• 제목/요약/키워드: non-destructive impact testing method

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충격공진시험을 이용한 다양한 공극률을 가진 투수성 아스팔트 혼합물의 동탄성계수 변화 측정에 관한 연구 (Study for Dynamic Modulus Change Measurement of Permeable Asphalt Mixtures with Various Porosity using Non-Destructive Impact Wave)

  • 장병관;양성린;문성호
    • 한국도로학회논문집
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    • 제15권3호
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    • pp.65-74
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    • 2013
  • PURPOSES: This study is to evaluate the dynamic modulus changes of permeable asphalt mixtures by using non-destructive impact testing method and to compare the dynamic moduli of permeable asphalt mixtures through repeated freezing and thawing conditions. METHODS: For the study, non-destructive impact testing method is used in order to obtain dynamic modulus of asphalt specimen and to confirm the change of dynamic modulus before and after freezing and thawing conditions. RESULTS : This study has shown that the dynamic moduli of asphalt concrete specimens consisting of 10%, 15% and 20% porosity are reduced by 11.851%, 1.9564%, 24.593% after freezing and thawing cycles. CONCLUSIONS : Non-destructive impact testing method is very useful and has repeatability. Specimen with 15% porosity has high durability than others.

충격반향기법의 주파수영역 해석을 이용한 구조물 안전진단에 관한 연구 (A Study of Structural Safety Diagnosis using Frequency Domain Analysis of Impact-Echo Method)

  • 안제훈;서백수
    • 터널과지하공간
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    • 제14권1호
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    • pp.35-42
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    • 2004
  • 충격반향기법은 콘크리트 구조물 내부의 결함과 외부 표면 사이에서 반사되어 전락되는 충격생성응력파를 이용한 비파괴적 시험 방법이다. 본 연구에서, 토목 및 건축 구조물의 안전진단을 위하여 충격반향기법을 이용한 비파괴 시험을 수행하였다. 야외 시험 조건은, 터널라이닝 모델에 대한 주파수 영역에서, 모델의 두께 변화를 측정할 수 있는 경우와 모델 내 공동이 있는 경우의 공동의 위치를 파악하는 경우, 그리고 터널라이닝 조건에서의 라이닝 두께 및 공동위치를 파악하는 경우를 시험하였다.

구조물의 안전진단을 위한 충격파의 주파수 영역 탐사에 관한 연구 (A Study of Frequency Domain Analysis of Impact-wave for Detecting of Structural Defects in the Concrete Structure)

  • 김형준;이상철;서백수
    • 산업기술연구
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    • 제25권B호
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    • pp.115-120
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    • 2005
  • Impact seismic wave method is a method for non-destructive testing of concrete structure using of stress wave which is propagate and reflected from internal flaws within concrete structure and external surface. In this study, we performed frequency domain method using impact seismic wave test for safety diagnosis of civil engineering structure. And reflection method which is used for one-dimensional target such as tunnel lining and transmission method are compared with each other.

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Experimental Investigation of Impact-Echo Method for Concrete Slab Thickness Measurement

  • Popovics John S.;Cetrangolo Gonzalo P.;Jackson Nicole D.
    • 비파괴검사학회지
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    • 제26권6호
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    • pp.427-439
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    • 2006
  • Accurate estimates of in place thickness of early age (3 to 28 days after casting) concrete pavements are needed, where a thickness accuracy of ${\pm}6mm$ is desired. The impact-echo method is a standardized non-destructive technique that has been applied for this task. However, the ability of impact-echo to achieve this precision goal is affected by Vp (measured) and ${\beta}$ (assumed) values that are applied in the computation. A deeper understanding of the effects of these parameters on the accuracy of impact-echo should allow the technique to be improved to meet the desired accuracy goal. In this paper, the results of experimental tests carried out on a range of concrete slabs are reported. Impact-echo thickness estimation errors caused by material property gradients and sensor type are identified. Correction factors to the standard analysis method are proposed to correct the identified errors and to increase the accuracy of the standard method. Results show that improved accuracy can be obtained in the field by applying these recommendations with the standard impact-echo method.

충격공진법 및 복합법을 이용한 콘크리트의 강도 평가 기법 (Evaluation Technique of Concrete Strength Using Impact-Resonance and Combined Method)

  • 이광명;이회근;김동수;김지상
    • 콘크리트학회논문집
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    • 제11권4호
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    • pp.157-167
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    • 1999
  • Among several non-destructive testing methods, ultrasonic pulse velocity method and rebound index method have been widely used for the evaluation of concrete strength. However, such methods might not provide accurate estimated results since factors influencing the relationship between strength and either ultrasonic pulse velocity or rebound index are not considered. In this paper, the evaluation method of concrete strength using rod-wave velocity measured by impact-resonance method is proposed. A basic equation is obtained by the linear regression of velocity vs, strength data at specific age and then, aging factor is employed in the equation to consider the difference of the increasing rate between wave velocity and strength. Strengths predicted by the proposed equation agree well with test results. Furthermore, the combined method of rod-wave velocity and rebound index is proposed.

