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不同砂填充率的绿色环保灌浆材料的工程特性

Engineering Properties of Green and Ecofriendly Grouting Materials with Different Sand Filling Ratios.

作者信息

Juang Chuen-Ul, Kuo Wen-Ten

机构信息

Department of Civil Engineering, National Kaohsiung University of Science and Technology, Kaohsiung 807, Taiwan.

出版信息

Materials (Basel). 2023 Jan 15;16(2):837. doi: 10.3390/ma16020837.

Abstract

With the active development of offshore wind power worldwide, the development of a green and ecofriendly grouting material (GEGM) has garnered global attention. Such a material must also be developed in Taiwan. Therefore, in this study, a series of environmentally friendly recycled materials were mixed in different proportions to develop a GEGM which can be implemented in the future construction of offshore wind turbines. To evaluate the mechanical properties of the GEGM, low water-to-binder (W/B) ratios (i.e., 0.21, 0.27, and 0.35) were used; cement was replaced with fixed amounts (20%) of ground granulated blast-furnace slag and fly ash; 2%, 2.5%, and 3% superplasticizers (SPs) were added; and two levels of sand content (60% and 70%) were used. The setting time of the GEGM was used to evaluate its workability; its compressive strength and flexural strength were used to evaluate its mechanical properties; and its sulfate resistance, length changes, and four-terminal resistance were used to evaluate its durability. The relationship between the durability and drying shrinkage of the GEGM was subsequently evaluated, and the ratio of final to initial setting times (F/I value) was calculated to determine the effects of the amount of SP added on workability. The highest F/I value (7.7) was achieved when 2 wt.% modified lignin sulfonate (MLS) was added because of the high viscosity of MLS, which compromised the workability of the concrete. The optimal compressive strength (83.62 MPa) was achieved when a W/B ratio of 0.21 was used, when the sand content was 70%, and when a 2% polycarboxylate superplasticizer (PCE) was added, whereas the optimal flexural strength (20.86 MPa) was achieved when 2.5% PCE was added. According to the nondestructive test results and the R2 value (>0.7) obtained from regression analyses of mechanical properties, the study results are reliable and may serve as a reference for future construction projects.

摘要

随着全球海上风电的积极发展,绿色环保灌浆材料(GEGM)的研发受到了全球关注。台湾地区也必须研发此类材料。因此,在本研究中,将一系列环保型再生材料按不同比例混合,以开发一种可用于未来海上风力涡轮机建设的GEGM。为评估GEGM的力学性能,采用了低水胶比(即0.21、0.27和0.35);用固定量(20%)的磨细粒化高炉矿渣和粉煤灰替代水泥;添加2%、2.5%和3%的高效减水剂(SPs);并采用了两个砂含量水平(60%和70%)。用GEGM的凝结时间评估其工作性;用其抗压强度和抗折强度评估其力学性能;用其抗硫酸盐性、长度变化和四端电阻评估其耐久性。随后评估了GEGM耐久性与干燥收缩之间的关系,并计算了终凝与初凝时间之比(F/I值),以确定添加SP量对工作性的影响。由于改性木质素磺酸盐(MLS)粘度高,影响了混凝土的工作性,添加2 wt.% MLS时获得了最高的F/I值(7.7)。当水胶比为0.21、砂含量为70%且添加2%聚羧酸高效减水剂(PCE)时,获得了最佳抗压强度(83.62 MPa),而添加2.5% PCE时获得了最佳抗折强度(20.86 MPa)。根据无损检测结果以及力学性能回归分析得到的R2值(>0.7),研究结果可靠,可为未来建设项目提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c1/9865630/0e78fcfd6bbe/materials-16-00837-g001.jpg

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