• 제목/요약/키워드: Metallic additives

검색결과 19건 처리시간 0.02초

아연도금층의 조직, 외관, 및 경도에 미치는 미량 금속첨가의 영향 (The Effect of Trace Metallic Additives on Microstructure, Surface Appearance and Hardness of Zn Electrodeposits)

  • 예길촌;김대영;안덕수
    • 한국표면공학회지
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    • 제37권1호
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    • pp.28-39
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    • 2004
  • The effect of trace metallic additives on microstructure, surface appearance and hardness of zinc electrodeposits was investigated by using sulfate bath and flow cell system. The preferred orientation of Zn deposit with Fe additive was (103)(104)+(002) mixed texture and that of Zn deposits with both Fe-Ni and Fe-Co additives was (10 1), while Zn deposits with Fe-Cr additives had (002) preferred orientation. The surface morphology of the zinc deposits was closely related to the preferred orientation of the deposits. The glossiness of Zn deposit with Fe-Ni additives was higher than that of pure Zn deposit, while the glossiness of Zn deposits with both Fe-Co and Fe-Cr additives was lower than that of pure Zn deposit. The hardness of Zn deposits with both Fe-Ni and Fe-Co additives was noticeably higher than that of Zn-Fe deposit, while that of Zn deposit with Fe-Cr additives was similar to that of Zn-Fe deposit.

아연도금층의 조직 및 물성에 미치는 미량금속원소(Mg-Fe-X)의 복합첨가의 영향(II) (Effect of Trace Metallic Additives of Mg-Fe-X on Microstructure and Properties of Zn Electrodeposits)

  • 예길촌;김대영;안덕수
    • 한국표면공학회지
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    • 제37권2호
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    • pp.99-109
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    • 2004
  • The effect of trace metallic additives on microstructure, glossiness and hardness of Zinc electrodeposits was investigated by using sulfate bath and flow cell system. The preferred orientation of Zn deposits with Mg-Fe additives was (10$\ell$)+(002) mixed texture, while that of Zn deposits with Mg-Fe-Cr additives was ( $10\ell$). The preferred orientation of Zn deposits with Mg-Fe-X(X:Ni,Co) additives changed from ($10\ell$)+(002) to ($10\ell$) with increasing Mg additive from 5 to 10 g/$\ell$. The surface morphology of the Zinc deposits was closely related to the preferred orientation of the deposits. The glossiness of Zn deposits with Mg-Fe additives was similar to that of pure Zn deposit. The glossiness of Zn deposits with Mg-Fe-X(X:Ni,Cr) additives was lower than that of Zn deposits with Mg-Fe additives, while that of Zn deposits with Mg-Fe-Co additives was higher than that of Zn-Mg-Fe deposits. The hardness of Zn deposits with Mg-Fe-X(Ni,Co,Cr) increased with current density and amount of Mg additive. Hardness of Zn deposits was decreased and increased in comparison with Zn-Mg-Fe deposits for Mg-Fe-Co and Mg-Fe-Cr additives, respectively.

아연도금층의 조직 및 물성에 미치는 미량금속원소(Al-Fe-X)의 복합첨가의 영향(I) (Effect of Trace Metallic Additives of Al-Fe-X on Microstructure and Properties of Zn Electrodeposits)

  • 예길촌;김대영;서경훈;안덕수
    • 한국표면공학회지
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    • 제36권6호
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    • pp.444-454
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    • 2003
  • The effect of trace metallic additives of Al-Fe-X on microstructure, glossiness and hardness of Zn electrodeposits was investigated by using sulfate bath. The preferred orientation of Zn deposits with Al-Fe additives was (10 l)(l:3,4,2), while that of Zn deposits with Al-Fe-X(Ni,Co) additives was either (002) or (002)+(103)ㆍ(104) mixed orientation. The preferred orientation of Zn deposits with Al-Fe-Cr additives changed from (002)+(10 l) to (10 l) orientation with increasing amount of Al additive. The surface morphology of the Zn deposits was closely related to the preferred orientation of the deposits. The glossiness of Zn deposits with Al-Fe additives increased in comparison with that of pure Zn deposit. That of the Zn deposits with Al-Fe-X additives was related to the morphology of the deposits and changed according to type of additives. The hardness of Zn deposits with Al-Fe-X(Ni,Co,Cr) additives was noticeably higher than that of Zn deposits with Al-Fe additives.

