• 제목/요약/키워드: external strengthening

검색결과 305건 처리시간 0.025초

원통형 정착구를 사용하고 외부 긴장재로 보강된 강재보의 극한거동 (Ultimate Behavior of Steel Beam Strengthened with External Tendonand Cylindrical Anchorage)

  • 최동호;정상환;정재동
    • 한국구조물진단유지관리공학회 논문집
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    • 제10권2호
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    • pp.102-110
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    • 2006
  • 본 논문에서는 원통형 정착구를 사용하고 외부 긴장재로 보강된 강 I형 보의 극한거동을 실험을 통하여, 초기 긴장력, 편심거리, 강연선의 개수 및 단면적의 변수에 대한 보강 효과를 분석하였다. 실험을 통해 초기 긴장력 보다 강연선의 개수, 단면적, 편심거리를 크게 하는 것이 보강에 더 효과적인 것으로 나타났다. 제안된 원통형 정착 시스템은 이러한 변수를 적용함에 있어 용이하다는 장점을 가지고 있다. 그 결과로 원통형 정착 시스템이 강주형의 보강에 효율적이고 적용성이 있음을 입증하였다.

운동선수들의 견관절 회전근 손상 이후 등속성 측정을 통한 원심성 근력운동의 효과 (The Effect of Eccentric Strengthening Exercise on Athletes after Shoulder Rotator Cuff Tear)

  • 김좌준;김대경;하경진
    • PNF and Movement
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    • 제12권1호
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    • pp.33-37
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    • 2014
  • Purpose: In this research, the properties of the shoulder joint were measured through eccentric resistive exercise with the patients who have rotator cuff tear of shoulder joints as the targets. Methods: 23 patients who have pain due to the rupture of rotator cuff on shoulder joints were selected and divided into Exercise group (12) and Control group (11). Two groups executed exercise for 30 minutes 3 days a week. Exercise group had executed eccentric resistive exercise, and the Control group executed Complex exercise. Results: In external rotation $180^{\circ}/s$, $240^{\circ}/s$, the Exercise group showed to be an average of 8% higher than the Control group. For Internal rotation $90^{\circ}/s$, $180^{\circ}/s$, $240^{\circ}/s$ the Exercise group showed to be an average of 30% higher that the Control group. Conclusion: To lessen the rupture of rotator cuff on shoulder joints, muscles strengthening is very important across various methods of eccentric exercise programs which are external/internal rotators of the shoulder joint needed for throwing. This is effective in preventing injury and improving rotation.

유리섬유를 이용한 손상된 프리스트레스트 콘크리트 보의 보강공법 개발연구 (A study on Development of Methods to Rehabilitate the Damaged Prestressed Concrete beam Using Glass Fiber)

  • 강원호;한만엽;이택성;유영민
    • 콘크리트학회지
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    • 제11권2호
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    • pp.167-175
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    • 1999
  • 현재 국내에는 지난 35년간 프리스트레스트 콘크리트보를 이용한 합성형 교량이 매우 널리 건설, 사용되어 왔으나, 교통량의 증가와 차량하중의 증가로 노후화가 점차 가속화되고 있는 형편이다. 본 연구에서는 유리섬유를 이용하여 손상된 프리스트레스트 콘크리트 교량을 보강하는 방법의 효과를 평가하기 위하여 무보강 표준시험체와 선행 하중의 재하로 균열이 발생한 8개의 시험체에 대하여 유리섬유 보강, 외부강선 보강 및 두가지 보강 방법을 병행한 보강을 실시하여 각 보강방법의 효과를 비교, 분석하였다. 실험결과, 최대하중은 외부강선 보강 시험체와 유리섬유 보강 시험체가 모두 거의 유사한 정도의 보강효과를 발휘함으로써 유리섬유 보강공법이 손상된 프리스트레스트 콘크리트 교량의 보강에 적용될 수 있는 것으로 판명되었다. 외부강선 보강공법에서의 가장 큰 문제가 단부의 정착장치인 것과 마찬가지로 유리섬유 보강 공법의 경우에도 최대하중에 도달하기 이전에 보강재의 부착이 파괴되지 않도록 적절한 방법을 선정하는 것이 매우 중요하며, 본 연구에서 검증된 두가지 방법이 단부의 정착기능을 충분히 발휘하는 것으로 판명되어, 이들 방법들이 적절히 사용될 경우에는 설계된 내하력의 증가를 기대할 수 있는 것으로 나타났다.

