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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Assessment of Mechanical Properties, Residual Stresses and Diffusible Hydrogen of Longitudinal Weld in Electric Water Heater Tanks
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Assessment of Mechanical Properties, Residual Stresses and Diffusible Hydrogen of Longitudinal Weld in Electric Water Heater Tanks

机译:电热水器储罐纵向焊接的力学性能,残余应力和扩散氢的评估

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The core technique of electric storage water heaters is the manufacture of the tanks, and the welding technique is the key technology of the tank manufacture. A company producing water heaters received feedback from its after-sales that a large quantity of water leakage from the tanks was found in the market. A follow-up on the manufacturing site by the researchers showed that the position of the water leakage defects mostly happens in the welds of the tanks. Series of experiments were conducted to investigate the mechanical properties, residual stress, and diffusible hydrogen content of the longitudinal weld of the tank. Results of the mechanical properties showed that both the micro-hardness and the tensile strength of the welds are higher than the base metal. There are higher residual compressive stresses in the weld center and the adjacent-weld zone. Vertical residual compressive stress decreases first and then increases (149 MPa–28 MPa–134 MPa) from the weld ends to the middle, whilst the transversal stress decreases continuously (332 MPa~240 MPa) from the weld center to the heat affected zone. After enameling, the longitudinal welds’ peak micro-hardness of coarse grained region reduces by 30.9 HV1, and the average micro-hardness of the HAZ reduces by 5 HV1. The average vertical residual compressive stress difference of the same test points reduces from 270.6 MPa to 20.4 MPa. It proves that enameling can improve the mechanical property of the longitudinal welds.
机译:储水式热水器的核心技术是水箱的制造,焊接技术是水箱制造的关键技术。一家生产热水器的公司从其售后获得反馈,认为在市场上发现水箱大量漏水。研究人员对制造现场的跟踪研究表明,漏水缺陷的位置主要发生在储罐的焊缝中。进行了一系列实验,以研究储罐纵向焊缝的机械性能,残余应力和可扩散氢含量。力学性能的结果表明,焊缝的显微硬度和抗拉强度均高于母材。焊缝中心和相邻焊缝区的残余压应力较高。垂直残余压应力先从焊接端到中间减小,然后增加(149 MPa–28 MPa–134 MPa),而从焊接中心到热影响区的横向应力连续减小(332 MPa〜240 MPa)。搪瓷后,粗焊缝区域的纵向焊缝的峰值显微硬度降低30.9 HV1,热影响区的平均显微硬度降低5 HV1。相同测试点的平均垂直残余压应力差从270.6 MPa降低到20.4 MPa。证明了搪瓷可以改善纵向焊缝的机械性能。

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