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外掺剂对泡沫混凝土影响及冻融-循环破坏研究 被引量:4
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作者 李辉 陈锋 +1 位作者 匡渝阳 宁英杰 《混凝土》 CAS 北大核心 2023年第5期115-120,123,共7页
为改善路用泡沫混凝土的性能,并研究其冻融-循环破坏特性。选用长度为6 mm的聚丙烯单丝纤维,粉煤灰,堆积密度为277 g/dm^(3)陶土粒及实际工程中的粉性砂土作为改良剂,对路用泡沫混凝土性能进行改良试验,并以聚丙烯单丝纤维泡沫混凝土为... 为改善路用泡沫混凝土的性能,并研究其冻融-循环破坏特性。选用长度为6 mm的聚丙烯单丝纤维,粉煤灰,堆积密度为277 g/dm^(3)陶土粒及实际工程中的粉性砂土作为改良剂,对路用泡沫混凝土性能进行改良试验,并以聚丙烯单丝纤维泡沫混凝土为研究对象,分析研究泡沫混凝土在循环荷载-冻融循环条件下的微裂缝发展规律,揭示循环荷载与冻融循环交互作用下轻质混凝土力学性能的演变规律,进而分析其在冻融循环作用下的破坏特性。研究发现:聚丙烯单丝纤维、陶土粒及粉性砂土改良剂的掺入均可有效的提高路用泡沫混凝土的性能,在改良效果上聚丙烯单丝纤维要优于陶土粒及粉性砂土;在冻融-循环荷载作用下,随着荷载循环次数的增加,微裂缝数量增加速度逐渐加快,大致呈指数增长;耦合作用下残余强度呈现先增后减的趋势,在冻融循环50次加荷载循环30次时,残余强度达到最大值,与冻融循环单独作用下相比偏小。 展开更多
关键词 泡沫混凝土 外掺剂 冻融-循环 微观破坏
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冻-融及干-湿循环对采矿废石风化产酸影响的试验研究 被引量:1
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作者 姜利国 梁冰 尹成薇 《安全与环境学报》 CAS CSCD 北大核心 2014年第3期262-267,共6页
为研究我国东北地区典型气候条件对采矿废石酸性排水的影响,以辽宁省本溪市红透山铜矿废石为研究对象,探讨了干-湿循环和冻-融循环作用对采矿废石风化产酸的影响。黄铁矿(FeS2)在废石中的平均质量分数为23.51%,是主要的产酸硫化矿物。... 为研究我国东北地区典型气候条件对采矿废石酸性排水的影响,以辽宁省本溪市红透山铜矿废石为研究对象,探讨了干-湿循环和冻-融循环作用对采矿废石风化产酸的影响。黄铁矿(FeS2)在废石中的平均质量分数为23.51%,是主要的产酸硫化矿物。利用自制淋溶试验设备开展了为期120 d(共计20次)的冻-融循环、干-湿循环及淋溶试验,对不同试验条件下铜矿废石淋溶液的pH值、酸度、电导率以及Ca2+、Mg2+、SO2-4、总Fe及Cu2+质量浓度进行了测试分析。结果表明,相对于干-湿循环作用而言,单纯的冻-融循环作用不会对废石的风化产酸产生明显影响。试验过程中冻-融循环作用下废石淋溶液的pH值基本维持在5左右,干-湿循环作用下废石淋溶液的pH值则保持在4.5左右。由于风化产酸程度较高,干-湿循环作用下黄铁矿风化所形成的总Fe、SO2-4质量浓度分别为冻-融循环下的8.5倍和1.6倍;Cu2+的质量浓度约为冻融循环条件下Cu2+质量浓度的5.2倍。冻-融循环及干-湿循环条件下,氧气及水分穿透黄铁矿外"包裹层"的时间分别为60 d和80 d。因此,与南方相对温暖湿润的气候类型相比,我国东北地区冰冻期长、丰水期短的气候类型可在一定程度上抑制废石风化产酸的形成。 展开更多
关键词 环境工程学 采矿废石堆 -循环 -湿循环 风化产酸
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在硫酸盐环境下冻融-干湿循环对混凝土的影响 被引量:16
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作者 金海军 于继寿 +2 位作者 李立辉 吴志娟 周红志 《混凝土》 CAS CSCD 北大核心 2012年第6期46-50,共5页
采用单一冻融、单一干湿和冻融-干湿循环交替作用的方法,研究了混凝土在不同浓度的硫酸盐溶液中的耐久性能。试验采用100 mm×100 mm×400 mm试件直立完全浸泡进行干湿循环。研究表明,硫酸盐冻融-干湿循环作用下,溶液浓度对冻... 采用单一冻融、单一干湿和冻融-干湿循环交替作用的方法,研究了混凝土在不同浓度的硫酸盐溶液中的耐久性能。试验采用100 mm×100 mm×400 mm试件直立完全浸泡进行干湿循环。研究表明,硫酸盐冻融-干湿循环作用下,溶液浓度对冻融破坏的影响存在临界值C=4.7%。当C≤4.7%时,冻融-干湿破坏随着溶液浓度的提高相对动弹性模量损失增大,而质量损失减小;当C>4.7%时,溶液浓度对冻融破坏或冻融-干湿复合破坏影响不大。冻融-干湿破坏力最强、冻融破坏次之,干湿破坏最为缓慢;且干湿循环使冻融循环破坏加剧。试验发现15%FA取代水泥,混凝土抗硫酸盐腐蚀最佳。 展开更多
关键词 -干湿循环 硫酸钠 相对动弹性模量 质量损失
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冻融-干湿循环下硫酸盐渍土强度劣化的宏微观响应 被引量:1
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作者 雷过 张卫兵 +2 位作者 李晓 刘臻祥 周鑫磊 《长江科学院院报》 CSCD 北大核心 2023年第6期154-159,165,共7页
冻融-干湿循环是引起硫酸盐渍土强度劣化的主要原因,而土体微观孔隙结构与强度之间有紧密的联系。通过无侧限抗压强度试验、压汞试验、电镜扫描(SEM)试验,采用全局优化法(UGO)分析数据,ImageJ2X处理SEM图像,探究了冻融-干湿循环下硫酸... 冻融-干湿循环是引起硫酸盐渍土强度劣化的主要原因,而土体微观孔隙结构与强度之间有紧密的联系。通过无侧限抗压强度试验、压汞试验、电镜扫描(SEM)试验,采用全局优化法(UGO)分析数据,ImageJ2X处理SEM图像,探究了冻融-干湿循环下硫酸盐渍土强度劣化的宏微观响应关系。结果表明:①冻融-干湿循环作用下,无侧限抗压强度随含盐量呈现先增大后减小的变化趋势,当压实度较低时强度峰值对应的含盐量低;从孔隙分布得出,1~10μm的孔隙占比为强度劣化的阈值,当其占比>50%时强度出现劣化,且劣化现象不可逆。②冻融-干湿作用下的无侧限抗压强度值与微观参数的歪度、结构优度间存在相关性,无侧限抗压强度与歪度呈现正相关,与结构优度呈负相关,且结构优度比歪度对强度影响更加显著。③影响无侧限抗压强度宏观指标劣化程度的微观参数依次为结构优度、歪度、分选系数、平均孔喉半径。本研究从定量分析的层面探究了硫酸盐渍土的宏微观响应关系,为进一步研究盐渍土工程性质提供参考。 展开更多
