• 제목/요약/키워드: irradiation hardening

검색결과 44건 처리시간 0.03초

레이저 빔에 의한 박판금속의 강화특성 (Characteristics of Strengthening for Thin Metals by Laser Beam)

  • 양세영;최성대;김기만;전재목;공병채
    • 한국생산제조학회지
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    • 제19권2호
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    • pp.216-223
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    • 2010
  • The general way to process the surface by means of the laser was heat treatment for strengthening the surface hardness. They have used the laser for changing the property of the surface, especially for metal. Generally, it is recent increasing tendency to use the thin plate panel for making things smaller and lightweight. However, thin plate should be strengthened or let the thin plate panel have moment of inertia by means of engraving the groove or wave on them for lightweight and strengthening. Therefore it is expected that the thin plate panel can be harder and more stable through processing the metal surface by laser beam irradiation and the hardness of thin plate possibly can be also changed how many parts of them are harden. Through this research, it can be grasped how the hardness and mechanical characteristic changes according to width and depth of groove by laser affect the max stress by the ratio of $A_H/A_T$ (hardening area/total area) and characteristic of displacement and structural characteristic for making the thin plate harder by the strengthening metal surface of thin plate by laser through the experiment and analysis of FEA can be presented.

Radiation-induced thermal conductivity degradation modeling of zirconium

  • Sangil Choi;Hyunmyung Kim;Seunghwan Yu
    • Nuclear Engineering and Technology
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    • 제56권4호
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    • pp.1277-1283
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    • 2024
  • This study presents a radiation-induced thermal conductivity degradation (TCD) model of zirconium as compared to the conventional UO2 TCD model. We derived the governing factors of the radiation-induced TCD model, such as maximum TCD value and temperature range of TCD. The maximum TCD value was derived by two methods, in which 1) experimental result of 32 % TCD was directly utilized as the maximum TCD value and 2) a theoretical approach based on dislocation was applied to derive the maximum TCD value. Further, the temperature range of TCD was determined to be 437-837 K by 1) experimental results of post-annealing of irradiation hardening as compared to 2) the rate theory and thermal equilibrium. Consequently, the radiation-induced TCD model of zirconium was derived to be $f_r=1-{\frac{0.32}{1+{\exp}\,\{(T-637)/45\}}}$. Because the thermal conductivity of zirconium is one of the factors determining the storage and transport system, this newly proposed model could improve the safety analysis of spent fuel storage systems.

High Power Diode Laser을 이용한 금형재료용 구상화 주철의 모서리부 표면처리 (Surface Treatment in Edge Position of Spheroidal Cast Iron for Mold Materials by Using High Power Diode Laser)

  • 황현태;송현수;김종도;송무근;김영국
    • 한국재료학회지
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    • 제19권9호
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    • pp.457-461
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    • 2009
  • Recently, metal molding has become essential not only for automobile parts, but also mass production, and has greatly influenced production costs as well as the quality of products. Its surface has been treated by carburizing, nitriding and induction hardening, but these existing treatments cause considerable deformation and increase the expense of postprocessing after treatment; furthermore, these treatments cannot be easily applied to parts that requiring the hardening of only a certain section. This is because the treatment cannot heat the material homogeneously, nor can it heat all of it. Laser surface treatment was developed to overcome these disadvantages, and, when the laser beam is irradiated on the surface and laser speed is appropriate, the laser focal position is rapidly heated and the thermal energy of surface penetrates the material after irradiation, finally imbuing it with a new mechanical characteristic by the process of self-quenching. This research estimates the material characteristic after efficient and functional surface treatment using HPDL, which is more efficient than the existing CW Nd:YAG laser heat source. To estimate this, microstructural changes and hardness characteristics of three parts (the surface treatment part, heat affect zone, and parental material) are observed with the change of laser beam speed and surface temperature. Moreover, the depth of the hardened area is observed with the change of the laser beam speed and temperature.

