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Enhancing the Interaction of Carbon Nanotubes by Metal-Organic Decomposition with Improved Mechanical Strength and Ultra-Broadband EMI Shielding Performance 被引量:5
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作者 Yu-Ying Shi Si-Yuan Liao +7 位作者 Qiao-Feng Wang Xin-Yun Xu Xiao-Yun Wang Xin-Yin Gu You-Gen Hu Peng-Li Zhu Rong Sun Yan-Jun Wan 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第7期281-294,共14页
The remarkable properties of carbon nanotubes(CNTs)have led to promising applications in the field of electromagnetic inter-ference(EMI)shielding.However,for macroscopic CNT assemblies,such as CNT film,achieving high ... The remarkable properties of carbon nanotubes(CNTs)have led to promising applications in the field of electromagnetic inter-ference(EMI)shielding.However,for macroscopic CNT assemblies,such as CNT film,achieving high electrical and mechanical properties remains challenging,which heavily depends on the tube-tube interac-tions of CNTs.Herein,we develop a novel strategy based on metal-organic decomposition(MOD)to fabricate a flexible silver-carbon nanotube(Ag-CNT)film.The Ag particles are introduced in situ into the CNT film through annealing of MOD,leading to enhanced tube-tube interactions.As a result,the electrical conductivity of Ag-CNT film is up to 6.82×10^(5) S m^(-1),and the EMI shielding effectiveness of Ag-CNT film with a thickness of~7.8μm exceeds 66 dB in the ultra-broad frequency range(3-40 GHz).The tensile strength and Young’s modulus of Ag-CNT film increase from 30.09±3.14 to 76.06±6.20 MPa(~253%)and from 1.12±0.33 to 8.90±0.97 GPa(~795%),respectively.Moreover,the Ag-CNT film exhibits excellent near-field shield-ing performance,which can effectively block wireless transmission.This innovative approach provides an effective route to further apply macroscopic CNT assemblies to future portable and wearable electronic devices. 展开更多
关键词 EMI shielding Mechanical strength Carbon nanotubes Metal-organic decomposition Flexibility
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Prediction models of burst strength degradation for casing with considerations of both wear and corrosion 被引量:3
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作者 Jie-Li Wang Wen-Jun Huang De-Li Gao 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期458-474,共17页
Casing wear and casing corrosion are serious problems affecting casing integrity failure in deep and ultra-deep wells.This paper aims to predict the casing burst strength with considerations of both wear and corrosion... Casing wear and casing corrosion are serious problems affecting casing integrity failure in deep and ultra-deep wells.This paper aims to predict the casing burst strength with considerations of both wear and corrosion.Firstly,the crescent wear shape is simplified into three categories according to common mathematical models.Then,based on the mechano-electrochemical(M-E)interaction,the prediction model of corrosion depth is built with worn depth as the initial condition,and the prediction models of burst strength of the worn casing and corroded casing are obtained.Secondly,the accuracy of different prediction models is validated by numerical simulation,and the main influence factors on casing strength are obtained.At last,the theoretical models are applied to an ultra-deep well in Northwest China,and the dangerous well sections caused by wear and corrosion are predicted,and the corrosion rate threshold to ensure the safety of casing is obtained.The results show that the existence of wear defects results in a stress concentration and enhanced M-E interaction on corrosion depth growth.The accuracy of different mathematical models is different:the slot ring model is most accurate for predicting corrosion depth,and the eccentric model is most accurate for predicting the burst strength of corroded casing.The burst strength of the casing will be overestimated by more than one-third if the M-E interaction is neglected,so the coupling effect of wear and corrosion should be sufficiently considered in casing integrity evaluation. 展开更多
关键词 Deep well Casing integrity Casing wear Casing corrosion Burst strength
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Polarizable Additive with Intermediate Chelation Strength for Stable Aqueous Zinc‑Ion Batteries 被引量:2
