• 제목/요약/키워드: single-loading condition

검색결과 93건 처리시간 0.021초

무시멘트형 인공고관절 대치술후 초기의 경계면 미세운동의 3차원 FEM 연구 (A Study on the Interface Micromotions of Cementless Artificial Hip Replacement by Three-Dimensional FEM)

  • 김성곤;채수원;최형연
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1994년도 추계학술대회
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    • pp.71-74
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    • 1994
  • In cementless total hip arthroplasty(THA), an initial stability of the femoral component is mandatory to achieve bony ingrowth and secondary long term fixation. Bone ingrowth depends strongly on relative micromotion and stress distributions at the interface. Primary stability of the femoral component can be obtained by minimizing the magnitude of relative micromotions at bone-prosthesis interface, Hence an accurate evaluation of interface behavior and stress/strain fields in the bone implant system may be relevant for better understanding of clinical situations and improving THA design. However, complete evaluation of load transfer in the bone remains difficult to assess experimentally, Hence, recently finite element method (FEM) was introduced in orthopaedic research field to fill the gap due to its unique capacity to evaluate stress in structure of complex shape, loading and material behavior. The authors developed the 3-dimensional numerical finite element model which is composed of totally 1179 elements off and 8 node blick. We also analyzed the micromotions at the bone-stem interface and mechanical behavior of existing bone prosthesis for a loading condition simulating the single leg stance. The result indicates that the values of relative motion for this well fit Multilock stem were $150{\mu}m$ in maximum, $82{\mu}m$ in minimum, and the largest relative motion developed in medial region of proximal femur with anterior-posterior direction. The proximal region of the bone was much larger in motion than the distal region and the stress pattern shows high stress concentration on the cortex near the tip of the stem. These findings indicates that the loading in the proximal femoral bone in the early postoperative situation can produce micromotions on the interface and clinically cementless TEA patient should not be allowed weight bearing strictly early in the postoperative period.

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다짐 화강풍화토의 응력이력에 따른 정지상태 토압계수의 변화 (Variations of Coefficient of Earth Pressure at Rest According to Stress Paths for Compacted Residual Soils)

  • 이병식;박성국
    • 한국지반공학회논문집
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    • 제21권8호
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    • pp.85-93
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    • 2005
  • 벽체 변위가 제한되는 옹벽 구조물에 작용하는 토압은 시공 중 뒷채움토에 작용하는 다짐응력의 영향에 따라 변화한다. 정지토압을 보다 적절하게 추정하기 위해서는 이러한 영향을 고려하여 정지토압계수를 산정하여야 할 필요가 있다. 본 연구에서는 다짐 화강풍화토에 대해서 정지토압상태에서 흙이 받는 응력의 재하, 제하, 재 재하 단계를 모사하는 응력이력모델을 단주기 $K_o$-삼축시험으로 재현하였다. 실험결과로부터 각 하중단계의 응력이력조건에 대한 정지상태토압을 결정하였다. 이들 값을 경험식으로부터 얻은 값과 비교하여 다짐 화강풍화토에 대한 정지토압계수 결정을 위한 경험식의 적용성을 평가하였다. 결과적으로 다짐 화강풍화토에 대한 경험식의 적용성은 재 재하 경로에 대해서 오차 감안이 가능한 경우에 대체적으로 적절한 것으로 평가되었다.

Lateral load sharing and response of piled raft foundation in cohesionless medium: An experimental approach

  • Dinesh Kumar Malviya;Manojit Samanta
    • Geomechanics and Engineering
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    • 제38권2호
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    • pp.139-155
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    • 2024
  • The piled raft foundations are subjected to lateral loading under the action of wind and earthquake loads. Their bearing behavior and flexural responses under these loadings are of prime concern for researchers and practitioners. The insufficient experimental studies on piled rafts subjected to lateral loading lead to a limited understanding of this foundation system. Lateral load sharing between pile and raft in a laterally loaded piled raft is scarce in literature. In the present study, lateral load-displacement, load sharing, bending moment distribution, and raft inclinations of the piled raft foundations have been discussed through an instrumented scaled down model test in 1 g condition. The contribution of raft in a laterally loaded piled raft has been evaluated from the responses of pile group and piled raft foundations attributing a variety of influential system parameters such as pile spacing, slenderness ratio, group area ratio, and raft embedment. The study shows that the raft contributes 28-49% to the overall lateral capacity of the piled raft foundation. The results show that the front pile experiences 20-66% higher bending moments in comparison to the back pile under different conditions in the pile group and piled raft. The piles in the piled raft exhibit lower bending moments in the range of 45-50% as compared to piles in the pile group. The raft inclination in the piled raft is 30-70% less as compared to the pile group foundation. The lateral load-displacement and bending moment distribution in piles of the single pile, pile group, and piled raft has been presented to compare their bearing behavior and flexural responses subjected to lateral loading conditions. This study provides substantial technical aid for the understanding of piled rafts in onshore and offshore structures to withstand lateral loadings, such as those induced by wind and earthquake loads.

