• 제목/요약/키워드: temperature dependent parameters

검색결과 412건 처리시간 0.027초

Dynamic analysis of functionally graded (FG) nonlocal strain gradient nanobeams under thermo-magnetic fields and moving load

  • Alazwari, Mashhour A.;Esen, Ismail;Abdelrahman, Alaa A.;Abdraboh, Azza M.;Eltaher, Mohamed A.
    • Advances in nano research
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    • 제12권3호
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    • pp.231-251
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    • 2022
  • Dynamic behavior of temperature-dependent Reddy functionally graded (RFG) nanobeam subjected to thermomagnetic effects under the action of moving point load is carried out in the present work. Both symmetric and sigmoid functionally graded material distributions throughout the beam thickness are considered. To consider the significance of strain-stress gradient field, a material length scale parameter (LSP) is introduced while the significance of nonlocal elastic stress field is considered by introducing a nonlocal parameter (NP). In the framework of the nonlocal strain gradient theory (NSGT), the dynamic equations of motion are derived through Hamilton's principle. Navier approach is employed to solve the resulting equations of motion of the functionally graded (FG) nanoscale beam. The developed model is verified and compared with the available previous results and good agreement is observed. Effects of through-thickness variation of FG material distribution, beam aspect ratio, temperature variation, and magnetic field as well as the size-dependent parameters on the dynamic behavior are investigated. Introduction of the magnetic effect creates a hardening effect; therefore, higher values of natural frequencies are obtained while smaller values of the transverse deflections are produced. The obtained results can be useful as reference solutions for future dynamic and control analysis of FG nanobeams reinforced nanocomposites under thermomagnetic effects.

유체 모델을 이용한 유전체 장벽 방전 플라즈마와 전자기파 간의 시간 의존적 상호 작용 분석 (Time Dependent Interaction between Electromagnetic Wave and Dielectric Barrier Discharge Plasma Using Fluid Model)

  • 김유나;오일영;정인균;홍용준;육종관
    • 한국전자파학회논문지
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    • 제25권8호
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    • pp.857-863
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    • 2014
  • 전자기파와 플라즈마의 상호 작용을 결정하는 주요 변수는 플라즈마 주파수와 충돌 주파수이며, 이 둘은 각각 전자 밀도와 전자 온도로부터 계산할 수 있다. 이 두 값은 플라즈마 발생기 종류에 따라 결정되는 시간 의존적인 변수이다. 기존의 전파 흡수 특성 연구에서는 수치 해석적 모형의 부재로 인하여 플라즈마의 시간적/공간적 변화를 간략화하거나, 상수로 가정하여 수행하였다. 본 연구에서는 플라즈마 유체 모델을 도입하여 얻어진 시간 의존적 변수 값을 전자기파감쇠량 계산에 이용함으로써 해석의 정확도를 높이는 방식을 제안하였다. 해석 대상인 유전체 장벽 방전 플라즈마는 구조적인 단순함으로 인하여 1차원 분석만으로 플라즈마 분포의 시간적 변화를 반영할 수 있다. 본 논문은 한 주기 내에서 전자 밀도와 전자 온도를 추출하여 마이크로파 입사 시 시간적 흡수 특성 변화를 분석하였다. 또한, 전자 밀도와 전자 온도의 변화에 따라 감쇠량을 계산하여 감쇠 경향성을 분석하였다.

Marangoni convection radiative flow of dusty nanoliquid with exponential space dependent heat source

  • Mahanthesh, Basavarajappa;Gireesha, Bijjanal Jayanna;PrasannaKumara, Ballajja Chandra;Shashikumar, Nagavangala Shankarappa
    • Nuclear Engineering and Technology
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    • 제49권8호
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    • pp.1660-1668
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    • 2017
  • The flow of liquids submerged with nanoparticles is of significance to industrial applications, specifically in nuclear reactors and the cooling of nuclear systems to improve energy efficiency. The application of nanofluids in water-cooled nuclear systems can result in a significant improvement of their economic performance and/or safety margins. Therefore, in this paper, Marangoni thermal convective boundary layer dusty nanoliquid flow across a flat surface in the presence of solar radiation is studied. A two phase dusty liquid model is considered. Unlike classical temperature-dependent heat source effects, an exponential space-dependent heat source aspect is considered. Stretching variables are utilized to transform the prevailing partial differential system into a nonlinear ordinary differential system, which is then solved numerically via the Runge-Kutta-Fehlberg approach coupled with a shooting technique. The roles of physical parameters are focused in momentum and heat transport distributions. Graphical illustrations are also used to consider local and average Nusselt numbers. We examined the results under both linear and quadratic variation of the surface temperature. Our simulations established that the impact of Marangoni flow is useful for an enhancement of the heat transfer rate.