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作者 Yuting Xia Rongao Tong +5 位作者 Jingxi Zhang Mingjie Xu Gang Shao Hailong Wang Yanhao Dong Chang‑An Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第5期41-55,共15页
Aqueous zinc-ion batteries are promising due to inherent safety,low cost,low toxicity,and high volumetric capacity.However,issues of dendrites and side reactions between zinc metal anode and the electrolyte need to be... Aqueous zinc-ion batteries are promising due to inherent safety,low cost,low toxicity,and high volumetric capacity.However,issues of dendrites and side reactions between zinc metal anode and the electrolyte need to be solved for extended storage and cycle life.Here,we proposed that an electrolyte additive with an intermediate chelation strength of zinc ion—strong enough to exclude water molecules from the zinc metal-electrolyte interface and not too strong to cause a significant energy barrier for zinc ion dissociation—can benefit the electrochemical stability by suppressing hydrogen evolution reaction,overpotential growth,and den-drite formation.Penta-sodium diethylene-triaminepentaacetic acid salt was selected for such a purpose.It has a suitable chelating ability in aqueous solutions to adjust solvation sheath and can be readily polarized under electrical loading conditions to further improve the passivation.Zn||Zn symmetric cells can be stably operated over 3500 h at 1 mA cm^(-2).Zn||NH4V4O10 full cells with the additive show great cycling stability with 84.6%capacity retention after 500 cycles at 1 A g^(-1).Since the additive not only reduces H2 evolution and corrosion but also modifies Zn2+diffusion and deposition,highlyreversible Zn electrodes can be achieved as verified by the experimental results.Our work offers a practical approach to the logical design of reliable electrolytes for high-performance aqueous batteries. 展开更多
关键词 Aqueous zinc-ion batteries Electrolyte additives DTPA-Na Chelation strength
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Analysis of mechanical strengths of extreme line casing joint considering geometric, material, and contact nonlinearities
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作者 Ji-Yun Zhang Chi Peng +4 位作者 Jian-Hong Fu Quan Cao Yu Su Jian-Yun Pang Zi-Qiang Yu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第3期1992-2004,共13页
To address the challenges associated with difficult casing running,limited annular space,and poor cementing quality in the completion of ultra-deep wells,the extreme line casing offers an effective solution over conve... To address the challenges associated with difficult casing running,limited annular space,and poor cementing quality in the completion of ultra-deep wells,the extreme line casing offers an effective solution over conventional casings.However,due to its smaller size,the joint strength of extreme line casing is reduced,which may cause failure when running in the hole.To address this issue,this study focuses on the CST-ZTΦ139.7 mm×7.72 mm extreme line casing and employs the elastic-plastic mechanics to establish a comprehensive analysis of the casing joint,taking into account the influence of geometric and material nonlinearities.A finite element model is developed to analyze the forces and deformations of the extreme line casing joint under axial tension and external collapse load.The model investigates the stress distribution of each thread tooth subjected to various tensile forces and external pressures.Additionally,the tensile strength and crushing strength of the extreme line casing joint are determined through both analytical and experimental approaches.The findings reveal that,under axial tensile load,the bearing surface of each thread tooth experiences uneven stress,with relatively high equivalent stress at the root of each thread tooth.The end thread teeth are valuable spots for failure.It is observed that the critical fracture axial load of thread decreases linearly with the increase of thread tooth sequence.Under external pressure,the circumferential stress is highest at the small end of the external thread,leading to yield deformation.The tensile strength of the joint obtained from the finite element model exhibits a relative error of less than 7%compared to the analytical and experimental values,proving the reliability of the finite element model.The tensile strength of the joint is 3091.9 k N.Moreover,in terms of anti-collapse capability,the joints demonstrate higher resistance to collapse compared to the casing body,which is consistent with the test results where the pipe body experiences collapse and failure while the joints remain intact during the experiment.The failure load of the casing body under external collapse pressure is 87.4 MPa.The present study provides a basic understanding of the mechanical strengths of extreme line casing joint. 