• 제목/요약/키워드: Compression load

검색결과 1,352건 처리시간 0.033초

Shear resistance behaviors of a newly puzzle shape of crestbond rib shear connector: An experimental study

  • Chu, Thi Hai Vinh;Bui, Duc Vinh;Le, Van Phuoc Nhan;Kim, In-Tae;Ahn, Jin-Hee;Dao, Duy Kien
    • Steel and Composite Structures
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    • 제21권5호
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    • pp.1157-1182
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    • 2016
  • A newly puzzle shape of crestbond rib shear connector is a type of ductile perfobond rib shear connector. This shear connector has some advantages, including relatively easy rebar installation and cutting, as well as the higher shear resistance strength. Thus, this study proposed a newly puzzle shape of crestbond rib with a "${\mho}$" shape, and its shear resistance behaviors and shear strengths were examined using push-out tests. Five main parameters were considered in the push-out specimens to evaluate the effects of shear resistance parameters such as the dimensions of the crestbond rib, transverse rebars in the crestbond dowel, concrete strength, rebar strength, and dowel action on the shear strength. The shear loading test results were used to compare the changes in the shear behaviors, failure modes, and shear strengths. It was found that the concrete strength and number of transverse rebars in the crestbond rib were significantly related to its shear resistance. After the initial bearing resistance behavior of the concrete dowel, a relative slip occurred in all the specimens. However, its rigid behavior to shear loading decreased the ductility of the shear connection. The cross-sectional area of the crestbond rib was also shown to have a minor effect on the shear resistance of the crestbond rib shear connector. The failure mechanism of the crestbond rib shear connector was complex, and included compression, shear, and tension. As a failure mode, a crack was initiated in the middle of the concrete slab in a vertical direction, and propagated with increasing shear load. Then, horizontal cracks occurred and propagated to the front and rear faces of the specimens. Based on the results of this study, a design shear strength equation was proposed and compared with previously suggested equations.

후방 요추 극돌기간 유동적 오메가형 스프링 고정재의 역학적 평가 (Mechanical Evaluation of Posterior Dynamic Omega-wire Stabilization System)

  • 이연수;송근수
    • 대한기계학회논문집B
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    • 제36권11호
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    • pp.1099-1104
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    • 2012
  • 본 연구에서는 새로운 후방요추간체의 고정재로서 뼈에 나사를 삽입고정하지 않고 후방요추간체에 걸어 시술하는 형상기억합금을 이용한 오메가형 스프링 유동적 고정재의 기계적 변형특성을 평가하였다. 사용된 오메가와형 스프링 고정재에 대해 인장, 압축, 동적피로시험을 실시하였다. 또한, 기존에 시판 중인 후방요추간체에 나사를 삽입하여 시술되는 나선형 스프링 유동적 고정재와 함께 유한요소방법을 이용하여 허리를 굽힐 때 가해지는 굽힘에 대한 변형해석을 실시하였다. 오메가형 스프링 고정재의 양단 고리중심간 거리가 60 mm인 시편의 평균 극한 인장하중은 3981.7 N, 평균 극한 압축하중은 535.6 N으로 나타났으며, 5 Hz의 반복주기로 10 N/1N의 압축피로하중을 가할 경우 5백만회 반복하는 동안 파단 없이 8~9 mm의 압축변위가 발생하였다. FEA 결과에서 보면 오메가형 스프링 고정재가 나선형 스프링 고정재보다 허리 굽힘에 대해 유연한 변형특성을 보였다.

