• 제목/요약/키워드: the strain at maximum stress

검색결과 335건 처리시간 0.031초

황색산화철을 포함하는 혼합형 고체추진제의 특성에 관한 연구 (2) (Composite Solid Propellants for Propulsion System Including a Yellow Iron Oxide (2))

  • 박성준;김경민;박정호;노태호;최성한
    • 한국추진공학회지
    • /
    • 제24권3호
    • /
    • pp.12-17
    • /
    • 2020
  • 황색 산화철을 적용한 추진제의 기계적 특성은 적색산화철을 적용한 추진제와 비교하여 기계적물성이 다소 증가하였다. 또한 황색산화철을 적용한 추진제는 두 종류의 AP 입자를 사용하였으며 총량을 유지하고 작은 입자의 AP 비율 증가 시 연소속도가 증가하였다. 황색산화철을 첨가한 추진제는 압력 지수 값이 0.5인 17.5 mm/sec 이하의 운용조건에서 추진기관에 적용 가능하다. 혼합 믹서 Scale-up 시연소속도 감소, 최대인장강도 감소, 최대인장강도에서의 연신율은 증가하였다. 황색산화철은 내열재/라이너/추진제 사이의 접착력에는 큰 영향을 끼치지 않는다.

연약지반 굴착사면의 안정해석 (Stability Analysis of Excavation Slope on Soft Ground)

  • 강예묵;조재홍;김용성;김지훈
    • 농업과학연구
    • /
    • 제23권1호
    • /
    • pp.25-38
    • /
    • 1996
  • 연약지반상에 시공되는 용 배수로 굴착사면의 안정문제를 구명하기 위하여 굴착사면의 경사에 따른 지반의 거동을 한계평형법 및 유한요소법에 의하여 해석하고 실제 현장실험과 비교 분석한 결과 다음과 같은 결론을 얻었다. 1. 수로에서 수위를 급강하시켰을 때 과잉공극수압의 영향으로 균열이 발생하였고, 그 이후에 공극수압의 감소는 완만하게 나타났다. 2. 연직굴착시는 굴착폭이 클수록 균열의 폭도 커지고, 굴착깊이가 깊어지면서 진행성 파괴형태를 나타냈다. 3. 연약지반에서 소규모의 굴착공사를 할 때 최소안전율은 굴착사면의 경사(1:1, 1:1.5, 1:2)보다는 점착력(1.0, 1.5, 2.0, 2.5, $3.0t/m^2$)에 더 큰 영향을 받는 것으로 나타났다. 4. 굴착이 진행되면서 소성영역이 발달하는 상부사면에서는 침하가 발생하였으며, 굴착저면에서는 히빙현상이 나타났다. 5. 최대전단응력은 저부지반으로 갈수록 크게 나타났으며, 이와같은 현상은 인장영역을 발생시켜서 국부적인 파괴 가능성을 증가시킴을 알 수 있었다. 6. 최대전단변형은 굴착깊이에 따라 증가하며, 굴착저면에서 가장 큰값을 나타내고 굴착사면의 중앙저부에 집중되는 분포형태를 나타냈다.

  • PDF

수도(水稻)의 역학적(力學的) 및 리올러지 특성(特性)에 관(關)한 연구(硏究) (Mechanical and Rheological Properties of Rice Plant)

