• 제목/요약/키워드: Bevel angle

검색결과 30건 처리시간 0.031초

레진재료와 치아형성 방법에 따른 파절편 재부착치아의 파절저항성 (Fracture Resistance of Incisal Tooth Fragment reattached with different Materials and Preparation)

  • 김종성;김기민;이제식;김현정;남순현
    • 대한소아치과학회지
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    • 제49권1호
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    • pp.104-112
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    • 2022
  • 이 연구의 목적은 생리적 조건에서 파절편 재부착 시 레진재료 및 유지형태에 따른 파절편의 파절저항성을 분석하는 것이다. 발거된 64개의 전치부 치아에 사선 방향의 단순치관파절을 재현하였다. 복합레진 재료에 따라서는 유동성 복합레진 및 응축형 복합레진을 이용하여 재부착을 실시하였다. 유지형태로는 단순 재부착, 1.0 mm × 1.0 mm 순측 chamfer bevel, 1.0 mm × 1.0 mm 설측 chamfer bevel 및 1.0 mm × 1.0 mm circumferential chamfer bevel을 부여한 후 재부착을 실시하였다. 만능재료시험기를 이용하여 재부착된 치아의 설측면에 정상 아동의 절치간각인 125°로 부하를 가하였다. 저작압 조건에서는 유동성 레진과 응축형 레진군 모두 설측 chamfer군의 파절저항강도는 28.28 ± 7.41 MPa과 27.54 ± 4.45 MPa로 단순 재부착군의 파절저항성강도인 17.21 ± 5.87 MPa과 20.10 ± 6.00 MPa보다 유의하게 더 높았다. 생리적인 저작압과 유사한 설측 방향의 힘을 고려 시 파절편 재부착치의 파절편 유지력은 단순 재부착술보다 설측 chamfer 유지형태를 형성하였을 때 유의하게 더 큰 유지력을 나타내었다. 이에 임상가는 파절편 재부착술 시 저작압에 대한 파절 저항성을 향상시키기 위해 설측 chamfer 유지형태의 설계를 고려할 수 있을 것이다.

펄스 GMA 위빙 용접에서 그루브형상에 따른 아크특성에 관한 연구 (Influence of the Groove Angle on Arc Characteristics in Pulsed GMA Weaving Welding)

  • 최광덕;조원익;김철희;나석주
    • Journal of Welding and Joining
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    • 제27권4호
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    • pp.67-72
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    • 2009
  • In this paper, arc characteristics of V groove joints using pulsed GMA welding were found out. The bevel angles of $22.5^{\circ}$ and $30.0^{\circ}$ were chose to make the V groove configuration with the groove angles of $45^{\circ}$ and $60.0^{\circ}$, respectively. In the experiment, the arc current waveform measurement and the high speed photography were taken to investigate the arc characteristics for a single-beveled asymmetric workpiece. Consequently, the welding current was changed abnormally around the edge of groove. As the arc moved close to the groove face, the welding current was increased rapidly because the welding arc was affected by the inclined surface. Also the welding current waveforms were measured for the double-sided symmetric workpiece to verify the previous measurements for the single-beveled workpiece, and similar current waveforms were found.

Parametric surface and properties defined on parallelogrammic domain

  • Fan, Shuqian;Zou, Jinsong;Shi, Mingquan
    • Journal of Computational Design and Engineering
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    • 제1권1호
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    • pp.27-36
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    • 2014
  • Similar to the essential components of many mechanical systems, the geometrical properties of the teeth of spiral bevel gears greatly influence the kinematic and dynamic behaviors of mechanical systems. Logarithmic spiral bevel gears show a unique advantage in transmission due to their constant spiral angle property. However, a mathematical model suitable for accurate digital modeling, differential geometrical characteristics, and related contact analysis methods for tooth surfaces have not been deeply investigated, since such gears are not convenient in traditional cutting manufacturing in the gear industry. Accurate mathematical modeling of the tooth surface geometry for logarithmic spiral bevel gears is developed in this study, based on the basic gearing kinematics and spherical involute geometry along with the tangent planes geometry; actually, the tooth surface is a parametric surface defined on a parallelogrammic domain. Equivalence proof of the tooth surface geometry is then given in order to greatly simplify the mathematical model. As major factors affecting the lubrication, surface fatigue, contact stress, wear, and manufacturability of gear teeth, the differential geometrical characteristics of the tooth surface are summarized using classical fundamental forms. By using the geometrical properties mentioned, manufacturability (and its limitation in logarithmic spiral bevel gears) is analyzed using precision forging and multiaxis freeform milling, rather than classical cradle-type machine tool based milling or hobbing. Geometry and manufacturability analysis results show that logarithmic spiral gears have many application advantages, but many urgent issues such as contact tooth analysis for precision plastic forming and multiaxis freeform milling also need to be solved in a further study.

