旋转摩擦焊30ХГСА-40ХМФА焊接接头的疲劳强度

E. Priymak, E. Kuzmina, S. Gladkovskii, D. Vichuzhanin, V. Veselova
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摘要

旋转摩擦焊(RFW)是一种用于固体矿产勘查用钻杆生产的方法。为了满足超深井高速金刚石钻井的需求,需要制造轻型钻柱,因此有必要更加关注焊接区域的研究和RFW技术参数的设置。本文介绍了按ISO 10097标准尺寸的H型钻杆在循环载荷作用下,用30ХГСА(管体)钢和40ХМФА(工具接头)钢焊接接头的试验研究结果。在±420 MPa的循环幅值应力条件下,评估了接触面摩擦过程中施加在工件上的力(加热过程中的力)和550°С的焊后回火对焊接接头循环寿命的影响。研究确定,随着加热过程中受力的增大,在热力学影响区发生显微组织变化,从而导致焊接接头疲劳强度的提高。作者确定了焊后回火对焊接接头疲劳强度的负面影响,这表现在失效前的循环次数减少了15 - 40%,这取决于加热过程中力的大小。确定了指定钢组合的最佳RFW模式,该模式提供了最大的失效前循环次数:加热时的力(摩擦时)Fh=120 kN,锻造力Ffor=160 kN,加热时的旋转频率n=800 Rpm,加热时的扰度l=8 mm。对在最佳模式下产生的焊接接头和30ХГСА钢母材在不同的循环幅值下进行了一系列疲劳试验;绘制了极限耐力曲线。结果表明:管体材料(30ХГСА钢)与焊接接头的极限耐久曲线差异不显著;所得结果与显微硬度测量数据和断裂试样断口形貌相结合,揭示了循环载荷作用下裂纹扩展的机理。
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Fatigue strength of 30ХГСА–40ХМФА welded joints produced by rotary friction welding
Rotary friction welding (RFW) is used in the production of drill pipes for solid mineral prospecting. The need for the creation of the lightened drill strings for high-speed diamond drilling of ultradeep wells dictates the necessity of a greater focus on the study of a weld zone and setting the RFW technological parameters. This paper presents the results of experimental studies of a welded joint of a drill pipe of the H standard size according to ISO 10097, made of the 30ХГСА (pipe body) and 40ХМФА (tool joint) steels under the cyclic loads. The authors evaluated the influence of the force applied to the workpieces in the process of friction of the contacting surfaces (force during heating), and postweld tempering at a temperature of 550 °С on the cyclic life of welded joints, under the conditions of alternate tension-compression at the cycle amplitude stress of ±420 MPa. The study determined that with an increase in the force during heating, the microstructure changes occur in the zone of thermomechanical influence, contributing to an increase in the fatigue strength of welded joints. The authors identified the negative effect of postweld tempering on the fatigue strength of welded joints, which is expressed in the decrease in the number of cycles before failure by 15–40 %, depending on the magnitude of the force during heating. The optimal RFW mode of the specified combination of steels is determined, which provides the largest number of cycles before failure: the force during heating (at friction) Fh=120 kN, forging force Ffor=160 kN, rotational frequency during heating n=800 Rpm, and upset during heating l=8 mm. A series of fatigue tests have been carried out at various values of the cycle amplitude stress of the welded joint produced at the optimal mode and the 30ХГСА steel base metal; limited endurance curves have been plotted. It is shown that the differences in the limited endurance curves of the pipe body material (30ХГСА steel) and the welded joint are insignificant. The obtained results are supplemented by the microhardness measurement data and fractographs of fractured samples, revealing the mechanism of crack propagation under the cyclic loads.
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