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解读蜂窝板的弯曲刚度及弯曲面板强度 被引量:1
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作者 李谏 《中国建材科技》 2010年第5期53-57,共5页
本文讲述了石材蜂窝板和铝蜂窝板中性轴位置的确定方法,解读了弯曲刚度和弯曲面板强度。介绍了笔者单位为方便铝蜂窝板工程设计而给出单位宽度弯曲刚度和单位宽度抗弯截面模量的做法。
关键词 铝蜂窝板 石材蜂窝板 弯曲 中性轴 弯曲刚度 弯曲面板强度
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直立锁边屋面板系统抗风性能影响因素的试验研究
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作者 朱斌 《中国建筑防水》 2020年第10期31-33,45,共4页
国内金属屋面抗风性能设计方法相对还不成熟。本研究通过试验手段,对两种不同厚度的直立锁边镀铝锌钢板在不同檩条间距下的抗风揭试验数据进行分析,得出在屋面板本身强度较高比强度较低时,缩小檩条间距对屋面板系统的抗风等级提升效果... 国内金属屋面抗风性能设计方法相对还不成熟。本研究通过试验手段,对两种不同厚度的直立锁边镀铝锌钢板在不同檩条间距下的抗风揭试验数据进行分析,得出在屋面板本身强度较高比强度较低时,缩小檩条间距对屋面板系统的抗风等级提升效果更加显著的结论。 展开更多
关键词 直立锁边屋面板 抗风揭试验 抗风等级 檩条间距 面板强度
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古田溪三级大坝老化病害及其治理 被引量:5
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作者 邢林生 徐世元 《水力发电》 北大核心 2005年第9期69-71,74,共4页
古田溪三级钢筋混凝土平板支墩坝,建成蓄水至今已40多年,随着岁月的流逝,坝基帷幕防渗能力逐渐衰减,迎水面遭受到严重风化侵蚀,面板渗漏溶蚀不断加剧,表层碳化深度日益累进,坝体裂缝增生或扩展,面板强度大幅度降低。为了遏制大坝进一步... 古田溪三级钢筋混凝土平板支墩坝,建成蓄水至今已40多年,随着岁月的流逝,坝基帷幕防渗能力逐渐衰减,迎水面遭受到严重风化侵蚀,面板渗漏溶蚀不断加剧,表层碳化深度日益累进,坝体裂缝增生或扩展,面板强度大幅度降低。为了遏制大坝进一步遭受到老化病害的危害,确保大坝安全运行,采取了一系列针对性防护和加固措施。对该坝老化症状坚持定期检测分析,并及时进行治理,对于其他大坝具有一定的借鉴意义。 展开更多
关键词 坝基帷幕 风化侵蚀 渗漏溶蚀 表层碳化 坝体裂缝 面板强度 古田溪三级大坝
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Prediction of representative deformation modulus of longwall panel roof rock strata using Mamdani fuzzy system 被引量:7
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作者 Mohammad Rezaei Mostafa Asadizadeh +1 位作者 Abbas Majdi Mohammad Farouq Hossaini 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第1期23-30,共8页
Deformation modulus is the important parameter in stability analysis of tunnels, dams and mining struc- tures. In this paper, two predictive models including Mamdani fuzzy system (MFS) and multivariable regression a... Deformation modulus is the important parameter in stability analysis of tunnels, dams and mining struc- tures. In this paper, two predictive models including Mamdani fuzzy system (MFS) and multivariable regression analysis (MVRA) were developed to predict deformation modulus based on data obtained from dilatometer tests carried out in Bakhtiary dam site and additional data collected from longwall coal mines. Models inputs were considered to be rock quality designation, overburden height, weathering, unconfined compressive strength, bedding inclination to core axis, joint roughness coefficient and fill thickness. To control the models performance, calculating indices such as root mean square error (RMSE), variance account for (VAF) and determination coefficient (R^2) were used. The MFS results show the significant prediction accuracy along with high performance compared to MVRA results. Finally, the sensitivity analysis of MFS results shows that the most and the least effective parameters on deformation modulus are weatherin~ and overburden height, respectively. 展开更多
关键词 Deformation modulusDilatometer testMamdani fuzzy systemMultivariable regression analysis
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Experimental and finite element analysis for fracture of coating layer of galvannealed steel sheet 被引量:2
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作者 S.I.KIM J.U.HER +1 位作者 Y.C.JANG Y.LEE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第A01期111-116,共6页
Mechanical properties of galvannealed (GA) steel sheet used for automotive exposed panel and predicted failure phenomenon of its coating layer were evaluated using finite element method. V-bending test was performed t... Mechanical properties of galvannealed (GA) steel sheet used for automotive exposed panel and predicted failure phenomenon of its coating layer were evaluated using finite element method. V-bending test was performed to understand better the fracture of coating layer of GA steel sheet during plastic deformation. Yield strength of the coating layer was calculated by using a relative difference between hardness of coating layer measured from the nano-indentation test and that of substrate. To measure shearing strength at the interface between substrate and coating layer, shearing test with two specimens attached by an adhesive was carried out. Using the mechanical properties measured, a series of finite element analyses coupled with a failure model was performed. Results reveal that the fracture of coating layer occurs in an irregular manner at the region where compressive deformation is dominant. Meanwhile, a series of vertical cracks perpendicular to material surface are observed at the tensile stressed-region. It is found that 0.26-0.28 of local equivalent plastic strain exists at the coating and substrate at the beginning of failure. The fracture of coating layer depends on ductility of the coating layer considerably as well. 展开更多
