• 제목/요약/키워드: Mode of failure

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콜드조인트 발생시간이 초고강도 섬유보강 시멘트 복합체의 전단 접착 성능에 미치는 영향에 관한 실험적 연구 (An Experimental Study on the Period of Cold Joint Occurrence Effecting Shear Bond Performances of UHSCC)

  • 김민성;양현민;이한승;조근희
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권1호
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    • pp.25-32
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    • 2016
  • 본 연구는 고강도 섬유보강 시멘트 복합체(UHSCC) 접착성능을 평가하는 것이 목적이다. Direct shear test를 통해 압축전단접착강도를 측정한 결과 NC(보통강도콘크리트)+NC 실험체($150{\times}150{\times}150mm$)에서는 모든 수준에서 유사한 압축전당접착강도를 나타내었고, 반면 UHSCC+UHSCC에서는 지연타설 30분 후부터 0분에 비해 압축전단접착강도가 낮아지는 것을 확인할 수 있었다. 이를 통한 접착면의 파괴모드를 분석한 결과 NC+NC 에서는 모든 수준에서 비계면 파괴를 보였고 UHSCC+UHSCC에서는 30분, 60분, 90분 시험체에서 계면파괴가 일어났다. NC 및 UHSCC의 타설면을 XRD 시험을 통해 분석한 결과 NC 시험체에 비해 UHSCC의 시험체 에서 많은량의 $SiO_2$의 성분이 검출되는 것을 알 수 있었고 UHSCC에서 나타난 코팅막의 주성분의 대부분은 $SiO_2$로 사료된다. 따라서 본 연구에서 사용된 UHSCC는 지연타설 30분 후 부터는 접착성능의 저하로 구조체로서의 사용이 어렵다고 판단된다. 금후 연구에서는 콜드조인트 발생 부위의 면처리 방법을 통한 접착성능 향상이 필요하다고 사료된다.

Experimental investigation on flexural behaviour of HSS stud connected steel-concrete composite girders

  • Prakash, Amar;Anandavalli, N.;Madheswaran, C.K.;Lakshmanan, N.
    • Steel and Composite Structures
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    • 제13권3호
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    • pp.239-258
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    • 2012
  • In this paper, experimental investigations on high strength steel (HSS) stud connected steel-concrete composite (SCC) girders to understand the effect of shear connector density on their flexural behaviour is presented. SCC girder specimens were designed for three different shear capacities (100%, 85%, and 70%), by varying the number of stud connectors in the shear span. Three SCC girder specimens were tested under monotonic/quasi-static loading, while three similar girder specimens were subjected to non-reversal cyclic loading under simply supported end conditions. Details of casting the specimens, experimental set-up, and method of testing, instrumentation for the measurement of deflection, interface-slip and strain are discussed. It is found that SCC girder specimen designed for full shear capacity exhibits interface slip for loads beyond 25% of the ultimate load capacity. Specimens with lesser degree of shear connection show lower values of load at initiation of slip. Very good ductility is exhibited by all the HSS stud connected SCC girder specimens. It is observed that the ultimate moment of resistance as well as ductility gets reduced for HSS stud connected SCC girder with reduction in stud shear connector density. Efficiency factor indicating the effectiveness of high strength stud connectors in resisting interface forces is estimated to be 0.8 from the analysis. Failure mode is primarily flexure with fracturing of stud connectors and characterised by flexural cracking and crushing of concrete at top in the pure bending region. Local buckling in the top flange of steel beam was also observed at the loads near to failure, which is influenced by spacing of studs and top flange thickness of rolled steel section. One of the recommendations is that the ultimate load capacity can be limited to 1.5 times the plastic moment capacity of the section such that the post peak load reduction is kept within limits. Load-deflection behaviour for monotonic tests compared well with the envelope of load-deflection curves for cyclic tests. It is concluded from the experimental investigations that use of HSS studs will reduce their numbers for given loading, which is advantageous in case of long spans. Buckling of top flange of rolled section is observed at failure stage. Provision of lips in the top flange is suggested to avoid this buckling. This is possible in case of longer spans, where normally built-up sections are used.

