• Title/Summary/Keyword: Tensile force

검색결과 806건 처리시간 0.023초

이온보조반응법으로 처리한 알루미나 코아의 인장결합강도에 관한 연구 (TENSILE BOND STRENGTH OF ALUNMINA CORE TREATED BY ION ASSISTED REACTION)

  • 김형섭;우이형;권긍록;최부병;최원국
    • 대한치과보철학회지
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    • 제38권5호
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    • pp.704-723
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    • 2000
  • This study was undertaken to evaluate the tensile bond strength of In-Ceram alumina core treat-ed by ion assisted reaction(IAR). Ion assisted reaction is a prospective surface modification technique without damage by a keV low energy ion beam irradiation in reactive gas environments or reactive ion itself. 120 In-Ceram specimens were fabricated according to manufacturer's directions and divided into six groups by surface treatment methods of In-Ceram alumina core. SD group(control group): sandblasting SL group: sandblasting + silane treatment SC group: sandblasting + Siloc treatment IAR I group: sandblasting + Ion assisted reaction with argon ion and oxygen gas IAR II group: sandblasting + Ion assisted reaction with oxygen ion and oxygen gas IAR III group: sandblasting + Ion assisted reaction with oxygen ion only For measuring of tensile bond strength, pairs of specimens within a group were bonded with Panavia 21 resin cement using special device secured that the film thickness was $80{\mu}m$. The results of tensile strength were statistically analyzed with the SPSS release version 8.0 programs. Physical change like surface roughness of In-Ceram alumina core treated by ion assistad reaction was evaluated by Contact Angle Measurement, Scanning Electron Microscopy, Atomic Force Microscopy; chemical surface change was evaluated by X-ray Photoelectron Spectroscopy. The results as follows: 1. In tensile bond strength, there were no statistically significant differences with SC group, IAR groups and SL group except control group(P<0.05). 2. Contact angle measurement showed that wettability of In-Ceram alumina core was enhanced after IAR treatment. 3. SEM and AFM showed that surface roughness of In-Ceram alumina core was not changed after IAR treatment. 4. XPS showed that IAR treatment of In-Ceram alumina core was enabled to create a new functional layer. A keV IAR treatment of In-Ceram alumina core could enhanced tensile bond strength with resin cement. In the future, this ion assisted reaction may be used effectively in various dental materials as well as in In-Ceram to promote the bond strength to natural tooth structure.

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토목섬유 보강 성토사면의 안정해석 II. - 소요 보강재 인장력 평가 - (A Stability Analysis of Geosynthetics Reinforced Soil Slopes II - Evaluation of Required Reinforcement Tensile Force -)

  • 김경모;김홍택;이은수;김영윤;안광국
    • 한국지반공학회논문집
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    • 제21권8호
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    • pp.107-116
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    • 2005
  • 토목섬유로 보강된 성토사면의 안정해석시, 소요 보강재의 인장력은 토압이론에 근거하여 하나 또는 두개의 직선으로 가정된 활동면에 대하여 평형을 유지하기 위하여 필요한 보강재 인장력의 합으로부터 얻을 수 있으며, 각 층별 보강재의 인장력은 삼각형분포 또는 직사각형 분포로 가정한다. 그러나, 실제 토목섬유로 보강된 사면에 대한 현장계측결과에 및 모형실험 결과에 의하면, 보강 성토사면에서 보강재 최대인장력은 사면의 최하단에서 발생하는 것이아니라 사면내의 어느 높이에서 발생한다. 보강토체의 가상파괴면은 일반적으로 각 층의 보강재에서 최대인장력이 발생하는 위치를 연결한 선이며, 이 때 보강재의 인장력은 가상파괴면상의 응력상태와 밀접한 관련이 있다. 따라서 본 연구에서는 사면안정해석으로부터 얻은 가상활동면상의 법선응력의 분포로부터 각 층별 보강재의 인장력을 평가 할 수 있는 방법을 제안하고, 토목섬유 보강 성토사면에 대한 현장계측 사례에 대한 해석을 통하여 그 적용성을 검토 하였다. 그 결과, 본 연구에서 제안한 방법이 기존의 보강사면 설계법 보다 더 현장계측 데이터에 근접하는 각 층별 보강재 인장력을 제공해주는 것으로 나타났다.

