Thermal Performance Test of Liquid Cooling Type Cold Plates for Robot Cooling

로봇 냉각을 위한 수냉식 냉각판의 열적 성능 평가

  • 강상우 (KIST 열.유동제어연구센터) ;
  • 이석원 (서울시립대학교 기계정보학) ;
  • 황규대 (유한대학 산업일어과) ;
  • 김서영 (KIST 열.유동제어연구센터)
  • Published : 2007.05.30

Abstract

In this study, we compare thermal performance between four different types of cold plates for humanoid robot cooling. Two commercially available cold plates made of copper have different dimensions and internal flow paths: One has $20{\times}20$ $mm^2$ base area with micro-channels and the other has $62.5{\times}62.5$ $mm^2$ base area with 85 round pin-fins. And two different types of cold plates of $20{\times}20$ $mm^2$ base area with 7 mm high are made of PC (polycarbonate), which aims to reduce the weight of cooling system. All cold plates are mounted on a $20{\times}20$ $mm^2$ copper block with two cartridge heaters of 30 $W/cm^2$. The overall heat transfer coefficient and thermal resistances for the liquid-cooled cold plates are obtained. The copper cold plate with micro-channels showed the best performance. Polycarbonate cold plates display fairly good thermal performance with more reduced system weight.

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