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首页> 外文期刊>Rock Mechanics and Rock Engineering >Experimental Study on the Shear Behavior of the Bonding Interface Between Sandstone and Cement Mortar Under Freeze-Thaw
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Experimental Study on the Shear Behavior of the Bonding Interface Between Sandstone and Cement Mortar Under Freeze-Thaw

机译:冻融砂岩与水泥砂浆粘接界面剪切行为的实验研究

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摘要

Shear experiments were conducted on the cement mortar-sandstone bonding interface and the materials themselves to investigate their loss of shear strength and the deterioration mechanism caused by freezing and thawing cycles. The experimental results show that the shear strength of the bonding interface is much lower than that of the original materials themselves under the same normal stress. The shear strength of this interface decreases linearly with increasing number of freeze-thaw cycles, but it linearly increases with increasing normal stress. The cohesion and internal friction angle also decrease as the number of freeze-thaw cycles increases. In addition, obvious freeze-thaw debonding of this interface is observed and it is first caused by the difference in frost-heaving deformation between the cement mortar and the red sandstone, followed by the frost-heaving pressure in the crack formed in the interface. Finally, the shear damage of this interface has been quantified by reconstitution of the interface morphology. As a result, almost all the shear breakage occurs on the red sandstone side, and a concave rough face arises. With the absence of normal stress, the shear abscission area in the red sandstone increases quickly with increasing number of freeze-thaw cycles. However, with increasing normal stress, this shear abscission area decreases, and the layered composite specimens were prone to shear failure straightly along the bonding interface, because the shear dilatancy deformation is constrained. This study provides the shear failure characteristics of cement mortar-rock interfaces under freeze-thaw cycles and contributes to a better understanding of the freeze-thaw debonding mechanism of protective cement mortar layers on rock surfaces.
机译:在水泥砂岩 - 砂岩粘合界面和材料本身上进行剪切实验,以研究它们的剪切强度损失和由冷冻和解冻循环引起的劣化机制。实验结果表明,在相同的正常应力下,粘合界面的剪切强度远低于原始材料本身的剪切强度。该界面的剪切强度随着冰冻解冻循环的越来越多地线性降低,但随着正常应力的增加而线性地增加。随着冻融循环的数量增加,内聚力和内部摩擦角也会降低。此外,观察到该界面的明显冻融剥离,首先是由水泥砂浆和红色砂岩之间的霜冻变形差异引起,然后在界面中形成的裂缝中的霜冻压力。最后,通过重建界面形态来量化该界面的剪切损坏。结果,几乎所有的剪切打破发生在红色砂岩侧,并且产生凹面的粗糙面。由于没有正常应力,红砂岩中的剪切脱落区域随着较少的冻融循环越来越多地增加。然而,随着正常应力的增加,该剪切脱落区域降低,并且沿着粘合界面易于剪切破坏失效,因为剪切膨胀变形被约束。该研究提供了冷冻循环下水泥砂浆壁的剪切失效特性,有助于更好地了解岩石表面保护水泥砂浆层的冻融剥离机制。

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