초록
소나무로 제조된 톱밥보드를 수지함치율을 달리하여 함침한 후 $650^{\circ}C$로 탄화하여 우드세라믹을 제조하고 통전하여 이들의 전기적 성질 및 표면온도를 측정하였다. 고정저항이 작을수록 낮은 전압으로 통전하여도 우드세라믹의 표면온도가 높음을 알 수 있었으며, 저항이 클수록 표면온도를 $70^{\circ}C$ 이상 올리기 위해서는 전압을 높게해야 할 것으로 판단된다. 또한 전압을 높게 했을 때 우드세라믹에 흐르는 전류, 전력 및 표면온도는 높게 나타났으며, 동일 전압 하에서는 목표온도가 높을수록 도달시간, 전류 및 전력을 증가하였다.
Using sawdust boards made of pine by differing the percentage of resin impregnation, wood-ceramics were manufactured by carbonizing temperature at $650^{\circ}C$. Their electrical properties and surface temperature were measured by sending an electric current. As electrical resistance of woodceramic was lower, its surface temperature, even in a low voltage, became higher. It seemed to be necessary to applying higher voltage to the woodceramic to raise the surface temperature by target temperature $70^{\circ}C$ or more in this study, according as resistance increased. When the voltage increased, woodceramics showed higher level all in electric current, electric power and surface temperature. Arrival time, electric current and electric power increased with increase of target temperature under constant voltage.