• 제목/요약/키워드: supporting force

검색결과 386건 처리시간 0.023초

유지관리기 치주환자의 전치 및 소구치에서 잔존 치조골량에 따른 교합력의 비교 연구 (A comparative study of bite force associated with remaining bone level in anterior and premolar teeth at periodontal maintenance phase)

  • 송규원;임성빈;정진형
    • Journal of Periodontal and Implant Science
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    • 제32권3호
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    • pp.643-653
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    • 2002
  • Periodontal supporting tissue goes through destruction by chronic inflammatory periodontal disease as two aspect. One is qualitive aspect such as alteration of periodontium, the other is quantitative aspect such as alveolar bone loss. According to many authors, PDL is responsible for biting force, and there are two mean. for measuring PDL's function - mobility test and biting force test. This study was conducted to compare the biting force with remaining bone level, that is, quantitative aspect of periodontium, in anterior and premolar teeth at periodontal maintenance phase. 17 patients on periodontal maintenance phase during 6 months at minimum were selected for this study. For the same condition, 4 anterior, canine, premolar teeth were tested by MPM-3000 bite-force register at the same time(a.m.l0-12), the same position, the same posture, by the same examiner. Patients of TMI), ill-fitting pros thesis, general disease, malocclusion and the teeth of TFO, absence of opposing teeth, malposition were excluded. Remaining bone level was measured on the panorama X-ray film through 5 level from 1mm below CEJ to root apex. Teeth were examined twice, and bigger one was selected. If the values showed large difference. examinatin was re-done and the mean was selected. The results were as follows ; 1. In the 4 anterior group, as the remaining bone is decreased, the average of maximal biting force is decreased. Especially, at 3/5 bone level, maximal biting force is decreased significantly(p<0.01). 2. In the canine group, as the remaining bone is decreased, the average of maximal biting force is decreased. Especially, at 2/5 bone level, maximal biting force is decreased significantly(p<0.01). 3. In the premolar group, as the remaining bone is decreased, the average of maximal biting force is decreased. Especially, at 3/5 bone level, maximal biting force is decreased significantly(p<0.05). From the results of this study, clinicians could utilize these efficiently when they have to determine the proper restorative materials, time for tooth extraction, treatment plan, prognosis.

두 가지 축구 골킥 동작의 운동역학적 비교 분석 (Biomechanical Comparative Analysis of Two Goal-kick Motion in Soccer)

  • 진영완;신제민
    • 한국운동역학회지
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    • 제15권1호
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    • pp.29-44
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    • 2005
  • The purpose of this study is to reveal the effects of two different kicks, the drop kick and the punt kick, into the kicking motion, through the kinetic comparative analysis of the kicking motion, which is conducted when one kicks a soccer goal. To grasp kinetic changing factors, which is performed by individual's each body segment, I connected kicking motions, which were analyzed by a two dimension co-ordination, into the personal computer to concrete the digits of it and smoothed by 10Hz. Using the smoothed data, I found a needed kinematical data by inputting an analytical program into the computer. The result of comparative analysis of two kicking motions can be summarized as below. 1. There was not a big difference between the time of the loading phase and the time of the swing phase, which can affect the exact impact and the angle of balls aviation direction. 2. The two kicks were not affected the timing and the velocity of the kicking leg's segment. 3. In the goal kick motion, the maximum velocity timing of the kicking leg's lower segment showed the following orders: the thigh(-0.06sec), the lower leg(-0.05sec), the foot(-0.018sec) in the drop kick, and the thigh(-0.06sec), the lower leg(-0.05sec), the foot(-0.015sec) in the punt kick. It showed that whipping motion increases the velocity of the foot at the time of impact. 4. At the time of impact, there was not a significant difference in the supporting leg's knee and ankle. When one does the punt kick, the subject spreads out his hip joint more at the time of impact. 5. When the impact performed, kicking leg's every segment was similar. Because the height of the ball is higher in the punt kick than in the drop kick, the subject has to stretch the knees more when he kicks a ball, so there is a significant affect on the angle and the distance of the ball's flying. 6. When one performs the drop kick, the stride is 0.02m shorter than the punt kick, and the ratio of height of the drop kick is 0.05 smaller than the punt kick. This difference greatly affects the center of the ball, the supporting leg's location, and the location of the center of gravity with the center of the ball at the time of impact. 7. Right before the moment of the impact, the center of gravity was located from the center of the ball, the height of the drop kick was 0.67m ratio of height was 0.37, and the height of the punt kick was 0.65m ratio of height was 0.36. The drop kick was located more to the back 0.21m ratio of height was 0.12, the punt kick was located more to the back 0.28m ratio of height was 0.16. 8. There was not a significant difference in the absolute angle of incidence and the maximum distance, but the absolute velocity of incidence showed a significant difference. This difference is caused from that whether players have the time to perform of not; the drop kick is used when the players have time to perform, and punt kick is used when the players launch a shifting attack. 9. The surface reaction force of the supporting leg had some relation with the approaching angle. Vertical reaction force (Fz) showed some differences in the two movements(p<0.05). The maximum force of the right and left surface reaction force (Fx) didn't have much differences (p<0.05), but it showed the tendency that the maximum force occurs before the peak force of the front and back surface (Fy) occurs.

