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IMPACT TOUGHNESS OF HIGH-STRENGTH LOW-ALLOY STEEL WELDED JOINTS

机译:高强度低合金钢焊接接头的冲击韧性

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Impact toughness of samples with three different relative positions of V-notch and multipass V-butt welded joint at high-strength low-alloy steel S690 are considered in this paper. The aim of this paper is to analyze the influence of material degradation due to welding to impact toughness of samples made of considered steel. Impact toughness was analyzed by experimental approach objected to including as many influential factors as it is possible. The main objective of impact toughness testing is to evaluate the influence of welding to overall load capacity and stability of welded mechanical construction made of high-strength low-alloy steels. Fully understanding of transformation processes provoked by welding of high-strength low-alloy steels and impact toughness testing as resulting property of those processes are crucial to perform integrity, safety and reliability analysis. This paper pointed out the necessity of analyzing the welded constructions on different dimension levels. Further investigations in this area have to be a continued through more quantitative analysis of welded joints which will, established precise analytical model of zones of welded joints, and furthermore, in involvement with adequate software, a complete evaluation of the experimentally obtained results. As the chemical composition and microstructural state of high-strength low-alloy steel originate from special production process their nature must be fully understood during selection and definition of welding even during the design process of mechanical construction. As experimentally obtained results of impact toughness that correlate to microstructure and microhardness distribution implicated that development of those steels must be followed with improving weld processes and development, adjusting and modification of the design.
机译:本文考虑了具有三种不同相对位置的样品的冲击韧性,在高强度低合金钢S690中考虑了高强度低合金钢S690的三种不同位置。本文的目的是分析由于焊接引起的材料降解的影响,以冲击由考虑的钢制成的样品的韧性。通过实验方法分析了冲击韧性,反对包括尽可能多的影响因素。冲击韧性测试的主要目的是评估焊接对高强度低合金钢焊接机械结构的整体负荷能力和稳定性的影响。完全了解通过焊接高强度低合金钢的焊接引起的转化过程,并随着这些过程的所得到的性质,对这些过程的影响来说是至关重要的,以进行完整性,安全性和可靠性分析至关重要。本文指出了在不同尺寸水平上分析焊接结构的必要性。该领域的进一步调查必须是通过对焊接接头进行更多定量分析的持续,这将建立焊接关节区的精确分析模型,此外,参与适当的软件,完全评估实验所获得的结果。由于高强度低合金钢的化学成分和微观结构状态源自特殊生产过程,即使在机械结构的设计过程中,也必须在焊接的选择和定义期间完全理解它们的性质。作为实验获得的冲击韧性的结果与微观结构和显微硬度分布相关,涉及这些钢的开发,应遵循改善焊接过程和开发,调整和改进设计。

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