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添加剂对Hardox 450钢焊缝力学性能的影响。

Influence of Additives on the Mechanical Characteristics of Hardox 450 Steel Welds.

作者信息

Baskutis Saulius, Baskutiene Jolanta, Dragašius Egidijus, Kavaliauskiene Lina, Keršiene Neringa, Kusyi Yaroslav, Stupnytskyy Vadym

机构信息

Department of Production Engineering, Faculty of Mechanical Engineering and Design, Kaunas University of Technology, Studentu St. 56, 51424 Kaunas, Lithuania.

Department of Mechanical Engineering, Faculty of Mechanical Engineering and Design, Kaunas University of Technology, Studentu St. 56, 51424 Kaunas, Lithuania.

出版信息

Materials (Basel). 2023 Aug 12;16(16):5593. doi: 10.3390/ma16165593.

Abstract

The aim is to overcome the issues of high-hardness material welding by different additives used to achieve the desired improvements. The research is focused on Hardox 450 steel welding and factors to be considered in order to maintain the required mechanical properties of the weld. The selection of best suited welding materials or additives, including filler metals and shielding gases, are within the important factors to be taken into account. During the welding of Hardox 450 steel, cobalt, nickel, tungsten and titanium additives and cobalt and tungsten mixture additives were used and their influence on the microstructure and mechanical properties of the fusion and heat-affected zones was investigated. The microstructure of the weld zone is related to certain mechanical properties of the weld and heat-affected zone, such as hardness, tensile and bending strength, yield strength, strain at ultimate tensile strength, the Young's modulus and elongation. Research has shown significant differences in the mentioned parameters depending on specific additives used in the welds. It can be concluded that tungsten, used as an additive, increased the hardness of the heat-affected and fusion zones up to 478 HV; the combined presence of cobalt and tungsten additives improves the strength of the seam up to 744 MPa during tensile; and in the case of bending, nickel, when used as an additive, increased ductility (the bending modulus reached the limit of 94 GPa) and at the same time, decreased the risk of cracking. The obtained results highlight the possibilities for strengthening the welded joint of Hardox 450 steel using different additives or their mixtures. The research conclusions and recommendations aim at improving the quality and mechanical properties of welded Hardox 450 steel joints in various applications.

摘要

目的是通过使用不同的添加剂来克服高硬度材料焊接的问题,以实现所需的改进。该研究聚焦于Hardox 450钢的焊接以及为保持焊缝所需机械性能而需考虑的因素。选择最合适的焊接材料或添加剂,包括填充金属和保护气体,是需要考虑的重要因素。在Hardox 450钢的焊接过程中,使用了钴、镍、钨和钛添加剂以及钴和钨的混合添加剂,并研究了它们对熔合区和热影响区的微观结构和机械性能的影响。焊缝区的微观结构与焊缝和热影响区的某些机械性能相关,如硬度、拉伸和弯曲强度、屈服强度、极限拉伸强度下的应变、杨氏模量和伸长率。研究表明,根据焊缝中使用的特定添加剂,上述参数存在显著差异。可以得出结论,用作添加剂的钨将热影响区和熔合区的硬度提高到了478 HV;钴和钨添加剂的共同存在使焊缝在拉伸时的强度提高到了744 MPa;在弯曲情况下,用作添加剂的镍提高了延展性(弯曲模量达到了94 GPa的极限),同时降低了开裂风险。所得结果突出了使用不同添加剂或其混合物强化Hardox 450钢焊接接头的可能性。研究结论和建议旨在提高各种应用中Hardox 450钢焊接接头的质量和机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad6b/10456772/9fabc60e7bf1/materials-16-05593-g001.jpg

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