• 제목/요약/키워드: Strength Reduction Method2

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Modal strength reduction factors for seismic design of plane steel frames

  • Papagiannopoulos, George A.;Beskos, Dimitri E.
    • Earthquakes and Structures
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    • 제2권1호
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    • pp.65-88
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    • 2011
  • A new method for the seismic design of plane steel moment resisting frames is developed. This method determines the design base shear of a plane steel frame through modal synthesis and spectrum analysis utilizing different values of the strength reduction (behavior) factor for the modes considered instead of a single common value of that factor for all these modes as it is the case with current seismic codes. The values of these modal strength reduction factors are derived with the aid of a) design equations that provide equivalent linear modal damping ratios for steel moment resisting frames as functions of period, allowable interstorey drift and damage levels and b) the damping reduction factor that modifies elastic acceleration spectra for high levels of damping. Thus, a new performance-based design method is established. The direct dependence of the modal strength reduction factor on desired interstorey drift and damage levels permits the control of deformations without their determination and secures that deformations will not exceed these levels. By means of certain seismic design examples presented herein, it is demonstrated that the use of different values for the strength reduction factor per mode instead of a single common value for all modes, leads to more accurate results in a more rational way than the code-based ones.

Seismic structural demands and inelastic deformation ratios: a theoretical approach

  • Chikh, Benazouz;Mebarki, Ahmed;Laouami, Nacer;Leblouba, Moussa;Mehani, Youcef;Hadid, Mohamed;Kibboua, Abderrahmane;Benouar, Djilali
    • Earthquakes and Structures
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    • 제12권4호
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    • pp.397-407
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    • 2017
  • To estimate the structural seismic demand, some methods are based on an equivalent linear system such as the Capacity Spectrum Method, the N2 method and the Equivalent Linearization method. Another category, widely investigated, is based on displacement correction such as the Displacement Coefficient Method and the Coefficient Method. Its basic concept consists in converting the elastic linear displacement of an equivalent Single Degree of Freedom system (SDOF) into a corresponding inelastic displacement. It relies on adequate modifying or reduction coefficient such as the inelastic deformation ratio which is usually developed for systems with known ductility factors ($C_{\mu}$) and ($C_R$) for known yield-strength reduction factor. The present paper proposes a rational approach which estimates this inelastic deformation ratio for SDOF bilinear systems by rigorous nonlinear analysis. It proposes a new inelastic deformation ratio which unifies and combines both $C_{\mu}$ and $C_R$ effects. It is defined by the ratio between the inelastic and elastic maximum lateral displacement demands. Three options are investigated in order to express the inelastic response spectra in terms of: ductility demand, yield strength reduction factor, and inelastic deformation ratio which depends on the period, the post-to-preyield stiffness ratio, the yield strength and the peak ground acceleration. This new inelastic deformation ratio ($C_{\eta}$) is describes the response spectra and is related to the capacity curve (pushover curve): normalized yield strength coefficient (${\eta}$), post-to-preyield stiffness ratio (${\alpha}$), natural period (T), peak ductility factor (${\mu}$), and the yield strength reduction factor ($R_y$). For illustrative purposes, instantaneous ductility demand and yield strength reduction factor for a SDOF system subject to various recorded motions (El-Centro 1940 (N/S), Boumerdes: Algeria 2003). The method accuracy is investigated and compared to classical formulations, for various hysteretic models and values of the normalized yield strength coefficient (${\eta}$), post-to-preyield stiffness ratio (${\alpha}$), and natural period (T). Though the ductility demand and yield strength reduction factor differ greatly for some given T and ${\eta}$ ranges, they remain take close when ${\eta}>1$, whereas they are equal to 1 for periods $T{\geq}1s$.

인쇄용지의 불투명도 향상을 위한 지료조성 (Stock Preparations for the Opacity Improvement of Printing Paper)

  • 최성훈;김봉용
    • 펄프종이기술
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    • 제32권1호
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    • pp.1-9
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    • 2000
  • This study was carried out to improve the opacity of printing paper. Conventional filler loading enhanced the opacity of paper, but subsequently caused reduction of paper strength of paper. We try to seek a new filler loading method so-called beater loading that enhances opacity of paper as well as sustained desire strength. In our experiment, comparing to direct loading method, the beater loading method enhanced 0.8% of opacity and 0.2% of brightness. This also decreased the rates of strength reduction of paper. Therefore, the results obtained in this study indicated that beater loading was a very effective method to improve the opacity of paper while not to decreased so much of paper strength.

