• 제목/요약/키워드: photoelastic study

검색결과 119건 처리시간 0.02초

호선에 부여한 loop와 교정용 고무가 치궁만곡도 개선에 미치는 영향에 관한 광탄성학적 연구 (A PHOTOELASTIC STUDY OF THE EFFECT OF LOOPS IN ARCH WIRE AND ORTHODONTIC ELASTICS IN RELIEF OF CURVE OF SPEE)

  • 이병태
    • 대한치과교정학회지
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    • 제23권4호
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    • pp.485-492
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    • 1993
  • Multiloop Edgewise Archwire(MEAW) is effective in relief the Curve of Spee in mandibular arch but up Sl down orthodontic elastics must be used with it. The purpose of this study was to analyse the effect of orthodontic elastics, like as up & down elastics, Class II elastics, and Class III elastics, and the effect of L loop in Multioop Edgewise Archwire. 1. Intrusive force of MEAW in anterior teeth was reduced and uprighting force in premolars was increased by up & down elastics. 2. Uprighting force was significintly increased with Class III elastics in multiple L loop arch wire. 3. The force of Class II elastics made molars tip mesially and Curve of Spee deep.

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광섬유의 photoelastic효과를 이용한 전류및 전압의 측정에 관한 연구 (A study on the measurement of the current & voltage using Photoelastic effect of Optical Fiber)

  • 최도인;김창현;김호성
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 C
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    • pp.1268-1270
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    • 1995
  • A method using photoelectric effect of a single-mode optical fiber, with a 632.8nm He-Ne laser, has been developed for the simultaneous measurment of current and voltage. The Magnetic stress for the current and the piezoelectric effect for voltage are utilized. It is found that the detector output voltage is proportional to the square of the applied current and the frequency of the output is twice of that of the applied current.

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광탄성법(光彈性法)에 의(依)한 러그달린 구동륜하(駆動輪下)의 응력분포(應力分布)에 관(關)한 해석(解析) (Analysis of the stress distribution under a driving lugged wheel by photoelastic method)

  • 김진현;최상인
    • Journal of Biosystems Engineering
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    • 제8권2호
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    • pp.11-17
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    • 1983
  • Stress distribution under a driving lugged wheel was obtained by photoelastic method. The distribution showed two distinct parts, one part is due to sinkage and other due to compression. Results of the study are summarized as follows. 1. The tangential reactions of sinkage as well as compressing parts were directly proportional to tangential load to the driving wheel, that's appeared to be thrust of the driving wheel. The normal reactions of both sinkage and compressing parts were directly proportional to the vertical load to the driving wheel, that's appeared to be resistance against wheel motion. 2. When the tangential load was constant, changing the vertical load did not show any significant thrust variation of the driving wheel. 3. Under the condition of this experiment, the ratio of vertical load to tangential load (T.L/V.L) must be greater than 1.0 in order for the wheel to roll.

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두 상이한 등방성 이종재료 정지계면균열의 선단 응력장과 변위장에 관한 연구 (A Study on the Near-Field Stresses and Displacement of a Stationary Interfacial Crack in Two Dissimilar Isotropic Bimaterials)

  • 신동철;황재석;남정환
    • 대한기계학회논문집A
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    • 제28권12호
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    • pp.1897-1905
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    • 2004
  • In many part of machines or structures that made of bimaterial bonded with two dissimilar materials, most failures occur at their interface. Therefore, the accurate analysis of fracture characteristics and the evaluation of mechanical strength for interfacial crack are essential when we design those structures. In this research, stress and displacement components in the vicinity of stationary interfacial crack tip in the two dissimilar isotropic bimaterials are established. Hereafter, the stress components established in this research can be applied to the photoelastic hybrid method which can be used to analyze the fracture behavior of the two dissimilar isotropic bimaterials.

3차원 경사크랙을 가진 중공축의 응력확대계수산정 (Computation of stress Intensity Factors of Hollow Cylinder with Three Dimension Inclination Cracks)

  • 이종선
    • 한국생산제조학회지
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    • 제8권1호
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    • pp.21-27
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    • 1999
  • In this study, stress intensity factors KI, KII, KIII are existing at the same time to a hollow cylindrical bar of three dimension inclination crack. In order to investigate by experimentally the effect of the inclination angle $\psi$ of crack, artificial inclination cracks in the circumferential direction are put in the surface of a hollow cylindrical bar made by the epoxy-resin. Experimentally, stress analysis methods of stress intensity factors were proposed. But, suitable method are the caustic method and the photoelastic stress freezing method. The mixed mode of KI, and KII, were determined by the photoelastic method of the classical approach method and the FORTRAN language program of the used smallest square method.

