• 제목/요약/키워드: Load factor

검색결과 3,059건 처리시간 0.032초

접착제에 따른 Glued-in Rod 접합부 인발성능에 관한 실험 연구 (Experimental Study on Pull-out Strength of Glued-in Rods Connection according to Adhesive)

  • 박금성;오근영
    • 한국건축시공학회지
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    • 제22권2호
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    • pp.149-160
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    • 2022
  • 본 연구에서는 국내에서 생산되는 목재와 접착제를 활용한 Glued-in rod 접합부의 인발성능을 평가하고자 접착제의 종류, 철근의 매입깊이 및 매입방향을 고려한 인발성능 실험연구를 수행하였다. 실험결과, 액상형 접착제 사용 실험체가 더 우수한 인발성능을 보여주었으며, 철근의 매입깊이가 길어질수록 철근의 항복을 먼저 유도하여 높은 최대 인발하중을 보여주었다. 인발성능 실험결과를 통하여 철근의 항복강도보다 접착제의 부착강도를 더 강하게 설계하는 것이 유리한 Glued-in rod 접합부 설계식을 제안하였으며, 접착제의 부착강도의 시공오차를 고려한 보정계수 0.75 또한 제안하였다.

35㎛ 점탄성수지가 적용된 1.035mm 제진강판의 이종소재간 저항점용접 특성분석 (Characteristic Analysis of Resistance Spot Welding between Dissimilar Materials of 1.035mm Laminated Vibration Damping Steel with 35㎛ Viscoelastic Resin)

  • 배기만;백종진;신창열;김승경;강명창
    • 한국기계가공학회지
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    • 제20권12호
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    • pp.24-29
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    • 2021
  • Recently, owing to the high demand for eco-friendly cars in the automotive industry, noise and vibrations have become major challenges. The use of laminated damping steel is increasing in response to these demands. Laminated damping steel is primarily used in sound insulation plates. The vibration energy is converted into thermal energy due to the viscoelastic resin being located between two steel sheets and being able to damp the vibrations when an external force, such as, noise or vibration is applied to the steel plate. Laminated damping steel is chiefly applied to dash panels in automotive body parts, and because of its structure, junction technology for bonding with other components is necessary. However, there has not been sufficient research conducted on junctions. In this study, regardless of the electrode shape, in the range of 4.0 ~ 8.0 kA welding current, the same welding force and welding time were applied which were 2.8 kN and 200 m/s (12 cycles) and the tensile shear load and nugget size were analyzed after the resistance spot welding between different materials of laminated damping steel with a thickness of 1.035 mm. The results show that in the range of 5 ~ 8 kA welding current, 1.035 mm laminated damping steel meets the MS181-15 standard, which is the technical standard of Hyundai-Kia Motors.

Z-source 직류 차단기의 기계식 스위치 적용을 위한 최적화 설계 (Optimization Design for the Use of Mechanical Switch in Z-source DC Circuit Breaker)

  • 이현승;이건아
    • 한국안전학회지
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    • 제37권1호
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    • pp.12-19
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    • 2022
  • Circuit breakers are a crucial factor in ensuring the safety of a Direct Current (DC) grid. One type of DC circuit breaker, the Z-source DC circuit breaker (ZCB), uses a thyristor, which is a type of semiconductor switch. In the event of a fault in the circuit, the ZCB isolates the fault by generating a zero crossing current in the thyristor. The thyristor quickly and actively isolates the fault while generating a zero crossing current, but thyristor switch cannot control turn-off and the allowable current is lower than the current of the mechanical switch. Therefore, it is best to use a mechanical switch with a high allowable current capacity that is capable of on/off control. Due to the slow reaction time of mechanical switches, they may not isolate the fault during the zero crossing current time interval created by the existing circuit. In this case, the zero crossing current time can be increased by using the property that hinders the rapid change in the current of the inductor. This paper will explore whether adding system inductance to increase the zero crossing current time interval is a solution to this problem. The simulation of changing inductor and capacitor (LC) of the circuit is repeated to find an optimal change in the zero crossing current time according to the LC change and provides an inductor and capacitor range optimized for a specific load. The inductor and capacitor range are expected to provide optimization information in the form LC values for future applications of ZCB's using a mechanical switch.

