• 제목/요약/키워드: MOX

검색결과 122건 처리시간 0.027초

Comparative Analysis of Strengthening with Respect to Microstructural Evolution for 0.2 Carbon DP, TRIP, Q&P Steels

  • Jin, Jong-Won;Park, Yeong-Do;Nam, Dae-Geun;Lee, Seung-Bok;Kim, Sung-Il;Kang, Nam-Hyun;Cho, Kyung-Mox
    • 한국재료학회지
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    • 제19권6호
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    • pp.293-299
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    • 2009
  • The microstructures and mechanical properties of Dual Phase (DP), Transformation-Induced Plasticity (TRIP), and Quenching & Partitioning (Q&P) steels were investigated in order to define the strengthening mechanism of 0.2 C steel. An intercritical annealing between Ac1 and Ac3 was conducted to produce DP and TRIP steel, followed by quenching the DP and TRIP steel being quenched at to room temperature and by the TRIP steel being austemperingaustempered-air cooling cooled the steel toat room temperature, respectively. The Q&P steel was produced from full austenization, followed by quenching to the temperature between $M_s$ and $M_f$, and then enriching the carbon to stabilize the austenite throughout the heat treatment. For the DP and TRIP steels, as the intercritical annealing temperature increased, the tensile strength increased and the elongation decreased. The strength variation was due to the amount of hard phases, i.e., martensite and bainite, respectively in the DP and TRIP steels. It was also found that the elongation also decreased with the amount of soft ferrite in the DP and TRIP steels and with the amount of the that was retained in the austenite phasein the TRIP steel, respectively for the DP and TRIP steels. For the Q&P steel, as the partitioning time increased, the elongation and the tensile strength increased slightly. This was due to the stabilized austenite that was enriched with carbon, even when the amount of retained austenite decreased as the partitioning time increased from 30 seconds to 100 seconds.

Q&P와 AM강의 잔류오스테나이트 분율과 안정도에 따른 인장특성 거동 (Effects of Stability and Volume Fraction of Retained Austenite on the Tensile Properties for Q&P and AM Steels)

  • 변상호;오창석;남대근;김영석;강남현;조경목
    • 한국재료학회지
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    • 제19권6호
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    • pp.305-312
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    • 2009
  • The effects of Quenching and Partitioning (Q&P) and Annealed Martensite (AM) heat treatment on the microstructure and tensile properties were investigated for 0.24C-0.5Si-1.5Mn-1Al steels. The Q&P steels were annealed at a single phase ($\gamma$) or a dual phase (${\gamma}+{\alpha}$), followed by quenching to a temperature between $M_s$ and $M_f$. Then, enriching carbon was conducted to stabilize the austenite through the partitioning, followed by water quenching. The AM steels were intercritically annealed at a dual phase (${\gamma}+{\alpha}$) temperature and austempered at $M_s$ and $M_s{\pm}50^{\circ}C$, followed by cooling in oil quenching. The dual phase Q&P steels showed lower tensile strength and yieldyield strength than those of the single phase Q&P steels, and tThe elongation for the dual phase Q&P steel was partitioning 100s higher than that of that for the single phase Q&P steels as the partitioning time was less than 100s up to partitioning 100s. For AM steels, the tensile/yield strength decreased and the total elongation increased as the austempering temperature increased. The stability of the retained austenite controlled the elongation for Q&P steels and the volume fraction of the retained austenite controlled the elongation for AM steels.

고주파 열처리 온도에 따른 선조질강의 인장특성 (Tensile Properties of Energy Saving Wire (ESW) with respect to Temperatures of High Frequency Induction Heat Treatment)

  • 이진범;강남현;박지태;안순태;박영도;최일동;남대근;조경목
    • 대한금속재료학회지
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    • 제48권11호
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    • pp.974-980
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    • 2010
  • Various types of steel, namely, 0.35C, 0.2C-Cr, and 0.2C-Cr-Mo steels, were quenched and tempered by high-frequency induction heat treatment. The type, size, and spheroidization of the carbides varied depending on the tempering temperatures ($450{\sim}720^{\circ}C$). During the tempering process, the carbide was precipitated in the martensite matrix. The 0.35C, 0.2C-Cr, and 0.2C-Cr-Mo steels contained carbides that were smaller than 120 nm. The carbide was spheroidized as the tempering temperature increased. Owing to the fine microstructure and spheroidization of the carbides, all three steels had a high tensile strength as well as yield ratio and reduction of area. In the case of the 0.2C-Cr steel, the use of Cr as an alloying element facilitated the precipitation of alloyed carbides with an extremely small particle and resulted in an increase in the spheroidization rate of the carbides. As a result, a large reduction of area was achieved (>70%). The 0.2C-Cr-Mo steel had the highest tensile strength because of the high hardenability that can be attributed to the presence of alloying elements (Cr and Mo). Quenching and tempering steels by induction heat treatment resulted in a high strength of over 1 GPa and a large reduction of area (>70%) because of the rapid heating and cooling rates.

