• 제목/요약/키워드: High elastic

검색결과 1,745건 처리시간 0.037초

해사 사용 고강도 콘크리트의 물성에 관한 실험적 연구 (Experimental Study on Physical Properties of High-Strength Concrete Using Sea Sand)

  • 정영수;배수호;박종협
    • 콘크리트학회지
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    • 제8권3호
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    • pp.219-229
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    • 1996
  • 국내 건설경기의 비약적인 신장으로 인한 하천사의 고갈로 해사의 사용이 매년 급증하고 있는 추세이다. 시방서 조건을 만족시키지 않는 무분별한 해사의 사용은 저품질 콘크리트의 시공으로 이어져, 이는 곧바로 구조물의 내구성에 치명적인 영향을 끼쳐 사회적으로 엄청난 슬픔과 재난을 몰고 올 대규모 참사를 야기시킬 수도 있다는 점에서 해사를 사용한 콘크리트에 대한 물리적 특성의 규명이 시급한 실정이라 할 수 있다. 따라서 본 연구는 해사를 이용한 고강도 콘크리트를 개발하기 위한 실험적 연구로서 양질의 하천사를이용한 고강도 콘크리트와 해사를 이용한 고강도 콘크리트의 물리적 특성을 서로 비교.분석하여 해사를 이용한 고강도 콘크리트를 실제의 콘크리트 공사에 적극적으로 활용하는데 그 목적이 있다. 해사를 이용한 고강도 콘크리트의 실험적 규명은 고강도 콘크리트의 구조물 설계시 중요한 설계자료로 이용될 수 있다. 따라서 본 연구는 콘크리트용 혼화재로서 실리카흄의 사용유무에 따라 최대압축강도를 발현시키는 물-시멘트비(불-결합재비)의 한계값을 결정하고, 정탄성계수의 실험으로 현행 콘크리트 표준시방서의 탄성계수 계산식의 적용범위를 제시한 후, 압축강도 $330~800kgf/cm^2$인 고강도 콘크리트의 탄성계수와 할렬인장강도 및 휨인장강도를 예측할 수 있는 제안식을 도출해 냈다.

정적 하중하의 굽힘 압전 복합재료 작동기의 작동 성능 (Actuating Performance of a Bending Piezoelectric Composite Actuator with a Thin Sandwiched PZT Plate under Static Loads)

  • 우성충;박기훈;구남서
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.1231-1236
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    • 2007
  • This study presents the static and dynamic actuating performances of a bending piezoelectric actuator with a thin sandwiched PZT plate under a static load. The stored elastic energy within the actuators which occurs during a curing process is obtained through a flexural bending test. An actuating performance is evaluated in terms of an actuating displacement at the simply supported condition. The results reveal that an actuator that consists of a top layer having a high elastic modulus and a low coefficient of thermal expansion exhibits a better performance than the rest of actuators due to the formation of the large stored elastic energy within the actuator system. When actuators are excited at the alternating current voltage, the effect of PZT ceramic softening results in a slight reduction in the resonance frequency of each actuator as the applied electric field increases. It is thus suggested that the static and dynamic actuating characteristics of bending piezoelectric actuators with a thin sandwiched PZT plate should be simultaneously considered in controlling their performances.

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Local dynamic buckling of FPSO steel catenary riser by coupled time-domain simulations

  • Eom, T.S.;Kim, M.H.;Bae, Y.H.;Cifuentes, C.
    • Ocean Systems Engineering
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    • 제4권3호
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    • pp.215-241
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    • 2014
  • Steel catenary riser (SCR) is a popular/economical solution for the oil/gas production in deep and ultra-deep water. The behavioral characteristics of SCR have a high correlation with the motion of floating production facility at its survival and operational environments. When large motions of surface floaters occur, such as FPSO in 100-yr storm case, they can cause unacceptable negative tension on SCR near TDZ (touch down zone) and the corresponding elastic deflection can be large due to local dynamic buckling. The generation, propagation, and decay of the elastic wave are also affected by SCR and seabed soil interaction effects. The temporary local dynamic buckling vanishes with the recovery of tension on SCR with the upheaval motion of surface floater. Unlike larger-scale, an-order-of-magnitude longer period global buckling driven by heat and pressure variations in subsea pipelines, the sub-critical local dynamic buckling of SCR is motion-driven and short cycled, which, however, can lead to permanent structural damage when the resulting stress is greatly amplified beyond the elastic limit. The phenomenon is extensively investigated in this paper by using the vessel-mooring-riser coupled dynamic analysis program. It is found that the moment of large downward heave motion at the farthest-horizontal-offset position is the most dangerous for the local dynamic buckling.

