• 제목/요약/키워드: transverse compressive stress

검색결과 69건 처리시간 0.025초

REVERSE HEADGEAR가 상악골체에 미치는 영향에 관한 유한요소법적 분석 (A FINITE ELEMENT ANALYSIS ON THE EFFECT OF THE REVERSE HEADGEAR TO THE MAXILLARY COMPLEX)

  • 김주영;손병화
    • 대한치과교정학회지
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    • 제15권1호
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    • pp.7-22
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    • 1985
  • The purpose of this study was to analyze the stress distribution and the displacement in the maxillary complex after the application of the reverse headgear. The direction of force was parallel to the occlusal plane. Orthopedic force,300gm, was applied to the maxilla of the dry human skull in a forward direction. The stress distribution and the displacement within the maxillary Complex was analyzed by a 3-dimensional finite element method. The results were as follows: 1. The stress distribution at the molar region was greater than that at the anterior. 2. The stress distribution at the lateral side of the premaxilla was greater than that at the middle aide, especially high stress was noted at the canine eminence. 9. Compressive stress was noted only at the frontozygomatic suture of the zygomatic arch. 4. A forward, upward, and sideward displacement was noted at the entire nodal points of the zygomaticomaxillary suture portion. A displacement with a slight rotation was observed on the transverse palatine suture. 5. The maximum stress was observed at the lateral side of the maxillary tuberosity area, and generally the forward and downward displacement was noted at all this area.

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바이어스 응력에 의한 고자왜 아몰퍼스 박막의 자기이방성 제어 (Anisotropy Control of Highly Magnetostrictive Films by Bias Stress)

  • 신광호;김영학;박경일;사공건
    • 한국자기학회지
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    • 제13권5호
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    • pp.193-197
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    • 2003
  • 우수한 연자성 특성과 자왜 특성을 동시에 나타내는 철계 아몰퍼스 박막을 이용한 고기능성 센서나 신호처리소자와 같은 자기탄성 디바이스를 구현하기 위해서는 자기이방성의 제어가 필요하다. 본 연구에서는 철계 아몰퍼스 박막의 자기이방성을 제어하기 위해서 바이어스 응력을 이용한 자기이방성제어 방법을 제안하였다. 제안한 방법은 박막의 기판을 굴곡시킨 상태에서 열처리를 실시하여 박막의 응력을 해소하고, 열처리 후 박막기판의 형상을 원상으로 복귀시켜서 박막에 바이어스 응력이 인가되도록 하고, 이 응력에 의해서 박막의 자기이방성이 제어되도록 하는 것이다. 응력을 이용하여 자기이방성을 제어한 박막패턴을 자구의 관찰과 자화곡선의 평가를 고찰한 결과, 제안한 자기이방성 제어방법이 유용함을 알 수 있었다.

Influence of ultrasonic impact treatment on microstructure and mechanical properties of nickel-based alloy overlayer on austenitic stainless steel pipe butt girth joint

  • Xilong Zhao;Kangming Ren;Xinhong Lu;Feng He;Yuekai Jiang
    • Nuclear Engineering and Technology
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    • 제54권11호
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    • pp.4072-4083
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    • 2022
  • Ultrasonic impact treatment (UIT) is carried out on the Ni-based alloy stainless steel pipe gas tungsten arc welding (GTAW) girth weld, the differences of microstructure, microhardness and shear strength distribution of the joint before and after ultrasonic shock are studied by microhardness test and shear punch test. The results show that after UIT, the plastic deformation layer is formed on the outside surface of the Ni-based alloy overlayer, single-phase austenite and γ type precipitates are formed in the overlayer, and a large number of columnar crystals are formed on the bottom side of the overlayer. The average microhardness of the overlayer increased from 221 H V to 254 H V by 14.9%, the shear strength increased from 696 MPa to 882 MPa with an increase of 26.7% and the transverse average residual stress decreased from 102.71 MPa (tensile stress) to -18.33 MPa (compressive stress), the longitudinal average residual stress decreased from 114.87 MPa (tensile stress) to -84.64 MPa (compressive stress). The fracture surface has been appeared obvious shear lip marks and a few dimples. The element migrates at the fusion boundary between the Ni-based alloy overlayer and the austenitic stainless steel joint, which is leaded to form a local martensite zone and appear hot cracks. The welded joint is cooled by FA solidification mode, which is forming a large number of late and skeleton ferrite phase with an average microhardness of 190 H V and no obvious change in shear strength. The base metal is all austenitic phase with an average microhardness of 206 H V and shear strength of 696 MPa.

