• 제목/요약/키워드: Contact Stress Distribution

검색결과 278건 처리시간 0.028초

척추체간 유합케이지의 스파이크형상 변화에 따른 척추체의 응력분포 및 케이지의 안정성에 대한 수치적 해석 (Numerical Analysis on Stress Distribution of Vertebra and Stability of Intervertebral Fusion Cage with Change of Spike Shape)

  • 심해영;김철생;오재윤
    • 대한의용생체공학회:의공학회지
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    • 제25권5호
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    • pp.361-367
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    • 2004
  • 척추체간 유합케이지의 성능평가에 있어서 압축강도와 상대적인 3차원적 안정성 그리고 골유도를 촉진시킬 수 있는 형상은 성공적인 골유합의 정도를 판가름 할 수 있는 중요한 척도이다. 새로 고안된 박스형 유합케이지 스파이크의 형상변화에 따른 척추체의 골단판에 미치는 응력분포 양상과 케이지의 안정성을 비교하기 위하여 압축하중 작용 초기에 스파이크 끝딘과 골단판이 접촉하는 경우와 스파이크가 골단판에 삽입되었을 경우를 구분하여 스파이크의 높이, 폭 및 각도를 변화시켜 가면서 유한요소 해석을 실시하여 고찰하였다. 유합케이지 2개가 척추체간에 삽입되어 있는 상태에서 수직하중 1700N이 가해질 때 척추체 골단판에 전달되는 응력분포를 조사하였으며, 전, 후방향으로 케이지 하나에 100N의 pull out하중을 부과하여 케이지의 스파이크 형상변화에 따른 미세이동 정도를 비교 평가하였다. 그 결과, 척추체 골단판의 응력 집중 정도에 가장 큰 영향을 미치는 요인은 케이지스파이크 끝단 폭의 크기이며, 케이지 스파이크의 높이 및 각도의 변화는 스파이크 끝단과 접촉하는 척추체 골단판에 미치는 응력 정도에 큰 영향을 미치지 않았다. 스파이크 경사면 각도조절 및 양방향혼합형의 대칭 배열을 통하여 전후방향 pull-out하중에 대한 변위량을 저감시킬 수 있었다. 본 연구의 결과를 통하여 척추체에서의 응력집중을 피할 수 있고 케이지의 초기 접촉시 골단판의 파괴를 방지하고 골유합에 유리한 케이지 스파이크 형상을 설계하였고, 케이지 치환술 후 운동시 전후방향으로 이동을 최소화하여 기계적 안정성을 높일 수 있는 새로운 척추체간 유합 케이지의 최적 형상을 제안하였다.

플러그인 HEV용 베어링 수명 및 응력분포의 분석예측 (Analytical Prediction of Bearing Life and Load Distribution for Plugin HEV)

  • 장기;강재화;윤기백;류성기
    • 한국기계가공학회지
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    • 제11권5호
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    • pp.1-7
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    • 2012
  • The transportation is almost dependent on a single fuel petroleum with transportation energy dilemma. Hybrid Electric Vehicle(HEV) technology holds more advantages on efficiency improvements for petroleum consumption at the transportation. And bearing is recognized as the important component of gearbox. Gearboxes for HEV transmission have been ensured the highest reliability over some years in withstanding high dynamic loads. At the same time, the demands of lightweight design and cost minimization are required by thought-out design, high-quality material, superior production quality and maintenance. In order to design a reliable and lightweight gearbox, it is necessary to analyze bearing rating life methods between standard and different bearing companies with calculation methods for modification factors. In this paper, the influence of life time of bearings will be pointed out. Bearing contact stress and load stress distribution of HEV gearbox are obtained and compared with Romaxdesigner and BearinX. And the unequal wear of the left bearing for the gearbox intermediate shaft is investigated between simulation and test.

