• 제목/요약/키워드: Repair material and method

검색결과 350건 처리시간 0.027초

The push-out bond strength of BIOfactor mineral trioxide aggregate, a novel root repair material

  • Akbulut, Makbule Bilge;Bozkurt, Durmus Alperen;Terlemez, Arslan;Akman, Melek
    • Restorative Dentistry and Endodontics
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    • 제44권1호
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    • pp.5.1-5.9
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    • 2019
  • Objectives: The aim of this in vitro study was to evaluate the push-out bond strength of a novel calcium silicate-based root repair material-BIOfactor MTA to root canal dentin in comparison with white MTA-Angelus (Angelus) and Biodentine (Septodont). Materials and Methods: The coronal parts of 12 central incisors were removed and the roots were embedded in acrylic resin blocks. Midroot dentin of each sample was horizontally sectioned into 1.1 mm slices and 3 slices were obtained from each root. Three canal-like standardized holes having 1 mm in diameter were created parallel to the root canal on each dentin slice with a diamond bur. The holes were filled with MTA-Angelus, Biodentine, or BIOfactor MTA. Wet gauze was placed over the specimens and samples were stored in an incubator at $37^{\circ}C$ for 7 days to allow complete setting. Then samples were subjected to the push-out test method using a universal test machine with the loading speed of 1 mm/min. Data was statistically analyzed using Friedman test and post hoc Wilcoxon signed rank test with Bonferroni correction. Results: There were no significant differences among the push-out bond strength values of MTA-Angelus, Biodentine, and BIOfactor MTA (p > 0.017). Most of the specimens exhibited cohesive failure in all groups, with the highest rate found in Biodentine group. Conclusions: Based on the results of this study, MTA-Angelus, Biodentine, and BIOfactor MTA showed similar resistances to the push-out testing.

손상상태를 고려한 부재의 보강설계법 개발 (A Development on Method of Strengthening Design for the Different Status of Damages)

  • 한만엽;이성준
    • 콘크리트학회논문집
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    • 제12권1호
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    • pp.69-77
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    • 2000
  • Recently, many strengthening methods are developed to repair damaged structures, when the original structure is under loading, which causes the difference of initial stresses between original member and bonded material. However, current design method or theory, which mostly depends on ultimately strength design, cannot account the difference of initial stresses between members, and it disregards the reduction of nominal strength. In this study, a new strengthening design theory and the amount of strengthening which can account the difference of initial stresses are developed, and applied to the case when a structure in service is repaired. The results show that the amount of strengthening material depends on the status of damages of structure, and the nominal strength is reduced depending on the degree of damages.

Corrosion Characteristics of Welding Zones Welded with 1.25Cr-0.5 Mo Filler Metal to Forged Steel for Piston Crown Material

  • Jeong, Jae-Hyun;Lee, Sung-Yul;Lee, Myeong-Hoon;Baek, Tae-Sil;Moon, Kyung-Man
    • Corrosion Science and Technology
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    • 제14권2호
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    • pp.54-58
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    • 2015
  • A heavy oil of low quality has been mainly used in the diesel engine of the merchant ship as the oil price has been significantly jumped for several years. Thus, a combustion chamber of the engine has been often exposed to severely corrosive environment more and more because temperature of the exhaust gas of the combustion chamber has been getting higher and higher with increasing of using the heavy oil of low quality. As a result, wear and corrosion of the engine parts such as exhaust valve, piston crown and cylinder head surrounded with combustion chamber are more serious compared to the other parts of the engine. Therefore, an optimum repair welding for these engine parts is very important to prolong their lifetime in a economical point of view. In this study, 1.25Cr-0.5Mo filler metal was welded with SMAW method in the forged steel which would be generally used with piston crown material. And the corrosion properties of weld metal, heat affected and base metal zones were investigated using electrochemical methods such as measurement of corrosion potential, anodic polarization curves, cyclic voltammogram and impedance etc. in 35% $H_2SO_4$ solution. The weld metal and base metal zones exhibited the highest and lowest values of hardness respectively. And, the corrosion resistance of the heat affected and weld metal zones was also increased than that of the base metal zone. Furthermore, it appeared that the corrosive products with red color and local corrosion like as a pitting corrosion were more frequently observed on the surface of the base metal zone compared to the heat affected and weld metal zones. Consequently, it is suggested that the mechanical and corrosion characteristics of the piston crown can be predominantly improved by repair welding method using the 1.25Cr-0.5Mo electrode.