AS52+Sr/Al18B4O33 복합재료 계면반응 및 기계적 특성에 미치는 시효 열처리의 영향 (Effect of an Aging Treatment on the Interfacial Reaction and Mechanical Properties of an AS52+Sr/Al18B4O33 Magnesium Matrix Composite)

  • 박용하;박용호;박익민;조경목
    • 대한금속재료학회지
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    • 제48권10호
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    • pp.957-963
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    • 2010
  • The aging behavior of aluminum borate whisker ($Al_{18}B_4O_{33}$) reinforced AS52+Sr magnesium matrix composites was investigated with Vickers hardness measurements, bending tests, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Experimental results showed that aging is accelerated in the $AS52+Sr/Al_{18}B_4O_{33}$ composite compared with an unreinforced AS52+Sr alloy. The hardness of the alloy and composite increases monotonically as a function of the aging time before reaching its peak hardness and then gradually decreases. The composite reaches its peak hardness in 10 h, whereas the matrix alloy requires 30h, indicating accelerated age-hardening in the $AS52+Sr/Al_{18}B_4O_{33}$ composite compared with the unreinforced AS52+Sr alloy at $170^{\circ}C$. The interfacial reaction of $AS52+Sr/Al_{18}B_4O_{33}$ magnesium matrix composite is considered to play a dominant role in the strengthening mechanism, ultimately affecting the mechanical properties of the composite.

600MPa급과 800MPa급 전용착금속의 미세조직에 따른 수소지연파괴 거동 (Microstructural Effects on Hydrogen Delayed Fracture of 600MPa and 800MPa grade Deposited Weld Metal)

  • 강희재;이태우;윤병현;박서정;장웅성;조경목;강남현
    • 대한금속재료학회지
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    • 제50권1호
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    • pp.52-58
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    • 2012
  • Hydrogen-delayed fracture (HDF) was analyzed from the deposited weld metals of 600-MPa and 800-MPa flux-cored arc (FCA) welding wires, and then from the diffusible hydrogen behavior of the weld zone. Two types of deposited weld metal, that is, rutile weld metal and alkali weld metal, were used for each strength level. Constant loading test (CLT) and thermal desorption spectrometry (TDS) analysis were conducted on the hydrogen pre-charged specimens electrochemically for 72 h. The effects of microstructures such as acicular ferrite, grain-boundary ferrite, and low-temperature-transformation phase on the time-to-failure and amount of diffusible hydrogen were analyzed. The fracture time for hydrogen-purged specimens in the constant loading tests decreased as the grain size of acicular ferrite decreased. The major trapping site for diffusible hydrogen was the grain boundary, as determined by calculating the activation energies for hydrogen detrapping. As the strength was increased and alkali weld metal was used, the resistance to HDF decreased.

Oxidation and Repeated-Bending Properties of Sn-Based Solder Joints After Highly Accelerated Stress Testing (HAST)

  • Kim, Jeonga;Park, Cheolho;Cho, Kyung-Mox;Hong, Wonsik;Bang, Jung-Hwan;Ko, Yong-Ho;Kang, Namhyun
    • Electronic Materials Letters
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    • 제14권6호
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    • pp.678-688
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    • 2018
  • The repeated-bending properties of Sn-0.7Cu, Sn-0.3Ag-0.7Cu (SAC0307), and Sn-3.0Ag-0.5Cu (SAC305) solders mounted on flexible substrates were studied using highly accelerated stress testing (HAST), followed by repeated-bending testing. In the Sn-0.7Cu joints, the $Cu_6Sn_5$ intermetallic compound (IMC) coarsened as the HAST time increased. For the SAC0307 and SAC305 joints, the $Ag_3Sn$ and $Cu_6Sn_5$ IMCs coarsened mainly along the grain boundary as the HAST time increased. The Sn-0.7Cu solder had a high contact angle, compared to the SAC0307 and SAC305 solders; consequently, the SAC0307 and SAC305 solder joints displayed smoother fillet shapes than the Sn-0.7Cu solder joint. The repeated-bending for the Sn-0.7Cu solder produced the crack initiated from the interface between the Cu lead wire and the solder, and that for the SAC solders indicated the cracks initiated at the surface, but away from the interface between the Cu lead wire and the solder. Furthermore, the oxide layer was thickest for Sn-0.7Cu and thinnest for SAC305, regardless of the HAST time. For the SAC solders, the crack initiation rate increased as the oxide layer thickened and roughened. $Cu_6Sn_5$ precipitated and grew along the grain and subgrain boundaries as the HAST time increased, embrittling the grain boundary at the crack propagation site.

