首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Evaluation of the mechanical properties of Inconel 718 to SCM 440 dissimilar friction welding through real-time monitoring of the acoustic emission system
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Evaluation of the mechanical properties of Inconel 718 to SCM 440 dissimilar friction welding through real-time monitoring of the acoustic emission system

机译:通过原声发射系统实时监测评估Inconel 718至SCM 440不同摩擦焊接的机械性能

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Friction welding was chosen for its versatility in the joining of dissimilar materials with high quality. The aim of this study is to determine the optimal welding conditions for attaining quality joints by using online monitoring of acoustic emission system signals. During friction welding, the formation of cracks, defects, or any abnormalities in the joining process which have a detrimental effect on the joints quality was identified. The most widely used materials in the aerospace industry-Inconel 718 and molybdenum steel-were joined by friction welding. The precision of the joints, internal defects, and quality are major concerns for aerospace parts. The results of the present research determined the optimal welding conditions for high tensile strength by nondestructively inducing acoustic emission signals. During friction time and upset time periods, the typical waveforms and frequency spectrum of the acoustic emission signals were recorded, and their energy level, average frequency, cumulative count, and amplitude were analyzed. Both cumulative count and amplitude were found to be useful parameters for deriving the optimal welding conditions. In the initial stage of friction welding, a very high voltage of continuous form was generated with frequency characteristics of 0.44 MHz and 0.54 MHz. The signals generated during the upset stage had a low voltage, but a very high frequency of 1.56 MHz and 1.74 MHz with a burst-type signal. The amplitude of the signal generated for the optimally welded joints was about 100 dB at the friction time and about 45 dB at the upset time.
机译:选择摩擦焊接在高质量的不同材料的连接中,选择了摩擦力。本研究的目的是通过使用声发射系统信号的在线监测来确定用于获得质量接头的最佳焊接条件。在摩擦焊接期间,鉴定了对接合质量有害作用的连接过程中的裂缝,缺陷或任何异常的形成。通过摩擦焊接加入航空航天行业中最广泛使用的材料 - Inconel 718和钼钢。关节,内部缺陷和质量的精度是航空航天零件的主要问题。本研究的结果通过非破坏性诱导声发射信号确定了高抗拉强度的最佳焊接条件。在摩擦时间和镦粗时间段期间,记录声发射信号的典型波形和频谱,分析了它们的能级,平均频率,累积计数和幅度。发现累积计数和幅度都被发现是用于导出最佳焊接条件的有用参数。在摩擦焊接的初始阶段,使用0.44MHz和0.54MHz的频率特性产生非常高的连续形式。在镦锻阶段期间产生的信号具有低电压,但具有1.56MHz的非常高的频率和1.74MHz,具有突发型信号。对于最佳焊接接头产生的信号的幅度在摩擦时间为约100dB,在镦锻时间为约45dB。

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