桥梁结构修复用水泥与聚合物复合材料的开发与研究

V. Erofeev, B. Bondarev, Valerij Kruglov, M. Gavrilov, A. Rodin, I. Erofeeva, A. Bondarev, A. Filatov, A. Martynov, Ilya Vostrikov
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引用次数: 0

摘要

本文旨在对桥梁工程受损结构的修复进行施工配合比技术的开发和研究。本文介绍了以混凝土和聚合物为粘结剂制备复合材料的研究结果。结果表明,影响水工构筑物结构构件耐久性的主要因素是车辆作用下的动荷载和移动荷载、通过水工构筑物的水中杂质的化学效应以及细菌和丝状真菌的生物效应。在之前的文章《桥梁作为水工构筑物的可维护性评价特性》中给出了水工构筑物的检查结果,发现了各种缺陷和损伤:裂缝、切屑、剥落等。为了消除这些缺陷,本文提出了清漆混合料、胶泥混合料和树脂混凝土的组成。对于损坏较大的结构,建议采用粉末活化混凝土进行修复。在试验研究过程中,确定了在电力负荷条件下、化学和生物侵蚀介质中推荐使用的具有提高强度和其他性能的水泥和聚合物混凝土组合物。推荐用作杀菌剂水泥的粘结剂。介绍了水泥与聚合物混合材料修复工程的工艺操作。所开发的复合材料的实际应用是可取的,包括在室外湿热循环区水工建筑物的结构缺陷消除过程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and research of cement and polymer composites for bridge structure repair
The article is dedicated to the construction mix technology development and the study intended for the bridgework damaged structures repair. It presents the results of a study of composites made on the concrete and polymer binders basis. It is shown that the main factors affecting the hydraulic structures' structural elements' durability are both dynamic and mobile loads from the effects of the vehicles, and chemical effects from impurities contained in the water passing through the structure as well as biological effects from bacteria and filamentous fungi. Previously in the article "Bridges maintainability evaluation peculiarities as part of hydraulic structures" were given hydraulic structures inspection results, found various defects and damages: cracks, chips, peeling, etc. In this article, to eliminate such defects were proposed the compositions of varnish-and-paint, mastic mixtures, and resin concrete. For the structure's repair with significant damage, were proposed powder-activated concrete use. In the experimental research process, the cement and polymer concrete compositions with improved strength and other properties recommended for use in power loads conditions, chemical and biological aggressive media, were established. Recommended for use as binders for biocidal cement. presented technological operations for repair work using cement and polymer mixtures. The developed composites' practical use is advisable, including in the structural defects elimination course in hydraulic structures located outdoors in zones with thermal and humidity cycling.
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