• 제목/요약/키워드: degreasing

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접합압연공정에 의해 제조된 AA1050/Mg(AZ91)/AA1050 복합판재의 미세조직 및 기계적 특성 (Microstructure and Mechanical Properties of AA1050/Mg(AZ91)/AA1050 Complex Sheet Fabricated by Roll Bonding Process)

  • 이성희;유효상;임차용
    • 한국재료학회지
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    • 제26권3호
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    • pp.154-159
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    • 2016
  • A roll-bonding process was applied to fabricate an AA1050/AZ91/AA1050 laminate complex sheet. Two AA1050 and one AZ91 magnesium sheets of 2 mm thickness, 30 mm width and 200 mm length were stacked up after surface treatment that included degreasing and wire brushing; material was then reduced to a thickness of 3 mm by one-pass cold rolling. The laminate sheet bonded by the rolling was further reduced to 2 mm in thickness by conventional rolling. The rolling was performed at 623K without lubricant using a 2-high mill with a roll diameter of 210 mm. The rolling speed was 15.9 m/min. The AA1050/AZ91/AA1050 laminate complex sheet fabricated by roll bonding was then annealed at 373~573K for 0.5h. The microstructure of the complex sheets was revealed by electron back scatter diffraction (EBSD) measurement; the mechanical properties were investigated by tensile testing and hardness testing. The strength of the complex sheet was found to increase by 11 % and the tensile elongation decreased by 7%, compared to those values of the starting material. In addition, the hardness of the AZ91 Mg region was slightly higher than those of the AA1050 regions. Both AA1050 and AZ91 showed a typical deformation structure in which the grains were elongated in the rolling direction; however, the mis-orientation distribution of grain boundaries varied greatly between the two materials.

MATERIAL RELIABILITY OF Ni ALLOY ELECTRODEPOSITION FOR STEAM GENERATOR TUBE REPAIR

  • Kim, Dong-Jin;Kim, Myong-Jin;Kim, Joung-Soo;Kim, Hong-Pyo
    • Nuclear Engineering and Technology
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    • 제39권3호
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    • pp.231-236
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    • 2007
  • Due to the occasional occurrences of stress corrosion cracking(SCC) in steam generator tubing(Alloy 600), degraded tubes are removed from service by plugging or are repaired for re-use. Since electrodeposition inside a tube does not entail parent tube deformation, residual stress in the tube can be minimized. In this work, tube restoration via electrodeposition inside a steam generator tubing was performed after developing the following: an anode probe to be installed inside a tube, a degreasing condition to remove dirt and grease, an activation condition for surface oxide elimination, a tightly adhered strike layer forming condition between the electro forming layer and the Alloy 600 tube, and the condition for an electroforming layer. The reliability of the electrodeposited material, with a variation of material properties, was evaluated as a function of the electrodeposit position in the vertical direction of a tube using the developed anode. It has been noted that the variation of the material properties along the electrodeposit length was acceptable in a process margin. To improve the reliability of a material property, the causes of the variation occurrence were presumed, and an attempt to minimize the variation has been made. A Ni alloy electrodeposition process is suggested as a primary water stress corrosion cracking(PWSCC) mitigation method for various components, including steam generator tubes. The Ni alloy electrodeposit formed inside a tube by using the installed assembly shows proper material properties as well as an excellent SCC resistance.

냉간압연접합법에 의해 제조된 AA6061/AA5052/AA6061 복합판재의 미세조직 및 기계적 성질 (Microstructure and Mechanical Properties of AA6061/AA5052/AA6061 Complex Sheet Fabricated by Cold-Roll Bonding Process)

