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用分段式霍普金森压杆对水泥石动态弹性模量和破碎吸收能的实验研究 被引量:3
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作者 王强 王通 +1 位作者 于长滨 王祥林 《地震工程与工程振动》 CSCD 北大核心 2006年第2期92-95,共4页
本文采用分段式霍普金森压杆(Sp litHopk inson Pressure Bar,缩写为SHPB),对各种配方水泥石材料的动态弹性模量、破碎吸收能进行了实验研究,并给出了部分实验结果。研究表明:采用SHPB技术测量水泥石材料的动态力学性能方法是可行的;填... 本文采用分段式霍普金森压杆(Sp litHopk inson Pressure Bar,缩写为SHPB),对各种配方水泥石材料的动态弹性模量、破碎吸收能进行了实验研究,并给出了部分实验结果。研究表明:采用SHPB技术测量水泥石材料的动态力学性能方法是可行的;填料增强是提高水泥石材料抗冲击性能的有效途径。 展开更多
关键词 水泥石 分段霍普金森 动态力学性能
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一种低横向效应的压阻式加速度传感器设计 被引量:4
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作者 赵思晗 石云波 +3 位作者 赵永祺 孙亚楠 任建军 李飞 《微纳电子技术》 北大核心 2018年第8期577-582,共6页
为了提高传感器的测试精度、抑制传统传感器的横向效应问题,通过改变压阻排布方式设计了一种低横向效应的压阻式加速度传感器。该传感器采用8电阻十字梁结构,电阻全部对称排布在应力变化的线性区,使传感器在满足高灵敏度的同时消除了横... 为了提高传感器的测试精度、抑制传统传感器的横向效应问题,通过改变压阻排布方式设计了一种低横向效应的压阻式加速度传感器。该传感器采用8电阻十字梁结构,电阻全部对称排布在应力变化的线性区,使传感器在满足高灵敏度的同时消除了横向效应。通过有限元仿真分析得出该传感器的灵敏度为0.297 4μV/g,横向灵敏度为零,对封装后的传感器进行了Hopkinson杆冲击测试,横向灵敏度只占工作轴向灵敏度的1.1%,远小于相同结构尺寸下传统四电阻传感器的20.7%,而工作轴向灵敏度基本相同。实验表明,该传感器具有较高的工作轴向灵敏度和极低的横向灵敏度。 展开更多
关键词 加速度传感器 横向效应 灵敏度 阻排布 有限元仿真 hopkinson
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动态载荷下胞状铝合金的压缩行为 被引量:3
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作者 郑明军 何德坪 《铸造》 CAS CSCD 北大核心 2004年第1期22-25,共4页
用分段式Hopkison压杆研究了胞状铝合金及胞状纯铝在高应变速率(600~1800s 1)下的压缩行为。试验表明,胞状纯铝的平台应力随应变速率的增大缓慢增加,而胞状铝合金的平台应力对应变速率不敏感,后者在上述应变速率条件下,可以不考虑应变... 用分段式Hopkison压杆研究了胞状铝合金及胞状纯铝在高应变速率(600~1800s 1)下的压缩行为。试验表明,胞状纯铝的平台应力随应变速率的增大缓慢增加,而胞状铝合金的平台应力对应变速率不敏感,后者在上述应变速率条件下,可以不考虑应变速率的变化,可以静态压缩σ ε数据作为应用参考。 展开更多
关键词 高应变速率 胞状铝合金 分段式hopkinson压杆
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XX型炮弹的三轴加速度测试研究 被引量:1
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作者 沙龙 裴东兴 +1 位作者 沈大伟 马铁华 《电子设计工程》 2009年第9期16-17,共2页
为获取某炮弹在发射过程中弹丸所受环境的三轴加速度信号,研制小体积、抗高冲击、抗高过载的基于压阻式传感器的采集系统,采用Hopkinson杆动态校准传感器灵敏度。通过对存储测试电路模块的缓冲保护,克服试验过程中火炮发射时一系列恶劣... 为获取某炮弹在发射过程中弹丸所受环境的三轴加速度信号,研制小体积、抗高冲击、抗高过载的基于压阻式传感器的采集系统,采用Hopkinson杆动态校准传感器灵敏度。通过对存储测试电路模块的缓冲保护,克服试验过程中火炮发射时一系列恶劣环境因素的影响。获得的试验数据为XX型炮弹在发射技术方面的改进提供了必要依据。 展开更多
关键词 高过载 传感器 hopkinson 校准 存储测试电路模块
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Energy consumption in rock fragmentation at intermediate strain rate 被引量:18
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作者 洪亮 周子龙 +2 位作者 尹土兵 廖国燕 叶洲元 《Journal of Central South University》 SCIE EI CAS 2009年第4期677-682,共6页
In order to determine the relationship among energy consumption of rock and its fragmentation, dynamic strength and strain rate, granite, sandstone and limestone specimens were chosen and tested on large-diameter spli... In order to determine the relationship among energy consumption of rock and its fragmentation, dynamic strength and strain rate, granite, sandstone and limestone specimens were chosen and tested on large-diameter split Hopkinson pressure bar (SHPB) equipment with half-sine waveform loading at the strain rates ranging from 40 to 150 s- 1. With recorded signals, the energy consumption, strain rate and dynamic strength were analyzed. And the fragmentation behaviors of specimens were investigated. The experimental results show that the energy consumption density of rock increases linearly with the total incident energy. The energy consumption density is of an exponent relationship with the average size of rock fragments. The higher the energy consumption density, the more serious the fragmentation, and the better the gradation of fragments. The energy consumption density takes a good logarithm relationship with the dynamic strength of rock. The dynamic strength of rock increases with the increase of strain rate, indicating higher strain rate sensitivity. 展开更多
关键词 ROCK large-diameter SHPB test intermediate strain rate energy consumption density fragment distribution dynamic strength
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Stress evolution and failure process of Brazilian disc under impact 被引量:6
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作者 周子龙 邹洋 +1 位作者 李夕兵 江益辉 《Journal of Central South University》 SCIE EI CAS 2013年第1期172-177,共6页
To reveal stress distribution and crack propagation of Brazilian discs under impact loads, dynamic tests were conducted with SHPB (split Hopkinson pressure bar) device. Stress states of specimens were monitored with... To reveal stress distribution and crack propagation of Brazilian discs under impact loads, dynamic tests were conducted with SHPB (split Hopkinson pressure bar) device. Stress states of specimens were monitored with strain gauges on specimen surface and SHPB bars. The failure process of specimen was recorded by ultra speed camera FASTCAM SAI.1 (675 000 fps). Stress histories from strain gauges offer comprehensive information to evaluate the stress equilibrium of specimen in time and space. When a slowly rising load (with