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首页> 外文期刊>Thin-Walled Structures >Hot-dip galvanizing of high and ultra-high strength thin-walled CHS steel tubes: Mechanical performance and coating characteristics
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Hot-dip galvanizing of high and ultra-high strength thin-walled CHS steel tubes: Mechanical performance and coating characteristics

机译:热浸镀锌高强强度薄壁CHS钢管:机械性能和涂层特性

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摘要

Hot-dip galvanizing is one of the most common corrosion protection techniques for steel. This widely available method increases the lifetime of steel structures by up to 50 years. Although there is a well-established method for hot-dip galvanizing of structural mild-steel, the effects of this method on mechanical properties of high and ultra-high strength steels (HSS and UHSS), with nominal yield strength greater than 700MPa, has not been thoroughly studied. The study of galvanized thin-walled HSS and UHSS tubes is important since (a) galvanizing heat can easily penetrate the small thickness of thin-walled tubes and change their mechanical behaviour, (b) these materials are made through special heat treatment process which might render them sensitive to heat exposure during hot-dip galvanizing, and (c) these materials are high in alloy especially Si equivalent (Si+P) content which categorizes them as reactive steel with rapid reaction with molten zinc. Therefore, to deeply study the performance of galvanized high-grade steels, HSS and UHSS thin-walled tubes were dipped in zinc bath for various durations. For each bath time, a tube with intact and one with sand-blasted surface were used so that the roughness effect of the steel surface on coating performance could be explored. Dog-bone, tube shape, and small beam-shaped specimens were cut out of the larger tubes for tensile, compressive, impact, microscopy, coating thickness, and hardness studies. A mild steel tube was also galvanized and studied as a control specimen for comparison purposes. These studies showed that after galvanizing, HSS and UHSS materials lost their ultimate stress and recovered some of their ductility. On the other hand, galvanized mild steel specimens lost a small portion of their ductility and gained higher yield and ultimate stresses. In addition, it was found that galvanizing did not affect the hardness of HSS materials but decreased the hardness of UHSS materials up to 10%. Coating studies were conducted through thickness measurements, impact tests, and microscopic studies. The measurements showed that the coating thickness increased with respect to bath time and that a thicker coating formed on sand-blasted surfaces. Moreover, impact tests and microscopic studies on plastically bent HSS and UHSS specimens demonstrated that the favourable coating in terms of cracking under severe plastic deformation was formed on non-sand-blasted steel surfaces which were experienced a zinc bath time of 1.5 min. The outcomes of this study have the potential to be incorporated into the codes of practice and design guidelines for suitable hot-dip galvanizing and design of structural components made of galvanized HSS and UHSS.
机译:热浸镀锌是钢铁最常见的腐蚀保护技术之一。这种广泛可用的方法将钢结构的寿命增加长达50年。虽然存在结构温和钢的热浸镀锌方法,但这种方法对高和超高强度钢(HSS和UHS)的力学性能的影响,标称产量强度大于700MPa,具有没有彻底研究过。镀锌薄壁HSS和UHSS管的研究很重要,因为(a)镀锌热量可以容易地穿透薄壁管的小厚度,并改变其机械行为,(b)这些材料是通过特殊的热处理过程进行的使它们在热浸镀锌过程中对热暴露敏感,并且(c)这些材料高于合金,特别是Si当量(Si + P)含量,其作为反应性与熔融锌的快速反应分类为反应钢。因此,为了深入研究镀锌高档钢的性能,HSS和UHSS薄壁管浸入锌浴中,用于各种持续时间。对于每个浴时间,使用具有完整性的管,并且具有砂喷砂表面的管,使得可以探索钢表面对涂层性能的粗糙度效果。狗骨,管形和小梁形标本被切出较大的管,用于拉伸,压缩,撞击,显微镜,涂层厚度和硬度研究。对于对照样品,温和的钢管也被镀锌,并研究了用于比较目的。这些研究表明,在镀锌后,HSS和UHSS材料丧失了他们的最终压力并回收了一些延展性。另一方面,镀锌温和钢标本失去了延展性的一小部分,并获得了更高的产量和最终应力。此外,发现镀锌不影响HSS材料的硬度,但降低了UHSS材料的硬度高达10%。通过厚度测量,冲击试验和显微镜研究进行涂层研究。测量结果表明,涂​​层厚度相对于浴时间增加,并且在砂喷砂表面上形成较厚的涂层。此外,对塑性弯曲的HSS和UHSS样本的影响试验和微观研究表明,在严重的塑性变形下的裂纹方面的良好涂层在非砂喷砂表面上形成了1.5分钟的锌浴时间。本研究的结果有可能纳入实践守则和设计指南,用于适当的热浸镀锌和设计由镀锌HSS和UHSS制成的结构部件。

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