• 제목/요약/키워드: ordinary stress

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Structural Performance of 800 MPa High-Strength Steel Members and Application to Highrise and Mega Building Structures

  • Lee, Cheol-Ho
    • 국제초고층학회논문집
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    • 제6권3호
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    • pp.249-259
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    • 2017
  • The use of high-strength steels in construction of highrise and mega building structures can bring about many technological advantages from fabrication to erection. However, key design criteria such as local and lateral stability in current steel design specifications were developed based on tests of ordinary steels which have stress-strain characteristics very different from that of high strength steels. A series of tests on 800 MPa tensile strength steel (HSA800) members are summarized in this paper which were conducted to investigate the appropriateness of extrapolating current ordinary-steel based design criteria to high strength steels. 800 MPa I-shape beam specimens designed according to flange local buckling (FLB) criteria of the AISC Specification developed a sufficient strength for elastic design and a marginal rotation capacity for plastic design. It is shown that, without introducing distinct and significant yield plateau to the stress-strain property of high-strength steel, it is inherently difficult to achieve a high rotation capacity even if all the current stability limits are met. 800 MPa I-shape beam specimens with both low and high warping rigidity exhibited sufficient lateral torsional buckling (LTB) strength. HSA800 short-column specimens with various edge restraint exhibited sufficient local buckling strength under uniform compression and generally outperformed ordinary steel specimens. The experimental P-M strength was much higher than the AISC nominal P-M strength. The measured residual stresses indicated that the impact of residual stress on inelastic buckling of high-strength steel is less. Cyclic seismic test results showed that HSA800 members have the potential to be used as non-ductile members or members with limited ductility demand in seismic load resisting systems. Finally, recent applications of 800 MPa high strength steel to highrise and mega building structures in Korea are briefly presented.

베리오그램 모델 변화에 따른 정규 크리깅 보간법의 민감도분석 (Sensitivity Analysis of Ordinary Kriging Interpolation According to Different Variogram Models)

  • 우광성;박진환;이희정
    • 한국전산구조공학회논문집
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    • 제21권3호
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    • pp.295-304
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    • 2008
  • 본 연구는 두 가지 주요 목적을 갖고 있다. 첫째는, 실험적 베리오그램을 작성하는데 필수적인 분리거리 허용한계를 얼마로 하느냐에 따라 변화되는 베리오그램 모델링에 기초를 둔 정규크리깅 보간법을 유한요소법에 적용이 가능한 가를 시험하는 것이다. 둘째는, 다항식모델, 가우스모델 및 구형모델의 선택에 따른 정확성을 조사하는 것이다. 이 목적을 위해 가우스 적분점에서 취득된 응력값 데이터로터 새로운 응력장을 예측하기 위해 가중-최소제곱법이 적용되었다. 여기서 가중치는 동일한 값을 사용하는 기존의 방식과 달리 응력값들의 보간을 위해 사용되는 실험적 및 이론적 베리오그램에 의해 결정된다. 제안된 접근방식의 타당성을 보이기 위해 2개의 수치예제를 테스트하였다. 이 논문에서 사용된 수치예제의 경우 25% 분리거리 허용한계를 사용한 가우스모델이 참고문헌의 이론 해들과 가장 잘 일치하는 것을 알 수 있었다.

117명 두드러기 환자의 특성에 대한 사상체질적 임상분석 (A Clinical Analysis on 117 Patients with Urticaria Based on Sasang Constitutional Medicine)

