• 제목/요약/키워드: maximum horizontal stress

검색결과 181건 처리시간 0.022초

심벌캡 변화에 따른 심벌타입 압전 트랜스듀서의 발전특성 (Generating Characteristics of Cymbal Type Piezoelectric Transducer according to Change of Cymbal Cap)

  • 박충효;김종욱;정현호;정성수;김명호;박태곤
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.318-318
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    • 2010
  • In this paper, we studied generating characteristic of cymbal type piezoelectric transducer according to change of cymbal cap. The transducer is composed of circular piezoelectric ceramic and two elastic bodies which are shaped as cymbal. Two elastic bodies are attached to upper and bottom of the ceramic. Principle of the transducer is to generate expanded displacement because vertical stress is transformed into horizontal stress by slope angle of elastic bodies. The transducer also has advantage of high durability by the angle of elastic bodies. In this study, each parameter was chosen, and then generating characteristics were analyzed by FEM program. The parameters were slope angle of cymbal cap (theta), cap height (h) and cap inner diameter(d). The model that had generating characteristic Of high voltage was chosen by results of the analysis. Besides, maximum vertical displacements according to change of vertical stress were analyzed by structural analysis in order to find out relation between the maximum vertical stress which can prevent from ceramic damage and conditions of each cap.

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탄.소성 Work-Hardening 모델에 대한 Program 개발 -Lade 모델을 중심으로-

  • 박병기;정진섭
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1991년도 추계학술발표회 논문집 지반공학에서의 컴퓨터 활용 COMPUTER UTILIZATION IN GEOTECHNICAL ENGINEERING
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    • pp.255-270
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    • 1991
  • In recent years. finite element methods have been used with increasing effectiveness in analysis of displacements and stresses within soil masses. However, one of the weakest links in the analytical representations used in these methods is the models of the material behaviour. Herein is discribed a modification to the finite element methods that allows solution problems with realistic stress-strain relation for soils. A finite element program for the precision prediction of the stress distribution within foundation has been developed using the elasto-plastic Work-Hardening model. The developed program is verified by comparing the results of this study with the tested results for Sacramento river sand. The main results obtained from the numerical examples are as follows: The vertical total stress increments are insensitive to drainage and constitutive equation of materials. The horizontal total stress increments are considerably affected by the drainage and constitutive equation of materials. The maximum shear stresses are affected by the drainage only in elasto-ptastic meterirals. The excess pore water pressures and the volumetric strains not only are considerably affected by the constitutive equation of materials. but also have almost similar distribution.

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상악 중절치 근관치료후 수복 방법에 따른 응력 분포의 유한 요소 분석 (FINITE ELEMENT ANALYSIS OF STRESS DISTRIBUTION ACCORDING TO THE METHOD OF RESTORATION AFTER ROOT CANAL THERAPY)

  • 이재영;이정식
    • Restorative Dentistry and Endodontics
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    • 제19권2호
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    • pp.549-567
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    • 1994
  • Restoration of severly damaged teeth after endodontic treatment had been an interest to many dentists, and it is a fact that there have been lots of studies about it. In these days, although we have used Para-Post, pins, threaded steel post, cast gold post and core, and so on, as a method of restoration frequently, it has been in controversy with the influence of them on the teeth and surrounding periodontal tissue. In this study, we assume that the crown of the upper incisor have severly damaged, so, after the root canal therapy, 4 types of restoration had been carried out; 1) coronal-radicular amalgam restoration, 2) after setting up the Para-Post, restore with composite resin core only, 3) after setting up the Para-Post; restore with amalgam core, then cover with the PPM crown 4) after setting up the Para-Post, restore with composite core, then cover with the PPM crown. After restoration, in order to observe the concentration of stress at internal portion of the teeth and the sourrounding periodontal tissue, developing a 2-dimensional finite element model of labiopalatal section, then loading forces from 3 direction - direction of 45 degrees from lingual side near the incisal edge, horizontal direction from labial height of contour, vertical direction at the incisal edge-were applied. The analyzed results were as follows: 1. Stress of the normal central incisor was concentrated on the dentin aroundpulp chamber, labiocervical portion of a tooth and root apex, but with the alveolar bone, in the case of load from the direction of 45 degrees from lingual side near the incisal edge showed remarkable concentration of stress: 2. Coronal-radicular amalgam technique -showed less concentration of stress on the root and surrounding periodontal tissue than the restoration with the Para-Post. 3. The von Mises equivalent stress on the Para-Post showed maximum value at root-core junction rather than both ends and model with PPM restoration with amalgam core showed the least concentration of stress. Only the force from horizontal direction showed large shear stress on internal portion of the root, root apex and alveolar bone. 4. PPM crown with composite core rarely showed the concentration of stress on root and periodontal tissue. 5. As for alveolar bone, remarkable shear stress was concentrated on labial and palatal side by horizontal load.

