• Title/Summary/Keyword: concrete track

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Analysis of Roadbed Performance Corresponding with 400km/h Speed Increase of HSR (고속 증속에 따른 노반구조의 요구수준 분석)

  • Choi, Chan-Yong;Eum, Ki-Young;Lee, Seung-Hyeok
    • Proceedings of the KSR Conference
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    • 2011.10a
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    • pp.2479-2486
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    • 2011
  • Honam's high speed railway line that was designed as the most suitable with corresponding 350km/h for concrete track will be scheduled train operation in 2015. In this study, It was reviewed the performance level of standardized design section for the soil structure with 350km/h and also analyzed the demand level for roadbed structure corresponding with 400km/h speed up of HSR.

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An Experimental Study for Determination of the Paved Track Structure (포장궤도 구조 결정을 위한 실험적 연구)

  • Shim Nak-Hoon;Lee Il-Hwa;Park Young-Suk
    • Proceedings of the KSR Conference
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    • 2004.06a
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    • pp.1026-1032
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    • 2004
  • The objective of this study is to confirm the field application of coarse aggregates technology mixtured with high strength mortar under the rail. In the present study, the field tests are performed to find the field state and aggregate gradations and the laboratory tests are performed to find the compressive strength of the pre packed concrete cylinder specimens and the core specimens obtained at the field.

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A Study on a Mutual Relation of Cant Deficiency/Rail Wear in Metro Lines (부족캔트량과 레일마모의 상관관계 고찰)

  • 홍철기;양신추;김연태
    • Proceedings of the KSR Conference
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    • 2001.10a
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    • pp.481-487
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    • 2001
  • In this study, the relation between cant deficiency(C') and rail wear in Seoul Metro Line 5 with STEDEF track structure(concrete bed) is studied. As a result, it is found that cant deficiency have a direct influence on rail wear, and under the condition that other negative effects are neglected, the cant deficiency in Metro Lines is demanded to set as little as possible.

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Temperature Effect on Pavement Types of Bimodal Tram Dedicated Lane (바이모달 트램 전용선로 포장 형태에 따른 온도의 영향)

  • Park, Young-Kon;Yoon, Hee-Taek;Mok, Jai-Kyun;Kim, Ryang-Gyun
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.2107-2112
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    • 2010
  • To analyze the effect of temperature on pavement types of dedicated lane, we have performed a temperature monitoring for pavements which were constructed in test track for Bimodal Tram. These pavements classified into four types; natural and artificial lawn, concrete and asphalt. Dedicated lane composed of natural and artificial lawn has a complex structure with concrete slab in contact surface of tires, and with 1m natural or artificial lawn in the middle part of lane. From monitoring results for pavements, dedicated lane with natural lawn shows lower temperature value compared with other dedicated lanes, and it is expected to decrease the heat island effect of conventional road if constructed.

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Analytical Study of the Vibration Attenuation with respect to Trackbed Systems

  • Jung, WooYoung;Lee, SeongHyeok;Lee, JinWook;Kwon, MinHo;Ju, BuSeog
    • International Journal of Railway
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    • v.7 no.2
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    • pp.40-45
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    • 2014
  • The vibration-attenuation was quantitatively compared by 3-Dimensional finite element analysis using ABAQUS, with respect to the change of the type of trackbed systems. Most common trackbed materials, including ballast and concrete were applied to the track structure, and the train-speed was set as 300km/h as Korea Train eXpress (KTX). The result of current study revealed that the ballast showed the most effective material for the vibration attenuation.

Application of a mesh-free method to modelling brittle fracture and fragmentation of a concrete column during projectile impact

  • Das, Raj;Cleary, Paul W.
    • Computers and Concrete
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    • v.16 no.6
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    • pp.933-961
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    • 2015
  • Damage by high-speed impact fracture is a dominant mode of failure in several applications of concrete structures. Numerical modelling can play a crucial role in understanding and predicting complex fracture processes. The commonly used mesh-based Finite Element Method has difficulties in accurately modelling the high deformation and disintegration associated with fracture, as this often distorts the mesh. Even with careful re-meshing FEM often fails to handle extreme deformations and results in poor accuracy. Moreover, simulating the mechanism of fragmentation requires detachment of elements along their boundaries, and this needs a fine mesh to allow the natural propagation of damage/cracks. Smoothed Particle Hydrodynamics (SPH) is an alternative particle based (mesh-less) Lagrangian method that is particularly suitable for analysing fracture because of its capability to model large deformation and to track free surfaces generated due to fracturing. Here we demonstrate the capabilities of SPH for predicting brittle fracture by studying a slender concrete structure (column) under the impact of a high-speed projectile. To explore the effect of the projectile material behaviour on the fracture process, the projectile is assumed to be either perfectly-elastic or elastoplastic in two separate cases. The transient stress field and the resulting evolution of damage under impact are investigated. The nature of the collision and the constitutive behaviour are found to considerably affect the fracture process for the structure including the crack propagation rates, and the size and motion of the fragments. The progress of fracture is tracked by measuring the average damage level of the structure and the extent of energy dissipation, which depend strongly on the type of collision. The effect of fracture property (failure strain) of the concrete due to its various compositions is found to have a profound effect on the damage and fragmentation pattern of the structure.

