轴向静载对变截面杆中应力波幅值的影响

袁伟1,3,常军然2,金解放1,3,郭钟群1,梁晨1,吴越4,张睿1,王熙博1

振动与冲击 ›› 2019, Vol. 38 ›› Issue (17) : 51-57.

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振动与冲击 ›› 2019, Vol. 38 ›› Issue (17) : 51-57.
论文

轴向静载对变截面杆中应力波幅值的影响

  • 袁伟1,3,常军然2,金解放1,3,郭钟群1,梁晨1,吴越4,张睿1,王熙博1
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Effects of axial static loads on stress wave amplitude in at apered aluminum rod

  • YUAN Wei1,3, CHANG Junran2, JIN Jiefang1,3, WANG Jie1, LIANG Chen1, WU Yue4, ZHANG Rui1, WANG Xibo1
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摘要

针对变截面构件受到动静组合荷载作用的工程实际,研究轴向静载对变截面杆中应力波幅值的影响。选用铝制备锥形直杆试件,基于动静组合加载试验系统,对试件进行不同轴向静载工况下的应力波传播试验。通过沿轴向不同位置处布置的应变片测定应变时程曲线,以动应变幅值随传播距离及静载的变化规律表征其传播衰减特性。结果表明,轴向静载对应力波下降沿有较大的影响;随着静载的增大,直锥铝杆中应力波传播速度先小幅增加后趋于不变;幅值空间衰减系数呈现“小幅降低—基本不变”的变化特征;试件入射端响应幅值持续减小,且其变化率先逐渐增大,后趋于不变;不同测点的幅值均随静应力的增加近似线性减小,越远离入射端,幅值的变化率越小。

Abstract

Aiming at engineering practice of variable cross-section members being subjected to coupled static-dynamic loads, effects of axial static stress on amplitude of stress wave in a rod with variable cross-section were studied.Based on a SHPB test system with coupled static-dynamic loading, stress wave propagation tests for a tapered aluminum rod were performed under different axial static loads.Time history curves of dynamic strain were measured with strain gauges arranged at different positions in axial direction, and propagation attenuation characteristics of stress wave were characterized with variation laws of dynamic strain amplitudes versus propagating distance and static loads.The results showed that axial static loads have a larger effect on decrease in stress wave;with increase in static loads, stress wave’s propagating velocity in the tapered aluminum rod slightly increases firstly, and then tends to be constant;amplitude spatial attenuation coefficient reveals a variation feature of “slightly decrease-almost constant”, while response amplitude at the tapered rod’s incident end decreases continuously, its rate gradually increases firstly and then tends to be constant;amplitudes of different strain gauges decrease almost linearly with increase in static loads, the farther the distance from the incident end, the smaller the decrease rate of amplitude.

关键词

应力波 / 变截面杆 / 轴向静载 / 波形 / 传播速度 / 空间衰减

Key words

stress wave / rod with variable cross-sectional areas / axial static stress / waveform / propagating velocity / spatial attenuation

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袁伟1,3,常军然2,金解放1,3,郭钟群1,梁晨1,吴越4,张睿1,王熙博1. 轴向静载对变截面杆中应力波幅值的影响[J]. 振动与冲击, 2019, 38(17): 51-57
YUAN Wei1,3, CHANG Junran2, JIN Jiefang1,3, WANG Jie1, LIANG Chen1, WU Yue4, ZHANG Rui1, WANG Xibo1. Effects of axial static loads on stress wave amplitude in at apered aluminum rod[J]. Journal of Vibration and Shock, 2019, 38(17): 51-57