Stability investigation of symmetrically porous advanced composites plates via a novel hyperbolic RPT

  • S.R. Mahmoud;E.I. Ghandourah;A.H. Algarni;M.A. Balubaid;Abdelouahed Tounsi;Abdeldjebbar Tounsi;Fouad Bourada
    • Steel and Composite Structures
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    • 제46권4호
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    • pp.471-483
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    • 2023
  • This paper presents an analytical hyperbolic theory based on the refined shear deformation theory for mechanical stability analysis of the simply supported advanced composites plates (exponentially, sigmoidal and power-law graded) under triangular, trapezoidal and uniform uniaxial and biaxial loading. The developed model ensures the boundary condition of the zero transverse stresses at the top and bottom surfaces without using the correction factor as first order shear deformation theory. The mathematical formulation of displacement contains only four unknowns in which the transverse deflection is divided to shear and bending components. The current study includes the effect of the geometric imperfection of the material. The modeling of the micro-void presence in the structure is based on the both true and apparent density formulas in which the porosity will be dense in the mid-plane and zero in the upper and lower surfaces (free surface) according to a logarithmic function. The analytical solutions of the uniaxial and biaxial critical buckling load are determined by solving the differential equilibrium equations of the system with the help of the Navier's method. The correctness and the effectiveness of the proposed HyRPT is confirmed by comparing the results with those found in the open literature which shows the high performance of this model to predict the stability characteristics of the FG structures employed in various fields. Several parametric analyses are performed to extract the most influenced parameters on the mechanical stability of this type of advanced composites plates.

Analytical and finite element method for the bending analysis of the thick porous functionally graded sandwich plate including thickness stretching effect

  • Imad Benameur;Youcef Beldjelili;Abdelouahed Tounsi
    • Structural Engineering and Mechanics
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    • 제85권5호
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    • pp.593-605
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    • 2023
  • This work presents a comparison between analytical and finite element analysis for bending of porous sandwich functionally graded material (FGM) plates. The plate is rectangular and simply supported under static sinusoidal loading. Material properties of FGM are assumed to vary continuously across the face sheets thickness according to a power-law function in terms of the volume fractions of the constituents while the core is homogeneous. Four types of porosity are considered. A refined higher-order shear with normal deformation theory is used. The number of unknowns in this theory is five, as against six or more in other shear and normal deformation theories. This theory assumes the nonlinear variation of transverse shear stresses and satisfies its nullity in the top and bottom surfaces of the plate without the use of a shear correction factor. The governing equations of equilibrium are derived from the virtual work principle. The Navier approach is used to solve equilibrium equations. The constitutive law of the porous FGM sandwich plate is implemented for a 3D finite element through a subroutine in FORTRAN (UMAT) in Abaqus software. Results show good agreement between the finite element model and the analytical method for some results, but the analytical method keeps giving symmetric results even with the thickness stretching effect and load applied to the top surface of the sandwich.

Effects of different calcium-silicate based materials on fracture resistance of immature permanent teeth with replacement root resorption and osteoclastogenesis

  • Gabriela Leite de Souza;Gabrielle Alves Nunes Freitas;Maria Tereza Hordones Ribeiro;Nelly Xiomara Alvarado Lemus;Carlos Jose Soares;Camilla Christian Gomes Moura
    • Restorative Dentistry and Endodontics
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    • 제48권2호
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    • pp.21.1-21.15
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    • 2023
  • Objectives: This study evaluated the effects of Biodentine (BD), Bio-C Repair (BCR), and mineral trioxide aggregate (MTA) plug on the fracture resistance of simulated immature teeth with replacement root resorption (RRR) and in vitro-induced osteoclastogenesis. Materials and Methods: Sixty bovine incisors simulating immature teeth and RRR were divided into 5 groups: BD and BCR groups, with samples completely filled with the respective materials; MTA group, which utilized a 3-mm apical MTA plug; RRR group, which received no root canal filling; and normal periodontal ligament (PL) group, which had no RRR and no root canal filling. All the teeth underwent cycling loading, and compression strength testing was performed using a universal testing machine. RAW 264.7 macrophages were treated with 1:16 extracts of BD, BCR, and MTA containing receptor activator of nuclear factor-kappa B ligand (RANKL) for 5 days. RANKL-induced osteoclast differentiation was assessed by staining with tartrate-resistant acid phosphatase. The fracture load and osteoclast number were analyzed using 1-way ANOVA and Tukey's test (α = 0.05). Results: No significant difference in fracture resistance was observed among the groups (p > 0.05). All materials similarly inhibited osteoclastogenesis (p > 0.05), except for BCR, which led to a lower percentage of osteoclasts than did MTA (p < 0.0001). Conclusions: The treatment options for non-vital immature teeth with RRR did not strengthen the teeth and promoted a similar resistance to fractures in all cases. BD, MTA, and BCR showed inhibitory effects on osteoclast differentiation, with BCR yielding improved results compared to the other materials.

