• 제목/요약/키워드: elasticity of temperature

검색결과 330건 처리시간 0.027초

온도응력 측정용 시험장치의 개발 (Development of Thermal Stress Measuring System)

  • 전상은;김국한;김진근
    • 콘크리트학회논문집
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    • 제13권3호
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    • pp.228-236
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    • 2001
  • 매스콘크리트 구조물에서 발생하는 온도응력을 예측하기 위해 많은 연구가 해석적인 방법과 실험적인 방법을 통해 수행되어왔다. 그러나 이러한 해석적인 방법과 실험적인 방법으로 온도응력을 예측하는 것은 한계가 있다. 해석적인 방법은 콘크리트의 탄성계수, 열팽창계수와 같은 물성치를 정확히 알아야 한다. 그리고 실험적인 방법은 대부분이 실제 구조물이나 모형구조물을 통하여 직접 온도응력을 측정한다. 그러나 이와 같은 방법은 경제적인 문제뿐만 아니라 현장의 불확실한 조건들을 감수해야 한다. 본 연구에서는 온도응력을 실내에서 직접적으로 측정할 수 있는 시험장치를 개발하였다. 개발된 온도응력 시험장치는 콘크리트와 다른 열팽창계수를 갖는 재료를 이용하여 실제 구조물에서 발생할 수 있는 콘크리트의 내/외부 구속에 의한 온도응력의 변화를 구현할 수 있으며, 이를 정량적으로 예측할 수 있다. 실험은 해석을 통해 얻은 온도이력을 구현할 수 있는 항온항습조에서 수행하였고, 온도응력은 장비에 부착된 변형률게이지를 통해 얻은 변형률을 이용하여 계산하였다. 개발된 장비의 검증을 위해 매립게이지를 이용하여 온도응력을 측정하는 실험을 동시에 수행하였고, 이 결과에 의하면 개발된 시험장치는 불확실한 콘크리트의 초기재령 물성치를 고려하여 보다 정확하게 온도응력을측정할 수 있으며, 검증실험 결과에 의해 그 객관성과 타당성을 입증할 수 있었다.

상어육의 연제품으로서의 원료학적 고찰 (A STUDY ON THE RAW MATERIAL OF FISH PASTE USING SHARK MEATS)

  • 박동근;이상관;이재병
    • 한국수산과학회지
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    • 제1권2호
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    • pp.87-96
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    • 1968
  • 1967년 7월부터 12월까지 상어육의 연제품 으로서의 원료학적 고찰 및 제품가공실험 결과를 요약하면 다음과 같다. 1) 상어육은 연제품 원료로서 타 어종에 비해 비교적 많은 양의 염용성 단백질을 함유하므로 연제품 원료로서 상당히 우수한 어종이다. 2) 설취에 있어서는 빙초산 농도를 $0.05\%$ 이상하지 않는 것이 제품의 탄력을 높힐 수 있다. 3) 가능한한 원료취급을 가열전까지 저온에서 행하는 것이 탄력저하를 방지 할 수 있다. 4) Setting(Sowari)의 적당한 온도 시간은 $35\~40^{\circ}C$에서 $40\~70$분으로 하는 것이 가공시간 단축과 제품탄력을 높힐 수 있다. 5) 가열시간과 온도는 $80\~90^{\circ}C$에서 $40\~60$분 정도가 가장 양호하며 보장기간을 장기간 할려면 그 이상의 시간 온도를 요하나 제품탄력을 고려치 않으면 안된다. 6) 맛의 보강을 위해 부원료 사용시 부원료량이 다량일수록 제품은 우수하나 생산원가를 고려하여 장어 $20\%$ 강달이 $30\%$ 이내로 사용하는 것이 적당하다. 7) 보장 있어서 $0.2\%$ 솔빈산 가리를 첨가한 것은 상온에서 20일 $5^{\circ}C$에서 50일간 저장가능하며 직공포장을 한다면 더 장기간 보장할 수 있으리라 사료된다.

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Effects of ${\beta}$-Conglycinin and Glycinin on Thermal Gelation and Gel Properties of Soy Protein

  • Kang, Il-Jun;Lee, Young-Sook
    • Food Science and Biotechnology
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    • 제14권1호
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    • pp.11-15
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    • 2005
  • Dynamic shear moduli of isolated soy protein solutions upon heating were measured to monitor gelation. Onsets of gelation coincide with onset temperatures of denaturation in glycinin and ${\beta}$-conglycinin solutions, whereas in isolated soy proteins, onset of gelation was above denaturation temperature of ${\beta}$-conglycinin with storage modulus increasing in two steps. The first increase in storage modulus of isolated soy proteins occurred at about $78.5^{\circ}C$, while the second increase started at about $93^{\circ}C$. Gel properties of soy protein gels having different proportions of glycinin and ${\beta}$-conglycinin were measured by compression-decompression test. ${\beta}$-conglycinin was responsible for gel elasticity. Glycinin significantly increased hardness, toughness, and fracturability of gels at high heating temperature near $100^{\circ}C$. Results reveal texture of soy protein gels can be controlled by regulating ratio of glycinin to ${\beta}$-conglycinin and heating temperature.

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.

