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      Influence of the Welding Process on the Mechanical Characteristics and Fracture of the S700MC High Strength Steel under Various Types of Loading

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          Abstract

          This paper focuses on the mechanical properties analysis of the high strength S700MC steel applied in welding joints. The research comprised mechanical tests for checking what the changes of tensile characteristics, mechanical parameters, resistance to impact, and fracture toughness look like in selected regions of the welding joint. Stress-strain curves have shown significant differences in the tensile characteristic shape and the values of Young’s modulus, yield stress, ultimate tensile strength, and ductility due to the welding process applied. In the case of Charpy tests, the courses of the accumulated energy, force, deflection, and project velocity are presented, indicating the maximum value of absorbed energy, the same level of force during the first contact of the projectile with the specimens, and the significant variation of the velocity for the impact energy ranging from 50 J up to 300 J. On the basis of the fracture toughness tests, the distributions of the CTOD (Crack Tip Opening Displacement) values are presented for the parent material, HAZ (Heat Affected Zone) and weld. Moreover, the characteristic features of the fatigue pre-crack, transient and crack propagation zones are identified and discussed.

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          Laser Welding of New Grade of Advanced High Strength Steel STRENX 1100 MC

          The article presents results of investigations on autogenous laser welding of new grade STRENX 1100 MC steel. The modern Disk laser was applied for of 5.0 mm thick butt joints welding. The influence of laser welding parameters, mainly the energy input of laser welding on the penetration shape, weld quality, structure and mechanical performance was investigated. It was found that the investigated steel has surprisingly low carbon equivalent CET just 0.328, and also relatively high temperature of martensitic transformation M s at 430.6°C. Despite very rapid cooling times t 8/5 in a range from 0.6 to 1.3 s, thus rapid solidification there was no tendency to cracking of weld metal or HAZ. Significant drop of microhardness in the HAZ resulted in a decrease of tensile strength of joints, compared to the base metal. Impact toughness of test joints was at only 50÷60% of the base metal.
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            Materials Used in Automotive Manufacture and Material Selection Using Ashby Charts, International.

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              Tow truck frame made of high strength steel under cyclic loading

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                20 November 2020
                November 2020
                : 13
                : 22
                : 5249
                Affiliations
                [1 ]Department of Vehicle Type-Approval & Testing, Motor Transport Institute, 03-301 Warsaw, Poland
                [2 ]Centre for Material Testing, Motor Transport Institute, 03-301 Warsaw, Poland; katarzyna.makowska@ 123456its.waw.pl
                [3 ]Department of Experimental Mechanics, Institute of Fundamental Technological Research PAN, 02-106 Warsaw, Poland; zkowalew@ 123456ippt.pan.pl
                Author notes
                [* ]Correspondence: tadeusz.szymczak@ 123456its.waw.pl ; Tel.: +48-22-4385-307
                Article
                materials-13-05249
                10.3390/ma13225249
                7699769
                33233651
                347480f8-4797-4d03-ab11-2442e9334cba
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 26 September 2020
                : 16 November 2020
                Categories
                Article

                high strength steel,weld,haz,tensile curve,impact,fracture toughness,ctod,fractography,s700mc

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