  • 허윤근;차균도
    • 농업과학연구
    • /
    • 제14권1호
    • /
    • pp.98-133
    • /
    • 1987
  • The mechanical and rheological properties of agricultural materials are important for engineering design and analysis of their mechanical harvesting, handling, transporting and processing systems. Agricultural materials, which composed of structural members and fluids do not react in a purely elastic manner, and their response when subjected to stress and strain is a combination of elastic and viscous behavior so called viscoelastic behavior. Many researchers have conducted studies on the mechanical and rheological properties of the various agricultural products, but a few researcher has studied those properties of rice plant, and also those data are available only for foreign varieties of rice plant. This study are conducted to experimentally determine the mechanical and the rheological properties such as axial compressive strength, tensile strength, bending and shear strength, stress relaxation and creep behavior of rice stems, and grain detachment strength. The rheological models for the rice stem were developed from the test data. The shearing characteristics were examined at some different levels of portion, cross-sectional area, moisture content of rice stem and shearing angle. The results obtained from this study were summarized as follows 1. The mechanical properties of the stems of the J aponica types were greater than those of the Indica ${\times}$ Japonica hybrid in compression, tension, bendingand shearing. 2. The mean value of the compressive force was 80.5 N in the Japonica types and 55.5 N in the Indica ${\times}$ Japonica hybrid which was about 70 percent to that of the Japonica types, and then the value increased progressively at the lower portion of the stems generally. 3. The average tensile force was about 226.6 N in the Japonica types and 123.6 N in the Indica ${\times}$ Japonica hybrid which was about 55 percent to that of the Japonica types. 4. The bending moment was $0.19N{\cdot}m$ in the Japonica types and $0.13N{\cdot}m$ in the Indica ${\times}$ Japonica hybrid which was 68 percent to that of the Japonica types and the bending strength was 7.7 MPa in the Japonica types and 6.5 MPa in the Indica ${\times}$ Japonica hybrid respectively. 5. The shearing force was 141.1 N in Jinju, the Japonica type and 101.4 N in Taebaeg, the Indica ${\times}$ Japonica hybrid which was 72 percent to that of Jinju, and the shearing strength of Taebaeg was 63 percent to that of Jinju. 6. The shearing force and the shearing energy along the stem portion in Jinju increased progressively together at the lower portions, meanwhile in Taebaeg the shearing force showed the maximum value at the intermediate portion and the shearing energy was the greatest at the portion of 21 cm from the ground level, and also the shearing strength and the shearing energy per unit cross-sectional area of the stem were the greater values at the intermediate portion than at any other portions. 7. The shearing force and the shearing energy increased with increase of the cross-sectional area of the rice stem and with decrease of the shearing angie from $90^{\circ}$ to $50^{\circ}$. 8. The shearing forces showed the minimum values of 110 N at Jinju and of 60 N at Taebaeg, the shearing energy at the moisture content decreased about 15 percent point from initial moisture content showed value of 50 mJ in Jinju and of 30 mJ in Taebaeg, respectively. 9. The stress relaxation behavior could be described by the generalized Maxwell model and also the compression creep behavior by Burger's model, respectively in the rice stem. 10. With increase of loading rate, the stress relaxation intensity increased, meanwhile the relaxation time and residual stress decreased. 11. In the compression creep test, the logarithmic creep occured at the stress less than 2.0 MPa and the steady-state creep at the stress larger than 2.0 MPa. 12. The stress level had not a significant effect on the relaxation time, while the relaxation intensity and residual stress increased with increase of the stress level. 13. In the compression creep test of the rice stem, the instantaneous elastic modulus of Burger's model showed the range of 60 to 80 MPa and the viscosities of the free dashpot were very large numerical value which was well explained that the rice stem was viscoelastic material. 14. The tensile detachment forces were about 1.7 to 2.3 N in the Japonica types while about 1.0 to 1.3 N in Indica ${\times}$ Japonica hybrid corresponding to 58 percent of Japonica types, and the bending detachment forces were about 0.6 to 1.1 N corresponding to 30 to 50 percent of the tensile detachment forces, and the bending detachment of the Indica ${\times}$ Japonica hybrid was 0.1 to 0.3 N which was 7 to 21 percent of Japonica types. 15. The detachment force of the lower portion was little bigger than that of the upper portion in a penicle and was not significantly affected by the harvesting period from September 28 to October 20. 16. The tensile and bending detachment forces decreased with decrease of the moisture content from 23 to 13 percent (w.b.) by the natural drying, and the decreasing rate of detachment forces along the moisture content was the greater in the bending detachment force than the tensile detachment force.

