• 제목/요약/키워드: Poisson′s Ratio

검색결과 438건 처리시간 0.029초

Mechanical and elastic properties of vitrified radioactive wastes using ultrasonic technique

  • Sema Akyil Erenturk;Filiz Gur;Mahmoud A.A. Aslani
    • Nuclear Engineering and Technology
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    • 제56권2호
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    • pp.472-476
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    • 2024
  • It is important that radioactive and nuclear wastes are immobilized in a glass composition with lower melting temperatures due to their economy. In this study, the elastic and mechanical properties of sodium borate-based vitrified radioactive waste were measured using ultrasonic techniques. Many ultrasonic parameters, such as elastic moduli, Poisson's ratio, and microhardness, were calculated by measuring the ultrasonic velocities of the glasses. The ultrasonic velocity data, the density, the calculated elastic moduli, micro-hardness, softening temperature, and Debye temperature depending on the glass composition were evaluated, and the relation with the structure was clarified. It was observed that the elastic modulus and Poisson ratio increased as the Cs2O content increased in glasses containing Cs waste. This result shows that the rigidity of the network structure of these glasses increases in contrast to the glass containing Sr.

석분과 플라이 애쉬를 혼입한 투수용 폴리머 콘크리트의 공학적 성질 (Engineering Properties of Permeable Polymer Concrete With Stone Dust and Fly Ash)

  • 성찬용;정현정
    • 한국농공학회지
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    • 제38권4호
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    • pp.147-154
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    • 1996
  • This study wag performed to evaluate the engineering properties of permeable polymer concrete with stone dust and fly ash and unsaturated polyester resin. The following conclusions were drawn. 1. The highest strength was achieved by stone dust filled permeable polymer concrete, it was increased 17% by compressive strength, 188% by bending strength than that of the normal cement concrete, respectively. 2. The water permeability was in the range of 3.O76~4.152${\ell}/ cm{^2}/h$, and it was largely dependent upon the mix design. These concrete can be used to the structures which need water permeability. 3. The static modulus of elasticity was in the range of $1.15{\times} 10^5kg/cm^2$, which was approximately 53 56% of that of the normal cement concrete. 4. The poisson's number of permeable polymer concrete was in the range of 5.106~5.833, which was less than that of the normal cement concrete. 5. The dynamic modulus of elasticity was in the range of $1.29{\times} 10^5~1.5{\times} 10^5 kg/cm^2$, which was approximately less compared to that of the normal cement concrete. Stone dust filled permeable polymer concrete was showed higher dynamic modulus. The dynamic modulus of elasticity were increased approximately 7~13% than that of the static modulus. 6. The compressive strength, bending strength, elastic modulus, poisson's ratio, longitudinal strain and horizontal strain were decreased with the increase of poisson's number and water permeability at those concrete.

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확장 탄성 임피던스 역산을 이용한 저류층 물성 예측 (Prediction of Reservoir Properties Using Extended Elastic Impedance Inversion)

  • 김현주;이광훈;문성훈
    • 자원환경지질
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    • 제48권2호
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    • pp.115-130
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    • 2015
  • 확장 탄성 임피던스(extended elastic impedance, EEI)는 입사각에 따른 음향 임피던스(acoustic impedance, AI) 를 일반화한 탄성 임피던스(elastic impedance, EI)를 확장한 개념으로서 다양한 저류암 물성과 대비가 가능한 것으로 알려져 있다. 하지만 EEI 역산을 적용하여 예측한 저류암적 물성이 실제 물성을 얼마나 정확히 예측하는지를 검증한 사례는 거의 없다. 본 연구에서는 EEI 역산 기법을 이용하여 미국 와이오밍주 Teapot Dome 유전의 주요 저류층 중 하나인 Second Wall Creek 사암층의 P파속도($V_p$), S파속도($V_s$), P파속도-S파속도 비($V_p/V_s$), 포아송비(Poisson's ratio)와 같은 속도 물성들을 유추하고 실제 물리검층 자료와 비교하여 EEI 역산 기법의 정확도를 검증했다. 사용된 자료는 Teapot Dome 유전 남부의 3차원 공심점 모음 자료(CDP gather)와 많은 시추공에서 선택된 4개의 시추공 자료이다. $V_s$ 검층자료는 경험식을 통해 $V_p$ 검층자료로부터 계산되었다. 4개의 속도 물성 EEI 예측 %에러는 한 시추공에서의 포아송비를 제외하면 약 5%를 넘지 않는다. 그러나 속도로부터 직접적으로 계산되지 않는 공극률, 감마선 검층값, 밀도와 같은 물성들은 시추공에서의 EEI 역산 분석 결과가 만족스럽지 못하여 전체 자료에 EEI 역산을 적용할 수 없었다. 따라서 속도 물성의 경우 EEI 역산을 적용할 수 있지만 속도로부터 직접 계산이 되지 않는 물성의 경우는 EEI 역산 적용에 신중해야 할 것으로 판단된다.