关键词 强度劣化 宏微观响应 硫酸盐渍土 -干湿循环 无侧限抗压强度试验 压汞试验 电镜扫描试验 全局优化法
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肝脏肿瘤冷冻消融治疗的进展 被引量:9
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作者 史东宏 许健 曹建民 《中国介入影像与治疗学》 CSCD 2007年第4期321-324,共4页
自从1850年冷冻外科诞生以来,冷冻治疗设备已取得里程碑式进展。第三代氩氦冷冻系统的研制成功,有效地满足了组织冷冻消融术的监控、快速降到致死温度、缓慢复温、重复的冻-融循环四个方面。在肝脏肿瘤领域单独或联合外科、化疗、介入... 自从1850年冷冻外科诞生以来,冷冻治疗设备已取得里程碑式进展。第三代氩氦冷冻系统的研制成功,有效地满足了组织冷冻消融术的监控、快速降到致死温度、缓慢复温、重复的冻-融循环四个方面。在肝脏肿瘤领域单独或联合外科、化疗、介入等综合应用显示了良好的应用前景,但如何合理应用仍需进一步研究。 展开更多
关键词 氩氦刀 肝脏肿瘤 -循环
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Experimental and numerical analysis on interface damage ofslab track under freeze-thaw cycles
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作者 REN Juan-juan DU Wei +2 位作者 YE Wen-long XU Xue-shan DENG Shi-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3782-3806,共25页
The interface of slab track laid in cold regions is prone to debonding under the coupling of freeze-thaw cyclesand temperature loads.Based on the composite specimen tests,the parameters of cohesive zone model were obt... The interface of slab track laid in cold regions is prone to debonding under the coupling of freeze-thaw cyclesand temperature loads.Based on the composite specimen tests,the parameters of cohesive zone model were obtained andused in a simulation model of CRTS III prefabricated slab track to study the interlayer damage.The results show that 1)the digital image correlation(DIC)technique can accurately capture the strain field changes on the interface of compositespecimens under splitting and shear loading;2)when the temperature gradient is−40℃/m−60℃/m,the interfacedamage of the slab track is minimal and presents different patterns of expansion under positive and negative temperaturegradients,each corresponding to damage of the cohesive element dominated by shear stress and normal tensile stress,respectively;3)the reduction of the elastic modulus at the concrete base after freeze-thaw inhibits interface damage andleads to a higher starting temperature gradient load,but cracking can occur on the concrete base after 150 freeze-thaws.For this reason,in the light of damage control of both the interface and concrete base,the elastic modulus of the concretebase is 54%or over that without freeze-thaw cycles. 展开更多
关键词 CRTS III prefabricated slab track freeze-thaw cycle bonding performance cohesive zone model interface damage
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Mechanical properties and damage evolution of sandstone subjected to uniaxial compression considering freeze-thaw cycles
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作者 WANG Jing-yao LI Jie-lin +1 位作者 ZHOU Ke-ping LIN Yun 《Journal of Central South University》 CSCD 2024年第11期4137-4154,共18页
