• 제목/요약/키워드: Extreme Design Load

검색결과 121건 처리시간 0.025초

다단 신선공정을 이용한 초극세 로듐 와이어 제조 (Fabrication of Ultra-fine Rhodium Wire Using Multi-pass Wire Drawing Process)

  • 이상곤;이성윤;이인규;황선광
    • 소성∙가공
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    • 제28권5호
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    • pp.275-280
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    • 2019
  • The aim of this study is to fabricate an ultra-fine pure rhodium wire using multi-pass wire drawing process. To manufacture $30{\mu}m$ ultra-fine rhodium wire from the initial $50{\mu}m$ wire, a multi-pass wire drawing process was designed based on the uniform reduction ratio theory. The elastic-plastic finite element analysis was then conducted to validate the efficacy of the designed process. The drawing load, drawing stress, and the distribution of the effective strain were evaluated using the finite element analysis. Finally, the wire drawing experiment was performed to validate the designed wire drawing process. From the results of the experiment, the diameter of the final drawn wire was found to be $29.85{\mu}m$.

래핑 복합플레이트를 이용한 공공시설의 내진보강 (Seismic Retrofit of the Public Facilities Using the Wrapping Composite Plate)

  • 박춘욱
    • 한국공간구조학회논문집
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    • 제23권3호
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    • pp.45-55
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    • 2023
  • The purpose of this study has a purpose to evaluate shear ability, ductility and energy dissertation of specimens that is to be applied to jacket using wrapping method. The experiments was conducted as a condition that simultaneously applied axial load and transverse force. The results of experiments represent story-displacement ratio, the stiffness, energy dissertation, plastic rotation which mean seismic resistance ablity on structure. And It represents the form of crack ditribution and failure in extreme stages. Based on the results of this experiment, Design examples are given to show the performance evaluation for the column reinforcing of old school buildings using nonlinear analysis is going to be conducted. Therefore, it is possible to apply the seismic retrofit method to public facilities.

LNG 외조탱크 적용을 위한 SCP 모듈의 휨성능 평가 (The Evaluation of flexure performance of SCP modules for LNG outer tank)

  • 박정준;박기준;김성욱;김언;신동규
    • 한국산학기술학회논문지
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    • 제20권1호
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    • pp.447-455
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    • 2019
  • 극한지에서 LNG 저장구조물을 건설할 때 현장 타설 방식으로 제작 및 시공되는 경우, 열악한 작업 환경 및 조건으로 의해 공사금액 및 공사기간이 증가되는 문제점이 발생할 수 있어 모듈형 에너지 저장탱크에 대한 요구가 높아지고 있다. 이에 본 연구에서는 LNG 연료 저장탱크의 경량화를 위해 SCP 모듈의 사용을 대안으로 제시하고자 하였다. 이에 SCP 모듈을 두께별로 제작하고 그에 따른 휨성능을 평가함으로써 SCP 구조의 LNG 연료 저장탱크에 대한 현장적용 가능성을 평가하고자 하였다. 실험 결과 두께 100mm 실험체는 설계상 극한하중인 413 kN까지는 선형을 유지하면서 증가하다가 기울기가 급격하게 변하면서 파괴되었다. 두께 200mm 실험체 또한 설계상 극한하중인 약 822 kN까지 선형을 유지하다가 파괴양상을 보였다. 두 조건 모두 SCP의 휨 시험에서 INCA guidance의 기준대로 철판이 항복에 도달할 때까지 선형 거동을 나타내었다가 극한하중이후에는 급격한 철판 항복을 동반하는 거동을 하였다. 또한, 목표로 제시한 설계 휨강도를 만족하여 SCP 모듈을 활용하여 LNG 저장탱크 외조구조물에 적용이 가능할 것으로 판단되었다. 추후 압축, 전단 시험 등을 추가로 진행하여 SCP의 구조성능에 대한 평가가 필요할 것으로 판단된다.

Seismic performance of prefabricated bridge columns with combination of continuous mild reinforcements and partially unbonded tendons

  • Koem, Chandara;Shim, Chang-Su;Park, Sung-Jun
    • Smart Structures and Systems
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    • 제17권4호
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    • pp.541-557
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    • 2016
  • Prefabricated bridge substructures provide new possibility for designers in terms of efficiency of creativity, fast construction, geometry control and cost. Even though prefabricated bridge columns are widely adopted as a substructure system in the bridge construction project recently, lack of deeper understanding of the seismic behavior of prefabricated bridge substructures cause much concern on their performance in high seismic zones. In this paper, experimental research works are presented to verify enhanced design concepts of prefabricated bridge piers. Integration of precast segments was done with continuity of axial prestressing tendons and mild reinforcing bars throughout the construction joints. Cyclic tests were conducted to investigate the effects of the design parameters on seismic performance. An analytical method for moment-curvature analysis of prefabricated bridge columns is conducted in this study. The method is validated through comparison with experimental results and the fiber model analysis. A parametric study is conducted to observe the seismic behavior of prefabricated bridge columns using the analytical study based on strain compatibility method. The effects of continuity of axial steel and tendon, and initial prestressing level on the load-displacement response characteristics, i.e., the strain of axial mild steels and posttensioned tendon at fracture and concrete crushing strain at the extreme compression fiber are investigated. The analytical study shows the layout of axial mild steels and posttensioned tendons in this experiment is the optimized arrangement for seismic performance.