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골절정복겸자가 하악골 골절정복에 미치는 효과에 관한 광탄성 연구 (A PHOTOELASTIC STUDY ON EFFECTS OF BONE REDUCTION FORCEPS ON MANDIBULAR FRACTURE REDUCTION)

  • 박진형;최병호;류태민;허진영
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제28권6호
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    • pp.464-471
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    • 2002
  • The purpose of this study was to evaluate the stress patterns within fractured mandibles generated by reduction forceps and to determine the optimal position of the reduction forcep. Twenty-seven mandibular models were fabricated using a photoelastic resin. Each of the three sets of mandible models prepared was osteotomized according to one of three different fracture types(symphysis, parasymphysis and body fractures). After reducing the cut segments, a reduction forcep was placed into different engagement holes to compress the segments. Photoelastic stress analysis was used to visualize the stress patterns within the fractured mandiblular models generated by the reduction forcep. In the case of symphysis or parasymphysis fractures, an optimum distribution of stress over the fracture site was achieved when placing the reduction forcep more than 12.5mm on either side of the fracture line between the midway level bisecting the mandible and 5mm below the level. In the case of body fractures, optimum stress distribution was achieved when the reduction forcep was placed more than 15mm from the fracture line on the midway level. In conclusion, a correct use of reduction forceps helps to provide a precise threedimensional reduction for mandibular fractures.

Segmented TMA T-loop spring에 의한 견치 후방이동시의 응력분포에 관한 광탄성법적 분석 (A photoelastic study of the stress distribution on canine retraction by segmented TMA T-loop spring)

  • 윤영주;김광원;유필식
    • 대한치과교정학회지
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    • 제31권2호통권85호
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    • pp.199-207
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    • 2001
  • 본 연구는 교정치료를 시행함에 있어 전치부 crowding을 해결하기 위한 견치의 단독견인 방법중 새로운 segmented TMA T-loop spring으로 견치 후방견인시 치근단과 그 주위 치조골에서의 응력상태를 알아보기 위해 시행되었다. PL-3 epoxy resin으로 광탄성 모형을 제작하여 B/L ratio가 0.25, 0.5, 0.75인 위치로 T-loop을 위치시키고 각 위치에서 5mm, 3mm, 1mm activation하였다. 이후 광탄성 응력 해석장치를 이용하여 견치견인시 치근단과 그 주위 치조골에서의 초기 응력 상태를 광탄성법으로 분석한 바, 다음과 같은 결론을 얻었다. 1. T-looP 위치에 상관없이 activation량이 감소할수록 상악 1소구치 발치부위에 응력이 감소하였고 상악 1대구치의 함입응력은 증가하였다. 2. 5mm activation시 T-loop위치가 구치부쪽으로 이동할수록 상악 1소구치 발치부위에 응력이 증가하였다. 3. 3mm activation시 T-loop위치가 구치부쪽으로 이동할수록 상악 1소구치 발치부위와 상악 1대구치 협측 근심치근 근심면하방 1/2부위에 응력이 증가하였다. 4. 1mm activation시 T-loop위치가 견치쪽으로 이동할수록 상악 견치의 근심치근면 상방과 치근첨 하방의 응력이 증가하였다. 5. B/L ratio가 0.25이고 3mm activation시 상악견치의 치체이동이 나타났다. 이상의 결과를 종합해볼 때 segmented T-loop spring의 근, 원심 위치 와 activation량을 조절하여 원하는 치아이동과 고정원 조절이 가능하다고 사료된다.

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TRANSPALATAL LINGUAL ARCH에 의한 골내 응력 분포에 관한 광탄성적 연구 (A PHOTOELASTIC STUDY OF THE STRESS DISTRIBUTION IN BONE BY THE TRANSPALATAL LINGUAL ARCH)

  • 고기영;태기출;국윤아;김상철
    • 대한치과교정학회지
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    • 제27권5호
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    • pp.711-721
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    • 1997
  • 본 연구는 TMA wire로 제작된 transpalatal lingual arch에 의한 골내 응력 분포를 파악하기 위하여 양측성 및 편측성 확장을 가하여 이때 발생하는 치아주위조직 응력 분포 양상을 광탄성 응력 해석법으로 관찰하여 다음과 같은 결과를 얻었다. 1. 양측성 확장시 수평 변형만 적용했을 때 탄선끝이 각진 경우 둥근 탄선끝을 적용한 경우보다 응력이 치근단으로 집중되며 회전 중심을 의미하는 흑색선이 변화하는 양태를 보였고 수직변형량이 증가되면서 전체적인 응력차수의 증가와 흑색선의 하방 이동 양상을 보였다. 2. 편측성 확장을 위해 수평 변형과 함께 확장측에만 수직 변형을 적용하였을 때 확장력이 확장측으로 편중되는 응력 분포를 관찰할수 있었다. 수직 변형량의 증가시 확장측 구치는 정출하는 응력을 보였고 수평변형량의 증가시 고정측 치아도 경사지려는 응력 분포가 관찰되었다. 3. 편측 구치의 회전을 개선하기 위해 철사끝을 비대칭적으로 toe-in한 경우 변형량이 적은 구치의 치근단 원심측에 응력 분포를 관찰할수 있었다. 4. 악궁 확장시 철사의 길이를 줄일수록 무늬차수가 증가하는 응력 분포를 보였다.

