• 제목/요약/키워드: push out test

검색결과 206건 처리시간 0.029초

Bond-slip behavior of reactive powder concrete-filled square steel tube

  • Qiuwei, Wang;Lu, Wang;Hang, Zhao
    • Steel and Composite Structures
    • /
    • 제45권6호
    • /
    • pp.819-830
    • /
    • 2022
  • This paper presented an experimental study of the bond-slip behavior of reactive powder concrete (RPC)-filled square steel tube. A total of 18 short composite specimens were designed forstatic push-out test, and information on their failure patterns, load-slip behavior and bond strength was presented. The effects of width-to-thickness ratio, height-to-width ratio and the compressive strength of RPC on the bond behavior were discussed. The experimental results show that:(1) the push-out specimens remain intact and no visible local buckling appears on the steel tube, and the interfacial scratches are even more pronounced at the internal steel tube of loading end; (2) the bond load-slip curves with different width-to-thickness ratios can be divided into two types, and the main difference is whether the curves have a drop in load with increasing slip; (3) the bond strength decreases with the increase of the width-to-thickness ratio and height-width ratio, while the influence of RPC strength is not consistent; (4) the slippage has no definite correlation with bond strength and the influence of designed parameters on slippage is not evident. On the basis of the above analysis, the expressions of interface friction stress and mechanical interaction stress are determined by neglecting chemical adhesive force, and the calculation model of bond strength for RPC filled in square steel tube specimens is proposed. The theoretical results agree well with the experimental data.

Nonlinear numerical model of headed shear stud anchors for composite open web steel joists

  • Yanez, Sergio J.;Dinehart, David W.;Pina, Juan Carlos;Guzman, Carlos Felipe
    • Steel and Composite Structures
    • /
    • 제44권4호
    • /
    • pp.545-555
    • /
    • 2022
  • Empirical relationships that capture the nonlinear behavior of headed steel shear stud anchors have been derived from standard push out tests, where the specimens are comprised of large wide flanged steel sections attached to flat concrete slabs via the anchors. However, many composite systems used in practice utilize much smaller steel members and/or steel decking as part of the slab system. Composite open web steel joist systems generally include both of these elements and consequently the nonlinear performance ofthe anchor is not accurately represented by existing models. In this paper, a new empirical relation is presented for open web steel joist systems based on experimental results from a modified push out test that more realistically represent a composite open web steel joist system. The methodology for obtaining the proposed nonlinear function where the response of the system is characterized by two parameters(α and β) is presented. The two-step process for obtaining the two parameters is described and the empirical relation is calibrated with the experimental data. In comparison with existing expressions, the new proposal herein more accurately predicts the high initialstiffness of the system and overall nonlinear system performance.

초간편 강합성 바닥판 신형식 전단연결재의 전단내력 평가 (An Evaluation on the Shear Strength of New Type Shear Connectors for a Simple Steel-Concrete Composite Deck)

  • 윤기용;김상섭;한득천
    • 한국강구조학회 논문집
    • /
    • 제20권4호
    • /
    • pp.519-528
    • /
    • 2008
  • 초간편 강합성 바닥판은 H형강을 거더로 활용하면서 교량가설시 H형강의 횡-비틀림 좌굴을 방지하고 공기를 단축시키기 위하여 개발하였다. 또한 초간편 강합성 바닥판과 H형강 거더의 합성거동을 확보하기 위하여 사용되는 전단연결재를 초간편 강합성 바닥판의 강판과 H형강 거더의 연결방식에 따라 연결볼트를 길게 뽑아 스터드를 대체하여 전단연결재로 사용하는 방식과 유공I형강을 전단연결재로 활용하는 방식으로 개발하였다. 본 연구에서는 이렇게 개발한 신형식 전단연결재에 대한 전단내력 평가를 위하여 Push-Out 실험을 실시하고, 기존 전단연결재의 전단내력 평가식과 비교 분석하였다. Push-Out 실험을 통하여 연결볼트는 스터드와 같은 거동을 하는 것으로 확인하였으며, 도로교 설계기준의 전단내력 평가식은 지름이 큰 연결볼트의 전단내력을 과대평가하는 것으로 나타났다. 용접량의 변화에 따른 유공I형강의 Push-Out 실험에서는 용접량이 적은 경우에는 용접부의 전단내력이 지배하였으나, 용접량이 일정정도 이상인 경우에는 일정한 전단내력을 발휘하는 것으로 나타났다.

