• 제목/요약/키워드: Vertical and inclination forces

검색결과 6건 처리시간 0.033초

임프란트 고정체와 지대주 직경의 차이가 응력분포에 미치는 영향 (THE EFFECT OF THE DIFFERENCE OF THE IMPLANT FIXTURE AND ABUTMENT DIAMETER FOR STRESS DISTRIBUTION)

  • 정종원;이청희
    • 대한치과보철학회지
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    • 제42권5호
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    • pp.583-596
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    • 2004
  • Statement of problem : Stress concentration on the neck bone affects the bone resorption, and finally the implant survival. Purpose: In order to examine the stress distribution on the neck bone and prosthesis abutment for implants, decreasing abutment sizes were used. Material and methods : Axisymmetric models were used to obtain the data required. These models were composed of 4mm implants with 3.4mm and 4mm abutments, 5mm implants with 3.4mm and 5mm abutments and 6mm implants with 3.4mm and 6mm abutments. All abutments were designed to received a 10mm high by 10mm diameter gold crown. Functional element analysis was used to obtain these results using data that consisted of 50 N vertical and 45 degree inclination forces. Results : 1. Changing the diameter of the abutment on the implant affects the effect of the inclination forces more than the effect of the vortical forces. 2. Changing the diameter of the abutment on the implant affect the effect of the inclination forces more than the effect of the vertical forces. 3. Experimentation showed that the larger diameter implants provided a decreased neck bone stress, whereas a larger diameter abutment provided a decrease marginal abutment stress. 4. Experimentation showed that the neck bone and abutment received more stress from inclination forces than vertical forces, Conclusions: By decreasing the size of the abutment on the implant we were able to diminishneck bone stress.

손상 선박의 자세를 고려한 여객선 승객 탈출 시뮬레이션 (Passenger Ship Evacuation Simulation Considering External Forces due to the Inclination of Damaged Ship)

  • 하솔;조윤옥;구남국;이규열;노명일
    • 대한조선학회논문집
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    • 제50권3호
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    • pp.175-181
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    • 2013
  • This paper presents a simulation for passenger ship evacuation considering the inclination of a ship. In order to describe a passenger's behavior in an evacuation situation, a passenger is modeled as a rigid body which translates in the horizontal plane and rotates along the vertical axis. The position and rotation angle of a passenger are calculated by solving the dynamic equations of motions at each time step. To calculate inclined angle of damaged ship, static equilibrium equations of damaged ship are derived using "added weight method". Using these equations, physical external forces due to the inclination of a ship act on the body of each passenger. The crowd behavior of the passenger is considered as the flock behavior, a form of collective behavior of a large number of interacting passengers with a common group objective. Passengers can also avoid an obstacle due to penalty forces acting on their body. With the passenger model and forces acting on its body, the test problems in International Maritime Organization, Maritime Safety Committee/Circulation 1238(IMO MSC/Circ.1238) are implemented and the effects of ship's inclination on the evacuation time are confirmed.

Effect of seismic acceleration directions on dynamic earth pressures in retaining structures

  • Nian, Ting-Kai;Liu, Bo;Han, Jie;Huang, Run-Qiu
    • Geomechanics and Engineering
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    • 제7권3호
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    • pp.263-277
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    • 2014
  • In the conventional design of retaining structures in a seismic zone, seismic inertia forces are commonly assumed to act upwards and towards the wall facing to cause a maximum active thrust or act upwards and towards the backfill to cause a minimum passive resistance. However, under certain circumstances this design approach might underestimate the dynamic active thrust or overestimate the dynamic passive resistance acting on a rigid retaining structure. In this study, a new analytical method for dynamic active and passive forces in c-${\phi}$ soils with an infinite slope was proposed based on the Rankine earth pressure theory and the Mohr-Coulomb yield criterion, to investigate the influence of seismic inertia force directions on the total active and passive forces. Four combinations of seismic acceleration with both vertical (upwards or downwards) and horizontal (towards the wall or backfill) directions, were considered. A series of dimensionless dynamic active and passive force charts were developed to evaluate the key influence factors, such as backfill inclination ${\beta}$, dimensionless cohesion $c/{\gamma}H$, friction angle ${\phi}$, horizontal and vertical seismic coefficients, $k _h$ and $k_v$. A comparative study shows that a combination of downward and towards-the-wall seismic inertia forces causes a maximum active thrust while a combination of upward and towards-the-wall seismic inertia forces causes a minimum passive resistance. This finding is recommended for use in the design of retaining structures in a seismic zone.

Slim hole 경사 환형관내 고-액 혼합유동 특성에 관한 연구 (Solid-liquid mixture flow characteristics in an inclined slim hole annulus)

  • 서병택;한상목;우남섭;김영주;황영규
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.1315-1320
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    • 2008
  • An experimental study was carried out to study the solid-liquid mixture upward flow in a vertical and inclined annulus with rotating inner cylinder. Lift forces acting on a fluidized particle plays a central role in many importance applications, such as the removal of drill cuttings in horizontal drill holes, sand transport in fractured reservoirs, sediment transport and cleaning of particles from surfaces, etc. Field measurements have revealed that the pressure drop over a borehole during drilling of a slim oil well or a well with a long reach can depend significantly on the rotation speed of the drill pipe. An accurate prediction of the annular frictional pressure drop is therefore important for conditions where the annular clearance is small. Effect of annulus inclination and drill pipe rotation on the carrying capacity of drilling fluid, particle rising velocity, and pressure drop in the slim hole annulus have been measured for fully developed flows of water and of aqueous solutions.