  • 황주연;이성희
    • 한국재료학회지
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    • 제29권6호
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    • pp.392-397
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    • 2019
  • A cold roll-bonding process is applied to fabricate an AA6061/AA5052/AA6061 three-layer clad sheet. Two AA6061 and one AA5052 sheets of 2 mm thickness, 40 mm width, and 300 mm length are stacked, with the AA5052 sheet located in the center. After surface treatment such as degreasing and wire brushing, sample is reduced to a thickness of 1.5 mm by multi-pass cold rolling. The rolling is performed at ambient temperature without lubricant using a 2-high mill with a roll diameter of 400 mm at rolling speed of 6.0 m/sec. The roll bonded AA6061/AA5052/AA6061 complex sheet is then hardened by natural aging(T4) and artificial aging(T6) treatments. The microstructures of the as-roll bonded and age-hardened Al complex sheets are revealed by optical microscopy; the mechanical properties are investigated by tensile testing and hardness testing. After rolling, the roll-bonded AA6061/AA5052/AA6061 sheets show a typical deformation structure in which grains are elongated in the rolling direction. However, after T4 and T6 aging treatment, there is a recrystallization structure consisting of coarse equiaxed grains in both AA5052 and AA6061 sheets. The as roll-bonded specimen shows a sandwich structure in which an AA5052 sheet is inserted into two AA6061 sheets with higher hardness. However, after T4 and T6 aging treatment, there is a different sandwich structure in which the hardness of the upper and lower layers of the AA6061 sheets is higher than that of the center of the AA5052 sheet. The strength values of the T4 and T6 age-treated specimens are found to increase by 1.3 and 1.4 times, respectively, compared to that value of the starting material.

냉간압연접합된 층상 AA6061/AA5052/AA6061/AA5052 알루미늄합금판재의 미세조직 및 기계적 성질 (Microstructure and Mechanical Properties of Cold Roll-Bonded Layered AA6061/AA5052/AA6061/AA5052 Aluminum Alloy Sheet)

  • 조상현;박보배;이성희
    • 한국재료학회지
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    • 제32권3호
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    • pp.161-167
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    • 2022
  • A cold roll-bonding process is applied to fabricate an AA6061/AA5052/AA6061/AA5052 layered sheet. Two AA6061 and one AA5052 sheets of 2mm thickness, 40mm width and 300mm length are alternately stacked, then reduced to a thickness of 2.0 mm by multi-pass cold rolling after surface treatment such as degreasing and wire brushing. The rolling is performed at ambient temperature without lubricant using a 2-high mill with a roll diameter of 400 mm at a rolling speed of 6.0 m/sec. The roll-bonded AA6061/AA5052/AA6061/AA5052 layered sheet is then hardened by natural aging (T4) and artificial aging (T6) treatments. The microstructure of the as-roll bonded and the age-hardened Al sheets was revealed by SEM observation; the mechanical properties were investigated by tensile testing and hardness testing. After T4 and T6 aging treatment, the specimens had a recrystallization structure consisting of coarse equiaxed grains in both AA5052 and AA6061 regions. The as-roll-bonded specimen showed a clad structure in which the hardness of AA5052 regions was higher than that of AA6061 regions. However, after T4 and T6 aging treatment, specimens exhibited different structures, with hardness of AA6061 regions higher than that of AA5052 regions. Strengths of T6 and T4 age-treated specimens were found to increase by 1.55 and 1.36 times, respectively, compared to the value of the starting material.

냉간접합압연 후 시효처리된 AA1050/AA6061/AA1050 층상판재의 미세조직 및 기계적 성질 (Microstructure and Mechanical Properties of AA1050/AA6061/AA1050 Layered Sheet Aging-Treated after Cold Roll-Bonding)

  • 조상현;이성희
    • 한국재료학회지
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    • 제33권12호
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    • pp.565-571
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    • 2023
  • AA1050/AA6061/AA1050 layered sheet was fabricated by cold roll-bonding process and subsequently T4 and T6 aging-treated. Two commercial AA1050 sheets of 1 mm thickness and one AA6061 sheet of 2 mm thickness were stacked up so that an AA6061 sheet was located between two AA1050 sheets. After surface treatments such as degreasing and wire brushing, they were then roll-bonded to a thickness of 2 mm by cold rolling. The roll-bonded Al sheets were then processed by natural aging (T4) and artificial aging (T6) treatments. The as roll-bonded Al sheets showed a typical deformation structure, where the grains are elongated in the rolling direction. However, after the T4 and T6 aging treatments, the Al sheets had a recrystallized structure consisting of coarse grains in both the AA5052 and AA6061 regions with different grain sizes in each. In addition, the sheets showed an inhomogeneous hardness distribution in the thickness direction, with higher hardness in AA6061 than in AA1050 after the T4 and T6 age treatments. The tensile strength of the T6-treated specimen was higher than that of the T4-treated one. However, the strength-ductility balance was much better in the T4-treated specimen than the T6-treated one. The tensile properties of the Al sheets fabricated in the present study were compared with those in a previous study.

