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Thermomechanical Analyses Of Ultrasonic Welding Process Using Thermal And Acoustic Softening Effects

机译:利用热和声软化作用的超声焊接过程的热力学分析

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Ultrasonic welding process is a rapid manufacturing process used to weld thin layers of metal at low temperatures and low energy consumption. Experimental results have shown that ultrasonic welding is a combination of both surface (friction) and volume (plasticity) softening effects. In the presented work, a very first attempt has been made to simulate the ultrasonic welding of metals by taking into account both of these effects (surface and volume). A phenomenological material model has been proposed which incorporates these two effects (i.e. surface and volume). The thermal softening due to friction and ultrasonic (acoustic) softening has been included in the proposed material model. For surface effects a friction law with variable coefficient of friction dependent upon contact pressure, slip, temperature and number of cycles has been derived from experimental friction tests. Thermomechanical analyses of ultrasonic welding of aluminium alloy have been performed. The effects of ultrasonic welding process parameters, such as applied load, amplitude of ultrasonic vibration, and velocity of welding sonotrode on the friction work at the weld interface are being analyzed. The change in the friction work at the weld interface has been explained on the basis of softening (thermal and acoustic) of the specimen during the ultrasonic welding process. In the end, a comparison between experimental and simulated results has been presented showing a good agreement.
机译:超声波焊接工艺是一种快速制造工艺,用于在低温和低能耗的情况下焊接金​​属薄层。实验结果表明,超声波焊接是表面(摩擦)和体积(塑性)软化效果的结合。在提出的工作中,已经做了首次尝试通过考虑到这两种影响(表面和体积)来模拟金属的超声波焊接。已经提出了一种现象学的材料模型,其中包含了这两个作用(即表面和体积)。所提出的材料模型已包含了由于摩擦和超声(声学)软化引起的热软化。对于表面效应,已经从实验摩擦测试中得出了具有可变摩擦系数的摩擦定律,该摩擦系数取决于接触压力,滑移,温度和循环次数。已经进行了铝合金超声焊接的热力学分析。分析了超声焊接工艺参数(如施加的载荷,超声振动的幅度和焊条的超声焊速)对焊接界面摩擦功的影响。已经基于在超声焊接过程中样品的软化(热和声)来解释了在焊接界面处的摩擦功的变化。最后,对实验结果和模拟结果进行了比较,显示出很好的一致性。

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