• 제목/요약/키워드: Milling time

검색결과 665건 처리시간 0.03초

도정도에 따른 쌀의 침지 특성 및 쌀입국의 발효 특성 (Characterstics of Steeping of Rice and Fermentation of Rice Koji Depending on the Milling Degrees)

  • 이석준;공태인;정철
    • 한국산학기술학회논문지
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    • 제16권8호
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    • pp.5384-5393
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    • 2015
  • 본 논문의 목적은 청주의 원료인 쌀의 도정도가 고두밥 및 쌀입국 발효주에 미치는 영향을 조사하는데 있다. 연구방법으로는 쌀도정에 따른 수분흡수량 및 입국특성 등을 분석하였고 연구기간은 8개월 소요되었다. 도정을 많이 할수록 도정미의 단백질 성분구성은 지속적으로 감소되었으며 지질 및 회분 성분은 20% 도정시까지는 급격히 감소하다 그 이상 도정시는 서서히 감소하였다. 도정미의 침지시 도정도가 높을수록 수분흡수 속도가 빨랐으며 최대 수분흡수율도 높았고, 침지 초기에는 수온이 높을 때 수분흡수가 빨랐으나 일정시간 경과후에는 수온이 낮을 때 수분흡수가 지속적으로 이루어져 최대흡수율도 높아졌다. 입국 발효 술덧의 알코올 함량은 도정도10% 입국시료가 16.3-16.9%(v/v)으로 다른 도정도 입국시료의 17.1-17.5%(v/v)인 것에 비해 낮은 알코올함량을 보였고 침지시간은 영향이 없었다. pH는 도정도 10% 입국이 다소 높았으며 그 외엔 유사하였다. 총산함량은 도정도 10%가 0.71-0.76%로 다른 도정도보다 낮은 결과를 보였고 도정도 30%인 시료가 0.93-0.99%로 가장 높게 나타났다. 결론적으로 쌀의 도정도는 쌀의 물리화학적 특성 및 고두밥 상태에 영향을 미치는 것으로 나타났다.

Chemical Leaching of Non-Equilibrium Al(Fe-Co) Powder Produced by Rod Milling

  • Kim, Hyun-Goo
    • 한국분말재료학회지
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    • 제10권5호
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    • pp.305-309
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    • 2003
  • We report on the formation and chemical leaching of non-equilibrium $Al_{0.6}(Fe_{75}Co_{25})$ alloy produced by rod milling. X-ray diffractometry, transmission electron microscopy, differential scanning calorimetry, scanning electron microscopy, and vibrating sample magnetometry were used to characterize the as-milled and leached specimens. After 400 h, only the $Al_{0.4}Fe_{0.6}$ peak of the body-centered cubic type was present in the XRD pattern. The entire rod milling process could be divided into three different stages of milling: agglomeration, disintegration, and homogenization. The saturation magnetization, $M_s$ decreased with increased milling time, the $M_s$ of the powders before milling was about 113.8 emu/g, the $M_s$ after milling for 400 h was about 11.55 emu/g. Leaching of the Al in KOH of the Al at room temperature from the as-milled powders did not induce any significant change in the diffraction pattern. After the leached specimen had been annealed at $600^{\circ}C$ for 1 hour, the nanoscale crystalline phases were transformed into the bcc Fe, cubic Co, and $CoFe_2O_4$ phases. On cooling the specimen from 85$0^{\circ}C$, the degree of magnetization increased slightly, then increased sharply at approximately 364.8$^{\circ}C$, indicating that the bcc $Al_{0.4}Fe_{0.6}$ phase had been transformed to the Fe and Co phases.

기계적 밀링공정에 의한 은 플레이크 분말 제조 (Fabrication of Silver Flake Powder by the Mechanical Milling Process)

  • 정해영;이길근
    • 한국분말재료학회지
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    • 제23권1호
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    • pp.54-60
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    • 2016
  • This study focuses on fabricating silver flake powder by a mechanical milling process and investigating the formation of flake-shaped particles during milling. The silver flake powder is fabricated by varying the mechanical milling parameters such as the amount of powder, ball size, impeller rotation speed, and milling time of the attrition ballmill. The particle size of the silver flake powder decreases with increasing amount of powder; however, it increases with increasing impeller rotation speed. The change in the particle size of the silver flake powder is analyzed based on elastic collision between the balls, taking energy loss of the balls due to the powder into consideration. The change in the particle size of the silver flake powder with mechanical milling parameters is consistent with the change in the diameter of the elastic deformation contact area of the ball, due to the collision between the balls, with milling parameters. The flake-shaped silver particles are formed at the elastic deformation contact area of the ball due to the collision.

