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压电式力传感器三向分载研究 被引量:2
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作者 张军 胡沛锴 +2 位作者 马奕萱 王郁赫 任宗金 《仪表技术与传感器》 CSCD 北大核心 2022年第11期123-126,共4页
针对测力仪中因敏感元件自身量程上限不能满足重载测试需求的问题,以压电力传感器为研究对象开展了分载研究。通过建立传感器分载装置模型,对模型的三向分载公式及理论分载比进行推导计算,并利用有限元仿真与标定实验对影响分载效果的... 针对测力仪中因敏感元件自身量程上限不能满足重载测试需求的问题,以压电力传感器为研究对象开展了分载研究。通过建立传感器分载装置模型,对模型的三向分载公式及理论分载比进行推导计算,并利用有限元仿真与标定实验对影响分载效果的因素进行了分析。结果表明:分载环横截面积变化及高度差异是影响分载效果的主要因素,分载比计算值与实验测试值的相对误差在4.6%以内。 展开更多
关键词 大力值 轴向分载 侧向分载 分载 压电传感器 静态标定
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轴用压电式六维大力值测力仪分载研究 被引量:2
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作者 房庆华 张军 +2 位作者 李映君 贾振元 钱敏 《仪器仪表学报》 EI CAS CSCD 北大核心 2011年第2期439-444,共6页
分载比的确定是轴用压电式六维大力值测力仪设计的关键。对现有的该类测力仪分载原理进行了分析研究,建立了理论结构模型,基于材料力学、结构力学对各向分载比公式进行了理论推导,得到测力仪各向分载比公式,并通过ANSYS软件对受夹具夹... 分载比的确定是轴用压电式六维大力值测力仪设计的关键。对现有的该类测力仪分载原理进行了分析研究,建立了理论结构模型,基于材料力学、结构力学对各向分载比公式进行了理论推导,得到测力仪各向分载比公式,并通过ANSYS软件对受夹具夹紧力分布影响较大的轴向分载进行仿真分析,修正了轴向分载比公式。设计了静态标定实验,对传感器及测力仪分别进行了静态标定,验证了各项分载比理论公式,分析了影响分载比的主要参数。结果表明,该公式可为轴用压电式六维大力值测力仪提供设计依据。 展开更多
关键词 压电石英 大力值 轴向分载 横向分载 分载
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Axial bearing behavior of super-long piles in deep soft clay over stiff layers 被引量:4
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作者 邹新军 赵明华 《Journal of Central South University》 SCIE EI CAS 2013年第7期2008-2016,共9页
In order to find out the bearing behavior of super-long piles located in deep soft clay over stiff layers around Dongting Lake, China, a test pile was first designed with the field loading test finished afterward. Bas... In order to find out the bearing behavior of super-long piles located in deep soft clay over stiff layers around Dongting Lake, China, a test pile was first designed with the field loading test finished afterward. Based on the measured test results, load transfer mechanism and bearing behavior of the pile shaft were discussed in detail. Then, by introducing a bi-linear model for shaft friction and the tri-linear model for pile tip resistance, respectively, the governing differential equation of pile soil system was set up by the load transfer method with the analytical solutions derived as well, taking into account the effect by stratified feature and various bearing conditions of subsoil, material nonlinearity, and the sediment under pile tip. Furthermore, formulas to determine the axial capacity of super-long piles by the pile top settlement were advised and applied to analyze the test pile. Good agreement between the predicted load settlement variations and the measured data is obtained to verify the validity of the present method. The results also show that, the axial bearing capacity of super-long piles should be controlled by the allowable pile top settlement, and buckling stability of the pile shaft should be paid attention as well. 展开更多
关键词 super-long pile SETTLEMENT load transfer model axial load capacity field test
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Finite element analysis of couple effect of soil displacement and axial load on single inclined pile 被引量:1
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS 2014年第9期3656-3664,共9页
The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite eleme... The couple effect of soil displacement and axial load on the single inclined pile in cases of surcharge load and uniform soil movement is discussed in detail with the methods of full-scale field tests and finite element method. Parametric analyses including the degree of inclination and the distance between soil and pile are carried out herein. When the displacement of soil on the left side and right side of a pile is identical, deformation of a vertical pile and an inclined pile is highly close in both cases of surcharge load and uniform soil movement. When the couple effect of soil displacement and axial load occurs, settlement of an inclined pile is greater than that of a vertical pile under the same axial load, and bearing capacity of an inclined pile is smaller than that of a vertical pile. This is quite different from the case when the inclined pile is not affected by soil displacement. For inclined piles, P-Δ effect of axial load would lead to a large increase in bending moment, however, for the vertical pile, P-Δ effect of axial load can be neglected. Although the direction of inclination of piles is reverse, deformation of piles caused by uniform soil movement is totally the same. For the inclined piles discussed herein, bending moment(-8 m to-17 m under the ground) relies heavily on uniform soil movement and does not change during the process of applying axial load. When the thickness of soil is less than the pile length, the greater the thickness of soil, the larger the bending moment at lower part of the inclined pile. When the thickness of soil is larger than the pile length, bending moment at lower part of the inclined pile is zero. 展开更多
关键词 couple effect inclined pile surcharge load uniform soil movement axial load
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Finite element analysis of effect of soil displacement on bearing capacity of single friction pile 被引量:3
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS 2014年第5期2051-2058,共8页
Effect of soil displacement on friction single pile in the cases of tunneling,surcharge load and uniform soil movement was discussed in details with finite element method.Lateral displacement of the pile caused by soi... Effect of soil displacement on friction single pile in the cases of tunneling,surcharge load and uniform soil movement was discussed in details with finite element method.Lateral displacement of the pile caused by soil displacement reached about 90% of the total displacement,which means that P-Δ effect of axial load can be neglected.The maximum moment of pile decreased from 159 kN·m to 133 kN·m in the case of surcharge load when the axial load increased from 0 to the ultimate load.When deformation of pile caused by soil displacement is large,axial load applied on pile-head plays the role of reducing the maximum bending moment in concrete pile to some extent.When pile is on one side of the tunnel,soil displacements around the pile are all alike,which means that the soil pressures around the pile do not decrease during tunneling.Therefore,Q-s curve of the pile affected by tunneling is very close to that of pile in static loading test.Bearing capacities of piles influenced by surcharge load and uniform soil movement are 2480 kN and 2630 kN,respectively,which are a little greater than that of the pile in static loading test(2400 kN).Soil pressures along pile increase due to surcharge load and uniform soil movement,and so do the shaft resistances along pile,as a result,when rebars in concrete piles are enough,bearing capacity of pile affected by soil displacement increases compared with that of pile in static loading test. 展开更多
关键词 TUNNELING surcharge load uniform soil movement friction pile bearing capacity
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