• 제목/요약/키워드: TENSILE PROPERTY

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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.

나노사이즈 탄산칼슘이 종이의 물리·광학적 특성에 미치는 영향 (Effects of Nano-sized Calcium Carbonate on Physical and Optical Properties of Paper)

  • 박정윤;이태주;김형진
    • 펄프종이기술
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    • 제46권4호
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    • pp.1-10
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    • 2014
  • In papermaking industry, inorganic fillers are widely used for the purpose of improving opacity, brightness, printability, uniformity and dimensional stability. They are also useful for production costs and energy savings. In the past, inorganic fillers in papermaking industry only focused on micro-scale but recently, new trials on nano-powdered technology are applying. Even nano-powdered fillers are rapidly utilized for improving the optical and surface properties in coating and surface sizing, there still have some problems in wet-end process due to poor dispersibility and retention. In this study, nano-particled calcium carbonate was produced by milling the PCC and its applicability between micro sized and nano sized calcium carbonated was compared in wet-end process, and finally the sheet properties were evaluated. Nano-PCC was not retained in sheet structure without applying retention system, but with retention system nano-powdered PCC was absorbed on fiber surface with expanding the fiber networks. The application of PAM-bentonite system has resulted in high ash retention and bulky structure for copier paper, and good optical properties in brightness and opacity. However, it required to solve the weakness of low tensile property due to interruption of hydrogen bonding by nano fillers.

지르코늄 혼성 폴리카르보실란의 합성 및 특성 (Synthesis and Characteristics of Zirconium Hybridized Polycarbosilane)

  • 강필현;양현수
    • 공업화학
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    • 제9권6호
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    • pp.791-797
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    • 1998
  • 유기 규소계 프리세라믹 고분자로서 열적 안정성을 향상시키고 우수한 성형성을 보유하는 새로운 지르코늄 혼성 폴리카르보실란을 합성하였다. 이를 열안정화 및 열처리를 거쳐 이들을 세라믹화하는 동안의 산화 안정성(불융화), 기계적 특성 등을 고찰하였다. 합성된 지르코늄 혼성 폴리카르보실란을 $250{\sim}270^{\circ}C$ 사이에서 용융방사하여 섬유화 하였으며 polyzirconocarbosilane(PZC) 고분자의 평균 분자량이 1000에서 1400이하, 분산도가 2보다 작은 경우에 방사성이 우수하였다. 안정화 공정을 섬유에 대해 공기중 산화방법으로 $140^{\circ}C$에서 $200^{\circ}C$ 사이에서 수행하였다. PZC 세라믹 섬유의 역학적 특성은 전구체 물질인 PZC 섬유의 안정화 온도에 좌우되고 그 최적 안정화 온도는 PZC의 분자량에 따라 달라지게 됨을 알았다. PZC 세라믹 섬유가 우수한 인장 강도를 나타내기 위해서는 안정화 섬유가 일정한 겔분율을 갖는 것이 필요하다는 것을 알았다.

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액체로켓 연소기용 구리합금의 열/기계적 특성에 관한 실험적 연구 (Experimental Study on the Physical and Mechanical Properties of a Copper Alloy for Liquid Rocket Combustion Chamber Application)

  • 류철성;백운봉;최환석
    • 대한기계학회논문집A
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    • 제30권11호
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    • pp.1494-1501
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    • 2006
  • Mechanical and physical properties of a copper alloy for a liquid rocket engine(LRE) combustion chamber liner application were tested at various temperatures. All test specimens were heat treated with the condition they might experience during actual fabrication process of the LRE combustion chamber. Physical properties measured include thermal conductivity, specific heat and thermal expansion data. Uniaxial tension tests were preformed to get mechanical properties at several temperatures ranging from room temperature to 600$^{\circ}C$. The result demonstrated that yield stress and ultimate tensile stress of the copper alloy decreases considerably and strain hardening increases as the result of the heat treatment. Since the LRE combustion chamber operates at higher temperature over 400$^{\circ}C$, the copper alloy can exhibit time-dependent behavior. Strain rate, creep and stress relaxation tests were performed to check the time-dependent behavior of the copper alloy. Strain rate tests revealed that strain rate effect is negligible up to 400$^{\circ}C$ while stress-strain curve is changed at 500$^{\circ}C$ as the strain rate is changed. Creep tests were conducted at 250$^{\circ}C$ and 500$^{\circ}C$ and the secondary creep rate was found to be very small at both temperatures implying that creep effect is negligible for the combustion chamber liner because its operating time is quite short.

