• 제목/요약/키워드: Drop impact

검색결과 524건 처리시간 0.022초

유체-구조 상호 간섭을 고려한 쐐기 슬래밍에 대한 실험적 연구 (Experimental Study on Wedge Slamming Considering Fluid-Structure Interaction)

  • 안강수;권순홍
    • 한국해양공학회지
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    • 제31권1호
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    • pp.22-27
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    • 2017
  • This paper presents the results of an experimental study on the wedge slamming impact problem, including the fluid-structure interaction. A free drop test was performed to estimate the hydroelasticity. Three wedges were fabricated of 5 mm thick steel plate. The deadrise angles were $15^{\circ}$, $20^{\circ}$, and $25^{\circ}$. Plate thicknesses of 2 mm and 3 mm were used to determine the effect of the structural rigidity. The drop heights were 25 cm, 50 cm, 75 cm, and 100 cm. The pressure on a rigid part of the wedge and strain of the elastic plate were measured at four different locations. The pressure was compared using the Wagner theory and generalized Wagner theory.

CD-RW Drive의 낙하충격 손상평가 (Damage Evaluation of CD-RW Drive by Drop Test and Simulation)

  • 우재철;윤기원;석기영;김헌영;김상범
    • 대한기계학회논문집A
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    • 제29권1호
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    • pp.81-87
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    • 2005
  • A fracture of hand held device, such as radio, TV and CD-RW drive, mainly occurs due to drop situation. For CD-RW drive, the need of high reading/writing speed in conjunction with low price accelerates the fracture of the device. Computer simulation can reduce the period of development and enhance impact characteristic of device. In this study, the detailed finite element model of CD-RW drive was developed to predict the damage under drop conditions. Material property for shock absorbing damper was obtained from tensile test of raw material. A MOONEY-RIVLIN type rubber in LS-DYNA was used as the material model of damper. To assess the reliability of the developed model, drop test at 200G-2msec and 150G-10msec condition was conducted and acceleration at pick-up was compared.

시스템 에어컨 실외기 포장품의 낙하충격해석 및 시험적 검증 (Drop Impact Analysis of Outside Cooling Unit Package of System Air-Conditioner and Experimental Verification)

  • 김형석;이부윤;이상훈
    • 한국산학기술학회논문지
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    • 제19권4호
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    • pp.111-116
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    • 2018
  • 본 논문은 시스템 에어컨 실외기 포장품의 낙하충격해석 및 시험검증을 수행한 내용을 다룬다. 포장은 낙하충격으로 부터 제품을 보호할 수 있도록 충격에너지를 흡수할 수 있는 완충재질과 이를 제품에 고정하기 위한 부재로 구성되는데 작은 부피로 충분한 완충성능을 발휘하는 포장 설계를 위해서는 충격 시 제품에 가해지는 충격가속도 등을 정확히 평가하는 것이 필수적이다. 본 논문에서는 외연적 시간적분을 활용하는 유한요소해석 기법을 활용하여 실외기 포장품의 낙하충격해석을 수행하였다. 정확한 해석을 위한 해석모델 구축, 재료 시험을 통한 데이터 획득 및 재료 모델의 선정, 신뢰성 있는 해석 데이터 확보를 위한 계측 센서의 모델링 등이 수행되었으며 이렇게 구해진 해석데이터와 시험으로 구해진 가속도 및 변형률 시간이력을 비교하였다. 해석모델에 반영된 감쇄계수 등의 오차로 인하여 대체로 해석결과가 시험 결과에 비해 충격 가속도 및 변형률을 크게 예측하고 있으나 전체적인 데이터의 경향과 낙하 방향의 충격가속도는 정확하게 계산되었다. 이에 본 연구에 사용된 모델 및 해석기법을 에어컨 실외기 포장 설계에 활용할 수 있음을 확인하였다.

강체간의 충돌에 의한 충격력에 대한 수학적 정해 및 고준위폐기물 처분용기의 지면 추락낙하사고 시의 충돌충격에의 응용: 적용(수치해석) (Analytical Closed Form Solution for the Impact Load of a Collision between Rigid Bodies and its Application to a Spent Nuclear Fuel Disposal Canister Accidentally Dropped and Impacted on the Ground: Application(Numerical Analysis))

  • 권영주
    • 한국전산구조공학회논문집
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    • 제28권5호
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    • pp.451-457
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    • 2015
  • 본 논문은 강체간의 충돌에 의한 충격력에 대한 수학적 정해 및 고준위폐기물 처분용기의 지면 추락낙하사고 시의 충돌충격에의 응용 논문으로 강체간 충돌에 의해 발생하는 충격력 특히 고준위폐기물 처분용기의 지면 추락낙하 충격사고 시 처분용기에 가해지는 충격력을 구하는 기구동역학 수치해석 연구를 수행하였다. 이를 통하여 고준위폐기물 처분용기의 구조안전성 설계과정에서 요구되는 처분용기 처분 시 사고로 추락낙하 하여 지면과 충돌하는 경우 처분용기에 가해지는 충격력을 수치적으로 구하였다. 수치해석 연구의 주된 내용은 기구동역학해석 상용 컴퓨터코드를 이용하여 처분장에서 운반차량으로 처분용기 운반중 사고로 추락낙하 하여 지면과의 충돌 시에 처분용기에 가해지는 충격력을 구하는 기술적인 방법에 관한 것이며 이를 토대로 지면과 충돌하는 처분용기에 발생하는 충격력을 구하는 문제를 수치적으로 다루었다. 이렇게 수치적으로 구한 충격력을 이론적으로 구한 값들과 비교하였다. 비교결과 이론값들과 잘 일치함을 알 수 있었다.

