• Title/Summary/Keyword: Drop impact test

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Mod.9Cr1Mo강에서 발생되는 일시적 취성현상 (Temporal Brittleness of the Mod.9Cr-1Mo Steel)

  • 허성강;구지호;신기삼;;신종호
    • 한국재료학회지
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    • 제21권11호
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    • pp.592-595
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    • 2011
  • It is well known that modified 9Cr-1Mo steel has a low thermal expansion and high thermal conductivity with excellent high temperature properties compared to austenitic stainless steel. For these advantages, the steel is very popular for the boiler tube of thermal power plants. Normalizing is commonly utilized to obtain martensite in this steel, which shows an unusual toughness for martensite. However, some accidents related to this steel have been reported recently, opening the necessity for further study. As a particular behavior of the steel, an abrupt drop of the impact value has been identified upon tempering at 750$^{\circ}C$ for about 1 hour. It is well known that $Fe_3C$ forms during autotempering and turns to $Cr_2C$ at an early stage and then transforms to $Cr_{23}C_6$. In this study, the cause of the abrupt drop of the impact value was investigated with an impact test, microstructural observation, nanodiffraction and phase analyses using instruments such as optical and transmission electron microscopes (TEM) with an extraction carbon replica of the carbides. The analyses revealed that the $M_2C$ that formed when retained for about 1 hour at 750$^{\circ}C$ causes a drastic decrease in the mechanical properties. The sharp drop in mechanical properties, however, disappeared as the $M_2C$ transformed into $M_{23}C_6$ with longer retention.

패드 구조에 따른 Sn-Ag-Cu계 무연 솔더볼 접합부의 기계적 특성평가 (Mechanical Characteristic Evaluation of Sn-Ag-Cu Lead Free Solder Ball Joint on The Pad Geometry)

  • 장임남;박재현;안용식
    • 마이크로전자및패키징학회지
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    • 제17권2호
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    • pp.41-47
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    • 2010
  • PCB와 BGA 패드의 형태가 무연솔더 접합부의 기계적 특성에 미치는 영향을 연구하었다. 현재 BGA/PCB 패드의 형태는 NSMD (Non-Solder Mask Defined)와 SMD (Solder Mask Defined) 두 가지 구조로 형성되어 있다. 본 연구에서는 OSP 도금처리한 무연솔더(Sn-3.0Ag-0.5Cu, Sn-1.2Ag-0.5Cu)의 패드 형태를 NSMD, SMD로 달리하여 낙하충격시험, 굽힘충격시험, 고속전단시험을 통한 솔더 접합부의 기계적 특성을 연구하였다. 낙하충격과 굽힘충격시험의 경우 패드 구조에 따른 솔더볼 접합부의 특성수명은 동일한 경향을 나타내었으며, 솔더접합부의 기계적 특성은 SMD가 NSMD보다 우수하였다. 이 이유는 SMD의 경우 낙하충격 시험과 고속 전단시험 모두 IMC에서 파단이 일어난 반면에 NSMD의 경우 낙하충격 시험 후의 파단면은 패턴을 감싸고 있는 랜드 상단 모서리 부분에서 파단이 일어났기 때문인 것으로 판단된다. 전단시험의 경우에는 NSMD 접합부에서 패드 lift현상이 발생하였다. 따라서 BGA/PCB의 패드구조의 조합은 SMD/SMD > SMD/NSMD > NSMD/SMD > NSMD/NSMD 순으로 기계적 특성 수명이 우수하였다.

판형 복합재료의 충격 손상에 대한 비파괴시험적 고찰 (The Study of Nondestructive Test about Impact Damage of Plate Composite Materials)

  • 나성엽;김재훈;최용규;류백능
    • 한국추진공학회지
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    • 제5권4호
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    • pp.20-30
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    • 2001
  • 본 연구는 적층각 및 적층구성이 다른 판형 복합재료의 충격 손상에 대하여 비파괴시험적 관점에서 고찰하였다. 연구를 위하여 직조 및 단일방향 프리프래그로 만든 두가지 형식의 복합재료에 낙하식 충격을 가한 후 비파괴검사를 수행하였다. 비파괴검사는 $ZnI_2$를 침투한 X-ray 검사 그리고 초음파 C-scan 검사를 수행하였고 결함의 종류에 따라 이들 검사에 대한 검출효과를 비교하였다. 그리고 두가지 형식의 복합재료 시험편에 대하여 충격 에너지별 결함의 발생정도를 비교하였다. 시험결과, 결함의 검출효과에 대하여서는 층간 분리 검출은 초음파 검사가 효과적이고 기지 크랙 및 섬유 파단은 침투제를 적용한 X-ray 검사가 효과적이었다. 그리고 적층각 및 적층구성에 따라 결함의 형상 및 발생정도에 상당한 차이가 있었으며, 충격 에너지가 증가할수록 기지 크랙, 층간 분리, 섬유 파단의 순으로 결함이 발생하였고 그 크기도 대체적으로 증가하는 경향을 보였다.

