• 제목/요약/키워드: Three point bending test

검색결과 306건 처리시간 0.023초

자동차 인스트루먼트 패널에 사용되는 플라스틱의 크리프 거동 (Creep Behavior of Plastics Used in Automobile Instrument Panels)

  • 김영삼;전치훈;;염영진
    • 대한기계학회논문집A
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    • 제35권12호
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    • pp.1549-1556
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    • 2011
  • 자동차 인스트루먼트 패널에 사용되는 플라스틱의 온도와 시간에 따른 기계적 거동을 알아보기 위해 시편에 대한 인장 및 크리프 시험을 수행하였다. 여러 가지 온도에서의 물성치를 구한 결과 온도에 따라 물성치가 크게 변화함을 알 수 있었다. 4 가지 하중조건하에서의 3 점굽힘 크리프시험을 수행하고 지수법칙의 시간경화식을 적용하여 각종 계수를 구하고 크리프 거동을 간단한 식으로 표현하였다. 유한요소 크리프 해석 결과 하중이 커짐에 따라 수치해석 결과와 실험 결과가 차이가 커지지만 대체적으로 두 결과가 유사한 것을 확인할 수 있었다.

Structural performance of GFRP-concrete composite beams

  • Yang, Yong;Xue, Yicong;Zhang, Tao;Tian, Jing
    • Structural Engineering and Mechanics
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    • 제68권4호
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    • pp.485-495
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    • 2018
  • This paper presents the results of an experimental study on the structural performance of an innovative GFRP-concrete composite beam construction, which is reinforced with longitudinal GFRP pultruded box-profile and transverse steel stirrups. GFRP perfobond (PBL) shear connectors are employed to enhance the bonding performance between the GFRP profile and the concrete portion. To investigate the shear and flexural performance of this composite system, eight specimens were designed and tested under three-point and four-point bending. The main variables were the height of the composite beam and the shear span-to-depth ratio. The test results indicated that bonding cracks did not occur at the interface between the GFRP profile and the concrete until the final stage of the test. This shows that the specimens performed well as composite beams during the test and that the GFRP PBL connectors were reliable. Based on the test results, two calculation methods were used to determine the flexural and shear capacity of the composite beams. A comparative study of the test and theoretical results suggests that the proposed methods can reasonably predict both the flexural and shear capacities of the specimens, whereas the provisions of ACI 440 are relatively conservative on both counts.

Effect of Titanium Surface Treatments Bond Strength and Cytotoxicity in Titanium-Porcelain System

  • 정인성
    • 대한의생명과학회지
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    • 제14권2호
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    • pp.105-113
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    • 2008
  • The objective of this study was to evaluate the influence of surface modifications on the bonding characteristics and cytotoxicity of specific titanium porcelain bonded to milling titanium and cast titanium. Milling titanium and cast titanium samples were divided into 8 test groups. These groups are as follow: i) sandblasted with particles of different size of $220{\mu}m\;and\;50{\mu}m$, ii) different sequences of sandblasting treatment and etching treatment, iii) etched with different etching solutions, and iv) preheated or not. The surface characteristics of specimens were characterized by the test of mean roughness of surface and SEM. The bond strength of titanium-ceramic systems was measured by using three-point bending test and SEM. The results show that the mean roughness of surface of sample sandblasted with $220{\mu}m$ aluminum oxide increased and bond strength were higher than sample sandblasted with $50{\mu}m$ aluminum oxide. The mean roughness of surface decreased, but the bond strength increased when the samples sandblasted with $220{\mu}m$ aluminum oxide were preheated. The sample sandblasted with $220{\mu}m$ aluminum oxide after oxidized with occupational corrosive agent I (50% NaOH, 10% $CuSO_4{\cdot}5H_2O$) and II (35% $HNO_3$, 5% HF) showed higher bond strength than sample oxidized with 30% $HNO_3$ after sandblasted with $220{\mu}m$ aluminum oxide. Group NaCuNF220SP (milling Ti: 35.3985 MPa, casting Ti: 37.2306 MPa) which was treated with occupational corrosive agent I (50% NaOH, 10% $CuSO_4{\cdot}5H_2O$) and II (35% $HNO_3$, 5% HF), followed by sandblasting with $220{\mu}m$ aluminum oxide and preheating at $750^{\circ}C$ for 1 hour showed the highest bond strength and significant differences (P<0.05). The method for modifying surface of titanium showed excellent stability of cells.

