• 제목/요약/키워드: Sn-Ag alloy

검색결과 122건 처리시간 0.021초

저Pb Sn-5%Pb-1.5%Ag-x%Bi계 솔더 합금의 특성에 관한 연구 (A study on the characteristics of low Pb Sn-5%Pb-1.5%Ag-x%Bi solder alloys)

  • 홍순국;주철홍;강정윤;김인배
    • Journal of Welding and Joining
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    • 제16권3호
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    • pp.157-166
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    • 1998
  • Recently as environmental pollution caused by Pb has posed a serious threat to the global environment, the trend to regulate the usage of Pb in electronic industry is one the rise. Currently, the solder alloy with high Pb content, Sn-37%Pb, is utilized in the electronic assembly therefore, the objective of this study is to develop an alternative solder alloy for the existing Sn-37%Pb solder alloy. First thing, this work choosed Sn-5%Pb-1.5%Ag, Sn-5%Pb-1.5%Ag-x%Bi(x=1~5%) for candidate solder alloys, and examined their properties such as melting range, wettability, microhardness, tensile property, oxidation behavior and microstructure. Wettability was on the same level of Sn-37%Pb. Dissolution of Pb ion in Sn-5%Pb solder was 0.46ppm. This solder alloy revealed cellular dendrite microstructure $\beta$-Sn matrix, Pb-rich phase, Ag/Sn, and Cu/Sn Intermetallic compounds. The range of solidification temperature was within 3$0^{\circ}C$. Also these alloy displayed higher tensile strength and lower elongation than Sn-37%Pb. The resistance of oxidation in Sn-5%Pb-1.5%Ag solder alloy was superior to that of Sn-37%Pb solder alloy. But that of Sn-5%Pb-1.5%Ag-5%Bi solder alloy was equal to that of Sn-37%Pb solder alloy.

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Sn-3.5Ag/Alloy42 리드프레임 땜납접합의 미세조직과 접합특성에 관한 연구 (A Study on the Microstructure and Adhesion Properties of Sn-3.5Ag/Alloy42 Lead-Frame Solder Joint)

  • 김시중;배규식
    • 한국재료학회지
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    • 제9권9호
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    • pp.926-931
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    • 1999
  • Sn-3.5g 무연합금을 Cu 및 Alloy42 리드프레임에 납땜접합 (solder joint)하고 미세조직, 젖음성, 전단강도, 시효 효과를 측정하여 비교하였다. Cu의 경우, 땜납의 Sn기지상안에 Ag(sub)3Sn과 Cu(sub)6Sn(sub)5상이, 그리고 땜납/리드프레임의 경계면에는 $1~2\mu\textrm{m}$ 두께의 Cu(sub)6Sn(sub)5 상이 형성되었다. Alloy42의 경우, 기지상내에 낮은 밀도의 $Ag_3Sn$상만이, 그리고 계면에는 $0.5~1.5\mu\textrm{m}$ 두께의 $FeSn_2$이 형성되었다. 한편, Cu에 비해 Alloy42 리드프레임에서 퍼짐면적은 크고 접촉각은 작아 더 우수한 젖음성을 나타내었으나, 전단강도는 35%, 연산율은 75%로 낮았다. $180^{\circ}C$에서 1주일간 시효처리 후, Cu 리드프레임에는 계면 $\eta-Cu_6Sn_5$ 층외에 $\xi-Cu_3Sn$층이 성장하였고, Alloy42 리드프레임에는 기지상내에 $Ag_3Sn$이 구형으로 조대하게 성장하였고, 계면에는$FeSn_2$층만이 약 $1.5\mu\textrm{m}$로 성장하였다.

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시효 처리후 Sn-3.5Ag solder의 Cu, Alloy42 기판에서의 접합특성 (Adhesion Properties of Sn-3.5Ag solder on Cu, Alloy42 substrates after aging)

  • 김시중;김주연;배규식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 하계학술대회 논문집
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    • pp.640-644
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    • 2000
  • Sn-3.5Ag 무연합금을 Cu 및 Alloy42 리드프레임에 납땜접합(solder joint)하고 미세조직, 젖 음성, 전단강도, 시효효과를 측정하여 비교하였다. CU의 경우, 납땜의 Sn기지상안에 Ag$_3$Sn$_{5}$상이, 그리고 땜납/리드프레임의 경계면에는 1~2$\mu\textrm{m}$ 두께의 Cu$_{6}$Sn$_{5}$상이 형성되었다. Alloy42의 경우, 기지상내에는 낮은 밀도의 Ag$_3$Sn상만이, 그리고 계면에는 0.5~1.5$\mu\textrm{m}$ 두께의 FeSn$_2$이 형성되었다. 한편. Cu에 비해 Alloy42 리드프레임에서 전단강도는 낮았으며, 시효 시간에 따라 전단강도는 모두 감소하였다. 18$0^{\circ}C$에서 1주일간 시효처리 후, Cu 리드프레임에는 계면에 η-Cu$_{6}$Sn$_{5}$ 층이 15-20$\mu\textrm{m}$ 성장하였고, A11oy42 리드프레임에는 기지상내에 AgSn$_3$이 조대하게 성장하였으며, 계면에는 FeSn$_2$층만이 약 $1.5\mu\textrm{m}$로 성장하였다.성장하였다.