  • PDF

자갈-모래 혼합토의 액상화 거동 (Liquefaction Resistance of Gravel-Sand Mixtures)

  • 김방식;강병희;윤여원
    • 한국지반공학회논문집
    • /
    • 제23권10호
    • /
    • pp.47-56
    • /
    • 2007
  • 본 연구에서는 자갈혼합률을 다르게 준비한 자갈-모래 혼합시료가 등방압밀 및 $K_0$-이방압밀 상태에서 나타나는 액상화거동에 대해서 연구하였다. 이를 위하여 자갈혼합률이 다른 자갈-모래 혼합토 공시체를 100kPa의 연직응력으로서 상대밀도가 40% 되도록 등방압밀 및 $K_0$-이방압밀 시킨 후 반복삼축시험을 수행하였다. 또한 자갈혼합률이 0%, 10%, 20%, 30%인 공시체에 100 kPa의 연직응력으로서 간극비가 0.7이 되도록 등방압밀 후 반복시험도 실시하였다. 시험결과 동일한 상대밀도(Dr=40%)를 가지는 자갈-모래 혼합토 공시체의 간극비는 자갈혼합률이 증가할수록 감소하다가 약 70%를 저점으로해서 다시 증가한다. 그러나 이 경계혼합률 이하에서는 자갈입자 사이를 채우고 있는 모래의 간극비는 자갈혼합률이 증가할수록 증가한다. 상대밀도가 일정한 (Dr=40%)등방압밀 공시체에 있어서 자갈혼합률이 비교적 낮은 경우(GC=0%, 20%, 40%)에는 반복하중에 의해서 일어나는 간극수압과 축변형률 거동이 비교적 높은 간극비로 인해서 느슨한 모래의 거동을 나타내나, 자갈혼합률이 높은 경우(GC=70%)에는 간극수압과 축변형률 거동이 조밀한 모래의 거동과 비슷한 경향을 보인다. 또한 간극비가 일정한(e=0.7) 등방압밀 공시체에 있어서 자갈혼합률이 높을수록 축변형률과 간극수압 거동은 느슨한 모래의 거동을 보이며 자갈혼합률이 낮을수록 축변형률 거동은 조밀한 모래의 거동을 나타낸다. 등방압밀 공시체의 액상화강도는 경계혼합률(GC=70%)이하의 범위에서는 상대밀도가 일정한 경우에는 자갈혼합률이 증가할수록 증가하며 간극비가 일정한 경우는 자갈혼합률이 증가할수록 감소한다. 따라서 자갈-모래 혼합토의 액상화강도는 예상과는 달리 자갈 입자 사이를 채우고 있는 모래의 상대밀도 보다는 혼합토의 전체적인 상대밀도 및 간극비에 의해서 결정된다는 사실이 확인되었다. $K_0$-이방압밀 공시체의 간극수압과 축변형률 거동은 반복응력이 어느 정도의 응력반전을 포함하고 있는데도 불구하고 응력반전이 없는 경우의 사질토의 거동을 나타낸다. 즉 응력반전량이 반복응력 진폭의 약 10%인데도 불구하고 반복변형률은 비슷하나 영구변형률이 크게 증가하며 또한 간극수압비는 1.0에 미달하여 초기액상화가 일어나지 않는다. 그리고 액상화강도는 자갈촌합률이 증가할수록 0%에서 40%까지의 범위에서는 증가하나 그 이상에서는 감소하는 경향을 보인다. 결론적으로 자갈-모래 혼합토의 반복거동은 자갈혼합량, 간극비, 상대밀도 그리고 압밀상태와 같은 요인에 의해 결정된다.

유한요소법을 이용한 4단 개방냉간압출시 발생하는 셰브론 크랙에 관한 연구 (Study on Chevron Crack Occurring in a 4-stage Open Cold Extrusion Process by Finite Element Method)

  • 황현석;이요셉;전만수
    • 소성∙가공
    • /
    • 제26권4호
    • /
    • pp.210-215
    • /
    • 2017
  • In this paper, utilizing the theory of ductile fracture a chevron crack in a 4-stage open cold extrusion process is predicted by the finite element methods and then compared with previous experiments. The normalized Cockcroft-Latham damage model is employed and the material is identified using a tensile test based material identification technique that gives fracture information as well as flow stress at large strain. A large difference between the predicted cracks and actual experiments is observed, specifically narrower width and greater maximum height of the crack. This reveals the limitation of this approach based on the conventional theory of ductile fracture. Based on the observations and the related criticisms, a new approach for predicting the chevron crack is proposed, suggesting that either the critical damage should not be a fixed material constant, or that the conventional fracture theory should be considered with the effects of embrittlement due to accumulated plastic deformation while the duration of crack generation and plastic deformation should be reduced.