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섬유 자동 배열에 의한 시로운 3D 복합재의 충격특성 (Impact Properties of New 3D Composites by Fiber Placement Processing)

  • 송승욱;이창훈;송재은;변준형;엄문광
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2004년도 추계학술발표대회 논문집
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    • pp.171-174
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    • 2004
  • In order to improve the damage tolerance of the conventional laminated composites, three­dimensional fiber structures incorporated with stitching yams have been utilized in this study. From the newly developed process termed as TAPIS(TApe Placement Incorporated with Stitching), carbon/epoxy composites have been fabricated. Two-dimensional composites with the same stacking sequence as 3D counterparts have also been fabricated for the property comparison. To examine the damage resistance performance the low speed drop weight impact test has been adopted. For the assessment of damage after the impact loading, specimens were subjected to C-scan nondestructive inspection compression after impact(CAI) were also conducted to evaluate residual compressive strength. Although the damage area of 3D composites was greatly reduced$(30-40\%)$ compared with that of 2D composites, the CAI strength did not show drastic improvement.

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Low velocity impact behavior of shear deficient RC beam strengthened with CFRP strips

  • Anil, Ozgur;Yilmaz, Tolga
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.417-439
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    • 2015
  • Many methods are developed for strengthening of reinforced concrete structural members against the effects of shear. One of the commonly used methods in recent years is turned out to be bonding of fiber reinforced polymers (FRP). Impact loading is one of the important external effects on the reinforced concrete structural members during service period among the others. The determination of magnitude, the excitation time, deformations and stress due to impact loadings are complicated and rarely known. In recent year impact behavior of reinforced concrete members have been researched with experimental studies by using drop-weight method and numerical simulations are done by using finite element method. However the studies on the strengthening of structural members against impact loading are very seldom in the literature. For this reason, in this study impact behavior of shear deficient reinforced concrete beams that are strengthened with carbon fiber reinforced polymers (CFRP) strips are investigated experimentally. Compressive strength of concrete, CFRP strips spacing and impact velocities are taken as the variables in this experimental study. The acceleration due to impact loading is measured from the specimens, while velocities and displacements are calculated from these measured accelerations. RC beams are modeled with ANSYS software. Experimental result and simulations result are compared. Experimental result showed that impact behaviors of shear deficient RC beams are positively affected from the strengthening with CFRP strip. The decrease in the spacing of CFRP strips reduced the acceleration, velocity and displacement values measured from the test specimens.

세라믹 코팅 Al 부스바의 열적·기계적 특성 (Thermal and Mechanical Properties of Ceramic Coated Al Bus Bar)

  • 곽동순;백승명;곽민환
    • 전기학회논문지
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    • 제66권11호
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    • pp.1651-1656
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    • 2017
  • This paper deals with the thermal and mechanical properties of ceramic coating material for bus bars. A ceramic coated samples were prepared for the mechanical properties test. There are two types of samples. One is a square shape and the other is a busbar shape. Each sample was deteriorated for 30 days to compare the thermal and mechanical properties with the non-degraded samples. Two thermal properties tests are TGA and flammability tests, and four mechanical properties tests are drop impact test, cross cut, tensile test, and bend test. The ceramic coating material was never damaged by impact and did not separate from aluminum in the cross cut test. In the tensile test, the breakage of the insulating material did not occur until aluminum fractured, and the breakage of the insulating material did not occur until the maximum load in the bending test. The decomposition temperature (melting point) of the ceramic coating material was higher than that of other epoxy insulators. This ceramic coating material is nonflammable and it has excellent fire stability.

오스테나이트계 304 스테인리스강의 케비테이션 기포 및 고체 입자 동시 충격 손상의 정량적 고찰 (Quantitative Analysis on the Damage of the Austenitic Stainless Steel under the Simultaneous Cavitation Bubble and Solid Particle Collapses)

  • 홍성모;박진주;이민구;이창규
    • 대한금속재료학회지
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    • 제48권10호
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    • pp.893-900
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    • 2010
  • In the present work, the impact loads and their effects on the surface damage under the simultaneous cavitation bubble and solid particle collapses in the sea water have been quantitatively investigated for the austenitic 304 stainless steel by using a vibratory cavitation test device. To do this, angular $SiO_2$ solid particles with an average size of $150{\mu}m$ were dispersed into the test liquid, and the measured impact amplitudes were converted into the impact loads by a steel ball drop test. The maximum impact load was determined to be 28.2 N in the absence of solid particles, but increased to 33.7 N in the presence of solid particles. In addition, the critical impact loads, $L_{crit}$, required to generate pits with sizes greater than $3{\mu}m$ were measured to be 19.6 N and 16.6 N, respectively, for the cavitation bubble collapse and solid particle collapse. As a result of the cavitation erosion test, the incubation time and erosion rate were 1.2 times lower and 1.5 times higher, respectively, by a solid particle collapse compared to those only by the cavitation bubble collapse, indicating a drastic decrease in a resistance to cavitation erosion by the solid particle collapse.