윤활시스템에서 극압첨가제 조성에 따른 마모특성 연구 (A Study on the Wear Properties by EP(Extreme Pressure) Additive Composition in a Lubricated Concentrated Contact)

  • 김용석;류재환
    • Tribology and Lubricants
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    • 제19권3호
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    • pp.159-166
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    • 2003
  • This research for replacement of chlorine or sulfur based EP(extreme pressure) -additives which is restricted materials by environmental regulation. The subject of this study is as follows, 4-ball test and friction coefficient test were experimented in accordance with temperature and velocity, compounding with several organic or inorganic metallic elements. After 4-ball test, wear area of steel ball was analysed by SEM-EDX. As the analysis, organic and inorganic elements make a effect for extreme pressure lubricity. It is shown that the friction coefficient of lubricant which includes chlorine or sulfur additives, the scoring phenomenon is found accord-ing to temperature and the scuffing phenomenon at 200$^{\circ}C$. Applying to Na, P, S, Zn, Ca based on inorganic and organic elements, the result showed that friction coefficient is decreased more and more, as increasing temperature of lubricant. The additive based on S, Cl, P elements is effect far extreme pressure in the sample#1 and Na, P, S, Zn, Ca in sample #2. These elements are environmental contaminants and S, Cl based on EP additives which are very popular in domestic industry, when they are properly composed with non-chlorine based on additives and Na, P, S, Zn, Ca organic or inorganic elements. It is showed that lubricity and excellent anti-wear properties.

유통 주방기구의 재질별 용출 특성 평가 -금속제 주방기구 중심으로- (Evaluation of Elution Characteristics by Material for Kitchen Utensils - Focusing on the Metallic Kitchen Utensils)

  • 김재관;임경숙;김명길;박성희;서미영;이유나;김정선;구은정;채선영;박용배;윤미혜
    • 한국식품위생안전성학회지
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    • 제36권1호
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    • pp.51-59
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    • 2021
  • 본 연구는 2019년 경기도내 대형매장과 중소형매장 및 재리시장에서 유통 중인 스테인리스, 알루미늄, 철 등 금속제 주방기구 82건을 대상으로 중금속 등 11종(납, 카드뮴, 비소 등)의 오염도를 조사하여 금속제 주방기구의 위생관리를 위한 기초자료로 활용하고자 하였다. 금속제 주방기구의 용출시험결과, 금속의 용출빈도는 철>알루미늄>크롬, 니켈>아연>구리>납>비소>안티몬>주석>카드뮴의 순으로 이었고 용출률은 7.3-93.9%이었다. 조사 대상 82건 중 알루미늄 주방기구 1건에서 니켈이 기준을 초과(결과 1.4 mg/L, 기준 0.1 mg/L 이하)한 것으로 나타났으며 그 밖에 기준이 설정되어 있지 않은 철에 코팅한 주방기구에서 니켈이 식품용 기구 및 용기·포장 공전 금속제 기준을 5배-193배 초과한 것으로 나타나 이에 대한 기준규격의 설정이 필요한 것으로 판단된다. 코팅하지 않은 금속제와 내부를 코팅한 주방기구 평균 용출량을 비교해보면, 알루미늄과 철은 코팅한 주방기구에서 낮게 나타났고 나머지 대부분의 중금속은 코팅한 주방기구에서 높은 수준으로 나타났다. 국산과 수입산으로 나누어 평균 용출량을 비교한 결과, 알루미늄과 철은 국산 및 수입산 모두 다른 중금속에 비해 높은 수준으로 나타났는데 알루미늄은 국산주방기구에서, 철은 수입산 주방기구에서 높게 나타났다. 주방기구의 코팅재질별로 평균 용출량을 비교한 결과, 불소수지 코팅에서는 알루미늄, 세라믹 코팅에서는 알루미늄, 철, 법랑코팅에서는 니켈, 알루미늄, 철, 구리, 기타(실리콘과 티타늄)코팅에서는 철의 용출량이 높게 나타났다.

Organic additive effects in physical and electrical properties of electroplated Cu thin film

  • 이연승;이용혁;강성규;주현진;나사균
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2010년도 춘계학술발표대회
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    • pp.48.1-48.1
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    • 2010
  • Cu has been used for metallic interconnects in ULSI applications because of its lower resistivity according to the scaling down of semiconductor devices. The resistivity of Cu lines will affect the RC delay and will limit signal propagation in integrated circuits. In this study, we investigated the characteristics of electroplated Cu films according to the variation of concentration of organic additives. The plating electrolyte composed of $CuSO_4{\cdot}5H_2O$, $H_2SO_4$ and HCl, was fixed. The sheet resistance was measured with a four-point probe and the material properties were investigated with XRD (X-ray Diffraction), AFM (Atomic Force Microscope), FE-SEM (Field Emission Scanning Electron Microscope) and XPS (X-ray Photoelectron Spectroscopy). From these experimental results, we found that the organic additives play an important role in formation of Cu film with lower resistivity by EPD.