Propagation of elastic waves in thermally affected embedded carbon-nanotube-reinforced composite beams via various shear deformation plate theories

  • Ebrahimi, Farzad;Rostami, Pooya
    • Structural Engineering and Mechanics
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    • 제66권4호
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    • pp.495-504
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    • 2018
  • The current study is dedicated to study the thermal effects of wave propagation in beams, reinforced by carbon nanotubes (CNT). Beams, made up of carbon nanotube reinforced composite (CNTRC) are the future materials in various high tech industries. Herein a Winkler elastic foundation is assumed in order to make the model more realistic. Mostly, CNTs are pervaded in cross section of beam, in various models. So, it is tried to use four of the most profitable reconstructions. The homogenization of elastic and thermal properties such as density, Yong's module, Poisson's ratio and shear module of CNTRC beam, had been done by the demotic rule of mixture to homogenize, which gives appropriate traits in such settlements. To make this investigation, a perfect one, various shear deformation theories had been utilized to show the applicability of this theories, in contrast to their theoretical face. The reigning equation had been derived by extended Hamilton principle and the culminant equation solved analytically by scattering relations for propagation of wave in solid bodies. Results had been verified by preceding studies. It is anticipated that current results can be applicable in future studies.

Comparative Study on the Effects of Proprioceptive Neuromuscular Facilitation and Elastic Band Exercise on the Physical Function and Blood Lipid Levels of Obese Elderly Women

  • Noh, Hyeon-Jeong;Kim, Seok-Hwan
    • 한국전문물리치료학회지
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    • 제22권1호
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    • pp.79-92
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    • 2015
  • The effects of Proprioceptive Neuromuscular Facilitation (PNF) and elastic band exercise on the physical functions and blood lipids of obese elderly women were investigated. The experimental group ($n_1=16$) patients underwent PNF for 12 weeks, and the control group ($n_2=15$) patients performed elastic band exercises. SPSS 21.0 was used to compute the means and standard deviations. After the 12-week PNF, both the experimental and control groups showed statistically significant differences in the physical functions (cardiovascular endurance, strength of the lower extremity, muscular endurance, flexibility, balance, and agility) (p<.05), but the difference in the experimental group was more significant than that in the control group (p<.05). In terms of the changes in the blood lipid levels (total cholesterol, triglycerides, high-density lipoprotein, and low-density lipoprotein), the experimental group showed significant changes (p<.05). In conclusion, PNF was confirmed as more effective than elastic band exercise in improving the physical functions and blood lipid levels of obese elderly women.

Analysis of a functionally graded nanocomposite sandwich beam considering porosity distribution on variable elastic foundation using DQM: Buckling and vibration behaviors

  • Nejadi, Mohammad Mehdi;Mohammadimehr, Mehdi
    • Computers and Concrete
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    • 제25권3호
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    • pp.215-224
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    • 2020
  • In the present study, according to the important of porosity in low specific weight in comparison of high stiffness of carbon nanotubes reinforced composite, buckling and free vibration analysis of sandwich composite beam in two configurations, of laminates using differential quadrature method (DQM) is studied. Also, the effects of porosity coefficient and three types of porosity distribution on critical buckling load and natural frequency are discussed. It is shown the buckling loads and natural frequencies of laminate 1 are significantly larger than the results of laminate 2. When configuration 2 (the core is made of FRC) and laminate 1 ([0/90/0/45/90]s) are used, the first natural frequency rises noticeably. It is also demonstrated that the influence of the core height in the case of lower carbon volume fractions is negligible. Even though, when volume fraction of fiber increases, the critical buckling load enhances smoothly. It should be noticed the amount of decline has inverse relationship with the beam aspect ratio. Investigating three porosity patterns, beam with the distribution of porosity Type 2 has the maximum critical buckling load and first natural frequency. Among three elastic foundations (constant, linear and parabolic), buckling load and natural frequency in linear variation has the least amount. For all kind of elastic foundations, when the porosity coefficient increases, critical buckling load and natural frequency decline significantly.

