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Effects of glass fiber-reinforcement on the mechanical properties of coarse grained building stone

机译:玻璃纤维增​​强对粗粒建筑石材力学性能的影响

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摘要

A great number of coarse-grained natural stones have very high added-value when used as building materials. However, problems using these materials arise from its brittleness behavior, which are related to its very heterogeneous texture, showing high volume of pre-existing cracks. Glass fiber-reinforced epoxy composite (GFRC) is being used to improve mechanical performance of such stones when employed as building materials. To our best knowledge, there are no studies to evaluate how the reinforcement affects the mechanical behavior of finished products that employ this technique. In present experimental investigation one proposes a slope-based criterion to evaluate the useful service loads of pegmatitic materials when glass fiber-reinforcement is applied. To validate the proposed criterion, a digital image correlation (DIC) system was employed to observe and measure strain and fracture behavior during the realization of 4-point bending tests. Both proposed criterion and DIC show that crack propagation occurs long before the material reaches maximum load. GFRC acts as a crack inhibitor, raising the breaking load up to 6x in comparison with the specimens where no reinforcement was applied. The results from this study enhance the capability to apply such materials as building materials and provide an important tool to perform prior mechanical understanding of stone products using GFRC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当用作建筑材料时,大量的粗粒天然石材具有很高的附加值。然而,使用这些材料的问题是由于其脆性而引起的,这与其非常不均匀的质地有关,显示出大量的预先存在的裂纹。玻璃纤维增​​强环氧复合材料(GFRC)被用作建筑材料时,可改善此类石材的机械性能。据我们所知,尚无研究评估增强作用如何影响采用该技术的成品的机械性能。在目前的实验研究中,有人提出了一种基于坡度的标准,以评估在应用玻璃纤维增​​强时,胶凝材料的有用服务载荷。为了验证所提出的标准,采用了数字图像相关(DIC)系统来观察和测量在实现四点弯曲测试过程中的应变和断裂行为。提出的标准和DIC均表明,裂纹扩展发生在材料达到最大载荷之前很久。 GFRC用作抗裂剂,与未施加加强筋的样品相比,断裂载荷提高了6倍。这项研究的结果增强了应用诸如建筑材料之类的材料的能力,并为使用GFRC对石材产品进行事先的机械理解提供了重要的工具。 (C)2017 Elsevier Ltd.保留所有权利。

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