• 제목/요약/키워드: Brazed joint

검색결과 71건 처리시간 0.023초

마그네슘합금과 철강 이종소재의 레이저 브레이징 특성에 미치는 도금층의 영향 (Effects of the Types of Coating on the Laser Brazing Characteristics of Dissimilar Joints between Mg Alloy and Steel Sheet)

  • 이목영;김숙환
    • Journal of Welding and Joining
    • /
    • 제31권4호
    • /
    • pp.7-12
    • /
    • 2013
  • The dissimilar welding between magnesium alloy and steel sheet was required in automobile industry to increase the strength of the dissimilar joints. Laser brazing is one of the good joining processes for Mgsteel dissimilar joint. In this study, the effect of coating materials was evaluated on the laser brazing for the dissimilar joint between AZ31 and coated steels such as Zn, Sn and Ni. Diode direct laser was used to braze the lap-edge joint with Mg600 filler wire and Superior #21 flux. The wettability was best on Zn coated steel. The interlayer was formed at the interface between brazement and steel for all coating materials. The strengths of brazed specimen were 146.5N/mm, 204.6N/mm and 101.6N/mm for Zn, Sn and Ni coated steel respectively.

브레이징 온도 변화에 따른 $ZrO_2$와 Ti-6Al-4V의 접합 특성 (Brazing characteristics of $ZrO_2$ and Ti-6Al-4V brazed joints with increasing temperature)

  • 기세호;박상윤;허영구;정재필;김원중
    • 대한치과보철학회지
    • /
    • 제50권3호
    • /
    • pp.169-175
    • /
    • 2012
  • 연구 목적: 온도 변화에 따른 $ZrO_2$와 Ti-6Al-4V의 접합 특성에 대해 알아보기 위하여 새로운 브레이징 합금을 제조하고, 브레이징 온도가 접합 특성에 미치는 영향에 대하여 조사하고자 하였다. 연구 재료 및 방법: 본 연구에서 사용된 시편으로는 실험용 $ZrO_2$ 모재(ZirBlank-PS, Acucera, Inc., Gyeonggi-do, Korea)는 소결 전의 블록형태($65mm{\times}36mm{\times}12mm(t)$)이며, 이를 잘라 사포(#2400)로 표면연마 후 소결하였다. 소결된 $ZrO_2$ 시편의 크기는 $3mm{\times}3mm{\times}3mm(t)$이다. Ti-6Al-4V 모재(Ti 6Al 4V ELI CG Bar, TMS, Washington, USA)는 직경 $10mm{\times}5mm(t)$를 사용하였다. 소결된 $ZrO_2$와 Ti-6Al-4V의 접합을 위하여 브레이징 합금을 제조하였다. 시편을 3군으로 나누어 A군은 $700^{\circ}C$에서, B군은 $750^{\circ}C$에서, C군은 $800^{\circ}C$에서 각각 브레이징 하였다. 브레이징 부의 두께와 결함율의 측정은 각 군당 하나의 시편으로 각 시편 당 5회씩 반복 측정하여 평균값을 취하였다. 결과: 브레이징 합금을 사용하여 진공 브레이징을 수행한 결과 $ZrO_2$ 와 Ti-6Al-4V 는 $700^{\circ}C-800^{\circ}C$에서 양호한 접합을 보였다. 브레이징 후 브레이징 온도 변화에 따른 브레이징 부의 두께 및 결함율의 변화는 SEM을 사용하여 측정하였다. 브레이징 온도가 $700^{\circ}C$에서 $800^{\circ}C$로 증가함에 따라 CuTi 금속간 화합물 층 및 Ti-Sn-Cu-Ag계 화합물 층의 두께는 각각 $4.5{\mu}m$에서 $10.3{\mu}m$로, $3.1{\mu}m$에서 $5.0{\mu}m$로 증가되었다. 또한 브레이징 온도가 $700^{\circ}C$에서 $800^{\circ}C$로 증가함에 따라 브레이징 접합계면의 결함율은 $ZrO_2$ 및 Ti-6Al-4V 계면에서 각각 25%에서 16.3%, 5%에서 1.5%로 감소되었다. 결론: 브레이징 온도가 $700^{\circ}C$에서 $800^{\circ}C$로 증가됨에 따라, 브레이징 접합계면의 결함율은 $ZrO_2$ 및 Ti-6Al-4V 계면에서 모두 감소되었다. 이는 결함부에서 $ZrO_2$와 활성원소인 Ti과의 반응이 충분히 일어나지 않아서 브레이징 합금이 $ZrO_2$에 웨팅되지 않은 것이 원인이라고 사료된다.

