Determination of the linear correlation coefficient between Young’s modulus and the compressive strength in fibre-reinforced concrete based on experimental studies

Author:

Czajkowska Agnieszka1ORCID,Raczkiewicz Wioletta1ORCID,Ingaldi Manuela2ORCID

Affiliation:

1. Kielce University of Technology , , Poland

2. Czestochowa University of Technology , , Poland

Abstract

Abstract The test procedures for determining Young’s modulus in concrete are complicated and time-consuming. Therefore, attempts to search for alternative methods of its determination are not surprising. The relationship between the value of compressive strength and Young’s modulus in concrete is known. However, the strength of this relationship in fibre-reinforced concrete has not been exactly described. The article attempts to investigate the strength of the correlation between Young’s modulus and the compressive strength of fibre-reinforced concrete. The influence of the amount of fibres on this relationship was also checked. Two types of specimen were used for the tests. The specimens differed in the content of steel fibres, 0.25% and 0.50%, respectively. In order to determine the correlation relationship, the method of linear regression and the coefficient of linear correlation were used. The use of the determination coefficient allowed us to examine the degree of explanation of one variable by another.

Publisher

Stowarzyszenie Menedzerow Jakosci i Produkcji

Subject

Management of Technology and Innovation,Industrial and Manufacturing Engineering,Safety, Risk, Reliability and Quality,Management Information Systems

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1. Management of the Special Processes – An Experimental Study of Bent Reinforced Concrete Beams;Advances in Science and Technology Research Journal;2024-04-01

2. The Impact of Waste Generated from Thermal Transformation of Municipal Wate on Selected Properties of Cement Mortar;System Safety: Human - Technical Facility - Environment;2023-12-01

3. Crack Resistance of RC Columns Strengthened By CFRP Under 30% of Uls Loading;System Safety: Human - Technical Facility - Environment;2023-12-01

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