• 제목/요약/키워드: Compressive Residual Stress

검색결과 517건 처리시간 0.028초

고압고온 처리된 보석용 다이아몬드의 마이크로라만 분석에 의한 감별 연구 (Identification of High Pressure-High Temperature Treated Gem Diamonds using a Micro-Raman Spectroscopy)

  • 손오성;김종률
    • 한국산학기술학회논문지
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    • 제7권5호
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    • pp.817-822
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    • 2006
  • 다이아몬드는 산업적으로도 보석으로서도 경제적으로 매우 유용한 소재이다. 최근의 소형 고압고온 처리기의 발달로 저급한 갈색의 보석용 천연다이아몬드를 쉽게 고부가가치의 보석인 무색 또는 팬시칼라의 다이아몬드로 향상시키는 처리기술이 가능하게 되었다. 이러한 처리 다이아몬드는 천연의 무색, 팬시칼라 다이아몬드와 물성이 동일하여 기존의 보석감정 방안으로는 구별이 어려워서, 처리 다이아몬드를 경제적이고, 신속하고, 비파괴적으로 천연다이아몬드로부터 감별해 낼 필요성이 생겼다 기존의 광학적인 확대분석으로는 천연석과 처리석의 감별이 불가능하였다. 마이크로 라만 분석기를 이용하여 다이아몬드의 고유피크가 고압고온 처리시의 잔류응력에 의해 이동되는 현상으로 처리석의 감별 가능성을 확인하였다. Type I 다이아몬드는 처리에 의해 $10^4$ 정도의 압축스트레인이, Type II는 인장 잔류 스트레인이 존재하였다. 따라서 적절한 처리전의 기준시료가 있다면 이러한 잔류응력을 확인하는 것이 가능하였다.

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이온질화에 있어서 가스중 첨가탄소량에 대한 마모현상 분석 (The Analysis of Wear Phenomena on Added Carbon Content Gas Atmosphere in Ion-Nitriding)

  • 조규식
    • Tribology and Lubricants
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    • 제13권2호
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    • pp.96-104
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    • 1997
  • This paper was focused on the wear characteristics of ion-nitrided metal and with ion-nitride processing, which is basically concerned with the effects of carbon content in workpiece and added carbon content gas atmosphere on the best wear performance. Increased carbon content in workpiece increases compound layer thickness, but decreases diffusion layer thickness. On the other hand, a small optimal amount of carbon content in gas atmosphere increase compound layer thickness as well as diffusion layer thickness and hardness. Wear tests show that the compound layer of ion-nitrided metal reduces wear rate when the applied wear load is small. However, as the load becomes large, the existence of compound layer tends to increase wear rate. Compressive residual stress at the compound layer is the largest at the compound layer, and decreases as the depth from the surface increases. It is found in the analysis that under small applied load, the critical depth where voids and cracks may be created and propagated is located at the compound layer, so that the adhesive wear is created and the existence of compound layer reduces the amount of wear. When the load becomes large, the critical depth is located below the compound layer and delamination, which may explained by surface deformation, crack nucleation and propagation, is created and the existence of compound layer increases wear rate. For the compound layer, at added carbon contents of 0 percent and 0.5 at. percent, the $\varepsilon$ monophase is predominant. But at 0.7 at. percent added carbon, the $\varepsilon$ monophase formation tends to be severely inhibited and r' and $Fe_3C$ polyphase formation becomes dominant. This increased hard $\varepsilon$ phase layer was observed to be more beneficial in reducing friction and wear.

초음파나노표면개질 기술을 적용한 초경의 기계적특성 및 마모 연구 (Improvement in Mechanical and Wear Properties of WC-Co by Ultrasonic Nanocrystal Surface Modification Technique)

  • 이승철;김준형;최갑수;장영도;아마노프아웨즈한;편영식
    • Tribology and Lubricants
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    • 제31권2호
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    • pp.56-61
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    • 2015
  • In this study, we investigated the effectiveness of an ultrasonic nanocrystal surface modification (UNSM) technique on the mechanical and wear properties of tungsten carbide (WC). The UNSM technique is a newly developed surface modification technique that increases the mechanical properties of materials by severe plastic deformation. The objective of this study was to improve the wear resistance of press die made of WC by applying the UNSM technique. We observed the microstructures of the untreated and UNSM-treated specimens using a scanning electron microscope (SEM), and energy-dispersive X-ray spectroscopy (EDX) was used to investigate the chemical composition. The SEM observations showed the pore size and the number of pores decreased after the UNSM treatment. We assessed the wear behavior of both the untreated and UNSM-treated specimens using a scratch test. The test results showed that the wear resistance of the UNSM-treated specimens increased by about 46% compared with the untreated specimens. This may be attributed to increased hardness, reduced surface roughness, induced compressive residual stress, and refined grain size following the application of the UNSM technique. In addition, we found that the UNSM treatment increased the carbon concentration to 63% from 33%. We expect that implementing the findings of this study will lead to an increase in the life of press dies.

