• Title/Summary/Keyword: microstructure, SEM-EDS

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Corrosion Mechanisms of New Wrought Mg-Zn Based Alloys Alloying with Si, Ca and Ag

  • Ben-Hamu, G.;Eliezer, D.;Shin, K.S.;Wagner, L.
    • Corrosion Science and Technology
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    • v.7 no.3
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    • pp.152-157
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    • 2008
  • New wrought magnesium alloys have increasingly been developed in recent years for the automotive industry due to their high potential as structural materials for low density and high strength/weight ratio demands. However, their poor mechanical properties and low corrosion resistance have led to a search for new kinds of magnesium alloys with better strength, ductility, and high corrosion resistance. The main objective of this research is to investigate the corrosion behaviour of new magnesium alloys: Mg-Zn-Ag (ZQ), Mg-Zn-Mn-Si (ZSM) and Mg-Zn-Mn-Si-Ca (ZSMX). These ZQ6X, ZSM6X1, and ZSM651+YCa alloys were prepared using hot extrusion. AC, DC polarization and immersion tests were carried out on the extruded rods. Microstructure was examined using optical and electron microscopy (SEM) and EDS. The addition of silver decreased the corrosion resistance. The additions of silicon and calcium also affected the corrosion behaviour. These results can be explained by the effects of alloying elements on the microstructure of Mg-Zn alloys such as grain size and precipitates caused by the change in precipitation and recrystallisation behaviour.

Evaluation of Electroless Ni plating layer characteristic with various reducing agent, plating time and temperature (도금 조건에 따른 무전해 Ni 도금막의 특성 평가)

  • Lee, Sun-Jae;Lee, Jeong-Hyeon;Jeong, Do-Hyeon;Jeon, Ju-Seon;Jeong, Jae-Pil
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2016.11a
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    • pp.174.2-174.2
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    • 2016
  • 도금은 크게 전해 도금과 무전해 도금으로 나눌 수 있다. 전기적 에너지를 사용하여 이온 상태의 금속을 환원시켜 석출함으로써 도금을 진행하는 전해 도금과는 달리 무전해 도금은 도금액 내의 환원제에 의해 금속 이온을 환원시켜 도금을 진행한다. 무전해 도금법은 전해 도금에 비해 전류 인가 장비가 필요하지 않아 도금 공정이 간단하고, 피도금체에 따른 인가 전류, 전압, 금속의 환원 전위 등을 계산하지 않아도 되기 때문에 전문적인 지식이 없어도 도금을 할 수 있다. 하지만 무전해 도금은 도금이 진행 될수록 도금액 내 금속 이온, 환원제의 농도 등이 수시로 변화하기 때문에 도금액의 조성을 파악하여 원하는 두께의 도금층을 형성하는 방법에 대한 연구가 필요하다. 본 연구에서는 무전해 도금액 내 환원제, 도금액 온도, 도금 시간을 변경하여 Ni 무전해 도금을 형성 하였고 그 특성을 평가하였다. 도금은 각각 플라스틱, RF module 유리 등 다양한 기판에 진행 하였으며, 도금 후 밀착성, 도금 두께 및 microstructure를 분석하였다. 도금 후 밀착성을 분석하기 위해 열처리 후 박리정도를 테스트를 하였고, 도금 두께 및 microstructure를 분석하기 위해 field emission scanning electron microscope (FE-SEM), energy-dispersive spectroscopy (EDS)를 사용하였다. 실험 결과, 두께 $3{\sim}5{\mu}m$ 급의 균일한 도금층이 형성된 것을 확인하였으며, $260^{\circ}C$에서 3회 열처리 후 박리성 평가 결과, 결함 없는 양호한 표면을 나타내었다.

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Influence of Pd Contents and Substrate Temperature on the Magnetic Property in Co1-xPdx Films (Co1-xPdx 합금의 Pd함량과 스퍼터 기판온도에 따른 자기적 특성 변화)

  • 이기영;송오성
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.16 no.8
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    • pp.744-751
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    • 2003
  • Co-Pd alloy thin films prepared by a DC-sputter that have self-organized nano structure(SONS), are promising for high-density information storage media in information era. We prepared the samples by varying Pd contents of 0~8.1 wt% at the substrate temperatures of room temperature (RT) and 200 $^{\circ}C$, respectively Microstructure and Pd contents of the Co$_{1-x}$ Pd$_{x}$ films are probed by a scanning electron microscope (SEM), a transmission electron microscope (TEM) and an energy dispersive spectrometer (EDS). We also investigated the saturation magnetization (Ms), remanence and coercivity of the Co$_{1-x}$ Pd$_{x}$ films. Surface roughness are measured by an atomic force microscope (AFM). We revealed that self-organized nano size Co-enriched phase and Pd-enriched phase existed with Pd contents at the substrate temperatures of RT and 20$0^{\circ}C$ through microstructure characterization. SONS helped to keep the saturation magnetization and enhance the perpendicular anisotropy with Pd contents. Out result implies that we may tune the perpendicular magnetic properties with keeping the saturation magnetization by varying substrate temperatures and Pd contents for high density magnetic recording.rding.

