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Ultrasonic plastic welding using fundamental and higher resonance frequencies

机译:使用基本共振频率和更高共振频率的超声波塑料焊接

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Ultrasonic plastic welding using fundamental and higher resonance frequency vibrations simultaneously was studied. Using higher frequency, welding characteristics is improved due to the larger vibration loss of plastic materials. The 26 kHz welding tip vibrates in maximum velocity of over 4.5 m/s (peak-to-zero value) under a fundamental resonance frequency and there are several higher resonance frequencies up to 95 kHz whose vibration velocities are over one-third that of the fundamental frequency. Welding characteristics of 1.0-mm-thick polypropylene sheets are measured in the cases the vibration system are driven under combined driving voltages of fundamental and higher resonance frequencies. Welded area increases as number of driven higher frequencies increases. The welded area by three frequencies is about three to four times that of the case where only the fundamental frequency is driven, The welding characteristics of ultrasonic plastic welding are improved significantly by driving higher resonance frequencies simultaneously. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 3]
机译:研究了同时使用基本共振频率和较高共振频率振动的超声波塑料焊接。使用较高的频率,由于塑料材料的较大振动损失而改善了焊接特性。在基本共振频率下,26 kHz焊接头的最大速度超过4.5 m / s(峰值至零值)振动,并且在高达95 kHz的频率下,还有一些更高的共振频率,其振动速度是振动速度的三分之一。基本频率。在振动系统是在基本和更高共振频率的组合驱动电压下驱动的情况下,测量厚度为1.0毫米的聚丙烯片材的焊接特性。焊接区域随着驱动的更高频率数量的增加而增加。通过三个频率的焊接面积大约是仅驱动基频的情况的三到四倍。通过同时驱动更高的共振频率,超声波塑料焊接的焊接特性得到了显着改善。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:3]

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