• 제목/요약/키워드: low-velocity impact damage

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복합재료 만든 두꺼운 압력용기의 저속충격에 관한 연구 (Low-velocity Impact Damage of a Thick Pressure vessel)

  • 김형원
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2000년도 추계학술발표대회 논문집
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    • pp.92-97
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    • 2000
  • 저속 충격을 받은 복합재로 만들어진 두꺼운 압력용기의 파괴모드와 손상 상태에 대하여 조사하여 이를 정량적으로 나타내는 것이 본 연구의 관심이다. 본 논문에 사용된 시편은 압력용기의 중앙을 길이 305mm로 잘른 원통형 ring모양이다. 충격자는 직경이 25.4mm와 12.7mm인 반구형 2종류와 모서리의 직경이 1mm인 원추형 1종류로 무게는 3.9kg이며 자유낙하 높이는 20mm에서 200mm로 종류에 따라 간격을 달리했다. 실험 장치로는 실린더가 충격에 흔들리지 않도록 고정하는 받침대와 자유낙하 하는 impactor 이며 impactor의 윗면에 한 개의 가속도 게이지를 설치했으며 밑면에 90도 간격으로 4군에 스트레인 게이지를 붙여 충격에너지, 최대 충격력, contact radius를 측정하고 시험후 시편은 방사선 촬영을 하여 충격자의 종류에 따라 손상의 정도가 어떻게 다른지를 파악했다. Herzian이론을 사용하여 contact radius를 구하고 측정된 자료와 비교 검토하였다. Contact radius 값은 충격자의 직경이 클수록 큰 것을 알수 있고 실험치 값은 이론치 값 보다 큰데 이는 실제 연소관의 기계적 성질의 값이 계산치 보다 적은 것이 원인이다. 직경이 25.4mm인 반구형의 충격자는 직경이 12.7mm인 반구형의 충격자에 비하여 내부에 delamination크기가 컸다. 가속도의 값은 높이에 따라 선형적으로 변하고 충격자의 모양이 둔탁할수록 가속도 값이 커지는 것을 알 수 있다.

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PELE의 경사진 충격에 따른 파괴 메커니즘에 대한 연구 (A Study of Failure Mechanism for Inclined Impact of PELE)

  • 조종현;이영신
    • 한국군사과학기술학회지
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    • 제15권5호
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    • pp.712-719
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    • 2012
  • Penetrator with enhanced lateral effect(PELE) is a newconcept projectile, without dynamite and fuze. It consists of high-density jacket, closed at its rear end and filled with a low-density filling material. To study the explosion characteristics of PELE, by AUTODYN-3D code, the calculation models of projectile body and bullet target are established and the process of penetrating aluminum-2024 alloy target of PELE is simulated, and the scattering characteristics after penetrating aluminum-2024 alloy target of PELE are studied by different initial velocity. The explicit finite element analysis of PELE fragmentation was implemented with stochastic failure criterion in AUTODYN-3D code. As expansion of filling, the fragments were obtained velocities and dispersed laterally and further more enhancing the damage area largely. The number and shape of the PELE fragments were different depend on impact velocity and incidence angle of filling which fragment generated during penetration and lateral dispersion process.

Numerical analysis of stress wave of projectile impact composite laminate

  • Zhangxin Guo;Weijing Niu;Junjie Cui;Gin Boay Chai;Yongcun Li;Xiaodong Wu
    • Structural Engineering and Mechanics
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    • 제87권2호
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    • pp.107-116
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    • 2023
  • The three-dimensional Hashin criterion and user subroutine VUMAT were used to simulate the damage in the composite layer, and the secondary stress criterion was used to simulate the interlayer failure of the cohesive element of the bonding layer and the propagation characteristics under the layer. The results showed that when the shear stress wave (shear wave) propagates on the surface of the laminate, the stress wave attenuation along the fiber strength direction is small, and thus producing a large stress profile. When the compressive stress wave (longitudinal wave) is transmitted between the layers, it is reflected immediately instead of being transmitted immediately. This phenomenon occurs only when the energy has accumulated to a certain degree between the layers. The transmission of longitudinal waves is related to the thickness and the layer orientation. Along the symmetry across the thickness direction, the greater is the stress amplitude along the layer direction. Based on the detailed investigation on the impact on various laminated composites carried out in this paper, the propagation characteristics of stress waves, the damage and the destruction of laminates can be explained from the perspective of stress waves and a reasonable layering sequence of the composite can be designed against damage and failure from low velocity impact.