고강도 강봉을 이용한 철근 콘크리트 보의 보강에 관한 연구 (Rehabilitation of RC Beams with High Tension Steel Bars)

  • 양재연;박순규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.438-441
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    • 2004
  • This paper presents the results of the experimental study on the performances of reinforced concrete beams rehabilitated by external unbonded high tension steel-bar. Design variables for the experiment in this study includes the position of anchorage zone of the high tension steel bar, the anchorage length of the reinforcing steel bar and the types of the shear strengthening measures. 5 specimens were tested with one point monotonically increased loads and structural performances such as strength capacities, ductility capacities and failure modes were analysed. It is found that the structural performance of the rehabilitated beams are strongly depended on the location of anchorage zone of the high tension steel-bars. In the case that anchorage zone is located near the critical shear zone, it is observed that the rehabilitated beam is failed in brittle failure mode and the additional shear strengthening is necessitated. But if anchorage zone is properly located or additional shear strengthening device is provided properly, it is also observed that the strength capacity of the rehabilitated beams could be increased more than $200\%$ by the proposed method.

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Fiber method analysis of rc beam retrofitted with turnbuckle external post-tensioning

  • Lejano, Bernardo A.
    • Computers and Concrete
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    • 제17권1호
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    • pp.67-86
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    • 2016
  • Strengthening as well as correcting unsightly deflections of reinforced concrete (RC) beam may be accomplished by retrofitting. An innovative way to do this retrofitting that is proposed in this study utilizes turnbuckle to apply external post-tensioning. This Turnbuckle External Post-Tensioning (T-EPT) was experimentally proven to improve the serviceability and load carrying capacity of reinforced concrete beams. The T-EPT system comprises a braced steel frame and a turnbuckle mechanism to provide the prestressing force. To further develop the T-EPT, this research aims to develop a numerical scheme to analyze the structural performance of reinforced concrete beams with this kind of retrofitting. The fiber method analysis was used as the numerical scheme. The fiber method is a simplified finite element method that is used in this study to predict the elastic and inelastic behavior of a reinforced concrete beam. With this, parametric study was conducted so that the effective setup of doing the T-EPT retrofitting may be determined. Different T-EPT configurations were investigated and their effectiveness evaluated. Overall, the T-EPT was effective in improving the serviceability condition and load carrying capacity of reinforced concrete beam.

Core muscle Strengthening Effect During Spine Stabilization Exercise

  • Han, Kap-Soo;Nam, Hyun Do;Kim, Kyungho
    • Journal of Electrical Engineering and Technology
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    • 제10권6호
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    • pp.2413-2419
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    • 2015
  • Core spinal muscles are related to trunk stability and assume the main role of stabilizing the spine during daily activities; strengthening of core muscles around the spine can therefore reduce the chance of back pain. The objective of the study was to investigate the effect of core muscle strengthening in the spine during spine stabilization exercise using a whole body tilt device. To achieve this, a validated musculoskeletal (MS) model of the whole body was used to replicate the input motion from the whole body tilting exercise. An inverse dynamics analysis was executed to estimate spine loads and muscle forces depending on the tilting angles of the exercise device. The activation of long and superficial back muscles such as the erector spinae (iliocostalis and longissimus) were mainly affected by the forward direction (-40°) of the tilt, while the front muscles (psoas major, quadratus lumborum, and external and internal obliques) were mainly affected by the backward tilting direction (40°). Deep muscles such as the multifidi and short muscles were activated in most directions of the rotation and tilt. The backward directions of the tilt using this device could be carefully applied for the elderly and for rehabilitation patients who are expected to have less muscle strength. In this study, it was shown that the spine stabilization exercise device can provide considerable muscle exercise effect.

Low velocity impact behavior of shear deficient RC beam strengthened with CFRP strips

  • Anil, Ozgur;Yilmaz, Tolga
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.417-439
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    • 2015
  • Many methods are developed for strengthening of reinforced concrete structural members against the effects of shear. One of the commonly used methods in recent years is turned out to be bonding of fiber reinforced polymers (FRP). Impact loading is one of the important external effects on the reinforced concrete structural members during service period among the others. The determination of magnitude, the excitation time, deformations and stress due to impact loadings are complicated and rarely known. In recent year impact behavior of reinforced concrete members have been researched with experimental studies by using drop-weight method and numerical simulations are done by using finite element method. However the studies on the strengthening of structural members against impact loading are very seldom in the literature. For this reason, in this study impact behavior of shear deficient reinforced concrete beams that are strengthened with carbon fiber reinforced polymers (CFRP) strips are investigated experimentally. Compressive strength of concrete, CFRP strips spacing and impact velocities are taken as the variables in this experimental study. The acceleration due to impact loading is measured from the specimens, while velocities and displacements are calculated from these measured accelerations. RC beams are modeled with ANSYS software. Experimental result and simulations result are compared. Experimental result showed that impact behaviors of shear deficient RC beams are positively affected from the strengthening with CFRP strip. The decrease in the spacing of CFRP strips reduced the acceleration, velocity and displacement values measured from the test specimens.