Fabrication and Characterization of InGaN/GaN LED structures grown on selectively wet-etched porous GaN template layer

  • Beck, Seol;Cho, Yong-Hoon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.124-124
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    • 2010
  • Much interest has been focused on InGaN-based materials and their quantum structures due to their optoelectronics applications such as light emitting diode (LED) and photovoltaic devices, because of its high thermal conductivity, high optical efficiency, and direct wide band gap, in spite of their high density of threading dislocations. Build-in internal field-induced quantum-confined Stark effect in InGaN/GaN quantum well LED structures results in a spatial separation of electrons and holes, which leads to a reduction of radiative recombination rate. Therefore, many growth techniques have been developed by utilizing lateral over-growth mode or by inserting additional layers such as patterned layer and superlattices for reducing threading dislocations and internal fields. In this work, we investigated various characteristics of InGaN multiple quantum wells (MQWs) LED structures grown on selectively wet-etched porous (SWEP) GaN template layer and compared with those grown on non-porous GaN template layer over c-plane sapphire substrates. From the surface morphology measured by atomic force microscope, high resolution X-ray diffraction analysis, low temperature photoluminescence (PL) and PL excitation measurements, good structural and optical properties were observed on both LED structures. However, InGaN MQWs LED structures grown on SWEP GaN template layer show relatively low In composition, thin well width, and blue shift of PL spectra on MQW emission. These results were explained by rough surface of template layer, reduction of residual compressive stress, and less piezoelectric field on MQWs by utilizing SWEP GaN template layer. Better electrical properties were also observed for InGaN MQWs on SWEP GaN template layer, specially at reverse operating condition for I-V measurements.

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PVA섬유 보강 CSG 재료의 강도특성 (The Strength Characteristics of PVA Fiber Reinforced CSG Materials)

  • 김광일;김기영;권혁춘;김규원
    • 한국지반공학회논문집
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    • 제29권12호
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    • pp.95-104
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    • 2013
  • 최근 시멘트혼합토(CSG)가 많은 설계 시공에 적용되어지고 있다. CSG재료는 경화 초기엔 흙과 같은 역학적 특성을 보이지만 시간이 경과함에 따라 점차 콘크리트 재료적 특성을 발현하게 된다. 경화된 시멘트혼합토는 작은 변형률에서 최대강도가 발현되고 이 후 급격한 취성파괴에 도달하는 탄성적인 성질을 띠게 된다. 본 연구에서는 이러한 CSG재료의 취성거동특성을 완화하고 상대적으로 취약한 인장성능을 개선하고자 PVA 섬유보강재를 적용하였다. 섬유보강 CSG재료는 재하시 하상시료와 섬유사이의 결합력으로 섬유에 인장력이 발생하여 혼합시료의 인장강도 증가와 급작스런 취성파괴발생을 방지할 수 있다. 실험결과 섬유보강만으로도 CSG재료의 응력-변형특성을 취성파괴에서 연성파괴로 유도할 수 있으며, 섬유보강에 의한 잔류강도 증가효과를 확인 할 수 있었다.

Effects of annealing temperature on structural and optical properties of CdS Films prepared by RF magnetron sputtering

  • 황동현;안정훈;손영국
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.233-233
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    • 2010
  • CdS thin films were deposited on glass substrates by R.F. magnetron sputtering method and some of the samples were treated by rapid thermal annealing (RTA) process. Effects of thermal annealing on structural and optical properties were investigated at different temperatures ranging from 100 to $600^{\circ}C$. The crystallographic structure of the films and the size of the crystallites in the films were studied by X-ray diffraction. The crystallite sizes were found to increase, and the X-ray diffraction patterns were seen to sharpen by annealing. Optical properties of the films were calculated using the envelope method and the photoluminescence measurements. The optical properties of the films were seen to be dependent on the film thicknesses. The energy gap of the films was found to decrease by annealing. The band edge sharpness of the optical absorption was seen to oscillate by thermal annealing. Annealing over $400^{\circ}C$ was seen to degrade the optical properties of the film. The best annealing temperature for the films was found to be $400^{\circ}C$ from the optical properties. It is observed that the CdS film annealed at $400^{\circ}C$ reveals the strongest UV emission intensity and narrowest full width at half maximum among the temperature ranges studied. The enhanced UV emission from the film annealed at $400^{\circ}C$ is attributed to the improved crystalline quality of CdS thin film due to the effective relaxation of residual compressive stress and achieving maximum grain size. The results show that heat treatments under optimal annealing condition can provide significant improvements in the properties of CdS thin films.

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SM45C재의 UNSM 처리에 의한 트라이볼러지 특성 변화 (Variations in Tribology Factors of SM45C by UNSM Modification)

  • 심현보;서창민;서민수;아마노브;편영식
    • 한국해양공학회지
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    • 제32권6호
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    • pp.492-501
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    • 2018
  • The following results were obtained from a series of studies to accumulate data to reduce the coefficient of friction for press dies by performing tribological tests before and after the UNSM treatment of SM45C. The UNSM-treated material had a nano-size surface texture, high surface hardness, and large and deep compressive residual stress formation. Even when the load was doubled, the small amount of abrasion, small weight of the abrasion, and width and depth of the abrasion did not increase as much as those for untreated materials. When loads of 5 N, 7.5 N, and 10 N were applied to the untreated material of SM45C, the coefficient of friction was approximately 0.76-0.78. With the large specimen, a value of 0.72-0.78 was maintained at a load of 50 N despite the differences in the size of the wear specimen and working load. Tribological tests of large specimens of SM45C treated with UNSM under tribological conditions of 100 N and 50 N showed that the frictional coefficient and time constant stably converged between 0.7 and 0.8. The friction coefficients of the small specimens treated with UNSM showed values between 0.78 and 0.75 under 5 N, 7.5 N, and 10 N. The friction coefficients of the SM45C treated with UNSM were comparable to each other.