충격 손상을 받은 항공기용 복합재료의 압축잔류강도 평가 (Evaluation of Compressive Residual Strength in Composite Material Under Impact Damage)

  • 안상수;홍석우;구재민;석창성
    • 대한기계학회논문집A
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    • 제37권4호
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    • pp.503-509
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    • 2013
  • 탄소섬유강화 복합재료는 일반적으로 압축하중과 재료의 면에 수직한 방향의 충격에 매우 취약하다는 단점을 가지고 있다. 특히 항공기의 운항 중 조류와의 충돌이나 정비 중 공구의 낙하로 인한 충격손상은 항공기 구조물의 강도저하의 원인이 된다. 따라서 본 연구에서는 복합재료(CFRP) 시험편에 충격에너지와 충격자 직경을 변화시키면서 충격손상을 가한 후 압축시험을 수행하여 충격후 압축잔류강도를 평가하였으며, 시험 결과를 비교하여 충격에너지에 따른 충격후 압축잔류강도 예측식을 제안하였다.

벼의 리올러지 특성(特性)(I) -곡립(穀粒)의 응력이완(應力弛緩)- (Rheological Properties of Rough Rice(I) -Stress Relaxation of Rough Rice Kernel-)

  • 김만수;김성래;박종민
    • Journal of Biosystems Engineering
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    • 제15권3호
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    • pp.207-218
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    • 1990
  • Grains display characteristics of both elastic bodies and viscous fluids when they are subjected to mechanical treatments in harvesting, handling, and processing. This viscoelastic behavior of grains when mechanically stressed must be fully understood to establish maximum machine efficiency and have a minimum degree of grain damage and the highest quality of the final product. The studies were conducted to examine the effect of the moisture content, the loading rate and the initial deformation on the stress relaxation behavior of whole kernel of rough rice, and develop the rheological model to represent its stress relaxation behavior. The following results were obtained from the study. 1. Moisture content had the greatest influence on the initial portion of the relaxation curve. With elapsing time the lower moisture content resulted in the lower residual stress for the Japonica-type rough rice and vice versa for the Indica-type rough rice. But within the ranges of moisture content tested, the degree of stress relaxation per unit strain on the Indica-type rough rice was a little higher than those on the Japonica-type rough rice. 2. The slower loading rate resulted in less initial stress. The decreasing trend of residual stress for all the samples tested with increasing loading rate was shown. 3. The higher initial deformation for all the samples resulted in less initial stress. The increasing of amount of stress relaxation per unit strain with increase of initial stress indicated that viscoelastic properties of rough rice depended not only upon duration of load applied but also initial stress applied. This means that rough rice is nonlinear viscoelastic material. 4. The compression stress relaxation properties of rough rice kernel can be described by a generalized Maxwell model representing by the Maxwell elements.

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고강도 콘크리트를 사용한 각형 CFT 기둥의 축력-모멘트 상관곡선 (P-M Interaction Curve for Square CFTs with High-Strength Concrete)

  • 최영환;김강수;최성모;이상섭
    • 한국강구조학회 논문집
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    • 제19권6호
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    • pp.575-585
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    • 2007
  • 본 논문은 55 MPa 이하 강도의 콘크리트를 사용한 CFT 기둥에 대한 P-M 상관곡선을 제안한 선행연구의 후속연구로서, 2005 AISC에서 새롭게 포함된 55 MPa 이상의 고강도 콘크리트를 사용한 정방형 CFT 기둥의 P-M 설계식을 제안하였다. 선행연구에서 제안한 개념을 적용하여 고강도 콘크리트를 사용한 CFT에서의 최대모멘트와 최대모멘트시의 압축력을 구하기 위해 강관의 폭두께비(b/t)와 강관의 항복강도에 대한 콘크리트의 상대강도(fck/Fy)를 중요 변수로 총 36개의 대상단면을 선정하여 Fiber Analysis를 통한 변수해석을 수행하였다. 강관의 응력-변형율 관계는 완전탄소성으로 가정하였고 콘크리트는 고강도 콘크리트에 적용가능한 Sakino의 모델을 이용하였다. 변수해석으로부터 얻어진 결과로부터 상기의 두 변수를 이용하여 고강도 콘크리트를 사용한 각형 CFT 기둥의 설계에 쉽게 사용할 수 있는 설계식을 제안하였다. 기존의 실험결과와 비교한 결과 본 논문에서 제시하는 방법은, 2005 AISC에서 제시하는 방법에 비해 보다 더 쉽고 간단하게 사용될 수 있는 것으로 나타났다.