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급속응고한 Ag-Sn-In 미세조직에 미치는 Sn 함량 변화의 영향 (The Effect of the Sn Amounts on the Microstructure of Rapidly Solidified Ag-Sn-In Alloys)

  • 조대형;권기봉;남태운
    • 한국주조공학회지
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    • 제26권2호
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    • pp.92-97
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    • 2006
  • Contact material is widely used as electrical parts. Ag-Cd alloy has a good wear resistance and stable contact resistance. But the disadvantages of Ag-Cd alloy are coarse Cd oxides and harmful metal, Cd. To solve the disadvantages of that, Ag-Sn alloy that has stable and fine Sn oxide at high temperature has been developed. In order to optimize Sn amount that affects the formation of the oxide layer on the surface, we worked for the microstructures and properties of Ag-Sn material fabricated by rapid solidification process. The experimental procedure were melting using high frequency induction, melt spinning, and internal oxidation. We have shown that the optimized Sn amount for high hardness is 7.09 wt%Sn. Surface oxide layer forms when Sn amount is over 9.45 wt%. The size of Sn oxide is 20 nm.

P의 함량에 따른 Sn-Ag-Cu 및 Sn-Cu 무연솔더의 특성평가 (Characterization of the Sn-Ag-Cu and Sn-Cu Lead-free Solder by adding P)

  • 신영의;황성진
    • 한국전기전자재료학회논문지
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    • 제16권6호
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    • pp.549-554
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    • 2003
  • The purpose of this paper is to investigate the solder properties by the change of P mass percentage. Tension test, wetting balance test, spread test, and analysis of intermetallic compound after isothermal aging of Sn-2.5Ag-0.7Cu-0.005P, Sn-2.5Ag-0.7Cu-0.01P, Sn-2.5Ag-0.7Cu-0.02P, Sn-0.7Cu-0.005P were performed. Adding P in the solder alloys resulted in improvement of tensile strength, reduction of intermetallic compound growth, reduction of oxidization in fusible solders under wave soldering. After comparing solder alloy containing P with tin-lead eutectic solder alloy, P contained solders alloys showed much better solder properties than eutectic solder alloy. Furthermore, this solder alloy presented remarkable properties than any other lead-free solder alloy.

급속응고한 Ag-X%Zn계 전기접점재료에 미치는 Sn함량의 영향 (The Effect of the Sn contents on Rapidly Solidified Ag-X%Zn Electric Contact Materials)

  • 김종규;장대정;주광일;이은호;엄승열;남태운
    • 한국주조공학회지
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    • 제28권4호
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    • pp.184-189
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    • 2008
  • Ag-Cd alloy has been widely used as an electrical contact material, since Ag-Cd alloy has a good wear resistance and stable contact resistance. But nowadays Ag-Cd alloy is not considered as electrical contact material any more due to detrimental effect on environments. Currently, active researches are being performed on ($Ag-SnO_2$ and $Ag-SnO_{2}-In_{2}O_{3}$) as an alternative solution which can fix the remaining environmental problems. However, $In_{2}O_{3}$ is relatively expensive and Ag-Sn alloy has low wear resistance. Our recent research results show that Ag-X%Zn-Y%Sn has similar physical and chemical properties. In the present study, so we tried to change and to optimize the Zn oxide content to over 6 wt% and Sn oxide content with 0.5, 1.0, 1.5 wt%. Results obtained from the experiments on the Ag-X%ZnO-Y%$SnO_2$ are discussed.

저 Pb Sn-5%Pb-1.5%Ag-x%In계 솔도 합금의 특성에 관한 연구 (A Study on the Characteristics of Low Pb Sn-5%Pb-1.5%Pb-1.5Ag-x%In Solder Alloys)