그라비아 인쇄물의 망점 형성을 위한 포토레지스터 코팅층의 레이저 직접 페터닝 (Laser Direct Patterning of Photoresist Layer for Halftone Dots of Gravure Printing Roll)

  • 서정;이제훈;한유희
    • 한국레이저가공학회지
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    • 제3권2호
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    • pp.35-43
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    • 2000
  • Laser direct patterning of the coated photoresit (PMER-NSG31B) layer was studied to make halftone dots on gravure printing roll. The selective laser hardening of photoresist by Ar-ion laser(wavelength : 333.6nm∼363.8nm) was controlled by the A/O modulator. The coating thickness in the range of 5㎛∼11㎛ could be obtained by using the up-down directional moving device along the vertically located roll. The width, thickness and hardness of the hardened lines formed under laser power of 200∼260㎽ and irradiation time of 4.4∼6.6$\mu$ sec/point were investigated after developing. The hardened width increased according to the increase of coating thickness. Though the hardened thickness was changed due to the effect of the developing solution, the hardened layer showed good resistance to the scratching of 2H pencil. Also, the hardened minimum line widths of 10㎛ could be obtained. The change of line width was also found after etching, and the minimum line widths of 6㎛ could be obtained. The hardened lines showed the good resistance to the etching solution. Finally, the experimental data could be applied to make gravure halftone dots using the developed imaging process, successfully.

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Gravure Halftone Dots by Laser Direct Patterning

  • Jeong Suh;Lee, Jae-Hoon
    • International Journal of Precision Engineering and Manufacturing
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    • 제3권1호
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    • pp.26-32
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    • 2002
  • Laser direct patterning of the coated photoresist (PMER-NSG31B) layer was studied to make halftone dots on the gravure printing roll. The selective laser hardening of the photoresist by Ar-ion laser(wavelength: 333.6∼363.8 nm) was controlled by the A/O modulator. The coating thickness in the range of 5∼11㎛ could be obtained by using the up-down directional moving device along the vertically located roll. The width, thickness and hardness of the hardened lines farmed under the laser power of 200∼260mW and irradiation time of 4.4∼6.6 $\mu$ sec/point were investigated after developing. The hardened width increased as the coating thickness increased. Though the hardened thickness was changed due to the effect of the developing solution, the hardened layer showed good resistance to the scratching of 2H pencil. Also, the hardened minimum line width of 10㎛ could be obtained. The change of line width was also found after etching, and the minimum line widths of 6㎛ could be obtained. The hardened lines showed the good resistance to the etching solution. Finally, the experimental data could be applied to make gravure halftone dots using the developed imaging process, successfully.

자외선 경화형 변성 (3,4-epoxycyclohexane)methyl 3,4-epoxycyclohexylcarboxylate 아크릴레이트의 합성 (Synthesis of UV-Curable Modified (3,4-epoxycyclohexane)methyl 3,4-epoxycyclohexylcarboxylate Acrylate)

  • 이종민;이환표;이상건;박형남;최광식;김도진
    • 한국재료학회지
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    • 제27권4호
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    • pp.199-205
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    • 2017
  • In this study, (3,4-epoxycyclohexane)methyl 3,4-epoxycyclohexylcarboxylate acrylate was synthesized by reacting (3,4-epoxycyclohexane)methyl 3,4-epoxycyclohexylcarboxylate with acrylic acid to minimize hardening shrinkage and to improve heat resistance, which are known as disadvantages of photopolymers for 3D printing application. Urethane acrylate was synthesized by reacting 1,3,5-triazine-2,4,6-triamino alcohol, 2-hexylethyl acrylate, and isophorone diisocyanate in order to improve the mechanical properties without deteriorating the heat resistance. The physical properties before and after the synthesis of the acrylate and the mechanical properties when the urethane acrylate was applied were investigated. The reaction progress of the composite was examined by FTIR and $^{13}C$ NMR. The heat deflection temperature, flexural strength, and surface hardness of the molding were measured. The curing behavior by Photo-DSC ultraviolet irradiation was also examined.

미세경도와 양전자 소멸을 이용한 PWR 압력용기강의 조사 경화 회복에 관한 연구 (A Study on the Recovery of Radiation Hardening of PWR Pessure Vessel Steel Using Michrohardness and Positron Annihilation)