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UHPC 충전형 상현재를 활용한 트러스 데크플레이트 시스템 시공단계 구조성능 평가 (Structural Performance of a New Truss Deckplate System with UHPC Infilled Top Chords in Construction Stage)

  • 손홍준;김영호;김대진
    • 한국전산구조공학회논문집
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    • 제33권2호
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    • pp.137-144
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    • 2020
  • 본 논문에서는 시공단계에서 서포트가 필요 없는 UHPC 충전형 상현재를 활용한 트러스 데크플레이트 시스템을 제안하고자 한다. 제안된 시스템은 기존의 시스템과 동일한 절대 층고를 유지하면서 증대된 강성과 강도를 보유하며 효과적으로 처짐을 제어한다. 제안된 시스템 및 기존의 시스템의 구조 성능을 평가하기 위해 4.6m의 순 스팬을 갖는 5개의 실험체를 제작하였고 점진적으로 하중을 증가시키며 4점 휨 실험을 수행하였다. 실험을 토대로 실험체별 하중-처짐 그래프를 도출하였고 변수에 따른 비교 및 분석을 진행하였다. 그리고 실험을 기준으로 수행한 비선형 3차원 유한요소해석결과와의 비교를 진행하였다. 비교 및 분석 결과, 기존의 트러스 데크플레이트를 제외한 모든 실험체들이 시공단계 하중에서 건축구조설계기준 및 강구조설계기준에서 제한하는 처짐 기준을 만족하였으며, 실험과 유한요소해석의 결과가 서로 유사한 것을 확인하였다.

전부도재교의치의 코어재료에 따른 파절강도 관찰 (Observation of Fracture Strengths According to the Core Materials for All Ceramic Bridge)

  • 정인성;김치영
    • 대한치과기공학회지
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    • 제32권4호
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    • pp.351-356
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    • 2010
  • Purpose: The purpose of this study was to evaluate the fracture strength between the core and veneering ceramic according to 2 core materials, In-Ceram Alumina and In-Ceram Zirconia, fabricated by electro ceramic layering technique. 2 different fixed partial denture cores of three units were veneered by veneering ceramic(Ceranion, Noritake) (n=10). Methods: The fracture strengths between the core and veneering ceramic were measured through the 3 point bending test. The interfaces between the core and veneering ceramic were observed with the X-ray dot mapping of EPMA. Results: The result of fracture strength was observed that IZP group, In-Ceram Zirconia core, had higher fracture strength. IPA group, In-Ceram Alumina core, had fracture strength of 359.9(${\pm}$86.2) N. IZP group, In-Ceram Zirconia core, had fracture strength of 823.2(${\pm}$243.0) N. X-ray dot mapping observation showed that a major element in the core and veneering ceramic of IPA group was alumina and silica, respectively. No binder was observed in interfaces between the core and veneering ceramic, and no ion diffusion or transition was observed between the core and veneering ceramic. However, apparent ion diffusion or transition was observed between the core and veneering ceramic of IZP group.

J-Integral Evaluation of Concrete Fracture Characteristics

  • Choi, Sin-Ho;Kye, Hae-Ju;Kim, Wha-Jung
    • International Journal of Concrete Structures and Materials
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    • 제18권3E호
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    • pp.183-189
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    • 2006
  • Many researchers have recently proposed various parameters, variables of models and experimental methods to evaluate fracture properties of concrete, and their developments allow us to analyze the non-linear and quasi-brittle fracture mechanisms. This paper presents a brief treatment of the fracture parameters. Additionally, three-point bending tests were conducted to compare J-integral($J_{Ic}$) with other parameters($K_{Ic},\;G_{Ic},\;and\;G_F$). The change in parameter values with respect to the width and notch length of concrete beam specimens was also considered. The load-displacement curves were used to measure the concrete fracture toughness experimentally. From the results of experiment, it was found that the value of $G_F\;and\;J_{Ic}$ decreased as the notch depth increased and that $G_F$ was less sensitive than $J_{Ic}$. Therefore, the former, $G_F$, is more appropriate in using it as the concrete fracture toughness parameter. The values of $G_F\;and\;J_{Ic}$ increased when the width of concrete specimens increasing from 75 mm to 150 mm. Thus, the effects of the specimen width should be considered in determining the fracture toughness of concrete.

