• 제목/요약/키워드: Vickers Hardness

검색결과 677건 처리시간 0.032초

SiC 첨가한 ZrO2의 기계적 특성에 대한 와이블 통계 해석 (Weibull Statistical Analysis on Mechanical Properties in ZrO2 with SiC Additive)

  • 남기우;김선진;김대식
    • 대한기계학회논문집A
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    • 제39권9호
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    • pp.901-907
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    • 2015
  • 비커스 경도 실험은 세라믹스 재료의 경도를 특성화하는데 사용되는 일반적인 실험법이다. 그러나 경도도 하나의 확률변수로 취급하는 것이 일반적이다. 본 연구의 목적은 단상 $ZrO_2$ 와 SiC 첨가한 $ZrO_2/SiC$ 복합 세라믹스의 굽힘강도와 비커스 경도의 통계적 성질을 조사하는 것이다. 본 연구에서는 와이블 통계 해석에 기초하여 그들의 결과를 특성치와 변동을 비교 고찰하였다. 굽힘강도 및 비커스 경도는 모두 와이블 분포에 비교적 잘 적합할 수 있음을 알았다. 또한 단상 $ZrO_2$ 와 SiC 첨가한 $ZrO_2/SiC$ 복합 세라믹스와 그들의 열처리재에 대한 비커스 경도의 확률분포에 대한 척도 및 형상 파라메터 값을 평가하였다.

토기의 경도측정법 연구: 백제시대 배(杯)류를 중심으로 (Study on the Hardness Measurement of Earthenware : Focusing on the Cup of the Baekje)

  • 문은정;강희준;김수경;이한형;홍종욱;황진주
    • 보존과학회지
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    • 제25권4호
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    • pp.431-438
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    • 2009
  • 풍납토성에서 출토된 한성백제시대 토기를 중심으로 다양한 경도측정 방법을 적용하여 토기의 굳기에 따른 적절한 측정방법 및 조건을 연구하였다. 연구를 위한 토기시료는 육안관찰과 모스경도계를 이용하여 굳기의 서열별로 선정하였으며, 표면 경도측정에는 초음파 및 에코팁 경도측정법을 적용하였고, 단면에는 로크웰 표충경도(로크웰 슈퍼피셜)와 마이크로비커스 경도측정법을 적용하였다. 그 결과, 표면 경도에서는 두 방법 모두 정밀한 측정에 많은 어려움이 있었으며 육안 및 모스경도에 따른 분류와 일치하는 경향성을 관찰할 수 없었다. 단면 경도측정 결과에서는, 로크웰 표충경도 측정법의 경우, 연질 토기의 측정에 보다 유리한 것으로 나타났으며, 1/16" 강구 압입자를 사용하여 15kgf의 시험하중으로 측정할 경우 가장 재현성이 좋은 측정값을 얻을 수 있음을 확인하였다. 반면, 마이크로비커스 측정법의 경우, 경질 토기의 측정에 보다 유리한 특성을 보였으며, 시험하중 100gf에서 가장 재현성과 정밀도가 높은 측정값을 얻을 수 있었다. 또한, 로크웰 표충경도법과 마이크로비커스 측정법은 모두 그 측정값이 고고학적 견해에 따른 육안분류와 거의 일치하는 경향성을 나타내었다. 이러한 결과는 향후 토기에 대한 고고학적 견해의 객관성을 뒷받침할 수 있는 매우 유용한 도구로써 기계적 경도측정값이 이용될 수 있음을 보여주는 것으로, 향후 이를 이용한 활발한 연구가 가능해 질 것으로 판단된다.

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알루미나-TZP(3Y) 세라믹스 복합체의 제조 및 기계적 특성 (Fabrication and Characterization of Alumina-TZP(3Y) Composite Ceramics)

  • 윤제정;전명표;남산
    • 한국전기전자재료학회논문지
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    • 제28권3호
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    • pp.170-174
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    • 2015
  • Composite ceramics of alumina-TZP(3Y) have good mechanical and electrical properties. So, They have been used as high strength refractory materials and thick film substrates, etc. In this study, Composite ceramics of alumina-TZP(3Y) were fabricated by uniaxial pressing and sintering at 1,400, 1,500, and $1,600^{\circ}C$, and their microstructures and mechanical properties were investigated. As the TZP(3Y) content in composite ceramics increases from 20 wt.% to 80 wt.%, the fracture toughness increases monotonically, which seems to be related to the higher relative density and/or toughening mechanism by means of stabilized tetragonal zirconia phase at room temperature. In contrast to the fracture toughness, Vickers hardness of the composite ceramics shows maximum value (1,938 Hv) at a 40 wt.% of TZP(3Y). The result of Vickers hardness is likely to be due to more dense sintered microstructure of composite ceramics than pure alumina and reinforcement of composite ceramics with TZP(3Y), considering that Vickers hardness of pure $Al_2O_3$ is greater than that of TZP(3Y). It is also shown that the $ZrO_2$ particles are $l^{\circ}Cated$ between $Al_2O_3$ grains and suppress grain growth each other.

