• 제목/요약/키워드: Al-$B_4C$ composite powder

검색결과 20건 처리시간 0.022초

고압 자전 고온반응 합성법에 의한 B4C-Al2O3복합분말 제조 (Preparation of B4C-Al2O3 Composite Powder by Self-propagation High-temperature Synthesis(SHS) Process under High Pressure)

  • 임경란;강덕일;김창삼
    • 한국세라믹학회지
    • /
    • 제40권1호
    • /
    • pp.18-23
    • /
    • 2003
  • 정량의 B$_2$O$_3$/A1/C의 혼합분말을 화학노 대신 고압의 알곤 분위기를 사용하여 SHS 공정으로 B$_4$C-A1$_2$O$_3$ 복합분말을 제조하였다. 2B$_2$O$_3$+4A1+C=B$_4$C-2A1$_2$O$_3$의 반응식에 해당하는 B$_2$O$_3$(-100 메쉬), Al(-200 메쉬), C(-200 메쉬)의 분말을 2시간 건식 볼밀로 혼합한 후, 고온 고압의 SHS 반응기에 넣고 약 10기압의 알곤 분위기에서 점화하여 SHS을 일으켰다. 반응 생성물은 XRD 분석으로 안과 겉이 균일하게 반응이 일어났으며 반응 생성물로 화학노 사용시 동반되는 부산물 AlB$_{12}$C$_2$가 없는 B$_4$C-A1$_2$O$_3$ 복합 분말을 얻었다. 이 복합 분말은 SEM으로 보면 약 0.3~l $mu extrm{m}$ 크기의 결정이 모인 약 60~100$\mu\textrm{m}$ 크기이었다. 그러나 약 15기압을 사용하였을 때는 부분 소결이 일어나 15~25$\mu\textrm{m}$ B$_4$C 분말에 0.1~0.2$\mu\textrm{m}$의 알루미나가 분산되어 있는 고강도의 복합 분말이 생성되었다.

B4C 함량에 따른 6061 Al-B4C 복합분말의 소결 특성 연구 (Effect of B4C Content on the Sintering Characteristics of 6061Al-B4C Composite Powder)

  • 박진주;홍성모;김경열;이민구;이창규;이원혁;이양규
    • 한국분말재료학회지
    • /
    • 제20권3호
    • /
    • pp.215-220
    • /
    • 2013
  • In the present work, 6061 Al-$B_4C$ sintered composites containing different $B_4C$ contents were fabricated and their characteristic were investigated as a function of sintering temperature. For this, composite powders and their compacts with $B_4C$ various contents from 0 to 40 wt.% were fabricated using a planetary ball milling equipment and cold isostatic pressing, respectively, and then they were sintered in the temperature ranges of 580 to $660^{\circ}C$. Above sintering temperature of $640^{\circ}C$, real density was decreased due to the occurrence of sweat phenomena. In addition, it was realized that sinterability of 6061Al-$B_4C$ composite material was lowered with increasing $B_4C$ content, resulting in the decrease in its real density and at the same time in the increment of porosity.

기계적 밀링 공정에 의해 제조된 Al-B4C 복합분말의 밀링 거동 연구 (Milling Behaviors of Al-B4C Composite Powders Fabricated by Mechanical Milling Process)

  • 홍성모;박진주;박은광;이민구;이창규;김주명;이진규
    • 한국분말재료학회지
    • /
    • 제19권4호
    • /
    • pp.291-296
    • /
    • 2012
  • In the present work, Al-$B_4C$ composite powders were fabricated using a mechanical milling process and its milling behaviors and mechanical properties as functions of $B_4C$ sizes ( $100{\mu}m$, 500 nm and 50 nm) and concentrations (1, 3 and 10 wt.%) were investigated. For achieving it, composite powders and their compacts were fabricated using a planetary ball mill machine and magnetic pulse compaction technology. Al-$B_4C$ composite powders represent the most uniform dispersion at a milling speed of 200 rpm and a milling time of 240 minutes. Also, the smaller $B_4C$ particles were presented, the more excellent compositing characteristics are exhibited. In particular, in the case of the 50 nm $B_4C$ added compact, it showed the highest values of compaction density and hardness compared with the conditions of $100{\mu}m$ and 500 nm additions, leading to the enhancement its mechanical properties.