  • Garl, Seong-Je;Yoon, Young-Ku;Park, Soon-Pil;Park, Yong-Ki
    • Nuclear Engineering and Technology
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    • 제22권4호
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    • pp.337-350
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    • 1990
  • 약 28$0^{\circ}C$에서 4.84$\times$$10^{18}$ n/$\textrm{cm}^2$의 중성자 조사를 받은 원자로 압력용기강 A533B Cl.1 기 지 금속(base metal)을 열처리한 후, 미세경도 측정과 양전자 소멸법을 사용해서 조사경화회복기구에 관한 더 정확한 연구를 하였다. 등시소둔 실험에 의해 2가지 회복과정이 존재한다는 것을 알 수 있었다. 첫번째 회복과정은 280-35$0^{\circ}C$ 사이에서 일어나며 양전자 소멸법에 의한 몇가지 파라메타 즉, 양전자 수명, 양전자 소멸밀도(I)와 Ip, Iw, R파라메타 값들에 의하면 이 회복과정에서 공공응집(agglomeration of vacancies)과 단위공공의 소멸(annihilation of monovacancies)이 일어나는 것으로 해석되었다. 또한 두번째 회복과정은 405$^{\circ}C$ 이상의 고온에서 발생하며, 양전자소멸 파라메타들은 공공형 결함 주위에 부착되었던 탄소원자의 용해, 석출물의 용해 그리고 단위공공의 소멸이 이 회복과정에서 일어나는 것으로 해석되었다. 그러고 두 회복과정의 중간 온도 영역인 305-405$^{\circ}C$에서는 탄소가 부착된 공공결집체 (vacancy clusters)의 형성과 석출물의 형성에 의한 소둔중경화(radiation anneal hardening)가 일어나는 것으로 해석되었다. Meechan-Brinkman 방법을 이용하여 활성화 에너지와 반응차수 및 그외 회복특성을 구하였다. 첫번째 회복과정의 활성화 에너지는 1.76eV로, 두번째 회복과정의 값은 2.00eV로 결정되었다. 이 값들은 다른 연구결과에 비해 낮은 편인데 이 차이는 이 연구에서 사용된 압력용기강의 낮은 탄소양에 의한 것으로 생각된다. 또한 첫번째 회복과정의 반응차수는 1.78로 두번째 회복과정의 반응차수는 1.67로 결정되었다. 회복과정에서의 반응차수가 정수가 아닌 것은 한 회복과정에 1차나 2차의 반응차수를 가진 몇 가지 기구들이 복합되어 있기 때문인 것으로 생각된다. 이것은 양전자 소멸의 몇 가지 파라메타에 의한 결과를 뒷받침한다.

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Dynamic Wedge의 조직내 방사선량 분포의 특성 (Dosimetric Characteristics of Dynamic Wedge Technique)

  • 오영택;금기창;추성실;김귀언
    • Radiation Oncology Journal
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    • 제14권4호
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    • pp.323-332
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    • 1996
  • 목적 : 방사선 치료에 있어서 조직내 등선량 분포곡선을 변형시킬 목적으로 쐐기 차폐물이 사용되고 있는데 최근 기존의 고정 쐐기와는 다르게 비대칭적인 콜리메이터인 Independent Jaw에 의해 등선량 분포곡선을 변형시키는 동적 쐐기 기법이 실용화 되고 있으나 아직 그 방사선 물리학적인 특성에 대해서는 잘 알려져 있지 않다. 이에 본 저자는 기존의 고정 쐐기와 비교하여 조직내 방사선량 분포의 특성을 알아보고자 본 연구를 계획하였다. 대상 및 방법 : 물 판톰, 폴리 스타이린 판톰, 평균 유방 모형 판톰을 대상으로 전리함, 필름, TLD 등을 이용하여 동적 쐐기와 고정 쐐기의 선량 분포를 측정하여 비교하였다. 방사선원은 선형 가속기의 6MV x선을 사용하였고 $15{\times}15$ 조사면에서 15, 30, 45도 쐐기를 이용하였다 조직내선량 분포는 전리함과 필름 선량계를 사용하였고, 유방 접선 치료방식에서의 반대편 유방 조사선량은 TLD를 사용하였다. 결과 : 1) 조직내 $\%$심도 선량은 고정 쐐기의 경우 심도 선량 깊이가 깊어지는 방사선의 경화 현상이 뚜렷하였으나 동적 쐐기의 경우에는 발견할 수 없었으며 그 $\%$심도선량은 개방 조사면과 유사하였다. 2) 조직내 등선량 분포 곡선을 보면 동적 쐐기의 경우 고정 쐐기와는 달리 원하는 깊이, 원하는 조사면에서 원하는 쐐기 각도를 얻을 수 있었으며 쐐기 각도를 이루는 등선량 분포 곡선이 고정 쐐기에 비해 더욱 직선적이었다. 3) 산란선량은 동적 쐐기의 경우 개방 조사면과 그 양이 거의 동일하였으며 유방보존술에서의 접선 조사방식의 방사선치료에서 고정 쐐기 대신에 동적 쐐기를 사용함으로써 반대측 유방으로의 피폭선량을 감소시킬 수 있었다. 결론적으로 동적 쫴기 기법은 단순히 고정 쐐기를 대체할 수 있을 뿐만 아니라 고정 쐐기의 단점을 보완해 줄 수 있으며 향후 방사선 치료에 있어서 더 다양한 유용성을 가질 수 있으리라 생각한다.