Nanocrystallization of Cu-Based Bulk Glassy Alloys upon Annealing

  • Pengjun, Cao;Dong, Jiling;Haidong, Wu;Peigeng, Fan;Anruo, Zhou
    • Applied Microscopy
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    • 제46권1호
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    • pp.32-36
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    • 2016
  • The Cu-based bulk glassy alloys in Cu-Zr-Ti-Ni systems were prepared by means of copper mold casting. The Cu-based bulk glassy alloys samples were tested by X-ray diffractomer (XRD), differential scanning calorimeter, scanning electron microscopy (SEM), Instron testing machine and Vickers hardness instruments. The result indicated that the prepared Cu-Zr-Ti-Ni alloys were bulk glassy alloys. The temperature interval of supercooled liquid region (${\Delta}T_x$) was about 45.48 to 70.98 K for the Cu-Zr-Ti-Ni alloy. The Vickers hardness was up to 565 HV for the $Cu_{50}Zr_{25}Ti_{15}Ni_{10}$ bulk glassy alloy. The $Cu_{50}Zr_{25}Ti_{15}Ni_{10}$ bulk glassy alloys were annealed in order to obtain nanocrystals. The results showed that the Vickers hardness was raise up to 630 HV from 565 HV. As shown in XRD results, the amorphous alloys changed to nanocrystals, which were $Cu_8Zr_3$, $Cu_3Ti_2$ and CuZr, improved the hardness. The SEM analysis showed that the compression fractured morphology of amorphous alloys was brittle fracture, and the fracture morphology after annealing was ductile fracture. This proved that annealing of amorphous to nanocrystals can improve the plasticity and toughness of amorphous alloys.

14K 화이트-레드골드의 확산접합 공정에 따른 접합 물성 연구 (Bonding Properties of 14K White-Red Gold Alloy by Diffusion Bonding Process)

  • 송정호;송오성
    • 한국재료학회지
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    • 제27권7호
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    • pp.386-391
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    • 2017
  • Using a customized diffusion bonder, we executed diffusion bonding for ring shaped white gold and red gold samples (inner, outer diameter, and thickness were 15.7, 18.7, and 3.0 mm, respectively) at a temperature of $780^{\circ}C$ and applied pressure of 2300 N in a vacuum of $5{\times}10^{-2}$ torr for 180 seconds. Optical microscopy, field emission scanning electron microscopy (FE-SEM), and energy-dispersive X-ray spectroscopy (EDS) were used to investigate the microstructure and compositional changes. The mechanical properties were confirmed by Vickers hardness and shear strength tests. Optical microscopy and FE-SEM confirmed the uniform bonding interface, which was without defects such as micro pores. EDS mapping analysis confirmed that each gold alloy was 14K with the intended composition; Ni and Cu was included as coloring metals in the white and red gold alloys, respectively. The effective diffusion coefficient was estimated based on EDS line scanning. Individual values of Ni and Cu were $5.0{\times}10^{-8}cm^2/s$ and $8.9{\times}10^{-8}cm^2/s$, respectively. These values were as large as those of the melting points due to the accelerated diffusion in this customized diffusion bonder. Vickers hardness results showed that the hardness values of white gold and red gold were 127.83 and 103.04, respectively, due to solid solution strengthening. In addition, the value at the interface indicated no formation of intermetallic compound around the bonding interface. From the shear strength test, the sample was found not to be destroyed at up to 100,000 gf due to the high bonding strength. Therefore, these results confirm the successful diffusion bonding of 14K white-red golds with a diffusion bonder at a low temperature of $780^{\circ}C$ and a short processing time of 180 seconds.

치관 보철용 CaO-MgO-$SiO_2-P_2O_5-TiO_2$계 글라스 세라믹의 합성과 경도 (Synthesis and Hardness of Glass Ceramics for Dental Crown Prosthetic Application in the system CaO-MgO-SiO2-P2O5-TiO2)

  • 정인성;김갑진;정호근;이종일
    • 대한치과기공학회지
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    • 제21권1호
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    • pp.5-14
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    • 1999
  • Glass ceramics for dental crown prosthesis were prepared by crystallization of CaO-MgO-SiO2-$P_2O_5-TiO_2$ glasses. Their crystallization behaviors have been investigated as a function of heattreatment temperature, holding time and chemical composition in relation to mechinical properties. Crystallization peak temperatures were determined by differential thermal analysis(DTA). Crystalline phases and mircostructures of heat-treated sample were determined by the means of powder X-ray diffraction(XRD) and scanning electron microscopy(SEM). The final crystalline phase assemblages and the microstructures of the samples were found to be dependent on glass compositions, heattreatment temperature, and holding time. 1st crystallization peak temperature(TP), affected strongly by apatite, was found to be increased or decreased. From the experiment, the following results were obtained : 1. The crystallization peak temperature($T_P$) formed by apatite increased until adding up to 9wt% $TiO_2$ to base glass composition, then decreased above that. 2. Apatite($Ca_{10}P_6O_{25}$), whitlockite(${\beta}-3CaO-P_2O_5$), $\beta$-wollastonite($CaSiO_3$), magnesium tianate($MaTiO_3$) and diopside(CaO-MgO-$2SiO_2$) crystal phase were precipitated in MgO-CaO-$SiO_2-TiO_2-P_2O_5$ glass system containing 9wt% and 11wt% of $TiO_2$ 3. Vickers hardness of samples increased with increasing heat-treatment temperature and Vickers hardness of S415T9 samples heat-treated at 1075 was approxi-mately 813Kg $mm^{-2}$ as maximum value. 4. Vickers hardness of samples increased due to precipitation of apatite, whitlockite, $\beta$-wollastonite, magnesium titanate, and diopside crystal phases within glass matrix.