3-D finite element modelling of prestressed hollow-core slabs strengthened with near surface mounted CFRP strips

  • Mahmoud, Karam;Anand, Puneet;El-Salakawy, Ehab
    • Computers and Concrete
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    • 제21권6호
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    • pp.607-622
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    • 2018
  • A non-linear finite element model (FEM) was constructed using a three-dimensional software (ATENA-3D) to investigate the effect of strengthening on the behavior of prestressed hollow-core (PHC) slabs with or without openings. The slabs were strengthened using near surface mounted (NSM)-carbon fiber reinforced polymer (CFRP) strips. The constructed model was validated against experimental results that were previously reported by the authors. The validated FEM was then used to conduct an extensive parametric study to examine the influence of prestressing reinforcement ratio, compressive strength of concrete and strengthening reinforcement ratio on the behavior of such slabs. The FEM results showed good agreement with the experimental results where it captured the cracking, yielding, and ultimate loads as well as the mid-span deflection with a reasonable accuracy. Also, an overall enhancement in the structural performance of these slabs was achieved with an increase in prestressing reinforcement ratio, compressive strength of concrete, external reinforcement ratio. The presence of openings with different dimensions along the flexural or shear spans reduced significantly the capacity of the PHC slabs. However, strengthening these slabs with 2 and 4 (64 and $128mm^2$ that represent reinforcement ratios of 0.046 and 0.092%) CFRP strips was successful in restoring the original strength of the slab and enhancing post-cracking stiffness and load carrying capacity.

Effects of 4-week PNF Exercise Program on Activity, Posture, and Muscle Strength in a Patient with Abdominalis Weakness after Cesarean Section: A Single-Subject Study

  • Beom-Ryong Kim;Tae-Woo Kang;Seo-Yoon Park
    • The Journal of Korean Physical Therapy
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    • 제36권1호
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    • pp.1-8
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    • 2024
  • Purpose: The purpose of this study was to determine the effect of proprioceptive neuromuscular facilitation (PNF) abdominal muscle strengthening exercise on the activity, posture, and body function of clients with abdominal muscle weakness after cesarean section. Methods: PNF abdominal muscle strengthening exercise was applied to one patient with abdominal muscle weakness after cesarean section. PNF abdominal muscle strengthening exercise was applied five times a week for four weeks. The 5-time supine-to-long sitting test (5-TSLST) and supine-to-stand test (SST) were used to measure activity, and the pelvis tilt angle test (PTAT) and anterior head translation test (AHTT) were used to measure posture. Body function was assessed using the transverse abdominis muscle strength test (TAMST), the internal oblique and external oblique muscle strength test (IOEOMST), and the rectus abdominis muscle strength test (RAMST). Results: Activity, posture, and body function were improved post-intervention. Conclusion: The study verified that PNF abdominal muscle strengthening exercises are effective when applied to patients with abdominal muscle weakness after cesarean section. The findings of this study provide useful data for future interventions in patients with abdominal muscle weakness after cesarean section.

Numerical simulation on the square column's strengthening characteristics utilizing the SCC jacketing

  • Ammar Tawashi;Soleman Alamoudi;Abdulkadir Aljundi
    • Structural Monitoring and Maintenance
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    • 제10권4호
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    • pp.283-297
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    • 2023
  • This research aims to simulate and investigate the efficiency of strengthening damaged concrete columns using concrete jacketing.The numerical program included unjacketed reference column made of ordinary RC concrete had a cross-sectional dimension of (100×100) mm and 560 mm long reinforced concrete. These cores were damaged by loading them with approximately 60% of their actual ultimate load capacities as a service load. Then, column specimens were strengthened by applying two types of self-compacting concrete SCC jacketing, which were 25 and 30 mm thick, on all four sides. Exposed to external loads at different directions vertically and horizontally simulate to the seismic load. The 3D Finite Element (FE) simulation is used to predict of three structural criteria that were selected and evaluated (deflection, stress, cracks). The results show that the failure of the strengthening columns is interesting and corresponds to the characteristics of the cracks formed in the concrete section,which was documented numerically using 3D Finite Element (FE). A significant improvement of deflection has been noted at the values at the top SECTION of columns compared to the reference sample reaching an average of up to 36.6% when using a 25 mm thick SCC-3500 jacket.