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桩身压缩变形对基桩承载力取值的影响
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作者 梁勇 《山西建筑》 2007年第1期118-119,共2页
介绍了桩土的相互作用与静载试压方法,通过有限元分析研究了桩身压缩变形对基桩承载力试压结果的影响,探讨了考虑桩身压缩的承载力取值方法,对于城市建设中的桩基应用具有一定的参考意义。
关键词 静载试压 桩基承 有限元 桩身缩变形
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支架法现浇连续梁桥预压监测 被引量:4
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作者 赵庆昌 《山西交通科技》 2008年第6期32-34,共3页
介绍了现浇预应力砼连续箱梁支架静载试压,通过对其测试结果的分析,提供了可靠的主梁施工预抬值,使桥梁的线形符合设计要求,且有效地减少了工作量和缩短了施工工期。
关键词 满堂支架 静载试压 预抬值 变形值
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水泥土搅拌桩在多层工业厂房中的应用
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作者 唐献文 《安徽建筑》 2002年第5期69-69,71,共2页
本文针对具有典型意义的长江漫滩冲积地貌上某多层工业厂房,提出用水泥土搅拌桩复合地基处理的方案代替原灌注桩方案,并取得了良好的经济效果,最后通过静载试压、动力检测、抽芯试验,确保了工程质量。
关键词 多层工业厂房 水泥土搅拌桩 复合地基 检测 静载试压 动力检测 抽芯
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Investigating the Effect of Fatigue on Fracturing Resistance of Rocks 被引量:1
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作者 Nazife Erarslan David John Williams 《Journal of Civil Engineering and Architecture》 2012年第10期1310-1318,共9页
There is no doubt that an understanding of brittle rock fracturing is a key element in the solution of many engineering problems that involve rock structures. Some rock structures such as bridge and dam abutments and ... There is no doubt that an understanding of brittle rock fracturing is a key element in the solution of many engineering problems that involve rock structures. Some rock structures such as bridge and dam abutments and foundations, and tunnel walls, undergo both static and cyclic loading caused by drilling and blasting, and vehicle-induced vibrations. This type of loading often causes rock to fail at a lower than its static strength due to the effect of rock fatigue. A series of laboratory diametrical compression tests was performed on Brisbane tuff disc specimens to investigate their mode-I fracture toughness response to static and cyclic loading, as a function of the applied load. Both the static and cyclic loading tests were carried out on CCNBD (cracked chevron notched Brazilian disc) rock specimens. In the tests described herein, the reduction in fracture toughness under dynamic cyclic loading was found to be up to 48% of the static fracture toughness. Contrary to the static tests, the cyclic tests produced much more crushed material in front of the tip of the chevron notched crack. 展开更多
关键词 Fracture toughness rock fatigue CCNBD SEM (scanning electron microscope)
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