레이저 용접과 납착법으로 연결된 귀금속성 금속-도재 합금의 물리적 성질 (Mechanical Properties of Precious Metal-Ceramic Alloy Joined by the Laser-Welding and the Soldering Method)

  • 오정란;이석형;우이형
    • 구강회복응용과학지
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    • 제19권4호
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    • pp.269-279
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    • 2003
  • This study investigated the mechanical properties of precious metal-ceramic alloy joined by the laser-welding and the soldering compared with the parent metal. Twenty-four tensile specimens were cast in precious metal-ceramic alloy and divided into three groups of eight. All specimens in the control group(group 1) were left in the as-cast condition. Group 2 and 3 were the test specimens, which were sectioned at the center. Eight of sectioned specimens were joined by soldering with a propane-oxygen torch, and the remaining specimens were joined by laser-welding. After joining, each joint diameter was measured, and then tested to tensile failure on an Instron machine. Failure loads were recorded, and then fracture stress(ultimate tensile strength), 0.2% yield strength and % elongation calculated. These data for three groups were subjected to a one-way analysis of variance(ANOVA). Neuman-Keuls post hoc test was then used to determine any significant differences between groups. The fracture locations, fracture surfaces were examined by SEM(scanning electron microscope). The results were as follows: 1) The tensile strength and 0.2% yield strength of the soldered group($280.28{\pm}49.35MPa$, $160.24{\pm}26.67MPa$) were significantly less than both the as-cast group($410.99{\pm}13.07MPa$, $217.82{\pm}17.99MPa$) and the laser-welded group($383.56{\pm}59.08MPa$, $217.18{\pm}12.96MPa$). 2) The tensile strength and 0.2% yield strength of the laser-welded group were about each 98%, 99.7% of the as-cast group. There were no statistically significant differences in these two groups(p<0.05). 3) The percentage elongations of the soldered group($3.94{\pm}2.32%$) and the laser-welded group($5.06{\pm}1.08%$) were significantly less than the as-cast group($14.25{\pm}4.05%$) (p<0.05). 4) The fracture of the soldered specimens occurred in the solder material and many porosities were showed at the fracture site. 5) The fracture of the laser-welded specimens occurred also in the welding area, and lack of fusion and a large void was observed at the center of the fracture surface. However, the laser-welded specimens showed a ductile failure mode like the as- cast specimens. The results of this study indicated that the tensile strengths of the laser-welded joints were comparable to those of the as-cast joints and superior to those of the soldered joints.

Effect of liners and primers on tensile bond strength between zirconia and resin-based luting agent

  • Jo, Eun-Hye;Huh, Yoon-Hyuk;Ko, Kyung-Ho;Park, Chan-Jin;Cho, Lee-Ra
    • The Journal of Advanced Prosthodontics
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    • 제10권5호
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    • pp.374-380
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    • 2018
  • PURPOSE. The effect of silica-based glass-ceramic liners on the tensile bond strength between zirconia and resin-based luting agent was evaluated and compared with the effect of 10-methacryloyloxydecyl dihydrogen phosphate (MDP)-containing primers. MATERIALS AND METHODS. Titanium abutments and zirconia crowns (n = 60) were fabricated, and the adhesive surfaces of the specimens were treated by airborne-particle abrasion. The specimens were divided into 5 groups based on surface treatment: a control group, 2 primer groups (MP: Monobond Plus; ZP: Z Prime Plus), and 2 liner groups (PL: P-containing Liner; PFL: P-free Liner). All specimens were cemented with self-adhesive resin-based luting agent. After 24-hour water storage and thermocycling (5,000 cycles, $5^{\circ}C/55^{\circ}C$), the tensile bond strength was measured using a universal testing machine. Failure mode analysis and elemental analysis on the bonding interface were performed. The data were analyzed using Kruskal-Wallis test, Dunn's post hoc test, and Fisher's exact test. RESULTS. The liner groups and primer groups showed significantly higher tensile bond strengths than that of the control group (P<.05). PFL showed a significantly higher tensile bond strength than the primer groups (P<.05). The percentage of mixed failure was higher in the primer groups than in the control group (P<.001), and all the specimens showed mixed failure in the liner groups (P<.001). A chemical reaction area was observed at the bonding interface between zirconia and liner. CONCLUSION. The application of liner significantly increased the tensile bond strength between zirconia and resin-based luting agent. PFL was more effective than MDP-containing primers in improving the tensile bond strength with the resin-based luting agent.

