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发布时间:2020-01-06 00:00:00
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房建材料及制品

不同隔振方案下混凝土框架结构的抗震性能对比与优化分析
不同隔振方案下混凝土框架结构的抗震性能对比与优化分析
  • 卢红霞1,周振纲2
2021年第10期
摘要
引用本文
摘   要:为了分析和对比不同隔振方案下混凝土框架结构的抗震性能,建立了混凝土框架三维模型,设定基础隔振、2层隔振、4层隔振和6层隔振四种隔振方案,对地震输入参数和隔振支座参数进行了研究,依据SAP软件内置的EL波和CPC波,分析了模型的基础剪应力、层间剪应力和顶层结构加速变化规律。结果表明:不同地震波输入后,有隔振的模型层间剪应力、基础剪应力和顶层加速度相较于无隔振方案均大幅降低,但水平方向上差别不大;采用基础隔振和2层隔振后,模型的基础剪应力从10 988~13 666 kN降至2 366~3 544 kN,降低幅度达73%~81%;四种隔振方案的综合评价值分别为0.89、0.91、0.83和0.70,其中,2层隔振方案的施工成本和抗震性能均最优,基础隔振方案次之,但施工成本稍高,4层和6层隔振方案较差。 Abstract: In order to analyze and compare the seismic performance of concrete frame structure under different vibration isolation schemes, a three-dimensional model of concrete frame structure was established, and four vibration isolation schemes were set for foundation vibration isolation, 2-story vibration isolation, 4-story vibration isolation, and 6-story vibration isolation, and the seismic input parameters and vibration isolation support parameters were studied. According to the built-in EL wave and CPC wave of SAP software, the variation laws of foundation shear stress, interlayer shear stress and acceleration of top structure of the model were analyzed. The results show that after different seismic waves are input, the interlayer shear stress,  foundation shear stress and top floor acceleration of the vibration isolation model are significantly reduced compared with those without vibration isolation scheme, but there is little difference in the horizontal direction. For foundation vibration isolation and 2-story vibration isolation, the foundation shear stress of the model decreases from 10 988~13 666 kN to 2 366~3 544 kN, with a reduction range of 73%~81%. The comprehensive evaluation values of the four vibration isolation schemes are 0.89, 0.91, 0.83 and 0.70 respectively. Among them, the construction cost and seismic performance of the 2-story vibration isolation scheme are the best, and the foundation vibration isolation scheme is the second, but the construction cost is slightly higher, and the 4-story and 6-story vibration isolation schemes are poor.
卢红霞,周振纲.不同隔振方案下混凝土框架结构的抗震性能对比与优化分析[J].混凝土与水泥制品,2021(10):72-76. LU H X,ZHOU Z G.Analysis of Seismic Performance of Concrete Frame Structure Under Different Vibration Isolation Schemes[J].China Concrete and Cement Products,2021(10):72-76.
灌浆接头单向拉伸性能的研究分析
灌浆接头单向拉伸性能的研究分析
  • 佟晓超,王 博,昌文芳,崔德奎
2021年第10期
摘要
引用本文
摘   要:研究了灌浆料和钢筋之间的黏结强度与灌浆料抗压强度的关系,分析了利用新型工艺制造的套筒是否满足JGJ 355—2015《钢筋套筒灌浆连接应用技术规程》的要求,并通过既有168个钢筋拔出试验数据验证了黏结强度与灌浆料抗压强度之间的线性关系。结果表明:黏结强度与灌浆料抗压强度存在强相关性;利用滚压、挤压、铸造和切削工艺制得的套筒均满足JGJ 355—2015对于连接件破坏的要求。 Abstract: The relationship between the bond strength of grouting materials and steel bar and the compressive strength of grouting materials was studied, and whether the sleeve made by the new technology could meet the requirements of JGJ 355—2015 Technical Specification for Groute Sleeve Splicing of Rebars was analyzed. The linear relationship between the bond strength and the compressive strength of grouting materials was verified by using the existing datas of 168 rebar pulling out tests. The results show that there is a strong correlation between bond strength and compressive strength of grouting materials. The sleeves made by rolling, extrusion, casting and cutting process can meet the requirements of JGJ 355—2015 for connection failure.
佟晓超,王博,昌文芳,等.灌浆接头单向拉伸性能的研究分析[J].混凝土与水泥制品,2021(10):67-71. TONG X C,WANG B,CHANG W F,et al.Research and Analysis of Uniaxial Tensile Properties of Grouting Joints[J].China Concrete and Cement Products,2021(10):67-71.