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1.2GPa급 초고강도강판의 단면 형태에 따른 스프링백에 관한 해석적 평가 및 연구 (Analytical evaluation and study on the springback according to the cross sectional form of 1.2GPa ultra high strength steel plate)

  • 이동환;한성렬;이춘규
    • Design & Manufacturing
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    • 제13권4호
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    • pp.17-22
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    • 2019
  • Currently, studies on weight reduction and fuel efficiency increase are the most important topics in the automotive industry and many studies are under way. Among them, weight reduction is the best way to raise fuel efficiency and solve environmental pollution and resource depletion. Materials such as aluminum, magnesium and carbon curing materials can be found in lightweight materials. Among these, research on improvement of bonding technology and manufacturing method of materials and improvement of material properties through study of ultrahigh strength steel sheet is expected to be the biggest part of material weight reduction. As the strength of the ultra hight strength steel sheet increases during forming, it is difficult to obtain the dimensional accuracy as the elastic restoring force increases compared to the hardness or high strength steel sheet. It is known that the spring back phenomenon is affected by various factors depending on the raw material and processing process. We have conducted analytical evaluations and studies to analyze the springback that occurs according to the cross-sectional shape of the ultra high tensile steel sheet.

암석 버력으로 성토한 사면의 안정성 해석 (Stability Analysis of Embankment Slopes Consisting of Rock Fragments)

  • 김치환
    • 터널과지하공간
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    • 제12권2호
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    • pp.83-91
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    • 2002
  • 암석 버력으로 성토한 사면의 역학적 안정성을 한계평형해석법과 유한차분법으로 검토하였다. 암석 버력 성토사면의 높이는 약 40 m이고 사면의 구배는 1:1.5이다. 암석 버력 성토체의 강도정수 중 점착력은 없고, 내부마찰각은 43$^{\circ}$로 가정하고 사면의 안정성을 해석하였다. 한계평형해석 중 Fellenius법과 Bishop법으로 구한 안전율 Fs는 1.4이었다. 또 유한차분법으로 사면의 안전율을 구하기 위해서 강도감소법을 이용하였고 파괴영역을 기준으로 결정한 사면의 안전율 Fs도 역시 약 1.4로 한계평형해석 결과와 동일하였다. 여러 기관에서 사면설계기준으로 적용하는 안전율 1.3과 비교할 때 암석 버력 성토사면은 안정상태로 확인되었다.

SSPCM 혼입 콘크리트의 역학적 성능 기반 배합설계기법 연구 (Investigation of Mix Design Method in Concrete Mixed with SSPCM Based on Mechanical Behaviors)

  • 민해원;김희선
    • 복합신소재구조학회 논문집
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    • 제6권2호
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    • pp.1-7
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    • 2015
  • As energy consumption of building and the reduction of carbon dioxide emissions have been emphasized, phase change materials(PCM) have been introduced as building materials due to its high heat storage performance. Using shape-stabilizing technique, octadecane/xGnP shape-stabilized PCM(SSPCM) can prevent leakage and improve heat storage performance. The objectives of this study are to propose mix design method of concrete mixed with SSPCM and to evaluate mechanical behaviors of the concrete mixed with SSPCM manufactured according to the proposed mix design. Based on the previously reported material test result, the existing mix design of plain concrete(Concrete standard specification, 2009) is modified to consider reduction of strength in concrete due to the addition of SSPCM. To verify the proposed mix design, specimens are fabricated according to the proposed mix design and axial strength tests and three-point loading tests are performed. Test results show that compressive strengths of the tested specimens reach the designed strength even when two different mix ratios of SSPCM are used. From three-point loading tests, flexural stresses decrease as mix ratio of SSPCM increases.