The effect of freeze-thaw(F-T)cycles on the mechanical behaviors and internal mechanism of rock mass is a critical research topic.In permafrost or seasonally frozen regions,F-T cycles have adverse effects on the mecha... The effect of freeze-thaw(F-T)cycles on the mechanical behaviors and internal mechanism of rock mass is a critical research topic.In permafrost or seasonally frozen regions,F-T cycles have adverse effects on the mechanical properties of rock mass,leading to many serious disasters in mining and geotechnical operations.In this paper,uniaxial compression tests are carried out on cyan sandstone after different F-T cycles.The failure modes and damage evolution of cyan sandstone under F-T cycles are studied.In addition,from the perspective of fracture and pore volume,the calculation equations of rock strain under frost heaving pressure and F-T cycles are established and verified with the corresponding laboratory tests.Subsequently,based on the classical damage theory,the F-T damage variables of cyan sandstone under different F-T cycles are calculated,and the meso-damage calculation model of cyan sandstone under F-T-loading coupling conditions is derived.Furthermore,through the discrete element numerical simulation software(PFC^(3D)),the microscopic damage evolution process of cyan sandstone under uniaxial compression after F-T cycles is studied,including the change of microcracks number,distribution of microcracks,and the acoustic emission(AE)count.The goal of this study is to investigate the damage evolution mechanism of rock from the mesoscopic and microscopic aspects,which has certain guiding value for accurately understanding the damage characteristics of rock in cold regions. 展开更多
关键词 freeze-thaw cycles cyan sandstone uniaxial compression damage variable PFC^(3D)numerical simulation MICROCRACKS
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砖粒及粉煤灰掺量对再生混凝土抗冻性能的影响 被引量:14
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作者 安新正 牛薇 +1 位作者 张亚飞 刘燕 《科学技术与工程》 北大核心 2018年第14期237-240,共4页
利用含砖粒建筑垃圾再生粗骨料制备再生混凝土,并在工程中推广应用;其强度和抗冻性能是亟待解决的关键性问题。以粉煤灰及砖粒掺量作为分析参数,制作粉煤灰取代率分别为0、10%、15%和20%,砖粒含量分别为0、10%、30%和50%的再生混凝土立... 利用含砖粒建筑垃圾再生粗骨料制备再生混凝土,并在工程中推广应用;其强度和抗冻性能是亟待解决的关键性问题。以粉煤灰及砖粒掺量作为分析参数,制作粉煤灰取代率分别为0、10%、15%和20%,砖粒含量分别为0、10%、30%和50%的再生混凝土立方体试件和棱柱体试件;并通过抗压和气冻-气融循环试验,研究粉煤灰取代率及砖粒含量对再生混凝土的强度及抗冻性能的影响规律。研究结果表明:(1)在无粉煤灰掺入条件下,砖粒掺量不超过30%时,再生混凝土的抗压强度和抗冻性能均没有明显下降;当砖粒掺量为50%时,再生混凝土的抗压强度和抗冻性能均有显著下降。(2)在砖粒掺量分别为30%和50%情况下,对再生混凝土抗压强度和抗冻性来说,粉煤灰取代率分别为15%和10%时的最优。 展开更多
关键词 再生混凝土 砖粒含量 粉煤灰取代率 -循环 性能 抗压强度
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Freeze-thaw damage mechanism of elastic modulus of soil-rock mixtures at different confining pressures 被引量:15
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作者 ZHOU Zhong LIU Zhuang-zhuang +2 位作者 YANG Hao GAO Wen-yuan ZHANG Cheng-cheng 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期554-565,共12页
