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首页> 外文期刊>Materials & design >Investigations on the mechanical properties and microstructure of dissimilar cp-titanium and AISI 316L austenitic stainless steel continuous friction welds
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Investigations on the mechanical properties and microstructure of dissimilar cp-titanium and AISI 316L austenitic stainless steel continuous friction welds

机译:异种cp-钛和AISI 316L奥氏体不锈钢连续摩擦焊缝的力学性能和显微组织的研究

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摘要

Friction welding process is a solid state joining process that produces a weld under the compressive force contact of one rotating and one stationary work piece. In this study, the friction welding of dissimilar joints of AISI 316L stainless steel and cp-titanium is considered. The optical, scanning electron microscopy studies of the weld were carried out. Moreover, the X-ray diffraction analysis was performed. The integrity of welds was achieved by the micro hardness and tensile tests. The fracture surface was examined by the scanning electron microscopy. The study showed that the magnitude of tensile strength of the dissimilar welded specimen was below that of the titanium base material if preheating was not applied at the interface. The high weld tensile strength was achieved by preheating the 316L stainless steel material to 700 ℃, smoothing and cleaning of the contact surfaces. Results illustrated that in dissimilar joints, different phases and intermetallic compounds such as FeTi, Fe_2Ti, Fe_2Ti_4O, Cr_2Ti and sigma titanium phase were produced at the interface. The presence of brittle intermetallic compounds at the interface resulted in degradation of mechanical strength which in turn led to premature failure of joint interface in the service condition. Preheating caused to produce oxide layer at the interface which was harmful for bonding. The oxide layer could be eliminated by applying pressure and smoothing the surface. Results of hardness tests illustrated that the high hardness was occurred in the titanium side adjacent to the joint interface. Moreover, the optimum operational parameters were obtained in order to achieve the weld tensile strength greater than the weak titanium material.
机译:摩擦焊接工艺是一种固态连接工艺,在一个旋转的工件和一个固定的工件的压力接触下产生焊接。在这项研究中,考虑了AISI 316L不锈钢和cp钛异种接头的摩擦焊接。对焊缝进行了光学,扫描电子显微镜研究。另外,进行了X射线衍射分析。焊缝的完整性是通过显微硬度和拉伸试验实现的。通过扫描电子显微镜检查断裂面。研究表明,如果不对界面进行预热,则异种焊接试样的抗拉强度值将低于钛基材料。通过将316L不锈钢材料预热到700℃,对接触表面进行平整和清洁,可以达到较高的焊接抗拉强度。结果表明,在不同的接头中,在界面处产生了不同的相和金属间化合物,如FeTi,Fe_2Ti,Fe_2Ti_4O,Cr_2Ti和sigma钛相。界面处存在脆性金属间化合物会导致机械强度降低,进而导致在使用条件下接头界面过早失效。预热导致在界面处产生氧化层,这对粘结有害。可以通过施加压力并使表面光滑来消除氧化物层。硬度测试的结果表明,高硬度发生在靠近接头界面的钛侧。此外,获得了最佳操作参数,以实现比弱钛材料更大的焊接抗拉强度。

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  • 来源
    《Materials & design》 |2011年第5期|p.3066-3075|共10页
  • 作者单位

    School of Metallurgy and Materials Engineering, University College of Engineering, University of Tehran, P.O. Box 71155-4563, Tehran, Iran;

    School of Metallurgy and Materials Engineering, University College of Engineering, University of Tehran, P.O. Box 71155-4563, Tehran, Iran;

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