• 제목/요약/키워드: Welding Material

검색결과 1,142건 처리시간 0.023초

초음파 접합 장치의 냉각관 설계 및 접합강도 실험 (Design and Experimental Results for Cooling Tubes of Ultrasonic Bonding Equipment of Ultrasonic Bonding Equipment)

  • 이동욱;전의식
    • 한국산학기술학회논문지
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    • 제15권4호
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    • pp.1879-1884
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    • 2014
  • 최근 미세접합 기술이 다양한 사회에서 주목받고 있다. 미세접합 기술은 레이저 접합 초음파 접합 등이 있다. 그러나 미세 접합의 연구가 많이 부족한 실정이다. 이에 본 논문에서는 초음파 접합장치 구동 시 열평형 상태에서 압전소자에 열영향을 최소화하기 위해 냉각관을 설계하였다. 또한 냉각관이 설계된 초음파 접합 장치를 이용하여 접합 실험을 실시하였다. 다꾸찌 실험계획법을 이용하여 실험을 실시하였으며, 기초실험을 통해 공정변수와 반응 변수를 설정하였다. 접합 실험의 신뢰도를 검증하기 위하여 접합 계면의 미세조직을 관찰하였고, 인장실험을 통해 접합 강도를 확인하였다.

생체 이식형 의료기기의 패키징을 위한 완전 밀폐 방법에 관한 연구 (A Study on the Hermetic Method for Packaging of Implantable Medical Device)

  • 박재순;김성일;김응보;강영환;조성환;정연호
    • 한국전기전자재료학회논문지
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    • 제30권7호
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    • pp.407-412
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    • 2017
  • This paper introduces a biocompatible packaging system for implantable medical device having a hermetic sealing, such that a perfect physical and chemical isolation between electronic medical system and human body (including tissue, body fluids, etc.) is obtained. The hermetic packaging includes an electronic MEMS pressure sensor, power charging system, and bluetooth communication system to wirelessly measure variation of capacitance. The packaging was acquired by Quartz direct bonding and $CO_2$ laser welding, with a size of width $ 6cm{\times}length\;10cm{\times}lheight\;3cm$. Hermetic sealing of the packaged system was tested by changing the pressure in a hermetic chamber using a precision pressure controller, from atmospheric to 900 mmHg. We found that the packaged system retained the same count or capacitance values with sensor 1 - 25,500, sensor 2 - 26,000, and sensor 3 - 20,800, at atmospheric as well as 900 mmHg pressure for 5 hours. This result shows that the packaging method has perfect hermetic sealing in any environment of the human body pressure.

Push-out resistance of concrete-filled spiral-welded mild-steel and stainless-steel tubes

  • Loke, Chi K.;Gunawardena, Yasoja K.R.;Aslani, Farhad;Uy, Brian
    • Steel and Composite Structures
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    • 제33권6호
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    • pp.823-836
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    • 2019
  • Spiral welded tubes (SWTs) are fabricated by helically bending a steel plate and welding the resulting abutting edges. The cost-effectiveness of concrete-filled steel tube (CFST) columns can be enhanced by utilising such SWTs rather than the more conventional longitudinal seam welded tubes. Even though the steel-concrete interface bond strength of such concrete-filled spiral-welded steel tubes (CF-SWSTs) is an important consideration in relation to ensuring composite behaviour of such elements, especially at connections, it has not been investigated in detail to date. CF-SWSTs warrant separate consideration of their bond behaviour to CFSTs of other tube types due to the distinct weld seam geometry and fabrication induced surface imperfection patterns of SWTs. To address this research gap, axial push-out tests on forty CF-SWSTs were carried out where the effects of tube material, outside diameter (D), outside diameter to wall thickness (D/t), length of the steel-concrete interface (L) and concrete strength grade (f'c) were investigated. D, D/t and L/D values in the range 102-305 mm, 51-152.5 and 1.8-5.9 were considered while two nominal concrete grades, 20 MPa and 50 MPa, were used for the tests. The test results showed that the push-out bond strengths of CF-SWSTs of both mild-steel and stainless-steel were either similar to or greater than those of comparable CFSTs of other tube types. The bond strengths obtained experimentally for the tested CF-SWSTs, irrespective of the tube material type, were found to be well predicted by the guidelines contained in AISC-360.

LNG CCS적용을 위한 고망간강의 극저온 피로성능 평가 (Fatigue Strength Assessment of High Manganese Steel for LNG CCS)

  • 이진성;김경수;김유일;유창혁;박주일;강봉호
    • 대한조선학회논문집
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    • 제51권3호
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    • pp.246-253
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    • 2014
  • Liquid natural gas is stored and transported inside cargo tank which is made of specially designed cryogenic materials such as 9% Ni steel, Al5083-O alloy and SUS304 and so on. The materials have to keep excellent ductile characteristics under the cryogenic environment, down to -163oC, in order to avoid the catastrophic sudden brittle fracture during the operation condition. High manganese steel is considered to be the promising alternative material that can replace the commonly used materials mentioned above owing to its cost effectiveness. In line with this industrial need, the mechanical properties of the high manganese steel under both room and cryogenic environment were investigated in this study focused on its tensile and fatigue behavior. In terms of the tensile strength, the ultimate tensile strength of the base material of the high manganese steel was comparable to the existing cryogenic materials, but it turned out to be undermatched one when welding is involved in. The fatigue strength of the high manganese steel under room temperature was as good as other cryogenic materials, but under cryogenic environment, slightly less than others though better than Al 5083-O alloy.