패류로부터 분리된 젖산균에 의한 젖산의 생산 (Production of Lactic Acid by Lactic Acid Bacteria Isolated from Shellfish)

  • 강창호;정호건;구자룡;소재성
    • KSBB Journal
    • /
    • 제30권4호
    • /
    • pp.161-165
    • /
    • 2015
  • Lactic acid and its derivatives are widely used in the food, pharmaceutical, and cosmetic industries. It is also a major raw material for the production of poly-lactic acid (PLA), a biodegradable and environmentally friendly polymer and a possible alternative to synthetic plastics derived from petroleum. For PLA production by new strains of lactic acid bacteria (LAB), we screened LAB isolates from shellfish. A total of 51 LAB were isolated from 7 types of shellfishes. Lactic acid production of individual isolates was examined using high-performance liquid chromatography using a Chiralpak MA column and an ultraviolet detector. Lactobacillus plantarum T-3 was selected as the most stress-resistant strain, with minimal inhibition concentrations of 1.2 M NaCl, 15% ethanol, and 0.0020% hydrogen peroxide. In a 1 L fermentation experiment, $\small{D}$-lactic acid production of 19.91 g/L fermentation broth was achieved after 9 h cultivation, whereas the maximum production of total lactic acid was 41.37 g/L at 24 h.

Surface and size dependent effects on static, buckling, and vibration of micro composite beam under thermo-magnetic fields based on strain gradient theory

  • Mohammadimehr, Mehdi;Mehrabi, Mojtaba;Hadizadeh, Hasan;Hadizadeh, Hossein
    • Steel and Composite Structures
    • /
    • 제26권4호
    • /
    • pp.513-531
    • /
    • 2018
  • In this article, static, buckling and free vibration analyses of a sinusoidal micro composite beam reinforced by single-walled carbon nanotubes (SWCNTs) with considering temperature-dependent material properties embedded in an elastic medium in the presence of magnetic field under transverse uniform load are presented. This system is used at micro or sub micro scales to enhance the stiffness of micro composite structures such as bar, beam, plate and shell. In the present work, the size dependent effects based on surface stress effect and modified strain gradient theory (MSGT) are considered. The generalized rule of mixture is employed to predict temperature-dependent mechanical and thermal properties of micro composite beam. Then, the governing equations of motions are derived using Hamilton's principle and energy method. Numerical results are presented to investigate the influences of material length scale parameters, elastic foundation, composite fiber angle, magnetic intensity, temperature changes and carbon nanotubes volume fraction on the bending, buckling and free vibration behaviors of micro composite beam. There is a good agreement between the obtained results by this research and the literature results. The obtained results of this study demonstrate that the magnetic intensity, temperature changes, and two parameters elastic foundations have important effects on micro composite stiffness, while the magnetic field has greater effects on the bending, buckling and free vibration responses of micro composite beams. Moreover, it is shown that the effects of surface layers are important, and observed that the changes of carbon nanotubes volume fraction, beam length-to-thickness ratio and material length scale parameter have noticeable effects on the maximum deflection, critical buckling load and natural frequencies of micro composite beams.

보강토옹벽의 장기거동분석에 관한 연구 (Long Term Behaviors of Geosynthetics Reinforced Soil Walls)

