Configurations of Large Capacity Ultrasonic Complex Vibration Sources with Complex Transverse Vibration Rods and a Disk with Multiple Transducers

The ultrasonic complex vibration systems with elliptical to circular locus are effective and essential for new high power applications in various industries. Configuration of a 27kHz and a 40kHz complex vibration source with a complex transverse vibration rod with a welding tip part and a longitudin...

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Veröffentlicht in:JSME International Journal Series C Mechanical Systems, Machine Elements and Manufacturing Machine Elements and Manufacturing, 2006, Vol.49(3), pp.695-702
Hauptverfasser: TSUJINO, Jiromaru, UEOKA, Tetsugi, KIKUCHI, Yuya
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container_title JSME International Journal Series C Mechanical Systems, Machine Elements and Manufacturing
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creator TSUJINO, Jiromaru
UEOKA, Tetsugi
KIKUCHI, Yuya
description The ultrasonic complex vibration systems with elliptical to circular locus are effective and essential for new high power applications in various industries. Configuration of a 27kHz and a 40kHz complex vibration source with a complex transverse vibration rod with a welding tip part and a longitudinal and transverse vibration disk with six and four bolt-clamped Langevin type PZT longitudinal transducers and welding characteristics of aluminum and aluminum alloy plates using complex vibration systems were studied. Outer diameters of the 40kHz complex vibration sources are 191 to 195mm which are about half of the diameter 395mm of the 27kHz vibration source. Stepped complex transverse-vibration rods with a welding tip is installed in the center of the disk and is driven in circular vibration locus at the free edge of the rod (welding tip) using three and two 500W power amplifier systems.
doi_str_mv 10.1299/jsmec.49.695
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subjects Complex Vibration Locus
Complex Vibration Welding System
Large Capacity Complex Vibration Source
Ultrasonic Welding
Welding of Aluminum Alloy
title Configurations of Large Capacity Ultrasonic Complex Vibration Sources with Complex Transverse Vibration Rods and a Disk with Multiple Transducers
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