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전남 고흥 일대 백악기 화강암류의 아문미세균열을 이용한 백악기 말-신생대 3기 초 고응력장 (Late Cretaceous to Early Tertiary Paleostress from Healed Microcracks of Cretaceous Granites in Goheung Area, Jeonnam)

  • 강성승;임철기;심혜민;윤재홍;김정빈
    • 한국지구과학회지
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    • 제29권3호
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    • pp.255-262
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    • 2008
  • 고흥지역 일대에 분포하는 백악기 화강암을 대상으로 석영내에 발달해 있는 아문미세균열을 측정하여 연구지역의 고응력장을 분석하였다. 5개의 시료(GH-1, GH-3, GH-4, GH-5, GH-8)에서 아문미세균열들의 방향을 측정하여 분석한 결과, GH-1, GH-3, GH-4에서 최대수평주응력은 $N60^{\circ}W$$N70^{\circ}E$, $N20^{\circ}W,\;N50^{\circ}W$의 방향성이 가장 우세하였으며, N-S와 $N30^{\circ}E$의 방향성도 미약하게 나타났다. GH-5와 GH-8시료에서는 최대수평주응력의 방향 $N40^{\circ}E$$N10^{\circ}E$가 가장 우세하였고, $N40^{\circ}W$의 방향성도 미약하게 나타났다 전체적인 최대수평주응력의 방향은 $N60^{\circ}W$가 가장 우세하였으며, $N20^{\circ}W$, $N20^{\circ}E$, $N70^{\circ}E$등의 방향성도 미약하게 나타났다. 이 연구의 결과와 기존의 고등력장에 관한 연구결과를 종합해 볼 때, 백악기 말에서 신생대 3기 초 사이 연구지역에 작용한 최대수평주응력의 방향은 WNW에서 NE로 변화했을 것으로 판단되며, 그 원인으로는 그 당시 동북아시아 일대에 일어났던 복잡한 지구조운동에 기인한 것으로 사료된다.

F-5E/F 외부 연료탱크 수평 핀 균열 분석 및 재설계 (The Crack Analysis and Redesign of Horizontal Fin of F-5E/F's External Fuel Tank)

  • 강치행;윤용인;정대한
    • 한국항공우주학회지
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    • 제38권4호
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    • pp.382-388
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    • 2010
  • 본 논문에서는 마그네슘합금 재료로 제작된 F-5E/F의 외부 연료탱크 수평 핀의 균열 발생 원인을 분석하고 적절한 대체 재질을 검토하여 탱크의 투하 안전성을 보장하도록 핀의 형상을 재설계하였다. 재료는 재료의 성질과 조달 용이성을 고려하여 강도 및 파괴 인성이 기존재료보다 강하지만 핀 1개당 65%의 무게증가가 예상되는 알루미늄 합금 2024-T351을 선택하였다. 핀의 무게 증가로 인한 연료탱크 무게 중심의 후방 이동을 허용한계 이내로 유지하기 위하여 크기를 20% 축소하고, 두께 7 mm, 곡률 반경 8.5 mm로 설계된 핀에 대하여 정적 및 동적 응력을 해석한 결과 후방 체결부 및 체결 홀의 안전계수가 증가되었음이 확인되었다.