展开更多
关键词 Extreme line casing Elastic-plastic mechanics Finite element analysis Tensile strength Collapse strength
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A simple atomization approach enables monolayer dispersion of nano graphenes in cementitious composites with excellent strength gains
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作者 Nanxi Dang Rijiao Yang +4 位作者 Chengji Xu Yu Peng Qiang Zeng Weijian Zhao Zhidong Zhang 《Nano Materials Science》 EI CAS CSCD 2024年第2期211-222,共12页
Carbon nano additives(CNAs)are critical to achieving the unique properties of functionalized composites,however,controlling the dispersion of CNAs in material matrix is always a challenging task.In this study,a simple... Carbon nano additives(CNAs)are critical to achieving the unique properties of functionalized composites,however,controlling the dispersion of CNAs in material matrix is always a challenging task.In this study,a simple atomization approach was successfully developed to promote the dispersion efficiency of graphene nanoplatelets(GNPs)in cement composites.This atomization approach can be integrated with the direct,indirect and combined ultrasonic stirrings in a homemade automatic stirring-atomization device.Mechanical and microstructure tests were performed on hardened cement pastes blended with GNPs in different stirring and mixing approaches.Results show that the direct ultrasonic stirrings enabled more homogeneous dispersions of GNP particles with a smaller size for a longer duration.The atomized droplets with the mean size of~100μm largely mitigated GNPs’agglomerations.Monolayer GNPs were observed in the cement matrix with the strength gain by up to 54%,and the total porosity decrease by 21%in 0.3 wt%GNPs dosage.The greatly enhanced dispersion efficiency of GNPs in cement also raised the cement hydration.This work provides an effective and manpower saving technique toward dispersing CNAs in engineering materials with great industrialization prospects. 展开更多
关键词 NANOMATERIALS DISPERSION ATOMIZATION strength Microstructure
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Association of handgrip strength with aortic stenosis among adults aged 60 years and older:evidence from the 157097 UK Biobank participants
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作者 Cheng-Xiang SONG Qing LI +4 位作者 Cong-Ying XIA Lu LONG Xiao-Xi ZENG Jun-Li LI Mao CHEN 《Journal of Geriatric Cardiology》 SCIE CAS CSCD 2024年第11期1026-1033,共8页
Objective To examine the association of handgrip strength with aortic stenosis incidence among adults aged 60 years and older.Methods We conducted a cohort study using the UK Biobank data to assess the relationship be... Objective To examine the association of handgrip strength with aortic stenosis incidence among adults aged 60 years and older.Methods We conducted a cohort study using the UK Biobank data to assess the relationship between handgrip strength and incident aortic stenosis in individuals aged 60 years and older.Handgrip strength was measured using a Jamar J00105 hydraulic hand dynamometer.Adjusted Cox proportional hazards regression models were conducted to assess the association between handgrip strength and incident aortic stenosis.Results We included 157,097 UK Biobank participants(78,151 women and 78,946 men)in our study,with mean age of 64±2.9 years.During a median follow-up of 8.1(7.4–8.8)years,1543(1.0%)participants developed incident aortic stenosis.Compared with those with the lowest handgrip strength(tertile 1),the adjusted hazard ratios(95%confidence interval)of incident aortic stenosis in the middle(tertile 2)and the highest(tertile 3)were 0.86(0.77–0.97)and 0.76(0.67–0.87),respectively.Conclusions Higher handgrip strength was associated with lower risk of developing aortic stenosis in older adults.Future studies warrant preventive strategies for older adults with lower handgrip strength. 展开更多