철근콘크리트 보의 성능개선을 위한 Hybrid FRP 보강재 연구 (Studying on the Hybrid FRP Stiffener for the Performance Improvement of Strengthened RC Beam)

  • 안미경;이상문;정우영
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.243-244
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    • 2010
  • 철근콘크리트 보의 휨 보강을 위하여 활용되는 재료는 매우 다양하다. FRP의 경우 우수한 무게-강성비 및 시공성을 바탕으로 최근 활발히 활용되어지고 있다. 그러나 이들 FRP 휨 보강재의 활용에 있어 취성적 재료특성은 실제 현장적용에 있어 콘크리트 박리파괴 유발 및 단부 부착파괴의 주요 원인으로 고려되어지고 있다. 따라서 본 연구에서는 이들 FRP 휨 보강재의 연성적 거동을 개선하기위하여 복합재료 구성요소 중 Fiber의 적층면적 중 일부분을 알루미늄 재료로 대체하여 휨 보강재로서의 구조적 성능을 조사하였다. 연성보강 fiber로는 얇은 두께의 알루미늄이 고려되었으며 다양한 배합설계 조건이 본 연구에서 수행되었다. 최종적으로 알루미늄 삽입 보강재 제작에 따른 연성개선 및 에너지 저장효과에 대한 결과들을 실험을 통하여 연구하였다.

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Vibration analysis of a Timoshenko beam carrying 3D tip mass by using differential transform method

  • Kati, Hilal Doganay;Gokdag, Hakan
    • Structural Engineering and Mechanics
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    • 제65권4호
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    • pp.381-388
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    • 2018
  • Dynamic behaviour of beam carrying masses has attracted attention of many researchers and engineers. Many studies on the analytical solution of beam with concentric tip mass have been published. However, there are limited works on vibration analysis of beam with an eccentric three dimensional object. In this case, bending and torsional deformations of beam are coupled due to the boundary conditions. Analytical solution of equations of motion of the system is complicated and lengthy. Therefore, in this study, Differential Transform Method (DTM) is applied to solve the relevant equations. First, the Timoshenko beam with 3D tip attachment whose centre of gravity is not coincident with beam end point is considered. The beam is assumed to undergo bending in two orthogonal planes and torsional deformation about beam axis. Using Hamilton's principle the equations of motion of the system along with the possible boundary conditions are derived. Later DTM is applied to obtain natural frequencies and mode shapes of the system. According to the relevant literature DTM has not been applied to such a system so far. Moreover, the problem is modelled by Ansys, the well-known finite element method, and impact test is applied to extract experimental modal data. Comparing DTM results with finite element and experimental results it is concluded that the proposed approach produces accurate results.

섬유기기용 $Al_2O_3$계 세라믹스의 균열치유거동 (Crack-Healing Behavior of $Al_2O_3$ Ceramics for Textile Machinery)

  • 안병건;김미경;안석환;김진욱;박인덕;남기우
    • 동력기계공학회지
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    • 제10권1호
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    • pp.60-64
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    • 2006
  • Alumina ceramic for textile machinery was sintered and subjected to three-point bending. A semicircular surface crack was made on each sample. Crack-healing behavior was systematically studied, as a function of crack-healing temperature and crack size. The bending strength and fracture toughness of the crack-healed sample from $1200^{\circ}C\;to\;1400^{\circ}C$ were investigated. A statistical approach based on Weibull distribution was applied to the test data to evaluate the dispersion in the fracture toughness. Alumina ceramic for textile machinery have the ability to heal after cracking, from over $1300^{\circ}C$. The material can completely heal a $65{\mu}m$ diameter semielliptical crack. The fracture toughness could be explained by 2-parameter Weibull distribution.

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Performance of concrete structures with a combination of normal SCC and fiber SCC

  • Farhang, Kianoosh;Fathi, Hamoon
    • Computers and Concrete
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    • 제20권6호
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    • pp.655-661
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    • 2017
  • Fiber reinforced concretes exhibit higher tensile strength depending on the percent and type of the fiber used. These concretes are used to reduce cracks and improve concrete behavior. The use of these fibers increases the production costs and reduces the compressive strength to a certain extent. Therefore, the use of fiber reinforced concrete in regions where higher tensile strength is required can cut costs and improve the overall structural strength. The behavior of fiber reinforced concrete and normal concrete adjacent to each other was investigated in the present study. The concrete used was self-compacting and did not require vibration. The samples had 0, 1, 2 and 4 wt% polypropylene fibers. 15 cm sample cubes were subjected to uniaxial loads to investigate their compressive strength. Fiber Self-Compacting Concrete was poured in the mold up to 0, 30, 50, 70 and 100 percent of the mold height, and then Self-Compacting Concrete without fiber was added to the empty section of that mold. In order to investigate concrete behavior under bending moment, concrete beam samples with similar conditions were prepared and subjected to the three-point bending flexural test. The results revealed that normal Self-Compacting Concrete and Fiber Self-Compacting Concrete may be used in adjacent to each other in structures and structural members. Moreover, no separation was observed at the interface of Fiber Self-Compacting Concrete and Self-Compacting Concrete, either in the cubic samples under compression or in the concrete beams under bending moment.