Effect of antioxidants on push-out bond strength of hydrogen peroxide treated glass fiber posts bonded with two types of resin cement

  • Khoroushi, Maryam;Mazaheri, Hamid;Tarighi, Pardis;Samimi, Pouran;Khalighinejad, Navid
    • Restorative Dentistry and Endodontics
    • /
    • 제39권4호
    • /
    • pp.303-309
    • /
    • 2014
  • Objectives: Hydrogen peroxide ($H_2O_2$) surface treatment of fiber posts has been reported to increase bond strength of fiber posts to resin cements. However, residual oxygen radicals might jeopardize the bonding procedure. This study examined the effect of three antioxidant agents on the bond strength of fiber posts to conventional and self-adhesive resin cements. Materials and Methods: Post spaces were prepared in forty human maxillary second premolars. Posts were divided into five groups of 8 each: G1 (control), no pre-treatment; G2, 10% $H_2O_2$ pre-treatment; G3, G4 and G5. After $H_2O_2$ application, Hesperidin (HES), Sodium Ascorbate (SA) or Rosmarinic acid (RA) was applied on each group respectively. In each group four posts were cemented with Duo-Link conventional resin cement and the others with self-adhesive BisCem cement. Push-out test was performed and data were analyzed using 2-way ANOVA and tukey's post-hoc test (${\alpha}=0.05$). Results: There was a statistically significant interaction between the cement type and post surface treatment on push-out bond strength of fiber posts (p < 0.001, F = 16). Also it was shown that different posts' surface treatments significantly affect the push-out bond strength of fiber posts (p = 0.001). $H_2O_2$ treated posts (G2) and control posts (G1) cemented with Duo-link showed the highest ($15.96{\pm}5.07MPa$) and lowest bond strengths ($6.79{\pm}3.94$) respectively. Conclusions: It was concluded that $H_2O_2$ surface treatment might enhance the bond strength of fiber posts cemented with conventional resin cements. The effect of antioxidants as post's surface treatment agents depends on the characteristics of resin cements used for bonding procedure.

피라미드형 전단연결재의 전단거동 (Shear Behavior of Pyramidal Shear Connectors)

  • 이경동;한상호
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제4권2호
    • /
    • pp.131-137
    • /
    • 2000
  • In order to evaluate the design shear strength of composite slabs with truss-shaped shear connectors(TSC), a series of push-out tests on several types of specimens was carried out. The test results for the two parameters of bearing area and solid angle of the connector were compared to obtain the design shear force of the truss-shaped connectors. The results obtained from this study are as follows: (1) The slip-coefficients of TSC ranges from 0.87 to 3.12(${\times}10^6kgf/cm$). (2) The slip stiffness and the shear strength of TSC with $60.6cm^2$ bearing area are greater than those with $14.6cm^2$. (3) For estimating the allowable shear force of TSC, a design equation that is based on the bearing strength of the connector is suggested. (4) The mean safety factors of the critical force and the ultimate force are 2.38 and 4.62. respectively.