关键词 STENOSIS AORTIC strength
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Adhesion strength of tetrahydrofuran hydrates is dictated by substrate stiffness
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作者 Yan-Wen Lin Tong Li +4 位作者 Yi Zhang Wei-Wei Yan Xiao-Ming Chen Zhi-Sen Zhang Jian-Yang Wu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期667-673,共7页
Understanding the hydrate adhesion is important to tackling hydrate accretion in petro-pipelines.Herein,the relationship between the Tetrahydrofuran(THF)hydrate adhesion strength(AS)and surface stiffness on elastic co... Understanding the hydrate adhesion is important to tackling hydrate accretion in petro-pipelines.Herein,the relationship between the Tetrahydrofuran(THF)hydrate adhesion strength(AS)and surface stiffness on elastic coatings is systemically examined by experimental shear force measurements and theoretical methods.The mechanical factor-elastic modulus of the coatings greatly dictates the hydrate AS,which is explained by the adhesion mechanics theory,beyond the usual factors such as wettability and structural roughness.Moreover,the hydrate AS increases with reducing the thickness of the elastic coatings,resulted from the decrease of the apparent surface elastic modulus.The effect of critical thickness for the elastic materials with variable elastic modulus on the hydrate AS is also revealed.This study provides deep perspectives on the regulation of the hydrate AS by the elastic modulus of elastic materials,which is of significance to design anti-hydrate surfaces for mitigation of hydrate accretion in petro-pipelines. 展开更多
关键词 HYDRATE Adhesion strength Elastic modulus COATINGS
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A universal direct tensile testing method for measuring the tensile strength of rocks
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作者 Yang Wu Jianfeng Liu +5 位作者 Zhide Wu Junjie Liu Yonghui Zhao Huining Xu Jinbing Wei Wen Zhong 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第10期1443-1451,共9页
There is limited applicability to the current method for testing the direct tensile strength of rocks because it places stringent requirements on the testing equipment.This work suggests a universal method based on th... There is limited applicability to the current method for testing the direct tensile strength of rocks because it places stringent requirements on the testing equipment.This work suggests a universal method based on the‘‘compression-to-tensiono idea in response to these difficulties.By applying pressure,this technique makes it possible to test the tensile strength of rocks directly with any conventional compression test machines.Granite was utilized as the test material in order to validate this suggested testing method,and the results showed what follows.Upon determining the true fracture area through digital reconstruction,an average calculated tensile strength of 5.97 MPa with a Cvof 0.04 was obtained.There is a positive correlation between tensile strength and the joint roughness coefficient(JRC)of the failure surface.The aggregation mode of AE events with the loading process conforms to the damage characteristics of rock tensile failure.The direct tensile testing method proposed in this study not only has high universality but also produces test results with outstanding consistency.Additionally,factors influencing the results of the tensile test are pointed out,and recommendations for optimizing the suggested testing method are offered. 展开更多
关键词 ROCKS Direct tensile strength GRANITE Acoustic emission JRC
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Ultimate Strength of Hull Perforated Plate Under Extreme Cyclic Loading
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作者 ZHENG Ji-qian FENG Liang CHEN Xu-guang 《船舶力学》 EI CSCD 北大核心 2024年第12期1925-1939,共15页
