• 제목/요약/키워드: maximum compressive load

검색결과 187건 처리시간 0.029초

편심압축하중을 받는 사각튜브의 최대압괴하중 (Maximum Crippling Load in Eccentrically Compressed rectangular Tubes)

  • 김천욱;한병기;정창현;김지홍
    • 한국자동차공학회논문집
    • /
    • 제7권8호
    • /
    • pp.180-189
    • /
    • 1999
  • This paper describes the collapse characteristics of the rectangular tube under eccentric compressive load. Local buckling stress and maximum crippling load are investigated. A thin-walled tube under load is controlled by local buckling or yielding of material according to the ratio of thickness to width (t/b) of the cross section, and subsequent collapse of the section. The relationship can be divided into three regions : elastic , post-buckling and crippling . the load-displacement relationship is theoretically presented in each region by introducing the stress distribution of the cross section in the loading process. And the maximum load carrying capacity is derived in the closed form as a function of normal stress on the flange and web.

  • PDF

AI 원형 관의 2축 압축 변형특성에 미치는 압축속도의 영향 (The effect of compressive strain rate on biaxial compressive deformation characteristics of Al circular pipe)

  • 원시태;정현진;안희준;조황현;유종근
    • 한국금형공학회:학술대회논문집
    • /
    • 한국금형공학회 2008년도 하계 학술대회
    • /
    • pp.23-26
    • /
    • 2008
  • In order to examine the deformation characteristics of Al circular pipe underthe biaxial compression, the horizontal biaxial compression die for the experiment was manufactured. From this, in the various compressive strain rate (1 mm/min. ${\sim}$ 400 mm/min.)conditions, the circular pipes, which were made by Al materials, were investigated based on the properties change of cross section area, punch load and deformation behavior. The tensile and compressive strains were evaluated from micro Vickers hardness tester. From these results, the punch load and deformation characteristic of Al circular pipes were highly changed in the compressive strain rate about 200 mm/min. The Al circular pipes had the tendency that the punch load decreased with increasing the compressive strain rate. In addition, following as the change of the shape and position of neutral axis due to the deformation proceeding of the circular pipe, the special point of the internal circular pipe at maximum load showed the maximum deformation strain and the maximum measured hardness value. The CAE (computer aided engineering) simulation using Deform-2D program was performed on the circular pipe in order to know and verify the exact compressive deformation behavior. From these results, the experimentally measured results were reasonably in good agreement with the simulation results.

  • PDF

사질토층을 지나 풍화암에 소켓된 매입 PHC말뚝에서 지반의 허용압축지지력 산정도표 및 산정공식 개발에 관한 연구(IV) - 압축정재하시험 및 양방향재하시험 자료 분석을 통한 매입 PHC말뚝의 장기허용압축하중의 실증 성능 검증 - (Study(IV) on the Development of Charts and Formulae Predicting Allowable Axial Bearing Capacity for Prebored PHC Pile Socketed into Weathered Rock through Sandy Soil Layer - Field Verification of Long-term Allowable Compressive Load of PHC Piles by Analyzing Pile Load Test Results -)

  • 이원제;김채민;윤도균;최용규
    • 한국지반공학회논문집
    • /
    • 제35권9호
    • /
    • pp.29-36
    • /
    • 2019
  • 직경 500mm 및 직경 600mm PHC말뚝 A종의 파괴 압축하중($P_n$)은 각각 7.7MN 및 10.6MN으로 계산할 수 있었다. 직경 500mm 및 직경 600mm 매입 PHC말뚝 A종에 대한 압축정재하시험 시 말뚝 두부에 재하된 최대 압축하중은 6.9MN 및 8.8MN으로 측정할 수 있었으며 따라서 이 측정하중은 각각 $P_n$의 90% 및 83% 수준이었다. 직경 500mm 및 직경 600mm PHC말뚝 A종의 장기허용압축하중($P_a$)은 각각 1.7MN 및 2.3MN이었다. 모든 사례 매입 PHC말뚝의 양방향재하시험 자료로부터 계산된 지반의 허용지지력은 국내 현행 설계에서 사용하고 있는 극한지지력 산정공식으로 계산한 지반의 허용지지력보다 높은 수준으로 계산되었다. 따라서 매입 PHC말뚝의 설계에서 사용하는 극한지지력 산정공식은 매입 PHC말뚝의 실제 지지력 거동을 모사할 수 있도록 개선하여야 할 것으로 판단되었다.

