• 제목/요약/키워드: impact bending test

검색결과 160건 처리시간 0.026초

CFRP적층재의 잔류피로굽힘강도애 미치는 열습의 영향 (Influence of Hygrothermals on Residual Fatigue Bending Strength of CFRP Composite Laminates)

  • 박노식;임광희;양인영
    • 한국안전학회지
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    • 제12권2호
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    • pp.27-36
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    • 1997
  • This paper evaluates the static and fatigue bending strengths of CFRP (carbon fiber reinforced plastic) laminates subjected to hygrothermals. The specimens which had different stacking composition, orthotropic and quasi-isotropic laminated plates, were prepared for this experiment. A steel ball launched by the air gun collides against CFRP laminates to generate impact damages, and the 3-point fatigue bending test is carried out by using the impacted laminates to investigate the influence of hygrothermals on the effect on the residual bending fatigue strength of CFRP laminates.

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${Al_2}}O_3}-TiO_2$ 플라즈마 코팅된 유리의 입자충격에 의한 손상기구 (Damage mechanism of particle impact in a ${Al_2}}O_3}-TiO_2$plasma coated soda-lime glass)

  • 서창민;이문환;홍대영
    • 대한기계학회논문집A
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    • 제22권3호
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    • pp.529-539
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    • 1998
  • A quantitative study of impact damage of ${Al_2}}O_3}-TiO_2$ plasma coated soda-lime glasses was carried out and compared with that of the uncoated smooth glass specimen. The shape of cracks by the impact of steel ball was observed by stereo-microscope and the decrease of the bending strength due to the impact of steel ball was measured through the 4-point bending test. At the low velocity, cone cracks were occurred. As the impact velocity increases, initial lateral cracks were propagated on the slanting surface of a cone crack, and radial cracks were generated at the crushed site. When the impact velocity of steel ball exceeds the critical velocity, the contact site of specimen was crushed due to plastic deformation and then radial and lateral cracks were largely grown. Crack length of coated specimens was smaller than that of uncoated smooth specimen due to the effect of coating layer on the substrate surface. According to impact velocity, the bending strength of coated specimens had no significant difference, compared with that of the uncoated smooth specimen. But this represents that the bending strength of coated specimens was increased, considering the effect of sand blasting damage which was performed to increase the adhesion force of coating layer.

보행자보호 Lower Legform 충격의 해석 대 시험 상관성 개선에 관한 연구 (A Study on the Correlation Improvement between FEA and Test for a Pedestrian Lower Legform Impact)

  • 박동규
    • 한국산학기술학회논문지
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    • 제12권4호
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    • pp.1515-1522
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    • 2011
  • 본 논문은 자동차 보행자보호 안전 항목 중 범퍼부에 해당하는 Lower Legform Impactor 충격에 대한 비선형 유한요소해석 결과와 보행자보호 충격 시험 결과와의 비교 및 정도 향상을 위한 해석적인 기법을 제시하였다. 유럽에서는 현재 법규로 평가되고 있는 범퍼부 보행자보호는 국내에서도 2013년부터 법규로 적용되어진다. 본 연구는 범퍼부 Lower Legform Impactor 충격을 위한 해석 시험의 상관성 확보를 위하여 굽힘각 저감용 스티프너의 단품 압축 시험을 통해 얻어진 힘 대 변위 커브의 분석을 통하여 해석 정도 확보를 위한 최적 모델링 방법을 찾아내고, 변위 측정 센서를 부착한 실차 시험과 해석 결과와의 변위값 및 거동간의 편차를 비교 분석하여 범퍼 보행자보호 해석의 정도성 확보를 위한 해석 기법을 제시하였다.

BGA Type 유.무연 솔더의 기계적 충격에 대한 보드레벨 신뢰성 평가 (Experimental and Numerical Study on Board Level Impact Test of SnPb and SnAgCu BGA Assembly Packaging)

