• 제목/요약/키워드: wheel load

검색결과 527건 처리시간 0.027초

제철 슬래그 골재를 이용한 SMA 혼합물의 역학적 특성 (The Mechanical Properties of SMA Concrete Mixture Using Steel Slag Aggregate)

  • 김혁중;나일호
    • 한국건설순환자원학회논문집
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    • 제9권1호
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    • pp.109-116
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    • 2021
  • 본 연구에서는 제철소에서 발생되는 전기로 산화슬래그로써 제철 슬래그 골재를 사용한 SMA 혼합물에 대한 역학적 특성을 평가하였다. 실험 변수는 일반골재와 제철 슬래그 골재 10mm 및 13mm이다. 슬래그 골재의 기본 물성과 품질(비중, 흡수율등)은 KS기준을 만족하였다. 아스팔트콘크리트 혼합물의 역학적 실험을 수행한 결과, 슬래그 골재 혼합물은 최적아스팔트 함량이 일반 골재 혼합물 대비 낮게 도출되었으나 다른 품질 기준은 모두 만족하였다. 제철 슬래그 골재 혼합물이 일반 골재 혼합물 대비 다소 높은 값으로 측정되었고, 모든 시편에서 동적안정도 시험은 2,000pass/mm 기준을 만족하였다. 또한, 제철 슬래그 골재 혼합물의 회복탄성계수는 일반 골재를 사용한 혼합물에 비해 개선된 값을 나타내었다. 이에, 하중 재하 이후 회복하는 속도가 향상되어 차량의 반복적 통행하중에 따른 공용성능 개선 효과가 있을 것으로 판단된다.

변동형 대차 구동방식의 지압 침대 개발 및 유효성 평가 (Development and Effectiveness Evaluation of Acupressure Bed with Variable Type Bogie)

  • 허성필;박세진;안도현
    • 한국산업정보학회논문지
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    • 제25권6호
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    • pp.47-54
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    • 2020
  • 지압은 신체의 특정 부위에 압력을 가하는 치료행위로 주로 한의학 분야에서 통증 경감에 활용되어 왔다. 하지만 시술자의 역량, 경험, 체력에 따라 치료 효과가 달라지는 경우가 많아 표준화된 지압이 필요하며 관련하여 기구가 출시되고 있으나 주로 롤링 마사지 방식이어서 에너지 집중도가 떨어지며 부상의 위험성이 있었다. 따라서 본 연구에서는 변동형 대차를 기반으로 수직 지압을 제공하는 장치를 구현하였다. 장치의 지압력 유효성 확인을 위해 하중 실험 및 체압 분포, 만족도를 실험한 결과 지압봉은 150kg까지 버티며, 체압비는 0 % < x ≤ 5% 구간에서 비교품의 체압 비율에 비해 낮게 측정되었으며, 또한 주관적 만족도는 평균 2.11점의 높은 점수를 받았다. 따라서 수직 지압이 적용된 장치가 기존 제품과 비교하면 체압 분산에 효과가 있었으며 만족도가 높다고 볼 수 있었다. 향후 연구에서는 수직 지압 사용 그룹과 전문 치료사의 지압 그룹을 구성하여 개발 기기가 사람에 비해 균일한 지압을 제공하는지 비교 평가할 필요가 있다.

Dynamic analysis of a coupled steel-concrete composite box girder bridge-train system considering shear lag, constrained torsion, distortion and biaxial slip

  • Li Zhu;Ray Kai-Leung Su;Wei Liu;Tian-Nan Han;Chao Chen
    • Steel and Composite Structures
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    • 제48권2호
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    • pp.207-233
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    • 2023
  • Steel-concrete composite box girder bridges are widely used in the construction of highway and railway bridges both domestically and abroad due to their advantages of being light weight and having a large spanning ability and very large torsional rigidity. Composite box girder bridges exhibit the effects of shear lag, restrained torsion, distortion and interface bidirectional slip under various loads during operation. As one of the most commonly used calculation tools in bridge engineering analysis, one-dimensional models offer the advantages of high calculation efficiency and strong stability. Currently, research on the one-dimensional model of composite beams mainly focuses on simulating interface longitudinal slip and the shear lag effect. There are relatively few studies on the one-dimensional model which can consider the effects of restrained torsion, distortion and interface transverse slip. Additionally, there are few studies on vehicle-bridge integrated systems where a one-dimensional model is used as a tool that only considers the calculations of natural frequency, mode and moving load conditions to study the dynamic response of composite beams. Some scholars have established a dynamic analysis model of a coupled composite beam bridge-train system, but where the composite beam is only simulated using a Euler beam or Timoshenko beam. As a result, it is impossible to comprehensively consider multiple complex force effects, such as shear lag, restrained torsion, distortion and interface bidirectional slip of composite beams. In this paper, a 27 DOF vehicle rigid body model is used to simulate train operation. A two-node 26 DOF finite beam element with composed box beams considering the effects of shear lag, restrained torsion, distortion and interface bidirectional slip is proposed. The dynamic analysis model of the coupled composite box girder bridge-train system is constructed based on the wheel-rail contact relationship of vertical close-fitting and lateral linear creeping slip. Furthermore, the accuracy of the dynamic analysis model is verified via the measured dynamic response data of a practical composite box girder bridge. Finally, the dynamic analysis model is applied in order to study the influence of various mechanical effects on the dynamic performance of the vehicle-bridge system.