参考文献

[1] 崔 灿, 蒋 晗, 李映辉. 变截面梁横向振动特性半解析法[J]. 振动与冲击, 2012, 31(14): 85-88.
CUI Can, JIANG Han, LI Yinghui. Semi-analytical method for calculating vibration characteristics of variable cross-section beam [J]. Journal of Vibaration and Shock, 2012, 31(14): 85-88.
[2] 赵明华, 杨 晶, 杨明辉. 考虑桩土相互作用的变截面高墩自振频率计算分析[J]. 岩土力学, 2010, 31(08): 2507-2518.
ZHAO Minghua, YANG Jing, YANG Minghui. Study of nat-ural frequency of tapered high pier in consideration of pile-soil interaction [J]. Rock and Soil Mechanics, 2010, 31(08): 2507-2518.
[3] 武婷婷, 贺西平, 汪彦军, 等. 多台阶过渡段阶梯型变幅杆的设计[J]. 陕西师范大学学报(自然科学版), 2018, 46(01): 62-66.
WU Tingting, HE Xiping, WANG Yanjun, et al. Design of multi-step ultrasonic horn [J]. Journal of Shaanxi Normal University (Natural Science Edition), 2018, 46(01): 62-66.
[4] 俞缙, 钱七虎, 宋博学, 等. 不同应力波穿过多条非线性变形节理时的透射特性[J]. 工程力学, 2012, 29(04): 1-6.
YU Jin, QIAN Qihu, SONG Boxue, et al. Transmission of various stress waves across multi-fracture with nonlinear de-formation behavior [J]. Engineering Mechanics, 2012, 29(04): 1-6.
[5] 陈得良, 汪亚运, 彭旭龙, 等. 弹性压应力波下轴向功能梯度变截面梁动力压曲稳定分析[J]. 振动与冲击, 2017, 36(13): 27-32+73.
CHEN Deliang, WANG Yayun, PENG Xulong, et al. Dynam-ic buckling of axially functionally-graded beams with non-uniform cross-section under elastic compression stress wave [J]. Journal of Vibaration and Shock, 2017, 36(13): 27-32+73.
[6] 王怀忠. 轴向冲击作用下空心钢管混凝土桩应力波解析解[J]. 工程力学, 2017, 34(04): 101-107.
WANG Huaizhong. Analytical solution for stress waves of hollow concrete filled steel tubular piles subjected to axial impact [J]. Engineering Mechanics, 2017, 34(04): 101-107.
[7] 王礼立, 胡时胜. 锥杆中应力波传播的放大特性[J]. 宁波大学学报, 1988, 1(01):69-78.
WANG Lili, HU Shisheng. The amplification of stress waves propagated in a conical bar [J]. Journal of Ningbo University, 1988, 1(01):69-78.
[8] 曹增强, 佘公藩, 周听清. 应力波在变截面杆中传播的数值分析[J]. 航空学报, 1998, 20(06): 71-75.
CAO Zengqiang, SHE Gongfan, ZHOU Ting-qing. Numerical analysis of stress wwave propagation in a variable section bar [J]. Acta Aeronautica Et Astronautica Sinica, 1998, 20(06): 71-75.
[9] 刘孝敏, 胡时胜. 应力脉冲在变截面SHPB锥杆中的传播特性[J]. 爆炸与冲击, 2000, 20(02): 110-114.
LIU Xiaomin, HU Shisheng. Wave propagation characteristics in cone bars used for variable cross-section SHPB [J]. Explosion and Shock Waves, 2000, 20(02): 110-114.
[10] 姚 磊, 李永池. 应力波在变截面体中的传播特性[J]. 爆炸与冲击, 2009, 29(03): 275-280.
YAO Lei, LI Yongchi. Propagation characteristics of stress waves in solids with variable section [J]. Explosion and Shock Waves, 2009, 29(03): 275-280.
[11] 李永池, 姚 磊, 董 杰, 等. 粘塑性变截面杆中冲击波的演化[J]. 爆炸与冲击, 2005, 25(06): 481-486.
LI Yongchi, YAO Lei, DONG Jie, et al. The evolution of shock waves in a viscoplastic bar with variable section [J]. Explosion and Shock Waves, 2005, 25(06): 481-486.
[12] Gan C.B., Wei Y.M., Yang S.X.. Longitudinal wave propaga-tion in a rod with variable cross-section. Journal of Sound and Vibration, 2014, 333: 434-445.
[13] Li X.B., Zhou Z.L., Lok T.S., et al. Innovative testing technique of rock subjected to coupled static and dynamic loads [J]. International Journal of Rock Mechanics and Mining Sciences, 2008, 45(05): 739-748.
[14] Liu H, Wang Z.K., Wang T J. Effect of initial stress on the propagation behavior of Love waves in a layered piezoelectric structure [J]. International Journal of Solids and Structures, 2001, 38(1): 37-51.
[15] Qian Z.H., Jin F., Lu T.J., et al. Effect of initial stress on Love waves in a piezoelectric structure carrying a functionally graded material layer [J]. Ultrasonics, 2010, 50(1): 84-90.
[16] 金解放, 李夕兵, 尹土兵, 等. 轴向冲击下弹性杆中轴向静载对入射波的影响[J]. 工程力学, 2013, 30(11): 21-27.
JIN Jiefang, LI Xibing, YIN Tubing, et al. Effect of axial static stress of elastic bar on incident stress wave under axial impact loading [J]. Engineering Mechanics, 2013, 30(11): 21-27.
[17] 王礼立. 应力波基础[M]. 北京: 国防工业出版社, 2005.

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