  • PDF

고강도(高强度) 스터드 볼트의 역학적 특성에 관한 연구 (Mechanical Properties of High Strength Shear Connector)

  • 엄철환
    • KIEAE Journal
    • /
    • 제12권5호
    • /
    • pp.93-98
    • /
    • 2012
  • The headed studs those are used extensively for steel-composite construction is specified as SS400 at the current Korean Standard specification considering the welding condition. And the corresponding equation for the shear force calculation is limited for the use of compression strength of concrete below $300kg/cm^2$. However, it is expected that the high strengthening and precast of both steel and concrete due to the necessity of shear connector or other connecting material for the combination of steel and concrete. Therefore, the experimental results obtained during the development process of high strength stud for the connection of high strength concrete and the steel member are reported in this paper. Also the effectiveness of newly developed shear connector using pipe to increase the stiffness of a stud is verified by comparing both the stiffness and the strength with common stud bolt through the welding ability, mechanical characteristics and experimental investigation.

부가적 부식 과정이 단일 접착 과정 레진 시멘트의 접착 강도에 미치는 영향 (EFFECT OF THE ADDITIONAL ETCHING PROCEDURE ON PUSH-OUT BOND STRENGTH OF ONE-STEP RESIN CEMENT)

  • 강순일;박정길;허복;김현철
    • Restorative Dentistry and Endodontics
    • /
    • 제33권5호
    • /
    • pp.443-451
    • /
    • 2008
  • 이 연구의 목적은 단일 접착 과정의 레진 시멘트인 Maxcem을 제조사의 지시대로 사용하는 것과 부가적인 산 부식과정을 추가하여 접착을 시도함에 있어 그 임상적 접착 강도를 알아보고자 하는 것이었다. 치아 우식에 이환되지 않은 120개의 상하악 구치를 사용하여 간접 수복물 제작을 위한 와동을 형성하고 금인레이와 간접복합레진(Synfony) 수복물을 제작하였다. 실험군은 수복물의 종류마다 사용한 시멘트의 종류와 방식에 따라 세 군으로 분류하였다. 최종적으로 102개의 와동 시편에 수복물의 접착을 위해 Maxcem을 사용한 군, 인산으로 부가적인 산부식 후에 Maxcem을 사용한 군, 그리고 대조군으로 다단계 전-산부식 (total-etching) 시멘트인 Variolink II 를 사용하여 접착한 실험군으로 각 군 당 17개씩으로 분류하였다. 자체 제작한 만능시험기로 push-out 접착 강도를 측정하고 와동 접착 표면적으로 나누어 단위 면적당 결합력으로 산출하였다. SPSS 12.0K 프로그램을 사용하여 one-way ANOVA와 95% 신뢰도의 Scheffe's Test로 각 실험군의 접착력를 비교하였다. 이 실험의 조건하에서는 Maxcem을 사용할 때, 간접수복물의 종류에 관계없이, 제조사의 지시 외에 부가적인 산부식 과정은 접착 강도를 감소시키는 역효과를 유발하였으며 더욱 강한 접착력을 필요로 하는 경우는 다단계 접착제를 사용하여 산부식 과정과 접착제 적용, 시멘트 도포 등을 분리하여 사용하는 것이 바람직하다.

Push-out bond strength and dentinal tubule penetration of different root canal sealers used with coated core materials

  • Sungur, Derya Deniz;Purali, Nuhan;Cosgun, Erdal;Calt, Semra
    • Restorative Dentistry and Endodontics
    • /
    • 제41권2호
    • /
    • pp.114-120
    • /
    • 2016
  • Objectives: The aim of this study was to compare the push-out bond strength and dentinal tubule penetration of root canal sealers used with coated core materials and conventional gutta-percha. Materials and Methods: A total of 72 single-rooted human mandibular incisors were instrumented with NiTi rotary files with irrigation of 2.5% NaOCl. The smear layer was removed with 17% ethylenediaminetetraacetic acid (EDTA). Specimens were assigned into four groups according to the obturation system: Group 1, EndoRez (Ultradent Product Inc.); Group 2, Activ GP (Brasseler); Group 3, SmartSeal (DFRP Ltd. Villa Farm); Group 4, AH 26 (Dentsply de Trey)/gutta-percha (GP). For push-out bond strength measurement, two horizontal slices were obtained from each specimen (n = 20). To compare dentinal tubule penetration, remaining 32 roots assigned to 4 groups as above were obturated with 0.1% Rhodamine B labeled sealers. One horizontal slice was obtained from the middle third of each specimen (n = 8) and scanned under confocal laser scanning electron microscope. Tubule penetration area, depth, and percentage were measured. Kruskall-Wallis test was used for statistical analysis. Results: EndoRez showed significantly lower push-out bond strength than the others (p < 0.05). No significant difference was found amongst the groups in terms of percentage of sealer penetration. SmartSeal showed the least penetration than the others (p < 0.05). Conclusions: The bond strength and sealer penetration of resin-and glass ionomer-based sealers used with coated core was not superior to resin-based sealer used with conventional GP. Dentinal tubule penetration has limited effect on bond strength. The use of conventional GP with sealer seems to be sufficient in terms of push-out bond strength.