  • 임지연;장동영;안효석
    • 마이크로전자및패키징학회지
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    • 제15권4호
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    • pp.77-86
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    • 2008
  • 본 연구에서는 유연솔더인 63Sn37Pb와 무연 솔더인 95.5Sn4.0Ag0.5Cu와 97Sn2.5Ag0.5Cu BGA(Ball Grid Array) 패키지를 인쇄회로기판(Printed Circuit Board, PCB)에 위치에 따라 장착하고 보드레벨의 낙하시험(Board Level Drop Test)을 실시하여 충격에 대한 유 무연 솔더의 특성을 분석하였고 4점굽힘시험(board Level 4-point Bending Test)을 실시하여 굽힘에 대한 솔더볼의 기계적 저항특성을 분석하였다. 또한 유한요소법(Finite Element Modeling, FEM)을 이용해 낙하시험과 4점굽힘시험에서 솔더 조인트에 미치는 응력과 변형률을 해석하였으며, 시험 설계 시에 솔더 조인트의 응력변화에 영향을 미칠 수 있는 변수를 고려하여 해석하고 결과를 비교 분석하였다. 낙하시험과 4점굽힘시험에서 모두 무연솔더는 유연솔더보다 2배 이상 높은 신뢰성을 보였으며, PCB의 중앙에 위치한 패키지는 외각에 위치한 패키지 보다 매우 낮은 신뢰성을 보였다. 유한요소법을 통해 해석한 결과 최외각 솔더에서 가장 큰 응력이 발생하였고, 솔더의 조성과, 시험설계변수에 의해 응력의 발생 정도가 다름을 나타내었다.

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FCAW 용접부의 인성에 미치는 Root Gap의 영향 (Effect of root gaps on toughness of FCAW weld metal)

  • 한종만;이은배;안성철;한용섭
    • Journal of Welding and Joining
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    • 제9권4호
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    • pp.40-49
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    • 1991
  • Both impact and fracture toughnesses were investigated with root gaps in FCAW weld metals at room temperature and 0.deg.C. The maximum impact value was obtained at the root gap of 16mm for 1G position weld metal, and the impact value of 3G position weld metals also showed the maximum impact value at the root gap of 12mm. However, the fracture toughnes(CTOD)values tend to decrease with increasing root gaps at both temperatures in 1G weld metal. Bending test also showed satisfactory results with all of root gaps investigated. Based on this result, it becomes possible to apply wide root gaps in real projects in both aspects of toughness and bending resistance.

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입자충격에 의한 유리의 손상기구에 관한 실험적 연구 (An Experimental Study on Damage Mechanism of Glass Resulting Frojm Particle Impact)

  • 서창민;신형섭;황병원
    • 대한기계학회논문집A
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    • 제20권6호
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    • pp.1903-1912
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    • 1996
  • A quantitative study of impact damage of a soda-lime glass was carried out. An initiation and a propagation of cracks by the impact of two inds of steel ball was investigated. The fron, side and rear view of cracks were observed by a stereo-microscope. And the lowering of the benidng strength due to the impact of steel balls was examined through the 4-point bending test. A transparent glass is very helpful to understand and analyze the impact damage behavior of another brittle matereial. A deagdram about crack patterns according to the threshold impact velocity was sketched. A ring crack and a cone crack were formed at the low impact velocity. And as the impact velocity was higher, initial lateral crack was generated on the slanting surface of cone crack, and radial cracks were generated from the outermost ring crack. When the impact velocity of steel balls exceed a critical velocity, the contact site of specimens were crushed. According to the propagation of a cone crack, a rapid strength degradation occurred. In the specimen having crushed region, a bending strength was converged to a constant value instead of strength degradation.

Optimization and investigations of low-velocity bending impact of thin-walled beams

  • Hossein Taghipoor;Mahdi Sefidi
    • Steel and Composite Structures
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    • 제50권2호
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    • pp.159-181
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    • 2024
  • In the present study, the effect of geometrical parameters of two different types of aluminum thin-walled structures on energy absorption under three-bending impact loading has been investigated experimentally and numerically. To evaluate the effect of parameters on the specific energy absorption (SEA), initial peak crushing force (IPCF), and the maximum crushing distance (δ), a design of experiment technique (DOE) with response surface method (RSM) was applied. Four different thin-walled structures have been tested under the low-velocity impact, and then they have simulated by ABAQUS software. An acceptable consistency between the numerical and experimental results was obtained. In this study, statistical analysis has been performed on various parameters of three different types of tubes. In the first and the second statistical analysis, the dimensional parameters of the cross-section, the number of holes, and the dimensional parameter of holes were considered as the design variables. The diameter reduction rate and the number of sections with different diameters are related to the third statistical analysis. All design points of the statistical method have been simulated by the finite element package, ABAQUS/Explicit. The final result shows that the height and thickness of tubes were more effective than other geometrical parameters, and despite the fact that the deformations of the cylindrical tubes were around forty percent greater than the rectangular tubes, the top desirability was relevant to the cylindrical tubes with reduced cross-sections.