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중성자에 조사된 Mn-Mo-Ni 저합금강의 열처리 회복거동 (Thermal Recovery Behaviors of Neutron Irradiated Mn-Mo-Ni Low Alloy Steel)

  • 장기옥;지세환;심철무;박승식;김종오
    • 한국재료학회지
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    • 제9권3호
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    • pp.327-332
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    • 1999
  • 중성자에 조사 $(fluence: 2.3\times10^{19}ncm^{-2}, 553 K, E\geq1.0 MeV)$된 Mn-Mo-Ni 저 합금강 모재의 열처리 회복 거동을 조사하기 위하여 등시소둔과 등온소둔을 수행하여 회복 활성화에너지, 회복 반응차수 그리고 회복 반응률상수를 결정하였다. 열처리 후 회복은 비커스 미세 고온경도기로 측정하였고 실험결과를 이용, 열처리 회복단계, 회복결함들의 거동 및 회복 kinetics을 분석하였다. 실험결과 2단계의 회복구간(stage I : 703-753K, stage II : 813K-873K)이 나타났으며 각 단계의 회복활성화 에너지는 2.50 eV(1단계) 및 2.93 eV(2단계)이었다. 조사재와 비조사재의 등시소둔 곡선의 비교를 통하여 813K에서 RAH(radiation anneal hardening) 피크를 확인할 수 있었다. 743K 및 833K에서 수행한 등온소둔 결과, 회복의 60%가 모두 120분 이내에 일어나는 것으로 관찰되었다. 회복 반응차수는 두 회복구간에서 모두 2로 나타났으며 회복 반응율상수는 $3.4\times10^{-4}min^{-1}$(1단계)과 $7.1\times10^{-4}min^{-1}$(2단계) 이었다. 이상의 결과와 기 발표된 자료들을 함께 분석한 결과, 본 재료의 회복은 오랜 중성자조사로 형성된 점결함 집합체들이 열처리에 의한 분해와 Fe 기지에 격자간 원자로 존재하던 self-interstitial들과 vacancy들의 재결합에 의해 일어나는 것으로 해석된다.

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Effect of Ar+ Ion Irradiation of Polymeric Fiber on Interface and Mechanical Properties of Cementitious Composites

  • Seong, Jin-Wook;Lee, Seung-Hun;Kim, Ki-Hwan;Beag, Young-Whoan;Koh, Seok-Keun;Yoon, Ki-Hyun
    • 한국세라믹학회지
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    • 제41권6호
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    • pp.430-434
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    • 2004
  • The values of fracture energy and mechanical flexural strength of Fiber Reinforced Cement (FRC) with polypropylene (PP) fiber modified by Ion Assisted Reaction (JAR), by which functional groups were grafted on the surface of PP fiber, was improved about 2 times as those of fracture energy and flexural strength of cement reinforced by untreated PP fiber. PP fiber was irradiated in O$_2$ environment by Ar$\^$+/ ion. The contact angle of PP treated by IAR decreased largely when compared with untreated PP. From this result, we expected that surface energy and interfacial adhesion force of treated PP fiber increased. The strain hardening occurred in the strain-stress curve of FRC including PP treated by IAR when compared with that of FRC with untreated PP. These enhanced mechanical properties might be due to strong interaction between hydrophilic group on modified PP fiber and hydroxyl group in cement matrix. This hydrophilic group on surface modified PP fiber was confirmed by XPS analysis. We clearly observed hydration products that were fixed at modified PP fiber due to the strong adhesion force of interface in cement reinforced modified PP by SEM (Scanning Electron Microscopy) study.