• Title/Summary/Keyword: Material Constants

검색결과 569건 처리시간 0.025초

Crack growth analysis and remaining life prediction of dissimilar metal pipe weld joint with circumferential crack under cyclic loading

  • Murthy, A. Ramachandra;Gandhi, P.;Vishnuvardhan, S.;Sudharshan, G.
    • Nuclear Engineering and Technology
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    • 제52권12호
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    • pp.2949-2957
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    • 2020
  • Fatigue crack growth model has been developed for dissimilar metal weld joints of a piping component under cyclic loading, where in the crack is located at the center of the weld in the circumferential direction. The fracture parameter, Stress Intensity Factor (SIF) has been computed by using principle of superposition as KH + KM. KH is evaluated by assuming that, the complete specimen is made of the material containing the notch location. In second stage, the stress field ahead of the crack tip, accounting for the strength mismatch, the applied load and geometry has been characterized to evaluate SIF (KM). For each incremental crack depth, stress field ahead of the crack tip has been quantified by using J-integral (elastic), mismatch ratio, plastic interaction factor and stress parallel to the crack surface. The associated constants for evaluation of KM have been computed by using the quantified stress field with respect to the distance from the crack tip. Net SIF (KH + KM) computed, has been used for the crack growth analysis and remaining life prediction by Paris crack growth model. To validate the model, SIF and remaining life has been predicted for a pipe made up of (i) SA312 Type 304LN austenitic stainless steel and SA508 Gr. 3 Cl. 1. Low alloy carbon steel (ii) welded SA312 Type 304LN austenitic stainless-steel pipe. From the studies, it is observed that the model could predict the remaining life of DMWJ piping components with a maximum difference of 15% compared to experimental observations.

자동차 전장 커넥터 방수 시일의 유한요소해석 (FEM Analysis of a Waterproof Seal of Automotive Electrical Connectors)

  • 한정진;황원태;김호경
    • Tribology and Lubricants
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    • 제35권1호
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    • pp.52-58
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    • 2019
  • In the case of high-voltage connectors applied to automobiles, waterproofing has become an important issue for the safety of automobiles. In this study, structural analysis is performed on silicone rubber-type waterproof seals used in the voltage connector. For the structural analysis, the tensile properties of the actual rubber seal are evaluated using a miniaturized tensile testing machine. The Mooney-Rivlin material constants of the rubber seal are determined as follows; $D_1=0$, $C_{01}=0.241$, $C_{10}=0.0142$. The analysis shows that the contact pressure at the top of the seal where the seal and male connector are in contact is approximately three times higher than that at the bottom of the seal where the seal and female connector are in contact. It is confirmed that the waterproofing performance of the rubber seal depends on the contact pressure of the seal bottom where the seal and female connector are in contact. The contact pressure for waterproofing is found to be 4.7 bar. The strain concentration of the curved part is attributed to excessive initial tension. Therefore, a redesign is recommended for uniform stress or strain distribution in the curved section of the seal in response to the stress relaxation problem due to permanent deformation.

Thermal buckling analysis of embedded graphene-oxide powder-reinforced nanocomposite plates

  • Ebrahimi, Farzad;Nouraei, Mostafa;Dabbagh, Ali;Rabczuk, Timon
    • Advances in nano research
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    • 제7권5호
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    • pp.293-310
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    • 2019
  • In this paper, thermal-buckling behavior of the functionally graded (FG) nanocomposite plates reinforced with graphene oxide powder (GOP) is studied under three types of thermal loading once the plate is supposed to be rested on a two-parameter elastic foundation. The effective material properties of the nanocomposite plate are considered to be graded continuously through the thickness according to the Halpin-Tsai micromechanical scheme. Four types of GOPs' distribution namely uniform (U), X, V and O, are considered in a comparative way in order to find out the most efficient model of GOPs' distribution for the purpose of improving the stability limit of the structure. The governing equations of the plate have been derived based on a refined higher-order shear deformation plate theory incorporated with Hamilton's principle and solved analytically via Navier's solution for a simply supported GOP reinforced (GOPR) nanocomposite plate. Some new results are obtained by applying different thermal loadings to the plate according to the GOPs' negative coefficient of thermal expansion and considering both Winkler-type and Pasternak-type foundation models. Besides, detailed parametric studies have been carried out to reveal the influences of the different types of thermal loading, weight fraction of GOP, aspect and length-to-thickness ratios, distribution type, elastic foundation constants and so on, on the critical buckling load of nanocomposite plates. Moreover, the effects of thermal loadings with various types of temperature rise are investigated comparatively according to the graphical results. It is explicitly shown that the buckling behavior of an FG nanocomposite plate is significantly influenced by these effects.