산업기계용 고밀도 Bevel Gear 제품화를 위한 성형성 연구 (forming of High Density Bevel Gear for Industrial Machinery)

  • 임성주;윤덕재;최석우;박훈재;김승수;나경환
    • 한국산학기술학회논문지
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    • 제2권1호
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    • pp.1-6
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    • 2001
  • 회전성형법은 프레스 축 중심에 대하여 일정한 각도로 경사진 요동축과 원추형상의 상부 금형을 축 중심에 대하여 회전시키고 소재를 상승 가압하면 상부금형과 소재가 점진적으로 접촉하면서 제품을 성형하는 공정이다. 본 연구팀에서 개발된 회전 분말단조 프레스(500kN)를 이용해서 산업용 고밀도 베벨기어의 성형성 실험을 수행하였다. 실험결과로 회전 분말단조 공정과 회전 분말성형 공정에서의 성형하중, 성형밀도, 경도, 미세조직 등의 변화를 조사하여 제품의 기계적 성질을 규명하고 실제로 산업 전반에 적용할 수 있는 가능성을 제시한다.

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맞대기 이음 용접의 피로수명에 베벨 각도가 미치는 역할 (Role of Bevel Angles Influenced on the Fatigue Life of Butt-welded Joints)

  • 박지환;한창완;정승빈;박성훈
    • 한국자동차공학회논문집
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    • 제22권2호
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    • pp.141-147
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    • 2014
  • This study aims to investigate the influence of bevel angles on the fatigue life of V-groove butt-welded joints with back-plates made by SM490A steel material, generally used for excavators, because changes in the geometry, material and surface properties of welded regions affect the fatigue life of welded structures. Butt type test specimens were prepared by the $CO_2$ welding of rolled steel plates (SM50A steel) with a thickness of 13.5 mm at a welding speed of 30 cm/min and these Butt type test specimens had two different groove angles, which are $40^{\circ}$ (A type) and $30^{\circ}$ (B type). In order to investigate differences in fatigue life between two types, 4-point bending fatigue tests were conducted with a stress ratio of R=0.1 under the cyclic loading environment at a frequency of 5 Hz at room temperature. The fatigue life of A type specimens was approximately 7% higher than that of B type specimens. The stress concentration factors calculated by finite element analysis were 2.16 for A type and 2.25 for B type, whose difference was caused by the influence of the back-plates of butt-welded structures. The current results could provide important guidelines to determine the V-groove angle of butt-welded joints with a satisfactory fatigue life, although under severe operating conditions.

5급와동의 복합레진 충전에 관한 유한요소법적 응력분석 (FINITE ELEMENT ANALYSIS OF STRESS DISTRIBUTION ACCORDING TO CAVITY DESIGN OF CLASS V COMPOSITE RESIN FILLING)

  • 엄정문;권혁춘;손호현;조병훈;임영일
    • Restorative Dentistry and Endodontics
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    • 제24권1호
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    • pp.67-75
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    • 1999
  • The use of composite restorative materials is established due to continuing improvements in the materials and restorative techniques. Composite resins are widely used for the restoration of cervical lesions because of esthetics, good physical properties and working time. There are several types of cavity design for class V composite resin filling, but inappropriate cavity form may affect bonding failure, microleakage and fracture during mastication. Cavity preparations for composite materials should be as conservative as possible. The extent of the preparation is usually determined by the size, shape, and location of the defect. The design of the cavity preparation to receive a composite restoration may vary depending on several factors. In this study, 5 types of class V cavity were prepared on each maxillary central incisor. The types are; 1) V-shape, 2) round(U) shape, 3) box form, 4) box form with incisal bevel and 5) box form with incisal bevel and grooves for axial line angles. After restoration, in order to observe the concentration of stress at bonding surfaces of teeth and restorations, developing a 2-dimensional finite element model of labiopalatal section in tooth, surrounding bone, periodontal ligament and gingiva, based on the measurements by Wheeler, loading force from direction of 45 degrees from lingual side near the incisal edge was applied. This study analysed Von Mises stress with SuperSap finite element analysis program(Algor Interactive System, Inc.). The results were as follows : 1. Stress concentration was prevalent at tooth-resin bonding surface of cervical side on each model. 2. In model 2 without line angle, stress was distributed evenly. 3. Preparing bevel eliminated stress concentration much or less at line angle. 4. Model with round-shape distributed stress concentration more evenly than box-type model with sharp line angle, therefore decreased possibility of fracture. 5. Adding grooves to line angles had no effect of decreasing stress concentration to the area.