Measurement of Mechanical and Physical Properties of Pepper for Particle Behavior Analysis

  • Nam, Ju-Seok;Byun, Jun-Hee;Kim, Tae-Hyeong;Kim, Myoung-Ho;Kim, Dae-Cheol
    • Journal of Biosystems Engineering
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    • 제43권3호
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    • pp.173-184
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    • 2018
  • Purpose: This study was conducted to investigate the mechanical and physical properties of a Korean red pepper variety for particle behavior analysis. Methods: Poisson's ratio, modulus of elasticity, shear modulus, density, coefficient of restitution, and coefficient of friction were derived for "AR Legend," which is a domestic pepper variety. The modulus of elasticity and Poisson's ratio were measured through a compression test using a texture analyzer. The shear modulus was calculated from the modulus of elasticity and Poisson's ratio. The density was measured using a water pycnometer method. The coefficient of restitution was measured using a collision test, and the static and dynamic friction coefficients were measured using a inclined plane test. Each test was repeated 3-5 times except for density measurement, and the results were analyzed using mean values. Results: Poisson's ratios for the pepper fruit and pepper stem were 0.295 and 0.291, respectively. Elastic moduli of the pepper fruit and pepper stem were $1.152{\times}10^7Pa$ and $3.295{\times}10^7Pa$, respectively, and the shear moduli of the pepper fruit and pepper stem were $4.624{\times}10^6Pa$ and $1.276{\times}10^7Pa$, respectively. The density of the pepper fruit and the pepper stem were $601.8kg/m^3$ and $980.4kg/m^3$, respectively. The restitution coefficients between pepper fruits, pepper stems, a pepper fruit and a pepper stem, a pepper fruit and plastic, and a pepper stem and plastic were 0.383, 0.218, 0.277, 0.399, and 0.148, respectively. The coefficients of static friction between pepper fruits, pepper stems, a pepper fruit and a pepper stem, a pepper fruit and plastic, and a pepper stem and plastic were 0.455, 0.332, 0.306, 0.364, and 0.404, respectively. The coefficients of dynamic friction between a pepper fruit and plastic and a pepper stem and plastic were 0.043 and 0.034, respectively.

동해 가스전 탄성파 자료에서 나타나는 AVO 반응의 한계점에 대한 고찰 (Study on the limitation of AVO responses shown in the seismic data from East-sea gas reservoir)

  • 신승일;변중무;최형욱;김건득;고승원;서영탁;차영호
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2008년도 공동학술대회
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    • pp.107-112
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    • 2008
  • 동해가스전과 같이 해저면 심부에 위치한 저류층의 경우 CMP 단면도 상에서 AVO 반응을 관찰하기가 어려운 경우가 종종 발생한다. 이렇게 심부저류층인 경우 고결성이 증가하기 때문에 매질의 공극유체가 가스로 치환되더라도 매질의 P파 속도가 크게 감소하지 않으며 이로 인해 AVO 반응 확인이 어렵다. 본 연구에서는 상.하부층의 포아송비를 달리하면서 포아송비의 차이가 작아질수록 입사각에 따른 반사진폭의 변화량이 작아져 AVO 반응이 미미해짐을 관찰하였다. 이 결과를 토대로 동해가스전의 AVO 반응의 한계점을 고찰하기 위해서 탄성파 자료와 물리검층 자료를 이용하여 고래 V 구조를 모사한 속도모델을 만들고 합성탄성파 탐사자료를 생성하였다. 매질의 성질을 이용하여 이론적으로 계산한 AVO 반응과 실제 합성탄성파 자료를 처리하여 얻은 AVO 반응을 비교한 결과, 상.하부층의 포아송비의 차이가 작을 경우 입사각에 따른 반사진폭 변화가 매우 작으며 잡음이나 전처리 과정 중에서 발생하는 진폭 왜곡에 의해 AVO 반응 특성이 가려짐을 확인할 수 있었다. 이러한 심부저류층의 AVO 분석의 한계점을 극복하기 위해서는 자료취득 단계부터 정확한 반사파 진폭을 획득해야 하며 자료처리 과정에서도 반사파 진폭을 보존할 수 있는 기술이 필요하다.

