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首页> 外文期刊>Engineering Geology >Exfoliation microcracks in building granite. Implications for anisotropy
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Exfoliation microcracks in building granite. Implications for anisotropy

机译:建筑花岗岩中的去角质微裂纹。 对各向异性的影响

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摘要

Granite is found in many world heritage monuments and cities. It continues to be one of the most widely used stones in today's construction, given its abundance, uniformity and durability. Quarrymen traditionally cut this rock along its orthogonal slip planes, where splitting is easier. Ranked by ease of splitting, these planes are rift, grain and hardway. Granite is traditionally quarried along the rift plane where coplanar exfoliation microcracks coalesce developing a flat surface. This splitting surface minimizes the cost and effort of subsequent hewing. Rift plane was predominantly used on the fair face of ashlars in heritage buildings worldwide. Determining the petrographic and petrophysical behaviour of these three orthogonal splitting planes in granite is instrumental to understanding decay in ashlars and sculptures. The decay of building granite is different in each splitting plane. Alpedrete granite was the stone selected for this study based on the orientation and distribution of exfoliation microcracks and the characterisation of their implications for the anisotropy of petrophysical properties such as ultrasonic wave propagation, capillarity, air permeability, micro-roughness and surface hardness. Inter- and intracrystalline microcrack length and spacing were also measured and quantified.
机译:花岗岩在许多世界遗产纪念碑和城市中被发现。鉴于其丰富,均匀性和耐用性,它仍然是当今建筑中最广泛使用的石头之一。 Quarrymen传统上沿着其正交滑坡切割了这岩石,其中分裂更容易。这些平面易于分裂,是裂缝,谷物和岩石。花岗岩传统上沿着裂缝飞机沿着裂缝飞行,其中共面剥离微裂纹切割平坦的表面。这种分裂表面最大限度地减少了后续何景的成本和努力。裂缝飞机主要用于全球遗产建筑的灰尘的公平面孔。在花岗岩中确定这三个正交分裂平面的岩体和岩石物理行为是有助于理解灰尘和雕塑的腐烂。建筑花岗岩的衰减在每个分裂平面中不同。 AlpedRete花岗岩是基于剥离微裂纹的取向和分布的石头,以及对岩石繁殖,毛细血管性,透气性,微粗糙度和表面硬度等各向异性的对岩石物理性质的各向异性的表征的表征。还测量和量化了和量化细胞和胆晶微裂纹长度和间隔。

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