
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溶液全浸泡的磷酸钾镁水泥浆体中的硫酸盐侵蚀行为研究 被引量:1
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作者 侯宇颖 杨建明 +6 位作者 徐晓晖 胡雪欣 陈为亮 胡夏闽 蒋德权 熊才强 李涛 《硅酸盐通报》 北大核心 2025年第1期31-39,共9页
通过宏观性能测试、化学分析和微观分析,本文研究了磷酸钾镁水泥(MKPC)浆体试件浸泡在质量分数为5%Na_(2)SO_(4)溶液中的硫酸根离子扩散及强度发展规律。结果表明,随着浸泡龄期的延长,试件内部硫酸根离子的含量逐步提高,侵蚀深度逐渐增... 通过宏观性能测试、化学分析和微观分析,本文研究了磷酸钾镁水泥(MKPC)浆体试件浸泡在质量分数为5%Na_(2)SO_(4)溶液中的硫酸根离子扩散及强度发展规律。结果表明,随着浸泡龄期的延长,试件内部硫酸根离子的含量逐步提高,侵蚀深度逐渐增加。硫酸根离子的侵蚀深度与硫酸根离子含量之间的关系基本满足2阶或3阶多项式(相关系数R^(2)大于0.998),采用Fick第二扩散定律解析式求解得到MKPC试件的硫酸根离子扩散系数均为10^(-7) mm^(2)/s数量级,比硅酸盐水泥混凝土小一个数量级。浸泡龄期不超过180 d时,MKPC试件的硫酸根离子扩散系数呈下降趋势;超过180 d后,MKPC试件的硫酸根离子扩散系数逐步提高;浸泡360 d后,试件的硫酸根离子扩散系数为3.9×10^(-7)mm^(2)/s,离表面2 mm处的硫酸根离子含量为0.218%(质量分数)。MKPC试件的强度随着浸泡龄期的延长先增大后减小,其发展规律和扩散系数变化规律一致。浸泡360 d后,MKPC试件的抗折和抗压强度损失率均小于5%。 展开更多
关键词 磷酸钾镁水泥 硫酸盐侵蚀 浸泡龄期 侵蚀深度 扩散系数 强度
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Strength criterion for crystalline rocks considering grain size effect and tensile-compressive strength ratio
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作者 ZHANG Cheng-han JI Hong-guang +3 位作者 JIANG Peng YOU Shuang GENG Qian-cheng JIAO Chen-jiang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2365-2378,共14页
The macroscopic mechanical properties of rocks are significantly influenced by their microstructure.As a material bonded by mineral grains,the grain morphology of crystalline rock is the primary factor influencing the... The macroscopic mechanical properties of rocks are significantly influenced by their microstructure.As a material bonded by mineral grains,the grain morphology of crystalline rock is the primary factor influencing the strength.However,most strength criteria neglect the strength variations caused by different grain characteristics in rocks.Furthermore,the traditional linear criteria tend to overestimate tensile strength and exhibit apex singularity.To address these shortcomings,a piecewise strength criterion that considers the grain size effect has been proposed.A part of an ellipse was employed to construct the envelope of the tensive-shear region on the meridian plane,to accurately reproduce the low tensile-compressive strength ratio.Based on the analysis of experimental data,both linear and exponential modification functions that account for grain size effects were integrated into the proposed criterion.The corresponding finite element algorithm has been implemented.The accuracy and applicability of the proposed criterion were validated by comparing with the experimental data. 展开更多