구조물의 안전진단을 위한 충격파의 주파수 영역 탐사에 관한 연구 (A study about frequency domain analysis of impact-wave for detecting of structural defects in the concrete structure)

  • 서백수;김훈;김형준;이상철
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2005년도 공동학술대회 논문집
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    • pp.165-180
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    • 2005
  • 충격탄성파 검사법은 콘크리트 구조물 내부의 결함과 외부 표면 사이에서 반사되어 전파되는 응력파를 이용한 비파괴 시험 방법이다. 본 연구에서 토목 구조물의 안전진단을 위하여 충격탄성파 검사법을 이용한 비파괴 시험을 수행하였다. 이를 위해서 토모그래피 방식을 이용한 투과법, 크로스 홀 방식을 이용한 투과법 그리고 일반적으로 터널라이닝과 같은 1차원 면에서 사용되는 반사법을 적용해 그 결과를 비교${\cdot}$분석하였다.

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Determination of concrete quality with destructive and non-destructive methods

  • Kibar, Hakan;Ozturk, Turgut
    • Computers and Concrete
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    • 제15권3호
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    • pp.473-484
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    • 2015
  • In this study, the availability of Schmidt hammer has been investigated as a reliable method to determine the quality of concrete in irrigation networks. For this purpose, the 28-day compressive strength of concrete material used in the construction irrigation channel of Bafra lowland, which is one of the most fertile plains in Turkey was examined by means of concrete compression and as well as concrete Schmidt hammer in laboratory conditions. This study was carried out on cylindrical samples to represent the everyday concrete party ($150m^3$) produced by contractor firm as 3 replications. The statistical analysis of experimental data showed that the correlations between the values of 28-day compressive strength of Schmidt hammer and the rebound number was found to be 0.98. Differences of the compressive strength between compression testing and Schmidt hammer were statistically significant at P<0.01. In this context, it was found that the reliability of compressive strength of the concrete compression test are excellent, also the reliability of compressive strength of Schmidt hammer are fair in assessing the quality of concrete irrigation channels.

Elastic modulus in large concrete structures by a sequential hypothesis testing procedure applied to impulse method data

  • Antonaci, Paola;Bocca, Pietro G.;Sellone, Fabrizio
    • Structural Engineering and Mechanics
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    • 제26권5호
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    • pp.499-516
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    • 2007
  • An experimental method denoted as Impulse Method is proposed as a cost-effective non-destructive technique for the on-site evaluation of concrete elastic modulus in existing structures: on the basis of Hertz's quasi-static theory of elastic impact and with the aid of a simple portable testing equipment, it makes it possible to collect series of local measurements of the elastic modulus in an easy way and in a very short time. A Hypothesis Testing procedure is developed in order to provide a statistical tool for processing the data collected by means of the Impulse Method and assessing the possible occurrence of significant variations in the elastic modulus without exceeding some prescribed error probabilities. It is based on a particular formulation of the renowned sequential probability ratio test and reveals to be optimal with respect to the error probabilities and the required number of observations, thus further improving the time-effectiveness of the Impulse Method. The results of an experimental investigation on different types of plain concrete prove the validity of the Impulse Method in estimating the unknown value of the elastic modulus and attest the effectiveness of the proposed Hypothesis Testing procedure in identifying significant variations in the elastic modulus.

Deformation Analysis of Impact Damaged Composite Tube Using Thermal Shearography

  • Kim, Koung-Suk;Chang, Ho-Seob;Jang, Su-Ok;Lee, Seung-Seok;Jang, Wan-Sik;Jung, Hyun-Chul
    • 비파괴검사학회지
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    • 제28권3호
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    • pp.302-308
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    • 2008
  • Composite materials are widely used as structural materials for aerospace engineering because of its excellent mechanical properties such as light weight, high stiffness, and low thermal expansion. In driving, impact damage is one of the common but dangerous damages, caused by internal failure of the laminas interface which is not detected by in the surface. Many techniques to detect defects or delaminate between laminates have been reported. Shearography is a kind of laser speckle pattern interferometry with the advantages of non-destructive, non-contact, high resolution and displacement slope measurement. In this paper, the shearography is used to evaluate non-destructively impact damaged surface of the composite material and a measuring method using shearography for the thermal deformation of a impact damaged composite material is discussed. The basic principles of the technique are also described briefly.

Size Estimation of Concrete Structures Using the Impact Echo Method

  • Hong, Seong-Uk;Yoon, Sang-Ki;Lee, Yong-Taeg;Kim, Seung-Hun
    • Architectural research
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    • 제22권1호
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    • pp.23-31
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    • 2020
  • This study aims to verify a method for accurately estimating the sizes of the column, slab, and beam members of concrete structures using the impact echo method, which is a nondestructive testing method. The concrete specimens are designed and fabricated with six single-layer frame specimens composed of columns, slabs, and beam members based on three strengths of 24, 30, and 40 MPa. To estimate the sizes of the members according to the member types of concrete structures, the experiment was performed using the impact echo method. As a result of estimating the sizes of the concrete column members using the impact echo method, the error rate is 2.9%. As a result of estimating the depth of the concrete beam members, the error rate is 9.7%. And, as a result of estimating the thickness of the concrete slab members, the error rate is 2.4%. These results confirmed that quality control of the members of concrete structures is possible by estimating their sizes using a non-destructive testing method.