Flux, Solder 및 Grease 세정용 CFC 대체 비수계 세정제 배합 연구 (Formulation of Alternative Non-Aqueous Cleaning Agents to Chlorofluorocarbon Compounds for Cleaning Flux, Solder and Grease)

  • 정용우;이호열;이명진;송아람;배재흠
    • 청정기술
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    • 제12권4호
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    • pp.250-258
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    • 2006
  • CFC-113과 1,1,1-trichloroethane 등과 같은 CFC 화합물은 화학적 안정성 및 열역학적 특성 등이 우수하고, 불연성이며, 부식성이 없는 화합물로 오랜 시간 동안 전 산업에 걸쳐 널리 사용 되어 왔다. 하지만, 1989년 지구 환경의 보호를 위해 이들의 생산과 사용을 규제하는 국제협약인 '오존층 파괴물질에 관한 몬트리올 의정서'가 체결되어 대체 세정제가 요구되고 있다. 본 연구에서는 세정 시스템을 변화시키지 않고 세정력이 우수하면서 환경 친화적이며 인체 유해도가 낮으며 부식성 물질을 발생 시키지 않는 비수계 세정제를 개발하고자 하였다. 이를 위하여 글리콜 에테르계의 용매와 파라핀계 탄화수소 물질을 일정 비율로 혼합, 배합하면서 실록산을 첨가하여 비수계 세정제를 배합 제조하였다. 그리고 이들 세정제의 물성과 세정성을 평가하여 대체 세정제로서의 가능성을 평가하였다. 배합세정제의 물성측정 결과 밀도와 표면장력이 낮아 오염물에 대한 침투력이 우수할 것으로 예상되었고 인화점과 증기압 측정값으로 세정제의 안전성을 평가할 수 있었다. 플럭스, 솔더 및 그리스에 대한 세정성능 측정결과 높은 세정성능을 보여주었고 피세정물의 표면에 잔류물이 생성되지 않았다. 결과적으로, 규제물질과 동등한 세정능력을 지니며 침투력이 우수하고 인체 유해도가 낮은 세정제를 개발할 수 있었다.

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생물전기화학시스템을 이용한 염화에틸렌의 생물학적 탈염소화 (Biological Dechlorination of Chlorinated Ethylenes by Using Bioelectrochemical System)

  • 유재철;박영현;선지윤;홍성숙;조순자;이태호
    • 대한환경공학회지
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    • 제34권5호
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    • pp.304-311
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    • 2012
  • 산업용제로 널리 이용되고 있는 PCE (Perchloroethylene)나 TCE (Trichloroethylene)와 같은 염화에틸렌화합물은 안정된 세정력을 가지고 있어 널리 이용되고 있지만 무분별한 사용과 부주의한 취급으로 인해 최근 토양 및 지하수 오염지역이 늘어나고 있다. 본 연구에서는 퇴적토, 슬러지, 토양, 지하수 등 다양한 지역에서 총 10개의 시료를 식종원으로 이용하여 생물학적 PCE 탈염소화 가능성을 평가하고, 가장 우수한 탈염소화 능력을 보인 낙동강 퇴적토 시료를 대상으로 PCE를 에틸렌까지 안정적으로 탈염소화 가능한 혼합미생물을 농화배양하였다. 농화배양된 탈염소화 미생물을 생물전기화학시스템(Bioelectrochemical System, BES)의 환원부에 식종하여 전극을 전자공급원으로 이용한 탈염소화 가능성을 평가한 결과, PCE가 TCE, cis-dichloroethylene, vinyl chloride를 거쳐 최종산물인 에틸렌으로 탈염소화됨을 확인할 수 있었다. Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE)를 이용한 미생물군집 분석결과, 농화배양액에서 구축된 탈염소 미생물 군집과 BES 환원전극부내 미생물 군집 구조는 다르게 나타났으며, 전기화학적 활성을 지닌 다양한 미생물이 존재함을 확인할 수 있었다. BES 환원전극부에서 부유성장하는 미생물과 전극에 생물막을 형성하는 미생물 군집구조에도 큰 차이가 있었으며, 이는 탈염소화 메커니즘의 차이에 기인하는 것으로 판단된다. 추가적인 연구를 통해서 자세한 생물전기화학적 탈염소화 메커니즘을 밝혀낸다면 생물전기화학적 탈염소화 기술은 염화에틸렌 오염 토양/지하수의 획기적인 생물정화기술로 자리잡게 될 것이다.