In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyze... In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyzed. It is found that the ultimate strength of the perforated plates decreases rapidly and stabilizes in the first four cycles. Plates with oblong openings have a greater ultimate strength compared to plates with rectangular openings, while the relative strengthening ratio decreases over the duration of the cycle. The location of the openings is also an important parameter that affects the strength of the structure, as the plates with openings close to the edges in the longitudinal direction have higher strengths, while in the transverse direction the strengths are higher when the openings are close to the center. Among the three opening-strengthening methods compared, the Carling stiffener method maintains a better strengthening effect under cyclic loads for many periods. 展开更多
关键词 extreme cyclic loading perforated plate ultimate strength
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Analysis on the turning point of dynamic in-plane compressive strength for a plain weave composite
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作者 Xiaoyu Wang Zhixing Li +2 位作者 Licheng Guo Zhenxin Wang Jiuzhou Zhao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期485-495,共11页
Experimental investigations on dynamic in-plane compressive behavior of a plain weave composite were performed using the split Hopkinson pressure bar. A quantitative criterion for calculating the constant strain rate ... Experimental investigations on dynamic in-plane compressive behavior of a plain weave composite were performed using the split Hopkinson pressure bar. A quantitative criterion for calculating the constant strain rate of composites was established. Then the upper limit of strain rate, restricted by stress equilibrium and constant loading rate, was rationally estimated and confirmed by tests. Within the achievable range of 0.001/s-895/s, it was found that the strength increased first and subsequently decreased as the strain rate increased. This feature was also reflected by the turning point(579/s) of the bilinear model for strength prediction. The transition in failure mechanism, from local opening damage to completely splitting destruction, was mainly responsible for such strain rate effects. And three major failure modes were summarized under microscopic observations: fiber fracture, inter-fiber fracture, and interface delamination. Finally, by introducing a nonlinear damage variable, a simplified ZWT model was developed to characterize the dynamic mechanical response. Excellent agreement was shown between the experimental and simulated results. 展开更多
关键词 Plain weave composite Dynamic strength Quantitative criterion Turning point Failure mechanism
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Optimizing profile line interval for enhanced accuracy in rock joint morphology and shear strength assessments
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作者 Leibo Song Quan Jiang +5 位作者 Shigui Du Jiamin Song Gang Wang Yanting Gu Xingkai Wang Jinzhong Wu 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第5期587-608,共22页
2D profile lines play a critical role in cost-effectively evaluating rock joint properties and shear strength.However, the interval(ΔI_(L)) between these lines significantly impacts roughness and shear strength asses... 2D profile lines play a critical role in cost-effectively evaluating rock joint properties and shear strength.However, the interval(ΔI_(L)) between these lines significantly impacts roughness and shear strength assessments. A detailed study of 45 joint samples using four statistical measures across 500 different ΔI_(L)values identified a clear line interval effect with two stages: stable and fluctuation-discrete.Further statistical analysis showed a linear relationship between the error bounds of four parameters,shear strength evaluation, and their corresponding maximum ΔI_(L)values, where the gradient k of this linear relationship was influenced by the basic friction angle and normal stress. Accounting for these factors,lower-limit linear models were employed to determine the optimal ΔI_(L)values that met error tolerances(1%–10%) for all metrics and shear strength. The study also explored the consistent size effect on joints regardless of ΔI_(L)changes, revealing three types of size effects based on morphological heterogeneity.Notably, larger joints required generally higher ΔI_(L)to maintain the predefined error limits, suggesting an increased interval for large joint analyses. Consequently, this research provides a basis for determining the optimal ΔI_(L), improving accuracy in 2D profile line assessments of joint characteristics. 展开更多