关键词 galvannealed steel sheet fracture simulation coating layer finite element analysis failure model
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Failure mechanism and control technology of longwall coalface in large-cutting-height mining method 被引量:8
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作者 Wang Jiachen Yang Shengli Kong Dezhong 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第1期111-118,共8页
The stability control of longwall coalface is the key technology of large-cutting-height mining method.Therefore,a systematic study of the factors that affect coalface stability and its control technology is required ... The stability control of longwall coalface is the key technology of large-cutting-height mining method.Therefore,a systematic study of the factors that affect coalface stability and its control technology is required in the development of large-cutting-height mining method in China. After the practical field observation and years of study,it was found that the more than 95% of failures in coalface are shear failure. The shear failure analysis model of coalface has been established,that can perform systematic study among factors such as mining height,coal mass strength,roof load,support resistance,and face flipper protecting plate horizontal force. Meanwhile,sensitivity analysis of factors influencing coalface stability showed that improving support capacity,cohesion of coal mass and decreasing roof load of coalface are the key to improve coalface stability. Numerical simulation of the factors affecting coalface stability has been performed using UDEC software and the results are consistent with the theoretical analysis. The coalface reinforcement technology of large-cutting-height mining method using the grouting combined with coir rope is presented. Laboratory tests have been carried out to verify its reinforcement effect and practical application has been implemented in several coal mines with good results.It has now become the main technology to reduce longwall coalface failure of large-cutting-height mining method. 展开更多
关键词 Large-cutting-height mining methodLongwall coalfaceShear failureCoalface stability control technology
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Effect of Surface Treatment on Bonding Strength of Aluminum-Magnesium Hot-Rolled Composite Plate 被引量:1
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作者 Yang Bin Bai Wenbo +2 位作者 Zheng Yang Yu Chao Xiao Hong 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2024年第8期2167-2173,共7页
The effect of different surface treatments on the bonding strength of composite plates was investigated under the conditions of 400℃ and reduction ratio of 45%.Results show that the wire brush grinding treatment can ... The effect of different surface treatments on the bonding strength of composite plates was investigated under the conditions of 400℃ and reduction ratio of 45%.Results show that the wire brush grinding treatment can only eliminate the oxide film on the plate surface,but it can hardly produce a hard layer on the plate surface.The bonding effect depends on the element diffusion promoted by the close contact between the metals on both sides of the interface.After anodic oxidation,there is a hard layer on the metal surface,and the hard layer broken during the rolling process forms a mechanical occlusion at the bonding interface.However,the hard layer cannot form an effective combination with the metal at the interface,and the bonding can only occur in the fresh metal bonding area at the crack of the hard layer.The acid-alkali washing treatment can completely remove the hard layer on the surface of both alloys without increasing the surface roughness of the plate,and the metal on both sides of the interface is more closely bonded during the rolling process.The optimal bonding strength can be obtained by surface treatment of acid-alkali washing for the aluminum-magnesium hot-rolled bonding. 展开更多
关键词 aluminum-magnesium composite plate surface treatment hard layer bonding strength
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