Numerical analysis of interface crack problem in composite plates jointed with composite patch

  • Cetisli, Fatih;Kaman, Mete O.
    • Steel and Composite Structures
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    • 제16권2호
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    • pp.203-220
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    • 2014
  • Stress intensity factors are numerically investigated for interfacial edge crack between two dissimilar composite plates jointed with single side composite patch. Variation of stress intensity factor under Mode I loading condition is examined for different material models and fiber orientation angles of composite plates and patch. ANSYS 12.1 finite element analysis software is used to obtain displacements of crack surfaces in the numerical solution and repaired plates are modeled in three dimensions. Obtained results are presented in the form of graphs. It is found that fiber orientation angle of composites is an effective parameter on interfacial stress intensity factor.

두께와 위상각의 변화가 평직복합재료 미세구조의 거동에 미치는 영향 (Finite thickness and tow phase shift effects on the mechanical behavior of plain weave textile composites)

  • 우경식
    • Composites Research
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    • 제13권1호
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    • pp.11-24
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    • 2000
  • 평직복합재료에 있어서 두께와 적층 위상각의 변화가 기계적 거동에 미치는 영향을 수치적으로 연구하였다. 일축인장하중은 중첩법에 의한 단위구조해석에 의하여 모사되었으며 효율적인 계산을 위하여 마크로 요소 후처리기법이 사용되었다. 인접한 층간 위상각을 가지며 적층된 유한두께 평직복합재료 단위구조에 대하여 등가탄성계수를 구하였으며 단위구조를 구성하는 섬유다발 미세구조의 상세응력 분포를 계산하였다. 단일층 및 무한두께 적층형상에 대해서도 계산이 수행되었으며 그 결과가 상호 비교되었다.

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Adaptive보호범위를 가진 송전선로 보호용 디지털 거리계전기 (Digital Distance Relay with Adaptive Protection Zone)

  • 정창호;이재규;정병태;안복신
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 C
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    • pp.893-895
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    • 1998
  • This paper presents the adaptive setting method of distance relay under the single line ground fault. The apparent impedance measured at the relaying point and actual impedance is different because of fault resistance and various prefault loading condition. For a resistance earth fault detection, relay setting zone is adaptively changed with measured load current and bus voltage at the relaying point to avoid maloperation.

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균열가지 효과를 고려한 균열 성장 지연 거동 예측 (변동하중하에서의 피로거동) (The Prediction of Crack Growth Retardation Behavior by Crack Tip Branching Effects (Fatigue Behavior in variable Loading Condition))

  • 권윤기
    • 한국생산제조학회지
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    • 제8권2호
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    • pp.126-136
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    • 1999
  • We studied on crack growth retardation in single overloading condition. Crack tip branching which as the second mechanism on crack growth retardation was examined. Crack tip branching was observed to kinked type and forked type. It was found that the branching angle range was from 25 to 53 degree. The variations of crack driving force with branching angle were calculated with finite element method The variation of {{{{ KAPPA _I}}}}, {{{{ KAPPA _II}}}} and total crack driving force(K) were examined respectively So {{{{ KAPPA _I}}}}, {{{{ KAPPA _II}}}} and K mean to mode I, II and total crack driving force. Present model(Willenborg's model) for crack growth retardation prediction was modified to take into consideration the effects of crack tip branching When we predicted retardation with modified model. it was confirmed that predicted and experimental results coincided with well each other.

