• 제목/요약/키워드: rheological models

검색결과 91건 처리시간 0.027초

Curing Kinetics and Chemorheological Behavior of No-flow Underfill for Sn/In/Bi Solder in Flexible Packaging Applications

  • Eom, Yong-Sung;Son, Ji-Hye;Bae, Hyun-Cheol;Choi, Kwang-Seong;Lee, Jin-Ho
    • ETRI Journal
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    • 제38권6호
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    • pp.1179-1189
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    • 2016
  • A chemorheological analysis of a no-flow underfill was conducted using curing kinetics through isothermal and dynamic differential scanning calorimetry, viscosity measurement, and solder (Sn/27In/54Bi, melting temperature of $86^{\circ}C$) wetting observations. The analysis used an epoxy system with an anhydride curing agent and carboxyl fluxing capability to remove oxide on the surface of a metal filler. A curing kinetic of the no-flow underfill with a processing temperature of $130^{\circ}C$ was successfully completed using phenomenological models such as autocatalytic and nth-order models. Temperature-dependent kinetic parameters were identified within a temperature range of $125^{\circ}C$ to $135^{\circ}C$. The phenomenon of solder wetting was visually observed using an optical microscope, and the conversion and viscosity at the moment of solder wetting were quantitatively investigated. It is expected that the curing kinetics and rheological property of a no-flow underfill can be adopted in arbitrary processing applications.

시추용 머드혼합탱크의 비뉴턴 유체 모델에 대한 교반성능의 수치해석적 연구 (Numerical Study of Agitation Performance in a Drilling Mud Mixing Tank to Non-Newtonian Rheological Properties)

  • 임효남;이희웅;이인수;최재웅
    • 한국유체기계학회 논문집
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    • 제17권6호
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    • pp.29-37
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    • 2014
  • Non-Newtonian fluid mechanics takes charge of an important role in the oil industries. Especially in the oil well drilling process, the drilling fluid such as mud keeps the drill bit cool and clean during drilling, with suspending drill cuttings and lubricating a drill bit. The purpose of this study is to examine the effect of fluid mud rheological properties to predict different characteristics of non-Newtonian fluid in the mud mixing tank on offshore drilling platforms. In this paper, ANSYS fluent package was used for the simulation to solve the hydrodynamic force and to evaluate mud mixing time. Prediction of the power consumption and the pumping effectiveness has been presented with different operating fluid models as Newtonian and non-Newtonian fluid. The comparison between Newtonain mud model and non-Newtonian mud model is confirmed by the CFD simulation method of drilling mud mixing tank. The results present useful information for the design of the drilling mud mixing tanks and provide some guidance on the use of CFD tool for such non-Newtonian fluid flow.

한국 재래식 국수류의 유체 변형성에 관한 연구 -제 2 보 : 삶음시간과 저장기간에 따른 기계적 모델 상수들의 변화- (Studies on the Rheological Property of Korean Noodles -II. Mechanical Model Parameters of Cooked and Stored Noodles-)

  • 이철호;김철원
    • 한국식품과학회지
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    • 제15권3호
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    • pp.295-301
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    • 1983
  • 한국 재래식 밀국수와 냉면국수의 유체 변형성을 규명하기 위하여 실험실에서 제작한 tensile tester를 이용하여 creep test를 실시하였다. 국수를 삶는 시간과 삶은후 저장하는 시간에 따라 기계적 모델파라 메터의 크기가 변하는 정도를 측정하였다. 대부분의 삶은 국수 시료는 6-element Voigt 모델로 설명될 수 있었다. 밀국수의 경우 국수를 삶는 시간이 경과함에 따라 순간탄성(instantaneous elasticity)이 감소 되었으며, 지연탄성(retarded elasticity)과 지연점성(retarded viscosity)은 삶음 초기에 크게 감소되어다. 반면에 뉴우턴 점성은 삶음 시간에 크게 감소되었다. 반면에 뉴우턴 점성은 삶은 시간에 따라 서서히 감소되었다. 삶은 밀국수를 저장하는 시간에 따라 지연시간(retardation time)과 뉴우턴 점성이 급격히 감소되었다. 냉면국수와 삶음시간이 경과함에 따라 순간탄성과 지연탄성이 계속적으로 감소하는 반면 뉴우턴 점성은 최적 삶음시간에서 최고치를 나타내었다. 삶음시간이 경과함에 따라 냉면국수는 4-element Burger's모델로 그 기계적 성질을 표현할 수 있었다.