关键词 crystalline rock grain size effect strength criterion tensile-compressive strength ratio finite element algorithm
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环氧基Sn-Bi焊膏的焊点热稳定性 被引量:1
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作者 杨晓军 李晓光 +1 位作者 贺定勇 马立民 《北京工业大学学报》 北大核心 2025年第2期140-147,共8页
为探究环氧树脂壳层对Sn-Bi焊点的热稳定性的影响,选取了130~170℃的温度区间,对自制环氧基Sn-Bi焊膏和商用Sn-Bi焊膏(不含可固化树脂)形成的焊点分别进行了热循环试验。结果表明,1 000次热循环后,环氧基Sn-Bi焊膏形成的焊点,其表面的... 为探究环氧树脂壳层对Sn-Bi焊点的热稳定性的影响,选取了130~170℃的温度区间,对自制环氧基Sn-Bi焊膏和商用Sn-Bi焊膏(不含可固化树脂)形成的焊点分别进行了热循环试验。结果表明,1 000次热循环后,环氧基Sn-Bi焊膏形成的焊点,其表面的环氧树脂壳层依然完整保留,而焊点与铜基板的界面金属间化合物的厚度也明显低于商用Sn-Bi焊膏。1 000次热循环后,环氧基Sn-Bi焊膏形成的焊点的电导率由1.90×10^(6) S/m降为7.96×10^(5) S/m,剪切强度由145.7 MPa降为123.7 MPa;商用Sn-Bi焊膏形成的焊点的电导率由1.94×10^(6) S/m降为4.95×10^(5) S/m,剪切强度由116.1 MPa降为97.3 MPa。因此,对比商用Sn-Bi焊膏,环氧基Sn-Bi焊膏形成的焊点表面的环氧树脂壳层对于提高焊点的剪切强度和热稳定性是有利的,且一定程度上抑制了金属间化合物的生长。 展开更多
关键词 无铅焊膏 环氧树脂 热稳定性 金属间化合物 电导率 剪切强度
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延性抗震设计理念的发展及应用研究综述 被引量:2
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作者 贾良玖 罗旭亮 +1 位作者 王立军 项平 《东南大学学报(自然科学版)》 北大核心 2025年第1期30-40,共11页
延性抗震设计旨在通过结构发生较大弹塑性变形来降低结构地震响应。这一抗震设计理念广泛应用于大多数国家抗震规范中,其核心思路是通过使用强度折减系数对设防地震反应谱进行折减,使结构通过非弹性变形耗散地震能量。强度折减系数主要... 延性抗震设计旨在通过结构发生较大弹塑性变形来降低结构地震响应。这一抗震设计理念广泛应用于大多数国家抗震规范中,其核心思路是通过使用强度折减系数对设防地震反应谱进行折减,使结构通过非弹性变形耗散地震能量。强度折减系数主要由延性折减系数和结构超强系数决定。同时,能力设计法是实现延性抗震的主要工具,该方法要求体系内的非延性构件在延性构件进入非线性阶段前后都保持弹性,以实现整个结构体系的延性设计。通过梳理延性抗震设计理念的研究历史,简要介绍了延性系数、结构周期、场地条件、阻尼比等因素对延性折减系数的影响,阐述了现有强度折减系数的组成和计算方法。最后,总结了中国、美国、欧洲、日本抗震规范中延性设计的应用情况。 展开更多
关键词 延性抗震设计 能力设计法 强度折减系数 延性折减系数 抗震设计规范
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中国“十四五”时期经济社会发展初步评估 被引量:2
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作者 胡鞍钢 周绍杰 《北京工业大学学报(社会科学版)》 北大核心 2025年第4期1-24,共24页
“十四五”规划是中国全面建成小康社会、实现第一个百年奋斗目标之后,开启全面建设社会主义现代化国家的第一个五年规划。对“十四五”时期(2020—2024年)经济社会发展进行初步评估,主要表现为七个方面:经济实力大幅跃升,经济结构持续... “十四五”规划是中国全面建成小康社会、实现第一个百年奋斗目标之后,开启全面建设社会主义现代化国家的第一个五年规划。对“十四五”时期(2020—2024年)经济社会发展进行初步评估,主要表现为七个方面:经济实力大幅跃升,经济结构持续优化,创新驱动发展战略效果显著,民生持续明显改善,生态环境明显改善,安全保障更加稳固,综合国力处在世界前列。“十四五”时期的突出成果为制定国家“十五五”规划提供了更坚实的发展基础、更高的发展水平、更优的发展质量、更强的发展能力,也为2035年基本实现社会主义现代化目标迎来了良好开局。 展开更多