As a frequently-used roadbed filler,soil-rock mixture is often in the environment of freeze-thaw cycles and different confining pressures.In order to study the freeze-thaw damage mechanism of elastic modulus of soil-r... As a frequently-used roadbed filler,soil-rock mixture is often in the environment of freeze-thaw cycles and different confining pressures.In order to study the freeze-thaw damage mechanism of elastic modulus of soil-rock mixtures at different confining pressures,the concept of meso-interfacial freeze-thaw damage coefficient is put forward and the meso-interfacial damage phenomenon of soil-rock mixtures caused by the freeze-thaw cycle environment is concerned;a double-inclusion embedded model for elastic modulus of soil-rock mixtures in freezing-thawing cycle is proposed.A large triaxial test was performed and the influences of confining pressure and experimental factors on elastic modulus of soil-rock mixtures were obtained,and then the accuracy of the double-inclusion embedded model to predict the elastic modulus of soil-rock mixtures in freezing-thawing cycle is verified.Experiment results showed that as to soil-rock mixtures,with the increase of confining pressure,the elastic modulus increases approximately linearly.The most crucial factors to affect the elastic modulus are rock content and compaction degree at the same confining pressure;the elastic modulus increases with the increase of rock content and compactness;as the number of freeze-thaw cycles increases,the freeze-thaw damage coefficient of meso-structural interface and the elastic modulus decrease. 展开更多
关键词 soil-rock mixtures confining pressure freeze-thaw cycle elastic modulus damage coefficient
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Damage mechanism of soil-rock mixture after freeze-thaw cycles 被引量:20
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作者 ZHOU Zhong XING Kai +1 位作者 YANG Hao WANG Hao 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第1期13-24,共12页
As a widely distributed geological and engineering material,the soil-rock mixture always undergoes frequentative and short-term freeze-thaw cycles in some regions.Its internal structure is destroyed seriously,but the ... As a widely distributed geological and engineering material,the soil-rock mixture always undergoes frequentative and short-term freeze-thaw cycles in some regions.Its internal structure is destroyed seriously,but the damage mechanism is not clear.Based on the damage factor,the damage research of properties of soil-rock mixture after different times of freeze-thaw cycles is investigated.Firstly,the size-distributed subgrade gravelly soil samples are prepared and undergo different times of freeze-thaw cycles periodically(0,3,6,10),and indoor large-scale triaxial tests are completed.Secondly,the degradation degree of elastic modulus is considered as a damage factor,and applied to macro damage analysis of soil-rock mixture.Finally,the mesoscopic