• 제목/요약/키워드: AIN-hBN

검색결과 4건 처리시간 0.026초

AIN 세라믹스의 미세조직과 기계적 성질에 미치는 h-BN 첨가의 영향 (Effect of h-BN Content on Microstructure and Mechanical Properties of AIN Ceramics)

  • 이영환;김준규;조원승;조명우;이은상;이재형
    • 한국세라믹학회지
    • /
    • 제40권9호
    • /
    • pp.874-880
    • /
    • 2003
  • AIN-BN계 머시너블 세라믹의 미세조직, 기계적 성질 및 기계 가공성에 미치는 h-BN 첨가의 영향을 조사하였다. 소결체의 상대밀도는 h-BN 첨가량의 증가와 더불어 감소하였다. 또한, 4점 굽힘 강도도 AIN 단미의 238 MPa에서 30 vo1% BN 첨가에 의해 182 MPa까지 감소하였다. 낮은 탄성계수와 AIN 매트릭스와 h-BN 입자와의 열팽창계수의 차이에 의해 발생한 잔류인장응력에 의해 AIN-BN 복합재료의 강도가 감소되었다고 생각된다. 판상형태의 h-BN 입자에 의해 균열편향과 pull-out은 증가하였으나, 파괴인성은 BN 첨가량과 더불어 감소하였다. AIN 분말표면에 존재하는 알루미나와 소결조제인 $Y_2$O$_3$와의 반응에 의해 2차상인 YAG상과 ${\gamma}$-Al$_2$O$_3$상이 생성되었다. AIN에 10~30 vo1%의 BN을 첨가한 복합재료에 대하여 수행한 절삭시험에서 절삭력과 배분력은 h-BN 첨가량에 따라 감소하였으며, 우수한 기계 가공성을 입증하였다. 또한, 모든 시편에서 짧은 시간 내에 0.5 $\mu$m (Ra) 이하의 비교적 양호한 표면 거칠기에 도달할 수 있었다.

AIN-hBN계 머시너블 세라믹스의 기계적 특성 및 엔드밀링 가공성 평가 (Mechanical Properties and End-milling Characteristic of AIN-hBN Based Machinable Ceramics)

  • 백시영;조명우;조원승
    • 한국세라믹학회지
    • /
    • 제45권1호
    • /
    • pp.75-81
    • /
    • 2008
  • In this study, machining characteristics of AIN-hBN composites were evaluated in end-milling process. As a first step, AIN-hBN composite specimens with various hBN contents were prepared using hot press method. Material properties of the composites, such as relative density, Young's modulus and fracture toughness, were measured and compared. Then, a series of end-milling experinients were performed under various cutting conditions by changing cutting speed, depth-of-cut and feed rate. Cutting force variations were measured using a tool dynamometer during the cutting experiments. Machined surfaces of the specimens were observed using SEM and a surface pro filer to investigate the surface integrity changes. The cutting force decreased with an increases of hBN content. The cutting process was almost impossible for monolithic AIN, owing to severe chipping. In contrast, at high content of hBN, surface damage and chipping decreased, and better surface roughness can be obtained.

BN 입자 강화 Al-5wt% Mg 기지 복합재료의 고온 크립 변형에서의 임계응력 해석 (A Study of Threshold stress during High Temperature Creep of $\textrm{BN}_f$/Al-5, wt% Mg Metal Matrix Composite)

  • 송명훈;권훈;김용석
    • 한국소성가공학회:학술대회논문집
    • /
    • 한국소성가공학회 2000년도 춘계학술대회논문집
    • /
    • pp.187-191
    • /
    • 2000
  • High temperature creep behaviour of Al-5 wt% Mg alloy reinforced with 7.5% BN flakes was studied. The composite specimens showed two main creep characteristics : (1) the value of the apparent stress exponent of the composite was high and varied with applied stress (2) the apparent activation energy for creep was much larger than that for self-diffusion in aluminum The true stress exponent of the composite was set equal to 5. Temperature dependence of the threshold stress of the composite was very strong. Which could not be rationalized by allowing for the temperature dependence of the elastic modulus change. AIN particles which were incorporated into the Al matrix during fabrication of the composite by the PRIMEXTM method were found to be effective barriers to dislocation motion and to give rise the threshold stress during creep of the composite

  • PDF

Nucleation of CVD Diamond on Various Substrate Materials

  • Fukunaga, O.;Qiao, Xin;Ma, Yuefei;Shinoda, N.;Yui, K.;Hirai, H.;Tsurumi, T.;Ohashi, N.
    • The Korean Journal of Ceramics
    • /
    • 제2권4호
    • /
    • pp.184-187
    • /
    • 1996
  • Diamod nucleation by mw assisted CVD was examined various conditions namely, (1) diamond nucleation on variour substrate materials, such as Si, cubic BN, pyrolytic BN and AIN, (2) AST(Activated species transport) method which promote nucleation of diamond on single crystal and polycrystalline alumina substrate was developed. (3) Effect of bias enhancement of nucleation on single crystalline Si was examined, and finally (4) DST (Double step treatment) method was developed to enhance diamond nucleation on Ni. In this method, we separated carbon diffusing process into Ni, carbon precipitating process from the inside of Ni and diamond precipitation process.

  • PDF