• 제목/요약/키워드: alkaline degreasing agent

검색결과 6건 처리시간 0.018초

도금 전처리공정에서 맞춤형 알칼리계 탈지제 개발 (Development of Alkaline Degreasing Agent for Electroplating Pretreatment Process)

  • 이승범;정구형;이재동
    • 공업화학
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    • 제21권3호
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    • pp.301-305
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    • 2010
  • 본 연구에서는 도금전처리 공정에서 사용되는 다양한 조성의 맞춤형 알칼리계 탈지제를 개발하고, 탈지제의 수명을 예측함으로 효율을 높임과 동시에 공정품의 불량을 줄이고자 하였다. 알칼리계 탈지제는 침지형 탈지제로 NaOH, $Na_2CO_3$, $Na_2SiO_3$, SLS 등을 일정비율로 첨가하여 제조하였으며, 제조된 탈지제의 성능평가를 위해 알칼리계 탈지액의 온도를 $40{\sim}50^{\circ}C$로 설정하여 30~40 min 동안 오염된 철 시편을 넣은 후 오염물을 제거하였다. 오염물이 제거된 시편은 물방울 맺힘실험과 Hull-cell 도금분석을 통해 탈지제의 성능 및 수명을 확인하였다. 최적 탈지제의 조성은 NaOH (30 g/L) + SLS (6.0 g/L) + $Na_2SiO_3$ (2.0 g/L) + $Na_2CO_3$ (40 g/L)을 추천할 수 있으며, 물방울맺힘 실험과 Hull-cell 도금 분석 결과 최적 탈지조건은 $50^{\circ}C$, 35 min인 것으로 나타났다.

탈지조성에 따른 철강용 알칼리탈지제의 합성 및 특성 (Synthesis and Characteristics of Alkaline Degreasing Agents for Steel Containing Degreasing Components)

  • 박은석;정동진;박홍수;함현식
    • 한국응용과학기술학회지
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    • 제20권2호
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    • pp.81-86
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    • 2003
  • To prepare alkaline degreasing agents(SADAs), tetrasodium pyrophosphate(TSPP), $Na_2CO_3$, Tetronix T-701 (T-701), Na-dioctyl sulfosuccinate(303C), Demol C, and MJU-100A were blended. The prepared degreasing agents were tested with steel specimens and the results were as follows. The degreasing powers of SADA-6($Na_2CO_3$ 50g/TSPP 25g/T-701 10g/303C 15g/Demol C 12g/MJU-100A 8g/water 130g mixture) for press-rust preventing oil were 98% and 99% degreasing at 4wt%, 70 $^{\circ}C$ and 90 $^{\circ}C$, respectively; for quenching oil, the degreasing power of SADA-6 was 92% degreasing at 4wt% and 70 $^{\circ}C$. From these results, it was proved that the SADA-6 exhibits a good degreasing power. Foam heights measured immediately after foaming by Ross & Miles method and Ross & Clark method at 6wt% and 60 $^{\circ}C$ were 16mm and 40mm, respectively. SADA-6 was proved a good low foaming degreasing agent.

철강용 알칼리 분말세정제의 제조 및 세정해석 (Preparation and Analysis of Alkaline Powder Cleaning Agents for Steel)

  • 이애리;정동진;박홍수;임완빈
    • 한국응용과학기술학회지
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    • 제20권4호
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    • pp.283-288
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    • 2003
  • Alkaline powder cleaning agents (APCAs) were prepared by blending of $Na_2CO_3$ tetrasodium pyrophosphate (TSPP). sodium orthosilicate (Na-OSi), Na-dioctyl sulfosuccinate (303C), Demol C, and MJU-100A (100A). The physical properties of APCAs tested with steel specimen showed the following results. The cleaning powers of APCA-6 ($Na_2CO_3$ 250g/TSPP 70g/Na-OSi 40g/303C 60g/Demol C 50g/100A 30g mixture) for press-rust preventing oil was 97% and 98% degreasing at 2wt%, $70^{\circ}C$ and $90^{\circ}C$, respectively; for Quenching oil, the cleaning power of APCA-6 was 95% degreasing at 2wt% and $70^{\circ}C$. From the results, it was ascertained that APCA-6 exhibited a good cleaning power. Also low foaming power tests proved that the APCA-6 maintained good defoaming effect.