공용중인 경전철 직결 궤도 콘크리트 도상블록의 보강 방안 연구 (A Study on Reinforcement Method of Concrete Block for Direct Fixation Tracks on Serviced Light Rail Transit)

  • 최정열;강유송;안대희;한재민;정지승
    • 문화기술의 융합
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    • 제9권3호
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    • pp.633-640
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    • 2023
  • 본 연구는 운행선 경전철 직결식 궤도 부설구간에서 발생한 도상블록의 변위거동 특성을 분석하여 적정 보강 방안을 도출하고자 현장조사를 바탕으로 한 수치해석을 수행하였다. 본 연구의 대상선로는 교량상 급곡선 직결식 콘크리트 궤도로서 교량바닥판에 부설된 도상블록이 종방향 및 횡방향으로 이동하는 문제가 발생하여 이에 대한 메커니즘을 분석하였다. 본 연구에서는 3D Solid요소를 이용한 궤도구조 모델링을 바탕으로 운행하중 조건에서 발생가능한 직결식 궤도의 거동을 분석하고 다양한 보강방안에 대한 보강효과를 해석적으로 분석하였다. 도상블럭의 보강 전, 후 횡변위 분석결과, 극한 횡압 작용 시 보강 후 최대 횡변위는 보강 전 대비 약 3% 수준(약 0.1mm)으로 크게 감소하는 것으로 분석되었다. 또한 채움 모르타르, 교량 바닥판, 보강철근의 발생응력 검토결과, 모두 2.6 이상의 충분한 안전율을 확보하는 것으로 분석되어 보강방안에 대한 최적 조건을 도출하였다. 따라서 본 연구에서 검토한 앵커링 보강 수량 및 대칭형 앵커배치는 도상블록 횡방향 변위 발생 제어 및 교량, 도상블록의 구조적 건전성 확보에 효과적일것으로 판단된다.

동력경운기의 경사지견인 및 주행특성에 관한 연구 (II)-동력경운기-트레일러계의 욍골동 및 동횡전도한계 (Study on the Travel and Tractive Characteristics of The Two-Wheel Tractor on the General Slope Ground (II)-Dynamic Side-overturn of the Tiller-trailer System-)