The Characterization of Nano-Nickel Catalyst with High Activity by Mechanochemical (MC) Method I. Microstructure of MA Ni-50wt% Al and Preparation of Nano-Ni (기계.화학적 방법으로 제조된 고활성 나노-니켈 촉매의 특성 I. MA된 Ni-50wt% Al 합금의 미세구조 및 나노 촉매 제조)

  • Lee, Chang-Rae;Choe, Jae-Ung;Gang, Seong-Gun
    • Korean Journal of Materials Research
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    • v.9 no.6
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    • pp.615-621
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    • 1999
  • The new process in order to fabricate of Ni catalyst with high activity by the mechanochemical(MC) method which was combined the mechanical alloying(MA) and the chemical treatment process. The microstructure and characterization of mechanically alloyed Ni-5-wt% Al powder and Ni catalyst gained by alkali leaching were investigated byt he various analysis such as XRD, SEM-EDS, HRTEM and laser particle analyzer. The steady state powder with 1~2$\mu\textrm{m}$ mean particle size was obtained after 30hr milling with the PCA of 2 wt% stearic acid under the condition of grinding stainless steel ball to powder ratio of 60:1 and rotating speed fo 300rpm. According to result of HRTEM diffraction pattern, MA powder of the steady state was nanocrystalline $Al_3$$Ni_2$ intermetallic compound. Ni catalyst was obtained after KOH leaching of the steady state powder was about 20nm nanocrystalline which contained about 8 wt % Al.

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Thermal stability and microstructure of CrZr-Al-N films synthesized by unbalanced magnetron sputtering with Cr-Zr-Al segment target (Cr-Zr-Al segment 타겟을 장착한 Unbalanced magnetron sputtering 활용하여 증착한 CrZr-Al-N 박막의 thermal stability와 microstructure에 관한 연구)

  • Kim, Dong-Jun;Ra, Jeong-Hyeon;Lee, Sang-Yul
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2012.05a
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    • pp.173-173
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    • 2012
  • 본 연구는 segment target을 장착한 unbalanced magnetron sputtering을 활용하여 CrZr-Al-N 박막을 합성하고 박막의 고온안정성과 미세구조를 연구하는데 그 목적이 있다. 박막의 Al 함량을 조절하기 위하여 각 segment target은 Cr,Zr을 일정vol% 유지하며 Al vol%만 변화하여 설계하였다. 박막의 고온안정성을 실험하기 위해 각 시편은 $100{\sim}500^{\circ}C$ 사이의 온도에서 1시간씩 annealing 처리를 실시한 후에 경도를 측정하였다. 박막의 미세구조 단면을 위해 FE-SEM을 이용하였으며 이밖에 박막의 조성, 경도 및 결정구조를 측정하기 위해 EDS, microhardness testing system, XRD를 사용하였다. Al 부피비를 변화시킨 Segment target을 활용한 박막합성에서 박막의 Al함량은 각각 1/11에서 4.6at.%, 1/5에서 8.1at.%, 1/3에서 12.9at.% 로 나타났으며, 박막의 경도는 4.6~12.9at.% 사이의 Al 함량을 갖는 박막에 대해 모두 유사한 값을 가졌으며 31GPa로 측정되었다. 박막의 단면 구조 역시 4.6~12.9at.% 사이의 Al 함량을 갖는 박막에 대해 모두 columnar 구조가 관찰되었다.

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Effects of Cu Addition on Microstructural and Mechanical Properties of Mo-Cu-N Coatings (Cu 첨가가 Mo-Cu-N 코팅의 미세구조와 기계적 특성에 미치는 영향)

  • Kim, Soobyn;Yoon, Hae-Won;Lee, Han-Chan;Moon, KyoungIl;Hong, Hyun Seon
    • Journal of the Korean institute of surface engineering
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    • v.52 no.4
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    • pp.227-232
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    • 2019
  • Mo-N based coatings have been studied for enhancing mechanical characteristics of thin films. In the case of Mo-X-N coatings, the microstructure and mechanical properties can be affected by the addition of the third element. In this work, Mo-Cu-N coatings were successfully fabricated with varying the Cu content from 4.5 at% to 31 at% by the co-sputtering method. Thus, properties of the coatings were analyzed by EDS, SEM, XRD, AFM, nano indentation and scratch test techniques. From observed results, MoxN bonds were made in a nitrogen atmosphere and Cu elements were present at grain boundaries. In addition, coatings with the Cu content above 14 at% had a Cu3N peak in the XRD results. Thus, it is suggested that the formation of Cu3N phase affected the microstructure and mechanical properties of Mo-Cu-N coatings. Mechanical properties of Mo-Cu-N coatings were found to be relatively better at Cu content of about 12 at%.

