논문 상세보기

Optimization of Spark Plasma Sintering Temperature Conditions for Enhancement of Thermoelectric Performance in Gas-Atomized Bi0.5Sb1.5Te3 Compound KCI 등재

  • 언어ENG
  • URLhttps://db.koreascholar.com/Article/Detail/328054
구독 기관 인증 시 무료 이용이 가능합니다. 4,000원
한국분말야금학회지 (Journal of Korean Powder Metallurgy Institute)
한국분말재료학회(구 한국분말야금학회) (Korean Powder Metallurgy Institute)
초록

We fabricate fine (<20 μm) powders of Bi0.5Sb1.5Te3 alloys using a large-scale production method and subsequently consolidate them at temperatures of 573, 623, and 673 K using a spark plasma sintering process. The microstructure, mechanical properties, and thermoelectric properties are investigated for each sintering temperature. The microstructural features of both the powders and bulks are characterized by scanning electron microscopy, and the crystal structures are analyzed by X-ray diffraction analysis. The grain size increases with increasing sintering temperature from 573 to 673 K. In addition, the mechanical properties increase significantly with decreasing sintering temperature owing to an increase in grain boundaries. The results indicate that the electrical conductivity and Seebeck coefficient (217 μV/K) of the sample sintered at 673 K increase simultaneously owing to decreased carrier concentration and increased mobility. As a result, a high ZT value of 0.92 at 300 K is achieved. According to the results, a sintering temperature of 673 K is preferable for consolidation of fine (<20 μm) powders.

저자
  • Kwang-yong Jeong(Division of Advanced Materials Engineering, Kongju National University, 275, Budae-dong, Cheonan 31080, Republic of Korea)
  • Chul Hee Lee(Division of Advanced Materials Engineering, Kongju National University, 275, Budae-dong, Cheonan 31080, Republic of Korea)
  • Peyala Dharmaiah(Division of Advanced Materials Engineering, Kongju National University, 275, Budae-dong, Cheonan 31080, Republic of Korea)
  • Soon-Jik Hong(Division of Advanced Materials Engineering, Kongju National University, 275, Budae-dong, Cheonan 31080, Republic of Korea) Corresponding author