simulation of the experiments is achieved by PFC3D,and the influence on strength between soil-rock particles caused by freeze-thaw cycles is analyzed.The results show that freeze-thaw cycles cause internal damage of samples by weakening the strength between mesoscopic soil-rock particles,and ultimately affect the macro properties.After freeze-thaw cycles,on the macro-scale,elastic modulus and shear strength of soil-rock mixture both decrease,and the decreasing degree is related to the times of cycles with the mathmatical quadratic form;on the meso-scale,freeze-thaw cycles mainly cause the degradation of the strength between soil-rock particles whose properties are different significantly. 展开更多
关键词 soil-rock mixture freeze-thaw cycle large-scale triaxial test strength between soil-rock particles
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Mechanical and electrical properties of coarse-grained soilaffected by cyclic freeze-thaw in high cold regions 被引量:13
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作者 QU Yong-long NI Wan-kui +3 位作者 NIU Fu-jun MU Yan-hu CHEN Guo-liang LUO Jing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第3期853-866,共14页
To evaluate the geotechnical properties of coarse-grained soil affected by cyclic freeze-thaw,the electrical resistivity and mechanical tests are conducted.The soil specimens are prepared under different water content... To evaluate the geotechnical properties of coarse-grained soil affected by cyclic freeze-thaw,the electrical resistivity and mechanical tests are conducted.The soil specimens are prepared under different water contents,dry densities and exposed to 0?20 freeze-thaw cycles.As a result,the stress?strain behavior of the specimen(w=14.0%andρd=1.90 g/cm^3)changes from strain-hardening into strain-softening due to the freeze-thaw effect.The electrical resistivity of test specimen increases with the freeze-thaw cycles change,but the mechanical parameters(the unconfined compressive strength qu and the deformation modulus E)and brittleness index decrease considerably at the same conditions.All of them tend to be stable after 7?9 cycles.Moreover,both the dry density and the water content have reciprocal effects on the freeze-thaw actions.The failure and pore characteristics of specimens affected by freeze-thaw cycles are discussed by using the image analysis method.Then,an exponential function equation is developed to assess the electrical resistivity of specimens affected by the cyclic freeze-thaw.Linear relations between the mechanical parameters and the electrical resistivity of specimens are established to evaluate the geotechnical properties of the soil exposed to freeze-thaw actions through the corresponding electrical resistivity. 展开更多
关键词 coarse-grained soil freeze-thaw cycle unconfined compressive strength electrical resistivity electrical resistivity model
