• 제목/요약/키워드: Porosity Technique

검색결과 185건 처리시간 0.034초

Free vibration of imperfect sigmoid and power law functionally graded beams

  • Avcar, Mehmet
    • Steel and Composite Structures
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    • 제30권6호
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    • pp.603-615
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    • 2019
  • In the present work, free vibration of beams made of imperfect functionally graded materials (FGMs) including porosities is investigated. Because of faults during process of manufacture, micro voids or porosities may arise in the FGMs, and this situation causes imperfection in the structure. Therefore, material properties of the beams are assumed to vary continuously through the thickness direction according to the volume fraction of constituents described with the modified rule of mixture including porosity volume fraction which covers two types of porosity distribution over the cross section, i.e., even and uneven distributions. The governing equations of power law FGM (P-FGM) and sigmoid law FGM (S-FGM) beams are derived within the frame works of classical beam theory (CBT) and first order shear deformation beam theory (FSDBT). The resulting equations are solved using separation of variables technique and assuming FG beams are simply supported at both ends. To validate the results numerous comparisons are carried out with available results of open literature. The effects of types of volume fraction function, beam theory and porosity volume fraction, as well as the variations of volume fraction index, span to depth ratio and porosity volume fraction, on the first three non-dimensional frequencies are examined in detail.

투과성 내부재가 설치된 사각형 탱크내의 슬로싱 현상에 대한 실험적 연구 (Experimental Study on Sloshing in Rectangular Tank with Vertical Porous Baffle)

  • 현종우;조일형
    • 한국해양공학회지
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    • 제29권4호
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    • pp.291-299
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    • 2015
  • A variety of inner baffles are often installed to reduce liquid sloshing and prevent tank damage. In particular, a porous baffle has a distinct advantage in reducing sloshing by changing the natural periods and dissipating the wave energy in a tank. In model tests, porous baffles with five different porosities were installed vertically in a liquid tank under sway motion. The free surface elevations and pressures were measured using an image processing technique and a pressure gage for various combinations of baffle's porosity and submergence depth, and tank's amplitude and period. The experimental results were in good agreement with the analytic solutions (Cho, 2015), with the exception of a quantitative difference at resonant periods. The experimental results showed that the sloshing characteristics in a tank were closely dependent on both the porosity and submergence depth of the baffle, and the optimal porosity existed near P = 0.1275.

Ultrasonic velocity as a tool for mechanical and physical parameters prediction within carbonate rocks

  • Abdelhedi, Mohamed;Aloui, Monia;Mnif, Thameur;Abbes, Chedly
    • Geomechanics and Engineering
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    • 제13권3호
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    • pp.371-384
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    • 2017
  • Physical and mechanical properties of rocks are of interest in many fields, including materials science, petrophysics, geophysics and geotechnical engineering. Uniaxial compressive strength UCS is one of the key mechanical properties, while density and porosity are important physical parameters for the characterization of rocks. The economic interest of carbonate rocks is very important in chemical or biological procedures and in the field of construction. Carbonate rocks exploitation depends on their quality and their physical, chemical and geotechnical characteristics. A fast, economic and reliable technique would be an evolutionary advance in the exploration of carbonate rocks. This paper discusses the ability of ultrasonic wave velocity to evaluate some mechanical and physical parameters within carbonate rocks (collected from different regions within Tunisia). The ultrasonic technique was used to establish empirical correlations allowing the estimation of UCS values, the density and the porosity of carbonate rocks. The results illustrated the behavior of ultrasonic pulse velocity as a function of the applied stress. The main output of the work is the confirmation that ultrasonic velocity can be effectively used as a simple and economical non-destructive method for a preliminary prediction of mechanical behavior and physical properties of rocks.

적외선 화상기법을 이용한 시멘트 모르타르 특성의 실험적 평가 (An Experimental Study for Characteristics Evaluation of Cement Mortar Using Infrared Thermography Technique)

  • 권성준
    • 대한토목학회논문집
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    • 제30권1A호
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    • pp.53-59
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    • 2010
  • 최근 들어 적외선을 이용하여 콘크리트 구조물의 결함 또는 공동 등을 평가하려는 비파괴 연구가 활발하게 진행되고 있으며, 이는 유지관리기법의 중요한 부분을 이루고 있다. 적외선 화상분석(Infrared Thermography)을 콘크리트 표면에 적용할 경우, 콘크리트의 표면온도는 표면을 구성하는 재질과 열적특성(비열, 열전도율, 열전달율)에 따라 그 응답이 다르게 나타나게 된다. 서로 다른 배합을 가지는 시멘트 모르타르에서는 공극률이 다르게 구성되고, 표면에서 공극률의 차이는 열에 노출된 뒤, 냉각되는 과정에서 열적 거동이 다르게 평가된다. 한편 이러한 공극률은 강도 및 염화물 확산계수와 같은 역학적/내구적 특성에 영향을 주기도 한다. 본 연구에서는 외부에서 열을 가하여 측정하는 능동방식(active type)을 이용하여, 표면의 온도변화를 분석하였다. 물-시멘트비 55%와 65%인 시멘트 모르타르 시편을 제작하였으며, 공극률, 압축강도, 염화물 확산계수 등의 물리적 특성값들이 평가되었다. 이후 동일한 실내조건(온도 $20{\sim}22^{\circ}C$, 습도 55-60%)에서 적외선 화상분석 기법을 적용하였다. 시간의 경과에 따라 공극을 많이 포함하는 시편의 경우, 표면 온도가 상대적으로 증가하였으며, 온도가 일정해지는 시점(임계시점)이 단축되고 있음을 확인할 수 있었다. 이러한 특성은 콘크리트와 같이 공극과 골재를 가지고 있는 복합재료의 품질 평가에 적용할 수 있음을 시사한다. 한편 공극률과 실험상수를 고려하여, 공극률에 따라 변화하는 임계시간에 대한 계산식을 제안하였다. 본 논문에서는 시멘트 모르타르의 공극량의 변화에 따른 물리적 변화와 이에 따른 열특성 변화가 논의될 것이다.