关键词 Rock joint ROUGHNESS Shear strength Size effect Profile line interval effect
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Strengthening-softening transition and maximum strength in Schwarz nanocrystals
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作者 Hanzheng Xing Jiaxi Jiang +2 位作者 Yujia Wang Yongpan Zeng Xiaoyan Li 《Nano Materials Science》 EI CAS CSCD 2024年第3期320-328,共9页
Recently,a Schwarz crystal structure with curved grain boundaries(GBs)constrained by twin-boundary(TB)networks was discovered in nanocrystalline Cu through experiments and atomistic simulations.Nanocrystalline Cu with... Recently,a Schwarz crystal structure with curved grain boundaries(GBs)constrained by twin-boundary(TB)networks was discovered in nanocrystalline Cu through experiments and atomistic simulations.Nanocrystalline Cu with nanosized Schwarz crystals exhibited high strength and excellent thermal stability.However,the grainsize effect and associated deformation mechanisms of Schwarz nanocrystals remain unknown.Here,we performed large-scale atomistic simulations to investigate the deformation behaviors and grain-size effect of nanocrystalline Cu with Schwarz crystals.Our simulations showed that similar to regular nanocrystals,Schwarz nanocrystals exhibit a strengthening-softening transition with decreasing grain size.The critical grain size in Schwarz nanocrystals is smaller than that in regular nanocrystals,leading to a maximum strength higher than that of regular nanocrystals.Our simulations revealed that the softening in Schwarz nanocrystals mainly originates from TB migration(or detwinning)and annihilation of GBs,rather than GB-mediated processes(including GB migration,sliding and diffusion)dominating the softening in regular nanocrystals.Quantitative analyses of simulation data further showed that compared with those in regular nanocrystals,the GB-mediated processes in Schwarz nanocrystals are suppressed,which is related to the low volume fraction of amorphous-like GBs and constraints of TB networks.The smaller critical grain size arises from the suppression of GB-mediated processes. 展开更多
关键词 Schwarz nanocrystal Curved grain boundary Atomistic simulation Grain size effect Maximum strength
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High mechanical strength Si anode synthesis with interlayer bonded expanded graphite structure for lithium-ion batteries
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作者 Wenhui Lai Jong Hak Lee +8 位作者 Lu Shi Yuqing Liu Yanhui Pu Yong Kang Ong Carlos Limpo Ting Xiong Yifan Rao Chorng Haur Sow Barbaros Ozyilmaz 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期253-263,I0007,共12页
Despite advancements in silicon-based anodes for high-capacity lithium-ion batteries,their widespread commercial adoption is still hindered by significant volume expansion during cycling,especially at high active mass... Despite advancements in silicon-based anodes for high-capacity lithium-ion batteries,their widespread commercial adoption is still hindered by significant volume expansion during cycling,especially at high active mass loadings crucial for practical use.The root of these challenges lies in the mechanical instability of the material,which subsequently leads to the structural failure of the electrode.Here,we present a novel synthesis of a composite combining expanded graphite and silicon nanoparticles.This composite features a unique interlayer-bonded graphite structure,achieved through the application of a modified spark plasma sintering method.Notably,this innovative structure not only facilitates efficient ion and electron transport but also provides exceptional mechanical strength(Vickers hardness:up to658 MPa,Young's modulus:11.6 GPa).This strength effectively accommodates silicon expansion,resulting in an impressive areal capacity of 2.9 mA h cm^(-2)(736 mA h g^(-1)) and a steady cycle life(93% after 100cycles).Such outsta nding performance is paired with features appropriate for large-scale industrial production of silicon batteries,such as active mass loading of at least 3.9 mg cm^(-2),a high-tap density electrode material of 1.68 g cm^(-3)(secondary clusters:1.12 g cm^(-3)),and a production yield of up to 1 kg per day. 展开更多