대형모형실험을 통한 수평 절리암반에서의 병설터널 이격거리 (Pillar Width of Twin Tunnels in Horizontal Jointed Rock Using Large Scale Model Tests)

  • 이용준;이상덕
    • 터널과지하공간
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    • 제20권5호
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    • pp.352-359
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    • 2010
  • 병설터널에서 근접 굴착으로 인한 영향은 터널간 이격거리에 따라 달라진다. 본 논문에서는 수평절리암반에 형성된 병설터널의 이격거리에 따른 영향을 파악하기 위하여 콘크리트 블록으로 균일 수평 절리 모형 지반을 조성하고 이격거리를 변화시키면서 모형터널을 설치한 후에 대형 모형실험을 수행하였다. 병설터널의 이격거리(필라폭)는 터널 폭 D를 기준으로 0.29D, 0.59D, 0.88D, 1.18D로 변화시켰다. 실험중에 필라 응력, 터널변위, 지반 변위를 계측하였다. 측압계수는 1.0을 유지하였다. 실험결과, 터널 및 주변지반의 변위와 필라 응력은 필라 폭이 감소함에 따라 증가하였다. 각 계측항목에서 최대 변화폭이 발생하는 단계는 후행터널의 상반굴착 직후로 나타났다. 병설터널 굴착 시 가장 큰 영향을 받는 위치는 필라부와 맞닿아 있는 선행터널의 어깨부로 확인되었다. 이러한 결과는 병설터널의 안정성은 시공 시 천단변위보다 내공변위 관리를 통해 평가되어야 한다는 것을 보여준다. 또한, 병설터널의 영향권이 양호한 지반조건에 대한 경험이론의 근접시공 영향권(0.8D~2.0D)보다 근접한 0.59D~0.88D 범위에서 형성되었으며 이러한 영향범위 감소는 병설터널의 안정성에 수평절리의 영향이 있는 것으로 판단된다.

두 이방성 띠판에 내재된 면외변형하의 등속평행 균열 (Parallel Crack with Constant Velocity in Two Bonded Anisotropic Strip Under Anti-Plane Deformation)

  • 박재완;김남훈;최성렬
    • 대한기계학회논문집A
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    • 제24권2호
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    • pp.496-505
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    • 2000
  • A semi-infinite parallel crack propagated with constant velocity in two bonded anisotropic strip under anti-plane clamped displacement is analyzed. Using Fourier integral transform a Wiener-Hopf equation is derived. By solving this equation the asymptotic stress and displacement fields near the crack tip are determined, where the results give the more general expression applicable to the extent of the anisotropic material having one plane of elastic symmetry for the parallel crack. The dynamic stress intensity factor and energy release rate are also obtained as a closed form, which are the results applicable to the problem both of dynamic and static crack under the same geometry as this study. The stress intensity factor approaches zero at the critical crack velocity which is less than the shear wave velocity, but in typical case of isotropic or orthotropic material agrees with the velocity of shear wave. Also a circular shear stress around crack tip is considered, from which the stress is shown to be approximately symmetric about the horizontal axis. Referring to the maximum stress criteria, it could be shown that a brenched crack is formed by crack growth as crack velocity increases.

보강토 옹벽 축조시 사용되는 보강재의 강성이 시공완료후 보강토 옹벽 구조체의 거동에 미치는 영향 (Analysis on the behavior of Stiffened Reinforcement within Reinforced earth retaining wall)