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Nanodispersion-Strengthened Metallic Materials

  • Weissgaerber, Thomas;Sauer, Christa;Kieback, Bernd
    • 한국분말재료학회지
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    • 제9권6호
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    • pp.441-448
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    • 2002
  • Dispersions of non-soluble ceramic particles in a metallic matrix can enhance the strength and heat resistance of materials. With the advent of mechanical alloying it became possible to put the theoretical concept into practice by incorporating very fine particles in a flirty uniform distribution into often oxidation- and corrosion- resistant metal matrices. e.g. superalloys. The present paper will give an overview about the mechanical alloying technique as a dry, high energy ball milling process for producing composite metal powders with a fine controlled microstructure. The common way is milling of a mixture of metallic and nonmetallic powders (e.g. oxides. carbides, nitrides, borides) in a high energy ball mill. The heavy mechanical deformation during milling causes also fracture of the ceramic particles to be distributed homogeneously by further milling. The mechanisms of the process are described. To obtain a homogeneous distribution of nano-sized dispersoids in a more ductile matrix (e.g. aluminium-or copper based alloys) a reaction milling is suitable. Dispersoid can be formed in a solid state reaction by introducing materials that react with the matrix either during milling or during a subsequent heat treatment. The pre-conditions for obtaining high quality materials, which require a homogeneous distribution of small dis-persoids, are: milling behaviour of the ductile phase (Al, Cu) will be improved by the additives (e.g. graphite), homogeneous introduction of the additives into the granules is possible and the additive reacts with the matrix or an alloying element to form hard particles that are inert with respect to the matrix also at elevated temperatures. The mechanism of the in-situ formation of dispersoids is described using copper-based alloys as an example. A comparison between the in-situ formation of dispersoids (TiC) in the copper matrix and the milling of Cu-TiC mixtures is given with respect to the microstructure and properties, obtained.

STS 316L 소결체의 부식 저항 특성에 미치는 금속산화물 첨가의 영향 (The Effect of Oxides Additives on Anti-corrosion Properties of Sintered 316L Stainless Steel)

  • 이종필;홍지현;박동규;안인섭
    • 한국분말재료학회지
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    • 제22권4호
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    • pp.271-277
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    • 2015
  • As wrought stainless steel, sintered stainless steel (STS) has excellent high-temperature anti-corrosion even at high temperature of $800^{\circ}C$ and exhibit corrosion resistance in air. The oxidation behavior and oxidation mechanism of the sintered 316L stainless was reported at the high temperature in our previous study. In this study, the effects of additives on high-temperature corrosion resistances were investigated above $800^{\circ}C$ at the various oxides ($SiO_2$, $Al_2O_3$, MgO and $Y_2O_3$) added STS respectively as an oxidation inhibitor. The morphology of the oxide layers were observed by SEM and the oxides phase and composition were confirmed by XRD and EDX. As a result, the weight of STS 316L sintered body increased sharply at $1000^{\circ}C$ and the relative density of specimen decreased as metallic oxide addition increased. Compared with STS 316L sintered parts, weight change ratio corresponding to different oxidation time at $900^{\circ}C$ and $1000^{\circ}C$, decreased gradually with the addition of metallic oxide. The best corrosion resistance properties of STS could be improved in case of using $Y_2O_3$. The oxidation rate was diminished dramatically by suppression the peeling on oxide layers at $Y_2O_3$ added sintered stainless steel.

비정질 기지 복합재 코팅층의 미세조직 분석 및 기계적 거동 (Analysis and Mechanical Behavior of Coating Layer in Metallic Glass Matrix Composite)

  • 장범택;이승훈
    • 대한기계학회논문집A
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    • 제38권6호
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    • pp.629-636
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    • 2014
  • 비정질합금이 가지고 있는 우수한 기계적 성질과 화학적 특성을 부품소재에 표면개질을 목적으로 고속화염 용사법으로 대면적 코팅층을 형성하였고 내열성이 높은 자융성합금과 초경합금 성분들을 적절히 혼합하여 비정질기지 복합재료를 제조하여 코팅들의 미세조직 관찰과 나노인덴테이션을 이용한 미세표면의 기계적 거동을 분석하였다. 각 코팅층의 미세조직을 관찰한 결과, 단일상 비정질 코팅에는 미용융 입자와 lamellae 영역이 존재하고 자융성합금이 고용된 복합재에는 in-situ $Cr_2Ni_3$ 석출물, 자융성합금과 초경합금성분이 함께 혼합된 코팅층은 석출물과 ex-situ WC 강화입자가 공존하였다. 이들 미세표면의 기계적 거동은 제 2 상이 고용된 비정질 기지 복합재의 코팅층의 기계적 특성이 전체적으로 향상되었다.