$CO_2$가스 배관용접부의 파괴인성평가에 관한 연구 (Study on the Evaluation of Fracture Toughness at Welded Zone for the Pipe Steel by $CO_2$ Gas Welding)

  • 나의균;유효선;오석형
    • 대한기계학회논문집A
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    • 제24권7호
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    • pp.1817-1825
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    • 2000
  • The purpose of this study is to examine the fracture toughness of the welded pipe from the viewpoint of FATT for the S38 and S42 steels used widely as the pipe material. Post weld heat treatment(PW HT) was carried out like following conditions: temperature of 67$0^{\circ}C$, I hour of holding time and cooling in furnace. Fracture toughness was obtained by measuring the crack opening displacement(COD) of the notched specimens over the range of temperature from -14$0^{\circ}C$ to -$25^{\circ}C$. Hardness values at fusion line near around were the highest and the microstructures at welded zone were coarsened. Regardless of the pipe materials, COD and temperature curves of the as-welds were moved toward higher temperature compared with those of the parents. However, COD and temperature curves of the PWHT specimens were positioned at lower temperature compared with those of the as-welds. The more heat input causes to decrease the COD values at the constant temperature. It was verified through the recrystallization treatment that PWHT was attributed to move toward lower temperature region considerably due to the improved plastic deformation at the same applied COD value of 0.3mm and softening effect. In case of the weldment of S38 steel, cleavage fracture was observed at -105$^{\circ}C$ unlike the structural steels, in which brittle fracture mode was generally shown at - 196$^{\circ}C$.

유한요소법을 이용한 필렛용접 이음부의 잔류응력분포 (Residual Stress Distribution on the Fillet Weldment used by Finite Element Method)

  • 김현성;우상익;정경섭
    • 한국강구조학회 논문집
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    • 제12권2호통권45호
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    • pp.197-207
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    • 2000
  • 본 연구는 유한요소법을 이용해서 시간이력 열전도해석과 열탄성해석을 통해 필렛용접 이음부에서의 잔류응력분포를 측정하였다. 필렛용접은 1패스 용접이며, 경계조건으로는 표면유속조건과 온도에 의존하는 재료의 특성치를 고려하여 잔류응력을 평가하였다. 여기서, 용접입열양을 변수로 하였다. 그리고, 열탄성해석에 의해 잔류응력 평가할 때 중요한 문제로 언급되고 있는 cut-off 온도 설정에 대해 조사하였다. 또한, 시험체에서 구멍뚫기 방법에 의해 잔류응력분포를 측정하여 유한요소법에 의한 잔류응력분포와 비교하였다. 그 결과, 용접부에서는 재료의 항복강도 수준에 해당하는 인장잔류응력이 측정되었으며, 유한요소해석에 의한 수치해석 결과는 구멍뚫기 방법에 의한 측정치 및 다른 연구자의 측정치와 비교적 일치하는 것으로 나타났다. 그리고, Cut-off 온도는 재료의 항복강도가 나타나는 온도로 설정하는 것이 효과적임을 알 수 있었다.

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무인기용 레큐퍼레이터 소재의 용접부에 대한 고온 피로수명 예측 (High Temperature Fatigue Life Prediction for Welded Joints of Recuperator Material for UAV)

  • 이상래;김재환;김재훈
    • 한국추진공학회지
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    • 제23권2호
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    • pp.111-117
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    • 2019
  • 본 논문은 경량 및 고효율 레큐퍼레이터를 구성하는 0.1 mm 이하의 두께를 지닌 전열판의 용접부에 대한 실험적 연구이다. 특히 해당 용접부에 대한 수명을 알아내기 위해 고온환경에서 피로특성을 실험을 통하여 알아내기로 하였다. 실험은 레큐퍼레이터의 소재로 주로 선정되는 두가지 재질에 대해 (STS347, AL20-25+nb) 실시하였으며, 시편은 실제 제작에 사용되는 방법과 ASTM에서 권고하는 규격을 준용하여 제작하였다. 그리고 상온과 고온에서 해당 시료의 기계적 특성을 평가하고자, 기계적 물성치를 시험하는 MTS-810 과 고온환경을 부여하기 위한 고온로를 이용하였다. 시험은 각 시편에 대해 상온 및 고온 환경에서 인장시험을 실시하였으며, 나타난 인장강도의 50%, 40%, 30%, 20% 그리고 10% 에 해당하는 하중을 응력비 0.1로 설정하여 피로시험을 시행하였다. 마지막으로 실험을 통해 나타난 피로수명 특성을 레큐퍼레이터의 운전조건에서 발생하는 하중에 따르는 응력과 비교하여 무인기 시스템이 요구하는 운전시간에 대비하여 해당 용접부들의 수명을 평가하였다.