조선소 시설물의 강풍 위험 평가 (Risk Assessment of Strong Wind over Industrial Facilities in Shipyards)

  • 이승수;김학선;이영규;심규철
    • 한국방재학회 논문집
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    • 제9권4호
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    • pp.21-28
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    • 2009
  • 국내 조선소는 빈번하게 태풍에 의해 영향을 받는 해안에 위치하며, 풍하중에 취약한 많은 경량 구조의 시설물들로 이루어져 있다. 본 연구에서는 주변 지형과 조선소내부 건물의 영향까지 고려하여 시설물의 강풍에 대한 위험 분석을 수행하였다. 몬테카를로 시뮬레이션에 의해 대상 지역의 극한 풍속을 추정하여 전산유체역학 해석을 위한 입사풍속으로 설정하였으며, 난류 유동을 고려한 전산 유체 해석을 이용하여 시설물 표면에 발생하는 풍압과 조선소 사업장 내의 풍속 분포를 추정하였다. 결과로서 일부 시설물에는 설계 하중보다 높은 풍하중이 작용하여 보강이 요구되는 것으로 판단되며, 향후 설계 풍하중을 고려하는 경우 주변의 국부적 지형 변화와 건물 배치를 고려해야 할 것으로 나타났다.

Simulations of the Dynamic Load in a Francis Runner based on measurements of Grid Frequency Variations

  • Ellingsen, Rakel;Storli, Pal-Tore
    • International Journal of Fluid Machinery and Systems
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    • 제8권2호
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    • pp.102-112
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    • 2015
  • In the Nordic grid, a trend observed the recent years is the increase in grid frequency variations, which means the frequency is outside the normal range (49.9-50.1 Hz) more often. Variations in the grid frequency leads to changes in the speed of rotation of all the turbines connected to the grid, since the speed of rotation is closely related to the grid frequency for synchronous generators. When the speed of rotation changes, this implies that the net torque acting on the rotating masses are changed, and the material of the turbine runners must withstand these changes in torque. Frequency variations thus leads to torque oscillations in the turbine, which become dynamical loads that the runner must be able to withstand. Several new Francis runners have recently experienced cracks in the runner blades due to fatigue, obviously due to the runner design not taking into account the actual loads on the runner. In this paper, the torque oscillations and dynamic loads due to the variations in grid frequency are simulated in a 1D MATLAB program, and measured grid frequency is used as input to the simulation program. The maximum increase and decrease in the grid frequency over a 440 seconds interval have been investigated, in addition to an extreme event where the frequency decreased far below the normal range within a few seconds. The dynamic loading originating from grid frequency variations is qualitatively found by a constructed variable $T_{stress}$, and for the simulations presented here the variations in $T_{stress}$ are found to be around 3 % of the mean value, which is a relatively small dynamic load. The important thing to remember is that these dynamic loads come in addition to all other dynamic loads, like rotor-stator interaction and draft tube surges, and should be included in the design process, if not found to be negligible.

Numerical modelling of internal blast loading on a rock tunnel

  • Zaid, Mohammad;Sadique, Md. Rehan
    • Advances in Computational Design
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    • 제5권4호
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    • pp.417-443
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    • 2020
  • Tunnels have been an integral part of human civilization. Due to complexity in its design and structure, the stability of underground structures under extreme loading conditions has utmost importance. Increased terrorism and geo-political conflicts have forced the engineers and researchers to study the response of underground structures, especially tunnels under blast loading. The present study has been carried out to seek the response of tunnel structures under blast load using the finite element technique. The tunnel has been considered in quartzite rock of northern India. The Mohr-Coulomb constitutive model has been adopted for the elastoplastic behaviour of rock. The rock model surrounding the tunnel has dimensions of 30 m x 30 m x 35 m. Both unlined and lined (concrete) tunnel has been studied. Concrete Damage Plasticity model has been considered for the concrete lining. Four different parameters (i.e., tunnel diameter, liners thickness, overburden depth and mass of explosive) have been varied to observe the behaviour under different condition. To carry out blast analysis, Coupled-Eulerian-Lagrangian (CEL) modelling has been adopted for modelling of TNT (Trinitrotoluene) and enclosed air. JWL (Jones-Wilkins-Lee) model has been considered for TNT explosive modelling. The paper concludes that deformations in lined tunnels follow a logarithmic pattern while in unlined tunnels an exponential pattern has been observed. The stability of the tunnel has increased with an increase in overburden depth in both lined and unlined tunnels. Furthermore, the tunnel lining thickness also has a significant effect on the stability of the tunnel, but in smaller diameter tunnel, the increase in tunnel lining thickness has not much significance. The deformations in the rock tunnel have been decreased with an increase in the diameter of the tunnel.