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나노윤활유를 사용하는 평행 슬라이더 베어링의 윤활해석 (Lubrication Analysis of Parallel Slider Bearing with Nanolubricant)

  • 박태조;강정국
    • Tribology and Lubricants
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    • 제39권3호
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    • pp.87-93
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    • 2023
  • Nanofluids are dispersions of particles smaller than 100 nm (nanoparticles) in base fluids. They exhibit high thermal conductivity and are mainly applied in cooling applications. Nanolubricants use nanoparticles in base oils as lubricant additives, and have recently started gathering increased attention owing to their potential to improve the tribological and thermal performances of various machinery. Nanolubricants reduce friction and wear, mainly by the action of nanoparticles; however, only a few studies have considered the rheological properties of lubricants. In this study, we adopt a parallel slider bearing model that does not generate geometrical wedge effects, and conduct thermohydrodynamic (THD) analyses to evaluate the effect of higher thermal conductivity and viscosity, which are the main rheological properties of nanolubricants, on the lubrication performances. We use a commercial computational fluid dynamics code, FLUENT, to numerically analyze the continuity, Navier-Stokes, energy equations with temperature-viscosity-density relations, and thermal conductivity and viscosity models of the nanolubricant. The results show the temperature and pressure distributions, load-carrying capacity (LCC), and friction force for three film-temperature boundary conditions (FTBCs). The effects of the higher thermal conductivity and viscosity of the nanolubricant on the LCC and friction force differ significantly, according to the FTBC. The thermal conductivity increases with temperature, improving the cooling performance, reducing LCC, and slightly increasing the friction. The increase in viscosity increases both the LCC and friction. The analysis method in this study can be applied to develop nanolubricants that can improve the tribological and cooling performances of various equipment; however, additional research is required on this topic.

Controlled-stress rotational rheometry : An historical review

  • Barnes, Howard A.;Bell, Derek
    • Korea-Australia Rheology Journal
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    • 제15권4호
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    • pp.187-196
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    • 2003
  • The recent renaissance in controlled-stress rheometry has meant that more and more commercial models of this type of instrument have appeared in the (rheological) marketplace and many papers now deal with the results obtained by their use. It is therefore both timely and appropriate that this mode of rheometry should be reviewed for the sake of new and old users who are probably not be aware of its development. The history of controlled-stress measurements is therefore given, and the particular efforts of the late Jack Deer in the 1970s are chronicled, and then the later developments that have made it possible that such low torques can now be applied and such low rotational speeds measured. These have been mostly in the areas of air bearing and optical disc technologies. The typical results now obtained are illustrated.

점성변형 특성을 고려한 빙판의 충돌거동에 대한 수치해석 (Numerical Simulation of Colliding Behaviors of Ice Sheet Considering the Viscous Material Properties)

  • 노인식;신병천
    • 한국해양공학회지
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    • 제7권2호
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    • pp.162-172
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    • 1993
  • In the present paper, the overall state of the arts of ice mechanics which is the most typical research topic of the artic engineering field was studied. And also, ice loads genrated by ice-structure interaction were estimated using numerical approach. The effects of viscous property of ice sheets to the ice load were investigated. The time dependent deformation behaviors of ice was modeled by visco-plastic problem using the finite element formalism. Constitutive model representing the material properties of ice was idealized by comblned rheological model with Maxwell and Voigt models. Numerical calculations for the bending and crushing behavior of ice sheet which are the most typical interaction modes between ice sheets and structures were carried out. The time dependent viscous behaviors of ice sheets interaction forces acting on structures were analyzed and the results were studied in detail.