전력용 변압기의 열화에 의해 생성된 부산물의 분석 (Analysis of Produced By-products Due to Oil/Paper Degradation on Power Transformers)

  • 김재훈;한상옥
    • 전기학회논문지
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    • 제56권9호
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    • pp.1561-1565
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    • 2007
  • According to thermal degradation on power transformers, it is known that electrical, mechanical and chemical characteristics for power transformer's oil-paper are changed. In the chemical property, especially, when the kraft paper is aged, the cellulose polymer chains break down into shorter lengths. It causes decrease in both tensile strength and degree of polymerization of paper insulation. Also the paper breakdown is accompanied by an increase in the content of various furanic compounds within the dielectric liquid. It is known that furanic components in transformer oil come only from the decomposition of insulating paper rather than from the oil itself. Therefore the analysis of furanic degradation products provides a complementary technique to dissolved gas analysis for monitoring transformers when we evaluate the aging of insulating paper by the total concentration of carbon monoxide and carbon dioxide dissolved in oil only. Recently, the analysis of furanic compounds by high performance liquid chromatography(HPLC) using IEC 61198 method for estimating degradation of paper insulation in power transformers has been used more conveniently for assessment of oil-paper. It is know that the main products which is produced by aging are 2-furfuryl alcohol, 2-furaldehyde(furfural), 2-furoic acid, 2-acetylfuran, 5-methyl-2-furaldehyde, and 5-hydroxymethyl-2-furaldehyde. For investigating the accelerated aging process of oil-paper samples we manufactured accelerating aging equipment and we estimated variation of insulations at $140^{\circ}C$ temp. during 500 hours. Typical transformer proportions of copper, silicon steel and iron have been added to oil-paper insulation during the aging process. The oil-paper insulation samples have been measured at intervals of 100 hours. Finally we have analyzed that 2-furoic acid and 2-acetylfuran products of furanic compounds were detected by HPLC, and their concentrations were increased with accelerated aging time.

초기균열을 가진 판의 최종파괴 강도해석 (Ultimate Fracture Strength Analysis of Initially Cracked Plate)

  • 백점기;서흥원
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1991년도 가을 학술발표회 논문집
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    • pp.133-138
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    • 1991
  • The aim of the present paper is to develop a computer program predicting ultimate fracture strength of initially cracked structure under monotonically increasing external loads. For this purpose, two kinds of 3-D isoparametric solid elements, one 6-node wedge element and another 8-node brick element are formulated along the small deformation theory. Plasticity in the element is checked using von Mises' yield criterion. Elasto-plastic stiffness matrix of the element is calculated taking account of strain hardening effect. If the principal strain at crack tip which is one nodal point exceeds the critical strain dependin on the material property, crack tip is supposed to be opened and the crack tip node which was previously constrained in the direction perpendicular to the crack line is released. After that, the crack lay be propagated to the adjacent node. Once a crack tip node is fractured, the energy of the newly fractured node should be released which is to be absorbed by the remaining part. The accumulated reaction force which was carried by the newly fractured node so far is then applied in the opposite direction. During the action of crack tip relief force, since unloading may be occured in the plastic element, unloading check should be made. If a plastic element unloads, elastic stress-strain equation is used in the calculation of the stiffness matrix of the element, while for a loading element, elasto-plastic stress-strain equation is continuously used. Verification of the computer program is made comparing with the experimental results for center cracked panel subjected to uniform tensile load. Also some factors affecting ultimate fracture strength of initially cracked plate are investigated. It is concluded that the computer program developed here gives an accurate solution and becomes useful tool for predicting ultimate fracture load of initially cracked structural system under monotonically increasing external loads.

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비탈면 보강에 적용된 네일강화구 거동 분석 (Analysis on Behavior of Mechanical Bulb (GangWhaGu) Applied to Slope Reinforcement)

  • 정순국;이승호
    • 한국지반환경공학회 논문집
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    • 제17권10호
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    • pp.55-62
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    • 2016
  • 매년 이상기후로 인하여 비탈면 붕괴 빈도는 좀처럼 줄어들지 않고 막대한 인명 및 재산 피해로 연결되어 피해규모도 점차 증가하고 있는 상황이다. 이를 억제하기 위해 기술자들은 보다 나은 보강재를 개선하고 인발력이나 전단력을 향상시키는 노력을 계속하고 있다. 본 연구에서는 쏘일 네일 공법을 발전시킨 것으로 네일 선단에 강화구를 장착하여 인발저항력을 증대하고 네일과 일체된 강화구는 접촉면적을 극대화 시켜 지반-그라우트체간 마찰력을 증대시킴으로써 비탈면 안정에 증가효과를 보인다. 보강효과를 검증하고자 일반적인 쏘일 네일과 강화구 네일의 실내인발시험과 현장실험을 통한 거동 특성과 적용성을 확인하기 위하여 실험을 진행하였다. 실험결과 강화구 네일의 경우 인발시험을 통해 일반 네일의 인장력과 비교하여 약 20% 증가하는 것을 분석하였다.