Thermal buckling and stability of laminated plates under non uniform temperature distribution

  • Widad Ibraheem Majeed;Ibtehal Abbas Sadiq
    • Steel and Composite Structures
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    • 제47권4호
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    • pp.503-511
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    • 2023
  • Stability of laminated plate under thermal load varied linearly along thickness, is developed using a higher order displacement field which depend on a parameter "m", whose value is optimized to get results closest to three-dimension elasticity results. Hamilton, s principle is used to derive equations of motion for laminated plates. These equations are solved using Navier-type for simply supported boundary conditions to obtain non uniform critical thermal buckling and fundamental frequency under a ratio of this load. Many design parameters of cross ply and angle ply laminates such as, number of layers, aspect ratios and E1/E2 ratios for thick and thin plates are investigated. It is observed that linear and uniform distribution of temperature reduces plate frequency.

NUMERICAL ANALYSIS PROCEDURE FOR PREDICTING TEMPERATURE FIELD IN DESIGN OF AUTOMOTIVE FRICTION CLUTCH

  • LEE B.;CHO C.
    • International Journal of Automotive Technology
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    • 제7권1호
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    • pp.61-68
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    • 2006
  • In design of the friction clutches of automobiles, knowledge on the thermo-elasticity a priori is very informative in the initial design stage. Especially, the precise prediction technique of maximum temperature and stress should be requested in design of mechanical clutches for their durability and compactness. In this study, an efficient and reliable analysis technique for the design of the mechanical clutches by using computer modeling and numerical method was developed. A commercial software STAR-$CD^{TM}$ was used to find the convective heat-transfer coefficients. MSC/$NASTRAN^{TM}$ software was followed to predict the temperature of clutch with utilization of estimated coefficients. Some experiments were also performed with a dynamometer to verify the procedure and calibrate the thermal load. As a conclusion, a design procedure, including numerical steps and experimental techniques for calibration, was proposed.

평직유리섬유 강화 에폭시 적층판의 저온 인장 특성 (Tensile Properties of Plain Weave Glass Fabric Reinforced Epoxy Resin Laminates at Low Temperatures)

  • 김연직
    • 대한기계학회논문집A
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    • 제32권9호
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    • pp.788-795
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    • 2008
  • To understand the tensile behaviors of GFRP at low temperature, three types of specimen have been used in this study. Tensile properties and fracture mechanisms for three orthogonal orientations of plain weave glass fabric reinforced epoxy resin laminate were investigated at temperature range of about -30 to $15^{\circ}C$. The tensile properties of axial and edge type specimen decrease slightly with decreasing temperature to $-20^{\circ}C$. However, at $-30^{\circ}C$ the decreases in the tensile properties increased considerably. Below $-20^{\circ}C$, thickness type specimen showed a marked decreases in the tensile properties. It was obvious that the fracture manner of thickness type specimen was adhesive failure at above $-10^{\circ}C$ and a mixed adhesive and cohesive failure at below $-20^{\circ}C$.

Dynamic Mechanical Behavior of Ultra-High Molecular Weight Polyethylene Irradiated with Gamma Rays

  • Lee, Choon-Soo;Jho, Jae-Young;Park, Kuiwon;Hwang, Tae-Won
    • Macromolecular Research
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    • 제12권1호
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    • pp.141-143
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    • 2004
  • We have investigated the dynamic mechanical behavior of ultra-high molecular weight polyethylene (UHMWPE) irradiated with varying doses of gamma rays. A relaxation peak in the loss factor curve, which has not been reported previously in the literature, is observed at a temperature above the crystal melting temperature. The peak is unique to UHMWPE and appears to be related to the high degree of entanglement. Because the temperature and intensity of the peak are reduced by irradiation-induced chain scission and crosslinking, respectively, we believe that the peak is associated with disentanglement relaxation. The behavior of the storage modulus in the melt state agrees with the classical theory of rubber elasticity.

엘라스토머 TPV의 사출성형조건에 따른 기계적 물성 (Mechanical Properties of Elastomer TPVs due to Injection Molding Conditions)

  • 한성렬;정영득
    • 한국기계가공학회지
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    • 제5권1호
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    • pp.27-32
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    • 2006
  • Thermoplastic elastomer(TPE) has many advantages such as high flexibility, high elasticity and high elongation, etc. TPE is easily molded as plastic materials, therefore, many TPE parts are applied as home appliances and mechanical parts. However, its mechanical properties would be changed by injection molding conditions such as melt temperature, mold temperature, injection pressure and holding pressure, etc. In this study, the influences of the injection molding condition on the mechanical properties as tensile strength, hardness of thermoplastic vulcanizates(TPVs), which is one of the TPE, were investigated. By the injection molding experiment, the molding's tensile strength and hardness was influenced on the melt temperature and composition ratio of PP and EPDM. The morphology of moldings were shown by the scanning electron microscope.

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플라스틱 IC 패키지의 습열 파괴 해석 (Hygrothermal Cracking Analysis of Plastic IC Package)

  • 이강용;양지혁
    • 한국정밀공학회지
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    • 제15권1호
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    • pp.51-59
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    • 1998
  • The purposes of the paper are to consider the failure phenomenon based on delamination and crack when the encapsulant of plastic IC package under hygrothermal loading in the IR soldering process is on elastic and viscoelastic behavior due to the temperature and to show the optimum design using fracture mechanics. The model for analysis is the plastic SOJ package with a dimpled diepad. The package model with the perfect delamination between chip and diepad is chosen to estimate the resistance to fracture by calculating J-integrals in low temperature and C(t)-integrals in high temperature with the change of the design under hygrothermal loading. The optimum design to depress the delamination and crack in the plastic IC package is presented.

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