loading rates less than 1 200 N/s for d 50 mm bar) is applied, there is usually good stress equilibrium in specimen. The stress distribution after equilibrium is similar to its static counterpart. And the first crack initiates at the disc center and propagates along the load direction. But with the front of incident wave becoming steep, it is hard for specimens to get to stress equilibrium. The first crack may appear anywhere on the specimen together with multiple randomly distributed secondary cracks. For a valid dynamic Brazil test with stress equilibrium, the specimen will break into two halves neatly. While for tests with stress disequilibrium, missing strap may be found when broken halves of specimens are put together. For those specimens broken up neatly at center but having missing wedges at the loading areas, it is usually subjected to local buckling from SHPB bars. 展开更多
关键词 dynamic Brazil test Brazilian disc stress evolution failure pattern
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Strain rate sensitivity of closed cell aluminium fly ash foam 被引量:2
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作者 Manmohan DASS GOEL VASANT A.MATSAGAR +1 位作者 Anil K.GUPTA Steffen MARBURG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期1080-1089,共10页
With the increasing use of metal foams in various engineering applications, investigation of their dynamic behaviour under varying strain rate is necessary. Closed cell aluminium fly ash foam developed through liquid ... With the increasing use of metal foams in various engineering applications, investigation of their dynamic behaviour under varying strain rate is necessary. Closed cell aluminium fly ash foam developed through liquid metallurgy route was investigated for its stress--strain behaviour at different strain rates ranging from 700 s^-1 to 1950 s^-1. The numerical model of split Hopkinson pressure bar (SHPB) was simulated using commercially available finite element code Abaqus/Explicit. Validation of numerical simulation was carried out using available experimental and numerical results. Full scale stress--strain curves wez'e developed for various strain rates to study the effect of strain rate on compressive strength and energy absorption. The results showed that the closed cell aluminium fly ash foam is sensitive to strain rate. 展开更多
关键词 high strain rate metal foam strain rate sensitivity numerical simulation split hopkinson pressure bar
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Effect of specimen size on energy dissipation characteristics of red sandstone under high strain rate 被引量:28
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作者 Li Ming Mao Xianbiao +4 位作者 Lu Aihong Tao Jing Zhang Guanghui Zhang Lianying Li Chong 《International Journal of Mining Science and Technology》 SCIE EI 2014年第2期151-156,共6页
In this experiment, red sandstone specimens, having slenderness ratios of 0.5, 0.7, 0.9 and 1.1 respectively, were subjected to blow tests using a Split Hopkinson Pressure Bar(SHPB) system at a pressure of 0.4 atmosph... In this experiment, red sandstone specimens, having slenderness ratios of 0.5, 0.7, 0.9 and 1.1 respectively, were subjected to blow tests using a Split Hopkinson Pressure Bar(SHPB) system at a pressure of 0.4 atmospheres. In this paper, we have analyzed the effect of slenderness ratio on the mechanical properties and energy dissipation characteristics of red sandstone under high strain rates. The processes of compaction, elastic deformation and stress softening deformation of specimens contract with an increase in slenderness ratio, whilst the nonlinear deformation process extends correspondingly. In addition, degrees of damage of specimens reduced gradually and the type of destruction showed a transformation trend from stretching failure towards shear failure when the slenderness ratio increased. A model of dynamic damage evolution in red sandstone was established and the parameters of the constitutive model at different ratios of length to diameter were determined. By comparison with the experimental curve, the accuracy of the model, which could reflect the stress–strain dynamic characteristics of red sandstone, was verified. From the view of energy dissipation, an increase in slenderness ratio of a specimen decreased the proportion of energy dissipation and caused a gradual fall in the capability of energy dissipation during the specimen failure process. To some extent, the study indicated the effects of slenderness ratios on the mechanical properties and energy dissipation characteristics of red sandstone under the high strain rate, which provides valuable references to related engineering designs and academic researches. 展开更多
关键词 Red sandstone Slenderness ratio SHP BImpact failure Energy dissipation
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