타액오염이 트레이 레진 및 변연 형성재와 Polysulfide 인상재의 접착력에 미치는 영향 (ADHESIVE PROPERTY OF POLYSULFIDE IMPRESS10N MATERIAL ON THE TRAY RESIN AND BORDER HOLDING MATERIALS)

  • 김용학;양홍서
    • 대한치과보철학회지
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    • 제38권5호
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    • pp.650-658
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    • 2000
  • This study was investigated to compare the bond strength of polysulfide adhesive between tray resin and border molding materials and to evaluate the effect of saliva contamination on them. We made the 135 resin tray secimens with a dimension of $1{\times}1{\times}1cm$ and divided them into 3 groups by the materials 1) Quicky group, 2) Compound group, and 3) Impregum group Each group was subdivided by saliva contimination. Group S1 : applied adhesive without saliva contamination Group S2 : applied adhesive after drying 15seconds after saliva contamination Group S3 : applied adhesive no after saliva contamination. Tensile tests were performed with a Universal Load testing machine. Results showed Impregum group significantly higher bond strength than Quicky group, but there was no significant difference in adhesive bond strength between Compound group and Quicky group in experimental group by materials In experimental group by saliva contamination, S1 group is significantly higher bond strength than S2 group and S2 group is significantly higher bond strength than S3 group in Quicky group and S1, S2 group is significantly higher bond strength than S3 group in Compound group and Impregum group. Impression compound and Impregum F which are usually used as an individual tray border mold-ing material can be said to be satisfied in adhesive bond strength to polysulfide impression materials. After try-in and clinical adjustment are performed, a custom tray should be properly rinsed and air dried before tray adhesive was placed.

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DGEBF/방향족아민 경화계의 벤젠링 사이에 위치한 Methyl기와 Sulfone기가 유발하는 물성변화에 대한 연구 (Chemo-Mechanical Analysis of Bifunctional linear DGEBF/Aromatic Amino Resin Casting Systems)

  • 이재락;명인호
    • Composites Research
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    • 제18권4호
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    • pp.14-20
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    • 2005
  • 방향족아민 경화제의 벤젠링 사이의 관능기 변화가 반응특성, 기계적특성 및 열적특성에 미치는 영향을 고찰하기 위하여 범용 에폭시수지인 DGEBF와 방향족아민 경화제 DDM, DDS 각각을 1:1의 당량비로 혼합하여 동일한 조건으로 경화하였다. 그 결과 에폭시수지 경화물의 특성은 경화제의 벤젠링 사이의 관능기 구조에 따라 매우 큰 영향을 받았다. 즉, 벤젠링 사이에 길이가 길고 bulky한 술폰기를 포함한 DDS는 반응성, 열안정성, 밀도, shrinkage($\%$), 선팽창계수, 인장탄성율. 인장강도, 굴곡탄성율, 굴곡강도의 값이 벤젠링 사이에 메틸기를 가지는 DDM 경화물계 보다 높게 나타났지만, epoxide기의 전환율, 유리전이온도의 값은 낮게 나타냈다. 이것은 술폰기의 강한 전기음성도와 메틸기의 전기 양성적인 repulsive한 성질의 차이에 의한 영향인 것으로 판단된다. 굴곡 파단면의 관찰 결과는 DDS 경화물계의 각개 grain이 불규칙적으로 분포되어 있음을 확연하게 보여준다.

단섬유강화 플라스틱 복합재료 구조해석 기법연구 (A study on structure analysis system for short fiber reinforced plastics)

  • 윤지용;김상우;박봉현;이성훈;권태헌;김기태
    • Composites Research
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    • 제24권4호
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    • pp.41-47
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    • 2011
  • 본 연구는 사출 성형 공정을 통하여 제작되는 단섬유강화 플라스틱 복합재료의 구조해석 기법에 관한 내용으로 소재의 이방성 기계물성을 예측하고 이를 구조해석에 적용하도록 하였다. 사출 성형 공정을 통하여 제작되는 단섬유강화 플라스틱 복합재료의 구조해석에 있어서 기존의 경우는 일반적으로 소재의 기계적 물성을 균질 등방성 탄성 모델로 이용하여 왔으나, 실제 부품 파손 모드와 크게 상이한 경우가 많다. 이러한 점을 극복하고자 사출 성형 g,름 해석, 일방향성 복합재료의 Halpin-Tsai 식과 배향 평균 모델을 도입하여 단섬유강화 플라스틱 복합재료의 섬유배향 효과가 고려되도록 새로운 구조해석 시스템을 개발하였다. 해석의 정확도는 시편시험 결과와의 비교를 통하여 검증하였으며, 섬유 배향 및 웰드라인 영향 및 섬유 함량에 따른 변화가 해석에 장 반영됨을 확인하였다. 또한 자동차 부품에 개발된 해석 시스템을 적용하여 균질 등방 모델과 달리 부품의 위치별로 다른 기계적 성능이 반영되고, 사출 게이트 위치에 따라 유리섬유 배향이 변화하여 부품의 성능이 달라짐을 확인하였다.