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聚乙烯/石蜡相变储能材料的渗出性能 被引量:1
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作者 刘军 朱旭 谷亚新 《塑料科技》 CAS 北大核心 2014年第2期49-52,共4页
以石蜡作为相变介质,以含有石墨的高密度聚乙烯(HDPE)为载体基质,通过熔融共混的方法制备出HDPE/石蜡相变储能材料,研究了加入了硅藻土和活性炭的HDPE/石蜡相变储能材料发生相变后,固体石蜡的渗出程度。通过SEM分析,背散射电镜放大到4 ... 以石蜡作为相变介质,以含有石墨的高密度聚乙烯(HDPE)为载体基质,通过熔融共混的方法制备出HDPE/石蜡相变储能材料,研究了加入了硅藻土和活性炭的HDPE/石蜡相变储能材料发生相变后,固体石蜡的渗出程度。通过SEM分析,背散射电镜放大到4 500倍后,可以看到硅藻土在HDPE基体中的附着镶嵌,放大2 200倍后,得到活性炭在HDPE基体中整齐排布的图像。扩散-渗出圈法测试结果表明:50%的石蜡含量是HDPE对石蜡的大包覆量;硅藻土和活性炭都能增强固体石蜡这种相变介质在发生相变后的渗出稳定性。 展开更多
关键词 高密度聚乙烯 石蜡 相变储能材料 硅藻土 活性炭 渗出稳定性
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Seismic stability of loess tunnels under the effects of rain seepage and a train load 被引量:4
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作者 CHENG XuanSheng MA Liang +2 位作者 YU DongPo FAN Jin LI De 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第5期735-747,共13页
Loess tunnels are widely used in transportation engineering and are irreplaceable parts of transportation infrastructure. In this paper, a dynamic finite element method is used to analyze the coupled effects of a trai... Loess tunnels are widely used in transportation engineering and are irreplaceable parts of transportation infrastructure. In this paper, a dynamic finite element method is used to analyze the coupled effects of a train vibration load and rainfall seepage. By calculating the variation in the safety factor of a loess tunnel because of the effects of various factors, such as different rainfall intensities and soil thicknesses, the dynamic stability of the loess tunnel is studied under the condition of a near-field pulse-like earthquake. The results show that the security and stability of the tunnel decrease gradually with decreasing burial depth. In addition, the plastic strain of the tunnel is mainly distributed on both sides of the vault and the feet, and the maximum value of the critical strain occurs on both sides of the arch feet. Because of the effects of the train vibration load and rainfall seepage, the safety factor of the loess tunnel structure decreases to a certain degree. Moreover, the range and maximum value of the plastic strain increase to various degrees. 展开更多
关键词 loess tunnel rain water seepage earthquake stability
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