Nonlinear harmonic resonances of spinning graphene platelets reinforced metal foams cylindrical shell with initial geometric imperfections in thermal environment

  • Yi-Wen Zhang;Gui-Lin She
    • Structural Engineering and Mechanics
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    • 제88권5호
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    • pp.405-417
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    • 2023
  • This paper reveals theoretical research to the nonlinear dynamic response and initial geometric imperfections sensitivity of the spinning graphene platelets reinforced metal foams (GPLRMF) cylindrical shell under different boundary conditions in thermal environment. For the theoretical research, with the framework of von-Karman geometric nonlinearity, the GPLRMF cylindrical shell model which involves Coriolis acceleration and centrifugal acceleration caused by spinning motion is assumed to undergo large deformations. The coupled governing equations of motion are deduced using Euler-Lagrange principle and then solved by a combination of Galerkin's technique and modified Lindstedt Poincare (MLP) model. Furthermore, the impacts of a set of parameters including spinning velocity, initial geometric imperfections, temperature variation, weight fraction of GPLs, GPLs distribution pattern, porosity distribution pattern, porosity coefficient and external excitation amplitude on the nonlinear harmonic resonances of the spinning GPLRMF cylindrical shells are presented.

Fabrication of Porous Yttria-Stabilized Zirconias Controlled by Additives

  • Paek, Yeong-Kyeun;Oh, Kyung-Sik;Lee, Hyuk-Jae
    • 한국세라믹학회지
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    • 제44권2호
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    • pp.79-83
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    • 2007
  • To fabricate a thick, porous yttria-stabilized zirconia without cracking and warping, a method for the simultaneous control of the porosity and shrinkage was designed. As a pore former, a potato starch was used. For the control of shrinkage the oxidation of Al metal particles was used. For the sintering of the above powder mixtures, a partial sintering technique was used at $1300^{\circ}C$ for 10 min in air. Upon adding the additives, high open porosity above 53% and a low shrinkage level were obtained. As a result cracking and warping of the sintered body were deterred. This outcome most likely resulted from the compensation of sintering shrinkage due to the volume expansion caused by oxidation of the Al metal particles during heat-treatment.

다공질 소결체의 조직형성에 관한 컴퓨터 시뮬레이션 (Computer Simulation for Microstructure Development in Porous Sintered Compacts)

  • 신순기
    • 한국세라믹학회지
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    • 제43권4호
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    • pp.213-219
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    • 2006
  • A Monte Carlo simulation based on Potts model in a three dimensional lattice was studied to analyze and design microstructures in porous sintered compacts such as porosity, pore size, grain (particle) size and contiguity of grains. The effect of surface energy of particles and the content of additional fine particles to coarse particles on microstructure development were examined to obtain fundamentals for material design in porous materials. It has been found that the larger surface energy enhances sintering (necking) of particles and increases contiguity and surface energy does not change pore size and grain size. The addition of fine particles also enhances sintering of particles and increases contiguity, but it has an effect on increment of pore size and grain size. Such a simulation technique can give us important information or wisdom for design of porous materials, e.g., material system with high surface energy and fine particle audition are available for higher strength and larger porosity in porous sintered compacts with applications in an automobile.

Fabrication of Low Density Sintered Stainless Steel Filter

  • Seok, Se-Hoon;Park, Dong-Kyu;Jung, Kwang-Chul
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.611-612
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    • 2006
  • In a manufacturing technique of the sintered filter, pressureless sintering method has good permeability, it is not need the binder and lubricant used on compacting process, so it has little contamination and it is easy to control the pore size and shape but the mechanical strength is low relatively and it is difficult that parts of complicate form are manufactured. In the case of manufacturing the filter by press and sintering method, in order to be satisfactory characteristic of un-pressed filter, in this study sintered metal filter fabricated by using 30-40mesh stainless steel 316L powder and additive agents. Porosity and structure of pores, permeability and mechanical strength of the sintered filter were investigated with the variation sintering conditions. Porosity was nearly constant about $60{\sim}70%$, density, permeability and mechanical strength were changed markedly with quantity of additive materials and sintering conditions.

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Effect of polymer concentration in cryogelation of gelatin and poly (vinyl alcohol) scaffolds

  • Ceylan, Seda;Demir, Didem;Gul, Gulsah;Bolgen, Nimet
    • Biomaterials and Biomechanics in Bioengineering
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    • 제4권1호
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    • pp.1-8
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    • 2019
  • The aim of this study was to investigate the effect of total polymer concentration on the chemical structure, morphology of pores, porosity, swelling ratio, degradation of gelatin-poly (vinyl alcohol) (Gel-PVA) cryogel scaffolds. Porous cryogels were prepared with cryogelation technique by using glutaraldehyde as a crosslinker. Functional group composition of cryogels after crosslinking was investigated by Fourier Transform Infrared (FTIR). The morphology of cryogels was characterized via scanning electron microscopy (SEM) and porosity analysis. All of the cryogels had a porous structure with an average pore size between $45.58{\pm}14.28$ and $50.14{\pm}4.26{\mu}m$. The cryogels were biodegradable and started to degrade in 14 days. As the polymer concentration increased the swelling ratio, the porosity and the degradation rate decreased. Spongy and mechanically stable Gel-PVA cryogels, with tunable properties, can be potential candidates as scaffolds for tissue engineering applications.