용탕가압침투 AS52 Mg/Al18B4O33w 복합재료의 크리프 특성 (Creep Properties of Squeeze Infiltrated AS52 Mg/Al18B4O33w Composite)

  • 최계원;박용하;박봉규;박용호;박익민;조경목
    • 대한금속재료학회지
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    • 제46권7호
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    • pp.412-419
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    • 2008
  • Creep behavior of the squeeze infiltrated AS52 Mg matrix composites reinforced with 15 vol% of aluminum borate whiskers($Al_{18}B_4O_{33}w$) fabricated squeeze infiltration method was investigated. Microstructure of the composites was observed as uniformly distributed reinforcement in the matrix without any particular defects of casting pores etc.. Creep test was carried out at the temperature of 150 and $200^{\circ}C$ under the applied stress range of 60~120 MPa. The creep resistance of the composite was significantly improved comparing with the unreinforced AS52 Mg alloy. The creep behavior of composites might be interpreted with the substructure invariant model successfully for the composite. Threshold stress of the composite exist for the creep deformation of the composite. The analysis of the creep behavior of the composite with threshold stress indicated that creep deformation was controlled by the lattice diffusion process of AS52 Mg matrix at given effective stresses and temperatures. Activation energy was also calculated to check lattice diffusion controlled creep behavior of the composite.

Jacobian-free Newton Krylov two-node coarse mesh finite difference based on nodal expansion method

  • Zhou, Xiafeng
    • Nuclear Engineering and Technology
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    • 제54권8호
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    • pp.3059-3072
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    • 2022
  • A Jacobian-Free Newton Krylov Two-Nodal Coarse Mesh Finite Difference algorithm based on Nodal Expansion Method (NEM_TNCMFD_JFNK) is successfully developed and proposed to solve the three-dimensional (3D) and multi-group reactor physics models. In the NEM_TNCMFD_JFNK method, the efficient JFNK method with the Modified Incomplete LU (MILU) preconditioner is integrated and applied into the discrete systems of the NEM-based two-node CMFD method by constructing the residual functions of only the nodal average fluxes and the eigenvalue. All the nonlinear corrective nodal coupling coefficients are updated on the basis of two-nodal NEM formulation including the discontinuity factor in every few newton steps. All the expansion coefficients and interface currents of the two-node NEM need not be chosen as the solution variables to evaluate the residual functions of the NEM_TNCMFD_JFNK method, therefore, the NEM_TNCMFD_JFNK method can greatly reduce the number of solution variables and the computational cost compared with the JFNK based on the conventional NEM. Finally the NEM_TNCMFD_JFNK code is developed and then analyzed by simulating the representative PWR MOX/UO2 core benchmark, the popular NEACRP 3D core benchmark and the complicated full-core pin-by-pin homogenous core model. Numerical solutions show that the proposed NEM_TNCMFD_JFNK method with the MILU preconditioner has the good numerical accuracy and can obtain higher computational efficiency than the NEM-based two-node CMFD algorithm with the power method in the outer iteration and the Krylov method using the MILU preconditioner in the inner iteration, which indicates the NEM_TNCMFD_JFNK method can serve as a potential and efficient numerical tool for reactor neutron diffusion analysis module in the JFNK-based multiphysics coupling application.

메탄올 자화효모 Hansenula polymorpha에서의 재조합 단백질 분비발현을 위한 인체 혈청 알부민 융합단편의 활용 (Use of Human Serum Albumin Fusion Tags for Recombinant Protein Secretory Expression in the Methylotrophic Yeast Hansenula polymorpha)