A Case of Occupational Hypersensitivity Pneumonitis Associated with Trichloroethylene

  • Jae, Young;Hwang, Eu Dong;Leem, Ah Young;Kang, Beo Deul;Chang, Soo Yun;Kim, Ho Keun;Park, In Kyu;Kim, Song Yee;Kim, Eun Young;Jung, Ji Ye;Kang, Young Ae;Park, Moo Suk;Kim, Young Sam;Kim, Se Kyu;Chang, Joon;Chung, Kyung Soo
    • Tuberculosis and Respiratory Diseases
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    • 제76권2호
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    • pp.75-79
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    • 2014
  • Trichloroethylene (TCE) is a toxic chemical commonly used as a degreasing agent, and it is usually found in a colorless or blue liquid form. TCE has a sweet, chloroform-like odor, and this volatile chlorinated organic chemical can cause toxic hepatitis, neurophysiological disorders, skin disorders, and hypersensitivity syndromes. However, the hypersensitivity pneumonitis (HP) attributed to TCE has rarely been reported. We hereby describe a case of HP associated with TCE in a 29-year-old man who was employed as a lead welder at a computer repair center. He was installing the capacitors on computer chip boards and had been wiped down with TCE. He was admitted to our hospital with complaints of dry coughs, night sweats, and weight losses for the past two months. HP due to TCE exposure was being suspected due to his occupational history, and the results of a video-associated thoracoscopic biopsy confirmed the suspicions. Symptoms have resolved after the steroid pulse therapy and his occupational change. TCE should be taken into consideration as a potential trigger of HP. Early recognition and avoidance of the TCE exposure in the future is important for the treatment of TCE induced HP.

스마트 센서 세트를 활용한 화학물질 상시모니터링 시스템의 작업현장 적용 결과 (The Results of the Application of a Real-time Chemical Exposure Monitoring System in a Workplace)

  • 김욱;류장진;정종득;박귀현;김기영;강진주;정기효;함승헌
    • 한국산업보건학회지
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    • 제33권2호
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    • pp.215-229
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    • 2023
  • Objectives: To validate the effectiveness of a real-time chemical exposure monitoring system developed by KOSHA (Korea Occupational Safety and Health Agency), we applied the system to a workplace in the electronics industry for 153 days. Methods: The monitoring system consisted of a PID chemical sensor, a LTE communication equipment, and a web-based platform. To monitor chemical exposure, four sets of sensors were placed in two manufacturing tasks - inspection and jig cleaning - which used TCE as a degreasing agent. We reviewed previous reports of work environment measurements and conducted a new work environment measurement on one day during the period. The PID sensor systems detected the chemical exposure levels in the workplace every second and transmitted it to the platform. Daily average and maximum chemical exposure levels were also recorded. Results: We compared the results from the real-time monitoring system and the work environment measurement by traditional methods. Generally, the data from the real-time monitoring system showed a higher level because the sensors were closer to the chemical source. We found that 28% of jig cleaning task data exceeded the STEL. Peak exposure levels of sensor data were useful for understanding the characteristics of the task's chemical use. Limitations and implications were reviewed for the adoption of the system for preventing poisoning caused by chemical substances. Conclusions: We found that the real-time chemical exposure monitoring system was an efficient tool for preventing occupational diseases caused by chemical exposure, such as acute poisoning. Further research is needed to improve the reliability and applicability of the system. We also believe that forming a social consensus around the system is essential.