플러그인 HEV용 베어링 수명 및 응력분포의 분석예측 (Analytical Prediction of Bearing Life and Load Distribution for Plugin HEV)

  • 장기;강재화;윤기백;류성기
    • 한국기계가공학회지
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    • 제11권4호
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    • pp.25-30
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    • 2012
  • The transportation is almost dependent on a single fuel petroleum with transportation energy dilemma. Hybrid Electric Vehicle(HEV) technology holds more advantages on efficiency improvements for petroleum consumption at the transportation. And bearing is recognized as the important component of gearbox. Gearboxes for HEV transmission have been ensured the highest reliability over some years in withstanding high dynamic loads. At the same time, the demands of lightweight design and cost minimization are required by thought-out design, high-quality material, superior production quality and maintenance. In order to design a reliable and lightweight gearbox, it is necessary to analyze bearing rating life methods between standard and different bearing companies with calculation methods for modification factors. In this paper, the influence of life time of bearings will be pointed out. Bearing contact stress and load stress distribution of HEV gearbox are obtained and compared with Romaxdesigner and BearinX. And the unequal wear of the left bearing for the gearbox intermediate shaft is investigated between simulation and test.

접촉하중을 받는 코팅층이 있는 부재의 응력해석을 위한 부분 모델 방법의 개발 (The Development of Partial Model for Thermo-Mechanical Stress Analyses of Part with Coated Layer under Contact Load)

  • 권영두;김석삼;구남서;박정규
    • Tribology and Lubricants
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    • 제18권3호
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    • pp.194-203
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    • 2002
  • This paper is the first step fur thermo-mechanical stress analyses of part with coated layer under contact load. A lot of coated material is applied in many structures to endure severe situation, like thermal stresses, high temperature gradients, irradiation, impacts by microscopic meteorites, and so on. In this part we are going to apply the FEM to analyze space parts with a coated layer subjected to a contact load thermo-mechanically. Coating layer is very thin in comparision with the structure, therefore it should take more times and behaviors to analyze whole model. In these reason we develop the FEM method of analyzing part with coated layer under contact load using partial model. Steady state temperature distribution of the part is obtained first, and then we apply quasi-static external load on the part. To obtain the final stage of solution, we compute the total solution, and by subtracting the thermal strain from the total ones we get the mechanical strains to compute stresses of the parts. In using the FEM, one has to discretize the model into many sub-domain, finite elements. The method is consisited of two steps. First step is to analyze the whole model with rather coarse meshes. Second step we cut a small region near the loading point, and analyze with very fine meshes. This method is allowable by the Saint-Venant's principle. And then, we finally shall check the therma1 load on the stresses of the space part with coating layer with or without substrate cracks. Then, we predict the actual behaviors of the part used in space.

스프링백 특성에 영향을 미치는 수치변수의 분석을 위한 다구치 실험계획법의 응용 (Application of the Taguchi Method to the Analysis of the Numerical Parameters Influencing Springback Characteristics)

  • 김형종;전태보
    • 산업기술연구
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    • 제20권A호
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    • pp.211-218
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    • 2000
  • It is desirable but difficult to predict springback quantitatively and accurately for successful tool and process design in sheet stamping operations. The result of springback analysis by the finite element method (FEM) is sensitively influenced by numerical factors such as blank element size, number of integration points, punch velocity, contact algorithm, etc. In the present work, a parametric study by Taguchi method is performed in order to evaluate the influence of numerical factors on the result of springback analysis quantitatively and to obtain the combination of numerical factors which gives the best approximation to experimental data. Since springback is determined by the residual stress after forming process, it is important to evaluate stress distribution accurately. The oscillation in the time history curve of stress obtained by the dynamic-explicit finite element method says that the stress solution at termination time is in very unstable state. Therefore, a variability study is also carried out in this study in order to assess the stability of implicit springback analysis starting from the stress solution by explicit forming simulation. The U-draw bending process, one of the NUMISHEET '93 benchmark problems, is adopted as an application model because it is most popular one for evaluating the springback characteristic.

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Numerical modelling of stress and deflection behaviour for welded steel beam-column

  • Soy, Ugur
    • Steel and Composite Structures
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    • 제12권3호
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    • pp.249-260
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    • 2012
  • In this study, stress and deflection behaviours of T-type welding joint applied to HE200M steel beam and column were investigated in finite element method (FEM) under different distributed loads. In the 3D-FEM modelling, glue option was used to contact between steel materials and weld nuggets. Geometrical model was designed as 3-dimensional solid in ANSYS software program. After that, homogeneous, linear and isotropic properties were used to design to materials of model. Solid-92 having 3-dimensional, 4 faced and 10-noded was selected as element type. In consequence of mesh operation, elements of 13285 and nodes of 28086 were occurred. Load distribution was applied to top surface of steel beam to determine behaviours of stress and deflection. As a result of FEM analysis applied with the loads of 55,000 N, 110,000 N and 220,000 N, maximum values were obtained as 116 N/$mm^2$, 232 N/$mm^2$ and 465 N/$mm^2$ for stress and obtainedas 1,083 mm, 2,166 mm and 4.332 mm for deflection, respectively. When modelling results and classical calculation values were compared, it was obtained difference of 10 % for stress values and 2.5% for deflection values.