  • 송현갑;정창주
    • Journal of Biosystems Engineering
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    • 제3권1호
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    • pp.1-19
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    • 1978
  • Power tiller is a major unit of agricultural machinery being used on farms in Korea. About 180.000 units are introduced by 1977 and the demand for power tiller is continuously increasing as the farm mechanization progress. Major farming operations done by power tiller are the tillage, pumping, spraying, threshing, and hauling by exchanging the corresponding implements. In addition to their use on a relatively mild slope ground at present, it is also expected that many of power tillers could be operated on much inclined land to be developed by upland enlargement programmed. Therefore, research should be undertaken to solve many problems related to an effective untilization of power tillers on slope ground. The major objective of this study was to find out the travelling and tractive characteristics of power tillers being operated on general slope ground.In order to find out the critical travelling velocity and stability limit of slope ground for the side sliding and the dynamic side overturn of the tiller and tiller-trailer system, the mathematical model was developed based on a simplified physical model. The results analyzed through the model may be summarized as follows; (1) In case of no collision with an obstacle on ground, the equation of the dynamic side overturn developed was: $$\sum_n^{i=1}W_ia_s(cos\alpha cos\phi-{\frac {C_1V^2sin\phi}{gRcos\beta})-I_{AB}\frac {v^2}{Rr}}=0$$ In case of collision with an obstacle on ground, the equation was: $$\sum_n^{i=1}W_ia_s\{cos\alpha(1-sin\phi_1)-{\frac {C_1V^2sin\phi}{gRcos\beta}\}-\frac {1}{2}I_{TP} \( {\frac {2kV_2} {d_1+d_2}\)-I_{AB}{\frac{V^2}{Rr}} \( \frac {\pi}{2}-\frac {\pi}{180}\phi_2 \} = 0 $$ (2) As the angle of steering direction was increased, the critical travelling veloc\ulcornerities of side sliding and dynamic side overturn were decreased. (3) The critical travelling velocity was influenced by both the side slope angle .and the direct angle. In case of no collision with an obstacle, the critical velocity $V_c$ was 2.76-4.83m/sec at $\alpha=0^\circ$, $\beta=20^\circ$ ; and in case of collision with an obstacle, the critical velocity $V_{cc}$ was 1.39-1.5m/sec at $\alpha=0^\circ$, $\beta=20^\circ$ (4) In case of no collision with an obstacle, the dynamic side overturn was stimu\ulcornerlated by the carrying load but in case of collision with an obstacle, the danger of the dynamic side overturn was decreased by the carrying load. (5) When the system travels downward with the first set of high speed the limit {)f slope angle of side sliding was $\beta=5^\circ-10^\circ$ and when travels upward with the first set of high speed, the limit of angle of side sliding was $\beta=10^\circ-17.4^\circ$ (6) In case of running downward with the first set of high speed and collision with an obstacle, the limit of slope angle of the dynamic side overturn was = $12^\circ-17^\circ$ and in case of running upward with the first set of high speed and collision <>f upper wheels with an obstacle, the limit of slope angle of dynamic side overturn collision of upper wheels against an obstacle was $\beta=22^\circ-33^\circ$ at $\alpha=0^\circ -17.4^\circ$, respectively. (7) In case of running up and downward with the first set of high speed and no collision with an obstacle, the limit of slope angle of dynamic side overturn was $\beta=30^\circ-35^\circ$ (8) When the power tiller without implement attached travels up and down on the general slope ground with first set of high speed, the limit of slope angle of dynamic side overturn was $\beta=32^\circ-39^\circ$ in case of no collision with an obstacle, and $\beta=11^\circ-22^\circ$ in case of collision with an obstacle, respectively.

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포장가속시험을 이용한 보수형 배수성 포장의 온도저감 효과 및 소성변형 저항특성 연구 (Evaluation of the Temperature Drop Effect and the Rutting Resistance of Moisture Retaining-Porous Asphalt Pavement Using Accelerated Pavement Testing)

  • 곽병석;서영찬;송철영;김주원
    • 한국도로학회논문집
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    • 제11권3호
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    • pp.97-109
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    • 2009
  • 높은 포장온도는 아스팔트포장 소성변형의 주요인이나 소성변형을 줄이기 위한 방안으로서 포장온도를 줄이는 측면에서는 아직 많은 연구가 이루어지지 않은 실정이다. 본 연구에서는 소성변형결함을 줄이기 위한 하나의 대안으로, 온도저감 효과가 있는 것으로 알려져 있는 보수성 포장을 배수성 포장의 하부층에 설치한 포장의 공용특성을 연구하였다. 본 연구의 목적은 보수형 배수성 포장의 온도저감효과를 정량화하고, 포장가속시험(Accelerated Pavement Testing)을 이용하여 온도 저감에 따른 소성변형 감소효과를 확인하고, 정량화하는데 있다. 또한 추가적으로 보수성 포장의 상대강도계수를 분석하고, 일반 포장과 비교하여 설계법 적용시 포장두께를 줄일 수 있는지 여부를 알아보고자 하였다. 본 연구를 위해 보수형 배수성포장 2개 단면 및 일반 배수성 포장 1개 단면 등 총 3개 시험구간이 시공되었다. 히팅 및 살수를 일정주기로 실시하였으며 하중조건은 윤하중 8.2ton, 타이어 공기압 $7.03kgf/cm^2$ 타이어 접지면적 $610cm^2$이었다. 이 연구에서 포장체 온도저감효과는 중간층의 경우 $6.6{\sim}7.9^{\circ}C$(평균$7.4^{\circ}C$), 표층의 경우 $7.9{\sim}9.8^{\circ}C$(평균 $8.8^{\circ}C$)였으며, 이를 통해 포장표면의 소성변형 발생을 26% 감소시킬 수 있었다. 또한 탄성계수로부터 추정된 보수성 포장의 상대강도계수는 0.173으로 일반 밀입도 포장의 1.2배 정도였으며, 일반배수성 포장 구간에서는 표층, 중간층, 기층 모두 소성변형이 발생한데 반해 보수형 배수성 포장 구간에서는 표층에서 대부분의 소성변형이 발생된 것으로 나타났다.