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하악 임플란트 overdenture에서 anchorage system이 하중전달에 미치는 영향 (EFFECT OF ANCHORAGE SYSTEMS ON LOAD TRANSFER WITH MANDIBULAR IMPLANT OVERDENTURES : A THREE-DIMENSIONAL PHOTOELASTIC STRESS ANALYSIS)

  • 김진열;전영찬;정창모
    • 대한치과보철학회지
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    • 제40권5호
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    • pp.507-524
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    • 2002
  • Load transfer of implant overdenture varies depending on anchorage systems that are the design of the superstructure and substructure and the choice of attachment. Overload by using improper anchorage system not only will cause fracture of the framework or screw but also may cause failure of osseointegration. Choosing anchorage system in making prosthesis, therefore, can be considered to be one of the most important factors that affect long-term success of implant treatment. In this study, in order to determine the effect of anchorage systems on load transfer in mandibular implant overdenture in which 4 implants were placed in the interforaminal region, patterns of stress distribution in implant supporting bone in case of unilateral vertical loading on mandibular left first molar were compared each other according to various types of anchorage system using three-dimensional photoelastic stress analysis. The five photoelastic overdenture models utilizing Hader bar without cantilever using clips(type 1), cantilevered Hader bar using clips(type 2), cantilevered Hader bar with milled surface using clips(type 3), cantilevered milled-bar using swivel-latchs and frictional pins(type 4), and Hader bar using clip and ERA attachments(type 5), and one cantilevered fixed-detachable prosthesis(type 6) model as control were fabricated. The following conclusions were drawn within the limitations of this study, 1. In all experimental models. the highest stress was concentrated on the most distal implant supporting bone on loaded side. 2. Maximum fringe orders on ipsilateral distal implant supporting bone in a ascending order is as follows: type 5, type 1, type 4, type 2 and type 3, and type 6. 3. Regardless of anchorage systems. more or less stresses were generated on the residual ridge under distal extension base of all overdenture models. To summarize the above mentioned results, in case of the patients with unfavorable biomechanical conditions such as not sufficient number of supporting implants, short length of the implant and unfavorable antero-posterior spread. selecting resilient type attachment or minimizing distal cantilever bar is considered to be appropriate methods to prevent overloading on implants by reducing cantilever effect and gaining more support from the distal residual ridge.

연결고정, 인접면 접촉강도 및 치관길이에 따른 엔도포어 임플란트를 이용한 고정성 국소의치의 광탄성 응력 분석 (A PHOTOELASTIC STRESS ANALYSIS OF FIXED PARTIAL DENTURES WITH ENDOPOREIMPLANTS ACCORDING TO SPLINTING, CONTACT TIGHTNESS, AND CROWN LENGTH)

  • 정회열;최민호;김유리;조혜원
    • 대한치과보철학회지
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    • 제42권4호
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    • pp.425-442
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    • 2004
  • Statement of problem: A difficulty in achieving a passive-fitting prosthesis can be overcome by individual crown restoation of multiple implants. But individualized crown has another difficulty in control of contact tightness and stress distribution. Purpose: This in vitro study is to evaluate the stress distribution and the magnitude in the supporting tissues around Endopore implants with different crown lengths, interproximal contact tightness, and the splinting effects. Material & methods: Three Endopore implants($4.1{\times}9mm$) were placed in the mandibular posterior edentulous area distal to the canine and photoelastic model was made with PL-2 resin(Measurements Group, Raleigh, USA). Restorations were fabricated in two crown lengths: 9, 13 mm. For non-splinted restorations, individual crowns were fabricated on three custom-milled titanium abutments. After the units were cemented, 4 levels of interproximal contact tightness were evaluated: open, ideal($8{\mu}m$ shim stock drags without tearing), medium($40{\mu}m$), and heavy($80{\mu}m$). For splinted restorations, 3-unit fixed partial dentures were fabricated. This study was examined under simulated non-loaded and loaded conditions(6.8 kg). Photoelastic stress analysis was carried out to measure the fringe order around the implant supporting structure. Results: 1. When restorations were not splinted, the more interproximal contact tightness was increased among the three implants, the more stress was shown in the cervical region of each implant. When crown length was increased, stresses tended to increase in the apex of implants but there were little differences in stress fringes. 2. When nonsplinted restorations were loaded on the first or third implant, stresses were increased in the apex and cervical region of loaded implant. Regardless of interproximal contact tightness level, stresses were not distributed among the three implants. But with tighter interproximal contact, stresses were increased in the cervical region of loaded first or third implant. 3. When the nonsplinted restorations were not loaded, there were little stresses on the supporting structure of implants, but low level stresses were shown in the splinted restorations even after sectioning and soldering. 4. With splinted restorations, there were little differences in stresses between different crown lengths. When splinted restorations were loaded, stresses were increased slightly on the loaded implant, but relatively even stress distribution occurred among the three implants. Conclusions: Splinting the crowns of adjacent implants is recommended for Endopore implants under the overloading situation.