  • 박병영;유충식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 토목섬유기술위원회 학술세미나 논문집
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    • pp.1-11
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    • 2001
  • This Paper presents the result of a parametric study on the behavior of stiffened grid reinforced segmental wall resting on non-yielding foundation. The parametric study was conducted using the nonlinear finite element analysis. In the finite element analysis, the step by step construction of the wall such as backfill, block reinforcement, block/backfill and soil/reinforcement interfaces were carefully modeled. The mechanical behavior of stiffened grid reinforced segmental walls was then investigated based on the result of analysis with emphasis on the effect of reinforcement stiffness on the behavior of the wall. The results of analysis indicate that the horizontal wall displacement decrease; with increasing the reinforcement stiffness at a decreasing rate, and that the horizontal stress at the back of the reinforced soil block does not much vary with the reinforcement stiffness. It is also revealed that the calculated maximum vertical stress at the base of the reinforced soil block agrees well with that based on the Meyerhof distribution and that the reinforcement and the connection force are considerably smaller than what might be expected based on the current design assumptions. The implications of the findings from this study to current design approaches were discussed in detail.

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Investigation the effect of dynamic loading on the deformation of ancient man-made underground spaces

  • Rezaee, Hooman;Noorian-Bidgoli, Majid
    • Earthquakes and Structures
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    • 제22권3호
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    • pp.277-287
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    • 2022
  • The ancient underground cities are a collection of self-supporting spaces that have been manually excavated in the soil or rock in the past. Because these structures have a very high cultural value due to their age, the study of their stability under the influence of natural hazards, such as earthquakes, is very important. In this research, while introducing the underground city of Ouyi Nushabad located in the center of Iran as one of the largest man-made underground cities of the old world, the analysis of dynamic stability is performed. For this purpose, the dynamic stress-displacement analysis has been performed through numerical modeling using the finite element software PLAXIS. At this stage, by simulating the Khorgo earthquake as one of the large-scale earthquakes that occurred in Iran, with a magnitude of 6.9 on the Richter scale, dynamic analysis by time history method has been performed on three selected sections of underground spaces. This study shows that the maximum amount of horizontal and vertical dynamic displacement is 12.9 cm and 17.7 cm, respectively, which was obtained in section 2. The comparison of the results shows that by increasing the cross-sectional area of the excavation, especially the distance between the roof and the floor, in addition to increasing the amount of horizontal and vertical dynamic displacement, the obtained maximum acceleration is intensified compared to the mapping acceleration applied to the model floor. Therefore, preventive actions should be taken to stabilize the excavations in order to prevent damage caused by a possible earthquake.

Three dimensional finite element analysis of the stress distribution around the mandibular posterior implant during non-working movement according to the amount of cantilever

  • Park, Ji-Man;Kim, Hyun-Joo;Park, Eun-Jin;Kim, Myung-Rae;Kim, Sun-Jong
    • The Journal of Advanced Prosthodontics
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    • 제6권5호
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    • pp.361-371
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    • 2014
  • PURPOSE. In case of large horizontal discrepancy of alveolar ridge due to severe resorption, cantilevered crown is usually an unavoidable treatment modality. The purpose of this study was to evaluate the clinical criteria for the placement of the aforementioned implant crown. MATERIALS AND METHODS. The mandible model with 2 mm thick cortical bone and cancellous bone was fabricated from CT cross-section image. An external connection type implant was installed and cantilevered crowns with increasing offset of 3, 4, 5, 6, and 7 mm were connected. Vertical load and $30^{\circ}$ oblique load of 300 N was applied and stress around bone and implant component was analyzed. A total of 14 cases were modeled and finite element analysis was performed using COSMOS Works (Solid works Inc, USA). RESULTS. As for the location of the vertical load, the maximum stress generated on the lingual side of the implant became larger according to the increase of offset distance. When the oblique load was applied at $30^{\circ}$, the maximum stress was generated on the buccal side and its magnitude gradually decreased as the distance of the offset load increased to 5 mm. After that point, the magnitude of implant component's stress increased gradually. CONCLUSION. The results of this study suggest that for the patient with atrophied alveolar ridge following the loss of molar teeth, von-Mises stress on implant components was the lowest under the $30^{\circ}$ oblique load at the 5 mm offset point. Further studies for the various crown height and numbers of occusal points are needed to generalize the conclusion of present study.