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1.
用超声脉冲重叠法测量了钠玻璃(float glass)和钛玻璃(SiO2+8.4wt%TiO2)从大气压到2GPa静水压条件下的纵波声速和横波声速.发现两种玻璃有不同的变化规律.钛玻璃的纵波声速和横波声速,与钠玻璃的横波声速都随压力的增加而减小;而钠玻璃的纵波声速随压力的增加先增大,后减小.这一现象不同于别的氧化硅玻璃.对实验结果进行了讨论,并计算了弹性模量在压力下的变化和Murnaghan状态方程参数. 关键词: 高压 超声 玻璃  相似文献   

2.
 利用两面顶压机和六面顶压机作为压力装置,分别对93钨合金材料进行了高压超声测量。测得了93钨合金材料在常态下的横、纵波声速及在0~3 GPa压力范围内的纵波声速随压力的变化关系。测量结果为:在常温常压下,93钨合金的纵波声速为cL=5.135 km/s,横波声速为ct=2.987 km/s。纵波声速随压力变化的关系式为:cL=5.053+0.602p(GPa)。估算的93钨合金相关力学参量为:G=157.4 GPa,E=393.0 GPa,K=260.2 GPa,λ=155.3 GPa,μ=157.4 GPa,ν=0.248。经过对两种超声测量方法测量结果的比较及冲击波测量数据的验证,这些参数是可靠的。  相似文献   

3.
在六面顶压机装置上,采用完全静水压声速测量技术,同时测量了碳化硅-金刚石复合材料在0~4.3GPa压力范围内的纵波声速(vp)和横波声速(vs),获得了其弹性模量与压力的关系。研究发现:当压力小于1.4GPa时,由于材料内部微孔隙闭合,材料声速随压力的升高而增大;随着压力的继续增加,微孔隙闭合完毕,声速趋于稳定值。常压下,碳化硅-金刚石复合材料的剪切模量高于体积模量;而高压下微孔隙对纵波声速的影响明显大于横波声速,导致体积模量在约1.4GPa时超过剪切模量。在1.4~4.3GPa压力下,碳化硅-金刚石复合材料的体积模量和剪切模量分别约为360和350GPa。  相似文献   

4.
为了在应力测量中更好地测量超声波的纵波声速和横波声速,提高测量的精度和准确性,本文研究了一种由两种不同频率的纵波晶片和两处偏振方向相互垂直的横波晶片组成的复合型超声波探头,研究了它的几种组合的发射与接怍MASON等效电路图,并报道了它的一些实验结果。  相似文献   

5.
利用超声相比较和相位探测法,测量了一种易碎玻璃纵波和横波声速从室温到73℃范围内的变化,由此得到弹性模量随温度的变化规律.发现声速和弹性模量随温度变化曲线的斜率在54℃附近有明显变化,存在一个转变温度点,测是结果与布里渊散射在此温区相应的数据符合.研究表明,这个转变温度是易碎玻璃完全熔化前的玻璃化转变温度,比其它玻璃低得多. 关键词:  相似文献   

6.
LaCoO3中自旋态转变现象的超声研究   总被引:2,自引:0,他引:2       下载免费PDF全文
张士龙  孔辉  岑诚  苏金瑞  朱长飞 《物理学报》2005,54(9):4379-4383
测量了LaCoO3单相多晶样品的纵波与横波超声声速和衰减随温度的变化关系, 在材料的自 旋态转变温度附近(≈90K),纵波声速出现明显的软化并伴随一个尖锐的衰减峰,但是在 横波的测量中却没有出现类似的超声异常,分析认为LaCoO3在90K附近的自旋态 转变是由于Co3+离子是从低自旋态(LS,t62ge0 g)转变到中等自旋态(IS,t5 2ge1g ),而不是高等自旋态(HS,t42ge2g).随着温度的升高,在 200K附近纵波和横波测量上都观察到一个伴随着微小声速软化的宽大的衰减峰,这可能是随 机分布的IS态Co3+离子的Jahn-Teller效应导致的局域晶格扭曲所造成的. 关键词: 超声声速与衰减 自旋态转变 Jahn-Teller效应  相似文献   

7.
LaCoO3中自旋态转变现象的超声研究   总被引:1,自引:0,他引:1       下载免费PDF全文
测量了LaCoO3单相多晶样品的纵波与横波超声声速和衰减随温度的变化关系, 在材料的自旋态转变温度附近(≈90K),纵波声速出现明显的软化并伴随一个尖锐的衰减峰,但是在横波的测量中却没有出现类似的超声异常,分析认为LaCoO3在90K附近的自旋态转变是由于Co3+离子是从低自旋态(LS,t62ge0g)转变到中等自旋态(IS,t52ge1g ),而不是高等自旋态(HS,t42ge2g).随着温度的升高,在200K附近纵波和横波测量上都观察到一个伴随着微小声速软化的宽大的衰减峰,这可能是随机分布的IS态Co3+离子的Jahn-Teller效应导致的局域晶格扭曲所造成的.  相似文献   

