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奇偶层交错对瓦楞纸板缓冲性能的影响 被引量:2
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作者 孙德强 郝静 +2 位作者 李靖靖 安兴 孙玉瑾 《包装工程》 CAS 北大核心 2020年第3期108-114,共7页
目的研究在奇偶层交错方式下,交错角度对瓦楞纸板缓冲性能的影响。方法将单瓦楞纸板按奇偶层交错的方式进行多层粘合以制备试样,交错角度分别为0°,30°,45°,60°和90°,采用共面静压、侧向静压和共面冲击的试验方... 目的研究在奇偶层交错方式下,交错角度对瓦楞纸板缓冲性能的影响。方法将单瓦楞纸板按奇偶层交错的方式进行多层粘合以制备试样,交错角度分别为0°,30°,45°,60°和90°,采用共面静压、侧向静压和共面冲击的试验方法,对各试样共面和侧向的缓冲性能进行研究。结果与奇偶层不交错的样品相比,在共面静压下,奇偶交错使瓦楞纸板的初始峰应力、平台应力、密实化单位体积变形能和密实化比吸能分别提高了4.15%~9.38%,6.49%~10.39%,5.00%~7.94%和7.43%~10.81%;在沿瓦楞方向侧向静压下,抗压强度和平台应力分别减少了1.18%~14.34%和0.89%~20.66%,密实化比吸能和密实化单位体积变形能与交错角度近似呈二次函数关系。在共面冲击载荷下,当交错角度一定时,总能量吸收与冲击能近似呈一次函数关系。结论奇偶层交错一定角度能改善瓦楞纸板的共面缓冲性能,降低其沿瓦楞方向的侧向缓冲性能。 展开更多
关键词 瓦楞纸板 奇偶层交错 共面静压 侧向静压 共面冲击 缓冲性能
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Wind-induced responses of super-large cooling towers 被引量:3
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作者 柯世堂 葛耀君 +2 位作者 赵林 陈少林 Y.Tamura 《Journal of Central South University》 SCIE EI CAS 2013年第11期3216-3228,共13页
Traditional gust load factor(GLF)method,inertial wind load(IWL)method and tri-component method(LRC+IWL)cannot accurately analyze the wind-induced responses of super-large cooling towers,so the real combination formula... Traditional gust load factor(GLF)method,inertial wind load(IWL)method and tri-component method(LRC+IWL)cannot accurately analyze the wind-induced responses of super-large cooling towers,so the real combination formulas of fluctuating wind-induced responses and equivalent static wind loads(ESWLSs)were derived based on structural dynamics and random vibration theory.The consistent coupled method(CCM)was presented to compensate the coupled term between background and resonant response.Taking the super-large cooling tower(H=215 m)of nuclear power plant in Jiangxi Province,China,which is the highest and largest in China,as the example,based on modified equivalent beam-net design method,the aero-elastic model for simultaneous pressure and vibration measurement of super-large cooling tower is firstly carried out.Then,combining wind tunnel test and CCM,the effects of self-excited force on the surface pressures and wind-induced responses are discussed,and the wind-induced response characteristics of background component,resonant component,coupled term between background and resonant response,fluctuating responses,and wind vibration coefficients are discussed.It can be concluded that wind-induced response mechanism must be understood to direct the wind resistant design for super-large cooling towers. 展开更多
关键词 super-large cooling towers wind-induced responses wind vibration coefficients aero-elastic model consistent coupled method
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