• Title/Summary/Keyword: Pressure Strain

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Inactivation of Campylobacter jejuni using Radio-frequency Atmospheric Pressure Plasma on Agar Plates and Chicken Hams

  • Kim, Joo-Sung;Lee, Eun-Jung;Cho, Eun-Ah;Kim, Yun-Ji
    • 한국축산식품학회지
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    • 제33권3호
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    • pp.317-324
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    • 2013
  • Radio-frequency driven atmospheric pressure plasma using argon gas was studied in the inactivation of Campylobacter jejuni in order to investigate its applicability. First, the inactivation study was conducted on an agar surface. C. jejuni NCTC11168 was reduced by more than 7 Log CFU after an 88 s treatment. Another strain, ATCC49943, was studied; however, the inactivation was less efficient, with a 5 Log CFU reduction after a 2 min treatment. Then, chicken breast ham was studied at the $10^6$ CFU inoculation level. The inactivation efficiency was much lower for both strains compared to that on the agar plates. C. jejuni NCTC11168 and ATCC49943 were reduced by 3 Log CFU after a 6 min treatment and by 1.5 Log CFU after a 10 min treatment, respectively. The scanning electron microscopy analysis indicated that C. jejuni cells were deformed or transformed into coccoid form under the plasma treatment. During the plasma treatment, the temperature of the samples did not rise above $43^{\circ}C$, suggesting that heat did not contribute to the inactivation. Meanwhile, water activity significantly decreased after a 10 min treatment (p<0.05). This study conveyed that radio-frequency atmospheric pressure plasma can effectively inactivate C. jejuni with strain-specific variation.

Thermoelastoplastic response of FGM linearly hardening rotating thick cylindrical pressure vessels

  • Ebrahimi, Tayebeh;Nejad, Mohammad Zamani;Jahankohan, Hamid;Hadi, Amin
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.189-211
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    • 2021
  • An analytical solution is presented to analyze the thermoelastoplastic response of a rotating thick-walled cylindrical pressure vessel made of functionally graded material (FGM). The analysis is based on Tresca's yield condition, its associated flow rule and linear strain hardening material behaviour. The uncoupled theory of thermoelasticity is used, and the plane strain condition is assumed. The material properties except for Poisson's ratio, are assumed to vary nonlinearly in the radial direction. Elastic, partially plastic, fully plastic, and residual stress states are investigated. The heat conduction equation for the one-dimensional problem in cylindrical coordinates is used to obtain temperature distribution in the vessel. It is assumed that the inner surface is exposed to an airstream and that the outer surface is exposed to a uniform heat flux. Tresca's yield criterion and its associated flow rule are used to formulate six different plastic regions for a linearly hardening condition. All these stages are studied in detail. It is shown that the thermoelastoplastic stress response of a rotating FGM pressure vessel is affected significantly by the nonhomogeneity of the material and temperature gradient. The results are validated with those of other researchers for appropriate values of the system parameters and excellent agreement is observed.

온도와 압력이 들깨종자의 압착착유에 미치는 영향 (Effect of Temperature and Pressure on the Oil Expression of Perilla Seed)

  • 민용규;정헌상
    • 한국식품과학회지
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    • 제25권1호
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    • pp.28-32
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    • 1993
  • 들깨종자의 압착착유에 미치는 온도와 압력의 영향을 살펴보기 위해 생들깨와 볶은들깨의 기름의 추출율 및 압착케이크의 부피변형율을 각각의 온도, 압력 및 압착시간에서 관찰하였다. 본 실험을 위해 들깨종자의 수분함량은 2.5%로 조절하였고 온도는 30, 40, 50 및 $60^{\circ}C$가 사용되었고 압력은 10, 30, 50 및 70 MPa을 적용하였으며 압착시간은 5, 7, 9 및 11분을 적용하였다. 온도, 압력 그리고 압착시간이 증가할수록 기름의 추출율 및 압착케이크의 부피변형율은 증가를 하였다. 생들깨와 볶은들깨의 최대 추출율은 $60^{\circ}C$, 70 MPa, 11분에서 각각 85.59% 및 85.30%이었다. 추출된 기름의 점도는 지수함수적인 온도의존성을 보여주었으며, 점도가 낮을수록 즉, 온도가 높을수록 기름의 추출율은 증가하였다. 압착요인과 기름의 추출율 및 압착케이크의 부피변형율과의 상관관계 분석에서 압착요인의 효과는 압력, 온도, 온도${\times}$압력 그리고 압착시간 순으로 감소하였다. 온도(T), 압력(P) 그리고 압착시간(D)과 기름의 추출율(Y)과의 관계는 생들깨는 $Y=7.95+36.85P+1.12T^2-0.55TP-5.08P^2(r^2=0.97\;p<0.01)$였으며, 볶은들깨는 $Y=4.50T+39.23P+0.83T^2-1.71P-5.07P^2(r^2=0.99,\;p<0.01)$이었다.