공력가열 시험설비 설계

  • 옥호남;김인선;라승호;김성룡;조광래
    • 항공우주기술
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    • 제3권1호
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    • pp.155-169
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    • 2004
  • 발사체나 재돌입 비행체는 대기 중을 높은 Mach 수로 비행함으로써 그 표면이 공력가열 현상에 의한 초고온 환경에 노출되게 된다. 이러한 공력가열로부터 발사체 자체나 탑재체를 보호하기 위해서는 물체 표면에 가해지는 열적 부하(Thermal Load)를 정확히 예측하고 필요한 곳에는 적절한 단열 처리를 해 주어야만 한다. 그러나 탑재체의 중량을 최대한 늘리기 위해서는 지나친 단열재의 추가를 막을 수 있도록 엄밀한 열 해석 및 시험이 수행 되어야 할 것이며, 최종적으로 공력가열 시험에 의해서 필요한 단열재의 양이 결정된다. 본 연구에서는 KSR(Korea Sounding Rocket) 시리즈의 개발을 위해 사용되어 왔던 공력가열 시험설비(ATSF, Aerodynamic Thermal Simulation Facility)를 KSLV 시리즈의 개발에 적합하도록 사양 향상(Upgrade) 시키기 위한 설계를 위해 고려해야할 사항이 무엇인지 살펴보았다. 먼저 설비의 필요성 및 그 한계에 대하여 고찰하였으며, KSLV 개발을 위해서는 어떤 기능을 갖추어야 할지를 고려하였다. 마지막으로 필요한 장비의 사양을 대략적으로 제안하였으며, 이는 앞으로 수행될 상세 설계 및 제작/설치의 밑바탕이 될 것이다.

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군용항공기 생산공정에서 발생하는 예하중에 의한 주익 루트 페어링 지지대 균열개선 연구 (A Study on the Improvement of Crack Propagation in Wing Root Fairing Support by Pre-load in Military Aircraft Production Process)

  • 신재혁;정수헌;강구헌;이헌섭
    • 항공우주시스템공학회지
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    • 제12권3호
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    • pp.38-44
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    • 2018
  • 군용항공기는 다양한 임무의 수행을 통한 비행시간 누적과 예상 불가능한 외기 환경에 의한 복합적인 요인으로 구조적으로 취약한 부위에서 피로균열이 발생할 수 있다. 피로 균열은 점차 진전되어 극심한 경우 해당 구조가 파괴될 위험이 있으며 이는 비행 안전성에 큰 영향을 미칠 수 있다. 본 논문에서는 항공기 주익과 동체의 연결부위를 보호하기 위해 장착한 페어링 내부의 지지대에서 주기검사 중 균열 현상을 개선하기 위한 일련의 품질개선에 관한 연구를 수행하였다. 균열의 원인파악을 위해 주익 조립 공정에 따른 예하중 발생 여부에 대해 조사하고 파단면 분석을 수행하였다. 또한, 균열의 재발방지를 위해 지지대의 설계를 개선하는 방안을 제시하였고, 응력 및 피로 수명해석을 통해 구조 건전성을 검증하였다.

Efficient influence of cross section shape on the mechanical and economic properties of concrete canvas and CFRP reinforced columns management using metaheuristic optimization algorithms

  • Ge, Genwang;Liu, Yingzi;Al-Tamimi, Haneen M.;Pourrostam, Towhid;Zhang, Xian;Ali, H. Elhosiny;Jan, Amin;Salameh, Anas A.
    • Computers and Concrete
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    • 제29권 6호
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    • pp.375-391
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    • 2022
  • This paper examined the impact of the cross-sectional structure on the structural results under different loading conditions of reinforced concrete (RC) members' management limited in Carbon Fiber Reinforced Polymers (CFRP). The mechanical properties of CFRC was investigated, then, totally 32 samples were examined. Test parameters included the cross-sectional shape as square, rectangular and circular with two various aspect rates and loading statues. The loading involved concentrated loading, eccentric loading with a ratio of 0.46 to 0.6 and pure bending. The results of the test revealed that the CFRP increased ductility and load during concentrated processing. A cross sectional shape from 23 to 44 percent was increased in load capacity and from 250 to 350 percent increase in axial deformation in rectangular and circular sections respectively, affecting greatly the accomplishment of load capacity and ductility of the concentrated members. Two Artificial Intelligence Models as Extreme Learning Machine (ELM) and Particle Swarm Optimization (PSO) were used to estimating the tensile and flexural strength of specimen. On the basis of the performance from RMSE and RSQR, C-Shape CFRC was greater tensile and flexural strength than any other FRP composite design. Because of the mechanical anchorage into the matrix, C-shaped CFRCC was noted to have greater fiber-matrix interfacial adhesive strength. However, with the increase of the aspect ratio and fiber volume fraction, the compressive strength of CFRCC was reduced. This possibly was due to the fact that during the blending of each fiber, the volume of air input was increased. In addition, by adding silica fumed to composites, the tensile and flexural strength of CFRCC is greatly improved.