8.
冲击压缩下单晶LiF高压声速及卸载路径研究   总被引:1,自引:0,他引:1       下载免费PDF全文
 采用二级轻气炮加载手段,在5~79.1 GPa冲击压力范围内,利用加窗VISAR技术对氟化锂(LiF)单晶样品进行了研究,得到了不同冲击压力下的纵波声速、体积声速以及卸载路径。实验结果显示:单晶LiF沿冲击绝热线的Lagrange纵波声速随粒子速度呈线性变化;在5~79.1 GPa冲击压力下,单晶LiF并未发生熔化及其它相变;卸载路径及速度剖面弹塑性明显。  相似文献   

9.
4.0 GPa压力下纯橄岩弹性纵波速度和衰减的实验研究   总被引:3,自引:0,他引:3       下载免费PDF全文
 应用超声波透射法和超声波频谱振幅比法、在4.0 GPa压力条件下、测量了弹性纵波通过纯橄岩的波速(vP)和品质因子值(QP,用于表征衰减)随压力的变化,并分析了纯橄岩内部结构的变化对波速和衰减的影响。在实验压力范围内(≤4.0 GPa),随压力升高,纯橄岩的纵波速度逐渐增大:从7.6 km/s(0.4 GPa)逐渐增大至8.5 km/s(4.0 GPa),升高了11.8%,低压时的增大幅度大于高压时的增大幅度。纯橄岩的品质因子值呈两段式线性变化:从低压区间到高压区间品质因子值的增大幅度明显变小(0.4~2.4 GPa压力范围内QP增大了358.5%,2.4~4.0 GPa压力范围内QP仅升高了7.6%)。纯橄岩的品质因子从54(0.4 GPa)升高至266.4(4.0 GPa),增大幅度达393.3%。在相对低压(0.4~2.4 GPa)条件下,纵波通过纯橄岩的速度增大、衰减降低主要是由于样品内的孔隙和微裂纹大量闭合,岩石密度增大,纵波在通过样品内孔隙和裂缝时损失的机械能降低,因此纵波通过纯橄岩的能量增大(即衰减降低),波速升高;当围压较高(2.4~4.0 GPa)时,纯橄岩内大部分裂纹已经闭合,而且矿物颗粒边界接触紧密。岩石内部的裂纹和颗粒之间由于摩擦滑动而损失的能量也变少,所以在高压时纯橄岩的波速和衰减的变化幅度变缓,但波速仍呈线性增大,而品质因子值(衰减)随压力升高几乎趋于不变。  相似文献   

10.
张攀  赵雪丹  张国华  张祺  孙其诚  侯志坚  董军军 《物理学报》2016,65(2):24501-024501
对于玻璃珠组成的颗粒介质样品,本文测量了横波和纵波声速,同时分析了剪切模量(G)与体积模量(B)的比值(G/B)随压强的变化规律.结果表明,在低压强下,颗粒体系的纵波声速(C_L)明显大于横波声速(c_T),且体系的CL,CT及G/B均随压强p变化呈幂律标度,即CL∝p~(0.3817),CT∝p~(0.2809)G/B∝p~(-0.4539),幂指数与文献[1]中预言的-1/2非常接近,暗示在我们实验压强范围内的颗粒样品处于L玻璃状态.此外,本文还利用快速傅里叶变换法测量了玻璃珠样品中的声学衰减特性及二阶谐波随压强的变化,发现:纵波声衰减系数(α)、接收端二倍频振幅(μ_(2ω))与基频振幅(μ_(1ω))平方的比值(μ_(2ω)/μ_(1ω)~2)均随压强的增大而幂率减小,分别为α∝p~-(-0.1879),和μ_(2ω)/μ_(1ω)~2∝p~(-0.866).  相似文献   

11.
 用超声脉冲回波重合技术(PEO),在0.1~500 MPa流体静压力范围,测量了立方晶体Si和Bi12GeO20中沿[100]、[110]和[111]方向传播的纯纵波和切变波自然声速值随压力的变化。根据有限形变理论,由声速与压力关系的实验结果。确定了立方晶体Si和Bi12GeO20超声物态方程的弹性参数(含三阶和四阶弹性常数)。  相似文献   

12.
 本文用超声相比较方法测定了高Tc超导体La1.85Sr0.15CuO4,La2CuO4和YBa2Cu3O7的纵波和横波声速,进而导出了它们的纵向模量、切变模量、杨氏模量、泊松比、德拜温度及定体比热。在La1.85Sr0.15CuO4样品上,还进行了压力实验,发现所有弹性模量都是随压强增加而增加。定体比热cV和泊松比σ在高压下则略有下降。德拜温度是随压强增加而增加的。  相似文献   

