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A Study on the Fabrication of Heater based on Silicone Rubber

실리콘러버 기반의 히터제작에 관한 연구

  • Jeong-Oh Hong (Dept. of Control & Instrumentation Engineering, Kangwon National University) ;
  • Jae Tack Hong (Graduate School of Nano IT Design Fusion, Seoul National University of Science and Technology) ;
  • Shin-Hyeong Choi (Division of Electrical, Control & Instrumentation Engineering, Kangwon National University)
  • 홍정오 (강원대학교 제어계측공학과) ;
  • 홍재택 (서울과학기술대학교 나노IT디자인융합대학원) ;
  • 최신형 (강원대학교 전기제어계측공학부)
  • Received : 2023.03.20
  • Accepted : 2023.06.20
  • Published : 2023.06.30

Abstract

Since silicone rubber heaters are flexible, they can be directly attached or installed in objects to be heated even in flat, curved or three-dimensional shapes. Since the current heating method heats the entire object to be heated and raises it to a required temperature, ignoring areas or positions where heat is not required, partial intensive heating cannot be performed. When using multi-heating zones, rather than heating the entire object to be heated, only the parts that need heat are intensively heated according to the process, so it is possible to heat quickly by local location by applying different amounts of heat with a small amount of electric capacity to each place that needs heat, and heat energy can reduce. In this study, the temperature and heating time of the partially concentrated region in the multi-heating region structure are measured so that a uniform temperature or temperature difference occurs in the region requiring thermal fusion. In order to determine the optimal power density range and reduce capacitance, the safety of a silicon rubber heater manufactured with a multi-heating zone structure is investigated. If the silicon rubber heater is manufactured in a multi-heating method, the multi-intensive heating technology can be ideally applied to all heating processes.

실리콘러버히터는 플렉시블하기 때문에 평면, 곡면, 입체적인 형태에서도 직접 접착이나 피가열물에 넣어 설치할 수 있다. 현재의 가열방식은 열이 필요하지 않은 영역 또는 위치를 무시하고 피가열물체 전체를 가열하여 필요한 온도로 상승시키기 때문에 일부분만을 부분집중 가열할 수 없었다. 멀티히팅존을 이용하면 피가열물체 전체를 가열하는 것보다는 공정에 따라 열이 필요한 부분만 집중가열하기 때문에 열이 필요한 장소마다 적은 전기용량으로 발열량을 다르게 적용하여 국소 위치별로 빠르게 가열할 수 있고, 열에너지를 줄일 수 있다. 본 연구에서는 열융착이 필요한 영역에서 균일한 온도 또는 온도 차이가 발생하도록 다중 가열영역 구조내의 부분집중 영역에 대한 온도 및 가열 시간을 측정한다. 최적의 전력밀도 범위 결정 및 전기용량을 감소하기 위해 멀티히팅존 구조로 제작된 실리콘러버히터의 안전성을 알아본다. 이와 같이 다중가열방식으로 실리콘러버히터를 제작하면 다중집중 가열기술을 모든 가열공정에 이상적으로 적용할 수 있다.

Keywords

References

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