关键词 Lithium-ion battery Silicon anode Spark plasma sintering Interlayer bonding Mechanical strength Tap density
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Failure behavior and strength model of blocky rock mass with and without rockbolts
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作者 Chun Zhu Xiansen Xing +4 位作者 Manchao He Zhicheng Tang Feng Xiong Zuyang Ye Chaoshui Xu 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第6期747-762,共16页
To better understand the failure behaviours and strength of bolt-reinforced blocky rocks,large scale extensive laboratory experiments are carried out on blocky rock-like specimens with and without rockbolt reinforceme... To better understand the failure behaviours and strength of bolt-reinforced blocky rocks,large scale extensive laboratory experiments are carried out on blocky rock-like specimens with and without rockbolt reinforcement.The results show that both shear failure and tensile failure along joint surfaces are observed but the shear failure is a main controlling factor for the peak strength of the rock mass with and without rockbolts.The rockbolts are necked and shear deformation simultaneously happens in bolt reinforced rock specimens.As the joint dip angle increases,the joint shear failure becomes more dominant.The number of rockbolts has a significant impact on the peak strain and uniaxial compressive strength(UCS),but little influence on the deformation modulus of the rock mass.Using the Winkler beam model to represent the rockbolt behaviours,an analytical model for the prediction of the strength of boltreinforced blocky rocks is proposed.Good agreement between the UCS values predicted by proposed model and obtained from experiments suggest an encouraging performance of the proposed model.In addition,the performance of the proposed model is further assessed using published results in the literature,indicating the proposed model can be used effectively in the prediction of UCS of bolt-reinforced blocky rocks. 展开更多
关键词 Blocky rock mass Rockbolt ground support Uniaxial compression test Failure mechanism Uniaxial compressive strength model
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Combined use of fly ash and silica to prevent the long-term strength retrogression of oil well cement set and cured at HPHT conditions
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作者 Guo-Dong Cheng Xue-Yu Pang +4 位作者 Jin-Sheng Sun Zheng-Song Qiu Chuang-Chuang Wang Jian-Kun Qin Ning Li 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期1122-1134,共13页
The long-term strength retrogression of silica-enriched oil well cement poses a significant threat to wellbore integrity in deep and ultra-deep wells, which is a major obstacle for deep petroleum and geothermal energy... The long-term strength retrogression of silica-enriched oil well cement poses a significant threat to wellbore integrity in deep and ultra-deep wells, which is a major obstacle for deep petroleum and geothermal energy development. Previous attempts to address this problem has been unsatisfactory because they can only reduce the strength decline rate. This study presents a new solution to this problem by incorporating fly ash to the traditional silica-cement systems. The influences of fly ash and silica on the strength retrogression behavior of oil well cement systems directly set and cured under the condition of 200°C and 50 MPa are investigated. Test results indicate that the slurries containing only silica or fly ash experience severe strength retrogression from 2 to 30 d curing, while the slurries containing both fly ash and silica experience strength enhancement from 2 to 90 d. The strength test results are corroborated by further evidences from permeability tests as well as microstructure analysis of set cement. Composition of set cement evaluated by quantitative X-ray diffraction analyses with partial or no known crystal structure(PONKCS) method and thermogravimetry analyses revealed that the conversion of amorphous C-(A)-S-H to crystalline phases is the primary cause of long-term strength retrogression.The addition of fly ash can reduce the initial amount of C-(A)-S-H in the set cement, and its combined use with silica can prevent the crystallization of C-(A)-S-H, which is believed to be the working mechanism of this new admixture in improving long-term strength stability of oil well cement systems. 展开更多