알루미나($Al_2O_3$)세라믹과 알루미늄(A1050)과의 대기중 브레이징 접합에 관한 연구 (A study on the brazed bonding of alumina ceramic to aluminum in the air atmosphere)

  • 최영국;박성현;김윤해;김영식
    • Journal of Advanced Marine Engineering and Technology
    • /
    • 제19권3호
    • /
    • pp.50-61
    • /
    • 1995
  • In recent years, many ceramic researchers have discoved various methods of joining ceramic to metal. However, most of these joining methods are perfomed under vacuum and pressured circumstances. So, when we join ceramic to metal,the proceedings are very complicated and require a very high cost. The purpose of this study is to develop a new joining method of an alumina ceramic to an aluminum metal in air atmosphere. The joining condition, such as copper metallizing, nickel plating, brazing, etc. was investigated through the shear strength test of the trial joint. The results obtained from the above experimenta are summarized as follows : 1) In the case of the $Al_2O_3$/$Al_2O_3$joint, the shear strength of the joint was affected by the various foctor such as kaolin content, copper metallizing thickness, firing temperature, firing time. 2) The better shear strength of the $Al_2O_3$/Al joint was obtained when Ni plating was conducted under higher current density than existing plating condition. 3) The shear strength of the $Al_2O_3$/Al joint increases with the Ni plating thickness is confined to the range of this paper. 4) The shear strength of the thermal-shocked specimen($Al_2O_3$/Al joint) was far more deteriorated than that of the as-bonded specimen.

  • PDF

DEVELOPMENT OF TITANIUM-BASED BRAZING FILLER METALS WITH LOW-MELTING-POING

  • Onzawa, Tadao;Tiyama, Takashi
    • 대한용접접합학회:학술대회논문집
    • /
    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
    • /
    • pp.539-544
    • /
    • 2002
  • Titanium and titanium alloy are excellent in corrosion resistance and specific intensity, and also in the biocompatibility. On the other hand, the brazing is bonding method of which productivity and reliability are high, when the complicated and precise structure of the thin plate is constructed. However, though conventional titanium-based brazing filler metal was excellent in bond strength and corrosion resistance, it was disadvantageous that metal structure and mechanical property of the base metal deteriorated, since the brazing temperature (about 1000 C) is considerably high. Authors developed new brazing filler metal which added Zr to Ti-Cu (-Ni) alloy which can be brazed at 900 C or less about 15 years ago. In this paper, the development of more low-melting-point brazing filler metal was tried by the addition of the fourth elements such as Ni, Co, Cr for the Ti-Zr-Cu alloy. As a method for finding the low-melting-point composition, eutectic composition exploration method was used in order to reduce the experiment point. As the result, several kinds of new brazing filler metal such as 37.5Ti-37.5-Zr-25Cu alloy (melting point 825 C) and 30Ti-43Zr-25Cu-2Cr alloy (melting point: 825 C) was developed. Then, the brazing joint showed the characteristics which were almost equal to the base metal from the result of obtaining metallic structure and strength of joint of brazing joint. However, the brazing filler metal composition of the melting point of 820 C or less could not be found. Consequentially, it was clarified that the brazing filler metal developed in this study could be practically sufficiently used from results such as metal structure of brazing joint and tensile test of the joint.