부분 무치악 임플랜트 보철 수복시 자연치와의 비고정성 연결형태에 따른 3차원 유한요소법적 연구 (THE THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS OF THE PARTIALLY EDENTULOUS IMPLANT PROSTHESIS WITH VARYING TYPES OF NON-RIGID CONNECTION)

  • 이선아;정재헌
    • 대한치과보철학회지
    • /
    • 제34권1호
    • /
    • pp.101-124
    • /
    • 1996
  • In this study, we designed the finite element models of mandible with varying their connecting types between the prosthesis on implant fixture and 2nd premolar, which were free-standing case(Mf), precision attachment case(Mp), semiprecision attachment case(Ms) and telescopic case(Mt). The basic model of the designed finite element models, which contained a canine and the 1st & 2nd premolar, was implanted in the edentulous site of the 1st & 2nd molar by two implant fixtures. We applied the load in all models by two ways. A vertical load of 200N was applied at each central fossa of 2nd premolar and 1st implant. A tilting load of 20N with inclination of $45^{\circ}$ to lingual side was applied to buccal cusp tips of each 2nd premolar and 1st implant. And then we analyzed three-dimensional finite element models, making a comparative study of principal stress and displacement in four cases respectively. Three-dimensional finite element analysis was performed for the stress distribution and the displacement using commercial software(IDEAS program) for SUN-SPARC workstation. The results were as follows : 1 Under vertical load or tilting load, maximum displacement appeared at the 2nd premolar. Semiprecision case showed the largest maximum displacement, and maximum displacement reduced in the order of precision attachment, free-standing and telescopic case. 2. Under vertical load. the pattern of displacement of the 1st implant appeared mesio-inclined because of the 2nd implant splinted together. But displacement pattern of the 2nd premolar varied according to their connection type with prosthesis. The 2nd premolar showed a little mesio-inclined vertical displacement in case of free-standing and disto-inclined vertical displacement due to attachment in case of precision and semiprecision attachment. In telescopic case, the largest mesio-inclined vertical displacement has been shown, so, the 1st premolar leaned mesial side. 3. Under tilting load, The pattern of displacement was similar in all four cases which appeared displaced to lingual side. But, the maximum displacement of 2nd premolar appeared larger than that of the first implant. Therefore, there was large discrepancy in displacement between natural tooth and implant during tilting load. 4. Under vertical load, the maximum compressive stress appeared at the 1st implant's neck. Semiprecision attachment case showed the largest maximum compressive stress, and the maximum compressive stress reduced in the order of precision attachment, telescopic and free-standing case. 5 Under vertical load, the maximum tensile stress appeared at the 2nd implant's distal neck. Semiprecision attachment case showed the largest maximum tensile stress, and the maximum tensile stress reduced in the order of precision attachment, telescopic and free-standing case. 6. Under vertical load or tilting load, principal stress appeared little between natural tooth & implant in free-standing case, but large principal stress was distributed at upper crown and distal contact site of the 2nd premolar in telescopic case. Principal stress appeared large at keyway & around keyway of distal contact site of the 2nd premolar in precision and semiprecision attachment case, appearing more broad and homogeneous in precision attachment case than in semiprecision attachment case.