PACS 환경에서 하드디스크의 가속 수명시험 (The Acclerated Life Test of Hard Disk In The Environment of PACS)

  • 조의현;박정규;채종규
    • 디지털콘텐츠학회 논문지
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    • 제16권1호
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    • pp.63-70
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    • 2015
  • 본 연구는 PACS의 영상저장부의 디스크 배열에 들어가는 하드디스크의 수명을 제조회사의 가속 수명시험 결과로 예측하고자 하였다. $50^{\circ}C$, $60^{\circ}C$의 고장시간 데이터로 Anderson-Darling 적합도 검증을 진행하여 와이블 분포를 채택하였다. 형상모수와 척도모수로 동일성 검증을 진행한 결과, 가속 수명 시험 $50^{\circ}C$ 조건과 가속 수명 시험 $60^{\circ}C$ 조건의 확률분포가 통계적으로 유의하지 않았다. 온도 가속인자를 포함한 와이블-아레니우스 모형으로부터 추정한 형상모수는 1.0409이며, 사용조건($30^{\circ}C$)의 특성수명은 24603.5 시간이었다. 또한 아레니우스 모델 식에 반영하여 활성화 에너지 0.5011 eV을 산출하였다. 그리고 가속시험의 정확성 확보차원에서 가속시험 불량시료와 시장 반품 시료로 고장 분석을 진행한 결과, 불량 모드별 점유율의 세부 차이는 있으나, 점유율 순서는 일치 하였다. 본 연구는 PACS 환경 하에서 하드디스크의 가속시험절차를 제안하며, 제조자와 사용자간에 수명예측에 도움을 주고자 한다.

Behavior of RC beams strengthened with NSM CFRP strips under flexural repeated loading

  • Fathuldeen, Saja Waleed;Qissab, Musab Aied
    • Structural Engineering and Mechanics
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    • 제70권1호
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    • pp.67-80
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    • 2019
  • Strengthening with near surface mounted carbon fibre reinforced polymers (NSM-CFRP) is a strengthening technique that have been used for several decades to increase the load carrying capacity of reinforced concrete members. In Iraq, many concrete buildings and bridges were subjected to a wide range of damage as a result of the last war and many other events. Accordingly, there is a progressive increase in the strengthening of concrete structures, bridges in particular, by using CFRP strengthening techniques. Near-surface mounted carbon fibre polymer has been recently proved as a powerful strengthening technique in which the CFRP strips are sufficiently protected against external environmental conditions especially the high-temperature rates in Iraq. However, this technique has not been examined yet under repeated loading conditions such as traffic loads on bridge girders. The main objective of this research was to investigate the effectiveness of NSM-CFRP strips in reinforced concrete beams under repeated loads. Different parameters such as the number of strips, groove size, and two types of bonding materials (epoxy resin and cement-based adhesive) were considered. Fifteen NSM-CFRP strengthened beams were tested under concentrated monotonic and repeated loadings. Three beams were non-strengthened as reference specimens while the remaining were strengthened with NSM-CFRP strips and divided into three groups. Each group comprises two beams tested under monotonic loads and used as control for those tested under repeated loads in the same group. The experimental results are discussed in terms of load-deflection behavior up to failure, ductility factor, cumulative energy absorption, number of cycles to failure, and the mode of failure. The test results proved that strengthening with NSM-CFRP strips increased both the flexural strength and stiffness of the tested beams. An increase in load carrying capacity was obtained in a range of (1.47 to 4.49) times that for the non-strengthened specimens. Also, the increase in total area of CFRPs showed a slight increase in flexural capacity of (1.02) times the value of the control strengthened one tested under repeated loading. Increasing the total area of CFRP strips resulted in a reduction in ductility factor reached to (0.71) while the cumulative energy absorption increased by (1.22) times the values of the strengthened reference specimens tested under repeated loading. Moreover, the replacement of epoxy resin with cement-based adhesive as a bonding material exhibited higher ductility than specimen with epoxy resin tested under monotonic and repeated loading.