철강용 고성능 알칼리세정제의 제조 및 세정거동 (Preparation and Behavior of High Performance Alkaline Cleaning Agents for Steel)

  • 박홍수;조혜진;심일우;유혁재;김명수;함현식
    • 한국응용과학기술학회지
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    • 제22권1호
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    • pp.15-20
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    • 2005
  • $Na_2CO_3$. Sodium orthosilicate (Na-OSi), Tetronix T-701 (T-701), Na-dioctyl sulfosuccinate (303C), Newpol PE-68 (PE-68), MJU-100A, and tetrasodium pyrophosphate were blended to prepare high performance alkaline cleaning agents (ACASs). The results of cleaning test with steel specimen showed that ACAS-6 ($Na_2CO_3$ 50g/Na-OSi 35g/T-701 20g/303C 18g/PE-68 17g/MJU-100A 10g/TSPP 20g/ water 180g mixture) had a good cleaning power. The cleaning power for press-rust preventing oil was 98% and 99% degreasing at 4wt%, $70^{\circ}C$ and $90^{\circ}C$, respectively ; for quenching oil, the cleaning power of ACAS-6 was 91% degreasing at 4wt% and $70^{\circ}C$. The foam heights measured immediately after foaming by Ross & Miles method and Ross & Clark method at 6wt%, $60^{\circ}C$ were 18mm and 65mm, respectively. It was concluded that ACAS-6 had a good low foaming cleaning agent.

철강용 알칼리세정제의 제조에 관한 연구 (A Study on the Preparation of Alkaline Cleaning Agents for Steel)

  • 근장현;함현식;박홍수
    • 한국응용과학기술학회지
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    • 제10권2호
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    • pp.35-40
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    • 1993
  • Alkaline cleaning agent(ACA) was prepared by blending of POE(4)octadecylmine(S-204), $Na_2CO_3$, sodium orthosilicate(Na-OSi). Tetronix T-701(T-701), and MJU-100A. The physical properties of ACA tested with steel specimen showed the following results. The cleaning powers of ACA-6(S-204 80g/$Na_2CO_3$, 160g/Na-OSi, 80g/T-701, 60g/MJU-100A, 20g mixture) for press-rust preventing oil was 98% and 99% degreasing at 2wt%, $70^{\circ}C$ and $90^{\circ}C$, respectively : for quenching oil, the cleaning power of ACA-6 was 95% degreasing at 2wt% and $70^{\circ}C$. From these results, it was ascertained that ACA-6 exhibited a good cleaning power. Foam heights measured immediately after foaming by Ross & Miles method and Ross & Clark method at 3wt%. $60^{\circ}C$ were 17mm and 40mm, respectively. As the result, ACA-6 was proved a good low foaming cleaning agent.

NH4OH용액이 반도체 소자용 구리 박막 표면에 미치는 영향 (Cleaning Effects by NH4OH Solution on Surface of Cu Film for Semiconductor Devices)

  • 이연승;노상수;나사균
    • 한국재료학회지
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    • 제22권9호
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    • pp.459-464
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    • 2012
  • We investigated cleaning effects using $NH_4OH$ solution on the surface of Cu film. A 20 nm Cu film was deposited on Ti / p-Si (100) by sputter deposition and was exposed to air for growth of the native Cu oxide. In order to remove the Cu native oxide, an $NH_4OH$ cleaning process with and without TS-40A pre-treatment was carried out. After the $NH_4OH$ cleaning without TS-40A pretreatment, the sheet resistance Rs of the Cu film and the surface morphology changed slightly(${\Delta}Rs:{\sim}10m{\Omega}/sq.$). On the other hand, after $NH_4OH$ cleaning with TS-40A pretreatment, the Rs of the Cu film changed abruptly (${\Delta}Rs:till{\sim}700m{\Omega}/sq.$); in addition, cracks showed on the surface of the Cu film. According to XPS results, Si ingredient was detected on the surface of all Cu films pretreated with TS-40A. This Si ingredient(a kind of silicate) may result from the TS-40A solution, because sodium metasilicate is included in TS-40A as an alkaline degreasing agent. Finally, we found that the $NH_4OH$ cleaning process without pretreatment using an alkaline cleanser containing a silicate ingredient is more useful at removing Cu oxides on Cu film. In addition, we found that in the $NH_4OH$ cleaning process, an alkaline cleanser like Metex TS-40A, containing sodium metasilicate, can cause cracks on the surface of Cu film.