首页> 外文会议>Symposium on Materials Issues in Art and Archaeology VI, Nov 26-30, 2001, Boston, Massachusetts, U.S.A. >Design and evaluation of restoration mortars for historic masonry using traditional materials and production techniques
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Design and evaluation of restoration mortars for historic masonry using traditional materials and production techniques

机译:使用传统材料和生产技术设计和评估历史性砖石修复灰浆

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摘要

Cement based mortars used for historic masonry restoration presented unsatisfactory results, due to their chemical and physico-mechanical incompatibility to original buildings. In the present research, several syntheses of restoration mortars are produced using traditional techniques and materials such as binders (aerial and natural hydraulic lime), pozzolanic additives (natural and artificial pozzolanas) and aggregates (sand and crushed brick). The technical characteristics of the mortars were determined using mechanical tests (compressive and flexural) and mercury intrusion porosimetry measurements at the time of 1, 3, 9, 15 months of curing. Water absorption measurements were performed at the time of 9 and 15 months curing, in order to evaluate mortars microstructural characteristics, their rate of water absorption and the total percentage of absorbed water. The aerial lime - artificial pozzolana mortar presented the best mechanical and microstructural performance. Hydraulic mortars acquired the maximum of the mechanical strength in 1 month, lime - pozzolana mortars in 3 months while aerial lime mortars continue to gain mechanical strength even in 15 months curing. Furthermore, the use of ceramic aggregates produces lightweight and elastic mortars, compatible to historic ones.
机译:由于其与原始建筑物的化学和物理机械不相容性,用于历史性砖石修复的水泥基砂浆的效果不理想。在本研究中,使用传统技术和材料(例如粘合剂(航空和天然水硬石灰),火山灰添加剂(天然和人工火山灰)和集料(砂和碎砖))生产了几种修复砂浆的合成材料。在固化1、3、9、15个月时,使用机械测试(压缩和弯曲)和压汞法测量了砂浆的技术特性。在固化9个月和15个月时进行吸水率测量,以评估砂浆的微观结构特征,吸水率和吸水总量。航空石灰-人造火山灰砂浆具有最佳的机械和微观结构性能。液压灰浆在1个月内获得了最大的机械强度,石灰-火山灰砂浆在3个月内获得了最大的强度,而空中石灰砂浆甚至在固化15个月后仍继续获得了机械强度。此外,陶瓷骨料的使用可生产出轻质且弹性的砂浆,与历史悠久的砂浆相容。

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