首页> 外文会议>IEEE International Symposium on Applied Computational Intelligence and Informatics >Mechanical Impulse Technique Used to determine the Elastique Characteristics of Welded Steel Bars of Concrete Reinforcements Compared with those Obtained by Analytical, Numerical and Experimental Methods
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Mechanical Impulse Technique Used to determine the Elastique Characteristics of Welded Steel Bars of Concrete Reinforcements Compared with those Obtained by Analytical, Numerical and Experimental Methods

机译:用于确定混凝土增强件焊接钢筋的弹性特性的机械脉冲技术与分析,数值和实验方法所获得的

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Obtaining hard and rigid structures, so necessary in the field of constructions, can be obtained by pouring concrete over reinforcements formed of steel or polymer bars and which by drying acquire the desired characteristics. The joints of the bars are made by splicing them with steel wires. The replacement of this time-consuming technique by a welding of steel bars brings not only an increase in productivity, but also an increased quality and safety of these joints.This paper aims to develop and validate a technique based on the analysis of vibracoustic signals obtained by applying a mechanical impulse to welded bars, in order to determine their elastic characteristics. The tests were performed on six dimensions of the welded steel bars, and the acquisition of the signals was done by means of an acoustic sensor consisting of a dynamic microphone of high fidelity in the frequency range of 20 Hz-20 kHz. Spectral analysis of vibration signals was done using the Fast Fourier Transform (FFT) and the Prony Series Method (PSM). The first frequencies in the spectrum were compared with those obtained theoretically by approximating the cylinder bars, respectively with those obtained numerically using the Modal Analysis (MA) based on the Finite Element Method (FEM). For the comparison of the longitudinal modulus of elasticity (Young modulus), resulting on the basis of the acoustic method, the classic tensile test method was used.
机译:获得硬度和刚性结构,如此在结构领域中必要的,可以通过在由钢或聚合物棒形成的增强件上浇注混凝土而获得,并且通过干燥捕获所需的特性。通过用钢丝拼接它们来制造棒的关节。通过钢筋焊接更换这一耗时的技术不仅提高了生产率,而且提高了这​​些关节的质量和安全性。本文旨在基于所获得的Vibriacousic信号的分析来开发和验证技术通过将机械脉冲施加到焊接条,以确定它们的弹性特性。在焊接钢筋的六个尺寸上进行测试,并通过由20Hz-20kHz的频率范围的高保真的动态麦克风组成的声学传感器进行信号进行。使用快速傅里叶变换(FFT)和Proy系列方法(PSM)进行振动信号的光谱分析。将频谱中的第一频率与理论上通过近似气缸棒的那些进行比较,基于有限元方法(FEM)使用模态分析(MA)以数字方式获得的那些。为了比较弹性(杨氏模量)的纵向模量,基于声学方法,使用经典的拉伸试验方法。

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