생굴(Crassostrea gigas)의 선도 변화에 포장용기가 미치는 영향 (Effect of the Packaging Container on the Freshness of Raw Oysters Crassostrea gigas)

  • 윤나영;안병규;인정진;한형구;이우진;서정화;정삼근;심길보
    • 한국수산과학회지
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    • 제55권1호
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    • pp.73-77
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    • 2022
  • The shelf life of oysters Crassostrea gigas, in two different types of packaging containers, polyethylene (PE) and polyethylene terephthalate (PET), was determined by evaluating the pH, glycogen and soluble protein content, turbidity, and viable cell count. After 7 days of storage, the pH of the packing water in the PE container decreased to 5.88, while the pH in the PET container decreased to 6.03. In the PE container, the glycogen content of the oysters decreased by 0.85 g/100 g and the soluble protein content and turbidity of the packing seawater increased by 1,927.21 mg/100 g and 3.24 McF, respectively. In the PET container, the glycogen content of the oysters decreased by 0.96 g/100 g and the soluble protein content and turbidity of the packing seawater increased by 1,674.75 mg/100 g and 0.98 McF, respectively. The reaction rate constants (K) were as follows: glycogen content, -0.18 (PE) and -0.10 (PET); soluble protein content, 0.29 (PE) and 0.26 (PET); and turbidity, 0.41 (PE) and 0.06 (PET). These results suggested that PET can be used as a new packaging container material for raw oysters because the quality is maintained and it offers more convenient handling during distribution.

Synthesis and Comparative Analysis of Crystallite Size and Lattice Strain of Pb2Ba1.7Sr0.3Ca2Cu3O10+δ Superconductor

  • Hasan, Maher Abd Ali;Jasim, Kareem Ali;Miran, Hussein Ali Jan
    • 한국재료학회지
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    • 제32권2호
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    • pp.66-71
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    • 2022
  • In this article, Pb2Ba1.7Sr0.3Ca2Cu3O10+δ superconductor material was synthesized using conventional solid-state reaction method. X-ray diffraction (XRD) analysis demonstrated one dominant phase 2223 and some impurities in the product powder. The strongest peaks in the XRD pattern were successfully indexed assuming a pseudo-tetragonal cell with lattice constants of a = 3.732, b = 3.733 and c = 14.75 Å for a Pb-Based compound. The crystallite size and lattice strain between the layers of the studied compound were estimated using several methods, namely the Scherrer, Williamson-Hall (W.H), size-strain plot (SSP) and Halder Wagner (H.W) approach. The values of crystallite size, calculated by Scherrer, W.H, SSP and H.W methods, were 89.4540774, 86.658638, 87.7555823 and 85.470086 Å, respectively. Moreover, the lattice strain values obtained by W.H, SSP and H.W methods were 0.0063240, 0.006325 and 0.006, respectively. It was noted that all crystallite size results are consistent; however, the best method is the size-strain plot because it gave a value of R2 approaching one. Furthermore, degree of crystallites was calculated and found to be 59.003321%. Resistivity analysis suggests zero-resistance, which is typical of superconducting materials at critical temperature. Four-probe technique was utilized to measure the critical temperature at onset Tc(onset), zero resistivity Tc(off set), and transition (width ΔT), corresponding to temperatures of 128 K, 116 K, and 12 K, respectively.