원자력 발전소용 쓰나미 댐퍼의 거동특성에 관한 연구 (A Study on the Behavior Characteristics of Tsunami Damper for the Nuclear Power Plant)

  • 서지환;김병탁;진도훈
    • 한국기계가공학회지
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    • 제13권4호
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    • pp.106-112
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    • 2014
  • This study presents the mechanical behavior of a ventilating window (a tsunami damper) on the building wall of a nuclear power plant. The window, which is under development, is used to ventilate a machinery room and the building under normal conditions, but it also provides a safety barrier for critical equipment against a tsunami caused by an earthquake. A finite element analysis was conducted to investigate the deflection and the stress distribution of the window under given loading conditions. With symmetry, a one-quarter portion of one window was modeled, and the pressure due to a great tide is assumed to be 7 bar. A structural analysis of the assembled frame, composed of a blade and casing, was also conducted using contact conditions to find the stress and strain configurations caused by the applied pressure.

전기스피닝 공구의 삼분력 해석 (Analysis of three force components of shear spinning)

  • 최재찬;백남주
    • 대한기계학회논문집
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    • 제5권2호
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    • pp.88-93
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    • 1981
  • The three force components of shear spinning are calculated by a newly proposed deformation model. The spinning process is understooed as shearing deformation arter uniaxial yuelding by ending, and shear stress .tau.$\sub$rz/ becomes .kappa. the yueld limit in pure shear, in the deformation zone. The tangential forces are calculated and then the feed forces and normal foeces are obtained by assuming a nuiform distribution of roller pressure on the contact surface. An optimum contact area is obtaned by minimizing the bending energy required to obtain the assumed deformation mechanism. The calculated forces are compared with experimental data form published literature and present experiments. Good agreement cetween calculated and experimental values for working forces is obtained over a wide range of process variables.

플랜지 체결 시 금속 개스킷의 구조해석 (Structure analysis of metal gaskets in tightened flanges)

  • 인상렬;윤병주
    • 한국진공학회지
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    • 제15권5호
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    • pp.475-484
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    • 2006
  • 컨플래트 (Con-Flat) 및 개량형 (IPD) 플랜지에서 개스킷을 넣고 체결할 때 나사의 체결력 또는 선하중에 따라 플랜지 및 개스킷에 발생하는 변형량, 응력 분포, 접촉 면압 따위의 계산을 통해 플랜지 날의 형상이나 체결조건이 기밀에 미치는 영향을 분석 또는 예측하는 것이 가능한지를 판단해 보았다.

성견 경골에서 최적화 기법을 이용하여 형상 개선된 임프란트의 조직계측학적 분석 (Histomorphometric evaluation of the implant designed by shape optimization technique)

  • 권혁락;문상권;심준성;안세영;이훈;김한성;최성호;김종관
    • Journal of Periodontal and Implant Science
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    • 제34권1호
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    • pp.35-48
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    • 2004
  • Since the occlusal loading is transmitted to the surrounding bone, the success of an implant treatment is closely related to the distribution of the stress on the implant. The finite element analysis method is often used in order to produce a model for dispersion of stress. Assessment of the success of the implant is usually based on the degree of osseointegration which is a bone and implant surface interface. Implant used in this research was designed through the method of shape optimization after the stress on implant was anaylzed by the finite element analysis method. This study was pertinently assessed by a clinical, histologic, histomorphometric analysis after the shape optimized implant was installed on beagle dog tibia. The results are as follows 1. It clinically showed a good result without mobility and imflammatory reaction. 2. Implant was supported by dense bone and bone remodeling showed on the surrounding area of the implant 3. The average percentage of bone-implant contact was 58.1%.The percentage of bone density was 57.6%. Having above results, shape optimized implant showed the pertinence through clinical and histologic aspects. However, to use the shape optimized implant, the further experiment is required for finding problems, improvement.