Comparison of Material Properties and Creep Behavior of 20MnCr5 and S275JR Steels

Author:

Brnic J.1,Niu Ji Tai2,Turkalj G.1,Canadija M.1,Lanc D.1,Brcic M.1,Krscanski S.1,Vukelic G.1

Affiliation:

1. University of Rijeka

2. Henan Polytechnic University

Abstract

t is well known that the optimization procedure has an important role in the structure design. Furthermore, experimentally obtained data of material behavior is known to serve as the most relevant data in the mentioned design procedure. Therefore, this paper sets out to examine some experimentally determined data of the material subjected to certain environmental conditions. Based on these parameters, some analyses of material behavior can be made. In addition, data are of such nature that it is possible to make an appropriate comparison between the two investigated materials. Materials under considerations were 20MnCr5 steel and S275JR steel. Both of materials have been subjected to the same environmental conditions and the following properties can be singled out: ultimate tensile strength, 0.2 offset yield strength, the modulus of elasticity, elongation, creep behavior and Charpy impact energy. Each of the mentioned details are determined by the corresponding test, e.g. data related to strengths and to creep behavior are determined by tensile tests while impact energy is determined by Charpy impact test. In this way, the obtained values are presented in the form of the engineering stress-strain diagrams, creep curves and impact energy data.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference20 articles.

1. J.S. Arora: Introduction to Optimum Design (Elsevier Academic Press, New York 2004).

2. A.D. Belegundu, T.R. Chandrupatla: Optimization Concept and Applications in Engineering (Cambridge University Press, New York 2011).

3. K.J. Bathe: Finite Element Procedure (Prentice - Hall Inc., New Jersey 1996).

4. J. Brnic, M. Canadija: Analysis of Deformable Bodies Using Finite Element Method (in Croatian) (Fintrade & Tours, Rijeka, 2009).

5. J.A. Collins: Failure of Materials in Mechanical Design (John Wiley & Sons, New York, 1993).

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