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CP-Ti의 동적거동에 미치는 온도의 영향 (Temperature Dependence of Dynamic Behavior of Commercially Pure Titanium by the Compression Test)

  • 이수민;서송원;박경준;민옥기
    • 대한기계학회논문집A
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    • 제27권7호
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    • pp.1152-1158
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    • 2003
  • The mechanical behavior of a commercially pure titanium (CP-Ti) is investigated at high temperature Split Hopkinson Pressure Bar (SHPB) compression test with high strain-rate. Tests are performed over a temperature range from room temperature to 1000$^{\circ}C$ with interval of 200$^{\circ}C$ and a strain-rate range of 1900 ∼ 2000/sec. The true flow stress-true strain relations depending on temperature are achieved in these tests. For construction of constitutive equation from the true flow stress-true strain relation, parameters for the Johnson-Cook constitutive equation is determined. And the modified Johnson-Cook equation is used for investigation of behavior of flow stress in vicinity of recrystalization temperature. The Modified Johnson-Cook constitutive equation is more suitable in expressing the dynamic behavior of a CP-Ti at high temperature, i.e. about recrystalization temperature.

가공경화를 고려한 알루미늄 함금의 초소성성형공정해석 (Modeling of Superplastic Forming Process for Aluminum Alloys with Strain Hardening Effect)

  • 권용남;장영원
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1996년도 춘계학술대회논문
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    • pp.172-184
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    • 1996
  • Superplastic forming of thin sheet into complex shape is an important manufacturing process especially in aerospace industry. The main interest in modeling the superplastic forming process is to predict the forming pressure cycle to maintain optimum strain rate and the resulting thickness distribution. Many researchers have attemped to model superplastic forming using the various techniques including finite element method. But in most of their researches have disregarded the strain hardening effect which which occurs in several superplastic materials. In this study ABAQUS finite element code was used for prediction of process variables for axisymmetric cup forming of Supral 100 and 7075Al alloys considereing strain hardening. The performance of numerical results were compared with the experimental results.

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Effects of temperature on the ratcheting behavior of pressurized 90° elbow pipe under force controlled cyclic loading

  • Chen, Xiaohui;Wang, Xingang;Chen, Xu
    • Smart Structures and Systems
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    • 제19권5호
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    • pp.473-485
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    • 2017
  • Ratcheting behavior of $90^{\circ}$ elbow piping subject to internal pressure 20 MPa and reversed bending 20 kN was investigated using experimental method. The maximum ratcheting strain was found in the circumferential direction of intrados. Ratcheting strain at flanks was also very large. Moreover, the effect of temperature on ratcheting strain of $90^{\circ}$ elbow piping was studied through finite element analysis, and the results were compared with room condition ($25^{\circ}$). The results revealed that ratcheting strain of $90^{\circ}$ elbow piping increased with increasing temperature. Ratcheting boundary of $90^{\circ}$ elbow piping was determined by Chaboche model combined with C-TDF method. The results revealed that there was no relationship between the dimensionless form of ratcheting boundary and temperature.

Solution for surrounding rock of strain-softening considering confining pressure-dependent Young's modulus and nonlinear dilatancy

  • Liang, Peng;Gao, Yongtao;Zhou, Yu;Zhu, Chun;Sun, Yanhua
    • Geomechanics and Engineering
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    • 제22권4호
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    • pp.277-290
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    • 2020
  • This paper presents an elastic-plastic solution for the circular tunnel of elastic-strain softening behavior considering the pressure-dependent Young's modulus and the nonlinear dilatancy. The proposed solution is verified by the results of the field measuring and numerical simulation from a practical project, and a published closed-form analysis solution. The influence of each factor is discussed in detail, and the ability of Young's modulus and dilatancy characterizing the mechanical response of surrounding rock is investigated. It is found that, in low levels of support pressure, adopting the constant Young's modulus model will seriously misestimate the surrounding rock deformation. Using the constant dilatancy model will underestimate the surrounding rock deformation. When adopting the constant dilatancy model, as the dilation angle increases, the range of the plastic region increases, and the surrounding rock deformation weakens. When adopting the nonlinear dilatancy, the plastic region range and the surrounding rock deformation are the largest. The surrounding rock deformation using pressure-dependent Young's modulus model is between those resulted from two constant Young's modulus models. The constant α of pressuredependent Young's modulus model is the main factor affecting the tunnel displacement. The influence of α using a constant dilatancy model is much more apparent than that using a nonlinear dilatancy model.