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니오븀의 전자빔 용접성 (Electron beam weldability of Niobium)

  • 안병훈;윤종원;김숙환
    • 한국레이저가공학회지
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    • 제11권2호
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    • pp.15-19
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    • 2008
  • Electron beam (EB) weldability of pure grade Nb sheet was studied. One of Nb sheets was as-annealed and the other was cold rolled. Microstructures, Vickers hardness, and transverse weld tensile test were carried out for the base metal, the heat affected zone (HAZ) and weld metal. In the case of the EB welds made using the annealed Nb sheeet, fine equiaxed grains and coarse grains were dominant at the base metal and the HAZ, respectively, and columnar grains were observed at the weld metal. For the EB welds made using the cold rolled Nb sheet, elongated grains in the rolling direction at the base metal, and the microstructures of the weld metal and the HAZ are similar to those of the EB welds made using the annealed Nb sheet, respectively. For both annealed and cold rolled Nb sheet, the width of the HAZs are unusually wide in spite of using high density heat source, i.e. electron beam, and the grain sizes of both HAZs are similar. When tensile test was carried out using the transverse weld specimens, the failure occurred at the HAZ for both EB welds made using Nb sheets annealed and cold rolled, respectively and the tensile strengths of both specimens were 161MPa. Vickers hardness of EB welds made using annealed Nb was 56-57 Hv at both base metal and weld metal, 52-53 Hv at the HAZ. On the other hand, Vickers hardness of EB welds made using cold rolled Nb was 97-99 Hv at the base metal, but the hardness values of weld metal were similar to those obtained at the weld metal of annealed Nb.

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Properties of the Green Gold Alloys with Indium Content

  • Song, Jeongho;Song, Ohsung
    • 한국재료학회지
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    • 제28권4호
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    • pp.221-226
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    • 2018
  • The property changes of 18, 14, and 8K green gold alloys for jewelry are observed by adding 0.0, 3.0, and 5.0 wt% of indium (In), respectively. To check the composition of the alloys, an energy dispersive spectroscopy (EDS) analysis is conducted. Color and microstructure analysis is executed through bare-eye, macro camera, UV-VIS-NIR-colormeter, and optical microscope. The melting point, wetting angle, and hardness are measured using TGA-DTA, a wetting angle tester, and a Vickers hardness tester. The EDS analysis result demonstrates that each of the green gold alloys was manufactured with purposed contents. The color analysis result shows that the color of the alloys is similar to the color of the conventional 4 wt%-Cd 18K green gold, and the green color improves as the In content increases. The micro structure analysis result demonstrates that grain refinement improves as the amount of In increases. Enhancements in the melting point, wettability, and Vickers hardness changes appear as the In content increases and Au content decreases. The hardness is up to 260, which implies good durability. Therefore, the results suggest that the proposed 18, 14, and 8K In-added green gold alloys enhance the properties of jewelry products with regard to the green color, castability, and durability.

치과주조용 Ti-X%Cu(X=2,5,10)합금의 미세조직 및 경도 (Microstructure and Hardness of Ti-X%Cu(X=2,5,10) Alloys for Dental Castings)

  • 정종현
    • 대한치과기공학회지
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    • 제31권3호
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    • pp.9-14
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    • 2009
  • This study evaluated the mechanical properties of Ti-Cu alloys with the hope of developing an alloy for dental casting with better mechanical properties than unalloyed titanium. Ti-Cu alloys with four concentrations of Cu(2,5,10wt%) were made in an argon-arc melting furnace. The microstructure and micro-Vickers hardness were determined. X-ray diffraction pattern test was performed on the polished specimens. The microstructure of 2%Cu and 5%Cu alloys are shown acicular ${\alpha}Ti$ phase formed on the surfaces of previously formed $\beta$grains. The 10%Cu alloys has essentially a eutectoid structure; this structure includes lamella of ${\alpha}Ti$ and $Ti_2Cu$ phase that transformed from ${\alpha}Ti$ at the eutectoid temperature. The micro-Vickers hardness of CP Ti specimens was significantly(p<0.05) lower than that of any of the other alloys. Among the Ti-Cu alloys, the 10%Cu alloys exhibited a significantly(p<0.05) higher hardness value. but lower than that of Ti-6%Al-4%V alloy. From these results, it was concluded that new alloys for dental castings should be designed as Ti-Cu based alloys if other properties necessary for dental castings were obtained.

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