  • 원명수;이용안;김유성
    • 한국지반공학회논문집
    • /
    • 제22권8호
    • /
    • pp.33-42
    • /
    • 2006
  • 연성벽체인 보강토옹벽은 변형을 허용하므로 연약지반 상에 구축될 경우 뒤채움재와 연약지반의 변형이 수렴될 때까지 경과시간에 따라 벽체에 작용하는 토압과 옹벽내에 작용하는 보강재의 인장력은 변하나, 이들을 장기간에 걸쳐 계측 및 분석한 사례는 거의 없다. 본 연구에서는 얕은 층의 연약지반상에 실물보강토옹벽을 구축하여 보강재의 변형, 토압, 간극수압 등을 약 16개월 동안 계측 및 분석하였다. 스트레인 게이지를 사용하여 보강재의 변형을 계측하였으며, 특히 부직포의 변형 계측에 스트레인 게이지를 적용하는 새로운 방법을 제안하였다. 대부분의 보강재 변형은 옹벽구축 후로부터 한 달 이내에 발생하고, 약 16개월 동안 계측된 부직포, 직포, 지오그리드에서의 최대변형률은 6.05, 2.92, 2.33%로 나타났다. 보강토옹벽 내에서 간극수압은 무시할 수 있으나, 벽면에서의 수평토압은 옹벽의 저부와 상부에서 정지토압보다 크게 나타났다.

이방성 전도 필름을 이용한 플립칩 패키지의 열피로 수명 예측 및 강건 설계 (Robust Design and Thermal Fatigue Life Prediction of Anisotropic Conductive Film Flip Chip Package)

  • 남현욱
    • 대한기계학회논문집A
    • /
    • 제28권9호
    • /
    • pp.1408-1414
    • /
    • 2004
  • The use of flip-chip technology has many advantages over other approaches for high-density electronic packaging. ACF (anisotropic conductive film) is one of the major flip-chip technologies, which has short chip-to-chip interconnection length, high productivity, and miniaturization of package. In this study, thermal fatigue lift of ACF bonding flip-chip package has been predicted. Elastic and thermal properties of ACF were measured by using DMA and TMA. Temperature dependent nonlinear hi-thermal analysis was conducted and the result was compared with Moire interferometer experiment. Calculated displacement field was well matched with experimental result. Thermal fatigue analysis was also conducted. The maximum shear strain occurs at the outmost located bump. Shear stress-strain curve was obtained to calculate fatigue life. Fatigue model for electronic adhesives was used to predict thermal fatigue life of ACF bonding flip-chip packaging. DOE (Design of Experiment) technique was used to find important design factors. The results show that PCB CTE (Coefficient of Thermal Expansion) and elastic modulus of ACF material are important material parameters. And as important design parameters, chip width, bump pitch and bump width were chose. 2$^{nd}$ DOE was conducted to obtain RSM equation far the choose 3 design parameter. The coefficient of determination ($R^2$) for the calculated RSM equation is 0.99934. Optimum design is conducted using the RSM equation. MMFD (Modified Method for feasible Direction) algorithm is used to optimum design. The optimum value for chip width, bump pitch and bump width were 7.87mm, 430$\mu$m, and 78$\mu$m, respectively. Approximately, 1400 cycles have been expected under optimum conditions. Reliability analysis was conducted to find out guideline for control range of design parameter. Sigma value was calculated with changing standard deviation of design variable. To acquire 6 sigma level thermal fatigue reliability, the Std. Deviation of design parameter should be controlled within 3% of average value.

가속열 노화로 열화된 탄성받침 고무재료의 전단 특성(1): 천연고무 (Shear Characteristics of Elastomeric Bearing Rubber Deteriorated by Accelerated Heat Aging(1): Natural Rubber)

  • 선창호;김익현
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제25권6호
    • /
    • pp.95-102
    • /
    • 2021
  • 유연한 고무재료를 사용하는 탄성받침은 최근 교량의 내진보강용으로 많이 적용되고 있다. 그러나 다양한 요인에 의하여 고무재료의 노화가 진행되고 이로 인해 탄성받침의 전단강성에 변화가 생기고 이는 교량의 내진성능에 영향을 미친다. 천연고무를 대상으로 노화촉진시간과 노출시간을 변수로 하여 노화촉진시험을 수행하여 전단특성의 변화를 분석하였다. 노화가 진행될수록(노화촉진온도 및 노출시간이 증가할수록) 최대전단응력과 전단변형율은 감소한다. 또한 동일한 전단변형률에서 전단강성이 크게 증가한다. 이는 고무재료가 경화됨을 의미하며 탄성받침의 내진성능이 저하되는 것을 암시한다.