과부하 방지용 마이크로머시닝 세라믹 박막형 압력센서의 제작과 그 특성 (Fabrication of a micromachined ceramic thin-film type pressure sensor for high overpressure tolerance and Its characteristics)

  • 김재민;정귀상
    • 센서학회지
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    • 제12권5호
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    • pp.199-204
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    • 2003
  • 본 논문에서는 Ta-N 스트레인게이지를 이용한 극한 환경용 세라믹 박막형 압력센서의 제작 및 특성에 관하여 연구하였다. 압력감지부로 Ta-N 스트레인게이지를 사용하였으며, SDB(Si-wafer Direct Bonding)와 전기화학적 식각정지법을 이용하여 매몰 cavity를 가지는 저가격 고수율의 Si 박막 다이어프램을 제작하였다. 또한, 실리콘 박막 다이어프램상에 박막형 스트레인게이지를 형성하여 세라믹 박막형 압력센서를 제작하였다. 제작된 세라믹 박막형 압력 센서는 기존의 스트레인 게이지를 이용한 로드셀에 비해서 온도특성이 우수하고 재현성, 소형화, 집적화 및 저가격화가 가능하기 때문에 고온, 고압 등의 각한 환경에서도 사용이 가능할 것으로 기대된다.

타이어의 접지 면적과 비선형 접지압력을 고려한 연성포장내의 거동 분석 (Pavement Response in Flexible Pavements using Nonlinear Tire Contact Pressure and Measured Tire Contact Area)

  • 조명환;김낙석;정지훈;서영국
    • 대한토목학회논문집
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    • 제26권4D호
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    • pp.601-608
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    • 2006
  • 포장을 설계하고 설계 수명을 산정하거나 현재 공용중인 포장의 유지 관리를 위한 상태 평가를 수행해야하는 경우 포장의 거동 분석은 중요한 입력 변수로 작용하게 된다. 포장의 거동을 예측하기 위해서는 정확한 타이어의 접지면적과 타이어의 압력이 필요하다. 따라서 본 연구에서는 실제 측정된 타이어의 형상을 측정하여 PCA에서 제안한 타이어의 형상과 비교하고, 측정된 타이어의 접지면적과 타이어의 종류에 대한 타이어 압력분포를 사용하여 3차원 유한요소해석을 통하여 포장의 거동을 예측하고 예측된 포장의 거동과 실제 포장의 거동을 비교 분석하였다. 해석 결과 표층의 경우 타이어의 형상과 비선형 압력분포의 영향을 크게 받으며, 이러한 타이어의 특성을 고려함으로써 현장 거동을 보다 잘 설명할 수 있는 것으로 나타났다. 하지만 중간층의 경우 타이어의 영향이 크지 않은 것으로 나타났으며, 실제 현장 거동과 비교했을 때 타이어 하부에서는 큰 차이를 보여주어 실제 포장의 거동을 보다 정확하게 예측하기 위해서는 이 부분을 보다 명확하게 설명을 할 수 있어야 할 것으로 나타났다.

NiAl/Ni 미세적층복합재료의 고속변형거동 (High Strain-rate Deformation Behavior of NiAl/Ni Micro-laminated Composites)

  • 김희연;김진영;정동석;;홍순형
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2004년도 춘계학술발표대회 논문집
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    • pp.237-240
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    • 2004
  • High strain-rate deformation behavior of NiAl/Ni micro-laminated composites was characterized by split hopkins on pressure bar(SHPB). When the strain rate increased, the compressive stress of micro-laminated composites were increased a little. When the intermetallic volume fraction increased, the compressive stress of micro-laminated composites increased linearly irrespective of strain rate. Absorbed energy during the quasi-static and SHPB tests was calculated from the integrated area of stress-strain curve. Absorbed energy of micro-laminated composites deviated from the linearity in terms of the intermetallic volume fraction but merged to the value of intermetallic as the strain rate increased. This was due to high tendency of intermetallic layer for the localization of shear deformation at high strain rate. Microstructure showing adibatic shear band(ASB) confirmed that the shear strain calculated from the misalignment angle of each layer increased and ASB width decreased when the intermetallic volume fraction. Simulation test impacted by tungsten heavy alloy cylinder resulted that the absorbed energies multiplied by damaged volume of micro-laminated composites were decreased as the intermetallic volume fraction increased. Fracture mode were changed from delamination to single fracture when the intermetallic volume fraction and this results were good matched with previous results[l] obtained from the fracture tests.

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