• 제목/요약/키워드: Base metal alloys

검색결과 130건 처리시간 0.027초

티타늄 지대주와 비귀금속 합금사이의 갈바닉 부식에 의한 표면 거칠기 변화 평가 (Surface roughness changes caused by the galvanic corrosion between a titanium abutment and base metal alloy)

  • 이정진;송광엽;안승근;박주미
    • 대한치과보철학회지
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    • 제49권1호
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    • pp.65-72
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    • 2011
  • 연구 목적: 이 연구의 목적은 티타늄 지대주와 비귀금속 보철물이 접촉한 경우를 가정하여 이종 금속간 접촉에 의한 갈바닉 부식으로 인해 발생하는 표면 거칠기 변화를 비교, 평가하고자 하였다. 연구 재료 및 방법: 성분과 조성이 다른 3종의 Ni-Cr합금 (T3, Bella bond plus, Tilite)과 cp 티타늄 Grade 2를 이용하여 $13{\times}13{\times}1.5\;mm$의 크기로 시편을 각 군당 6개씩 제작하였다. 연마과정 후 절연 테이프로 직경 6 mm만을 노출시켜 potentiostat (Parastat 2273A)를 이용하여 동전위 분극 시험과 갈바닉 부식 시험을 시행하였으며, 표면 거칠기 측정기(Surftester SV-3000)를 이용하여 부식 전 후 거칠기를 평가하였다. 측정값을 paired t-test와 One-way ANOVA로 분석하였다. 결과: 티타늄과 접촉한 모든 Ni-Cr 시편의 표면 거칠기는 통계적으로 유의하게 증가하였다. 증가량은 베릴륨을 포함한 T3합금 ($0.016{\pm}.007\;{\mu}m$)이 가장 컸으며, 베릴륨을 포함하지 않은 Bella bond plus ($0.012{\pm}.003\;{\mu}m$), 티타늄을 첨가한 Tilite ($0.012{\pm}.002\;{\mu}m$)는 큰 차이를 보이지 않았다. 금속 종류에 따른 거칠기 증가는 유의한 차이를 보이지 않았다. 결론: 티타늄과 접촉한 비귀금속 합금은 갈바닉 부식에 의해 표면 거칠기가 증가하였다.

Control of surface defects on plasma-MIG hybrid welds in cryogenic aluminum alloys

  • Lee, Hee-Keun;Chun, Kwang-San;Park, Sang-Hyeon;Kang, Chung-Yun
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제7권4호
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    • pp.770-783
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    • 2015
  • Lately, high production rate welding processes for Al alloys, which are used as LNG FPSO cargo containment system material, have been developed to overcome the limit of installation and high rework rates. In particular, plasma-metal inert gas (MIG) hybrid (PMH) welding can be used to obtain a higher deposition rate and lower porosity, while facilitating a cleaning effect by preheating and post heating the wire and the base metal. However, an asymmetric undercut and a black-colored deposit are created on the surface of PMH weld in Al alloys. For controlling the surface defect formation, the wire feeding speed and nozzle diameter in the PMH weld was investigated through arc phenomena with high-speed imaging and metallurgical analysis.

알루미늄 합금의 용접특성 - part I : 균열 및 기공 (Weldability of Al Alloys,Part I ;Cfacking and Porosity)

  • 이창희;장래웅
    • Journal of Welding and Joining
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    • 제10권3호
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    • pp.1-12
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    • 1992
  • A literature review was conducted to survey informations available on the welding metallurgy of aluminum alloys and its effect on fusion weldability, especially on solidification cracking and pore formation. Solidification cracking behavior of Al weld is a complicate matter as compared to other high alloys, where a relatively simple Fe-X(most detrimental elements S, P, B, Si, etc) binary diagram can be successfully applicable. Both additive and synergistic effects of elements should be considered together. A same element play a different role from system to system. Porosity, caused by hydrogen contamination of the weld is one of the most troublesome welding problems. The primary sources of hydrogen are believed to be an absorbed moisture on the filler metal or base metal and in the shielding gas. It is extremely important that reliable quality-control procedures be employed to eliminate all possible sources of hydrogen contamination. Selection of proper process and parameters is sometimes more important than controlling of alloying elements in order to make a defect-free weld.