  • 김지환;박성식
    • 사상체질의학회지
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    • 제26권3호
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    • pp.304-317
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    • 2014
  • Objectives The purpose of this study was to find out whether there were differences of urticaria's disease aspect between patients classified into Sasang Constitution Types(SCTs) and whether those differences could be associated with Ordinary symptoms. Methods Medical records and questionnaires about 117 patients who visited one Korean medicine hospital due to urticaria were collated and statistically analyzed. Results 1) Ages 20 to 30, women, Soeumin(SE) and patients in conditions of chronic urticaria over 6 weeks were the majority among 117 patients in this study. Food and stress were most chosen as the main cause of urticaria. 2) Soyangin(SY) showed more severe symptoms of urticaria than other SCTs. In particular, the severity of pruritus, distribution of lesions and vulnerability to stress was statistically significant compared to other SCTs(p<0.05). SE expressed urticaria's symptoms at the medium-level of SY's and Taeeumin(TE)'s. TE exhibited relatively weak symptoms but TE only had slightly higher number of patients with angioedema compared to other SCTs. Taeyangin(TY) was only one case so more researches are needed. 3) In dispositional symptoms, SY had low quality of sleep and defecation. SE could not digest oily food well, felt dizzy and cold well, and had cold hands and feet. TE could eat and sweat much and tended to snore well. Conclusions In this study, urticaria had common cause of both stress and food in all SCTs but onset and severity of symptoms were different between SCTs. It could interpreted that these differences between SCTs were associated with ordinary symptoms native to each SCT.

영양소 섭취가 사회심리적 스트레스에 미치는 영향 (Effect of the Nutrient intakes on Psychosocial Stress)

  • 김미경;신동순;왕수경
    • 한국식생활문화학회지
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    • 제10권5호
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    • pp.405-417
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    • 1995
  • This research was designed to see the relationship among nutrient intake, food intake frequency and psychosocial stress in ordinary life. The subjects were 190 males and 263 females of university students in urban areas. There were significant correlations between nutrient intake and stress value, and between food intake frequency and stress value. In male, the more they consumed energy, protein and carbohydrate, the higher they had stress in several categories. But in female the results were reversed. Their stress values were lower when they have consumed protein source food frequently. And in general, stress values of female were higher than those of male. From these results, we conclude that nutrient intake tends to be decresed with increase stress in less stressful condition, but to be increased in more stressful condition.

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Stress-strain behavior of geopolymer under uniaxial compression

  • Yadollahi, Mehrzad Mohabbi;Benli, Ahmet
    • Computers and Concrete
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    • 제20권4호
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    • pp.381-389
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    • 2017
  • The various types of structural materials that are available in the construction industry nowadays make it necessary to predict their stress-strain behavior. Geopolymer are alternatives for ordinary Portland cement concrete that are made from pozzolans activation. Due to relatively new material, many mechanical specifications of geopolymer are still not yet discovered. In this study, stress-strain behavior has been provided from experiments for unconfined geopolymers. Modulus of Elasticity and stress-strain behavior are critical requirements at analysis process and knowing complete stress-strain curve facilitates structural behavior assessment at nonlinear analysis for structures that have built with geopolymers. This study intends to investigate stress-strain behavior and modulus of elasticity from experimental data that belongs for geopolymers varying in fineness and mix design and curing method. For the sake of behavior determination, 54 types of geopolymer are used. Similar mix proportions are used for samples productions that have different fineness and curing approach. The results indicated that the compressive strength ranges between 7.7 MPa and 43.9 MPa at the age of 28 days curing.

Soil arching analysis in embankments on soft clays reinforced by stone columns

  • Fattah, Mohammed Y.;Zabar, Bushra S.;Hassan, Hanan A.
    • Structural Engineering and Mechanics
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    • 제56권4호
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    • pp.507-534
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    • 2015
  • The present work investigates the behavior of the embankment models resting on soft soil reinforced with ordinary and stone columns encased with geogrid. Model tests were performed with different spacing distances between stone columns and two lengths to diameter ratios (L/d) of the stone columns, in addition to different embankment heights. A total number of 42 model tests were carried out on a soil with undrianed shear strength $${\sim_\sim}10kPa$$. The models consist of stone columns embankment at s/d equal to 2.5, 3 and 4 with L/d ratio equal 5 and 8. Three embankment heights; 200 mm, 250 mm and 300 mm were tested for both tests of ordinary (OSC) and geogrid encased stone columns (ESC). Three earth pressure cells were used to measure directly the vertical effective stress on column at the top of the middle stone column under the center line of embankment and on the edge stone column for all models while the third cell was placed at the base of embankment between two columns to measure the vertical effective stress in soft soil directly. The performance of stone columns embankments relies upon the ability of the granular embankment material to arch over the 'gaps' between the stone columns spacing. The results showed that the ratio of the embankment height to the clear spacing between columns (h/s-d) is a key parameter. It is found that (h/s-d)<1.2 and 1.4 for OSC and ESC, respectively; (h is the embankment height, s is the spacing between columns and d is the diameter of stone columns), no effect of arching is pronounced, the settlement at the surface of the embankment is very large, and the stress acting on the subsoil is virtually unmodified from the nominal overburden stress. When $(h/s-d){\geq}2.2$ for OSC and ESC respectively, full arching will occur and minimum stress on subsoil between stone columns will act, so the range of critical embankment height will be 1.2 (h/sd) to 2.2 (h/s-d) for both OSC and ESC models.