건조 모래지반의 상대밀도에 따른 무리말뚝의 동적거동특성 (Dynamic Behavior Characteristics of Group Piles with Relative Density in Sandy Soil)

  • 김흥태;강홍식;정구식;안광국
    • 한국지반환경공학회 논문집
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    • 제24권9호
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    • pp.33-40
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    • 2023
  • 지진 시 상부구조물을 지지하는 말뚝기초에 가해지는 수평 하중은 상부구조물의 관성력과 지반의 운동력으로 구분된다. 상부구조물의 관성력과 지반의 운동력은 서로 다른 복잡한 메커니즘을 통해 말뚝기초에 피해를 입힐 수 있기 때문에 지반-말뚝-구조물의 상호작용을 적절히 예측하고 평가하는 것이 말뚝기초의 안전한 내진설계를 위해 필요하다. 지반-말뚝-구조물의 상호작용은 구조물의 동적특성, 말뚝의 길이, 두부 경계조건 및 지반의 상대밀도에 영향을 받는다. 지반의 상대밀도가 달라지면 그에 따른 구속압 및 지반 강성이 변화하며 결과적으로 지반반력계수도 각 시스템에 따라 달라지게 된다. 말뚝기초의 수평방향 지지거동 및 극한 지지력은 수평방향 하중조건 및 모래지반의 상대밀도에 따라 다르게 나타난다. 이에 본 연구에서는 건조된 모래지반의 상대밀도가 상부구조물을 지지하는 무리말뚝의 동적거동에 미치는 영향을 확인하기 위해 1g 진동대 모형실험을 수행하였다. 그 결과 상대밀도가 증가함에 따라 상부구조물의 가속도는 증가하고 말뚝캡의 가속도는 감소하는 것으로 확인되었으며, 말뚝의 p-y 곡선의 기울기는 감소하는 것으로 확인되었다.

이층지반에 설치된 무리말뚝의 동적 거동 분석 (Analysis of Dynamic Behavior on Group Piles in Two-Layered Sandy Ground)

  • 김흥태;강홍식;정구식;안광국
    • 한국지반환경공학회 논문집
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    • 제24권10호
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    • pp.51-58
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    • 2023
  • 지진 시 상부구조물을 지지하는 무리말뚝의 동적거동은 상부구조물의 관성력과 지반의 운동력에 의해 서로 다른 복잡한 동적 메커니즘에 영향을 받는다. 지진 시 상부구조물의 관성력과 지반의 운동력에 의한 지반, 말뚝기초, 상부구조물의 상호작용을 고려하여 말뚝기초의 동적거동을 분석하는 방법으로 동적 p-y 곡선이 사용되고 있다. 말뚝기초의 동적 p-y 곡선을 확인하기 위한 대부분의 연구는 사질토 및 점성토로 이루어진 단일지반에 설치된 말뚝기초를 대상으로 확인되었을 뿐 다층지반에 설치된 말뚝기초의 동적 p-y 곡선을 확인하기 위한 연구는 미비한 실정이다. 이에 본 연구에서는 서로 다른 상대밀도를 갖는 이층지반의 상·하지반의 지층비가 상부구조물을 지지하는 무리말뚝의 동적거동에 미치는 영향을 확인하기 위해 1g 진동대 모형실험을 수행하였다. 그 결과 지층비가 증가할수록 지반, 말뚝캡, 상부구조물에서의 최대가속도는 증가하고, 말뚝기초의 최대휨모멘트의 발생 위치는 변화하는 것으로 나타났다. 그리고 말뚝기초의 동적 p-y 곡선의 기울기는 지층비에 따라 감소 및 증가하는 것으로 확인되었다.