철근 콘크리트 보-기둥 접합부의 부착거동에 대한 콘크리트 강도 및 보강철근의 효과 (Bond of Deformed Bars to Concrete : Effects of Confinement and Strength of Concrete)

  • 최기봉
    • 콘크리트학회지
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    • 제3권2호
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    • pp.115-121
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    • 1991
  • 보-기둥 접합부에서 보의 축방향 철근의 슬립은 정하중 및 동하중 하에서 철근 콘크리트 골조를 손상시키는 중요한 요인중 하나이다. 이 논문은 이형철근의 국부 부착-슬립 특성에 관한 콘크리트강도 및 보강철근에 대해 실행된 실험결과를 요약하였다. 실험결과로부터 부착할렬균열(bond splitting crack)이 기둥은 축방향 철근에 의해 제어되는 한 횡방향 보강철근이 국부부착거동에 직접적인 영향을 미치지 않으며 극한부착강도는 콘크리트강도의 콘크리트강도의 제곱근에 비례해 증가함을 알 수 있었다. 이를 근거로 압축강도에 따른 보강철근 내부의 콘크리트와 이형철근의 국부 부착 응력-슬립 상관관계를 나타내는 실험모델을 유도하였다.

Nanopatterned Surface Effect on the Epitaxial growth of InGaN/GaN Multi-quantum Well Light Emitting Diode Structure

  • Kim, Keun-Joo
    • Transactions on Electrical and Electronic Materials
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    • 제10권2호
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    • pp.40-43
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    • 2009
  • The authors fabricated a nanopatterned surface on a GaN thin film deposited on a sapphire substrate and used that as an epitaxial wafer on which to grow an InGaN/GaN multi-quantum well structure with metal-organic chemical vapor deposition. The deposited GaN epitaxial surface has a two-dimensional photonic crystal structure with a hexagonal lattice of 230 nm. The grown structure on the nano-surface shows a Raman shift of the transverse optical phonon mode to $569.5\;cm^{-1}$, which implies a compressive stress of 0.5 GPa. However, the regrown thin film without the nano-surface shows a free standing mode of $567.6\;cm^{-1}$, implying no stress. The nanohole surface better preserves the strain energy for pseudo-morphic crystal growth than does a flat plane.

주기하중을 받는 보-기둥 접합부내 보주철근 부착 및 정착의 해석적 평가 (Analytical Evaluation of Beam-Bar Bond and Anchorage in Beam-column joints under Cyclic Loading)

  • 오수연;이주하;윤영수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.510-513
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    • 2004
  • The objectives of this research are to evaluate the effect of the compressive strength of concrete, reinforcing bar size, spacing of column transverse bars related to the concrete confinement effects on anchorage bond strength and bond behavior of beam-column joints subjected to cyclic loading and to predict the bond behavior of beam-column joints according to the variables by Finite Element Analysis appling the interface element between concrete and reinforced bar surface in a three-dimensional configuration. This paper shows that to verify the results by three-dimensional nonlinear finite element analysis appling a interface element, the test results that were already conducted are compared with analytic results. The behavior of bond and anchorage of beam bar is expressed by a local bond stress-slip relationship and the failure mode of bond is predicted by principal stress contour.

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반무한체에 접합된 두 등방성 층의 좌굴 해석 (Buckling Analysis of Two Isotropic Layers Bonded to a Semi-Infinite Substrate)

  • 정경문;범현규
    • 대한기계학회논문집A
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    • 제24권8호
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    • pp.2108-2114
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    • 2000
  • The buckling of two elastic layers bonded to a semi-infinite substrate under a transverse compressive plane strain is investigated. Incremental deformation theory, which considers the effect of the initial stress on the incremental stress field, is employed to describe the buckling behavior of both two isotropic layers and the semi-infinite substrate. The problem is converted to an eigenvalue-eigenvector case, from which the critical buckling strain and the buckling wavelength are obtained. The results are presented on the effects of the layer geometries and material properties on the buckling behavior.