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Degradation of bond between steel bar and freeze-thaw concrete after electrochemical chloride extraction 被引量:8
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作者 郭育霞 贡金鑫 《Journal of Central South University》 SCIE EI CAS 2010年第2期388-393,共6页
The effect of electrochemical chloride extraction (ECE) on bond strength between steel bar and freeze-thaw concrete contaminated by chloride was experimentally investigated for beam specimens with dimensions of 100 ... The effect of electrochemical chloride extraction (ECE) on bond strength between steel bar and freeze-thaw concrete contaminated by chloride was experimentally investigated for beam specimens with dimensions of 100 mm × 100 mm × 400 ram. During the experiment, 3% NaC1 (vs mass of cement, mass fraction) was mixed into concrete to simulate chloride contamination, and the specimens experienced 0, 25, 50, 75 freeze-thaw cycles before ECE. In the process of ECE, different current densities and durations were adopted. It is indicated that the bond strength between reinforcement and concrete decreases with the increase of freeze-thaw cycles; the more the current and the electric quantity of ECE are, the more the loss of bond strength is; and the largest loss is up to 58.7%. So, it is important to choose proper parameters of ECE for the reinforced concrete structures contaminated by chloride and subjected to freeze-thaw cycles. 展开更多
关键词 CONCRETE bond strength DEGRADATION electrochemical chloride extraction freeze-thaw cycles
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木塑复合材料老化性能研究进展 被引量:23
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作者 王伟宏 王清文 宋永明 《林业科学》 EI CAS CSCD 北大核心 2008年第5期143-149,共7页
对木塑复合材料(WPC)在耐紫外线老化性能、耐潮湿及冰冻性能和耐真菌腐蚀性能方面的研究成果进行介绍,希望有助于正确评价和使用木塑复合材料,同时为新产品开发提供借鉴。WPC在紫外线作用下产生褪色现象,力学性能降低,而且喷水与紫外光... 对木塑复合材料(WPC)在耐紫外线老化性能、耐潮湿及冰冻性能和耐真菌腐蚀性能方面的研究成果进行介绍,希望有助于正确评价和使用木塑复合材料,同时为新产品开发提供借鉴。WPC在紫外线作用下产生褪色现象,力学性能降低,而且喷水与紫外光的共同作用会加剧破坏程度;木粉含量高、颗粒大的WPC更易遭受真菌腐朽威胁,目前已研制出硼酸锌等多种专用防腐剂;WPC吸水速度慢,但绝大部分集中在表层,吸水与冻融循环都会降低力学性能。不同方式生产的WPC其性能有所差异。目前,对老化降解的机理问题仅进行了初步解释。 展开更多
关键词 木塑复合材料 紫外老化 吸水 -循环 真菌腐朽
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宽级配砾石土作为GCLs/GM防渗垫保护层的可行性研究 被引量:7
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作者 王红雨 张学科 杨燕伟 《水文地质工程地质》 CAS CSCD 北大核心 2010年第5期102-107,共6页
鉴于西北地区干-湿与冻-融交替循环的气候特征、砾质土料储存量丰富以及土工织物膨润土垫(GCLs)防渗新技术在国内外已逐步得到推广应用,提出了宽级配砾质土料、土工织物粘土垫层(GCLs)和土工膜(GM)组合作为垃圾填埋场防渗系统的构想。... 鉴于西北地区干-湿与冻-融交替循环的气候特征、砾质土料储存量丰富以及土工织物膨润土垫(GCLs)防渗新技术在国内外已逐步得到推广应用,提出了宽级配砾质土料、土工织物粘土垫层(GCLs)和土工膜(GM)组合作为垃圾填埋场防渗系统的构想。通过对宽级配砾质土料的室内试验数据和国内外有关文献资料的分析研究表明,以GCLs/GM作为隔渗层,以宽级配砾质土代替粘土作为隔渗层的保护层所构成的复合防渗系统,能有效抵御干-湿与冻-融交替循环作用的影响,显著提高垃圾填埋场长期防渗能力和整体稳定性。对于处在西北地区特殊环境中的垃圾填埋场而言,文中所建议的复合防渗系统设置方法,可能是一种值得期待的垃圾填埋场防渗型式。 展开更多
关键词 砾质土料 GCLs/GM防渗垫 -循环 -湿循环 垃圾填埋场
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硫酸盐环境对活性粉末混凝土抗拉强度的影响 被引量:3