클램프에서 예하중의 영향에 관한 연구 (A Study on the Effect of Preloading in Clamp)

  • Han, D.M.;Lee, S.S.;Lee, D.R.
    • 한국정밀공학회지
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    • 제14권8호
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    • pp.29-39
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    • 1997
  • The clamp, as the structure which is used for supporting the pipe in the atomic power plant, is produced with a certain degree of anticlastic curvature in the current manufacturing process. In this study, the structural analysis of the clamp and the pipe was performed using ABAQUS. And the finite element modelling for the analysis was made by an HyperMesh. The contact forces which are transferred between the clamp and the pipe for the external force are changed according to the binding force of bolts and keeps the clamp tightly and protects the slipping between the clamp and the pipe. The clamps with the anticlastic curvature and with the flat curvature are considered in order to invest the anticlastic effect. In this study, another case is suggested. The present case does not have the stiffness ring on the end of the clamp but the suggested case has the ring. For the present case, the results showed that the equivalent stress is higher in the anticlastic curvature case than in the flat curvature case and the equivalent stresses on the pipe are almost the same as the binding force increses. For the suggested case, the result showed that the equivalent stress in the anticlastic curvature case decreases until some binding force and increases as the binding forces increase and is lower in some range than in the flat curvature case. From this study, the clamp with the anticlastic curvature in the suggested method is better than the clamp with the flat curvature and the optimal binding force are given.

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베르누이 원리와 bolt-clamped Langevin type 초음파 진동자를 이용한 정상파 음파 공중부양의 탐구 (Investigation of standing wave acoustic levitation with Bernoulli principle and bolt-clamped Langevin type ultrasonic transducer)

  • 박민철;박두재;김영환
    • 한국음향학회지
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    • 제37권6호
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    • pp.422-427
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    • 2018
  • 본 연구에서는 소형 물체가 음파 정상파의 압력 마디 부근에 소형 물체가 부양하는 정상파 음파 공중부양(standing wave acoustic levitation) 현상에 대해 베르누이 원리를 이용하여 부양의 원인이 되는 음향 방사힘(acoustic radiation force)의 근원과 개형을 기존에 알려진 진동자에서 떨어진 거리에 따른 음향 방사힘의 그래프와 비교함을 통해 개념적으로 설명했다. 이러한 설명을 뒷받침하는 일련의 실험들을 BLT(Bolt-clamped Langevin Type) 초음파 진동자를 이용해서 수행하여, 물체들이 공기의 압력 마디 부근에 부양하고 있음을 확인했고, 물체가 부양하고 있는 상태에서 정상파가 형성되는 조건임을 확인했다. 더불어, 정상파 음파 공중부양 현상에서 부양하는 물체들이 수직하게 일렬로 정렬하는 현상 역시 설명할 수 있었다.

프로엔지니어(Pro/E) 기반 금형설계 지원 소프트웨어 툴 개발 (Development of A Software Tool for Supporting Metal Mold Design Based on The Pro/E CAD System)

  • 유호영
    • 한국산학기술학회논문지
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    • 제13권3호
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    • pp.1014-1020
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    • 2012
  • 본 논문은 3D 캐드모델을 기반으로 작업자의 수작업 및 설계오류를 최소화하는 금형설계 지원 툴 개발에 초점을 맞춘다. 금형설계 지원범위는 자동차 산업의 프레스 금형설계 공정에서 필수 요소인 선직 곡면 생성 및 옵셋, 패딩력 자동산출, 수정사항을 반영하는 재료표 자동출력, 홀 가공데이터 자동 산출, 원소재 크기 출력 및 검증 등 이다. 개발한 시스템을 주요 범용 3D 모델러 중 하나인 프로엔지니어의 확장 메뉴형태로 탑재하기 위하여 프로엔지니어 API와 Visual C++를 사용하여 개발하였다.