Effects of Self-Traction Exercises on the Vertebral Alignment, Muscle Strength, and Flexibility of Adults in Their Twenties with Scoliosis

  • Kim, Yongmin;Jeon, Changkeun;Yoo, Kyoungtae
    • 국제물리치료학회지
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    • 제10권2호
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    • pp.1810-1817
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    • 2019
  • Background: Effect of cervical and lumbar tractions on the reduction in the angle of curvature and the effect of a correction exercise or a general traction method on balance, muscle strength, pain, and body alignment, however insufficient research has been undertaken on self traction exercises targeting patients with scoliosis. Purpose: To determine the effect of cervical and lumbar tractions on the reduction in the angle of curvature and the effect of a correction exercise or a general traction method on balance, muscle strength, pain, and body alignment. Design: Randomized controlled clinical trial (single blinded) Methods: Twelve adults(20s) with scoliosis were included in this study and performed a traction program that was composed of a 5-min warm-up exercise, a 15-min main exercise, and a 5-min cool-down exercise (25 minutes in total), three times a week for four weeks. The Chiro traction machine was used for the self-traction exercise. Vertebral alignment, muscle strength, and flexibility were compared before and after the intervention using the paired T-test. Results: The scoliosis angle, pelvic torsion, and lumbar extensor were significantly changed by intervention; however, there was no significant difference in flexibility. Conclusion: The results revealed that self-traction exercise activated blood flow through the extension and contraction of muscles, effectively increasing the function of the muscles around the vertebrae.

탄소/에폭시 프리프레그를 이용한 스와시 플레이트의 성형공정 해석에 관한 연구 (A Study on the Analysis of Forming Process for Swash-Plate by Using Prepreg)

  • 김기성;윤한기;신지영;허관도
    • 소성∙가공
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    • 제19권2호
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    • pp.127-131
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    • 2010
  • Carbon-epoxy prepreg has been introduced in the forming of the upper and lower swash plates that control the pitch of rotor blade of unmanned helicopter because of its lightweight. Taguchi experimental method has been used by introducing the variables such as arrangement angle, laminated number and forming temperature, in order to obtain the proper forming method by using prepreg satisfying the required strength of the swash plate. In the evaluation of structural safety for the swash plates, three kinds of models are considered by using FE-analysis. In comparison of the hot forged products with Al6061-T6 and the formed products with prepreg, it was found that ultimate tensile strength of the products with prepreg is three times higher than that of the Al6061-T6, and the weight reduction of 68.5g can be achieved by using prepreg swash plates.

응력특이성을 고려한 접착이음의 강도평가 방법 (Evaluation Method of Bonded Strength Considering Stress Singularity in Adhesively Bonded Joints)

  • 정남용
    • 한국생산제조학회지
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    • 제7권1호
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    • pp.58-68
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    • 1998
  • Advantages of adhesively bonded joints and techniques of weight reduction have led to increasing use of structural adhesives such as LSI(large scale integration) package, automobile, aircraft in the various industries. In spite of such wide applications of adhesively bonded joints, the evaluation method of bonding strength has not been established. Stress singularity occurs at the interface edges of adhesively bonded joints and it is required to analyze it. In this paper, the stress singularity using 2-dimensional elastic boundary element method (BEM) with the changes of the lap length and adhesive for single lap joint was analyzed, and experiments of strength evaluation were carried out. As the results, the evaluating method of bonding strength considering stress singularity at interface edges of adhesively bonded joints and stress intensity factor of interface crack have been proposed in static and fatigue test.

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고강도강 내진성능 향상부재를 적용한 건물 성능 비교 (Examination of Seismic Performance for Structure with Seismic Members made by High Strength Steel)

  • 김문정;하태욱;조석희
    • 한국강구조학회 논문집
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    • 제27권3호
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    • pp.281-288
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    • 2015
  • 댐퍼를 비롯한 대부분의 내진성능 향상 부재는 골조를 구성하는 주요구조부재가 소성상태에 진입한 다음 나타나는 층 강성 저하에 대한 대처가 없어 대지진 시 건물의 층 파괴를 방지하지 못할 가능성이 높다. 이에 본 논문은 건물의 주요부재가 탄성항복한 뒤에도 건물의 층 강성을 일정기간 유지시킬 수 있는 고강도강 내진성능 향상부재를 제안한다. 본 논문에서는 다음과 같은 사실을 알 수 있다. (1) 골조의 소성화 항복 후 저감된 수평내력을 보강하는 탄성 부재를 제안방식으로 설계 시 기존 면적을 방해하지 않는 작은 단면으로 최대 층간변형각 0.02rad 까지 내력 저감 보강 가능 (2) 제안 내진성능 향상부재의 최저 적용으로도 설계 레벨을 상회하는 거대 지진에서 과다변형집중방지에 상당한 효과를 발휘하는 것을 확인.