A stress field approach for the shear capacity of RC beams with stirrups

  • Domenico, Dario De;Ricciardi, Giuseppe
    • Structural Engineering and Mechanics
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    • 제73권5호
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    • pp.515-527
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    • 2020
  • This paper presents a stress field approach for the shear capacity of stirrup-reinforced concrete beams that explicitly incorporates the contribution of principal tensile stresses in concrete. This formulation represents an extension of the variable strut inclination method adopted in the Eurocode 2. In this model, the stress fields in web concrete consist of principal compressive stresses inclined at an angle θ combined with principal tensile stresses oriented along a direction orthogonal to the former (the latter being typically neglected in other formulations). Three different failure mechanisms are identified, from which the strut inclination angle and the corresponding shear strength are determined through equilibrium principles and the static theorem of limit analysis, similar to the EC-2 approach. It is demonstrated that incorporating the contribution of principal tensile stresses of concrete slightly increases the ultimate inclination angle of the compression struts as well as the shear capacity of reinforced concrete beams. The proposed stress field approach improves the prediction of the shear strength in comparison with the Eurocode 2 model, in terms of both accuracy (mean) and precision (CoV), as demonstrated by a broad comparison with more than 200 published experimental results from the literature.

프리캐스트 바닥판의 전단포켓 형상에 관한 해석 연구 (Analysis on Shapes of Shear Pocket for the Full-Depth Precast Slab)

  • 한상윤;이만섭;이승록;강영종
    • 대한토목학회논문집
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    • 제26권5A호
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    • pp.817-822
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    • 2006
  • 프리캐스트 바닥판들의 이음부에 발생하는 교축방향 인장응력을 제어하고, 이음부의 누수 등을 방지하기 위하여 교축 방향으로 프리스트레스를 도입한다. 효과적인 압축력 도입을 위하여 합성 전에 프리캐스트 바닥판에 압축력을 도입한다. 이때 프리캐스트 바닥판에 존재하는 전단포켓으로 인하여 바닥판에 균일한 압축력 도입이 어렵고, 전단포켓의 주변 콘크리트에 국부적인 응력집중이 발생한다. 따라서 본 연구에서는 상용 구조해석 프로그램을 이용하여 서로 다른 4가지 형상의 전단포켓을 갖는 프리캐스트 바닥판에 대하여 유한요소해석을 수행하였다. 그 결과 전단포켓의 모서리 부분이 원형인 전단포켓이 응력집중이 가장 작은 것으로 나타났다.

The effects of limestone powder and fly ash as an addition on fresh, elastic, inelastic and strength properties of self-compacting concrete

  • Hilmioglu, Hayati;Sengul, Cengiz;Ozkul, M. Hulusi
    • Advances in concrete construction
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    • 제14권2호
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    • pp.93-102
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    • 2022
  • In this study, limestone powder (LS) and fly ash (FA) were used as powder materials in self-compacting concrete (SCC) in increasing quantities in addition to cement, so that the two powders commonly used in the production of SCC could be compared in the same study. Considering the reduction of the maximum aggregate size in SCC, 10 mm or 16 mm was selected as the coarse aggregate size. The properties of fresh concrete were determined by slump flow (including T500 time), V-funnel and J-ring experiments. The experimental results showed that as the amount of both LS and FA increased, the slump flow also increased. The increase in powder material had a negative effect on V-funnel flow times, causing it to increase; however, the increase in FA concretes was smaller compared to LS ones. The increase in the powder content reduced the amount of blockage in the J-ring test for both aggregate sizes. As the hardened concrete properties, the compressive and splitting strengths as well as the modulus of elasticity were determined. Longitudinal and transverse deformations were measured by attaching a special frame to the cylindrical specimens and the values of Poisson's ratio, initiation and critical stresses were obtained. Despite having a similar W/C ratio, all SCC exhibited higher compressive strength than NVC. Compressive strength increased with increasing powder content for both LS and FA; however, the increase of the FA was higher than the LS due to the pozzolanic effect. SCC with a coarse aggregate size of 16 mm showed higher strength than 10 mm for both powders. Similarly, the modulus of elasticity increased with the amount of powder material. Inelastic properties, which are rarely found in the literature for SCC, were determined by measuring the initial and critical stresses. Crack formation in SCC begins under lower stresses (corresponding to lower initial stresses) than in normal concretes, while critical stresses indicate a more brittle behavior by taking higher values.