순차적 반응표면법을 이용한 상용 트럭 아마추어 코어 경량화 설계 (Light Weight Design of the Commercial Truck Armature Core using the Sequential Response Surface Method)

  • 이현택;김호경;박상준;정영구;홍석무
    • 소성∙가공
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    • 제32권1호
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    • pp.12-19
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    • 2023
  • The armature core is a part responsible for the skeleton of the steering wheel. Currently, in the case of commercial trucks, the main parts of the parts are manufactured separately and then the product is produced through welding. In the case of this production method, quality and cost problems of the welded parts occur, and an integrated armature core made of magnesium alloy is used in passenger vehicles. However, in the case of commercial trucks, there is no application case and research is insufficient. Therefore, this study aims to develop an all-in-one armature core that simultaneously applies a magnesium alloy material and a die casting method to reduce the weight and improve the quality of the existing steel armature core. The product was modeled based on the shape of a commercial product, and finite element analysis (FEA) was performed through Ls-dyna, a general-purpose analysis program. Through digital image correlation (DIC) and uniaxial tensile test, the accurate physical properties of the material were obtained and applied to the analysis. A total of four types of compression were applied by changing the angle and ground contact area of the product according to the actual reliability test conditions. analysis was carried out. As a result of FEA, it was confirmed that damage occurred in the spoke area, and spoke thickness (tspoke), base thickness (tbase), and rim and spoke connection (R) were designated as design variables, and the total weight and maximum equivalent stress occurring in the armature core We specify an objective function that simultaneously minimizes . A prediction function was derived using the sequential response surface method to identify design variables that minimized the objective function, and it was confirmed that it was improved by 22%.

Zn-Al-Mg 합금의 압출 시 미세조직 변화에 관한 연구 (Study on the Microstructure Evolution during Extrusion of Zn-Al-Mg alloy)

  • 서위걸;;이희남;양동주;박순균;최시훈
    • 소성∙가공
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    • 제32권6호
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    • pp.344-351
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    • 2023
  • The use of Zn-Al-Mg alloy coatings for enhancing the corrosion resistance of steel sheets is gaining prominence over traditional Zn coatings. There is a growing demand for the development of thermal spray wires made from Zn-Al-Mg alloys, as a replacement for the existing wires produced using Al and Zn. This is particularly crucial to secure corrosion resistance and durability in the damaged areas of coated steel sheets caused by deformation and welding. This study focuses on the casting and extrusion processes of Zn-2Al-1Mg alloy for the fabrication of such spray wires and analyzes the changes in microstructure during the extrusion process. The Zn-2Al-1Mg alloy, cast in molds, was subjected to a heat treatment at 250 ℃ for 3 hours prior to extrusion. The extrusion process was carried out by heating both the material and the mold up to 300 ℃. Microstructural analysis was conducted using FE-SEM and EDS to differentiate each phase. The mechanical properties of the cast specimen were evaluated through compression tests at temperatures ranging from 200 to 300 ℃, with strain rates of 0.1 to 5 sec-1. Vickers hardness testing was utilized to assess the inhomogeneity of mechanical properties in the radial direction of the extruded material. Finite Element Analysis (FEA) was employed to understand the inhomogeneity in stress and strain distribution during extrusion, which aids in understanding the impact of heterogeneous deformation on the microstructure during the process.

R/P 마스터 모델을 활용한 정밀주조 부품 및 쾌속금형 제작 공정기술의 개발 (Development of Rapid Tooling using Investment Casting & R/P Master Model)

  • 정해도;김화영
    • 한국주조공학회지
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    • 제20권5호
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    • pp.330-335
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    • 2000
  • Functional metal prototypes are often required in numerous industrial applications. These components are typically needed in the early stage of a project to determine form, fit and function. Recent R/P(Rapid Prototyping) part are made of soft materials such as plastics, wax, paper, these master models cannot be employed durable test in real harsh working environment. Parts by direct metal rapid tooling method, such as laser sintering, by now are hard to get net shape, pores of the green parts of powder casting method must be infiltrated to get proper strength as tool, and new type of 3D direct tooling system combining fabrication welding arc and cutting process is reported. But a system which can build directly 3D parts of high performance functional material as metal park would get long period of system development, massive investment and other serious obstacles, such as patent. In this paper, through the rapid tooling process as silicon rubber molding using R/P master model, and fabricate wax pattern in that silicon rubber mold using vacuum casting method, then we translated the wax patterns to numerous metal tool prototypes by new investment casting process combined conventional investment casting with rapid prototyping & rapid tooling process. With this wax-injection-mold-free investment casting, we developed new investment casting process of fabricating numerous functional metal prototypes from one master model, combined 3-D CAD, R/P and conventional investment casting and tried to expect net shape measuring total dimension shrinkage from R/P pare to metal part.

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