  • PDF

Development of Titanium-based Brazing Filler Metals with Low-melting-point

  • Onzawa, T.;Iiyama, T.
    • International Journal of Korean Welding Society
    • /
    • 제2권2호
    • /
    • pp.14-18
    • /
    • 2002
  • Titanium and titanium alloy are excellent in corrosion resistance and specific intensity, and also in the biocompatibility. On the other hand, the brazing is bonding method of which productivity and reliability are high, when the complicated and precise structure of the thin plate is constructed. However, though conventional titanium-based brazing filler metal was excellent in bond strength and corrosion resistance, it was disadvantageous that metal structure and mechanical property of the base metal deteriorated, since the brazing temperature ( about $1000^{\circ}C$ ) is considerably high. Authors developed new brazing filler metal which added Zr to Ti-Cu (-Ni) alloy which can be brazed at $900^{\circ}C$ or less about 15 years ago. In this paper, the development of more low-melting-point brazing filler metal was tried by the addition of the fourth elements such as Ni, Co, Cr for the Ti-Zr-Cu alloy. As a method for finding the low-melting-point composition, eutectic composition exploration method was used in order to reduce the experiment point. As the result, several kinds of new brazing filler metal such as 37.5Ti-37.5-Zr-25Cu alloy (melting point: $825^{\circ}C$) and 30Ti-43Zr-25Cu-2Cr alloy (melting point: $825^{\circ}C$) was developed. Then, the brazing joint showed the characteristics which were almost equal to the base metal from the result of obtaining metallic structure and strength of joint of brazing joint. However, the brazing filler metal composition of the melting point of $820^{\circ}C$ or less could not be found. Consequentially, it was clarified that the brazing filler metal developed in this study could be practically sufficiently used from results such as metal structure of brazing joint and tensile test of the joint.

  • PDF

질화 규소 접합체의 미세구조와 파괴 강도에 관한 연구 (Microstructure and Fracture Strength of Si3N4 Joint System)

  • 차재철;강신후;박상환
    • 한국세라믹학회지
    • /
    • 제36권8호
    • /
    • pp.835-842
    • /
    • 1999
  • 본 연구에서는 Ag-Cu-Ti 와 Ag-Cu-In-Ti 를 사용하여 브레이징법으로 질화규소 간 접합체를 제작하고 $400^{\circ}C$$650^{\circ}C$에서 장시간(2000 h) 열처리 후 파괴 강도의 변화를 살펴보았다. 접합후 강도는 Ag-Cu-Ti 가 높게 나왔지만, 열처리 시간이 증가할수록 Ag-Cu-In-Ti 의 경우가 강도의 감소 정도가 작은 것으로 나타났다. 또한 고온 응용을 위해 개발된 새로운 접학 합금인 Au-Ni-Cr-Mo-Fe 계를 이용하여 질화 규소 간의 접합체를 제작하여 $650^{\circ}C$에서 100시간까지 장시간 열처리 하였다 접합 당시의 강도는 상용 접합 합금보다는 낮은 값을 보였지만, 열처리를 함에 따라 강도의 증가를 보였다 SUS316과의 접합시에는 중간재로 몰리브데늄 또는 구리를 사용하였으며 $400^{\circ}C$에서 1000시간 동안 열처리하였다. 강도는 몰리브데늄을 사용한 경우가 높게 나왔지만, 접합체의 형성이 어렵다는 단점이 있었다. 산화 실험에서는 Ti가 첨가된 접합 합금인 Ag-Cu-Ti 의 경우가 첨가되지 않은 Ag-Cu의 경우보다 산화가 잘 일어나며, 인듐을 첨가한 Ag-Cu-In-Ti 의 경우는 산화 억제의 효과가 나타났다. 전반적으로 In을 포함한 접합 합금이 고온 신뢰도 면에서 우수한 것으로 나타났다.

  • PDF

Effects of Strain Rate and Temperature on Fracture Strength of Ceramic/Metal Joint Brazed with Ti-Ag-Cu Alloy

  • Seo, Do-Won;Lim, Jae-Kyoo
    • Journal of Mechanical Science and Technology
    • /
    • 제16권9호
    • /
    • pp.1078-1083
    • /
    • 2002
  • Ceramics are significantly used in many industrial applications due to their excellent mechanical and thermal properties such as high temperature strength, low density, high hardness, low thermal expansion, and good corrosion resistive properties, while their disadvantages are brittleness, poor formability and high manufacturing cost. To combine advantages of ceramics with those of metals, they are often used together as one composite component, which necessiates reliable joining methods between metal and ceramic. Direct brazing using an active filler metal has been found to be a reliable and simple technique, producing strong and reliable joints. In this study, the fracture characteristics of Si$_3$N$_4$ ceramic joined to ANSI 304L stainless steel with a Ti-Ag-Cu filler and a Cu (0.25-0.3 mm) interlayer are investigated as a function of strain rate and temperature. In order to evaluate a local strain a couple of strain gages are pasted at the ceramic and metal sides near joint interface. As a result the 4-point bending strength and the deflection of interlayer increased at room temperature with increasing strain rate. However bending strength decreased with temperature while deflection of interlayer was almost same. The fracture shapes were classified into three groups ; cracks grow into the metal-brazing filler line, the ceramic-brazing filler line or the ceramic inside.