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새로운 FRP-콘크리트 전단부착성능 평가법을 활용한 최적 FRP 규사코팅 조건에 관한 연구 (A study on the optimum condition of FRP coarse-sand coating by using a new testing method for shear bearing capacity of FRP-concrete interface)

  • 이규필;신휴성;김승한
    • 한국터널지하공간학회 논문집
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    • 제13권3호
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    • pp.277-289
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    • 2011
  • 본 연구에서는 압축력을 받는 터널 라이닝 부재 특성에 보다 부합된 조건에서 FRP-콘크리트 접촉면의 전단 저항력을 평가할 수 있는 새로운 시험법을 제안하였으며, 제안 시험법은 기존 시험방법에 비해 시험체 제작과 시험방법이 매우 용이하다. 제안된 시험법을 기반으로 FRP와 콘크리트 복합소재의 전단저항성능을 좌우하는 규사코팅의 최적조건을 도출하기 위한 매개변수 연구를 실시하였다. 다양한 시료에 대한 시험결과를 기존 연구결과와의 비교분석을 통하여 제안 시험법의 타당성을 보였으며, FRP부재와 콘크리트 접촉면의 전단저항을 극대화 시킬 수 있는 효과적인 규사입경 및 밀도에 대한 최적 조건을 제시하였다.

지붕마감재 강성효과를 고려한 2방향 그리드 단층돔의 좌굴특성에 관한 연구 (A Study on Buckling Characteristics of 2-way Grid Single-Layer Domes Considering Rigidity-Effect of Roofing Covering Materials)

  • 박상훈;석창목;정환목;권영환
    • 한국공간구조학회논문집
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    • 제2권1호
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    • pp.85-92
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    • 2002
  • Two way grid single-layer domes are of great advantage in fabrication and construction because of the simple fact that they have only four members at each junction. But, from a point of view of mechanics, the rectangular latticed pattern gives rise to a nonuniform rigidity-distribution in the circumferential direction. If the equivalent rigidity is considered in the axial direction of members, the in-plane equivalent shearing rigidity depends only on the in-plane bending rigidity of members and its value is very small in comparison to that of the in-plane equivalent stretching rigidity. It has a tendency to decrease buckling -strength of dome considerably by external force. But it is possible to increase buckling strength by the use of roofing covering materials connected to framework. In a case like this, shearing rigidity of roofing material increases buckling strength of the overall structure and can be designed economically from the viewpoint of practice. Therefore, the purpose of this paper, in Lamella dome and rectangular latticed dome that are a set of 2-way grid dome, is to clarify the effects of roofing covering materials for increasing of buckling strength of overall dome. Analysis method is based on FEM dealing with the geometrically nonlinear deflection problems. The conclusion were given as follows: 1. In case of Lamella domes which have nearly equal rigidity in the direction of circumference, the rigidity of roofing covering materials does not have a great influence on buckling-strength, but in rectangular latticed domes that has a clear periodicity of rigidity, the value of its buckling strength has a tendency to increase considerably with increasing rigidity of roofing covering materials 2. In case of rectangular latticed domes, as rise-span-ratio increases, models which is subjected to pressure -type-uniform loading than vertical-type-uniform loading are higher in the aspects of the increasing rate of buckling- strength according to the rate of shear reinforcement rigidity, but in case of Lamella dome, the condition of loading and rise-span-ratio do not have a great influence on the increasing rate of buckling strength according to the rate of shear reinforcement rigidity.

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특정용제 Target 형 활성금속첨착 활성탄소섬유의 개발(II) (Development of Metal Loaded Activated Carbon Fiber for Eliminating Targeted VOCs Originated from Solvent(II))

  • 최강용;김광수;김태원;전민기;박해경
    • 대한환경공학회지
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    • 제35권7호
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    • pp.472-478
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    • 2013
  • 기존 흡착제들보다 우수한 흡착성능을 확보하고, 특히 특정한 용제에 대한 흡착성능을 극대화하기 위하여 활성탄소섬유를 기본흡착제로 적용하였고, 여기에 활성금속을 첨착시켜 흡착성능과 선택성을 제고하고자 하였다. 선행 연구를 통하여 선정된 Cu, Cr을 기본 활성금속으로 하고 여기에 활성보조금속으로서 Pt, Pd를 복합 첨착시킨 활성탄소섬유를 첨착온도 및 시간을 변수로 하여 제조하였다. 복합첨착 활성탄소섬유의 흡착 성능이 단일첨착 활성탄소섬유와 비교하여 향상되었으며, 첨착온도 $100^{\circ}C$, 첨착시간 5시간 조건에서 최상의 흡착 성능을 확인할 수 있었다. Cu-Cr-Pt-Pd 복합첨착 활성탄소섬유가 가장 뛰어난 흡착성능을 보였으며, 기존 활성탄소섬유보다 2배 이상의 높은 흡착성능을 확인하였다. 한편, 활성금속첨착 활성탄소섬유상에의 확산 및 흡착에 필요한 최소 접촉시간은 0.5초 이상은 유지해야 함을 확인 할 수 있었다.