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作者 安明喆 王海鹏 +3 位作者 韩松 韩明明 余自若 张戈 《铁道学报》 EI CAS CSCD 北大核心 2017年第11期144-150,共7页
通过硫酸盐冻融-干湿循环耦合作用试验,研究Na_2SO_4溶液浓度对预加载活性粉末混凝土劈裂抗拉强度的影响规律,并结合SEM、XRD微观分析方法研究其破坏机理。结果表明:0%、5%、10%浓度Na_2SO_4浓度溶液冻融-干湿循环耦合作用下,劈裂抗拉... 通过硫酸盐冻融-干湿循环耦合作用试验,研究Na_2SO_4溶液浓度对预加载活性粉末混凝土劈裂抗拉强度的影响规律,并结合SEM、XRD微观分析方法研究其破坏机理。结果表明:0%、5%、10%浓度Na_2SO_4浓度溶液冻融-干湿循环耦合作用下,劈裂抗拉强度的变化经历初期劣化、强化和后期劣化共三个阶段。Na_2SO_4溶液浓度对劈裂抗拉强度的影响较大,其中,5%浓度的影响最大,其次为10%浓度,最后为0%浓度。冻融循环、干湿循环过程中的温度交变作用是初期劈裂抗拉强度下降的主要原因;侵蚀过程中产生的Na_2SO_4晶体和石膏晶体对裂缝和孔隙起到填充作用,未水化水泥和硅灰二次水化产生的修复作用,共同作用使得劈裂抗拉强度经历了强化段;后期劣化阶段结晶更好的石膏晶体与钙矾石晶体等侵蚀性产物的有害膨胀应力与Na_2SO_4结晶应力共同作用造成基体损伤。5%浓度Na_2SO_4溶液耦合循环6次后,活性粉末混凝土、C60高性能混凝土的劈裂抗拉强度损失率分别为6.09%、48.89%,活性粉末混凝土在耦合作用下的耐久性远优于C60高性能混凝土。 展开更多
关键词 活性粉末混凝土 硫酸盐浓度 -干湿循环 耦合作用 劈裂抗拉强度 微观机理
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Experimental study of dynamic resilient modulus of subgrade soils under coupling of freeze–thaw cycles and dynamic load 被引量:11
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作者 ZHAO Yang LU Zheng +2 位作者 YAO Hai-lin GU Fan DUAN Ya-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2043-2053,共11页
Although the dynamic properties of subgrade soils in seasonally frozen areas have already been studied, few researchers have considered the influence of shallow groundwater during the freeze–thaw(F–T) cycles. So a m... Although the dynamic properties of subgrade soils in seasonally frozen areas have already been studied, few researchers have considered the influence of shallow groundwater during the freeze–thaw(F–T) cycles. So a multifunctional F–T cycle system was developed to imitate the groundwater recharge in the subgrade during the freezing process and a large number of dynamic triaxial experiments were conducted after the F–T cycles. Some significant factors including the F–T cycle number, compaction degree, confining pressure, cyclic deviator stress, loading frequency, and water content were investigated for the resilient modulus of soils. The experimental results indicated that the dynamic resilient modulus of the subgrade was negatively correlated with the cyclic deviator stress, F–T cycle number, and initial water content, whereas the degree of compaction, confining pressure, and loading frequency could enhance the resilient modulus. Furthermore, a modified model considering the F–T cycle number and stress state was established to predict the dynamic resilient modulus. The calculated results of this modified model were very close to the experimental results. Consequently, calculation of the resilient modulus for F–T cycles considering the dynamic load was appropriate. This study provides reference for research focusing on F–T cycles with groundwater supply and the dynamic resilient moduli of subgrade soils in seasonally frozen areas. 展开更多
关键词 dynamic resilient modulus freeze–thaw cycles dynamic load dynamic triaxial test prediction model
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