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Ti-15Mo-5Zr-3Al 합금의 고온산화 (High Temperature Oxidation of Ti-15Mo-5Zr-3Al Alloy)

  • 우지호;김종성;백종현;이동복
    • 한국표면공학회지
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    • 제31권5호
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    • pp.278-285
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    • 1998
  • Alloys of Ti-15Mo-5Zr-3Al(wt%) were oxidized in air between 700 and $900^{\circ}C$. It was found that the oxidation resistance is much better than that of either commercially available pure Ti-6Al-4V(wt%) alloys. The oxide scales were primarily composed of thick Ti-ox-ides which were formed by the inward diffusion of oxygen from the atmosphere. At higher temperatures a thin $\alpha$-$Al_2O_3$ layer was formed on Ti-oxides owing to the outward diffusion of Al from the base alloys. Molybdenum, the noblest metal among the alloy components, was predominantly present behind the oxide-substrate interface. Zirconium, an oxygen active metal, was present at both the oxide layer and the substrate.

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알루미늄의 브레이징과 원리 (Aluminum Brazing and Its Principle)

  • 이순재;정도현;정재필
    • 마이크로전자및패키징학회지
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    • 제24권4호
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    • pp.1-7
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    • 2017
  • Aluminum alloys have been widely used in many fields such as electronic, structure, aero-space and vehicle industries due to their outstanding thermal and electrical conductivity as well as low cost. However, they have some difficulties for using in brazing process because of the strong oxide layer of $Al_2O_3$ on the surface of Al alloy. In addition, their melting point is similar to that of brazing filler metal resulting in thermal damage of Al alloys. Therefore, it is very important to understand the brazing principles, filler metal and its properties such as wetting, capillary flow and dissolution of base metal in the Al brazing process. This paper reviews the brazing principles, aluminum alloys, and brazing fillers. In the case of brazing principle, some formula was used for calculation of capillary force and the dissolution to obtain the best condition of Al brazing. In addition, the advanced research trends in Al brazing were introduced including thermal treatment, additive for improving property and decreasing melting point in Al brazing process.

이온빔 보조 증착법에 의한 TiN 박막도포가 니켈-크롬-베릴륨 합금의 표면 성상에 미치는 영향에 관한 연구 (A STUDY OF ION BEAM ASSISTED DEPOSITION(IBAD) OF TiN ON Ni-Cr Be ALLOY FOR SURFACE CHARACTERISTIC)

  • 최수영;이선형;장익태;양재호;정헌영
    • 대한치과보철학회지
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    • 제37권2호
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    • pp.212-234
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    • 1999
  • Dental restorative materials must have the physical properties to withstand wear and corrosion. Base metal alloys possess better mechanical properties and lower price than the gold alloys. For these reasons such alloys have largely replaced the precious metal alloys. One aspect to con-sider is the release of metal substances to oral environment. The release of elements from dental alloys is a continuing concern because the elements may have the potentially harmful biological effects on local tissues. The purpose of this study was to minimize metal release on the nonprecious metal surfaces by ion beam assisted deposition(IBAD) of titanium nitride (TiN) Ni-Cr-Be alloys with and without TiN coatings were secured in an wear test machine opposing ruby ball to determine their relative resistance to wear with loom, 200m, 300m and 400m sliding distance. And the corrosion behavior of the Ni-Cr-Be alloys with and without TiN coatings and 3 dental noble alloys have been studied. Potentiodynamic curves were used to analyse the corrosion characteristics of the alloys. The measurement of the released Ni and Cr ions was conducted by analysis of the electrolyte solution with atomic absorption spectroscopy. The results were as follows : 1. The critical sliding distance that wore down TiN coatings of $2.5{\mu}m$ thickness in this study condition was 300m. 2. Ion beam assisted deposition of TiN showed a good surface modification with respect to the properties of wear and corrosion resistance. 3. X-ray diffraction showed that the strongest peak of TiN is TiN(111) in the coatings. 4. The release of Ni and Cr ions from alloys measured by means of atomic absorption spectroscopy was reduced by ion beam assisted deposition of TiN.