Mo-25.0at%Si 혼합분말의 기계적 합금화에 미치는 밀링매체 재료의 영향 (Effect of Milling Medium Materials on Mechanical Alloying of Mo-25.0at%Si Powder Mixture)

  • 박상보
    • 한국분말재료학회지
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    • 제5권1호
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    • pp.64-70
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    • 1998
  • Milling media of steel and partially stabilized zirconia(PSZ) were used to produce $Mo_3$Si by mechanical alloying(MA) of Mo-25.0at%Si elemental powder mixture. The effect of milling medium materials on MA of the powder mixture have been investigated by XRD and DTA. The reaction rate and the end-product noticeably depended upon the milling medium material. The formation of $Mo_3$Si and $Mo_5Si_3$phases by PSZ ball-milling took place after 15 hr of MA and was characterized by a slow reaction rate as Mo, Si, $Mo_5Si_3$ and $Mo_3$Si coexisted for a long period of milling time. The formation of a new phase by steel ball-milling, however, did not take Place even after 96 hr of MA. DTA and annealing results showed that $Mo_5Si_3$ and $Mo_3$Si were formed after heating the ball-milled powder specimens to different temperatures. At low temperatures, Mo and Si were transformed into $Mo_5Si_3$. At high temperatures, the formation of $Mo_3$Si can be partially attributed to the reaction, 7Mo+Si+$Mo_5Si_3$-.4$Mo_3$Si . The formation of $Mo_3$Si and Mo5Si3 phases by mechanical alloying of the powder mixture and the relevant reaction rate appeared to depend upon the milling medium material as well as the thermodynamic properties of the end-products.

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액상 침투 성장법으로 제조된 $YBa_2Cu_3O_{7-y}$ 벌크 초전도체의 임계전류밀도에 대한 $CeO_2$ 첨가된 $Y_2BaCuO_5$ 분말의 밀링 효과 (Milling Effects of $Y_2BaCuO_5$ Precursor Powder with $CeO_2$ Addition on the Critical Current Density of Liquid Infiltration Growth Processed $YBa_2Cu_3O_{7-y}$ Bulk Superconductors)

  • 아시프 마흐무드;전병혁;김찬중
    • Progress in Superconductivity
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    • 제12권1호
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    • pp.6-11
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    • 2010
  • The milling effects of a precursor $Y_2BaCuO_5$ (Y211) powder having 1 wt.% $CeO_2$ on the microstructure and critical current density ($J_c$) of liquid infiltration growth (LIG) processed $YBa_2Cu_3O_{7-y}$ (Y-123) bulk superconductors were investigated. The microstructure analysis revealed that the Y211 size in the final Y-123 products decreased with increasing the milling time and a relatively high density and uniform distribution of Y211 inclusions were observed in the sample prepared using 8 h milled powder. However, the unexpected Y211 particles coarsening was observed from the 4 h milled sample which was further increased for 10 h milled sample. Critical current density ($J_c$) of the LIG processed Y-123 bulk superconductors was found to be dependent on the milling time of the Y211 precursor powder. The $J_c$ increased with the increase of milling time and reached up to a maximum at 8 h in the self field while 10 h milled sample showed lower $J_c$ at the same field which might be due to the exaggerated growth and non-uniform distribution of Y211 particles.

Changes of Micro- and Nanoscopic Morphology of Various Bioresources by Different Milling Systems

  • Jang, Jae-Hyuk;Lee, Seung-Hwan;Lee, Min;Lee, Sang-Min;Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • 제45권6호
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    • pp.737-745
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    • 2017
  • This study was carried out to investigate the changes in micro- and nanoscopic morphology of cellulose nanofibrils (CNFs) from various bioresources by investigating various mechanical milling systems. Mechanical milling in herbaceous bioresources was more effective than in woody bioresources, demonstrating lower energy consumption and finer morphology. The milling time to reach nanoscopic size was longer in woody bioresources than in herbaceous bioresources. Furthermore, at the same level of wet disk milling time, CNFs from herbaceous bioresources showed more slender morphology than those from woody bioresources. Tensile properties of nanopaper prepared from CNFs of herbaceous bioresources were higher than those of woody bioresources. The highest tensile strength was found to be 77.4 MPa in the nanopaper from Evening prim rose.