Numerical Homogenization in Concrete Materials Using Multi-Resolution Analysis (다중해상도해석을 이용한 콘크리트 재료의 수치적 동질화)

  • Rhee In-Kyu;Roh Young-Sook
    • Journal of the Korea Concrete Institute
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    • v.17 no.6 s.90
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    • pp.939-946
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    • 2005
  • The stiffness properties of heterogeneous concrete materials and their degradation were investigated at different-levels of observations with aids of the opportunities and limitations of multi-resolution wavelet analysis. The successive Haw transformations lead to a recursive separation of the stiffness properties and the response into coarse-and fine-scale features. In the limit, this recursive process results in a homogenization parameter which is an average measure of stiffness and strain energy capacity at the coarse scale. The basic concept of multi-resolution analysis is illustrated with one and two-dimensional model problems of a two-phase particulate composite representative of the morphology of concrete materials. The computational studies include the meso-structural features of concrete in the form of a hi-material system of aggregate particles which are immersed in a hardened cement paste taking due to account of the mismatch of the two elastic constituents.

Strength Development and Permeability of Latex-Modified Concrete with Rapid-Setting Cement (초속경시멘트를 이용한 라텍스개질 콘크리트의 강도 및 투수특성)

  • 윤경구;홍창우;이주형;최상릉
    • Journal of the Korea Concrete Institute
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    • v.14 no.3
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    • pp.299-306
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    • 2002
  • The purpose of this research was to develop a rapid setting cement latex modified concrete (RSLMC) for bridge deck repairing and overlaying. The main experimental variables were latex contents, antifoamer contents and water-cement ratioes. The workability, strength development and permeability were measured as responses. The results showed that latex content increased the slump and reduced the unit water required for same workability. The air contents were measured as 8.0∼9.0% and 2.0∼3.0% without antifoamer and with 1.6∼3.2% of antifoamer, respectively. This resulted in the increment of compressive strength development by 10∼20 %. The flexural strength of RSLMC increased greatly as the latex content increased, but not in compressive strength. The compressive strength and flexural strength developed enough for opening the overlayed RSLMC to the traffic after 3 hours of RSLMC placement. The permeability of RSLMC was evaluated as negligible due to its very low charge passed. Thus, RSLMC could be used at repairing or overlaying the concrete bridge deck at fast-track job sites.

Selection of concrete lining corrosion protection method for large sewer tunnels (하수터널의 콘크리트 라이닝 부식 방지공법 선정방법에 관한 고찰)

  • Moon, Joon-Shik;Lee, Sungjune
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.16 no.4
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    • pp.347-360
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    • 2014
  • Recently construction of large sewer tunnels used also as underground sluiceways/storages is increasing in order to prevent urban inundation, untreated sewage flow into rivers from combined sewer overflows and consequential river pollution due to climate change. Most of these large sewer tunnels are constructed with concrete and the concrete lining should be protected from corrosion caused by hydrogen sulfide($H_2S$). This paper introduced popular concrete corrosion protection methods for large sewer tunnels with 100-plus years of life cycle, and pros and cons of each corrosion protection methods were described by giving specific examples. However, it is difficult to objectively assess corrosion protection alternatives because of insufficient track record of corrosion protection methods applied to large sewer tunnels. In this paper, the evaluation process for selecting a corrosion protection alternative was introduced for large sewer tunnels using a case study.

Behavior of Tension Clamp in Rail Fastening System (레일 체결장치 텐션클램프의 거동)

  • Choi, Shin-Hyung;Park, Beom-Ho;Yun, Kyung-Min;Bae, Hyun-Ung;Lim, Nam-Hyoung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.12
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    • pp.8812-8819
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    • 2015
  • In a situation in which importance of rail fastening system is growing with increasing the construction of concrete track, an accident of tension clamp(the component of rail fastening system) breaking has been recently occurred. This results from various factors such as field condition, operating agency, running condition, traffic frequency and so on. Thus, the study for the behavior of tension clamp is required. In this paper, an experiment and finite element analysis(FEA) have been performed to analyse the mechanical behavior of tension clamp. The stress and displacement of tension clamp have been analyzed as the clamping force through a laboratory test, and they were compared with FEA results. Furthermore, the stress and displacement of the tension clamp are derived from train load condition applying the verified model, and the fatigue vulnerability of the tension clamp is identified through stress analysis.