Mono-sodium ethylene glycolate 처리에 의한 Poly(ethylene terephthalate) Film의 물성에 관한 연구 (Study on Properties of Poly (ethylene terephthalate) Films Treated with Mono-sodium ethylene glycolate)

  • 조환;허만우;조인술;이광우;조규민
    • 한국염색가공학회지
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    • 제2권4호
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    • pp.223-230
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    • 1990
  • This study was carried out with the view of fundamental investigating to improve the tactile and the hygroscopicity of Poly (ethylene terephthalate) (PET) fibers. Mono-sodium ethylene glycolate in ethylene glycol (MSEG-EG) solution was prepared and PET films were treated with it. The following conclusions were obtained. 1. The tensile strength decreased with increasing decomposition ratio while density, crystallinity and crystallite size increased with increasing decomposition ratio when PET films were treated with MSEG-EG solution. 2. Number of carboxyl end groups was increased until 10-20% decomposition ratio when PET films were treated with MSEG-EG solution. However, the decomposition ratio became more than 20%, the number of carboxyl end groups had tendency to decreased. 3. The surface tension of PET films increased for treating with MSEC-EG solution. Hydrogen bonding force and poler force among the components of surface tension increased while dispersion force among those decreased. 4. The moisture region of PET films increased with increasing decomposition ratio when PET films were treated with MSEG-EG solution.

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휠베어링 고무 실의 접촉력에 관한 연구 (A study on Contact force of Rubber Seal for wheel bearing)

  • 최노진;허영민;이광오;강성수
    • 한국정밀공학회지
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    • 제23권1호
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    • pp.145-151
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    • 2006
  • Wheel bearing unit has been exclusively applied to car wheel supporting device. The seal for wheel bearing is required to have both high sealing effects and low reaction forces because wheel bearing are operated on adverse environmental conditions such as mud and splash water. High sealing effects are for the protection of bearing ball wear from dust influx. In order to ensure high sealing effects, it is a easiest way to increase contact force which are affected by geometric characteristics, material properties and interferences between seal and inner bearing but induces higher wear phenomena. Interferences in all variables are most important factor to determine the performance of wheel bearing. In this study, optimization of interference amount was performed with finite element analysis with commercial code ABAQUS. For the sake of finite element analysis, tensile tests of rubber material were conducted and governing equation of nonlinear behavior was achieved. Hock-up bearing was manufactured with optimized interference amount. Results of torque and mud spray tests using this bearing unit are performed. Less torque and moisture influx of bearing with optimized interference amount is evidence to validity of this study.

직교배열표를 이용한 에너지흡수 조향계의 해석 및 설계 (Analysis and Design considerations of Energy Absorbing Steering System Using Orthogonal Arrays)

  • 임재문;한선규;전원기;우덕현;박경진
    • 한국자동차공학회논문집
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    • 제7권6호
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    • pp.144-155
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    • 1999
  • An occupant analysis code SAFE (Safety Analysis For occupant crash Environment) is utilized to simulate and improve the crash performance of an energy absorbing steering system. The safety standard FMVSS 203 is simulated and used for design evaluations . Segments and contact elliposids are utilized to model the bod blocks and the components of the steering system with SAFE. Spring-damper elements and force-deflection characteristics are utilized to model the energy absorbing components such as the plate and the polyacetal molding. The plate absorbs the impact energy through tensile deformation . Whereas, the polyacetal molding absorbs the impact energy through compression. the body block test is carried out to validate tie simulation model, and real component tests are performed to extract the force-deflection curves . After the model is validated , the parameter study is carried out to evaluate the crash performance of the energy absorbing components. A performance measure is defined for the parameter study. Using the results of the parameter study and managing the orthogonal arrays, optimum design values of energy absorbing components are determined to minize the occupant injury.

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Numerical analyses of the force transfer in concrete-filled steel tube columns

  • Starossek, Uwe;Falah, Nabil;Lohning, Thomas
    • Structural Engineering and Mechanics
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    • 제35권2호
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    • pp.241-256
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    • 2010
  • The interaction between steel tube and concrete core is the key issue for understanding the behavior of concrete-filled steel tube columns (CFTs). This study investigates the force transfer by natural bond or by mechanical shear connectors and the interaction between the steel tube and the concrete core under three types of loading. Two and three-dimensional nonlinear finite element models are developed to study the force transfer between steel tube and concrete core. The nonlinear finite element program ABAQUS is used. Material and geometric nonlinearities of concrete and steel are considered in the analysis. The damage plasticity model provided by ABAQUS is used to simulate the concrete material behavior. Comparisons between the finite element analyses and own experimental results are made to verify the finite element models. A good agreement is observed between the numerical and experimental results. Parametric studies using the numerical models are performed to investigate the effects of diameterto-thickness ratio, uniaxial compressive strength of concrete, length of shear connectors, and the tensile strength of shear connectors.