Nonlinear vibration of hybrid composite plates on elastic foundations

  • Chen, Wei-Ren;Chen, Chun-Sheng;Yu, Szu-Ying
    • Structural Engineering and Mechanics
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    • 제37권4호
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    • pp.367-383
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    • 2011
  • In this paper, nonlinear partial differential equations of motion for a hybrid composite plate subjected to initial stresses on elastic foundations are established to investigate its nonlinear vibration behavior. Pasternak foundation and Winkler foundations are used to represent the plate-foundation interaction. The initial stress is taken to be a combination of pure bending stress plus an extensional stress in the example problems. The governing equations of motion are reduced to the time-dependent ordinary differential equations by the Galerkin's method. Then, the Runge-Kutta method is used to evaluate the nonlinear vibration frequency and frequency ratio of hybrid composite plates. The nonlinear vibration behavior is affected by foundation stiffness, initial stress, vibration amplitude and the thickness ratio of layer. The effects of various parameters on the nonlinear vibration of hybrid laminated plate are investigated and discussed.

Stress analysis of rotating annular hyperbolic discs obeying a pressure-dependent yield criterion

  • Jeong, Woncheol;Chung, Kwansoo
    • Structural Engineering and Mechanics
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    • 제58권4호
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    • pp.689-705
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    • 2016
  • The Drucker-Prager yield criterion is combined with an equilibrium equation to provide the elastic-plastic stress distribution within rotating annular hyperbolic discs and the residual stress distribution when the angular speed becomes zero. It is verified that unloading is purely elastic for the range of parameters used in the present study. A numerical technique is only necessary to solve an ordinary differential equation. The primary objective of this paper is to examine the effect of the parameter that controls the deviation of the Drucker-Prager yield criterion from the von Mises yield criterion and the geometric parameter that controls the profile of hyperbolic discs on the stress distribution at loading and the residual stress distribution.

Incomplete fabrication effects on represtressing preflex girders encased in concrete

  • Jeong, Euisuk;Lee, Hwan-Woo;Lee, Jaeha
    • Steel and Composite Structures
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    • 제43권1호
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    • pp.67-77
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    • 2022
  • In the current study, ordinary design of Represstessed Pre-Flex (RPF) girder by classical beam theory and numerical model taking buckled shape into consideration were compared with field-survey data to find imperfections on the RPF girder before prestressing and after preflexion. It should be noted that the ordinary design do not consider deformed shape of steel girder in RPF beam. The deformed shapes of steel girder due to the incomplete fabrication that could be caused by self-weight, preflexion misalignment, existence of lateral bracing at mid-span and stiffness of reaction frame were found using a newly developed model which was verified against a deformation survey conducted on actual RPF girder in the field. The final observed deformed shapes of RPF after concrete shrinkage and before prestressing were classified into W, C and Unsymmetric shapes in regard to both survey and analytical results. The deformation survey showed negligible amount of unwanted deformation compared to the large size of the RPF girders. The shallower width of the bottom flange of steel girder caused amount of lateral torsional buckling under self-weight and preflexion thereby affecting the unwanted final overall shape of the RPF girders. However, it was found that the unwanted deformation of RPF girders by fabrication errors even though it is negligible compared to the size of the girder, caused unsymmetrical stress contours in concrete and additional tensile stress and raise some safety issues.