탄소섬유복합평판에 낙추충격을 가할 때 적층구성에 미치는 영향에 관한 연구 (A Study on the Influence of Stacking Sequences using CFRP Laminate Plates by Falling Weight Impact)

  • 임광희;박노식;양인영
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2000년도 추계학술발표대회 논문집
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    • pp.106-109
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    • 2000
  • Impact tester was build up to evaluate the characterization of CFRP laminate plates under the low velocity impact. The tests were conducted on several laminates of different ply orientation A system was budded for the impact strength of CFRP laminates in consideration of stress wave propagation theory using drop-weight impact tester as one of impact test. Results indicate that absorbed energy of quasi-isotropic specimen having four interfaces is higher than that of orthotropic laminates with two interfaces. Also the damage area was measured with ultrasonic C-scanner on some samples. In the specimens the relationship was linear between damaged area and absorbed energy to some degree. Absorbed energy in the specimen that ply number, interface number and fiber stacking sequences is same but having hybrid is higher than that of orthotropic laminates without hybrid.

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A Study on the Impact Behavior of Bulletproof Materials According to the Combining Method

  • Jihyun Kwon;Euisang Yoo
    • Elastomers and Composites
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    • 제57권4호
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    • pp.157-164
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    • 2022
  • Representative bulletproof materials, such as aramid or ultra-high molecular weight polyethylene(UHMWPE), have excellent strength and modulus in the plane direction but are very vulnerable to forces applied in the thickness direction. This paper reports a study on the effects of reinforcement in the thickness direction when bulletproof composite fabrics are prepared to improve their performance. Aramid and UHMWPE fabrics were combined using the film-bonding, needle-punching, or stitching methods and then subjected to low-velocity projectile and ball-drop impact tests. The results of the low-velocity projectile test indicated that the backface signature(BFS) decreased by up to 29.2% in fabrics obtained via the film-bonding method. However, the weight of the film-bonded fabric increased by approximately 23% compared with that obtained by simple lamination, and the fabric stiffened on account of the binder. Flexibility, light weight for wearability, and excellent bulletproof performance are very important factors in the development of bulletproof materials. When the needle-punching method was used, the BFS increased as the fibers sustained damage by the needle. When the composite fabrics were combined by stitching, no significant difference in weight and thickness was observed, and the BFS showed similar results. When a diagonal stitching pattern was employed, the BFS decreased as the stitching density increased. By contrast, when a diamond stitching pattern was used, the fabric fibers were damaged and the BFS increased as the stitching density increased.

Nano-graphene oxide damping behavior in polycarbonate coated on GFRP

  • Mohammad, Afzali;Yasser, Rostamiyan;Pooya, Esmaeili
    • Structural Engineering and Mechanics
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    • 제84권6호
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    • pp.823-829
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    • 2022
  • This study considered the experimental parameters (Nano-graphene oxide reinforced polycarbonate, GFRP) under low-velocity impact load and vibration analysis. The effect of nano-graphene oxide (NGO) on a polycarbonate-based composite was studied. Two test procedures were adopted to obtain experimental results, vibration analysis. The mechanical tests were performed on damaged and non-damaged specimens to determine the damaging effect on the composite specimens. After the test was carried out, the effect of NGO was measured and damping factors were ascertained experimentally. 0. 2 wt% NGO was determined as the optimum amount that best affected the Vibration Analysis. The experiments revealed that the composite's damping properties were increased by adding the nanoparticles to 0.25 wt% and decreased slightly for the specimens with the highest nanoparticles content. Cyclic sinus loading was applied at a frequency of 3.5 Hz. This paper study the frequency effect of 3.5khz frequency damage on mechanical results. Found that high frequency will worthlessly affect the fatigue life in NGO/polycarbonate composite. In 3.5 Hz frequency, it was chosen to decrease the heat by frequency. Transmission electron microscopy (TEM) micrographs were used to investigate the distribution of NGO on the polycarbonate matrix and revealed a homogeneous mixture of nano-composites and strong bonding between NGO and the polycarbonate which increased the damping properties and decreased vibration. Finally, experimental modal analysis was conducted after the high-velocity impact damage process to investigate the defect on the NGO polycarbonate composites.

취성재료의 손상후 잔류강도 평가 (Evaluation of Residual Strength in Damaged Brittle Materials)

  • 신형섭;오상엽;서창민
    • 대한기계학회논문집A
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    • 제26권5호
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    • pp.932-938
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    • 2002
  • In structural applications, brittle materials such as soda-lime glasses and ceramics are usually subjected to multiaxial stress state. Brittle materials with cracks or damage by foreign object impacts are apt to fracture abruptly from cracks, because of their properities of very high strength and low fracture toughness. But in most cases, the residual strength of structural members with damage has been tested under uniaxial stress condition such as the 4-point bend test. Depending upon the crack pattern developed, the strength under multiaxial stress state might be different from the one under uniaxial. A comparative study was carried out to investigate the influence of stress state on the residual strength evaluation. In comparable tests, the residual strength under biaxial stress state by the ball-on-ring test was greater than that under the uniaxial one by the 4-point bend test, when a small size indendation crack was introduced. In the case that crack having an angle of 90deg. to the applied stress direction, the ratio of biaxial to uniaxial flexure strength was about 1.12. The residual strength was different from crack angles to loading direction when it was evaluated by the 4-point bend test. The ratio of residual strength of 45deg. crack to 90deg. one was about 1.20. In the case of specimen cracked by a spherical impact, it was shown that an overall decrease in flexure strength with increasing impact velocity, and the critical impact velocity for formation of a radial and/or cone crack was about 30m/s. In those cases that relatively large cracks were developed as compared with the case of indented cracks, the ratio of residual strength under biaxial stress state to one uniaxial became small.