SM45C재의 PVD코팅과 필름에 의한 트라이볼러지 특성 (Variations in Tribological Characteristics of SM45C by PVD Coating and Thin Films)

  • 심현보;서창민;김종형;서민수
    • 한국해양공학회지
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    • 제32권6호
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    • pp.502-510
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    • 2018
  • In order to accumulate data to lower the friction coefficient of a press mold, tribological tests were performed before and after coating SM45C with a PVC/PO film and plasma coating (CrN, concept). The ultrasonic nanocrystal surface modification (UNSM)-treated material had a nano-size surface texture, high surface hardness, and large and deep compressive residual stress formation. Even when the load was doubled, the small amount of abrasion, small weight of the abrasion, and width and depth of the abrasion did not increase as much as those of untreated materials. A comparison of the weight change before and after the tribological test with the CrN and the concept coating material and that of the untreated material showed that the wear loss of the concept coating material and P-UNSM treated material (that is, the UNSM treated material treated with the concept coating) showed a tendency to decrease by approximately 55-75%. Concept 100N had a lower friction coefficient of about 0.6, and P-UNSM-30-100N showed almost the same curve as concept 100N and had a low coefficient of friction of about 0.6. The concept multilayer coating had a thickness of $5.32{\mu}m$. In the beginning, the coefficient of friction decreased because of the plasma coating, but it started to increase from about 250-300 s. After about 350 s, the coefficient of friction tended to approach the friction coefficient of the SM45C base metal. The SGV-280F film-attached test specimen was slightly pushed back and forth, but the SM45C base material was not exposed due to abrasion. The friction coefficient was 0.22, which was the lowest, and the tribological property was the best in this study.

콘크리트 궤도용 탄성레일체결장치 손상취약부 분석 (Evaluation on Damage Weak Part of Rail Fastening System for Concrete Tracks)

  • 최정열;김상진;정지승
    • 문화기술의 융합
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    • 제8권3호
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    • pp.265-270
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    • 2022
  • 본 연구는 콘크리트 궤도용 탄성레일체결장치(System 300-1)의 손상취약부에 관한 실험 및 해석적 연구이다. 콘크리트 궤도에서 탄성레일체결장치는 열차주행 시 레일과 침목을 결속하는 핵심 궤도구성품이다. 레일체결장치 구성품 중 방진패드와 텐션 클램프(Tension Clamp)는 압축력과 부상력에 대응하며 상시 변형이 발생되는 피로부재이다. 본 연구에서는 동일구간의 운행선에서 6년, 11년, 16년 동안 사용된 탄성레일체결장치를 채취하여 사용년수에 따른 텐션 클램프의 잔류변형 특성을 분석하였다. 또한 수치해석을 바탕으로 주요 구성품별 거동메커니즘을 분석하고 손상취약부를 도출하였다. 본 연구에서 수행한 수치해석을 통해 체결력 도입부터 외력 작용에 따른 텐션 클램프 각부의 응력(변형율)을 분석하여 텐션 클램프의 손상취약부를 도출하였다.

커먼레일 시스템 연료분사관의 피로수명 개선에 관한 연구 (Study of Improvement in Fatigue Life of Fuel Injection Pipe of Common Rail System)

  • 송세암;배준호;정성윤;김철
    • 대한기계학회논문집A
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    • 제37권8호
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    • pp.991-998
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    • 2013
  • 클린디젤 차량용 커먼레일 시스템의 연료분사관은 연료레일로부터 각각의 엔진 실린더에 연결된 인젝터로 연료를 공급하는 역할을 하며 반복 내압을 받게 된다. EURO 배기가스 배출규정 만족 및 연비향상을 위하여 요구되는 연료의 압력은 200MPa 이상으로 증가하고 있으며, 성형결함이 발생하지 않는 헤딩공정과 내압 피로수명 향상을 위한 자긴처리 기술이 요구되고 있다. 본 논문에서는 250MPa 급 반복내압을 만족할 수 있는 파이프 소재의 유동응력와 고주기 피로 데이터를 각각의 실험을 통하여 확보하였고, 연료분사관 앞 끝의 성형결함 여부를 판단하기 위하여 헤딩공정에 대한 유한요소해석을 수행하였다. 반복내압에 대한 내구수명 향상 및 신뢰성 확보를 위해 자긴공정에 대한 유한요소해석을 통하여 외경부의 인장잔류응력까지 고려한 최적 공정설계 수행 및 피로해석을 통한 설계의 타당성을 검증하였다.