Centrifuge modeling of dynamically penetrating anchors in sand and clay

  • An, Xiaoyu;Wang, Fei;Liang, Chao;Liu, Run
    • Geomechanics and Engineering
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    • 제30권6호
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    • pp.539-549
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    • 2022
  • Accidental anchor drop can cause disturbances to seabed materials and pose significant threats to the safety and serviceability of submarine structures such as pipelines. In this study, a series of anchor drop tests was carried out to investigate the penetration mechanism of a Hall anchor in sand and clay. A special anchor drop apparatus was designed to model the inflight drop of a Hall anchor. Results indicate that Coriolis acceleration was the primary cause of large horizontal offsets in sand, and earth gravity had negligible impact on the lateral movement of dropped anchors. The indued final horizontal offset was shown to increase with the elevated drop height of an anchor, and the existence of water can slow down the landing velocity of an anchor. It is also observed that water conditions had a significant effect on the influence zone caused by anchors. The vertical influence depth was over 5 m, and the influence radius was more than 3 m if the anchor had a drop height of 25 m in dry sand. In comparison, the vertical influence depth and radius reduced to less than 3 m and 2 m, respectively, when the anchor was released from 10 m height and fell into the seabed with a water depth of 15 m. It is also found that the dynamically penetrating anchors could significantly influence the earth pressure in clay. There is a non-linear increase in the measured penetration depth with kinematic energy, and the resulted maximum earth pressure increased dramatically with an increase in kinematic energy. Results from centrifuge model tests in this study provide useful insights into the penetration mechanism of a dropped anchor, which provides valuable data for design and planning of future submarine structures.

드롭 착지 동작 시 탄성 섬유 바지 착용이 충격력과 근육 활동에 미치는 영향 (Effects of Wearing Spandex Pants on Impact Forces and Muscle Activities during Drop Landing)

  • 채원식;강년주
    • 한국운동역학회지
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    • 제19권3호
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    • pp.603-610
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    • 2009
  • 본 연구의 목적은 드롭 착지 동작 시 탄성 섬유 바지 착용이 충격력과 근육 활동에 어떠한 영향을 미치는가를 분석하는데 있다. 10명의 피험자를 대상으로 7쌍의 표면전극을 대퇴직근, 내측광근, 외측광근, 대퇴이두근, 전경골근, 내측비복근, 외측비복근에 부착하고 탄성 바지와 일반 바지를 무작위로 착용한 상태로 플랫폼에서 드롭 랜딩하였고 각 변인에 대해 대응표본 t-검증을 실시하여 통계적 유의차를 밝혔다(p< .05). 착지 구간 동안 전경골근, 대퇴이두근, 내측비복근의 평균적분 근전도치가 일반바지 착용 시 유의하게 감소되었다. 대퇴직근을 제외한 모든 근육에서 최대적분 근전도가 탄성바지 착용 집단이 높게 나타났다. 탄성바지 착용 시 신체 하지분절의 감속과 안정을 유지하기 위한 근육 동원 능력이 높아져 이러한 현상이 발생되어진 것으로 사료된다. 탄성바지 착용이 충격력과 부하율의 감소에 통계적으로 유의한 결과를 발생시키지 못하였다. 본 연구에서 사용된 탄성바지는 피험자의 하지 둘레에 적합하게 제작되어진 바지가 아니기 때문에 탄성과 압축력이 이상적으로 발생되지 못한 것으로 판단된다.

쇄빙선의 내충격 특성에 관한 실험적 연구: 제2부 선체 구조의 충격 굽힘 특성 (Study on Crashworthiness of Icebreaker Steel: Part II Ship Side Structural Behavior Due to Impact Bending)

  • 노명현;이재익;한동화;정준모
    • 한국해양공학회지
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    • 제30권4호
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    • pp.277-286
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    • 2016
  • The first part of this study found the tendencies of the mechanical properties of two arctic structural steels (EH32 and FH32). In the second part, the crashworthiness of stiffened panels scaled down from the side frame structure of a Korean research icebreaker was determined. A procedure for designing the shapes and sizes of the stiffened panels, mass and shape of a drop striker, and a large temperature chamber, and then manufacturing these, is introduced in detail. From impact bending tests for the stiffened panels, the residual permanent deformations and deformation histories over time were captured using manual measurement and video image analyses. Numerical simulations of the impact bending tests were carried out for three different finite element models, which were mainly composed of shell elements, solid elements, and solid elements, with welding beads. It was proven from a comparison of the test results and numerical simulation results that the solid element model with the welding bead consideration approached the test results in terms of the residual deformations as long as the strain rate effect was taken into account.