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1)  hopkinson bar
霍普金森杆
1.
Characterization of triaxial piezoresistive high-g accelerometer by Hopkinson bar method
测试压阻式三轴高g加速度计的霍普金森杆法(英文)
2.
The aims of this thesis are to establish the criteria about the duration of input acceleration pulses in the accelerometer calibration, to generate the input pulses with required durations by designing 2 different calibration devices through changing the bullet bottom shape, explosive impulse and changing the geometric dimensions of the Hopkinson bar.
本文目的是研究加速度计准静态校准和动态校准分别对激励信号脉冲宽度的要求;利用两种不同的霍普金森杆校准装置,通过改变撞击弹丸端部形状、炸药爆炸激励及改变霍普金森杆几何尺寸等方法获得脉宽符合要求的激励脉冲。
2)  split Hopkinson pressure bar(SHPB)
霍普金森压杆
1.
The dynamic splitting tests of marble using Brazilian disc and flattened Brazilian disc were performed at high strain rate with split Hopkinson pressure bar(SHPB) of 100 mm diameter.
利用直径100 mm的分离式霍普金森压杆对大理岩巴西圆盘进行了动态劈裂试验。
2.
Then,after 3 and 7 days standard curing,impact properties of basalt fiber reinforced geopolymeric concrete(BFRGC)and carbon fiber reinforced geopolymeric concrete(CFRGC) were investigated using a 100-mm-diameter split Hopkinson pressure bar(SHPB) apparatus,and comparison between the results of experiments was performed.
3%的玄武岩纤维增强地质聚合物混凝土(basalt fiber reinforced geopolymeric concrete,BFRGC)和碳纤维增强地质聚合物混凝土(carbon fiber reinforced geopolymeric concrete,CFRGC),再采用Φ100 mm霍普金森压杆(split Hopkin-son pressure bar,SHPB)试验装置测试了两种材料3d、7d的冲击力学性能,并对试验进行对比分析。
3.
The dynamic response of FBG is researched by shock test in split Hopkinson pressure bar(SHPB) and the results indicate that FBG can measure the shock signal exactly and the demodulator is able to interrogate high frequency excitation signal fast and accurately.
通过霍普金森压杆上的冲击试验研究了光纤光栅的动态响应能力,试验表明Bragg光栅能够正确响应不同频率的冲击信号,解调仪能够正确并快速解调出高速动态激励信号,同时Bragg光栅在受拉和受压时以及动态和静态灵敏度基本一致。
3)  split Hopkinson pressure bar
霍普金森压杆
1.
This paper describes a modification of the split Hopkinson pressure bar for the dynamic compressive property testing of soft material.
提出了一种用于软材料动态压缩性能测试的霍普金森压杆改进方案。
2.
The dynamic mechanical behaviour of RPC with different fiber volume fraction was researched on repeated compressive impact in four kinds of impact modes with the split Hopkinson pressure bar.
采用60%的超细工业废渣取代水泥制备了抗压强度达200 MPa的生态型活性粉末混凝土(RPC),采用分离式霍普金森压杆装置对不同纤维掺量的RPC材料进行了4种方式的多次冲击压缩实验。
3.
An experiment method of using the split Hopkinson pressure bar(SHPB) is proposed to perform dynamic split testing of brittle materials like concrete at a high strain rate,and the currently accepted method for the experiment is to obtain the tensile strength and the average strain rate by the transmitting wave signals.
利用分离式霍普金森压杆(SHPB)可以进行混凝土类材料高应变率下的劈裂实验,目前公认的方法是通过透射波信号得到劈裂强度和相应的平均应变率。
4)  split hopkinson pressure bar (SHPB)
霍普金森压杆(SHPB)
5)  SHPB
霍普金森压杆
1.
The Split Hopkinson Pressure Bar(SHPB) of φ100 mm was used to investigate the dynamic mechanical behavior of the concrete under impact loading.
利用φ100 mm霍普金森压杆试验设备,研究了混凝土材料在冲击荷载下的动态压缩性能,分析验证了实验结果的有效性、一致性和试样中的应力均匀性问题,得到了混凝土材料在较高应变率范围内的动态应力—应变关系。
2.
Split Hopkinson Pressure Bar(SHPB) with a wedge and its holder appended to the end of the incident bar was used to exert dynamic split force at the edge notch of the specimen.
为了获得岩石在高加载速率作用下的动态断裂韧度值并分析加载速率的影响,由分离式霍普金森压杆入射杆杆端附加劈尖及其基座对边切槽圆盘试样施加动态劈裂载荷。
3.
Dynamic mechanical behaviors of 5A06 Al alloy by three kinds of processes and heat treatments were studied with the split Hopkinson pressure bar(SHPB) and static material test system over a wide range of strain rates and temperature.
运用材料试验机和分离式霍普金森压杆装置(SHPB)对3种不同加工及热处理状态的5A06铝合金在常温~500°C、应变率为10-4~103s-1下的力学行为进行了实验研究。
6)  split-Hopkinson torsional bar
霍普金森扭杆
1.
The dynamic shearing strength of Al-Li alloy under different strain rate was determined useing split-Hopkinson torsional bar (SHTB) facility with tubular specimens and the frac-tographyic observations were carried out with SEM.
利用霍普金森扭杆(Torsional Split-Hopkinson Bar)技术对三种不同成份或状态的铝-锂合金材料的动态应力-应变-应变率关系进行了实验测定。
补充资料:金森女贞
金森女贞介绍 金森女贞 (Ligustrum japonicum‘Howardii’) 科属:
木犀科 女贞属

别名:


形态特征:
1、耐热性强:35℃以上高温不会影响其生态特性和观赏特性。
2、耐寒性强:种植区域可达北京以南,西安以东,可耐-9.7℃低温。
3、金叶期长:春、秋、冬三季金叶占主导。只有夏季持续高温时会出现部分叶片转绿的现象。冬季植株下部老叶片有部分转绿现象,但温度越低,新叶的金黄色越明艳。
4、叶厚且具革质,明亮光泽,观赏性明显优于金叶女贞。花白色,果实呈紫色。
5、种植密度:现在市场上金森女贞工程苗多为高度在25至30厘米之间,主枝有三分叉的小苗。一般来说,每平方米种植25至36株即可形成不错的景观效果(当然实际种植密度还要由投资方和设计师的实际需要决定)。


分布与习性:


繁殖与栽培:
扦插繁殖

应用:
(1)金森女贞长势强健,萌发力强;底部枝条与内部枝条不易凋落;对病虫害,火灾,煤烟,风雪等有较强的抗性;叶片宽大,叶片质感良好,株形紧凑,是非常好的自然式绿篱材料,在欧美和日本尤其受人们欢迎。
(2)金森女贞喜光,又耐半阴,且在光照不足处仍具有相当数量的金黄色叶,既可作界定空间、遮挡视线的园林外围绿篱,也可植于墙边、林缘等半阴处,遮挡建筑基础,丰富林缘景观的层次。
(3)金森女贞每到春季都会开出一串串银铃般的小花,散发出阵阵清香,秋冬季节蓝黑色的果实挂满枝头,果实几乎可以欣赏整整一个冬天。


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说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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