과잉 PbO 첨가 및 미분쇄에 의한 PZT 압전세라믹스의 미세구조제어와 소결특성 및 기계적 성질 (Effects of Excess PbO and Ball-Milling on the Microstructure, Sintering Behavior and Mechanical Properties of PZT Ceramics)

  • 전봉관;남효덕;김상태
    • 한국세라믹학회지
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    • 제32권6호
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    • pp.726-734
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    • 1995
  • Pb(Zr0.53Ti0.47)O3 (PZT) ceramics having different microstructures were fabricated at low temperatures using calcined PZT powders with addition of excess PbO powder and/or ball milling. The effects of excess PbO and ball milling time on the microstructure, the sintering characteristic, and the mechanical properties of these ceramics were studied. Fine powders with average particle size of 0.38㎛ could be obtained by ball milling with 2.5 mm Ф zirconia balls for 120 hours. By the addition of 2mol% of excess PbO to these powders, it was possible to obtain well-densitified PZT ceramics at low sintering temperature of 980℃. Densification behavior of PZT was affected by the addition of excess PbO powder, while, grain growth was hardly affected by PbO addition. It was observed that Vicker's hardness decreased and fracture toughness increased with the increasing amount of PbO. At 1mol% excess PbO, it was shown that the minimum values of hardness and maximum fracture toughness were achieved. In addition, with increasing sintering time, the fracture toughness decreased and the hardness increased.

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초음파 밀링 공정을 이용한 텅스텐 중합금 나노복합분말의 제조 (Synthesis of Tungsten Heavy alloy Nanocomposite Powder by Ultrasonic-milling Process)

  • 이승철;이창우;정성수;차범하;이재성
    • 한국분말재료학회지
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    • 제14권2호
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    • pp.101-107
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    • 2007
  • Ultrasonic-milling of metal oxide nanopowders for the preparation of tungsten heavy alloys was investigated. Milling time was selected as a major process variable. XRD results of metal oxide nanopowders ultrasonic-milled for 50 h and 100 h showed that agglomerate size reduced with increasing milling time and there was no evidence of contamination or change of composition by impurities. It was found that nanocomposite powders reduced at $800^{\circ}C$ in a hydrogen atmosphere showed a chemical composition of 93.1W-4.9Ni-2.0Fe from EDS analysis. Hardness of sintered part using 50 h and 100 h powder samples was 399 Hv and 463 Hv, respectively, which is higher than the that of commercial products (330-340 Hv).

PARTICLE SIZE-DEPENDENT PULVERIZATION OF B4C AND GENERATION OF B4C/STS NANOPARTICLES USED FOR NEUTRON ABSORBING COMPOSITES

  • Kim, Jaewoo;Jun, Jiheon;Lee, Min-Ku
    • Nuclear Engineering and Technology
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    • 제46권5호
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    • pp.675-680
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    • 2014
  • Pulverization of two different sized micro-$B_4C$ particles (${\sim}10{\mu}m$ and ${\sim}150{\mu}m$) was investigated using a STS based high energy ball milling system. Shapes, generation of the impurities, and reduction of the particle size dependent on milling time and initial particle size were investigated using various analytic tools including SEM-EDX, XRD, and ICP-MS. Most of impurity was produced during the early stage of milling, and impurity content became independent on the milling time after the saturation. The degree of particle size reduction was also dependent on the initial $B_4C$ size. It was found that the STS nanoparticles produced from milling is strongly bounded with the $B_4C$ particles forming the $B_4C$/STS composite particles that can be used as a neutron absorbing nanocomposite. Based on the morphological evolution of the milled particles, a schematic pulverization model for the $B_4C$ particles was constructed.

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

  • 배수현;정원기;신세은
    • 한국분말재료학회지
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    • 제28권5호
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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.