Alloy 617의 장시간 크리프 수명 예측을 위한 다중회귀 선형 모델의 제안 및 평가 (Suggestion and Evaluation of a Multi-Regression Linear Model for Creep Life Prediction of Alloy 617)

  • 윤송남;김우곤;정익희;김용완
    • 대한기계학회논문집A
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    • 제33권4호
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    • pp.366-372
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    • 2009
  • Creep life prediction has been commonly used by a time-temperature parameter (TTP) which is correlated to an applied stress and temperature, such as Larson-Miller (LM), Orr-Sherby-Dorn (OSD), Manson-Haferd (MH) and Manson-Succop (MS) parameters. A stress-temperature linear model (STLM) based on Arrhenius, Dorn and Monkman-Grant equations was newly proposed through a mathematical procedure. For this model, the logarithm time to rupture was linearly dependent on both an applied stress and temperature. The model parameters were properly determined by using a technique of maximum likelihood estimation of a statistical method, and this model was applied to the creep data of Alloy 617. From the results, it is found that the STLM results showed better agreement than the Eno’s model and the LM parameter ones. Especially, the STLM revealed a good estimation in predicting the long-term creep life of Alloy 617.

Colossal Magnetoresistance in La-Ca-Mn-O

  • Jin, Sungho
    • Journal of Magnetics
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    • 제2권1호
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    • pp.28-33
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    • 1997
  • Very large in electrical resistivity by several orders of magnitude is obtained when an external magnetic field is applied to the colossal magnetoresistnace (CMR) materials such as La-Ca-Mn-O. The magnetoresistance is strongly temperature-dependent, and exhibits a sharp peak below room temperature, which can be shifted by adjusting the composition or processing parameters. The control of lattice geometry or strain, e.g., by chemical substitution, epitaxial growth or post-deposition anneal of thin films appears to be crucial in obtaining the CMR properties. The orders of magnitude change in electrical resistivity could be useful for various magnetic and electric device applications. .

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Frequency characteristics and sensitivity analysis of a size-dependent laminated nanoshell

  • Dai, Zuocai;Jiang, Zhiyong;Zhang, Liang;Habibi, Mostafa
    • Advances in nano research
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    • 제10권2호
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    • pp.175-189
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    • 2021
  • In this article, frequency characteristics, and sensitivity analysis of a size-dependent laminated composite cylindrical nanoshell under bi-directional thermal loading using Nonlocal Strain-stress Gradient Theory (NSGT) are presented. The governing equations of the laminated composite cylindrical nanoshell in thermal environment are developed using Hamilton's principle. The thermodynamic equations of the laminated cylindrical nanoshell are obtained using First-order Shear Deformation Theory (FSDT) and Fourier-expansion based Generalized Differential Quadrature element Method (FGDQM) is implemented to solve these equations and obtain natural frequency and critical temperature of the presented model. The novelty of the current study is to consider the effects of bi-directional temperature loading and sensitivity parameter on the critical temperature and frequency characteristics of the laminated composite nanostructure. Apart from semi-numerical solution, a finite element model was presented using the finite element package to simulate the response of the laminated cylindrical shell. The results created from finite element simulation illustrates a close agreement with the semi-numerical method results. Finally, the influences of temperature difference, ply angle, length scale and nonlocal parameters on the critical temperature, sensitivity, and frequency of the laminated composite nanostructure are investigated, in details.

저온 열처리로 제작된 1.5 mol% 이트리아 안정화 지르코니아 세라믹스의 상 안정성 및 소결물성 (Phase stability and Sintered Properties of 1.5mol% Yttria-stabilized Zirconia Ceramics Fabricated by Low Temperature Sintering)

  • 김경태;최한철;박정식;이종국
    • 열처리공학회지
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    • 제37권1호
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    • pp.1-8
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    • 2024
  • Phase stability of tetragonal crystals in yttria-stabilized zirconia ceramics is dependent on the content of yttria and the heat-treatment condition, related with mechanical properties. In this study, we fabricated the 1.5 mol% yttria-stabilized zirconia (1.5Y-YSZ) ceramics by cold isostatic pressing (CIP) and post-sintering at temperature range of 1200 to 1350℃ for 2 hours and investigated the sintered properties and microstructural evolution. Sintered and microstructural parameters, i.e, apparent density, grain size and phase composition of 1.5Y-YSZ ceramics were mainly dependent on the sintering temperature. Maximum sintered density of 99.4 % and average grain size of 200-300 nm could be obtained from the heat-treatment condition above sintering temperature at 1300℃ for 2 hours, possessing the superior mechanical hardness with 1200 Hv. However, phase stability of tetragonal grains in 1.5 YSZ ceramics is very low, inducing the phase transformation to monoclinic crystals on specimen surface during cooling after heat-treatment.