리플로우 횟수와 표면처리에 따른 Sn-Ag-Cu계 무연 솔더 범프의 고속전단 특성평가 (Effect of Reflow Number and Surface Finish on the High Speed Shear Properties of Sn-Ag-Cu Lead-free Solder Bump)

  • 장임남;박재현;안용식
    • 마이크로전자및패키징학회지
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    • 제16권3호
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    • pp.11-17
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    • 2009
  • 휴대폰 및 휴대기기의 낙하 충격에 대한 관심이 증가되고 있는 상황에서 솔더 볼 접합부의 낙하 충격특성은 패드의 종류와 리플로우 횟수에 영향을 받게 되어 이에 따른 신뢰성 평가가 요구된다. 이와 관련한 평 가법으로 일반적으로는 JEDEC에서 제정한 낙하충격 시험법을 사용하고 있으나 이 방법은 고 비용과 장시간이 소모되는 문제가 있어 본 연구에서는 낙하충격 특성을 간접적으로 평가하는 시험항목인 고속 전단시험을 실시하여 리플로우 횟수에 의해 성장하는 금속간 화합물 층과 OSP(Organic Solderability Preservative), ENIG(Electroless Nickel Immersion Gold) 및 ENEPIG(Electroless Nickel Electroless Palladium Immersion Gold) 등 표면처리에 따른 고속 전단특성을 비교, 분석하였다. 그 결과 리플로우 횟수가 증가함에 따라 IMC 층의 성장으로 고속 전단강도와 충격 에너지 값은 점차 감소하였다. 리플로우 횟수가 1회일 때는 ENEPIG, ENIG, OSP 순으로 고속 전단강도와 충격 에너지 값이 높았고 8회일 때는 ENEPIG, OSP, ENIG 순으로 충격 에너지 값이 높게 측정되었다.

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Porous concrete with optimum fine aggregate and fibre for improved strength

  • Karanth, Savithri S.;Kumar, U. Lohith;Danigond, Naveen
    • Advances in concrete construction
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    • 제8권4호
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    • pp.305-309
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    • 2019
  • Pervious concrete pavements are the need of the day to avoid urban flooding and to facilitate ground water recharge. However, the strength of pervious or porous concrete is considerably less compared to conventional concrete. In this experimental investigation, an effort is made to improve the strength of pervious concrete by adopting fibres and a small amount of fine aggregate. A porous concrete with cement to aggregate ratio of 1:5 and a water-powder ratio of 0.4 is adopted. 30% of the cement is replaced by cementitious material ground granulated blast furnace slag (GGBS) for better strength and workability. Recron fibres at a dosage of 0.5, 1.0 and 1.5% by weight of cement were included to improve the impact strength. Since concrete pavements are subjected to impact loads, the impact strength was also calculated by "Drop ball method" in addition to compressive strength. The effect of fine aggregate and recron fibres on workability, porosity, compressive and impact strength was studied. The investigations have shown that 20% inclusion of fine aggregate and 1.5% recron fibres by weight of cement give better strength with an acceptable range of porosity.

Investigating the deflection of GLARE and CARALL laminates under low-velocity impact test, experimentally and FEM simulation

  • Meisam Mohammadi;Mohammad Javad Ramezani
    • Steel and Composite Structures
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    • 제47권3호
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    • pp.395-403
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    • 2023
  • The main objective of this article is to investigate the response of different fiber metal laminates subjected to low velocity impact experimentally and numerically via finite element method (FEM). Hence, two different fiber metal laminate (FML) samples (GLARE/CARALL) are made of 7075-T6 aluminum sheets and polymeric composites reinforced by E-glass/carbon fibers. In order to study the responses to the low velocity impacts, samples are tested by drop weight machine. The projectiles are released from 1- and 1.5-meters height were the speed reaches to 4.42 and5.42 meter per second and the impact energies are measured as 6.7 and 10 Joules. In addition to experimental study, finite element simulation is done and results are compared. Finally, a detailed study on the maximum deflection, delamination and damages in laminates and geometry's effect of projectiles on the laminate response is done. Results show that maximum deflection caused by spherical projectile for GLARE samples is more apparent in comparison with the CARALL samples. Moreover, the maximum deflection of GLARE samples subjected to spherical projectile with 6.7 Joules impact energy, 127% increases in comparison with the CARALL samples in spite of different total thickness.