반복하중,온도변화 및 초기조건이 충적점토의 구조변화와 역학적 특성에 미치는 영향 (Influence of Repeated Loading, Alternation of Temperature and Initial Condition on the Change of Strizctural and Mechanical Characteristics of Alluvial Clayey Soil)

  • 유능구;유영선;최중대;김기성
    • 한국농공학회지
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    • 제34권4호
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    • pp.69-79
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    • 1992
  • To estimate soil behavior and structural characteristics under the conditions of cyclic loading, freezing & thawing and initial state, several testing was performed and obtained following results. 1.After repeated freezing and thawing processes, original soil structure was destroyed and changed to globular structure from honeycomb or tube in its structure types. Also above processes resulted increasing the soil compression strain while decreasing the failure stress in stress-strain relationship and reached the soil structure into the mode of brittle fracture. Under cyclic loading conditions, soil cluster which was originally dispersed structure colloided with each other, seperated, and finally the soil failed due to the effect of overcompaction. 2.Through the stabilization processes seperated by four steps, the structure of soil skeleton was changed to quite different globular type. The degree of compressibility of soil was decreased in the normally consolidated zone, while the strength against external load increased due to soil particle stabilization. 3.Soil stress-strain chracteristics were largely influenced by repeated up and down processes of temperature. The maximum deformation was obtained in the case of temperature between 0 10˚C by the reseon of particle cluster reformation. 4.Soil compressibility was largely influenced by the optimum moisture content. Under freezing process, swelling could be found and its magnitude was proportional to the density of soil. 5.Density of soil was decreased as increasing the number or repeated freezing and thawing processes and the largest decreasing rate was found at the first turning point from freezing to thawing cycle.

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개량형 격자지보재의 성능 평가 (Evaluation of the performance for the reformed lattice girders)

  • 김학준;배규진;김동규
    • 한국터널지하공간학회 논문집
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    • 제15권3호
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    • pp.201-214
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    • 2013
  • 격자지보재는 기존의 H형강 지보재를 대체하여 현재 국내의 터널현장에서 널리 사용되고 있다. 그러나 격자지보재는 H형강 지보재에 비하여 강성이 떨어지며 이음부를 연결하는 용접에 만전을 기해야 한다는 단점이 있다. 이러한 문제를 개선하기 위하여 연결용 부재가 추가되고 용접부위를 편평하게 만든 개량형 격자지보재가 국내 기술에 의하여 개발되었다. 본 연구에서는 기존 격자지보와 개량형 격자지보에 대한 실내시험 및 현장계측을 수행하여 개량형 격자지보의 성능을 평가하였다. 실내 압축시험결과에 의하면 개량형 격자지보가 기존 격자지보에 비하여 약 16% 정도 큰 지지하중을 보였다. 현장 계측 결과에 의하면 개량형 격자지보가 기존 격자지보보다 강봉의 휨이 적게 발생하여 터널의 안정성 측면에서 더 우수하였다.

Experimental study on standard and innovative bolted end-plate beam-to-beam joints under bending