複合組織鋼의 衝擊破壞特性에 미치는 노치形狀 및 硬度比의 영향 (Effect of notch shape and hardness ratio on characteristics of impact fracture in dual phase steels)

  • 김정규;유승원;김일현
    • 오토저널
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    • 제10권2호
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    • pp.46-53
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    • 1988
  • Effect of Notch Shape and Hardness Ratio on Characteristics of Impact Fracture in Dual Phase Steels. In this study, it is investigated the effect of notch shape and hardness ratio on the characteristics of impact fracture in dual phase steels. The impact test was carried out at the temperature range from -40.deg. C to room temperature with Instrumented Charpy Impact Tester. The main results obtained are as follows; 1, The maximum impact bending strength (.sigma.$_{max}$) increases with the tensile strength. Also, the impact energy depends on .sigma.$_{max}$. 2, In room temperature, the impact energy depends on crack-initiation energy (E$_{i}$) in case of the high hardness ratio (R=3.4), whereas depends on crack-propagation energy (E$_{p}$) in case of the low hardness ratio (R=1.8) and the dependence of crack-initiation energy of the impact characteristics decreases with increasing test temperature. These phenomena are result from the difficulty of cleavage facet formation.ion.ion.

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CFRP 적층쉘의 적층구성 및 곡률 변화에 따른 관통 특성 (Penetration Characteristics of CFRP Laminated shells according to Stacking Sequence and Curvature)

  • 조영재;김영남;양인영
    • 한국정밀공학회지
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    • 제22권2호
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    • pp.164-171
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    • 2005
  • This study aims to examine an effect of stacking sequence and curvature on the penetration characteristic of a composite laminated shell. For the purpose, we manufactured specimens with different stacking sequences and curvatures, and conducted a penetration test using an air-gun. To examine an influence according to stacking sequence, as flat plate and curvature specimen had more plies, their critical penetration energy was higher, Critical penetration energies of specimen A and C with less interfaces somewhat higher than those of B and D with more interfaces. The reason that with less interfaces, critical penetration energy was higher is pre-impact bending stiffness of composite laminated shell with less interfaces was lower than that of laminated shell with more interfaces, but bending stiffness after impact was higher. And it is because interface, the weakest part of the composite laminated shell, was influenced by transverse impact. As curvature increases, critical penetration energy increases linearly. It is because as curvature increases, resistance to in-plane deformation as well as bending deformation increases, which need higher critical penetration energy. Patterns of cracks caused by penetration of composite laminated shells include interlaminar crack, intralaminar crack, and laminar fracture. A 0$^{\circ}$ply laminar had a matrix crack, a 90$^{\circ}$ply laminar had intralaminar crack and laminar fracture, and interface between 0$^{\circ}$and 90$^{\circ}$laminar had a interlaminar crack. We examined crack length and delamination area through a penetration test. For the specimen A and C with 2 interface, the longest circumferential direction crack length and largest delamination area were observed on the first interface from the impact point. For the specimen B and D with 4 interface, the longest crack length and largest delamination area were observed on the third interface from the impact point.

탄화규소 연삭숫돌의 파괴특성 (Fracture Characteristics of Carbonized Silicon Grinding Wheels)

  • 오동석;이병곤
    • 한국안전학회지
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    • 제17권4호
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    • pp.45-51
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    • 2002
  • In this study, the fracture characteristics of carbonized silicon grinding wheels were examined with tensile, compression, impact and bending test. The experiment was performed for the various grinding wheels with grain size #46, #80, and grade H, L, P, and one vitrified bond and one structure No.7. Also the centrifugal fracture rpm of carbonized silicon grinding wheels were measured and compared with the calculated values for the various wheel diameters and thicknesses. The results showed that the fracture tensile strength was $1.5~2.0Kg_f/mm^2$, and it was increased by decreasing grain size and increasing grade. The fracture compression loads were $1,600~3,000Kg_f$, and the inner stress was higher than outer's. And the absorption energy of impact test was 3.3~4.7 J, and it was increased by decreasing grain size but it was not effected by grade. The fracture bending stress was $0.1~0.2Kg_f/mm^2$, and it was increased by decreasing grain size and increasing grade. The centrifugal fracture rpm of carbonized silicon grinding wheel was about 8,500~12,000 and agreed well with the calculated value, and it was increased by decreasing diameter. However, it was almost constant for the reduction of wheel thickness.