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복합모드형 소형 MR감쇠장치 성능에 관한 실험적 연구 (An Experimental Study on the Performance of a Mixed Mode Type Small Scale MR Damper)

  • 이상현;민경원;이명규;박은천
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2005년도 학술발표회 논문집
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    • pp.461-468
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    • 2005
  • In this paper, mixed mode magneto-rheological (MR) damper, which is applicable for vibration control of a small scale multi-story structure, is devised. First, the schematic configurations of the shear, flow, and mixed mode MR dampers are described with design constraints and then the analytical models to predict the field-dependent damping forces are derived for each type. Second, an appropriate size of the mixed mode MR damper is manufactured and its field-dependent damping characteristics are evaluated in time domain. Finally, the performance of the manufactured MR damper which is semi-actively applied to a small scale building excited by earthquake load, is numerically evaluated.

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An oil-tolerant and salt-resistant aqueous foam system for heavy oil transportation

  • Sun, Jie;Jing, Jiaqiang;Brauner, Neima;Han, Li;Ullmann, Amos
    • Journal of Industrial and Engineering Chemistry
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    • 제68권
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    • pp.99-108
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    • 2018
  • An oil-tolerant and salt-resistant aqueous foam system was screened out as a possible lubricant to enable cold heavy oil transportation. The microstructures and viscoelasticity and effects of heavy oil, salt and temperature on the foam stability were investigated and new rheological and drainage models were established. The results indicate the foam with multilayered shells belongs to a special microcellular foam. The viscoelasticity could be neglected due to its low relaxation time. The drainage process can be divided into three stages. The foam with quality of 67.9% maintains great stability at high oil and salt concentrations and appropriate elevated temperature.

Brownian Dynamics Simulation Study on the Anisotropic FENE Dumbbell Model for Concentrated Polymer Solution and the Melt

  • 심훈구;이창준;김운전;배형석
    • Bulletin of the Korean Chemical Society
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    • 제21권9호
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    • pp.875-881
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    • 2000
  • We study the rheological properties of concentrated polymer solution and the melt under simple shear and elon-gational flow using Brownian dynamicssimulation. In order to describe the anisotropic molecular motion, we modifiedthe Giesekus' mobility tensor by incorporating the finitely extensible non-linear elastic (FENE) spring force into dumbbell model. To elucidate the nature of this model, our simulation results are compared with the data of FENE-P ("P"standsfor the Perterin) dumbbell model and experiments. While in steady state both original FENE and FENE-P models exhibit a similar viscosity response,the growthof viscosity becomes dissimilar as the anisotropy decreases and the flowrate increases. The steady state viscosity obtained from the simulation well describes the experiments including the shear-thinning behavior in shear flow and viscosity-thinning behavior in elongational flow. But the growth of viscosity oforiginal FENE dumbbell model cannot describe the experimental results in both flow fields.

Mechanical testing of the behavior of steel 1.7147 at different temperatures

  • Brnic, Josip;Turkalj, Goran;Canadija, Marko
    • Steel and Composite Structures
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    • 제17권5호
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    • pp.549-560
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    • 2014
  • The paper provides the test results and analysis on the behavior of steel 1.7147 at different temperatures. Mechanical uniaxial tests were used to determine mechanical properties, resistance to creep and Charpy impact tests to determine impact energy. Test results are presented in the form of engineering stress-strain diagrams, creep curves as well as numerical data related to impact energy. The results show that the tensile strength has the highest value at room temperature, and the same goes for the yield strength as well as for modulus of elasticity. After room temperature both of mentioned properties decrease with temperature increasing. Some of creep curves were modeled using rheological models and analytical equation. Based on Charpy impact energy an assessment of fracture toughness was made.