  • Katula, Levente;Dunai, Laszlo
    • Steel and Composite Structures
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    • 제18권6호
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    • pp.1423-1450
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    • 2015
  • The paper presents the details and results of an experimental study on bolted end-plate joints of industrial type steel building frames. The investigated joints are commonly used in Lindab-Astron industrial buildings and are optimized for manufacturing, erection and durability. The aim of the research was to provide an experimental background for the design model development by studying load-bearing capacity of joints, bolt force distribution, and end-plate deformations. Because of the special joint details, (i.e., joints with four bolts in one bolt-row and HammerHead arrangements), the Eurocode 3 standardized component model had to be improved and extended. The experimental programme included six different end-plate and bolt arrangements and covered sixteen specimens. The steel grade of test specimens was S355, the bolt diameter M20, whereas the bolt grade was 8.8 and 10.9 for the two series. The end-plate thickness varied between 12 mm and 24 mm. The specimens were investigated under pure bending conditions using a four-point-bending test arrangement. In all tests the typical displacements and the bolt force distribution were measured. The end-plate plastic deformations were measured after the tests by an automatic measuring device. The measured data were presented and evaluated by the moment-bolt-row force and moment-distance from centre of compression diagrams and by the deformed end-plate surfaces. From the results the typical failure modes and the joint behaviour were specified and presented. Furthermore the influence of the end-plate thickness and the pretension of the bolts on the behaviour of bolted joints were analysed.

무기계 바인더를 이용한 탄소저감형 흙포장의 성능평가 (Performance Evaluation of Carbon-Reducing Soil Pavement using Inorganic Binder)

  • 유지형;곽기봉;김대성
    • 한국도로학회논문집
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    • 제17권6호
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    • pp.19-26
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    • 2015
  • PURPOSES : This study intends to develop an inorganic soil pavement material using industrial by-products and to evaluate its applicability as a road pavement material. METHODS : In this study, a compressive strength experiment was conducted based on the NaOH solution molarity and water glass content to understand the strength properties of the soil pavement material according to the mixing ratio of alkali activator. In addition, the strength characteristic of the inorganic soil pavement material was analyzed based on the binder content. The performance of the soil pavement was evaluated by conducing an accelerated pavement test and a falling weight deflectometer (FWD) test. RESULTS : As a result of the soil pavement material test based on the mixture ratio of alkali activator, it was identified that the activator that mixed a 10 M NaOH solution to water glass in a 5:5 ratio is appropriate. As a result of the inorganic soil pavement materials test based on the binder content, the strength development increased sharply when the amount of added binder was over 300 kg; this level of binder content satisfied 28 days of 18 MPa of compression strength, which is the standard for existing soil pavement design. According to the measured results of the FWD test, the dynamic k-value did not show a significant difference before or after the accelerated pavement testing. Furthermore, the effective modulus decreased by approximately 50%, compared with the initial effective modulus for pedestrian pavement. CONCLUSIONS : Based on these results, inorganic soil pavement can be applied by changing the mixture proportions according to the use of the pavement, and can be utilized as road pavement from light load roads to access roads.

Al5052/CFRP 복합소재의 표면특성이 접착성과 기계적특성에 미치는 영향 (Effect of Surface Roughness of Al5052/CFRP Composites on the Adhesion and Mechanical Properties)

  • 이민식;김현호;강충길
    • Composites Research
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    • 제26권5호
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    • pp.295-302
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    • 2013
  • 본 연구에서는 차량용 Al5052/CFRP 복합재를 U-채널 몰드에서 컴프레션 몰딩 공정을 통해 제작하였다. Al5052는 샌드블라스팅을 통해 표면처리를 하였다. 표면처리를 하지 않은 판재와 표면거칠기(Ra)가 $1.85{\mu}m$ 및, $4.25{\mu}m$인 Al5052판재를 이용하여 실험을 수행하였다. 표면거칠기가 Al5052/CFRP 복합재의 접착성과 기계적 특성에 대한 영향을 전단시험과 굽힘실험을 통하여 평가하였다. 전단 시험에서는 표면거칠기가 $1.85{\mu}m$$4.25{\mu}m$ 시험편이 표면처리를 하지 않은 시험편보다 각각 3, 5배의 전단강도의 증가를 보였다. 굽힘시험에서는 표면처리를 하지 않았을 때 굽힘강도가 200 MPa에서 표면처리 후 400 MPa로 증가함을 알 수 있었다.