关键词 Fly ash Long-term strength retrogression High temperature Quantitative X-ray diffraction(QXRD) Partial or no known crystal structure(PONKCS)
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微胶囊粒径对水工自修复混凝土力学性能的影响研究
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作者 袁金峰 张丽梅 +2 位作者 王忠 董广昊 王斐 《中国农村水利水电》 北大核心 2025年第2期193-200,共8页
微胶囊自修复技术是解决混凝土劣化、提升耐久性的有效方法,近年来研究者对毫米级和百微米级自修复微胶囊的研究揭示了微胶囊的自修复作用,但都造成了基体混凝土力学性能的减低。通过控制搅拌速率等措施合成了粒径40μm和粒径8μm的微胶... 微胶囊自修复技术是解决混凝土劣化、提升耐久性的有效方法,近年来研究者对毫米级和百微米级自修复微胶囊的研究揭示了微胶囊的自修复作用,但都造成了基体混凝土力学性能的减低。通过控制搅拌速率等措施合成了粒径40μm和粒径8μm的微胶囊,并对混凝土的力学性能影响进行了研究,结果表明:(1)两种粒径微胶囊化学结构稳定,热稳定性较好,加入混凝土在搅拌后大粒径微胶囊有破碎现象,小粒径微胶囊表面变得粗糙。当混凝土受损出现裂缝时,微胶囊会及时破裂,囊芯材物质会流出对混凝土进行修复。(2)40μm的微胶囊掺入混凝土后,均造成混凝土抗压强度和抗折强度的下降;8μm的微胶囊掺入混凝土后,在4%以下掺量时混凝土抗压强度和抗折强度逐渐上升,超过4%以后开始下降。(3)40μm和8μm的微胶囊均对混凝土抗压和抗折造成的损伤具有修复作用,40μm的微胶囊混凝土最大抗压、抗折强度恢复率为110.2%、113.0%,8μm的微胶囊混凝土最大抗压、抗折强度恢复率为115.6%、114.7%。但当掺量增加到一定量时会到达拐点,然后修复效果开始降低。水工混凝土应用可通过控制微胶囊粒径,能够有效改善混凝土力学性能,且在混凝土受到破坏损伤时及时自我修复。 展开更多
关键词 微米级微胶囊 自修复 抗压强度 抗折强度 损伤恢复率
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基于CSR规范的油船典型节点疲劳强度影响因素分析
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作者 李旭 张道坤 何凯 《舰船科学技术》 北大核心 2025年第3期72-76,共5页
协调后的CSR规范已经生效9年的时间,在近些年的船舶设计与审图过程中发现了若干疲劳方面的问题。本文选取一型阿芙拉油船对其典型节点位置的疲劳强度问题进行分析讨论,尤其关注之前CSR-OT规范疲劳评估范畴以外的评估节点,例如,底边舱折... 协调后的CSR规范已经生效9年的时间,在近些年的船舶设计与审图过程中发现了若干疲劳方面的问题。本文选取一型阿芙拉油船对其典型节点位置的疲劳强度问题进行分析讨论,尤其关注之前CSR-OT规范疲劳评估范畴以外的评估节点,例如,底边舱折角位置处较难满足规范要求的嵌接肘板趾端、横舱壁水平桁根部和趾端、甲板分段扇形孔等。并就相关位置处疲劳强度的影响因素、规范可能存在的问题、设计标准进行分析讨论,形成若干结论,为未来船舶设计提供参考。 展开更多
关键词 油船 疲劳强度 CSR
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不同加载速度下巴厘菠萝果皮穿刺力学特性研究
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作者 薛忠 潘睿 张秀梅 《农机化研究》 北大核心 2025年第3期169-175,共7页
对菠萝果皮穿刺力学特性进行研究,旨在为果实品质评价提供参考,为菠萝采收、加工设备优化改进提供参考,为减轻菠萝果损伤提供理论依据。以巴厘菠萝果皮为研究对象,根据菠萝生长规律将果皮划分为上、中、下3个部位,基于WSW-50E微机控制... 对菠萝果皮穿刺力学特性进行研究,旨在为果实品质评价提供参考,为菠萝采收、加工设备优化改进提供参考,为减轻菠萝果损伤提供理论依据。以巴厘菠萝果皮为研究对象,根据菠萝生长规律将果皮划分为上、中、下3个部位,基于WSW-50E微机控制电子万能试验机,选取2、5、10、20、50 mm/min等5个加载速度对菠萝不同部位进行穿刺力学特性试验,分析不同加载速度、不同穿刺部位和不同穿刺压头截面对果皮穿刺强度的影响。试验结果表明:果皮中部穿刺强度最低,下部穿刺强度最高;压头截面与不同穿刺部位对果皮穿刺强度均呈现负相关极显著(p<0.01),不同穿刺部位对果皮穿刺强度均呈现正相关极显著(p<0.01),压头截面与穿刺部位对穿刺强度影响极显著(p<0.01)。由此得出结论:果皮穿刺强度与压头截面、穿刺部位呈极显著相关关系,加载速度与穿刺强度呈不相关关系。 展开更多
关键词 菠萝果皮 加载速度 压头截面 穿刺强度
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饱和土不排水计算理论与方法探究
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作者 宋二祥 《岩土工程学报》 EI CAS 北大核心 2025年第1期1-29,共29页
饱和土不排水强度及变形计算是岩土工程中颇具难度的复杂课题,至今业内对其多方面的问题仍存争议。结合笔者多年的相关学习研究,对此课题进行了较系统深入的探究。首先讨论了饱和土不排水计算的总应力法与有效应力法及各自的局限,并从... 饱和土不排水强度及变形计算是岩土工程中颇具难度的复杂课题,至今业内对其多方面的问题仍存争议。结合笔者多年的相关学习研究,对此课题进行了较系统深入的探究。首先讨论了饱和土不排水计算的总应力法与有效应力法及各自的局限,并从有限元基本方程阐述了孔隙水压的处理,指出不管采用何种方法均应注意区分两类孔隙水压和两种总应力,即“土水分算”。随后,审视了Skempton-Henkel超静水压计算公式对不同应力路径的计算准确性,将它与MC强度准则相结合构建了饱和土不排水强度模型,对等向固结与不等向固结下饱和土不排水强度特性进行了分析,可为实际工程计算中强度参数选取提供参考。建议实际不排水计算采用广义Tresca强度准则,针对采用MC强度准则按有效应力法进行不排水计算会有较大误差的问题,除指出应直接输入不排水强度外,还给出一种采用等代强度参数的处理方法。在上述讨论基础上,剖析了固结不排水强度指标(CU指标)的缺陷,指出仅当土中总应力路径与测定CU指标的试验中相同时,用此指标直接计算才能给出准确的结果,特别是对地基承载力问题直接用此指标计算会给出严重偏危险的结果。还对基坑工程中主动、被动土水压力采用CU指标并土水合算的问题进行了分析,建议了合理计算方法及相应公式;对发生不排水极限土压时的滑移面倾角这一业内多人深感困惑的问题也进行了探讨。最后,针对饱和地基承载力及短期沉降计算,剖析了业内现行方法的问题,在深入解读有关因素影响机理的基础上给出新的计算方法。所给承载力计算公式,可较准确统一计算排水和不排水条件下的承载力,能更好保证设计的安全经济;所给沉降计算新方法能较准确计算饱和地基的短期沉降,对地基的排水沉降也可望取得较好结果,值得进一步发展完善。 展开更多
关键词 饱和黏性土 不排水强度 超静水压 固结不排水强度指标 地基承载力 地基沉降
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粉土剪切应力-位移关系曲线峰值后区特性试验研究
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作者 王亮亮 田建胜 +4 位作者 朱前龙 杨默涵 马超智 柳志军 刘泽 《铁道学报》 北大核心 2025年第1期146-152,共7页
剪切应力-位移关系峰值后区发展特性是复活型滑坡和季节性滑坡剪切带强度参数合理选择与坡体稳定处治的关键问题。以江苏新沂地区粉土为研究对象,制备不同初始密实、湿度状态的土体试样,通过大变形剪切试验研究初始压实系数、含水率、... 剪切应力-位移关系峰值后区发展特性是复活型滑坡和季节性滑坡剪切带强度参数合理选择与坡体稳定处治的关键问题。以江苏新沂地区粉土为研究对象,制备不同初始密实、湿度状态的土体试样,通过大变形剪切试验研究初始压实系数、含水率、法向约束荷载对粉土剪切应力-位移关系曲线峰值后区形态的影响规律。结果表明:低法向约束荷载条件下(25、50 kPa),粉土剪切峰值后区存在“二次硬化”现象,且“二次硬化”趋势随压实系数增加而增强,随初始含水率增加而减弱;“二次硬化”阶段内粉土摩擦角由残余强度阶段的3.4°增长至4.35°,黏聚力由残余强度阶段的2.643 kPa提升至8.135 kPa。 展开更多
关键词 粉土 剪切应力-位移关系 二次硬化现象 抗剪强度
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