关键词 “十四五”规划 经济社会发展 高质量发展 创新驱动 生态文明 综合国力
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爆破挤淤法中炸药埋深对土体参数影响的模型试验研究 被引量:1
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作者 王军 张凯宇 +4 位作者 陈晟凯 秦伟 倪俊峰 高紫阳 张一帆 《岩土力学》 北大核心 2025年第1期123-132,共10页
爆破挤淤法是厚度15 m以上的软弱土地基有效处理方法之一。为了研究炸药埋深对该方法处理效果的影响,开展了淤泥中爆破的模型试验,利用全自动十字剪切板进行了不排水抗剪强度测试,探讨了炸药埋深对淤泥的不排水抗剪强度、含水率等影响,... 爆破挤淤法是厚度15 m以上的软弱土地基有效处理方法之一。为了研究炸药埋深对该方法处理效果的影响,开展了淤泥中爆破的模型试验,利用全自动十字剪切板进行了不排水抗剪强度测试,探讨了炸药埋深对淤泥的不排水抗剪强度、含水率等影响,并利用扫描电镜分别观测了不同炸药埋深下爆破前后土体的微观结构。研究结果表明:爆破会破坏爆点附近的土结构,导致孔隙率增加,不排水抗剪强度骤降,形成爆破扰动区;扰动区以外土体受到挤压导致不排水抗剪强度增加,形成爆破挤密区。爆破后土体含水率下降,爆心距越大下降越显著。炸药埋深为0.3倍淤泥厚度的爆后不排水抗剪强度减小最显著,约27%,扰动区范围最大,约为19.2 d(d为爆点直径),爆破效果最显著。因此,存在爆点最佳埋深,使得爆破效果最好,扰动土体的范围最大;可通过不排水抗剪强度确定爆破扰动范围。研究结果可为相关工程中炸药埋深设计提供技术支持和参考。 展开更多
关键词 爆破挤淤法 炸药埋深 十字板剪切试验 不排水抗剪强度 含水率 孔隙比
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基于响应曲面法的水库底泥泡沫混凝土配合比优化研究 被引量:2
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作者 李彦苍 宁钰 +7 位作者 石华旺 冯胜雷 张晓雄 张春元 于铠源 朱骥 靳子栋 乔威涛 《水利水电技术(中英文)》 北大核心 2025年第4期211-224,共14页
【目的】为了提高水库底泥的高值化利用率,拟使用水库底泥来制备泡沫混凝土,以水胶比、底泥掺量、泡沫掺量为变量【方法】采用Design-Expert 13.0软件中响应曲面法对水库底泥泡沫混凝土的配合比进行优化设计,分析变量对水库底泥泡沫混... 【目的】为了提高水库底泥的高值化利用率,拟使用水库底泥来制备泡沫混凝土,以水胶比、底泥掺量、泡沫掺量为变量【方法】采用Design-Expert 13.0软件中响应曲面法对水库底泥泡沫混凝土的配合比进行优化设计,分析变量对水库底泥泡沫混凝土抗压强度和导热系数的影响。采用SEM和XRD探究了底泥泡沫混凝土微观结构。【结果】研究结果显示,对水库底泥泡沫混凝土28 d抗压强度影响顺序为:水胶比>泡沫掺量>底泥掺量,而导热系数的影响顺序为:水胶比>底泥掺量>泡沫掺量。随着水胶比增加,抗压强度先升高后下降,导热系数逐渐降低。增加泡沫和底泥掺量会导致抗压强度和导热系数均下降。孔隙率与导热系数呈现负相关,符合指数模型。【结论】经优化配比,水库底泥泡沫混凝土在水胶比0.4、底泥掺量30%、泡沫掺量4.2%条件下制备,其28 d抗压强度为18.19 MPa,导热系数为0.1214W/(m·K),表观密度为701.2 kg/m^(3)。微观结果分析表明,底泥掺入量为30%条件下,试块内部物相结合紧密,孔隙分布均匀。研究成果为水库底泥在建筑材料领域的利用提供了新途径。 展开更多
关键词 水库底泥 泡沫混凝土 响应曲面法 抗压强度 导热系数 影响因素 水胶比 SEM图
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基于测速反馈的VSG惯量和阻尼自适应控制策略 被引量:1
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作者 王素娥 狄嘉 +1 位作者 郝鹏飞 巩磊 《智慧电力》 北大核心 2025年第3期53-61,共9页
虚拟同步发电机(VSG)中虚拟转动惯量J和阻尼系数D灵活可调,当系统受到扰动时,J和D取值不当会导致有功功率振荡等问题。为此,提出一种改进VSG参数自适应控制策略。首先,引入测速反馈控制,等效增大系统阻尼,增强扰动过程中系统稳定性;为... 虚拟同步发电机(VSG)中虚拟转动惯量J和阻尼系数D灵活可调,当系统受到扰动时,J和D取值不当会导致有功功率振荡等问题。为此,提出一种改进VSG参数自适应控制策略。首先,引入测速反馈控制,等效增大系统阻尼,增强扰动过程中系统稳定性;为避免高频噪声影响,将纯微分环节用经典微分器代替。其次,基于扰动过程功角特性曲线,设计一种双曲正切函数(tanh)自适应控制策略,并给出参数取值范围。最后,将所提控制策略运用在不同工况下,通过仿真与RT-LAB半实物平台验证了所提策略可有效抑制系统功率振荡,同时J和D取值明显减小。 展开更多
关键词 VSG 虚拟惯量和阻尼 功率扰动 电网强度 稳态优化
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