  • 송지혜;황동현;오두병;이상기;권오석
    • 한국미생물·생명공학회지
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    • 제41권1호
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    • pp.17-25
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    • 2013
  • 메탄올 자화효모 Hansenula polymorpha에서 분비 발현이 잘 된다고 보고된 인체 혈청 알부민(human serum albumin, HSA)을 융합단편으로 사용하여 외래 재조합 단백질을 효과적으로 분비 발현할 수 있는 발현시스템을 개발하고자 하였다. 이때 조작의 용이성 및 발현 효율 제고를 위하여 전장의 HSA 뿐만 아니라 세 종류의 각기 다른 크기의 HSA 단편을 설계하여 융합단편으로 사용하였다. 즉 HSA의 N-말단으로 부터 각기 137, 172, 320, 608개 아미노산을 갖는 융합단편 HSAft (1-4)를 제작하였다. 아울러 발현되는 HSA 단편의 검출 및 분리정제를 위한 His8-tag, HSA 융합단편과 외래 단백질간의 유연성을 부여하기 위한 2조의 $Gly_4Ser_1$ linker, 융합 발현된 타겟 단백질을 HSA 단편으로부터 용이하게 분리하기 위한 담배식각바이러스 단백질분해효소(tobacco etch virus protease, Tev) 인지 서열, 타겟 단백질 유전자를 클로닝하기 위한 멀티 클로닝 사이트(multiple cloning site, MCS)서열, 그리고 타겟 재조합 단백질의 발현 검출 및 정제를 위한 Strep-tag을 포함하는 작용기 도메인을 발현카세트 기본 골격에 포함시켰다. 이렇게 구축된 4종의 HSA 융합단편 분비발현 벡터를 H. polymorpha에 형질전환한 후 각 융합단편의 발현을 조사한 결과 HSAft 단편 3, 4의 발현을 확인할 수 있었다. 녹색형광단백질 유전자 ($GFP_{uv}$)를 상기 벡터에 클로닝한 후 H. polymorpha에 도입한 결과 형질 전환체 모두에서 녹색형광단백질의 발현을 관찰 할 수 있었다. 해당 세포로부터 분비되거나 세포내에 발현되는 HSA 단편 융합 형광단백질의 발현양을 비교한 결과 HSAft 단편 4에 융합된 경우를 제외하고 나머지 경우 모두에서 세포 파쇄액과 세포 배양액 양쪽에서 해당 HSA 단편 융합 형광단백질의 발현을 확인 할 수 있었다. 한편 HSA 융합단편의 크기에 따라 자체 혹은 타겟 단백질과 융합된 형태의 단백질 분비 발현 정도가 달라지는 것은 해당 단백질의 접힘이나 단백질 분해효소에 대한 민감성 등 여러 변수에 의한 것으로 사료되며 따라서 본 연구에서 개발한 H. polymorpha용 HSA 융합단편 분비발현 시스템은 특정 외래 재조합 단백질의 효율적인 분비발현 융합단편의 선별 및 과발현 시스템 구축에 유용하게 활용될 수 있을 것으로 기대된다.

유전자 재조합 단백질 생산에 있어서 Pichia pastoris와 Hansenula polymorpha를 이용한 최적 발현 방법 개발 (The Optimization of Expression System for Recombinant Protein Production by Pichia pastoris and Hansenula polymorphs)

  • 강환구;전희진;김재호
    • KSBB Journal
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    • 제15권2호
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    • pp.174-180
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    • 2000
  • 본 연구에서는 다른 host cell 에 비하여 여러 가지 장점을 가지고 있는 Methylotrophic yeast 중 Pichia pastoris와 Hans-enula polymorpha의 fed batch 실험을 통하여 유전자 재조합 단백질 발현최적조건을 구하여 각 균주의 유전자 재조합 albumin 발현 최적화 연구를 수행하였다. 글리세롤이 두 균주의 promoter의 AOX 1과 MOX promoter repression에 미치는 영향을 확인한 바 H. polymorpha가 P. pastoris보다 promoter repression이 심함을 알 수 있었다. 두 균주의 promoter를 induction시키는 최적 메탄올 농도는 P. pastoris의 경우 메탄올 8g/L, H. polymorpha의 경우는 13 g/L임을 알 수 있었다. 또한 메탄올에 의한 induction시기는 두 균주 모두 O.D. 4 정도되는 exponential growth stage에서 메탄올을 첨가하는 경우가 초기 세포 성장단계에 메탄올을 첨가한 경우에 비해 약 20% 정도 높아짐을 확인하였다. 두 균주의 재조합 albumin 발현에 미치는 pH의 영향을 조사하였는데, p. pastoris의 경우 pH 5에서 가장 높은 albumin 생산성을 보여 약 300mg/L albumin을 발현하였고, H. polymorpha 의 경우 pH 5와 6에서 최대 약 180 mg/L의 albumin을 발현하였지만 pH 8에서는 이의 절반 수준에 그쳤다. 두 균주의 최적 fed-batch 방법을 확인하는 실험을 수행하였는데 P. pastoris의 경우의 최적 fed-batch 방법은 mixed feeding은 바람직하지 않고 글리세롤 배지를 공급하여 세포를 성장시킨 후 글리세롤 공급을 멈추고 바로 메탄올로 전환하는 방법을 효과적이며, H. polymorpha의 경우 비성장속도 제어를 통한 글리세롤 공급으로부터 메탄올 공급으로의 단계적 전환방법이 균주의 albumin 발현에 큰 영향을 준다는 것을 알 수 있었다. 이 방법을 통하여 두 균주의 고농도 배양 실험을 수행한 결과 P. pastoris의 경우는 O.D. 300에서 약 4.7g albumin/L를 발현하였다. 이와같은 결과를 바탕으로 산업체에서 methlotrophic yeast를 이용한 상업화를 계획함에 있어서 host로서의 균주를 선택할 수 있는 기본 자료를 제공함과 아울러 균주가 선택된 후에 그 균주를 이용한 재조합 단백질 최적화 방법을 제공하여 줄 것으로 생각된다.

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