  • PDF

2중 원형동관의 2축압축 변형특성에 관한 연구 (Biaxial Compressive Deformation Characteristics of Double Round Copper Pipes)

  • 유종근;원시태
    • 소성∙가공
    • /
    • 제23권1호
    • /
    • pp.35-40
    • /
    • 2014
  • The deformation characteristics of a double round copper pipe and a single round copper pipe under biaxial compression were studied using a horizontal compression die. The change in punch load and in deformation behavior was measured during the experiments using various compressive deformation rates in the range of 10mm/min. ~ 450mm/min. The maximum punch load for both the double round copper pipe and the single round copper pipe decreased with increasing compressive deformation rate. The maximum punch load for the single round copper pipe was twice that of the double round copper pipe. After a 4.0mm stroke, the deformed shape of the single round copper pipe remained rectangular. However the outer tube of double round copper pipe remained rectangular while the inner tube was clover shaped. The stress and strain distributions in the double round copper pipe and the single round copper pipe show clear differences. The results of numerical simulations using Deform-2D are in good agreement with experimental results.

친환경 조립식 빗물침투저류블록 구조체의 성능검토 (Performance Evaluation of Eco-Friendly Prefabricated Rainwater Permeable Detention Block Structure)

  • 정영웅;주승진;김호진;이태규;최희용;류정림;최형길
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
    • /
    • pp.299-300
    • /
    • 2023
  • In this study, the performance evaluation and structural safety of rainwater permeation detention block were analyzed. As a result, the compressive strength (19.3 MPa), flexural strength (5.2 MPa), and permeability coefficient (2.0 mm/s) of the eco-friendly prefabricated rainwater permeable detention block satisfied the KS F 4419 and SPS-KCIC0001-0703 and it was confirmed sufficient safety even under maximum load.

  • PDF

나선형 원형철근으로 보강된 집중배치 텐던 정착구역에 대한 하중전달시험 (Load Transfer Test of Spirally Reinforced Anchorage Zone for Banded Tendon Group)

  • 조아서;강현구
    • 한국공간구조학회논문집
    • /
    • 제17권1호
    • /
    • pp.59-67
    • /
    • 2017
  • In this study, load transfer tests based on KCI-PS101 were conducted to verify the performance of spiral anchorage zone reinforcement for banded post-tensioning (PT) monostrands. With results, the compressive strength of spiral reinforcement was increased by about 20% than that of specimens with two horizontal steel bars and 8% than that of U-shaped bars. Advanced spiral reinforcement for corner increases compressive strength and can resist the spalling forces or fall-out effect at the corner by shear. The ratio of maximum load to amount of steel of the spiral reinforcement is about twice than that of U-shaped reinforcement. With increase of compressive strength capacity and improvement of constructability, the spiral reinforcement is considered to have advantages of promoting the performance of PT anchorage zone compared to conventional methods.

압축하중시 PET병의 변형특성에 관한 수치해석 및 실험적 연구 (Numerical analysis and Experiment to Determine Deformation Characteristics of PET Bottle under Compressive Load)

  • 조승현;권창오;박균명;고영배
    • 한국생산제조학회지
    • /
    • 제23권1호
    • /
    • pp.83-86
    • /
    • 2014
  • Many have been performed to decrease the thickness of polyethylene terephthalate (PET) bottles to reduce the manufacturing cost. However, it is difficult to guarantee the mechanical strength under top-loading after decreasing the thickness. This paper investigates the large deformation characteristics of a PET bottle under a compressive load using experimental and finite element analysis (FEA) data. A round 1.65-L bottle is analyzed under a compressive velocity of 5 mm/min with a maximum load of 9,800 N in experiments. The arc length method is used in a nonlinear FEA to understand the buckling phenomenon of the PET bottle. From the analyzed results, a recommendation is made to restrict the top loading to less than 1,208 N, because the first buckling phenomenon occurred at a load of 1,208 N.