고강도 RC보의 탄소섬유쉬트 보강에 대한 연구 (A Study on Carbon Fiber Sheet Rehabilitation of Reinforced High Strength Concrete Beams)

  • 김종효;곽계환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.450-455
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    • 1997
  • In recent years the research and development about the new material proceeds rapidly and actively in building industry. We are concerned with high-strength concrete as a new material. As the building structure becomes bigger, higher and more specialized, so does the demand of material and member with high strength for building expands greatly. In the future, we will quite need to research repair and rehabilitation to make high strength concrete structural building for our safe. So, I did an study on carbon fiber sheet rehabilitation(CFSR) of reinforced high strength concrete beams. The carbon fiber reinforced plastic(CFRP) bonding method is widely used for reinforcing the existing concrete structure among the various methods. The test results indicate that CFS is very effective for strengthening the damaged beams and controlling deflections of the repaired beams. When carbon fiber sheet rehabilitation of reinforced high strength concrete beams happened diagonal crack, the increase in the number of CFS layer didn't effect the increase in strength of beams. Also, by changing the CFS stick position gave diversified ultimate load in CFSR beams.

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점착형 도막.시트 일체형 방수재를 이용한 비노출용 복합 방수공법에 관한 실험적 연구 (An Experimental Study on the Non-Exposure Composite Waterproofing Method used Adhesion Liquid and Sheet Integrate Waterproofing Material)

  • 김진성;선윤숙;박진상;오상근
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2007년도 춘계학술논문 발표대회
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    • pp.125-128
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    • 2007
  • The problem of water leakage due to damaging waterproof in concrete structure, causes the impediment in a long term and shortened the life span of durability. There are a lot of techniques for repair and reinforcement to improve using environment. However, the improper construction which is unconsidered various environmental conditions, could effect to increase the maintenance expenses. Therefore, this study will be compared and estimated the adhesion liquid and sheet integrate waterproofing material, as analyzing the existing problem. For those result, we would like to arrange the alterative plan for the long durability and user needs of concrete structure.

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보수.보강재로서의 탄소섬유시트 보강섬유의 활용기술 (The Performance and Application of Carbon Fiber Sheet for the Repair and Reinforcement Material)

  • 권영진;장태민;김철호;박득곤;최롱
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1996년도 봄 학술발표회 논문집
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    • pp.418-421
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    • 1996
  • Carbon Fiber Sheet is very attractive for the upgrading damaged reinforced concrete due to its good tensile strength, handabilbity and resistance to corrosion. This paper discusses the applicability of continous carbon fiber sheet for a reinforcement of existeing reinforced concrete structure located in Pusan. Examples of site data and actual concrete rehabilitation project at slab structure related to construction method used carbon fiber sheet will be given.

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물성치의 불확실성을 고려한 층간강도의 최적화 (Optimization of interlaminar strength with uncertainty of material properties)

  • 조맹효;이승윤
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2001년도 추계학술발표대회 논문집
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    • pp.70-73
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    • 2001
  • The layup optimization by genetic algorithm (GA) for the interlaminar strength of laminated composites with free edge is presented. For the calculation of interlaminar stresses of composite laminates with free edges, extended Kantorovich method is applied. In the formulation of GA, repair strategy is adopted for the satisfaction of given constraints. In order to consider the bounded uncertainty of material properties, convex modeling is used. Results of GA optimization with scattered properties are compared with those of optimization with nominal properties. The GA combined with convex modeling can work as a practical tool for maximum interlaminar strength design of laminated composite structures, since uncertainties are always encountered in composite materials and the optimal results can be changed.