인장웨브재 형태에 따른 각형강관 갭K형 접합부의 거동 비교 (Comparison on the Behavior according to Shapes of Tension Web member in gap K-joints in Cold-formed Square Hollow Sections)

  • 정상민;배규웅;문태섭
    • 한국강구조학회 논문집
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    • 제17권5호통권78호
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    • pp.561-568
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    • 2005
  • 본 논문의 목적은 트러스 인장웨브재의 형상이 정방형 각형강관인 기존 연구(강관웨브형)와 고장력 강봉을 인장웨브재로 사용하기 위해 연결플레이트를 가지는(강봉웨브형) 냉간성형 각형강관 갭 K형 접합부의 거동 비교를 통하여 고장력 강봉 사용의 적정성을 알아보기 위한 것이다. 주관폭두께비가 33.3으로 동일한 강관웨브형 실험체 4개와 강봉웨브형 실험체 8개의 최대내력, 파괴모드, 초기강성, 연성율 등을 비교하였다. 비교 결과, 접합부의 내력은 강관웨브형에서는 압축지관의 선행파괴로 결정되었으며, 강봉웨브형에서는 인장측의 선행파괴로 결정되었다. 무차원화 내력은 동일 폭비에서 강관웨브형이 높게 나타났으며, 폭비 증가에 따른 내력증가현상도 강관웨브형에서 뚜렷하게 나타나고, 강봉웨브형은 일정한 경향이 나타나지 않은 반면에 인장과 압축폭비로 나누어 살펴보면 인장폭비 증가에 따라서는 선형적인 증가현상이 나타남을 알았다. 파괴모드는 강관웨브형의 경우에는 압축지관의 미소 국부좌굴과 인장웨브와 주관 접합면의 소성파괴가 나타났고, 강봉웨브형의 경우는 주관플랜지면 소성변형 후 연결플레이트 용접부위의 파단이 나타났다. 따라서, 강봉웨브형에서 연결 플레이트를 갖는 갭K형 접합부의 경우에는 강관웨브형에 비해 주관의 폭두께비를 낮게 할 필요가 있으며, 폭비도 인장지관과 압축지관과의 관계를 고려하여 결정하여야 할 것으로 판단된다.

현장시험을 통한 부력앵커의 거동분석 (An analysis of the Behaviour of Uplift-Resisting Ground Anchors from Pull-out Tests)

  • 이철주;전상현;유남재
    • 한국지반환경공학회 논문집
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    • 제8권1호
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    • pp.33-40
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    • 2007
  • 풍화암층에 시공된 부력앵커의 거동을 현장인발시험을 통하여 분석하였다. 부력앵커는 지하철역사의 지하층에 작용하는 부력을 저항하기 위하여 시공되었다. 본 연구에서는 부력앵커의 한계인발저항력과 앵커와 지반의 경계면에서의 전단응력 전이 메커니즘에 대한 분석을 실시하였다. 인발시험에서는 앵커의 정착장(2~7m)과 천공직경(108~165mm)을 변경시키면서 그 영향을 고찰하였다. 인발시험결과에 의하면 앵커의 한계인발력은 정착장의 길이 및 천공직경이 증가 할수록 증가하는 것으로 분석되었다. 인발시험을 통한 앵커의 한계인발력은 이러한 인자들에 따라 392~1,569kN의 범위를 보이는 것으로 분석되었다. 이로부터 경계면에서 227~505kPa 전단강도가 발생하는 것으로 산정되었다. 인발시험결과에 의하면 인발력의 크기가 증가할수록 전단강도의 발현정도가 증가하는 것으로 나타났다. 인발시험을 통해서 관찰된 파괴 형태는 앵커의 길이에 큰 영향을 받는 것으로 분석되었다. 앵커의 길이가 짧은 경우(2~3m) 콘 형태의 파괴가 관찰되었으며, 앵커의 길이가 증가한 경우(5~7m)는 앵커의 파괴가 앵커체와 주변지반과의 불연속면에서 발생하는 것으로 나타났다.