Temperature Field and Cooling Rate of Laser Cladding with Wire Feeding

  • Kim, Jae-Do;Peng, Yun
    • Journal of Mechanical Science and Technology
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    • 제14권8호
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    • pp.851-860
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    • 2000
  • Temperature field and cooling rate are important parameters to influence the properties of clad layer and the heat affected zone. In this paper the temperature field and cooling rate of laser cladding are studied by a two-dimensional time-dependent finite element model. Experiment has been carried out by Nd:YAG laser cladding with wire feeding. Research results indicate that at the beginning of cladding, the width and depth of melt pool increase with cladding time. The cooling rate is related to position, cladding time, cladding speed, and preheating temperature. The temperature near melt pool changes rapidly while the temperature far from melt pool changes slowly. With the increase of cladding time, cooling rate decreases. The further the distance from the melt pool, the lower the temperature and the slower the cooling rate. The faster the cladding speed, the faster the cooling rate. The higher the preheating temperature, the slower the cooling rate. The FEM results coincide well with the experiment results.

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벼에서 흑다리긴노린재 [Paromius exiguus (Distant)] (Hemiptera: Lygaeidae) 산란모델 및 생명표 (Temperature-dependent Oviposition Model and Life Table Parameters of Paromius exiguus (Distant) (Hemiptera: Lygaeidae) Growing on Rice)

  • 박창규;박홍현;서보윤
    • 한국응용곤충학회지
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    • 제56권4호
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    • pp.387-394
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    • 2017
  • 벼에 반점미를 유발하는 흑다리긴노린재 [Paromius exiguus (Distant)]의 온도에 따른 산란 특성을 $17.5{\sim}35^{\circ}C$ 8개 항온조건 광주기 14L:10D에서 조사하고 산란모델 구축을 위한 단위 함수 개발 및 생명표 분석을 수행하였다. 성충 수명은 $17.5^{\circ}C$에서 123.8일로 가장 길었고, $32.5^{\circ}C$에서 23.6일로 가장 짧았으며 온도가 올라감에 따라 수명도 짧아졌다. 암컷 한 마리당 총산란수는 $30^{\circ}C$에서 585.2개로 가장 많았으며, $17.5^{\circ}C$에서 21.5개로 가장 적었다. 온도에 기반한 산란 모델 개발을 위해 성충노화율, 총산란수, 성충생존율 및 누적산란율 단위모델을 추정하였다. 총 산란수($r^2=0.83{\sim}0.85$)를 제외한 3개의 단위모델 모두에서 높은 수준의 모델 적합성을 보였다($r^2=0.92{\sim}0.98$). 온도에 따른 흑다리긴노린재 생명표 매개변수들을 추정하였다. 순증가율($R_0$)은 $30^{\circ}C$에서 118.21로 가장 높았다. 평균 세대기간(T)은 $32.5^{\circ}C$에서 32.99일로 가장 짧았으며, 개체군 배수기간(Dt)은 $30^{\circ}C$에서 5.69일로 가장 짧았다. 내적자연증가율($r_m$)과 기간증가율(${\lambda}$)은 $30^{\circ}C$에서 가장 커 각각 0.122, 1.129였다.

J파라미터를 이용한 고온피로균열전파 거동에 미치는 응력파형 영향의 연구 (A Study of the Effect of Stress Waveform on the Behavior of High Temp. Fatigue Crack Propagation Using J Parameters)

  • 허정원;박원조
    • 한국안전학회지
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    • 제15권2호
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    • pp.8-12
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    • 2000
  • The fatigue crack propagation tests were performed in triangular and holding-time stress waveforms at $650^{\circ}C$. The behavior of fatigue crack propagation was investigated according to waveform. The analysis of high temperature fatigue crack propagation by the stress intensity factor range ${\Delta}K$, elastic fracture mechanics parameter, was not available. The behaviors of high temperature fatigue crack propagation by the J-integral(${\Delta}J_f$, J' and ${\Delta}J_c$), elasto-plastic fracture mechanics parameter, were investigated in a number of stress waveforms. The fast-fast waveform exhibited cycle-dependent(fatigue type), the slow-fast and the hold time with 500sec waveforms appear to be time-dependent(creep type) and the fast-slow and the hold time with 5, 25sec waveforms exhibited conbined behavior of both types(fatigue-creep conbined type).

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