신뢰성 기반 쉴드터널의 경계조건 변화에 따른 파괴확률 특성에 관한 연구 (A study on failure probability characteristic based on the reliability analysis according to the variation of boundary conditions)

  • 이규필;박영빈
    • 한국터널지하공간학회 논문집
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    • 제25권6호
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    • pp.447-458
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    • 2023
  • 본 연구에서는 쉴드터널 세그먼트 라이닝의 하중과 부재저항의 확률적 특성뿐만 아니라 경계조건의 변동성을 고려한 비교모델을 선정하고 신뢰성해석을 수행하였으며, 파괴확률 산정 및 구조안전성 검토를 통해 한계상태설계의 적정성에 대해 분석을 수행하였다. 이러한 지반 정수의 확률특성치를 고려한 해석을 위해 지반스프링계수는 Muirwood식을 적용하여 정량적 값을 산정하여 Mean값으로 고려하였고, 변동계수는 기존 연구자료를 토대로 지반 경계조건 변화에 따른 검토대상 모델들을 선정하였다. 이러한 모델들에 대한 구조해석과 MCS기법을 적용한 신뢰성분석을 통해 파괴확률과 신뢰성지수를 산정하여 지반경계조건 변화에 따른 파괴확률의 변화를 검토하였다.

유한요소해석을 통한 유연기판 위의 금속 박막의 최대 굽힘 변형률 예측 (Prediction of Maximum Bending Strain of a Metal Thin Film on a Flexible Substrate Using Finite Element Analysis)

  • 이종협;김영천
    • 마이크로전자및패키징학회지
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    • 제31권1호
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    • pp.23-28
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    • 2024
  • 유연소자를 이용한 전자제품은 실사용환경에서 가혹한 기계적 변형을 경험한다. 이에 따라 유연소자의 기계적 신뢰성에 대한 연구가 많은 연구자들의 관심을 받고 있다. 본 연구에서는 유연기판에 증착된 금속 박막의 최대 굽힘 변형률을 예측하기 위하여 기존에 사용하는 굽힘 변형률 모델과 유한요소해석을 이용하였다. 박막의 소재 및 두께, 기판의 두께를 달리하여 유한요소해석으로 굽힘 실험을 모사하였고, 기존 모델로 예측된 변형률과 해석결과를 서로 비교하였다. 굽힘 변형 시 박막 첨단과 주위의 변형률 분포를 확인하였고, 굽힘 정도에 따른 기존 모델의 오차율을 정리하였다. 신규수학적 모델을 제시하여 각 경우의 수에 따른 상수를 제시하였다.

관정 시멘팅 재료의 물리역학물성 및 시멘트층의 안정성 분석 (Physical and Mechanical Properties of Cements for Borehole and Stability Analysis of Cement Sheath)

  • 김기덕;이희권;김태희;김교원
    • 지질공학
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    • 제26권1호
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    • pp.101-115
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    • 2016
  • 관정의 시멘팅 재료로 사용될 수 있는 두 시멘트 물질(KS-1 보통 포틀랜드, Class G)의 물/고체(고체=시멘트) 중량비와 첨가제인 비산재의 부피함량 변화에 따른 이들 물질들의 물리역학적 물성 변화를 파악하기 위해 실내물리역학실험을 실시하였다. KS-1 보통 포틀랜드 시멘트의 경우 물/고체(고체=시멘트) 중량비를 변화시키며, Class G 시멘트의 경우 물/고체(고체=비산재+시멘트)을 고정한 채 비산재:시멘트의 부피비를 변화시키며 시료를 제작하였다. KS-1 보통 포틀랜드 시멘트의 경우 물/고체 중량비가 증가할수록, Class G 시멘트의 경우 비산재의 함량이 증가할수록, 공극률 증가, 밀도감소, 음파속도(P, S파) 감소. 탄성상수(영율, 포아송비) 감소, 압축 및 인장강도 저하, 열전도도 감소, 비열 증가의 경향을 보였다. 또한 구속압(σ3)의 증가와 비산재 함량의 증가는 재료의 소성파괴거동을 초래하였다. 이 실내실험결과를 이용하여, 여러 주입공 페라미터(케이싱, 시멘트층의 두께, 주입압, 주입공 경사방향 및 경사각, 주입공 심도)등을 변화 시키면서, 시멘트층의 안정성 분석을 실시하였다. 분석결과 낮은 주입압과 경사정 혹은 수평정에서는 시멘트층이 안정하였으나, 다른 조건에서는 시멘트층에서 주로 인장파괴가 관찰 되었다.

