Kim Kwan Kyu, Yeon Jaeheum, Lee Hee Jun, Yeon Kyu-Seok
North Gyeonggi Branch, Joongbu Division, Korea Conformity Laboratories, Pocheon, Gyeonggi 11184, Korea.
Department of Engineering and Technology, Texas A&M University-Commerce, Commerce, TX 75429, USA.
Polymers (Basel). 2019 Aug 7;11(8):1321. doi: 10.3390/polym11081321.
The primary purpose of this study was to investigate the feasibility of applying polymeric cementitious materials to three-dimensional additive construction (3DAC). Specifically, styrene-butadiene rubber (SBR) latex was employed as an admixture to produce SBR-modified cementitious mixtures, and their fresh properties were experimentally investigated to determine the feasibility of their use in the 3DAC process. The SBR/cement ratio was controlled based on four main materials (i.e., cement, sand, silica fume, and fly ash) in order to determine the optimal fresh properties. The test results revealed that the SBR-modified cementitious mixtures showed excellent flowability, extrudability, buildability, and open time, all of which are required for 3DAC materials. The optimal flow of the SBR-modified cementitious mixtures was 70% ± 1%, which is appropriate for 3DAC applications. According to the experiment results, the SBR-modified cementitious mixtures were sufficiently competitive to serve as a new class of materials for 3D additive construction.
本研究的主要目的是探讨将聚合物胶凝材料应用于三维增材施工(3DAC)的可行性。具体而言,采用丁苯橡胶(SBR)胶乳作为外加剂来制备SBR改性胶凝混合料,并通过实验研究其新拌性能,以确定其在3DAC工艺中使用的可行性。基于四种主要材料(即水泥、沙子、硅灰和粉煤灰)控制SBR/水泥比,以确定最佳新拌性能。试验结果表明,SBR改性胶凝混合料表现出优异的流动性、挤出性、可施工性和开放时间,这些都是3DAC材料所必需的。SBR改性胶凝混合料的最佳流动度为70%±1%,适用于3DAC应用。根据实验结果,SBR改性胶凝混合料具有足够的竞争力,可作为一类新型的3D增材施工材料。