표면 개질에 의한 상압에서의 B4C/Al복합체 제조 방법 (Pressureless Infiltration Processing of B4C/Al Composite by Surface Modification)

  • 임경란;강덕일;김창삼
    • 한국세라믹학회지
    • /
    • 제40권2호
    • /
    • pp.128-131
    • /
    • 2003
  • B$_4$C 분말 표면을 알루미나 전구체로 표면 개질하여 알루미늄의 wetting 각을 낮추어 알루미늄의 함침을 용이하게 함으로써 상압에서 B$_4$C/Al 복합체를 제조하고자하였다. 알루미나 전구체에 의한 표면개질은 제타전위의 변화로 확인하였으며, 표면개질된 B$_4$C 분말의 preform에 Al 6061 디스크를 올려놓고 흐르는 알곤 분위기에서 103$0^{\circ}C$/20분 열처리로 Al이 완전히 함침된 B$_4$C/Al 복합체를 제조하였다. 반면 표면 개질되지 않은 B$_4$C 분말은 125$0^{\circ}C$/30분에도 함침이 일어나지 않았다. 이 복합체의 XRD와 SEM 분석은 B$_4$C. Al 외에도 반응상 $Al_3$BC 상이 생성되었으며, 물성을 크게 저하시키는 A1$_4$C$_3$는 생기지 않았음을 보여 주었다.

Fabrication of Two-Layered $Al-B_4C$ Composites by Conventional Hot Pressing Uuder Nitrogen Atmosphere and Their Characterization

  • Bedir Fevzi
    • Journal of Mechanical Science and Technology
    • /
    • 제20권7호
    • /
    • pp.1002-1011
    • /
    • 2006
  • In this study, we describe the conventional hot pressing (CHP) of layered $Al-B_4C$ composites and their characterization. The matrix alloy Al-5 wt.%Cu was prepared from elemental powder mixtures. The metal and B4C powders were mixed to produce either $Al-Cu-10vol.%B_4C$ or $Al-Cu-30vol.%B_4C$ combinations. Then, these powder mixtures were stacked as layers in the hot pressing die to form a two-layered composite. Hot pressing was carried out under nitrogen atmosphere to produce $30\times40\times5mm$ specimens. Microstructural features and age hardening characteristics of composites were determined by specimens cut longitudinally. The flexural strength of both layered composites and their monolithic counterparts were investigated via three point bending tests. In the case of layered specimens of both $10vol.%B_4C$ and $30vol.%B_4C$ containing layers were loaded for three-point test. The results show that a homogeneous distribution of $B_4C$ particles in the matrix alloy which is free of pores, can be obtained by CHP method. The ageing behavior of the composites was found to be influenced by the reinforced materials, i.e. higher hardness values were reached in 8 hrs for the composites than that for the matrix alloy. Flexural strength test showed that two-layered composites exhibited improved damage tolerance depending on layer arrangement. Microstructural investigation of the fracture surfaces of the bending specimens was performed by means of scanning electron microscope (SEM). While layer with lower reinforcement content exhibited large plastic deformation under loading, the other with higher reinforcement content exhibited less plastic deformation.