  • 홍순국;주철홍;강정윤;김인배
    • 한국재료학회지
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    • 제8권11호
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    • pp.1011-1019
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    • 1998
  • Pb의 환경오염 문제를 발생하지 않는 저농도 Pb 솔도합금을 개발하기 위하여, 새로운 Sn-5%Pb-1.5%Ag-x%In계 합금 조성을 설계하고, 이 합금의 융점, 젖음성, 상분석, 경도, 인장강도, 드로스성을 평가하여, Sn-37%Pb 솔더오 대체 가능성을 타진하였다. Sn-37%Pb 솔도 합금의 Pbdldhs 용출농도는 국제규제치인 3ppm보다 훨씬 적은 0.46ppm이었고, 환경문제를 유발하지 않는 것으로 확인되었다. 이 합금계의 융점은 $183-192^{\circ}C$이고, 응고온도범위도 $5^{\circ}C$내외로 매우 좁았다. 젖음성은 In의 첨가양에 따라 큰 차이가 거의 없었으며, Sn-375Pb와 비슷하였다. 융점 및 젖음성 측면에서 Sn-37%Pb와 대체 가능한 것으로 판단되었다. 경도는 Sn-37%Pb의 약 1.5배이고, 인장강도는 Sn-37%Pb의 것보다 높고, In의 첨가량에 따라 증가하였지만, 연신율은 감소하였다. In이 1% 첨가된 합금에서는 수지 상정 경계에 Ag3Sn과 Pb가 정출되고, 3% 이상에서는 $Ag_3Sn$$Ag_3In$ 및 Pb가 정출되었다. 드로스 생성속도는 Sn-37%Pb 합금이 Sn-5%Pb-1.5%Ag 합금보다 빠르고, In을 첨가할수록 느리고 2%의 In을 첨가한 합금은 180분에서도 거의 드로스가 발생하지 않았다.

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급속응고한 Ag-Sn-In 합금의 미세조직에 미치는 Misch Metal의 영향 (The Effect of Misch Metal on the Microstructure of Rapidly solidified Ag-Sn-In Alloys)

  • 장대정;남태운
    • 한국전기전자재료학회논문지
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    • 제20권6호
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    • pp.561-565
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    • 2007
  • Because of a good wear resistance and a stable contact resistance, Ag-CdO is widely used as electrical contact material. But, the Cd-oxide mainly exists as a coarse particle and adversely affected to environment. As a reason, $Ag-SnO_2$ alloy has been developed. The Sn-oxide maintains stable and fine particle even at high temperature. In order to investigate the effect of Misch metal (Mm) additional that affects the formation of the oxide and the formation of fine matrix Ag, we studied the microstructures and properties of Ag-Sn-In(-Mm) material fabricated by rapid solidification process. The experimental procedure were melting using high frequency induction, melt spinning, and internal oxidation. The Mm addition makes Ag matrix more fine than no Mm addition. The reason is that the addition of Misch metal decreased a latent heat of fusion of alloy, as a result the rapid solidification effect of alloy is increased. The maximum hardness shows at 0.3 wt%Mm. after that the hardness is decreased until 0.4 wt% Mm, but still larger than no Mm addition alloy. At 0.5 wt% Mm alloy, the precipitation of Misch metal causes a decrease of hardness than no Mm addition alloy.

무연 Sn-Ag-Bi-Ga계 솔더의 특성에 관한 연구 (A Study on the Characteristic of Pb-free Sn-Ag-Bi-Ga Solder Alloys)

  • 노보인;이보영
    • Journal of Welding and Joining
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    • 제18권6호
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    • pp.42-47
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    • 2000
  • The object of this study is to estimate Sn-Ag-Bi-Ga solder alloy as a substitute for Sn-37Pb alloy. For Sn-Ag-Bi-Ga alloys, Ag, Bi and Ga contents are varied. (Ag : 1~5%, Ga : 3%, Bi : 3~6%) Comparing to Sn-37Pb alloy Sn-Ag-Bi-Ga alloys have wider melting temperature range up to max. $18.7^{\circ}C$. With increasing Ag, Bi contents, the wettability of the alloys increased up to max. 6.6 mN. The vickers hardness of the alloys was max. 46.4 Hv. The ultimate tensile stress of the alloys was max. 60.3 MPa and the elongation was max. 1.2%. The joint strength between circuit board and solder was max. 55.5 N and the joint strength between connector and solder was max. 176.1 N. There were no cracks in this alloys after thermal shock test.

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A Study on the Thermal Oxidation and Wettability of Lead-free Solders of Sn-Ag-Cu and Sn-Ag-Cu-In

  • Lee, Hyunbok;Cho, Sang Wan
    • Applied Science and Convergence Technology
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    • 제23권6호
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    • pp.345-350
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    • 2014
  • The surface oxidation mechanism of lead-free solder alloys has been investigated with multiple reflow using X-ray photoelectron spectroscopy. It was found that the solder surface of Sn-Ag-Cu-In solder alloy is surrounded by a thin $InO_x$ layer after reflow process; this coating protects the metallic surface from thermal oxidation. Based on this result, we have performed a wetting balance test at various temperatures. The Sn-Ag-Cu-In solder alloy shows characteristics of both thermal oxidation and wetting balance better than those of Sn-Ag-Cu solder alloy. Therefore, Sn-Ag-Cu-In solder alloy is a good candidate to solve the two problems of easy oxidation and low wettability, which are the most critical problems of Pb-free solders.