Experimental investigation of impact behaviour of shear deficient RC beam to column connection

  • Murat, Aras;Tolga, Yilmaz;Ozlem, Caliskan;Ozgur, Anil;R. Tugrul, Erdem;Turgut, Kaya
    • Structural Engineering and Mechanics
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    • 제84권5호
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    • pp.619-632
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    • 2022
  • Reinforced concrete (RC) structures may be subjected to sudden dynamic impact loads such as explosions occurring for different reasons, the collision of masses driven by rockfall, flood, landslide, and avalanche effect structural members, the crash of vehicles to the highway and seaway structures. Many analytical, numerical, and experimental studies focused on the behavior of RC structural elements such as columns, beams, and slabs under sudden dynamic impact loads. However, there is no comprehensive study on the behavior of the RC column-beam connections under the effect of sudden dynamic impact loads. For this purpose, an experimental study was performed to investigate the behavior of RC column-beam connections under the effect of low-velocity impact loads. Sixteen RC beam-column connections with a scale of 1/3 were manufactured and tested under impact load using the drop-weight test setup. The concrete compressive strength, shear reinforcement spacing in the beam, and input impact energy applied to test specimens were taken as experimental variables. The time histories of impact load acting on test specimens, accelerations, and displacements measured from the test specimens were recorded in experiments. Besides, shear and bending crack widths were measured. The effect of experimental variables on the impact behavior of RC beam-column connections has been determined and interpreted in detail. Besides, a finite element model has been established for verification and comparison of the experimental results by using ABAQUS software. It has been demonstrated that concrete strength, shear reinforcement ratio, and impact energy significantly affect the impact behavior of RC column-beam connections.

모듈타입 충격흡수장치를 위한 재료실험 (Material Tests for Module Type Crash Cushion)

  • 고만기;김기동;성정곤;김진만
    • 한국도로학회논문집
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    • 제10권1호
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    • pp.87-95
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    • 2008
  • 형상이 일정하지 않은 구조에 충돌하는 차량의 탑승자 안전을 확보하기 위해서 그 구조물의 앞에 공간이 허용하는 한도의 깊이만큼 충격을 흡수하는 재료로 만든 모듈을 쌓아두는 방법을 생각할 수 있다. 충격흡수모듈로 사용되기 위해서는 재료가 충분한 에너지 흡수능력을 가져야 하고 동시에 탑승자의 안전을 확보할 수 있어야 한다. 본 논문에서는 에너지 흡수능력과 더불어 탑승자의 안전을 보장하기 위하여 충격흡수재료가 가져야 할 조건을 설명하고 auard-Guard 시스템 모듈, 샌드백, 재활용 타이어, 지오컨테이너, 지오셀 그리고 EPS 블록에 대한 정적압축실험을 실시하여 그 결과를 분석하였다. 이로부터 $30kg/m^{3}$의 밀도를 갖는 EPS 블록이 쿠션모듈로 사용되기 적합한 재료임을 보였다. 한편 시속 35.6km/h까지의 충돌조건으로 Drop Test를 실시하여 EPS블록의 정적특성과 동적특성간 큰 차이가 없음을 보여 주었으며 쿠션모듈로서의 성질을 개선시키기 위한 방안으로 EPS 블록에 공극을 두는 방안을 제안하고 공극이 있는 EPS블록에 대하여 Drop Test를 실시하여 EPS 블록을 이용한 충격흡수시설의 설계에 필요한 재료적 특성치를 제시하였다.

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Investigation of lateral impact behavior of RC columns

  • Anil, Ozgur;Erdem, R. Tugrul;Tokgoz, Merve Nilay
    • Computers and Concrete
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    • 제22권1호
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    • pp.123-132
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    • 2018
  • Reinforced concrete (RC) columns which are the main vertical structural members are exposed to several static and dynamic effects such as earthquake and wind. However, impact loading that is sudden impulsive dynamic one is the most effective loading type acting on the RC columns. Impact load is a kind of impulsive dynamic load which is ignored in the design process of RC columns like other structural members. The behavior of reinforced concrete columns under impact loading is an area of research that is still not well understood; however, work in this area continues to be motivated by a broad range of applications. Examples include reinforced concrete structures designed to resist accidental loading scenarios such as falling rock impact; vehicle or ship collisions with buildings, bridges, or offshore facilities; and structures that are used in high-threat or high-hazard applications, such as military fortification structures or nuclear facilities. In this study, free weight falling test setup is developed to investigate the behavior effects on RC columns under impact loading. For this purpose, eight RC column test specimens with 1/3 scale are manufactured. While drop height and mass of the striker are constant, application point of impact loading, stirrup spacing and concrete compression strength are the experimental variables. The time-history of the impact force, the accelerations of two points and the displacement of columns were measured. The crack patterns of RC columns are also observed. In the light of experimental results, low-velocity impact behavior of RC columns were determined and interpreted. Besides, the finite element models of RC columns are generated using ABAQUS software. It is found out that proposed finite element model could be used for evaluation of dynamic responses of RC columns subjected to low-velocity impact load.