압축 및 인발하중을 받는 그물식 뿌리말뚝의 최적 타설경사각 (An Optimum Slanting Angle in Reticulated Root Piles Installation under Compressive and Uplift Loads)

  • 이승현;김명보
    • 한국지반공학회지:지반
    • /
    • 제12권2호
    • /
    • pp.71-84
    • /
    • 1996
  • 본 연구에서는 여러가지의 타설경사각을 갖는 모형 그물식 뿌리말뚝을 제작하여 모형토조에 설치하고 레이닝(raining)방법으로 지반을 조성한 다음 압축시험 및 인발시험을 하여 그물식 뿌리말뚝의 타설경사각과 하중지지력 사이의 관계를 비교분석 하였다. 모형말뚝은 0$^{\circ}$, 5$^{\circ}$, $10^{\circ}$, 15$^{\circ}$, 20$^{\circ}$, 그리고 25$^{\circ}$의 타설경사각을 갖는 직경 Sulm의 강봉에 모래를 입힌 것으로 직경이 6.5muL 길이가 300mm가 되도록 하였다. 모형 뿌리말뚝의 배치는 동일한 타설경사각을 갖는 8개의 모형 말뚝을 4개씩 2개의 크고 작은 동심원에 접하도록 하였다. 그리고 모형 원형 얕은 기초를 제작하여 압축시험을 수행한 다음 지지력을 구하여 뿌리말뚝의 지지력과 비교하였다. 압축시험 및 인발시험 결과를 회귀분석하면 하중지지능력이 최대가 되는 타설경사각은 대략 12$^{\circ}$~13$^{\circ}$사이이다. 최적 타설경사각에서의 뿌리말뚝의 압축지지력은 원형 얕은기초의 지지력과 비교하면 약 2.0배이고, 연직으로 타설된 뿌리말뚝의 경우와 비교하면 13%의 지지력 증대효과가 있다. 그리고 최적타설경사각에서의 뿌리말뚝의 인발저항력은 연직으로 타설된 뿌리말뚝의 경우 에 비해 21%의 인발저항력 증대효과가 있다. 압축시험으로부터 얻은 하중-침하량곡선은 타설 경사각이 없는 경우에 전반전단파괴 형태를 나타내며,타설경사각이 5$^{\circ}$, $10^{\circ}$인 경우, 하중은 극한 지지력에 도달한 후 일정한 값을 유지하는 양상을 보인다. 타설경사각이 15$^{\circ}$, 20$^{\circ}$, 25$^{\circ}$로 증가하면서 하중은 극한지지력에 도달한 후에도 계속 증가하는 경향이 있다. 따라서, 타설경사각이 있는 경우의 뿌리말뚝은 압축지지력을 초과하여 하중을 받더라도 급격한 파괴에 이르지 않고 점차로 변위가 증가하는 연성 (ductile)거동을 보일 것으로 예상된다.

  • PDF

CPR 공법의 압축재하시험을 통한 기초지반의 보강효과 (Effect of CPR Foundation Reinforcement Assessed by Compressive Loading Tests)

  • 강성승;김정한;노정두;고진석
    • 지질공학
    • /
    • 제29권3호
    • /
    • pp.211-222
    • /
    • 2019
  • 본 연구는 CPR 공법을 적용한 압축재하시험을 통하여 지반의 항복하중과 허용지지력을 평가하여 기초 지반 보강효과를 확인하기 위한 것이다. 주입재의 평균압축강도는 계획된 강도보다 높게 나타났다. 또한 각 지층에서 표준관입시험 결과는 시험 전보다 시험 후의 평균 N값이 향상되었다. 즉, 이것은 지반의 지지력을 증대시키는 효과를 가져왔음을 의미한다. 두 종류의 CPR 말뚝 압축재하시험 결과에 의하면, 최대 재하하중에 의한 전침하량과 순침하량은 CPR 말뚝직경 허용범위를 초과하는 침하량을 나타냈다. 침하량 기준과 하중-침하량 곡선에 의해 산정한 항복하중 및 허용지지력은 적용되는 방법에 따라 값의 편차가 크게 나타났다. 따라서 허용지지력은 다양한 항복하중 산정법을 적용한 후 종합적인 분석을 통하여 최적의 값을 결정할 필요성이 있다고 사료된다.