NANO-SIZED COMPOSITE MATERIALS WITH HIGH PERFORMANCE

  • Niihara, N.;Choa, H.Y.;Sekino, T.
    • 한국분말야금학회:학술대회논문집
    • /
    • 한국분말야금학회 1996년도 추계학술강연 및 발표대회 강연 및 발표논문 초록집
    • /
    • pp.6-6
    • /
    • 1996
  • Ceramic based nanocomposite, in which nano-sized ceramics and metals were dispersed within matrix grains and/or at grain boundaries, were successfully fabricated in the ceramic/cerarnic and ceramic/metal composite systems such as $Al_2O_3$/SiC, $Al_2O_3$/$Si_3N_4$, MgO/SiC, mullite/SiC, $Si_3N_4/SiC, $Si_3N_4$/B, $Al_2O_3$/W, $Al_2O_3$/Mo, $Al_2O_3$/Ni and $ZrO_2$/Mo systems. In these systems, the ceramiclceramic composites were fabricated from homogeneously mixed powders, powders with thin coatings of the second phases and amorphous precursor composite powders by usual powder metallurgical methods. The ceramiclmetal nanocomposites were prepared by combination of H2 reduction of metal oxides in the early stage of sinterings and usual powder metallurgical processes. The transmission electron microscopic observation for the $Al_2O_3$/SiC nanocomposite indicated that the second phases less than 70nm were mainly located within matrix grains and the larger particles were dispersed at the grain boundaries. The similar observation was also identified for other cerarnic/ceramic and ceramiclmetal nanocornposites. The striking findings in these nanocomposites were that mechanical properties were significantly improved by the nano-sized dispersion from 5 to 10 vol% even at high temperatures. For example, the improvement in hcture strength by 2 to 5 times and in creep resistance by 2 to 4 orders was observed not only for the ceramidceramic nanocomposites but also for the ceramiclmetal nanocomposites with only 5~01%se cond phase. The newly developed silicon nitride/boron nitride nanocomposites, in which nano-sized hexagonal BN particulates with low Young's modulus and fracture strength were dispersed mainly within matrix grains, gave also the strong improvement in fracture strength and thermal shock fracture resistance. In presentation, the process-rnicro/nanostructure-properties relationship will be presented in detail. The special emphasis will be placed on the understanding of the roles of nano-sized dispersions on mechanical properties.

  • PDF

Ball milling을 이용하여 제조된 6061Al기지 Ti-Ni-Cu 압출재의 기계적특성 (Mechanical Properties of 6061Al Extruded Composite with Ti-Ni-Cu Fabricated by Ball milling)

  • 안인섭;배승열;김유영
    • 한국분말재료학회지
    • /
    • 제6권4호
    • /
    • pp.270-276
    • /
    • 1999
  • Ti-Ni-Cu alloy powders were fabricated by ball milling, and the properties of these powders were characterized. Mixed 50Ti-(50-x)Ni-xCu powders of 5 to 10at.%Cu composition were milled for 100 hours using SUS 1/4" balls in argon atmosphere. Ball to powder ratio was 20:1 and rotating speed was 100 rpm. Tensile strength, microstructure and phase transformation of ball milled Ti-(50-x)Ni-xCu powders were studied. After 100 hours milling, Ti, Ni and Cu elements were alloyed completely and an amorphous phase was formed. Amorphous phase was crystallized to martensite(B 19') and austenite(B2) after heat treatment for 1 hour at $850^{\circ}C$. As the Cu contents were increased, tensile strength of extruded 6061Al/TiNiCu was decreased, and B19'martensite phases In the TiNi particles were the causes of high tensile stress of extruded 6061Al/TiNiCu.NiCu.

  • PDF

무가압소결(無加壓燒結)한 ${\beta}-SiC-ZrB_2$ 복합체(複合體)의 파괴인성(破壞忍性)과 전기전도성(電氣傳導性)에 미치는 기공(氣孔)의 영향 (Effect of Porosity on the Fracture Toughness and Electrical Conductivity of Pressureless Sintered ${\beta}-SiC-ZrB_2$ Composites)

  • 신용덕;권주성
    • 대한전기학회:학술대회논문집
    • /
    • 대한전기학회 1998년도 추계학술대회 논문집 학회본부 C
    • /
    • pp.847-849
    • /
    • 1998
  • The effect of $Al_{2}O_{3}$ additives on the microstructure, mechanical and electrical properties of ${\beta}$-SiC+39vol.%$ZrB_2$ electroconductive ceramic composites by pressureless sintering were investigated. The ${\beta}$-SiC+39vol.%$ZrB_2$ ceramic composites were pressureless sintered by adding 4, 8, 12wt.% $Al_{2}O_{3}$ powder as a liquid forming additives at $1950^{\circ}C$ for 1h. Phase analysis of composites by XRD revealed mostly of $\alpha$-SiC(6H), $ZrB_2$ and weakly $\alpha$-SiC(4H), $\beta$-SiC(15R) phase. The relative density of composites was lowered by gaseous products of the result of reaction between $\beta$-SiC and $Al_{2}O_{3}$ therefore, porosity was increased with increased $Al_{2}O_{3}$ contents. The fracture toughness of composites was decreased with increased $Al_{2}O_{3}$ contents, and showed the maximum value of $1.4197MPa{\cdot}m^{1/2}$ for composite added with 4wt.% $Al_{2}O_{3}$ additives. The electrical resistivity of ${\beta}$-SiC+39vol.%$ZrB_2$ electroconductive ceramic composite was increased with increased $Al_{2}O_{3}$ contents, and showed positive temperature coefficient resistance (PTCR) in the temperature from $25^{\circ}C$ to $700^{\circ}C$.

