• 제목/요약/키워드: static material property

검색결과 95건 처리시간 0.022초

구리-크롬 소결단조 합금의 크롬 함유량 변화에 따른 동적 물성특성 (Dynamic Material Property of the Sinter-Forged Cu-Cr Alloys with the Variation of Chrome Content)

  • 송정한;허훈
    • 대한기계학회논문집A
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    • 제30권6호
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    • pp.670-677
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    • 2006
  • Vacuum interrupters are used in various switch-gear components such as circuit breakers, distribution switches, contactors. The electrodes of a vacuum interrupter are manufactured of sinter-forged Cu-Cr material for good electrical and mechanical characteristics. Since the closing velocity is 1-2m/s and impact deformation of the electrode depends on the strain-rate at the given velocity, the dynamic material property of the sinter-forged Cu-Cr alloy is important to design the vacuum interrupter reliably and to identify the impact characteristics of a vacuum interrupter accurately. This paper is concerned with the dynamic material properties of sinter-forged Cu-Cr alloy for various strain rates. The amount of chrome is varied from 10 wt% to 30 wt% in order to investigate the influence of the chrome content on the dynamic material property. The high speed tensile test machine is utilized in order to identify the dynamic property of the Cu-Cr alloy at the intermediate strain-rate and the split Hopkinson pressure bar is used at the high strain-rate. Experimental results from both the quasi-static and the high strain-rate up to the 5000/sec are interpolated with respect to the amount of chrome in order to construct the Johnson-Cook and the modified Johnson-Cook model as the constitutive relation that should be applied to numerical simulation of the impact behavior of electrodes.

Mn-B 합금계 고강도 강의 동적 물성 (Dynamic Material Property of Mn-B Alloy High-Strength Steel)

  • 최창;홍성인
    • 한국정밀공학회지
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    • 제13권11호
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    • pp.124-131
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    • 1996
  • The dynamic material property of Mn-B ally high-strength steel is investigated through the rod impact test which is one of simple test methods for the analysis of the material behavior under high-strain-rate. Rod impact test is performed to produce the deformed shape of rod and analyzed by the one-dimensional theory based on conservation law and the two-dimensional hydrocode AUTODYN-2D. The dynamic yield stress is determined and compared with the static yield stress to investigate the strain-rate sensitivity of Mn-B alloy high-strength steel.

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EPS의 압축성을 이용한 토압저감효과에 관한 연구 (Research on the Load Reduction Effect Using EPS)

  • 김진만;조삼덕;최봉혁;오세용
    • 한국지반공학회논문집
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    • 제20권1호
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    • pp.101-108
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    • 2004
  • 최근 30년간 EPS 블록은 전 세계적으로 그 사용량이 증가하고 있으며, 국내$.$외적으로 EPS 블록의 적용 분야가 확장되고 있는 추세에 있다. 그 대표적인 사례로 EPS 블록의 압축성에 따른 아칭효과를 이용한 옹벽, 교대, 매설관등 지반구조물에 작용하는 토압 저감 분야를 들 수 있다. EPS 블록은 경량성에 기인한 우수한 시공성과 밀도 변화에 따른 균질한 공학적 특성을 가지고 있으며, 또한 압축재로서 최적의 재료적 특성을 갖추고 있다. 일반적으로 EPS 블록은 밀도가 낮은 경우 동일한 하중 아래에서 보다 압축성이 우수한 경향을 보이나, 밀도가 10kg/$\textrm{m}^3$ 이하인 경우 발포 비드간 결합력이 약하여 쉽게 파괴되는 성질이 있으므로 지반공학적으로 이용할 때에는 10kg/$\textrm{m}^3$ 이상의 제품을 이용하는 것이 바람직한 것으로 알려져 있다. 본 연구에서는 지반구조물의 하중 저감을 위한 아칭재로서의 EPS 블록의 현장 적용성 평가를 위하여 콘크리트 옹벽과 콘크리트 박스 암거를 대상으로 현장시험시공을 수행하였으며, 현장시험시공 결과 아칭재인 EPS 블록을 사용할 경우 기존의 이론적인 토압에 비하여 콘크리트 옹벽의 경우 약 20% 정도, 콘크리트 박스 암거의 경우 약 45∼53% 정도인 것으로 평가되었다.

FEA Simulations and Tests of Rubber Insulator for Truck Suspension

  • Hur, Shin;Woo, Chang Su
    • Elastomers and Composites
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    • 제52권4호
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    • pp.303-308
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    • 2017
  • In this study, finite element modeling and material property tests are performed for the finite element analysis of rubber isolator parts which support the engine and isolate the vibration. As a result of the P direction analysis of the rubber isolator parts, the static stiffness in the P direction was 44.2 kg/mm, which is well within the error of 5% as compared with the test result of 46.1 kg/mm. The static stiffness of the rubber isolator parts in the Q direction was calculated to be 7.9 kg/mm, which is comparable to the test result of 8.6 kg/mm, with an error of less than 8%. As a result of the analysis on the Z direction, the static stiffness was calculated as 57.7 kg/mm, and the test results were not available. Through this study, it is expected that the time and cost for prototype development can be reduced through nonlinear finite element analysis for rubber isolator parts.