13.
A flat transducer was constructed, using a 9-microm-thick PVDF (polyvinylidene fluoride) film for generation and detection of high-frequency ultrasonic waves, and used for measurements of the phase velocity of longitudinal waves traveling along the thickness direction in a very thin material. The transducer has a useful wideband frequency characteristic extending from 10 MHz to over 150 MHz. Measurements of the phase velocity of the longitudinal waves are carried out using a 0.212-mm-thick glass slide and a 0.102-mm-thick stainless-steel shim, using water as a coupling medium. The thickness limit for this measurement appears to be approximately 20 microm. The phase velocity of the longitudinal mode is obtained as a function of frequency in the frequency domain by using a modified sampled continuous wave (cw) technique. It can also be measured in the time domain by using a broadband pulse of short duration.  相似文献   

14.
This paper presents a method for measuring the thickness and velocities of body waves and the density of an isotropic layer by a pulse scanning acoustic microscope. The method is based on recording the microscope signal as a function of the displacement magnitude of the focused ultrasonic transducer along its axis perpendicular to the sample surface and on the decomposition of the recorded 2D spatiotemporal signal into the spectrum of plane pulse waves. The velocities of the longitudinal and transverse waves and the layer’s thickness are calculated from the relative delays of the components of the spectrum of plane waves reflected from the surfaces of the layer and the density is computed by the amplitudes of these components. An experimental investigation of a test sample in the form of a glass plate carried out in the 50-MHz range shows that the error in measuring the thickness and velocities of body waves does not exceed 1% and the density measurement error does not exceed 10%.  相似文献   

15.
The ultrasonic velocity V and attenuation A of both longitudinal and shear waves in an anisotropic NdFeB magnet were measured over the temperature range from 80K to 300K by the pulse echo method. The anisotropy of the ultrasonic wave propagating in a NdFeB magnet was observed. Anomalous changes in both V-T and A-T curves in the temperature range of 110-160K were found, which might be due to the spin reorientation phase transition of Nd2Fe14B.  相似文献   

16.
All nine elastic moduli of an orthotropic composite material, namely, polypropylene reinforced with glass fiber, are determined from the measured values of the bulk acoustic wave velocities along specific directions in the planes of symmetry of the material. These data are used to calculate the angular dependences of phase velocities, polarization vectors, and directions of ray velocities of bulk waves in the composite. It is demonstrated that the difference in the velocities of shear waves polarized along and across the glass fiber gives rise to an acoustic birefringence and can lead to an elliptical polarization of waves. The measurement of the phase velocities of shear waves as functions of the wave polarization is suggested as a method for the determination of the fiber orientation in a composite material.  相似文献   

17.
A. Singh 《Ultrasonics》1983,21(6):270-274
Refracted shear waves in extruded stainless steel pipes were found to change their velocity and direction (beam skewing) as they propagated through the pipe thickness. These variations in refracted angles and velocities result in flaw location errors during ultrasonic examination. Two techniques, one using refracted shear waves in pitch-catch mode and the other refracted longitudinal waves in pulse-echo mode, are discussed as to their feasibility in determining the flaw location accurately in these pipes. The result of the work was that a two-scan approach using refracted shear waves in pulse-echo for flaw detection and refracted longitudinal waves in pulse-echo for flaw location was recommended.  相似文献   

18.
宋萍  蔡灵仓  李欣竹  陶天炯  赵信文  王学军  方茂林 《物理学报》2015,64(10):106401-106401
为研究微孔洞对锡的高压相变的影响, 对含亚微米孔洞的疏松锡(疏松度m=1.01)进行了冲击加载-卸载实验. 利用DPS(Doppler pins system)测得了31.8-66.1 GPa冲击压力下疏松锡/LiF界面粒子的速度剖面, 获得了各压力下的纵波声速与体波声速, 给出了该疏松锡的冲击熔化起始压力约为49.1 GPa, 获得了各压力下的剪切模量与泊松比. 结合密实锡与疏松锡的高压纵波声速、体波声速与剪切模量, 界定密实锡的冲击熔化压力在53.5-62.3 GPa之间, 高于疏松锡的值, 表明微孔洞明显降低了冲击熔化压力. 对密实锡准确的冲击熔化压力值还需要进一步的实验数据. 测试的固态压力范围内的声速数据没有明显奇异点, 表明疏松锡没有类似密实锡的固态bcc 相变发生.  相似文献   

19.
The ultrasonic velocity V and attenuation A of both longitudinal and shear waves in an anisotropic NdFeB magnet were measured over the temperature range from 80K to 300 K by the pulse echo method. The anisotropy of the ultrasonic wave propagating in a NdFeB magnet was observed. Anomalous changes in both V-T and A-T curves in the temperature range of 110-160 K were found, which might be due to the spin reorientation phase transition of Nd2Fe14B.  相似文献   

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