The development of the seismic fragility curves of existing bridges in Indonesia (Case study: DKI Jakarta)

  • Veby Citra Simanjuntak;Iswandi Imran;Muslinang Moestopo;Herlien D. Setio
    • Structural Monitoring and Maintenance
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    • 제10권1호
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    • pp.87-105
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    • 2023
  • Seismic regulations have been updated from time to time to accommodate an increase in seismic hazards. Comparison of seismic fragility of the existing bridges in Indonesia from different historical periods since the era before 1990 will be the basis for seismic assessment of the bridge stock in Indonesia, most of which are located in earthquake-prone areas, especially those built many years ago with outdated regulations. In this study, seismic fragility curves were developed using incremental non-linear time history analysis and more holistically according to the actual strength of concrete and steel material in Indonesia to determine the uncertainty factor of structural capacity, βc. From the research that has been carried out, based on the current seismic load in SNI 2833:2016/Seismic Map 2017 (7% probability of exceedance in 75 years), the performance level of the bridge in the era before SNI 2833:2016 was Operational-Life Safety whereas the performance level of the bridge designed with SNI 2833:2016 was Elastic - Operational. The potential for more severe damage occurs in greater earthquake intensity. Collapse condition occurs at As = FPGA x PGA value of bridge Era I = 0.93 g; Era II = 1.03 g; Era III = 1.22 g; Era IV = 1.54 g. Furthermore, the fragility analysis was also developed with geometric variations in the same bridge class to see the effect of these variations on the fragility, which is the basis for making bridge risk maps in Indonesia.

단이 진 인장부재 필릿과 구멍사이 응력집중에 관한 광탄성법 해석 (Analysis of Stress Concentration between Fillet and Hole in a Stepped Plate under Tensile Load by Photoelasticity)

  • 백태현;김명수;김영철
    • 예술인문사회 융합 멀티미디어 논문지
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    • 제5권2호
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    • pp.207-214
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    • 2015
  • 기계구조물 부재의 단면에 구멍이 있거나 단면이 갑자기 변화하는 경우, 응력집중이 발생되며 대부분 재료의 파손에 매우 중요한 원인이 된다. 단면의 급격한 변화로 집중하중이 작용되는 지점 근방에서의 응력은 부재의 평균응력보다 훨씬 크게 작용하기 때문이다. 본 논문에서는 인장하중을 받는 단이 진 판재 모서리의 필릿과 구멍사이의 응력집중에 대해 살펴보았다. 응력 집중의 상호 작용 효과에 대해서 광탄성실험법과 상용 유한요소 소프트웨어 ANSYS로 해석하였다. 해석 결과로부터, 필렛 반경에서 서로 다른 위치에 있는 구멍은 상호 간섭작용으로 상이한 응력집중계수 값들을 일으킬 수 있다.

수직하중에 의한 응력이 CMP 공정의 디싱에 미치는 영향 (Investigation of the Relationship Between Dishing and Mechanical Stress During CMP Process )

  • 김형구;김승현;김민우;임익태
    • 반도체디스플레이기술학회지
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    • 제22권2호
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    • pp.30-34
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    • 2023
  • Since dishing in the CMP process is a major factor that hinders the uniformity of the semiconductor thin film, many studies have focused this issue to improve the non-uniformity of the film due to dishing. In the metal layer, the dishing mainly occurs in the central part of the metal due to a difference in a selection ratio between the metal and the dielectric, thereby generating a step on the surface of the metal layer. Factors that cause dishing include the shape of the thin film, the chemical reaction of the slurry, thermal deformation, and the rotational speed of the pad and head, and dishing occurs due to complex interactions between them. This study analyzed the stress generated on the metal layer surface in the CMP process using ANSYS software, a commercial structure analysis program. The stress caused by the vertical load applied from the pad was analyzed by changing the area density and line width of the dummy metal. As a result of the analysis, the stress in the active region decreased as the pattern density and line width of the dummy metal increased, and it was verified that it was valid compared with the previous study that studied the dishing according to the dummy pattern density and line width of the metal layer. In conclusion, it was confirmed that there is a relationship between dishing and normal stress.

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진동영향을 고려한 가시설 레일의 동적 거동 특성 (Nonlinear Dynamic Behavior of Temporary Rail Considering the Effect of Vibration)

  • 임형준;류동현;원종화;김문겸
    • 대한토목학회논문집
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    • 제28권2A호
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    • pp.171-178
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    • 2008
  • 본 연구는 일반적인 궤도 구조물과는 달리 지지부와 받침이 레일과 상하로 구속되어 있지 않은 가시설 레일을 해석함에 있어 상부 하중에 의해 발생하는 종 방향 하중과 횡 방향 하중 및 진동, 그리고 들림 현상 등을 고려하여 가시설 레일 구조물의 하중 증가율을 제안한 후 비선형 동적 거동 특성을 파악하는데 목적이 있다. 그리하여 상부 구조물의 하중과 진동에 의한 영향이 클 것으로 판단되는 철근 배근 장치에 대한 실구조물 계측을 통해 하중 증가율을 제안하였으며 비선형 동적 유한 요소 해석을 실시하여 진동에 의한 하중 증가율을 고려한 차륜하중에 의해 발생하는 동적응답을 통해 동적 거동특성을 파악하였다. 그 결과 철근 배근 장치의 진동에 의한 하중 증가율을 7%로 제안하였으며 비선형 동적 거동은 선형화된 레일에 비해 최대응력이 14.5% 증가하였고 상부 주행 장치의 속도에 민감하게 반응하는 것으로 나타났다.