Kim Jung-Hoon, Park Minbeom
Construction Robot and Automation Laboratory, Department of Civil & Environmental Engineering, Yonsei University, Seoul 03722, Korea.
Engineering & Construction Group, Samsung C&T Corporation, Seoul 13530, Korea.
Sensors (Basel). 2018 Mar 3;18(3):771. doi: 10.3390/s18030771.
Workability is regarded as one of the important parameters of high-performance concrete and monitoring it is essential in concrete quality management at construction sites. The conventional workability test methods are basically based on length and time measured by a ruler and a stopwatch and, as such, inevitably involves human error. In this paper, we propose a 4D slump test method based on digital measurement and data processing as a novel concrete workability test. After acquiring the dynamically changing 3D surface of fresh concrete using a 3D depth sensor during the slump flow test, the stream images are processed with the proposed 4D slump processing algorithm and the results are compressed into a single 4D slump image. This image basically represents the dynamically spreading cross-section of fresh concrete along the time axis. From the 4D slump image, it is possible to determine the slump flow diameter, slump flow time, and slump height at any location simultaneously. The proposed 4D slump test will be able to activate research related to concrete flow simulation and concrete rheology by providing spatiotemporal measurement data of concrete flow.
工作性被视为高性能混凝土的重要参数之一,在施工现场的混凝土质量管理中对其进行监测至关重要。传统的工作性测试方法基本上基于用尺子和秒表测量的长度和时间,因此不可避免地存在人为误差。在本文中,我们提出了一种基于数字测量和数据处理的4D坍落度测试方法,作为一种新型的混凝土工作性测试方法。在坍落度流动试验期间,使用3D深度传感器获取新拌混凝土动态变化的3D表面后,利用所提出的4D坍落度处理算法对流态图像进行处理,并将结果压缩成单个4D坍落度图像。该图像基本上表示新拌混凝土沿时间轴动态扩展的横截面。从4D坍落度图像中,可以同时确定任何位置的坍落度流动直径、坍落度流动时间和坍落度高度。所提出的4D坍落度测试将能够通过提供混凝土流动的时空测量数据,激活与混凝土流动模拟和混凝土流变学相关的研究。