Microstructure and Electrical Properties of Pb[(Mg,Mn)Nb]O3-Pb(Zr,Ti)O3 Piezoelectric Ceramics

  • Kim, Jin-Ho;Kim, Jong-Hwa;Baik, Seung-Woo
    • Transactions on Electrical and Electronic Materials
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    • 제6권5호
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    • pp.202-209
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    • 2005
  • Phase evolution, microstructure and the electrical properties such as $k_p$ and $Q_m$ of $Pb(Mg_{1/3}Nb_{2/3})O_3[PMN]-Pb(Mn_{1/3}Nb_{2/3})O3[PM'N]-PbZrO_3[PZ]-PbTiO_3[PT]$ quaternary system were investigated within the compositional ranges $0{\leq}y{\leq}0.125$, y+z=0.125, and $0.39{\leq}x{\leq}0.54$ of the formula $Pb_{0.97}Sr_{0.03}[Mg_{1/3}Nb_{2/3})_y\;(Mn_{1/3}Nb_{2/3})_z\;(Zr_{x}Ti_{1-x})_{1-(y+z)}]O_3$. In the case of increasing Mn/(Mg+Mn) ratio for a fixed Zr/Ti ratio of 47.5/52.5, phase relation remained unchanged but the grain size drastically decreased, and the electrical properties changed as following: both $k_P$ and $Q_m$ reached the peak values at $Mn/(Mg+Mn)\cong0.3l7$ and gradually decreased; $\varepsilon33^T$ showed a monotonic decrease; P-E hysteresis loop gradually changed to asymmetrical one, and $E_i$ increased in correspondence. With increasing Zr/Ti ratio for a fixed Mn/(Mg+Mn) ratio of 0.317, on the contrary, the cell parameter $(\alpha^2c)^{1/3}$ gradually increased, and tetragonal-rhombohedral morphotropic phase boundary appeared in the range of $51/49{\leq}Zr/Ti{\leq}54/46$. the meantime, the grain size substantially increased, and the electrical properties changed as following: $k_P$ and $\varepsilon33^T$ reached peak values at Zr/Ti=51/49 and 48/52, respectively, and then gradually decreased; change of $Q_m$ was adverse to $k_P$; both $E_C\;and\;E_i$ considerably decreased while $P_S$ moderately increased. For the system 0.125(PMN+PM'N)-0.875PZT studied, the composition Mn/(Mg+Mn)=0.3l7 and Zr/Ti=51/49 revealed some promising electrical properties for piezoelectric transformer application such as $k_P=0.58,\;Q_m\cong1000$, and $\varepsilon^T_{33}=970$, as well as dense and fine-grained microstructure.

스핀-궤도 각운동량 상호작용의 구조 최적화에 대한 효과: 비스무스 텔루라이드의 제일원리 계산의 경우 (Spin-orbit Coupling Effect on the Structural Optimization: Bismuth Telluride in First-principles)

  • ;김미영
    • 한국자기학회지
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    • 제23권1호
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    • pp.1-6
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    • 2013
  • 스핀 궤도 각운동량의 상호작용은 저차원계 자성물질에서 나타나는 여러 가지 특이한 현상들의 물리적 원인을 제공하는 것으로 알려져 있다. 최근 들어 자성 도핑을 이용한 열전 물질의 합금에 대한 관심이 높아지면서, 열전 및 위상 절연체(Topological Insulator) 등의 물리적 성질 결정에 중요한 역할을 하는 페르미 에너지 준위 부근에서의 전자구조에 대한 스핀 궤도 각운동량의 효과 연구가 관심을 끌고 있다. 본 연구에서는 가장 일반적인 열전 호스트 물질인 비스무스 텔루라이드의 격자 상수 및 부피 팽창률에 대한 스핀 궤도 각운동량 상호작용의 효과를 연구하기 위하여 모든 전자(all-electron) FLAPW(full-potential linearized augmented plane wave) 방법을 이용하여 전자구조 계산을 수행하였다. 국소밀도 근사법 및 일반 기울기 보정법의 서로 다른 교환상호작용 퍼텐셜을 채용하고, 수평격자 및 수직격자를 분리하여 변화시키는 구조최적화 계산을 통하여, 스핀-궤도 각운동량 상호작용의 효과가 격자상수 평형 값을 약하게 증가시키는 반면, 부피탄성률을 크게 감소시키는 영향을 주며, 그 효과는 구조적 이방성이 뚜렷한 비스무스 텔루라이드의 특성에 의하여 격자방향에 대한 의존성을 보인다는 것을 확인했다.