• 제목/요약/키워드: Ni powder

검색결과 962건 처리시간 0.027초

HVOF 용사된 $\textrm{Cr}_{3}\textrm{C}_{2}$-NiCr 용사층의 특성 (Characteristics of the HVOF_sprayed $\textrm{Cr}_{3}\textrm{C}_{2}$-NiCr Coationg Layer)

  • 김병희;서동수
    • 한국재료학회지
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    • 제8권9호
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    • pp.849-855
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    • 1998
  • 20wt%NiCr이 크래드된 크롬카바이드 분말과 7wt%NiCr이 기계적으로 혼합된 크롬카바이드 분말을 이용하여 HVOF 용사된 용사층의 특성(미세조직, 결정상, 경도값 그리고 erosion rate)을 비교하였다. 용사상태의 미세조직강의 특성은 크래드분말의 경우에 primary $\textrm{Cr}_{3}\textrm{C}_{2}$상이 용사층에는 남아 있었으나 혼합분말의 경우에는 primary $\textrm{Cr}_{3}\textrm{C}_{2}$ 상은 용사층에 거의존재하지 않았다. 또한 XRD 분석결과 두 분말 모두 용사과정에서 크롬카바이드의 분해는 일어났으나 분해율은 크래드분말의 경우가 혼합분말보다 낮았다. 용사상태에서 경도값은 혼합분말의 경우가 높았으며 $1000^{\circ}C$까지 열처리 후 혼합분말의 경도값은 1665까지 증가하였으나 크래드분말은 $600^{\circ}C$를 정점으로 감소하는 경향을 보였다.

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니켈 나노입자가 흡착된 에너제틱용 고반응성 알루미늄 분말 합성 (Synthesis of Nickel Nanoparticle-adsorbed Aluminum Powders for Energetic Applications)

  • 김동원;권구현;김경태
    • 한국분말재료학회지
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    • 제24권3호
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    • pp.242-247
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    • 2017
  • In this study, the electroless nickel plating method has been investigated for the coating of Ni nanoparticles onto fine Al powder as promising energetic materials. The adsorption of nickel nanoparticles onto the surface of Al powders has been studied by varying various process parameters, namely, the amounts of reducing agent, complexing agent, and pH-controller. The size of nickel nanoparticles synthesized in the process has been optimized to approximately 200 nm and they have been adsorbed on the Al powder. TGA results clearly show that the temperature at which oxidation of Al mainly occurs is lowered as the amount of Ni nanoparticles on the Al surface increases. Furthermore, the Ni-plated Al powders prepared for all conditions show improved exothermic reaction due to the self-propagating high-temperature synthesis (SHS) between Ni and Al. Therefore, Al powders fully coated by Ni nanoparticles show the highest exothermic reactivity: this demonstrates the efficiency of Ni coating in improving the energetic properties of Al powders.

방전 플라즈마 소결법을 이용한 Al-Ni-Co-Y 벌크 비정질 합금의 제조 (Synthesis of Al-Ni-Co-Y Bulk Metallic Glass fabricated by Spark Plasma Sintering)

  • 이정표;이진규
    • 한국분말재료학회지
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    • 제30권1호
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    • pp.41-46
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    • 2023
  • In this study, an Al82Ni7Co3Y8 (at%) bulk metallic glass is fabricated using gas-atomized Al82Ni7Co3Y8 metallic glass powder and subsequent spark plasma sintering (SPS). The effect of powder size on the consolidation of bulk metallic glass is considered by dividing it into 5 ㎛ or less and 20-45 ㎛. The sintered Al82Ni7Co3Y8 bulk metallic glasses exhibit crystallization behavior and crystallization enthalpy similar to those of the Al82Ni7Co3Y8 powder with 5 ㎛ or less and it is confirmed that no crystallization occurred during the sintering process. From these results, we conclude that the Z-position-controlled spark plasma sintering process, using superplastic deformation by viscous flow in the supercooled liquid-phase region of amorphous powder, is an effective process for manufacturing bulk metallic glass.

블록형 Ni-Cr-Al 분말 다공성 소재의 미세조직 및 인장 변형 거동 (Microstructure and Tensile Deformation Behavior of Ni-Cr-Al Powder Porous Block Material)

  • 김철오;배정석;이기안
    • 한국분말재료학회지
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    • 제22권2호
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    • pp.93-99
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    • 2015
  • This study investigated the microstructure and tensile properties of a recently made block-type Ni-Cr-Al powder porous material. The block-type powder porous material was made by stacking multiple layers of powder porous thin plates with post-processing such as additional compression and sintering. This study used block-type powder porous materials with two different cell sizes: one with an average cell size of $1,200{\mu}m$ (1200 foam) and the other with an average cell size of $3,000{\mu}m$ (3000 foam). The ${\gamma}$-Ni and ${\gamma}^{\prime}-Ni_3Al$ were identified as the main phases of both materials. However, in the case of the 1,200 foam, a ${\beta}$-NiAl phase was additionally observed. The relative density of each block-type powder porous material, with 1200 foam and 3000 foam, was measured to be 5.78% and 2.93%, respectively. Tensile tests were conducted with strain rates of $10^{-2}{\sim}10^{-4}sec^{-1}$. The test result showed that the tensile strength of the 1,200 foam was 6.0~7.1 MPa, and that of 3,000 foam was 3.0~3.3 MPa. The elongation of the 3,000 foam was higher (~9%) than that (~2%) of the 1,200 foam. This study also discussed the deformation behavior of block-type powder porous material through observations of the fracture surface, with the results above.