좌굴해석을 이용한 리드프레임 타발용 펀치의 보강설계 (Design of the Stiffened Punch for Stamping of Lead Frame by Buckling Analysis)

  • 고대철;이인수;안병환;김병민
    • 한국정밀공학회지
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    • 제23권9호
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    • pp.68-75
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    • 2006
  • The lead frame manufactured by stamping process plays an important role in connecting semiconductor to PCB board. As a result of the miniaturization of semiconductor, its corresponding lead frame punch has been narrow. In case of the punch with high slenderness ratio such as lead frame punch, the punch can be broken suddenly due to buckling. To prevent the fracture of lead frame punch, some manufacturers have experientially attached stiffeners to weak parts of punch. The purpose of this study, therefore, is to suggest the guideline far design of stiffened punch. The optimal position and the number of stiffeners to be attached to punch are investigated by elastic buckling analysis. The elastic buckling analysis consists of the eigenvalue buckling analysis and nonlinear buckling analysis. The critical buckling load of elastic buckling analysis is compared with that of buckling test. Finally, the guideline far attaching stiffeners is suggested through analysis of cross section of lead frame punch such as moment of inertia and eccentricity.

6061알루미늄의 피로 균열 성장과 관통에 따른 탄성파의 응력비 영향 (Influence of Stress Ratio of Elastic Waves Generated by Fatigue Crack Growth and Penetration in 6061 Aluminum Plates)

  • 안석환;김진욱;남기우
    • 대한기계학회논문집A
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    • 제29권6호
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    • pp.822-827
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    • 2005
  • The characteristics of elastic waves emanating from crack initiation and propagation in 6061 aluminum alloy subjected to fatigue loading with different stress ratio was investigated. The objective of this study is to determine the properties of the signals generated from each stage of fatigue crack growth. AS a crack propagates, substantial elastic wave occurred just prior to penetration. Then it decreased and the crack penetrated. The waveforms and their power spectra were found to be dependent on the different stress ratio associated with the signals. It is determined that high-frequency signal $0.5{\sim}0.75$ MHz is most likely emitted during crack propagation at peak load of fatigue cycle which release the highest energy. It is determined that 0.3 MHz is closely related to crack closure effect. The frequency peaks below 0.25 MHz may be attributed to fretting or hydraulic noise.

강한 측력이 작용하는 피스톤 펌프의 왕복동 피스톤 기구 부에서의 윤활모형에 관한 연구 (Lubrication Modeling of Reciprocating Piston in Piston Pump with High Lateral Load)

  • 신정훈;정동수;김경웅
    • Tribology and Lubricants
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    • 제30권2호
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    • pp.116-123
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    • 2014
  • The objective of this study is to model and simulate the nonlinear lubrication performance of the sliding part between the piston and cylinder wall in a hydrostatic swash-plate-type axial piston pump. A numerical algorithm is developed that facilitates simultaneous calculation of the rotating body motion and fluid film pressure to observe the fluid film geometry and power loss. It is assumed that solid asperity contact, so-called mixed lubrication in this study, invariably occurs in the swash-plate-type axial piston pump, which produces a higher lateral moment on the pistons than other types of hydrostatic machines. Two comparative mixed lubrication models, rigid and elastic, are used to determine the reaction force and sliding friction. The rigid model does not allow any elastic deformation in the partial lubrication area. The patch shapes, reactive forces, and virtual local elastic deformation in the partial lubrication area are obtained in the elastic contact model using a simple Hertz contact theory. The calculation results show that a higher reaction force and friction loss are obtained in the rigid model, indicating that solid deformation is a significant factor on the lubrication characteristics of the reciprocating piston part.

고무 탄성커플링을 갖는 선박 추진축계 비틀림의 동특성 개선 (Improvement of Dynamic Characteristics of Torsion on the Marine Propulsion Shafting System with Elastic Rubber Coupling)

  • 이돈출
    • 한국소음진동공학회논문집
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    • 제13권12호
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    • pp.923-929
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    • 2003
  • As for the marine propulsion shafting system using 4 stroke diesel engine, it is common to apply a reduction gear box between diesel engine and shafting to increase propulsion efficiency, which requires inevitably a certain elastic coupling to avoid chattering and hammering inside of gear box. In this study, the optimum method of rectifying propulsion shafting system in case of 750 ton fishing vessel is theoretically studied in a view of dynamic characteristics of torsion. After the replacement of diesel engine and gear box, the torsional vibration get worse and so some countermeasures are needed. The elastic coupling is modified from a present rubber coupling of block type having relatively high torsional stiffness to a rubber coupling haying two serially connected elements. Torsional vibration damper was installed at crankshaft free end additionally and moment of inertia of flywheel was adjusted. The dynamic characteristics of shafting system was improved by these modification. The theoretical analysis of torsional vibration are compared to measurement results using two laser torsion meters during the sea trial.