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논문 기본 정보

자료유형
학술대회자료
저자정보
Eunjin Jeon (Kyungpook National University) Jihyun Ha (Kyungpook National University) Heeeun Kim (Kyungpook National University) Seikwon Park (Korea Air Force Academy) Daehan Jung (Korea Air Force Academy) Jangwoon Park (POSTECH) Seunghoon Lee (POSTECH) Seungbum Park (Busan Economic Promotion Agency) Heecheon You (POSTECH)
저널정보
대한인간공학회 대한인간공학회 학술대회논문집 대한인간공학회 2013 추계학술대회
발행연도
2013.10
수록면
37 - 41 (5page)

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초록· 키워드

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Objective: The present study is intented to evaluate a safety-shoe with a ventilation hole in terms of inside-shoe microclimate and wearing comfort. Background: Safety shoes have functions to protect a worker’s feet and provide proper fitness and thermal comfort. However, the workers are wearing safety shoes for more than 6 hours a day, so that the safety shoes are exposed to the problems of skin disease such as athlete’s foot. Method: Ergonomic tests were conducted with safety-shoe wearers in industry to compare with ventilation hole shoes with the patented ventilation system to without ventilation shoes without a ventilation system in terms of skin temperature, microclimate(temperature, humidity), local sweat rate, thermography and subjective comfort. Results: The skin temperature measured at the navicular bone was found less increased in with ventilation hole shoes than in without ventilation shoes on average by 0.1℃ during the rest period and 0.5℃ during the exercise and recovery periods. The inside-shoe temperature measured at the toe region was found less increased in with ventilation hole shoes than in without ventilation shoes on average by 0.6℃ during the rest period and 0.3℃ during the exercise period. The inside-shoe humidity measured at the toe region was found less increased in with ventilation hole shoes than in without ventilation shoes on average by 15.1% during the rest period, 11.1% during the exercise period, and 15.2% during the recovery period. The amount of sweat measured on the foot at the end of the experiment was found significantly less in with ventilation hole shoes than in without ventilation shoes on average by 34%. Conclusion: The present study found that the safety shoes with ventilation system were superior than general safety shoes by decreasing skin temperature, inside shoe temperature, and relative humidity and by increasing thermal comfort. Application: The air ventilation system of the safety shoes can be applicable to military boots or golf shoes to increase their thermal comfort.

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ABSTRACT
1. Introduction
2. Method
3. Result
4. Discussion
References

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