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구치부(臼齒部) 도재전장주조관(陶在前裝鑄造冠) 변연형태(邊緣形態)에 따른 응력분석(應力分析) (Stress Analysis of Posterior Porcelain-Fused-to-Metal Crown by Marginal Configurations)

  • 김광석;송광엽;박찬운
    • 대한치과보철학회지
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    • 제25권1호
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    • pp.161-179
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    • 1987
  • To study the mechanical behaviors of the margins of porcelain-fused-to-metal crown on the posterior teeth, 5 types of margins on the lower first molar were chosen, and then the finite element models were constructed. 50kg forces were applied to the porcelain on the axial wall supported by the metal vertically. The displacements and stresses of the porcelain-fused-to-metal crown were analyzed to investigate the influence of the type of margins. The results were as follows; 1. High tensile stresses were exhibited on the porcelain of the portion of the coronal line angle insufficient metallic support. 2. In case metal coping had a good supporting form to vertical force, uniform compressive stresses were exhibited on their supporting form. 3. Tensile stresses in the inframetallic margin on the series of the shoulder with a bevel margins were decreased in the bevel portion. 4. Principal stresses on the metal of the chamfer marginal portion were decreased comparing with the series of the shoulder margins. 5. The noticeable compressive stress gradients were exhibited between axial cement layer and metal on the series of the shoulder margins. 6. The principal stresses on the marginal cement layer were higher than that of the occlusal surface and axial wall.

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2-5kV급 Gate Commutated Thyristor 소자의 제작 특성 (Device characteristics of 2.5kV Gate Commutated Thyristor)

  • 김상철;김형우;서길수;김남균;김은동
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2004년도 하계학술대회 논문집 Vol.5 No.1
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    • pp.280-283
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    • 2004
  • This paper discribes the design concept, fabrication process and measuring result of 2.5kV Gate Commutated Thyristor devices. Integrated gate commutated thyristors(IGCTs) is the new power semiconductor device used for high power inverter, converter, static var compensator(SVC) etc. Most of the ordinary GTOs(gate turn-off thyristors) are designed as non-punch-through(NPT) concept; i.e. the electric field is reduced to zero within the N-base region. In this paper, we propose transparent anode structure for fast turn-off characteristics. And also, to reach high breakdown voltage, we used 2-stage bevel structure. Bevel angle is very important for high power devices, such as thyristor structure devices. For cathode topology, we designed 430 cathode fingers. Each finger has designed $200{\mu}m$ width and $2600{\mu}m$ length. The breakdown voltage between cathode and anode contact of this fabricated GCT device is 2,715V.

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와동 형태와 충전 방법에 따른 Class V 복합 레진 수복치의 유한요소법적 응력 분석 (FINITE ELEMENT STRESS ANALYSIS OF CLASS V COMPOSITE RESIN RESTORATION SUBJECTED TO CAVITY FORMS AND PLACEMENT METHODS)

  • 손윤희;조병훈;엄정문
    • Restorative Dentistry and Endodontics
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    • 제25권1호
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    • pp.91-108
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    • 2000
  • Most of cervical abrasion and erosion lesions show gingival margin where the cavosurface angle is on cementum or dentin. Composite resin restoration of cervical lesion shrink toward enamel margin due to polymerization contraction. This shrinkage has clinical problem such as microleakage and secondary caries. Several methods to diminish contraction stress of composite resin restoration, such as modifying cavity form and building up restorations in several increments have been attempted. The purpose of this study was to compare polymerization contraction stress of composite resin in Class V cavity subjected to cavity forms and placement methods. In this study, finite element model of 5 types of Class V cavity was developed on computer tomogram of maxillary central incisor. The types are : 1) Box cavity 2) Box cavity with incisal bevel 3) V shape cavity 4) V shape cavity with incisal bevel 5) Saucer shape cavity. The placement methods are 1) Incisal first oblique incremental curing 2) Bulk curing. An FEM based program for light activated polymerization is not available. For simulation of curing dynamics, time dependent transient thermal conduction analysis was conducted on each cavity and each placement method. For simulation of polymerization shrinkage, thermal stress analysis was performed with each cavity and each placement method. The time-temperature dependent volume shrinkage rate, elastic modulus, and Poisson's ratio were determined in thermal conduction data. The results were as follows : 1. With all five Class V cavifies, the highest Von Mises stress at the composite-tooth interface occurred at gingival margin. 2. With box cavity, V shape cavity and saucer cavity, Von Mises stress at gingival margin of V shape cavity was lower than the others. And that of box cavity was lower than that of saucer cavity. 3. Preparing bevel at incisal cavosurface margin decreased the rate of stress development in early polymerization stage. 4. Preparing bevel at incisal cavosurface margin of V shape cavity increased the Von Mises stress at gingival margin, but decreased at incisal margin. 5. At incisal margin, stress development by bulk curing method was rapid at early stage. Stress development by first increment of incremental curing method was also rapid but lower than that by bulk curing method, however after second increment curing final stress was the same for two placement methods. 6. At gingival margin, stress development by incremental curing method was suddenly rapid at early stage of second increment curing, but final stress was the same for two placement methods.

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