Graphite/Epoxy로 만든 두꺼운 관의 저속 충격손상에 관한 연구 (Low-velocity Impact Damage of a Thick Graphite/Epoxy Case)

  • 김형원;윤영주;나성엽
    • 한국추진공학회지
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    • 제4권2호
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    • pp.31-38
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    • 2000
  • 복합재로 만들어진 압력용기에 대해 작업 중 발생하는 손상의 크기나 상태를 파악하는 것이 본 연구의 관심이다. 충격자는 직경이 25.4mm와 12.7mm인 반구형 2종류와 모서리의 직경이 15mm인 원추형 1종류로 각각 무게가 다르며 떨어뜨리는 자유낙하 높이는 120mm에서 700mm로 종류에 따라 간격을 달리했다. 실험 장치로는 Dynatup 8250을 사용했으며 충격에너지, 최대충격력, 충격변위, contact radius를 측정하고 시험 후 시편은 방사선 촬영을 하여 충격자의 종류에 따라 손상의 정도가 어떻게 다른지를 파악했다. 직경이 25.4mmm인 반구형의 충격자는 직경이 12.7mm인 반구형의 충격자에 비하여 표면의 손상은 적었으나 내부에 delamination크기가 컸다. Contact radius와 최대충격력과의 관계는 실험치와 이론치가 잘 일치했으나 충격에너지와 최대충격력과의 관계는 실험치와 이론치의 차이가 있었다.

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Degradation of roller compacted concrete subjected to low-velocity fatigue impacts and salt spray cycles

  • Gao, Longxin;Lai, Yong;Zhang, Huigui;Zhang, Jingsong;Zhang, Wuman
    • Advances in concrete construction
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    • 제12권5호
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    • pp.411-418
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    • 2021
  • Roller compacted concrete (RCC) used in the island reef airport runway will be subjected to the coupling actions of the fatigue impacts and the salt spray cycles, which will accelerate the deterioration of runway concrete and even threaten the flight safety. A cyclic impact testing machine and a climatic chamber were used to simulate the low-velocity fatigue impact and the salt spray cycles, respectively. The physical properties, the microstructures and the porosity of RCC were investigated. The results show the flexural strength firstly increases and then decreases with the increase of the fatigue impacts and the salt spray cycles. However, the decrease in the flexural strength is significantly earlier than the compressive strength of RCC only subjected to the salt spray cycles. The chlorine, sulfur and magnesium elements significantly increase in the pores of RCC subjected to 30000 fatigue impacts and 300 salt spray cycles, which causes the decrease in the porosity of RCC. The coupling effects of the fatigue impacts and the salt spray cycles in the later period accelerates the deterioration of RCC.

저속충격 하에서 CFRP 복합적층판의 낙추 충격특성과 파괴기구 (Fracture Mechanism and Characterization of Falling Weight Impact in CF/Epoxy Composite Plates Under Law-Velocity Impact)

  • 임광희;박노식;김영남;김선규;심재기;양인영
    • Composites Research
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    • 제17권4호
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    • pp.53-60
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    • 2004
  • 본 연구에서는 1차원 파동방정식을 적용한 낙추충격시험 시스템을 제작하여 CFRP 적층판의 충격흡수특성 및 충격 강도평가를 하였으며 그 결과가 유효함을 보였다. 충격흡수에너지에 대해서는 충격에너지가 대략 6.8J이상에서는 동일한 T300 섬유와 적층배향으로 구성된 직교이방성 시험편이 의사등방성(quasi-isotropic)보다 높게 나타났으나 T700 섬유의 경우에는 크게 차이가 나타나지 않았다. 또한 동일한 T300 섬유와 적층수로 구성된 시험편이 T700섬유로 된 시험편보다 높게 나타났으나 T700 섬유의 의사등방성 시험편의 경우에는 크게 차이가 나타나지 않았다. 초음파 C-스캐너를 이용하여 내부손상영역을 관찰하여 시험편의 손상면적과 흡수에너지의 상관관계를 평가하였다. 또한 저속충격손상으로 인한 파면을 파괴메카니즘을 규명하기 위해 주사전자현미경으로 관찰하였다.