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접착제 도포후 오염된 표면의 처리방법에 따른 복합레진의 전단결합강도와 미세누출 (SHEAR BOND STRENGTH AND MICROLEAKAGE OF COMPOSITE RESIN ACCORDING TO TREATMENT METHODS OF CONTAMINATED SURFACE AFTER APPLYING A BONDING AGENT)

  • 박주식;이석종;문주훈;조영곤
    • Restorative Dentistry and Endodontics
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    • 제24권4호
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    • pp.647-656
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    • 1999
  • The purpose of this study was to investigate the shear bond strength and marginal microleakage of composite to enamel and dentin according to different treatment methods when the applied bonding agent was contaminated by artificial saliva. For the shear bond strength test, the buccal and occlusal surfaces of one hundred twenty molar teeth were ground to expose enamel(n=60) and dentin surfaces(n=60). The specimens were randomly assigned into control and 5 experimental groups with 10 samples in each group. In control group, a bonding system(Scotchbond$^{TM}$ Multi-Purpose plus) and a composite resin(Z-100$^{TM}$) was bonded on the specimens according to manufacture's directions. Experimental groups were subdivided into 5 groups. After polymerization of an adhesive, they were contaminated with at artificial saliva on enamel and dentin surfaces: Experimental group 1 ; artificial saliva was dried with compressed air. Experimental group 2 ; artificial saliva was rinsed with air-water spray and dried. Experimental group 3 ; artificial saliva was rinsed, dried and applied an adhesive. Experimental group 4 ; artificial saliva was rinsed, dried, and then etched using phosphoric acid followed by an adhesive. Experimental group 5, artificial saliva was rinsed, dried, and then etched with phosphoric acid followed by consecutive application of both a primer and an adhesive. Composite resin(Z-100$^{TM}$) was bonded on saliva-treated enamel and dentin surfaces. The shear bond strengths were measured by universal testing machine(AGS-1000 4D, Shimaduzu Co. Japan) with a crosshead speed of 5mm/minute under 50kg load cell. Failure modes of fracture sites were examined under stereomicroscope. The data were analyzed by one-way ANOVA and Tukey's test. For the marginal microleakage test, Class V cavities were prepared on the buccal surfaces of sixty molars. The specimens were divided into control and experimental groups. Cavities in experimental group were contaminated with artificial saliva and those surfaces in each experimental groups received the same treatments as for the shear test. Cavities were filled with Z-100. Specimens were immersed in 0.5% basic fuchsin dye for 24 hours and embedded in transparent acrylic resin and sectioned buccolingually with diamond wheel saw. Four sections were obtained from the one specimen. Marginal microleakages of enamel and dentin were scored under streomicroscope and averaged from four sections. The data were analyzed by Kruskal-Wallis test and Fisher's LSD. The results of this study were as follows. 1. The shear bond strength to enamel showed lower value in experimental group 1(13.20${\pm}$2.94MPa) and experimental group 2(13.20${\pm}$2.94MPa) than in control(20.03${\pm}$4.47MPa), experimental group 4(20.96${\pm}$4.25MPa) and experimental group 5(21.25${\pm}$4.48MPa) (p<0.05). 2. The shear bond strength to dentin showed lower value in experimental group 1(9.35${\pm}$4.11MPa) and experimental group 2(9.83${\pm}$4.11MPa) than in control group(17.86${\pm}$4.03MPa), experimental group 4(15.04${\pm}$3.22MPa) and experimental group 5(14.33${\pm}$3.00MPa) (p<0.05). 3. Both on enamel and dentin surfaces, experimental group 1 and 2 showed many adhesive failures, but control and experimental group 3, 4 and 5 showed mixed and cohesive failures. 4. Enamel marginal microleakage was the highest in experimental group 1 and there was a significant difference in comparison with other groups (p<0.05). 5. Dentin marginal microleakages of experimental group 1 and 2 were higher than those of other groups (p<0.05). This result suggests that treatment methods, re-etching with 35% phosphoric acid followed by re-application of adhesive or repeating all adhesive procedures, will produce good effect on both shear bond strength and microleakage of composite to enamel and dentin if the polymerized bonding agent was contaminated by saliva.

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