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A Study on the applicability of ultrasonic knife for processing CFRTP materials

CFRTP 소재 가공을 위한 초음파 나이프 적용 가능성에 관한 연구

  • Ki-Hyeok Song (Department of mold, Korea Polytechnics) ;
  • Hye-Jin Kim (Department of mechanical Engineering, INHA University) ;
  • Ji-young Park (Department of mechanical Engineering, INHA University) ;
  • Si-Myung Sung (Department of mechanical Engineering, INHA University)
  • 송기혁 (한국폴리텍대학 스마트금형과) ;
  • 김혜진 (인하대학교 기계공학과) ;
  • 박지영 (인하대학교 기계공학과) ;
  • 성시명 (인하대학교 기계공학과)
  • Received : 2023.06.19
  • Accepted : 2023.06.30
  • Published : 2023.06.30

Abstract

In this study, an experiment was conducted to confirm the applicability of the external shape control of the ultrasonic knife to the CFRTP material, which is the base material of thermoplastic. TC910 based on polyamide6 (PA6) was used as the material. The slope 와 and tool transfer speed of the material and tool were selected as process factors for processing, and the following results were obtained. Under all cutting conditions using an ultrasonic knife, friction heat caused by high-frequency vibration was issued at 150℃ at the contact part between the material and the knife during cutting. As a result of the cutting force analysis, the faster the transfer speed, the higher the cutting force as the angle of entry of the blade increased, and the size of the cutting force changed during cutting. As for the size of the burr in accordance with the transfer speed condition, the smallest burr occurred at 150mm/min in the side part, and the smallest burr occurred at 150mm/min and 200mm/min in the case of the outlet burr. The size of the burr according to the entry angle tended to decrease as the tool entry angle increased, and the side part tended to increase as the tool entry angle increased. As a result of the cutting surface analysis, it was confirmed that the base material was eluted under all conditions, and the faster the transfer speed, the lower the elution phenomenon of the base material. Based on the above results, cutting the CFRTP material with an ultrasonic knife is possible, but the effect on heat generation caused by friction needs to be minimized, and further research needs to be conducted on this.

Keywords

References

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