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首页> 外文期刊>Journal of Applied Mechanical Engineering >Effect of Vibration Amplitude and Welding Force on Weld Strength ofUltrasonic Metal Welding
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Effect of Vibration Amplitude and Welding Force on Weld Strength ofUltrasonic Metal Welding

机译:振动振幅和焊接力对超声波金属焊接的焊接强度的影响

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Ultrasonic metal welding has been the subject of ongoing research and development, most recently concentrating on metal joining in miniature devices, for example to allow solder-free wire bonding. As well as at the small scale, there are also opportunities to research the joining of thicker sheet metals and to widen the range of similar and dissimilar materials that can be successfully joined using this technology. This study presents the design, characterisation and test of a lateral-drive ultrasonic metal spot welding device. The ultrasonic metal spot welding horn is modelled using finite element analysis (FEA) and its vibration behaviour is characterised experimentally to ensure ultrasonic energy is delivered effectively to the weld coupon. The welding stack and fixtures are then designed and mounted on a test machine to allow a series of experiments to be conducted for various welding and ultrasonic parameters. Weld strength is subsequently analysed using tensile-shear tests. The results show how the weld strength is particularly sensitive to the combination of clamping force and ultrasonic vibration amplitude of the welding tip, but there are optimal combinations of these and also limits that must be clearly identified.
机译:超声波金属焊接一直是正在进行的研究和开发的主题,最近集中在微型设备中的金属连接上,例如允许无焊线键合。除了小规模生产,还有机会研究较厚的钣金件的连接,并拓宽使用该技术可以成功连接的相似和不相似材料的范围。这项研究介绍了横向驱动超声金属点焊设备的设计,表征和测试。使用有限元分析(FEA)对超声波金属点焊喇叭进行建模,并通过实验表征其振动行为,以确保将超声波能量有效地传递到焊片。然后将焊接叠层和夹具设计并安装在测试机上,以允许针对各种焊接和超声参数进行一系列实验。随后使用拉伸剪切试验分析焊接强度。结果表明,焊接强度对夹持力和焊嘴的超声振动幅度的组合特别敏感,但这些组合有最佳组合,并且必须明确确定极限。

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