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고속 인출되는 광섬유의 헬륨 냉각장치 내 공기유입에 대한 수치적 연구
김경진(Kyoungjin Kim),김동주(Dongjoo Kim),곽호상(Ho Sang Kwak),박상희(Sang Hee Park),이영섭(Yeong Seop Lee),송시호(Si Ho Song),이원선(Won Sun Lee),문대승(Dae Seung Moon) 대한기계학회 2009 대한기계학회 춘추학술대회 Vol.2009 No.5
It is essential to properly cool down the glass fiber drawn from the fused silica preform in the high speed manufacturing process of high quality optical fiber. Natural cooling of glass fiber in the quiescent air is adequate only at low speed glass fiber drawing, and the modem optical fiber manufacturing requires a dedicated cooling unit with the helium injection in order to increase the thermal conductivity of cooling gas in the cooling unit. Even though the helium is constantly injected into the cooling unit, the air is still entrained and unavoidable when the glass fiber passes through the cooling unit. Thus, it is critical to find the operating conditions to minimize the amount of the air entrainment. The present numerical study investigates the air entrainment into the cooling unit from the outer atmosphere, and the effects of helium injection rate and direction on the air entrainment rate are discussed.