MEMS 소재의 기계적 특성 평가를 위한 인장형 시편 및 시험기 제작 (A Novel Tensile Specimen and Test Machine for Mechanical Properties of MEMS Materials)

  • 박준협;김정엽;이창승;좌성훈;송지호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.258-263
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    • 2004
  • Mechanical property evaluation of micrometer-sized structures is necessary to help design reliable microelectromechanical systems(MEMS) devices. Most material properties are known to exhibit dependence on specimen size and such properties of microscale structures are not well characterized. This paper describes techniques developed for tensile testing of materials used in MEMS. Epi-polycrystalline silicon is currently the most widely used material, and its tensile strength has been measured as 1.52GPa. We have developed an uniaxial testing machine for testing microscale specimen using electro-magnetic actuator. The field magnet and the moving coil taken from an audio-speaker were utilized as the components of the actuator. Structure of specimen was designed and manufactured for easy handling and alignment. In addition to the static tensile tests, new techniques and procedures for measuring strength are described.

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박막의 기계적 물성을 위한 새로운 인장 시편 및 인장 시험기 (A Novel Tensile Specimen and Tensile Tester for Mechanical Properties of Thin Films)

  • 박준협;김윤재
    • 대한기계학회논문집A
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    • 제31권6호
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    • pp.644-650
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    • 2007
  • Mechanical property evaluation of micrometer-sized structures is necessary to help design reliable microelectromechanical systems(MEMS) devices. Most material properties are known to exhibit dependence on specimen size and such properties of microscale structures are not well characterized. This paper describes techniques developed for tensile testing of thin film used in MEMS. Epi-polycrystalline silicon is currently the most widely used material, and its tensile strength has been measured as 1.52GPa. We have developed a tensile testing machine for testing microscale specimen using electro-magnetic actuator. The field magnet and the moving coil taken from an audio-speaker were utilized as the components of the actuator. Structure of specimen was designed and manufactured for easy handling and alignment. In addition to the static tensile tests, it is described that new techniques and procedures can be adopted for high cycle fatigue test of a thin film.

주기적(週期的) 반복하중(反復荷重)을 받는 벼의 복소탄성율(複素彈性率) (Complex Modulus of Rough Rice Kernel under Cyclic Loading)

  • 김만수;박종민
    • Journal of Biosystems Engineering
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    • 제16권3호
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    • pp.263-271
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    • 1991
  • When grains is subjected to oscillating load, the dynamic viscoelastic behavior of the material will be describe the complex modulus of the material. The complex modulus and therefore the storage modulus, the loss modulus, and the phase angle for the sample should be obtainable with a given static viscoelastic property of the material under static load. The complex relaxation moduli of the rough rice kernel were computed from the Burger's model describing creep behavior of the material which were obtained in the previous study. Also, the effects of cyclic load and moisture content of grain on the dynamic viscoelastic behavior of the samples were analized. The storage modulus of the rough rice kernel slightly increased with the frequency applied but at above the frequency of 0.1 Hz it was nearly constant with the frequency, and the loss modulus of the sample very rapidly decreased with increase in the frequency on those frequency ranges. It was shown that the storage modulus and the loss modulus of the sample increased with decrease in grain moisture content. Effect of grain moisture content on the storage modulus of the sample was highly significant than effect of the frequency applied, but effect of the frequency on the loss modulus of the sample was more significant than effect of grain moisture content.

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강섬유 보강 철근콘크리트보의 신뢰성 해석 (Reliability Analysis of Steel Fiber Reinforced Concrete Beams)

  • 유한신;곽계환;장화섭
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2004년도 봄 학술발표회 논문집
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    • pp.479-486
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    • 2004
  • The purpose of this study is to practical use with increase safety, usablility and economical. In this study, the property of fatigue behavior was tested by comparing reinforced concrete and steel fiber reinforced concrete. The basic test, the static test and fatigue test were used as the research methods. Basic on the test, the material compressive strength test and split tensile strength test ware conducted 7 days and 28 days after the concrete was poured. In the static test, there ware four types of experimental variables of the steel fiber mixing ratio : 0.00%, 0.75%, 1.00%, and 1.25%. The ultimate load initial diagonal tension crack, and initial load of flexural cracking were all observed by static test. A methodology for the probabilistic assement of steel fiber reinforced concrete(SFRC) which takes into account material variability, confinement model uncertainty and the uncertainty in local and globa failure criteria is applied for the derivation of vulnerability curves for the serviceability and ultimate limit states, the reliability of SFRC using the proposed practical linear limit state model is evaluated by using the AFOSM(Advanced First Order Second Moment) method and MCS(monte-Calrosimulation) method.

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Deflection and bending characteristics of embedded functionally graded porous plate with bi-directional thickness variation subjected to bi-sinusoidal loading

  • Rajat Jain;Mohammad Sikandar Azam
    • Steel and Composite Structures
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    • 제51권6호
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    • pp.601-617
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    • 2024
  • This work aims to explore the static behaviour of a tapered functionally graded porous plate (FGPP) with even and uneven porosity distributions resting on two parametric elastic foundations. The plate under investigation is subjected to bi-sinusoidal loading and the edges of the plate are exposed to different combinations of edge restrictions. In order to examin the static behaviour, bending factors (BF) related to bending and normal stresses have been evaluated using classical plate theory. To achieve this, the governing equations have been derived employing the energy concept. And to solve it, the Rayleigh-Ritz method with an algebraic function has been utilised; it is simple, precise, and computationally intensive. After convergence and validation analyses, new findings are made available. The BF of the plate have been exhaustively examined to explain the influence of aspect ratios, material property index, porosity factor, taper factor, and Winkler and Pasternak stiffness. It is observed that the BF of an elastically supported FGPP are influenced by the index of material propery and the aspect ratio. Findings also indicate that the impact of porosity is more when it is spread evenly, as opposed to when it is unevenly distributed. Further, the deformed plate's structure is significantly influenced by the different thickness variations. Examination of bending characteristics of FGPP having different new cases of thickness variations with different types of porosity distribution under fifteen different mixed edge constraints is the prime novality of this work. Results presented are reliable enough to be taken into account for future studies.