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Effect of adhesive application method on repair bond strength of composite

  • Hee Kyeong Oh;Dong Hoon Shin
    • Restorative Dentistry and Endodontics
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    • 제46권3호
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    • pp.32.1-32.10
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    • 2021
  • Objectives: This study aimed to evaluate the effect of the application method of universal adhesives on the shear bond strength (SBS) of repaired composites, applied with different thicknesses. Materials and Methods: The 84 specimens (Filtek Z350 XT) were prepared, stored in distilled water for a week and thermocycled (5,000 cycles, 5℃ to 55℃). They were roughened using 400-grit sandpapers and etched with phosphoric acid. Then, specimens were equally divided into 2 groups; Single Bond Universal (SU) and Prime&Bond Universal (PB). Each group was subdivided into 3 subgroups according to application methods (n = 14); UC: 1 coat + uncuring, 1C: 1 coat + curing, 3C: 3 coats + curing. After storage of the repaired composite for 24 hours, specimens were subjected to the SBS test and the data were statistically analyzed by 2-way analysis of variance and independent t-tests. Specimens were examined with a stereomicroscope to analyze fracture mode and a scanning electron microscope to observe the interface. Results: Adhesive material was a significant factor (p = 0.001). Bond strengths with SU were higher than PB. The highest strength was obtained from the 1C group with SU. Bonding in multiple layers increased adhesive thicknesses, but there was no significant difference in SBS values (p = 0.255). Failure mode was predominantly cohesive in old composites. Conclusions: The application of an adequate bonding system plays an important role in repairing composite resin. SU showed higher SBS than PB and the additional layers increased the adhesive thickness without affecting SBS.

국가등록문화재로 지정된 옛 담장의 정비 양상 (A Study on Structural Maintenance of 'Old Wall' Designated as National Registered Cultural Heritage )

  • 소현수;정명석
    • 한국전통조경학회지
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    • 제41권1호
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    • pp.21-34
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    • 2023
  • 본 연구는 13개 마을 옛 담장의 국가등록문화재 지정 당시 사용된 재료와 축조법을 파악하고, 현장조사를 중심으로 정비에 따른 옛 담장의 구조별 변화 양상을 고찰하였다. 연구의 결과는 다음과 같다. 첫째, 옛 담장은 토석담 10개소와 돌담 5개소로 구성되었으며, 지정 당시 자연석 메쌓기로 막쌓은 돌담은 비슷한 형태를 유지하는 비율이 높았지만, 토석담은 사용한 돌과 줄눈 및 맞댄 면 축조법에 따라서 담장별로 다양하게 변형되었다. 둘째, 옛 담장의 정비로 인해서 변화된 구간을 추출하고 재료의 대체와 첨가, 축조법의 변형 양상을 파악하였다. 지붕부는 내구성과 가격의 효율이 높은 시멘트 기와나 석면 슬레이트로 대체되고, 우수 유입을 막고자 한식 기와에 와구토가 첨가되었다. 벽체부의 자연석은 시공 편의에 따른 발파석, 마름돌, 가공 석재로 대체되고, 보수에 시멘트 블록, 시멘트 벽돌이 사용되었으며, 시멘트 모르타르가 도포되었다. 토석담의 막쌓기가 빗쌓기로 변형되고 찰쌓기는 메쌓기로 바뀌어 경관적, 구조적 문제를 야기하였다. 또한 기초부에 시멘트 모르타르층이 시공되어 자연석 메쌓기로 유도했던 우수의 흐름을 막아버렸다. 셋째, 이러한 정비 양상은 주거공간에 배치된 옛 담장의 속성상 소유주가 일상적 훼손에 대한 비전문적 보수를 반복하고, 문화재 지정으로 인하여 정비를 담당한 수리업체가 지역 재료를 수급하기 어려우며, 옛 담장에 대한 차별성있는 수리시방서가 적용되지 않는 환경에서 기인한다고 판단된다.

보강재로 보수된 균열평판의 파괴역학적 해석(I) (Fracture Mechanics Analysis of Cracked Plate Repaired by Patch (I))

  • 정기현;양원호;조명래
    • 대한기계학회논문집A
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    • 제24권8호
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    • pp.2000-2006
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    • 2000
  • The enhancement of service life of damaged or cracked structures is currently major issue to the researchers and engineers. In order to improve the life of cracked aging aircraft structures, the repair technique which uses adhesively bonded boron/epoxy composite patches is being widely considered as a cost-effective and reliable method. This paper is to study the performance of the bonded composite patch repair of a plate containing an inclined central through-crack. A 3-dimensional finite element method having three layers to the cracked plate, composite patch and adhesive layer, is used to compute the stress intensity factor. In this paper, the reduction of stress intensity factors near the crack-tip are determined to evaluate the effects of various non-dimensional design parameter including composite patch thickness, and material properties of the composite patch and thickness of the adhesive layer, materials of patch etc., and the crack length, Finally, The problem of how to optimize the patch geometric configurations has been discussed.