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Shear bond strength of veneering porcelain to zirconia and metal cores

  • Choi, Bu-Kyung;Han, Jung-Suk;Yang, Jae-Ho;Lee, Jai-Bong;Kim, Sung-Hun
    • The Journal of Advanced Prosthodontics
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    • 제1권3호
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    • pp.129-135
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    • 2009
  • STATEMENT OF PROBLEM. Zirconia-based restorations have the common technical complication of delamination, or porcelain chipping, from the zirconia core. Thus the shear bond strength between the zirconia core and the veneering porcelain requires investigation in order to facilitate the material's clinical use. PURPOSE. The purpose of this study was to evaluate the bonding strength of the porcelain veneer to the zirconia core and to other various metal alloys (high noble metal alloy and base metal alloy). MATERIAL AND METHODS. 15 rectangular ($4\times4\times9mm$) specimens each of zirconia (Cercon), base metal alloy (Tillite), high noble metal alloy (Degudent H) were fabricated for the shear bond strength test. The veneering porcelain recommended by the manufacturer for each type of material was fired to the core in thickness of 3mm. After firing, the specimens were embedded in the PTFE mold, placed on a mounting jig, and subjected to shear force in a universal testing machine. Load was applied at a crosshead speed of 0.5mm/min until fracture. The average shear strength (MPa) was analyzed with the oneway ANOVA and the Tukey's test ($\alpha$= .05). The fractured specimens were examined using SEM and EDX to determine the failure pattern. RESULTS. The mean shear strength ($\pm\;SD$) in MPa was 25.43 ($\pm\;3.12$) in the zirconia group, 35.87 ($\pm\;4.23$) in the base metal group, 38.00 ($\pm\;5.23$) in the high noble metal group. The ANOVA showed a significant difference among groups, and the Tukey' s test presented a significant difference between the zirconia group and the metal group. Microscopic examination showed that the failure primarily occurred near the interface with the residual veneering porcelain remaining on the core. CONCLUSION. There was a significant difference between the metal ceramic and zirconia ceramic group in shear bond strength. There was no significant difference between the base metal alloy and the high noble metal alloy.

심층혼합처리지반에 설치된 안벽의 신뢰성해석(Part I: 개량지반의 외부안정) (Reliability Analysis of a Quay Wall Constructed on the Deep-Cement-Mixed Ground(Part I: External Stability of the Improved Soil System))

  • 허정원;박옥주;김영상;허동수
    • 한국해안·해양공학회논문집
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    • 제22권2호
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    • pp.79-87
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    • 2010
  • 이 논문은 특수기초에 설치된 안벽의 외부 및 내부 안정성에 대한 신뢰성분석을 각각 다룬 2편의 연속 논문 중 첫 번째 논문이다. 이 논문에서는 심층혼합처리지반-안벽 시스템의 외부안정성에 대한 정량적 위험도를 평가할 수 있는 실용적인 신뢰성해석기법을 새로이 제안하였다. 제안된 기법은 다양한 설계변수들의 불확실성을 명확하게 고려할 수 있다. 외부안정성에 대한 위험도평가를 위해 개량지반-안벽의 활동, 전도 및 지지력 파괴모드에 대응하는 한계상태함수를 2차 확률변수 개념을 도입하여 명확히 정의하였다. 기본 확률변수와 2차 확률변수로 명확히 표현되는 세 한계상태함수에 대하여 대표적 신뢰성기법인 MVFOSM, FORM 및 MCS를 사용하여 파괴확률을 산정하였다. 해석결과로부터 3가지 방법은 일관된 파괴확률을 제공하고, 지진시 활동 파괴모드가 가장 위험한 파괴모드로 밝혀졌다. 또한 동적토압의 위상차를 고려한 신뢰성해석으로부터 위상차 파라메타의 평균과 분산이 파괴확률에 큰 영향을 미치는 것으로 판명되었다.