니켈기 초합금의 접합특성에 미치는 브레이징 공정변수의 영향 (Effect of Brazing Process Variables on joining Characteristics of Ni-based Superalloy)

  • 김경호;김광호;이민구;이호진;김흥회;김숙환
    • 대한용접접합학회:학술대회논문집
    • /
    • 대한용접접합학회 2006년도 춘계 학술대회 개요집
    • /
    • pp.266-268
    • /
    • 2006
  • The effects of the brazing temperature and homogenizing time for brazed specimens on the joint of Ni-based superalloys such as Haynes 250, Inconel 617 and Hastelloy-X were investigated. The brazing alloy is nickel base MBF 15. The foil had a thickness of $38{\mu}m$, which was used two sheets of that for the all experiments. The experimental brazing was carried out by a brazing process in a vacuum of approximately $2{\times}10^{-5}$ Torr, an applied pressure of about 0.74MPa and the three kinds of brazing temperatures were 1100, 1150, and $1190^{\circ}C$ for a holding time of 5 to 1440 minutes. Microstructural observations were made on the cross-sectional samples by using an optical microscope(OM), scanning electron microscope(SEM), and electron probe X-ray microanalyzer(EPMA). The tensile tests were performed at room temperature with a cross head speed 1.5 mm/min according to ASTM E8M. The results show that excellent joint tensile strengths of as high as 788MPa were obtained when processed at $1190^{\circ}C$ for 5 minutes.

  • PDF

$Al_2O_3/Al$ 6061의 접합부 계면특성에 관한 연구 (A study on Brazing Interfacial Properties of $Al_2O_3/Al$ 6061)

  • 서상용;안병건;이규용
    • 동력기계공학회지
    • /
    • 제7권3호
    • /
    • pp.74-79
    • /
    • 2003
  • Alumina($Al_2O_3$) and Al 6061 were brazed by using Al-12wt% Si filler metal in a high vacuum environment. The interfacial microstructure and mechanical properties of the joints were investigated. The results obtained were as follows. (1) The maximum tensile strength of 54Mpa was acquired at the processing conditions of high vacuum ($3{\times}10^{-6}Torr$), $620^{\circ}C$ and 10min, but this condition will not be used in the industrial area due to high evaporation of Al alloy composition. (2) Reaction products for holding time and brazing temperature worked as stress relieve layer and the fractures after the mechanical properties test were occurred to the ceramic side or reaction layer. (3) The glancing angle X-ray diffraction analysis for the reaction product of $Al_2O_3/Al$ 6061 were processed. the joint strengths were low due to existed $Al_2Si_5\;and\;SiO_2$.

  • PDF

저온 브레이징용 Al-Si-Cu 합금의 Sn 첨가에 따른 융점 및 기계적 특성 변화 연구 (Effect of Tin Addition on the Melting Temperatures and Mechanical Properties of Al-Si-Cu Brazing Filler Metals)

  • 김민상;박천웅;변종민;김영도
    • 한국재료학회지
    • /
    • 제26권7호
    • /
    • pp.376-381
    • /
    • 2016
  • For the development of a low-melting point filler metal for brazing aluminum alloy, we analyzed change of melting point and wettability with addition of Sn into Al-20Cu-10Si filler metal. DSC results showed that the addition of 5 wt% Sn into the Al-20Cu-10Si filler metal caused its liquidus temperature to decrease by about 30 oC. In the wettability test, spread area of melted Al-Cu-Si-Sn alloy is increased through the addition of Sn from 1 to 5 wt%. For the measuring of the mechanical properties of the joint region, Al 3003 plate is brazed by Al-20Cu-10Si-5Sn filler metal and the mechanical property is measured by tensile test. The results showed that the tensile strength of the joint region is higher than the tensile strength of Al 3003. Thus, failure occurred in the Al 3003 plate.