The tensile strength: The most fundamental mechanical characteristics of concrete

A. Windisch
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Abstract

Concrete is an inhomogeneous building material. It has a considerable and reliable compressive strength and a relative low tensile strength which can be even exhausted locally under unfortunate conditions. It is quite obvious that the concrete tensile strength was always reprehended as the most unreliable concrete property. A simple relationship between tensile- and compressive strength is introduced. The mechanical background of the relation tensile- to compressive strength in case of ‘normal’ and high strength concretes is elucidated. Mechanical bond, too, relies completely on the tensile strength. In the design of structural concrete members the tension fields are more characteristic than the compression fields. Effective concrete strengths are not successful. Tensile strength can be applied as ‘yield condition’ for the lower bound solution in the theory of plasticity. The paper intends to contribute to the acceptance of the tensile strength as the more fundamental concrete characteristics.
抗拉强度:混凝土最基本的力学特性
混凝土是一种不均匀的建筑材料。它具有相当可靠的抗压强度和相对较低的抗拉强度,在不幸的条件下甚至可以在局部耗尽。很明显,混凝土抗拉强度一直被认为是最不可靠的混凝土性能。介绍了抗拉强度和抗压强度之间的简单关系。阐明了“普通”混凝土和高强混凝土抗拉强度与抗压强度关系的力学背景。机械粘合也完全依赖于抗拉强度。在结构混凝土构件的设计中,拉力场比压缩场更具有特征性。有效混凝土强度是不成功的。拉伸强度可作为塑性理论中下界解的“屈服条件”。本文旨在促进人们接受抗拉强度作为更基本的混凝土特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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