시공중 계측을 통한 어스앵커 축력변화 특성사례 연구 (Case Study of Earth Anchor Axial Force Change Characteristic through Monitoring during Construction Period)

  • 김성욱;한병원
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.285-292
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    • 2004
  • Earth Anchor method as a supporting system is widely used in the large scale deep excavation of urban areas or slope excavation project. Considering the application frequency of that method and catastrophe of that method under unproper construction management, we can find out many problems relevant to the domestic design and construction management of earth anchor method. When we encounter the cases of rapid increments and various decrements in earth anchor axial forces, considering the characteristic of earth anchor method, it is an essential point to catch the reasons and to prepare countermeasures. This article introduces two actual monitoring examples based on the close analyses of measured data in a typical large scale deep excavation project and slope excavation project. One is a rapidly increasing case of earth anchor axial forces with the continuous advance of incremental deformation in a geological layer interface. And another is a decreasing case of earth anchor axial forces with the construction conditions. The effort of this article aims to improve and develop the technique of design and construction in the coming projects having similar ground condition and supporting method.

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내충격 성능을 고려한 수중함 동적 강도 설계에 관한 연구 (A Study on Dynamic Strength Analysis of Submarine Considering Underwater Explosion)

  • 손성완;최수현;김극수
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2000년도 춘계학술대회논문집
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    • pp.1185-1191
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    • 2000
  • In general, the strength of hull structures can be estimated from stress evaluation considering static and hydro-dynamic load due to sea-wave. However, war ships such as submarine, have frequently experienced the underwater explosion and local structures of ship as well as hull girder can be damaged by the dynamic response excited from underwater non-contact explosion. When explosion happens at underwater, shock wave is radiated In early short time, then gas bubbles are generated, and expansion and contraction are repeated as they float to the surface. The shock wave causes the damage of equipment and its supporting structures, on the other hand, the hull girder strength can be lost by resonance between bubble pulsation and lowest ship natural vibration period. In this paper, the hydro-Impulse force due to bubble was calculated. Based on these results the hull girder strength of submarine was estimated from transient response analysis by using NASTRAN. Also, shock analysis for some equipment supporting structures was carried out by using DDAM. In order to evaluate the strength of these local structures due to shock wave.

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수직발사 유도탄의 진동시험에서 유도탄 장착방향의 영향에 대한 연구 (Study on the Effects of the Mounting Direction of Vertically-launched Missiles in Vibration Tests)

  • 이호준;김기언
    • 한국소음진동공학회논문집
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    • 제23권3호
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    • pp.218-225
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    • 2013
  • Vertically-launched missiles are supported as erected vertically in the vertical launching system of warship, and they should be mounted in the same way when vibration-tested. However, mounting missiles vertically makes a fixture, which is a supporting structure, bulky and heavy so requiring a high-performance exciter. Mounting missiles as laid down horizontally in a vibration test is economical regarding fixture manufacturing and exciter performance, but it makes test results incorrect because the different mounting direction has effects on the test results. A bending moment due to missiles' weight happens to missiles, and resilient mounts, which support missiles in the vertical launch system, deflect differently from the real situation because of the static deflection of these mounts due to missiles' weight. If the resilient mounts supporting missiles have nonlinear force-deflection characteristics, vibration test results become more different from the true results. This paper proposes to support missiles with an additional resilient mount such as a bunge code in order to solve those problems coming from mounting vertically-launched missiles as laid down horizontally in vibration tests. The proposed approach enables to obtain the same test results as in their actual mounting condition even though vertically-launched missiles are mounted in a different direction.