超轻泡沫混凝土结构断层成因及抑制措施研究
超轻泡沫混凝土结构断层成因及抑制措施研究
  • 杨 俊1,2,杨鼎宜1,王武祥2,3,刘晓通4,张磊蕾2,3,王爱军2,吴子豪2
2021年第10期
摘要
引用本文
摘   要:研究了超轻泡沫混凝土结构断层成因及抑制措施。结果表明:水胶比、浆体温度、速凝剂和纤维掺量对超轻泡沫混凝土中结构断层的形成有重要影响;通过改善发泡浆体的性能、优化水温及速凝剂掺量来平衡料浆的发泡速率和凝结硬化速率、添加纤维来提高多孔结构抵抗内应力的能力,均能有效解决超轻泡沫混凝土结构断层问题;适宜的技术参数为:水胶比控制在0.885~0.965之间,水温设定为30 ℃,速凝剂掺量为6.0%,纤维掺量不低于0.75%。 Abstract: The causes of structural faults and the suppression measures of ultra light foamed concrete were studied. The results show that the water-binder ratio, slurry temperature, accelerating agent and fiber content have important effects on the formation of structural faults in ultra light foamed concrete. The fault problem of ultra light foamed concrete structure can be effectively solved by improving the performance of the foamed slurry, optimizing the water temperature and the accelerating agent content to balance the foaming rate and setting and hardening rate of the slurry, and adding fibers to improve the ability of the porous structure to resist internal stress. The suitable technical parameters are as follows: water-binder ratio is controlled between 0.885 and 0.965, water temperature is 30 ℃, accelerator agent content is 6.0%, fiber content is not less than 0.75%.
杨俊,杨鼎宜,王武祥,等.超轻泡沫混凝土结构断层成因及抑制措施研究[J].混凝土与水泥制品,2021(10):62-66. YANG J,YANG D Y,WANG W X,et al.Study on Causes and Restraining Measures of Ultra Light Foamed Concrete Structure Faults[J].China Concrete and Cement Products,2021(10):62-66.
交变荷载作用下CFRP布加固RC梁耐久性能试验研究
交变荷载作用下CFRP布加固RC梁耐久性能试验研究
  • 王吉文1,杜晓明2,袁振圣3
2021年第10期
摘要
引用本文
摘   要:为了探究CFRP布加固钢筋混凝土梁(RC梁)在交变荷载作用下的耐久性,对8根CFRP布加固RC梁进行了恒载和交变荷载作用下的15 d、30 d老化试验,并通过三点弯曲试验得到了试验梁在不同荷载作用下的破坏模式、极限荷载、极限应变、弯曲性能、裂缝数量以及裂缝宽度。结果表明:经交变荷载作用15 d、30 d后,CFRP布加固RC梁的力学性能下降显著,试验梁的极限荷载、剥离荷载与极限应变均呈下降趋势;与相同龄期下的恒载(24 kN)相比,交变荷载作用15 d、30 d后,试验梁的极限应变平均降低了11.44%、15.23%;交变载荷作用下CFRP布加固RC梁的抗裂性能与弯曲性能减弱程度比恒载作用更显著。 Abstract: In order to explore the durability of reinforced concrete(RC) beams strengthened with CFRP sheets under alternating loads, eight CFRP cloth-reinforced RC beams were subjected to 15 d and 30 d aging tests under dead and alternating loads, and the failure mode, ultimate strain, bending properties, crack number and crack width of test beams under different loads were obtained through the three-point bending tests. The results show that after 15 d and 30 d of alternating loads, the mechanical properties of RC beams strengthened with CFRP sheets decrease significantly, and the ultimate load, peeling failure load and ultimate strain of the test beams decrease. Compared with the dead load(24 kN) under the same age, the ultimate strain of the test beam is reduced by 11.44% and 15.23% on average after the alternating loads is applied for 15 d and 30 d. The crack resistance and bending properties of the test beams under alternating loads is weaker than that under dead loads. 
王吉文,杜晓明,袁振圣.交变荷载作用下CFRP布加固RC梁耐久性能试验研究[J].混凝土与水泥制品,2021(10):57-61. WANG J W,DU X M,YUAN Z S.Experimental Study on Durability of RC Beams Strengthened with CFRP Sheets Under Alternating Loads[J].China Concrete and Cement Products,2021(10):57-61.
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