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Ultrasonic time-frequency method to evaluate the deterioration properties of rock suffered from freeze-thaw weathering

机译:超声时频法评价冻融风化岩石的劣化特性

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Cyclic freeze-thaw (F-T) is a serious natural weathering mechanism for rock engineering and stone constrictions in cold regions. Considering the universality and destructiveness of rock F-T weathering, evaluation of rock deterioration is of vital importance. In this work, ultrasonic detections and mechanical experiments including uniaxial compression, splitting tension and angle-changed shear tests were carried out on red-sandstone specimens without and after different F-T cycles. Attenuation occurred to almost all of the indexes of red-sandstone after F-T weathering, including mechanical properties such as uniaxial compressive strength (UCS), deformation modulus (Ed), splitting tensile strength (STS), cohesion (C) and friction angle (phi), and ultrasonic properties such as the P-wave velocity (V-p), head-wave amplitude (A(h)), centroid frequency (f(c)) and kurtosis of frequency spectrum (KFS). After 25 F-T cycles, the UCS, Ed, STS, C,phi, V-p, A(h), f(c) and KFS decreased by 42.5, 63.0, 87.3, 33.7, 22.6, 50.6, 24.6, 38.3 and 0.56%, respectively. With increasing number of F-T cycles, similar convergent decrease tendencies between the UCS, E-d, STS, C and the V-p, A(h), f(c), KFS were found, confirming the effectiveness of the ultrasonic time-frequency method to estimate the deterioration of rock suffered from F-T weathering. Similar degradation behavior in ultrasonic time-frequency properties and in mechanical properties resulted from the microscopic damages of red-sandstone suffered from F-T weathering. An ultrasonic evaluation auxiliary graph is suggested as a convenient practical evaluation method in rock engineering.
机译:循环冻融(F-T)是寒冷地区岩石工程和石头收缩的一种严重的自然风化机理。考虑到岩石F-T风化的普遍性和破坏性,评估岩石劣化至关重要。在这项工作中,对没有和没有经过不同F-T循环的红砂岩标本进行了超声波检测和机械实验,包括单轴压缩,劈裂张力和角度变化的剪切试验。 FT风化后的红砂岩几乎所有指数都发生衰减,包括机械性能,例如单轴抗压强度(UCS),变形模量(Ed),劈裂抗拉强度(STS),内聚力(C)和摩擦角(phi) )和超声波特性,例如P波速度(Vp),头波幅度(A(h)),质心频率(f(c))和频谱峰度(KFS)。在25个FT周期后,UCS,Ed,STS,C,phi,Vp,A(h),f(c)和KFS下降了42.5、63.0、87.3、33.7、22.6、50.6、24.6、38.3和0.56%,分别。随着FT循环次数的增加,发现UCS,Ed,STS,C与Vp,A(h),f(c),KFS之间的收敛收敛趋势相似,这证实了超声时频方法估计的有效性。 FT风化使岩石变质。 F-T风化对红砂岩的微观损伤导致了超声时频特性和机械特性的相似降解行为。建议将超声评估辅助图作为岩石工程中一种方便实用的评估方法。

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