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경사 환형관내 고-액 혼합 유동특성에 관한 연구 (Study on Solid-liquid Mixture Flow in Inclined Annulus)

  • 김영주;김영훈;우남섭
    • 한국해양공학회지
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    • 제25권5호
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    • pp.15-20
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    • 2011
  • This study carried out a series of experiments involving impact tests (Drop Weight type & Charpy type with a standard specimen and newly designed I-type specimen), hardness tests, and fracture surface observations of French-made roll shell steel (F), abnormal roll shell steel (M), reheated roll shell steel (R), and S25C steel under heat treatment conditiAn experimental study was carried out to study the solid-liquid mixture upward hydraulic transport of solid particles in vertical and inclined annuli with a rotating inner cylinder. The lift forces acting on a fluidized particle play a central role in many important applications such as the removal of drill cuttings in horizontal drill holes, sand transport in fractured reservoirs, sediment transport, the cleaning of particles from surfaces, etc. In this study a clear acrylic pipe was used to observe the movement of solid particles. Annular velocities varied from 0.4 to 1.2 m/s. The effect of the annulus inclination and drill pipe rotation on the carrying capacity of a drilling fluid, particle rising velocity, and pressure drop in a slim hole annulus were measured for fully-developed flows of water and aqueous solutions of CMC (sodium carboxymethyl cellulose) and bentonite. The rotation of the inner cylinder was efficient at carrying particles to some degree. For a higher particle volume concentration, the hydraulic pressure loss of the mixture flow increased because of the friction between the wall and solids or between solids.

치조골 상실에 따른 three-piece base arch appliance를 이용한 상악전치부 intrusion에 대한 3차원 유한요소법적 연구 (Three-dimensional finite element analysis on intrusion of upper anterior teeth by three-piece base arch appliance according to alveolar bone loss)

  • 하만희;손우성
    • 대한치과교정학회지
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    • 제31권2호통권85호
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    • pp.209-223
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    • 2001
  • 치조골 결손을 갖는 환자의 상악전치부 압하(intrusion)시 필수적인 pure intrusion을 위해 three-piece base arch appliance와 후방견인력의 적용이 필요하게 된다. Three-piece base arch appliance를 적용한 상악전치부 압하시의 상악 6전치, 치근막 및 치조골의 3차원 유한요소모델을 제작하였다. Three-piece base arch appliance를 이용한 상악 전치부압하시 치아 수에 따른 저항중심의 위치, 치조골 흡수에 따른 pure intrusion을 위한 후방견인력 변화 양상, 그리고 이때의 치조골 높이에 따른 저항중심의 수직적, 수평적 위치 변화의 상관관계에 대해 다음과 같은 결과를 얻었다. 1. 치축 경사도와 치조골 높이가 정상이고, 압하시 three-piece base arch appliance를 이용한 경우 압하 하중점이 전후방적으로 저항중심을 통과하기 위한 조건은 다음과 같다. 1) 2 전치군(중절치군)을 대상으로 한 경우에는 중절치 브라켓 원심면에서 후방 6mm 지점으로, 측절치 브라켓 전방 1/3부위에 위치 하였다. 2) 4 전치군(중절치와 측절치군)을 대상으로 한 경우에는 측절치 브라켓 원심면에서 후방 5mm지점으로, 측절치와 견치 브라켓 사이 공간의 후방 2/3부위에 위치하였다. 3) 6 전치군(중절치, 측절치와 견치군)을 대상으로 한 경우에는 견치 브라켓 원심면에서 후방 7mm 지점으로, 제 1소구치 브라켓 중앙부위에 위치하였다. 4) 치아 수 증가에 따른 저항중심의 후방이동을 관찰할 수 있었고, 4 전치군 보다 6 전치군에서 후방 이동량이 크게 나타났다. 2. 치조골 높이가 정상일 때, pure intrusion을 위한 후방견인력을 적용할 경우 수직 압하점은 저항중심과 같거나 약간 전방에 위치했다. 3. 동일한 압하력과 압하점 적용시 치조골 상실 증가에 따른 압하시 pure intrusion을 위한 후방견인력 변화는 다음과 같다. 1) 2 전치군과 4 전치군의 후방 견인력은 6 전치군의 후방 견인력에 비해 낮게 나타났다. 2) 치조골이 상실됨에 따라 각 치아군 후방견인력은 증가됨을 보였다. 4. 상악 전치부 치아군과 치조골 높이에 따른 저항중심의 수평적, 수직적 위치간 상관관계는 다음과 같다. 1) 2 전치군일 때, 치조골 상실에 따른 저항중심의 수직적 위치변화에 대한 수평적 위치 변화가 가장 크게 나타났다. 치아 수가 증가할수록 치조골 상실에 따른 저항중심의 수직적 위치 변화에 대한 수평적 위치변화는 작아지는 경향을 보였다. 2) 치조골 상실량이 커짐에 따라서는, 치아 수에 관계 저항중심의 수직적 위치변화에 대해 수평적 위치변화가 커졌다.

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