경사말뚝의 동적거동과 내진성능 향상을 위한 실험적 고찰 (Dynamic Analysis of Inclined Piles and Countermeasures against their Vulnerability)

  • 김재홍;황재익;김성렬;김명모
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2001년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Fall 2001
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    • pp.107-114
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    • 2001
  • When group pile supporting structures are to be subjected to large lateral loads, generally, hatter piles are used in group pile with vertical piles. It is well known that batter piles resist lateral static loads which are acted upon the piles as axial farces quite well but, they show a poor performance under seismic loads. However, it is not yet known how the batter piles behave under dynamic loading and how to strengthen the batter piles to improve the seismic performance. Shaking table tests were performed to investigate the seismic behavior of the batter pile and to bring up the countermeasures to improve the seismic performance. As the result of the shaking table tests, batter piles failed due to not only the excessive increase of compressive force near the pile head but also that of tensile force. In case that the pile head was connected with pile cap by rubber joint, the max. acceleration at the pile cap was reduced due to the high damping ratio of rubber and the max. moment and max. axial farce at the pile head was decreased remarkably. When the inclinations(V:H) of the batter pile were 8:3 and 8:4, max. moment, max. shear force, and max. axial farce were reduced notably and max. acceleration and max. displacement at the pile cap was diminished, too.

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금속판재의 성형한계 및 디프드로잉 성형성의 실험적 평가에 관한 연구 (A Study on the Experimental Evaluation of the Forming Limit and Deep-Drawability of Sheet Metals)

  • 임재규;이상호;김형종
    • 산업기술연구
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    • 제19권
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    • pp.67-74
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    • 1999
  • The mechanical properties including forming limit and deep-drawability of commercially-used sheet metals were experimentally estimated in this study. Uniaxial tensile test to obtain basic mechanical properties was carried out, followed by limiting dome height (LDH) test and forming limit diagram (FLD) test to quantitatively evaluate the sheet-formability. Deep drawing and reverse drawing tests were also performed to find out the critical values of the blank holding force and the gap between the die and the blank holder which enabled the deep drawing and reverse drawing of a successful cop without any wrinkle or fracture. The thickness of the cup wall along the rolling-, transeverse- and $45^{\circ}$-directions was measured and compared with one another. And the punch force-stroke curve and the critical punch force expected from the theory coincided with the experimental result very well for mild steel while not for aluminium alloy.

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폴리머-강섬유를 혼입한 고강도 콘크리트 보의 보수·보강 (Repair and Rehabilitation of Polymer-Steel Fibrous High Strength Concrete Beams)

  • 곽계환;김원태
    • 한국구조물진단유지관리공학회 논문집
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    • 제6권2호
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    • pp.135-143
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    • 2002
  • This study is to investigate its use by applying stainless steel wire mash reinforcement method of construction, which is newly developed, on the high strength concrete beam mixed with polymer-steel fiber. In this test, it is investigated and observed such as follows: the ultimate load, the initial flexure crack load, the initial diagonal tension crack load, the relation between load and deflection, load-strain relation, and also crack growth and fracture aspect by increasing load. The results of this test are; first, the stainless steel wire showed some useful reinforcement effects in multiplying the steel's resisting force of moment to the tensile force of beam or slab: second, the promoting strength and internal force was made in the process of the integration at the same reaction by using the penetrating polymer-mortar with an excellent durability and physical property. On the basis of this results, because such instances in applying stainless steel wire Mash reinforcement method of construction have been few so far, through the experimental investigation such as this test over and over again, the efficient and useful method must be developed for the practice.

항공기용 연료호스의 빔 시일 피팅의 형상변화에 따른 접촉특성에 관한 연구 (A Study on Contact Characteristics by the Geometry Variation of Beam Seal Fitting of an Aircraft Fuel Hose)

  • 전준영;김병탁
    • 한국기계가공학회지
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    • 제12권6호
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    • pp.101-108
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    • 2013
  • An aircraft fuel hose is a kind of high pressure hose, and generally consists of a nipple, a socket, an inner tube, and a reinforcement layer to increase the tensile strength. Especially the nipple supports the other components in manufacturing stages such as the swaging or crimping processes however, the nipple also serves to prevent leakage in cases of hose engagement with a hydraulic system. To ensure the seal of the hose assembly, a beam seal fitting with metal-to-metal contact is usually adopted at the end of a nipple. Therefore, the geometry of the beam is an important parameter to be determined to make sure there is sufficient contact force. This study aims to investigate the effects of beam seal geometry on the contact force by changing the inclined angle and the thickness of the beam. The results reveal that the proper thickness and inclined angle of the beam seal are 0.45 mm and $8.5^{\circ}$, respectively.