Characterization of Extrusion Parts for after Pre-aging Treatment in an Al-4.8Zn-1.3Mg Alloy (안정화 열처리에 의한 Al-4.8Zn-1.3Mg계 합금 압출재 특성 평가)

  • Lee, Chang-Yeon
    • Journal of the Korean Society of Mechanical Technology
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    • v.20 no.6
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    • pp.818-823
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    • 2018
  • In this study, the effect of pre-aging treatment for inhibition of natural aging of Al-4.8Zn-1.3Mg alloy by extrusion process was investigated. Firstly, the as-cast microstructure of Al-4.8Zn-1.3Mg alloy billet and its evolution during homogenization($460^{\circ}C$, $4h+510^{\circ}C$, 5h) were investigated by means of optical microscopy (OM), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), hardness analysis. The as-cast microstructures of Al-4.8Zn-1.3Mg alloy reveal $Mg_2Zn$, $Al_5Cu$, $Al_{13}Cu$ formed between dendrities. After homogenization, MgZn, $Al_4Cu$, $Al_{13}Cu$ phases precipitated into the matrix. In addition, standard deviation of homogenized billet was improved than as-cast billet from 2.62 to 0.99. According to pre-aging($100^{\circ}C$, 1h) Al-4.8Zn-1.3Mg alloy by extrusion process, yield strength and tensile strength deviation improved more than condition by natural aging.

Solid Particle Erosion Properties of Hot-Dip Aluminized Economizer Steel Tube (용융 알루미늄 도금된 절탄기 강재 튜브의 고상입자 침식 특성)

  • Park, Il-Cho;Han, Min-Su
    • Corrosion Science and Technology
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    • v.20 no.6
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    • pp.384-390
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    • 2021
  • In this paper, durability evaluation and surface damage mechanism were investigated through solid particle erosion (SPE) test after applying hot-dip aluminizing (HDA) technology for the purpose of maintenance of marine economizer tube. Damaged surface shape was analyzed using SEM and 3D microscope. Compositional changes and microstructure of the HDA layer were analyzed through EDS and XRD. Durability was evaluated by analyzing weight loss and surface damage depth after SPE. HDA was confirmed to have a two-layer structure of Al and Al5Fe2. HDA+HT was made into a single alloy layer of Al5Fe2 by diffusion treatment. In the microstructure of HDA+HT, void and crack defect were induced during the crystal phase transformation process. The SPE damage mechanism depends on material properties. Plastic deformation occurred in the substrate and HDA due to ductility, whereas weight loss due to brittleness occurred significantly in HDA+HT. As a result, the substrate and HDA showed better SPE resistance than HDA+HT.

Durability properties of fly ash-based geopolymer mortars with different quarry waste fillers

  • Tammam, Yosra;Uysal, Mucteba;Canpolat, Orhan
    • Computers and Concrete
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    • v.29 no.5
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    • pp.335-346
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    • 2022
  • Geopolymers are an important alternative material supporting recycling, sustainability, and waste management. Durability properties are among the most critical parameters to be investigated; in this study, the durability of manufactured geopolymer samples under the attack of 10% magnesium sulfate and 10% sodium sulfate solution was investigated. 180 cycles of freezing and thawing were also tested. The experimentally obtained results investigate the durability of geopolymer mortar prepared with fly ash (class F) and alkali activator. Three different quarry dust wastes replaced the river sand aggregate: limestone, marble, and basalt powder as fine filler aggregate in three different replacement ratios of 25%, 50%, and 75% to produce ten series of geopolymer composites. The geopolymer samples' visual appearance, weight changes, UPV, and strength properties were studied for up to 12 months at different time intervals of exposure to sulfate solutions to investigate sulfate resistance. In addition, Scanning Electron Microscopy (SEM), EDS, and XRD were used to study the microstructure of the samples. It was beneficial to include quarry waste as a filler aggregate in durability and mechanical properties. The compact matrix was demonstrated by microstructural analysis of the manufactured specimens. The geopolymer mortars immersed in sodium sulfate showed less strength reduction and deterioration than magnesium sulfate, indicating that magnesium sulfate is more aggressive than sodium sulfate. Therefore, it is concluded that using waste dust interrogation with partial replacement of river sand with fly ash-based geopolymers has satisfactory results in terms of durability properties of freeze-thaw and sulfate resistance.

Current Status of $SiC_{f}/SiC$ Composites Material in Fusion Reactor

  • Yoon, Han-Ki;Lee, Sang-Pill
    • Proceedings of the KSME Conference
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    • 2007.05a
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    • pp.166-171
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    • 2007
  • The characterization of monolithic SiC and SiCf/SiC composite materials fabricated by NITE and RS processes was investigated in conjunction with the detailed analysis of their microstructure and density. The NITE-SiC based materials were fabricated, using a SiC powder with average size of 30 nm. RS- SiCf/SiC composites were fabricated with a complex slurry of C and SiC powder. In the RS process, the average size of starting SiC particle and the blending ratio of C/SiC powder were $0.4\;{\mu}m$ and 0.4, respectively. The reinforcing materials for /SiC composites were BN-SiC coated Hi-Nicalon SiC fiber, unidirectional or plain woven Tyranno SA SiC fiber. The characterization of all materials was examined by the means of SEM, EDS and three point bending test. The density of NITE-SiCf/SiC composite increased with increasing the pressure holding time. RS-SiCf/SiC composites represented a great decrease of flexural strength at the temperature of $1000\;^{\circ}C.$

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