  • PDF

TiB2코팅이 함침법으로 제조되는 B4C/Al 복합체의 기계적 특성에 미치는 영향 (Effect of TiB2 Coating on the Mechanical Properties of B4C/Al Composites Prepared by Infiltration Process)

  • 김선혜;임경란;심광보;김창삼
    • 한국세라믹학회지
    • /
    • 제40권8호
    • /
    • pp.777-783
    • /
    • 2003
  • B$_4$C/Al 복합체의 기계적 물성은 제조 과정에서 B$_4$C와 Al의 반응에 의한 반응생성물의 종류와 양에 의해서 결정되므로, 강하고 경량 소재로서의 특성이 요구되는 복합체를 만들려면 반응생성물을 조절할 필요가 있다. TiB$_2$는 알루미늄과 반응성이 거의 없고 B$_4$C보다 낮은 접촉각(100$0^{\circ}C$에서 85$^{\circ}$)을 가지고 있다. 그러므로 B$_4$C를 TiB$_2$로 코팅하면 B$_4$C/Al복합체를 함침법으로 제조하는 경우 알루미늄의 함침 온도를 낮출 수 있다. 본 연구에서는 TiB$_2$가 B$_4$C/Al 복합체의 미세구조와 기계적 특성에 미치는 영향을 조사하였다. TiB$_2$를 코팅한 B$_4$C 분말을 졸겔법을 이용하여 준비하였다. B$_4$C 입자에 코팅된 TiB$_2$ 입자 크기는 20-50 nm이었다. TiB$_2$를 코팅하고 제작한 B$_4$C/Al 복합체에는 l7wt%의 미반응 알루미늄이 남아있었고, 코팅하지 않고 제작한 것에는 l4 wt%가 남았다. 결과적으로 코팅하고 제작한 복합체는 코팅하지 않고 제작한 것보다 파괴인성은 높고 경도는 낮았으며, 이러한 결과에서 TiB$_2$가 알루미늄의 함침 온도를 낮추고 B$_4$C와 Al이 반응하는 것을 억제하고 있다는 것을 알 수 있었다.

무가압소결한 $\beta$-SiC-$ZrB_2$계 도전성 복합체의 제조 및 기계적, 전기적 특성 (Mechanical, Electrical Properties and Manufacture of the $\beta$-SiC-$ZrB_2$ Electroconductive Ceramic Composites by Pressureless Sintering)

  • 신용덕;권주성
    • 대한전기학회논문지:전기물성ㆍ응용부문C
    • /
    • 제48권2호
    • /
    • pp.98-103
    • /
    • 1999
  • The effect of $Al_2O_3$ additives to $\beta-SiC+39vol.%ZrB_2$ electroconductive ceramic composites by pressureless sintering on microstructural, mechanical and electrical properties were investigated. The $\beta-SiC+39vol.%ZrB_2$ ceramic composites were pressureless sintered by adding 4, 8, 12wt.% $Al_2O_3$ powder as a liquid forming additives at $1950^{\cire}C$ for 1h. Phase analysis of composites by XRD revealed mostly of $\alpha-SiC(6H), ZrB_2$ and weakly $\alpha-SiC(4H), \beta-SiC (15R)$ phase. The relative density of composites was lowered by gaseous products of the result of reaction between \beta-SiC and Al_2O_3$, therefore, porosity was increased with increasing $Al_2O_3$ contents, and showed the maximum value of 1.4197MPa.$m^{1/2}$ for composite with 4wt.% $Al_2O_3$ additives. The electrical resistivity of $\beta-SiC+39vol.%ZrB_2$ electroconductive ceramic composite was increased with increasing $Al_2O_3$ contents, and showed positive temperature coefficient resistance (PTCR) in the temperature range of $25^{\cire}C$ to $700^{\cire}C$.

  • PDF