• Title/Summary/Keyword: Mo powder

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Quality Characteristics of Wheat Flour Dasiks added by Agaricus blasei Murill Powder (아가리쿠스 버섯 가루를 첨가한 진말 다식의 품질 특성)

  • Choi, Young-Sim;Kim, Young-Tae;Mo, Eun-Kyoung
    • Journal of the East Asian Society of Dietary Life
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    • v.22 no.3
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    • pp.371-377
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    • 2012
  • This study was to investigate the effect of wheat flour dasiks added by Agaricus blasei Murill powder. The moisture content of wheat flour dasiks added by Agaricus blasei Murill powder was significantly different The L color value decreased with the addition of Agaricus blasei Murill powder, while the a-value and b-value increased with the addition of Agaricus blasei Murill powder. Hardness, adhesiveness, gumminess, and chewiness differed significantly with added Agaricus blasei Murill powder, whereas springiness and cohesiveness were not significantly different (p<0.05). The sensory quality characteristics of color, taste, flavor, and overall acceptability were the highest in wheat flour dasiks with 6% added Agaricus blasei Murill powder. In conclusion, the optimal added Agaricus blasei Murill powder for the manufacture of wheat flour dasik was 6%.

Prediction of Martensite Fraction in the Sintering Hardening Process of Ni/Mo Alloy Powder (FLC-4608) Using the Finite Element Method (Ni/Mo 합금분말(FLC-4608)의 소결경화 공정에서 유한요소법을 이용한 마르텐사이트 분율의 예측)

  • Park, Hyo Wook;Joo, Soo-Hyun;Lee, Eon Sik;Kwon, Ki Hyuk;Kim, Hyong Seop
    • Journal of Powder Materials
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    • v.22 no.1
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    • pp.10-14
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    • 2015
  • In recent years, industrial demands for superior mechanical properties of powder metallurgy steel components with low cost are rapidly growing. Sinter hardening that combines sintering and heat treatment in continuous one step is cost-effective. The cooling rate during the sinter hardening process dominates material microstructures, which finally determine the mechanical properties of the parts. This research establishes a numerical model of the relation between various cooling rates and microstructures in a sinter hardenable material. The evolution of a martensitic phase in the treated microstructure during end quench tests using various cooling media of water, oil, and air is predicted from the cooling rate, which is influenced by cooling conditions, using the finite element method simulations. The effects of the cooling condition on the microstructure of the sinter hardening material are found. The obtained limiting size of the sinter hardening part is helpful to design complicate shaped components.

Correlation of Microstructure and Tribological Properties of Mo Blended Fe-Base Coatings Fabricated by Atmospheric Plasma Spraying (대기 플라즈마 용사 공정에 의해 제조된 철계합금-몰리브덴 혼합 코팅층의 미세조직 및 내마모성)

  • Lee, Illjoo;Park, Hyungkwon;Lee, Changhee
    • Journal of Welding and Joining
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    • v.32 no.5
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    • pp.65-71
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    • 2014
  • Atmospheric plasma spraying (APS) is world-widely used process in the automotive industry as a method to provide wear resistance coatings for engine cylinder bore, using various materials. The weight of engine blocks can be considerably decreased by removing cast iron liners, which can finally result in the improvement of fuel efficiency. In this study, five kinds of powder materials, 1.2C steel powder and 1.2C steel powder mixed with 5, 10, 15, 20 wt.%. molybdenum powder, were deposited by atmospheric plasma spraying in order to investigate the effect of molybdenum on the wear resistance of coatings. Microstructural analysis showed that molybdenum splats were well distributed in 1.2C steel matrix with intimate bonding. The molybdenum added coatings showed better tribological properties than 1.2C steel coating. However, above the 15 wt.%. blending fraction, wear resistance was somewhat degraded with poor roughness of worn surface due to the brittle fracture occurred in molybdenum splats. Consequently, compared to conventional liner material, gray cast iron, 10 wt. pct. molybdenum blended 1.2C steel coating showed much better tribological properties and therefore it looks very feasible to replace gray cast iron liner.

Irradiation-resistant Properties of Structurally Controlled Molybdenum Alloys Through a Multi-step Internal Nitriding

  • Nakahara, Takayuki;Okamoto, Yoshihisa;Nagae, Masahiro;Yoshio, Tetsuo;Kurishita, Hiroaki;Takada, Jun;Hiraoka, Yutaka;Takida, Tomohiro
    • Proceedings of the Korean Powder Metallurgy Institute Conference
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    • 2006.09b
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    • pp.1161-1162
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    • 2006
  • In order to overcome the recrystallization embrittlement and irradiation embrittlement of Mo, which are major problems for its fusion applications, internally nitrided Mo alloys were prepared by a novel multi-step internal nitriding. Neutron irradiation was performed in the Japan Material Testing Reactor (JMTR). After irradiation, nitrided Mo alloys exhibited $\iota$ ower ductile-brittle transition temperature than irradiated TZM. These results suggested that multi-step internal nitriding was effective to the improvement in the embrittlement by irradiation. Transmission electron microscope observation revealed that TiN particles precipitated by nitriding acted as a sink for irradiation-induced defects.

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Development of High Corrosion Resistant $Mo_2NiB_2$ Boride Base Cermets for Plastic Injection Molding Machine Parts

  • Hirata, Kourou;Iwanaga, Kengo;Yamasaki, Yuji;Takagi, Ken-ichi
    • Proceedings of the Korean Powder Metallurgy Institute Conference
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    • 2006.09a
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    • pp.111-112
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    • 2006
  • Injection molding of corrosive super engineering plastics and engineering plastics with various fillers is conducted under severe conditions and causes corrosion and wear problems. We have developed $Mo_2NiB_2$ boride base cermets, which have excellent corrosion-and wear-resistances, and tried to apply them into plastic molding machine parts. In this paper, the effects of V substitution for Cr on the mechanical properties, corrosion resistance and microstructure of Ni-5.0B-51.0Mo-(17.5-X)Cr-XV (mass%) model cermets were investigated. Both transverse rupture strength (TRS) and hardness increased monotonically with increasing V content and reached 2.94GPa and $87.2R_A$ at 10.0%V, respectively. The improvements of TRS and hardness were attributed to microstructural refinement.

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Microstructures and Mechanical Properties of Ti-20Mo-0.5EB Composites (Hydroxyapatite를 대체하여 말뼈를 첨가한 Ti-20Mo-0.5EB의 미세조직과 기계적 특성)

  • Bae, Suhyun;Jeong, Wonki;Shin, Se-Eun
    • Journal of Powder Materials
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    • v.28 no.5
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    • pp.403-409
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    • 2021
  • In this study, Ti-Mo-EB composites are prepared by ball milling and spark plasma sintering (SPS) to obtain a low elastic modulus and high strength and to evaluate the microstructure and mechanical properties as a function of the process conditions. As the milling time and sintering temperature increased, Mo, as a β-Ti stabilizing element, diffused, and the microstructure of β-Ti increased. In addition, the size of the observed phase was small, so the modulus and hardness of α-Ti and β-Ti were measured using nanoindentation equipment. In both phases, as the milling time and sintering temperature increased, the modulus of elasticity decreased, and the hardness increased. After 12 h of milling, the specimen sintered at 1000℃ showed the lowest values of modulus of elasticity of 117.52 and 101.46 GPa for α-Ti and β-Ti, respectively, confirming that the values are lower compared to the that in previously reported studies.