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Process technology of polymethyl methacrylate mortars and concretes for underwater construction work.

机译:水下施工作业用聚甲基丙烯酸甲酯砂浆和混凝土的加工技术。

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This thesis is concerned with recently developed new application techniques of polymethyl methacrylate (PMMA) mortars and concretes for underwater placement and bonding in Japan.; Using PMMA mortars and concretes being placed and bonded underwater, the strength and adhesion properties of these materials were examined from an underwater construction point of view. Specifically the following process technologies of PMMA mortars and concretes were investigated and studied: (1) binder formulations and mix proportions, (2) techniques for improving underwater strength and adhesion properties using white carbon and coupling agents, (3) effects of artificial seawater on strength and adhesion properties, (4) underwater adhesion to cement mortar and concrete substrates using newly developed cement paste primers, (5) effects of water temperature in underwater placing or bonding and curing processes on the strength and adhesion properties, (6) comparison of underwater strength and adhesion properties of PMMA mortar developed for this study with other commercial polymer mortars and (7) bond strength of PMMA concretes to the reinforcing steel (rebars) embedded underwater in consideration of the application of PMMA concretes to the polymer concrete structures reinforced with high-strength rebars or the repair work for deteriorated reinforced concrete structures.; It was concluded that newly developed process technologies of PMMA mortars and concretes give them a high potential to be dominant materials for future underwater construction work. The study shows the outstanding advantages of these materials in comparison to conventional underwater concretes using portland cement and water-soluble polymers. The advantages are that they are completely resistant to segregation and washout, have ease of compaction and show high-early-strength development.
机译:本文涉及最近在日本开发的用于水下浇筑和粘结的聚甲基丙烯酸甲酯(PMMA)砂浆和混凝土的新应用技术。使用PMMA砂浆和混凝土在水下放置并粘结,从水下施工的角度检查了这些材料的强度和附着力。具体而言,对以下PMMA砂浆和混凝土的加工技术进行了研究和研究:(1)粘合剂配方和配合比;(2)使用白炭黑和偶联剂改善水下强度和附着力的技术;(3)人造海水对水泥的影响强度和粘合性能,(4)使用新开发的水泥浆底漆对水泥砂浆和混凝土基材的水下粘合,(5)水下放置或粘合和固化过程中水温对强度和粘合性能的影响,(6)比较为进行本研究而开发的PMMA砂浆与其他商用聚合物砂浆的水下强度和粘合性能,以及(7)考虑到将PMMA混凝土应用于由PMMA增强的聚合物混凝土结构中,PMMA混凝土与埋入水下的钢筋(钢筋)的粘结强度高强度钢筋或钢筋混凝土结构劣化的维修工作es .;结论是,新开发的PMMA砂浆和混凝土加工技术使其有很大的潜力成为未来水下建筑工作的主要材料。研究表明,与使用硅酸盐水泥和水溶性聚合物的常规水下混凝土相比,这些材料具有突出的优势。优点是它们完全抗偏析和抗冲刷,易于压实,并显示出高早期强度。

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