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소환온도(燒還溫度)와 재(再) 주조금속(鑄造金屬) 함량비(含量比)가 Ni-Cr계(係) 비귀금속(非貴金屬) 합금(合金)의 가주성(可鑄性)에 미치는 영향 (The Influence on Castability of Nickel-Chromium Alloys according to Burn-out Temperature and Recast Content Ratio)

  • 이효병
    • 대한치과기공학회지
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    • 제8권1호
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    • pp.51-55
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    • 1986
  • The castability of base metal alloys for dental casting in influenced by burn-out temperature and recent percentage. Burn-out temperatures for casting are set at 200$^{\circ}F$ interval from 1000$^{\circ}F$ to 1800$^{\circ}F$. According to recast metal percent in new cast alloy metal alloys are tested. The results are as followings: 1. In the new alloy(100%), the castability is the most. 2. The burn-out temperature in 1600$\sim$1800$^{\circ}F$, castability of 100% new alloy was more four times than of 50% new alloy plus 50% recast alloy. The using of 50% new alloy and 50% recast alloy, therefore, was unlike in castability. 3. The burn-out temperature in 1600$^{\circ}F$, castability of 100% new alloy was more than four times in soaking 20 minutes, but there was no any difference at 18700$^{\circ}F$. 4. It is investigated that the optimal burn-out temperature is 1600$^{\circ}F$ for the C & B alloy.

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자동차 이차전지 제조를 위한 알루미늄과 무산소동의 레이저 용접특성 (Laser Welding Characteristics of Aluminum and Copper Sheets for Lithium-ion Batteries)

  • 강민정;박태순;김철희;김정한
    • Journal of Welding and Joining
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    • 제31권6호
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    • pp.58-64
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    • 2013
  • Several joining methods involving resistance welding, laser welding, ultrasonic welding and mechanical joining are currently applied in manufacturing lithium-ion batteries. Cu and Al alloys are used for tab and bus bar materials, and laser welding characteristics for these alloys were investigated with similar and dissimilar material combinations in this study. The base materials used were Al 1050 and oxygen-free Cu 1020P alloys, and a disk laser was used with a continuous wave mode. In bead-on-plate welding of both alloys, the joint strength was higher than the strength of O tempered base material. In overlap welding, the effect of welding parameters on the tensile shear strength and bead shape was evaluated. Tensile shear strength of overlap welded joint was affected by interfacial bead width and weld defect formation. The tensile-shear specimen was fractured at the heat affected zone by selecting proper laser welding parameters.

열노출 온도에 따른 CP 티타늄, Ti-6Al-4V 합금의 미세조직/기계적성질 변화 및 저온브레이징 특성 (Effects of Holding Temperatures on Microstructure and Mechanical Properties of CP Titanium and Ti-6Al-4V Alloy and Its low Temperature Brazing Characteristics)

  • 선주현;신승용;홍주화
    • 열처리공학회지
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    • 제23권1호
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    • pp.3-9
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    • 2010
  • Titanium and its alloys were brazed in the range of $850-950^{\circ}C$ within 10 min. of brazing time using expensive infra red or other heating methods. However, brazing time needs to be extended to get temperature-uniformity for mass production by using continuous belt type furnace or high vacuum furnace with low heating rate. This study examined effects of holding temperature for 60 min, on microstructure and mechanical properties of titanium alloys. Mechanical properties of titanium alloys were drastically deteriorated with increasing holding temperature followed by grain growth. Maximum holding temperatures for CP (commercial pure) titanium and Ti-6Al-4V were confirmed as $800^{\circ}C$ and $850^{\circ}C$, respectively. Both titanium alloys were successfully brazed at $800^{\circ}C$ for 60 min. with the level of base metal strengths by using Zr based filler metal, $Zr_{54}Ti_{22}Ni_{16}Cu_8$.