강섬유 보강 초고성능 콘크리트의 전단 전달 모델 (Shear Transfer Strength Evaluation for Ultra-High Performance Fiber Reinforced Concrete)

  • 이지형;홍성걸
    • 한국공간구조학회논문집
    • /
    • 제15권2호
    • /
    • pp.69-77
    • /
    • 2015
  • Ultra High Performance Fiber Reinforced Concrete (UHPFRC) has a outstanding tensile hardening behaviour after a crack develops, which gives ductility to structures. Existing shear strength model for fiber reinforced concrete is entirely based on crack opening behavior(mode I) which comes from flexural-shear failure, not considering shear-slip behavior(mode II). To find out the mode I and mode II behavior on a crack in UHPFRC simultaneously, maximum shear strength of cracked UHPFRC is investigated from twenty-four push-off test results. The shear stress on a crack is derived as variable of initial crack width and fiber volume ratio. Test results show that shear slippage is proportional to crack opening, which leads to relationship between shear transfer strength and crack width. Based on the test results a hypothesis is proposed for the physical mechanics of shear transfer in UHPFRC by tensile hardening behavior in stead of aggregate interlocking in reinforced concrete. Shear transfer strength based on tensile hardening behavior in UHPFRC is suggested and this suggestion was verified by comparing direct tensile test results and push-off test results.

Shear capacity of stud shear connectors with initial damage: Experiment, FEM model and theoretical formulation

  • Qi, Jianan;Wang, Jingquan;Li, Ming;Chen, Leilei
    • Steel and Composite Structures
    • /
    • 제25권1호
    • /
    • pp.79-92
    • /
    • 2017
  • Initial damage to a stud due to corrosion, fatigue, unexpected overloading, a weld defect or other factors could degrade the shear capacity of the stud. Based on typical push-out tests, a FEM model and theoretical formulations were proposed in this study. Six specimens with the same geometric dimensions were tested to investigate the effect of the damage degree and location on the static behavior and shear capacity of stud shear connectors. The test results indicated that a reduction of up to 36.6% and 62.9% of the section area of the shank could result in a dropping rate of 7.9% and 57.2%, respectively, compared to the standard specimen shear capacity. Numerical analysis was performed to simulate the push-out test and validated against test results. A parametrical study was performed to further investigate the damage degree and location on the shear capacity of studs based on the proposed numerical model. It was demonstrated that the shear capacity was not sensitive to the damage degree when the damage section was located at 0.5d, where d is the shank diameter, from the stud root, even if the stud had a significant reduction in area. Finally, a theoretical formula with a reduction factor K was proposed to consider the reduction of the shear capacity due to the presence of initial damage. Calculating K was accomplished in two ways: a linear relationship and a square relationship with the damage degree corresponding to the shear capacity dominated by the section area and the nominal diameter of the damaged stud. This coefficient was applied using Eurocode 4, AASHTO LRFD (2014) and GB50017-2003 (2003) and compared with the test results found in the literature. It was found that the proposed method produced good predictions of the shear capacity of stud shear connectors with initial damage.