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Experimental studies on elastic properties of high density polyethylene-multi walled carbon nanotube nanocomposites

  • Fattahi, A.M.;Safaei, Babak;Qin, Zhaoye;Chu, Fulei
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.177-187
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    • 2021
  • The effect of nanoparticle volume fraction on the elastic properties of a polymer-based nanocomposite was experimentally investigated and the obtained results were compared with various existing theoretical models. The nanocomposite was consisted of high density polyethylene (HDPE) as polymeric matrix and 0, 0.5, 1 and 1.5 wt.% multi walled carbon nanotubes (MWCNTs) prepared using twin screw extruder and injection molding technique. Nanocomposite samples were molded in injection apparatus according to ASTM-D638 standard. Therefore, in addition to morphological investigations of the samples, tensile tests at ambient temperature were performed on each sample and stress-strain plots, elastic moduli, Poisson's ratios, and strain energies of volume units were extracted from primary strain test results. Tensile test results demonstrated that 1 wt.% nanoparticles presented the best reinforcement behavior in HDPE-MWCNT nanocomposites. Due to the agglomeration of nanoparticles at above 1 wt.%, Young's modulus, yielding stress, fracture stress, and fracture energy were decreased and Poisson's ratio and failure strain were increased.

Mechanical Properties and Modeling of Amorphous Metallic Fiber-Reinforced Concrete in Compression

  • Dinh, Ngoc-Hieu;Choi, Kyoung-Kyu;Kim, Hee-Seung
    • International Journal of Concrete Structures and Materials
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    • 제10권2호
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    • pp.221-236
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    • 2016
  • The aim of this paper is to investigate the compressive behavior and characteristics of amorphous metallic fiber-reinforced concrete (AMFRC). Compressive tests were carried out for two primary parameters: fiber volume fractions ($V_f$) of 0, 0.3, 0.6 and 0.8 %; and design compressive strengths of 27, 35, and 50 MPa at the age of 28 days. Test results indicated that the addition of amorphous metallic fibers in concrete mixture enhances the toughness, strain corresponding to peak stress, and Poisson's ratio at high stress level, while the compressive strength at the 28-th day is less affected and the modulus of elasticity is reduced. Based on the experimental results, prediction equations were proposed for the modulus of elasticity and strain at peak stress as functions of fiber volume fraction and concrete compressive strength. In addition, an analytical model representing the entire stress-strain relationship of AMFRC in compression was proposed and validated with test results for each concrete mix. The comparison showed that the proposed modeling approach can properly simulate the entire stress-strain relationship of AMFRC as well as the primary mechanical properties in compression including the modulus of elasticity and strain at peak stress.

Properties of self-compacted concrete incorporating basalt fibers: Experimental study and Gene Expression Programming (GEP) analysis

  • Majeed, Samadar S.;Haido, James H.;Atrushi, Dawood Sulaiman;Al-Kamaki, Yaman;Dinkha, Youkhanna Zayia;Saadullah, Shireen T.;Tayeh, Bassam A.
    • Computers and Concrete
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    • 제28권5호
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    • pp.451-463
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    • 2021
  • Inorganic basalt fiber (BF) is a novel sort of commercial concrete fiber which is made with basalt rocks. Previous studies have not sufficiently handled the behavior of self-compacted concrete, at elevated temperature, containing basalt fiber. Present endeavor covers experimental work to examine the characteristics of this material at high temperature considering different fiber content and applied temperature. Different tests were carried out to measure the mechanical properties such as compressive strength (fc), modulus of elasticity (E), Poisson's ratio, splitting tensile strength (fsplit), flexural strength (fflex), and slant shear strength (fslant) of HSC and hybrid concrete. Gene expression programming (GEP) was employed to propose new constitutive relationships depending on experimental data. It was noticed from the testing records that there is no remarkable effect of BF on the Poisson's ratio and modulus of elasticity of self-compacted concrete. The flexural strength of basalt fiber self-compacted concrete was not sensitive to temperature in comparison to other mechanical properties of concrete. Fiber volume fraction of 0.25% was found to be the optimum to some extend according to degradation of strength. The proposed GEP models were in good matching with the experimental results.

Characterization of 3D Printed Wrist Brace with Various Tilting Angles of Re-entrant Pattern Using Thermoplastic Elastomer

  • Ye-Eun Park;Hyejin Lee;Imjoo Jung;Sunhee Lee
    • 한국의류학회지
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    • 제46권6호
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    • pp.1074-1087
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    • 2022
  • This study reports an optimization of a 3D printed wrist brace (WB) for various tilting angles (0°, 45°, 90°) of the re-entrant (RE) pattern and thickness (2 mm, 4 mm) using thermoplastic polyurethane (TPU) filaments and thermoplastic elastomer (TPE) filaments. The actual printing time, weight, Poisson's ratio, and tensile property of the manufactured samples were analyzed. The results confirmed that the actual printing time and weight increased with increasing thickness, regardless of the filament type. All tilting angles of the WB showed a negative Poisson's ratio (NPR), the largest of which appeared at 90°. The results of the tensile property analysis showed that a 90° tilting angle also had the largest value of elongation and stress. From these results, we conclude that the most suitable wrist brace is one in which the actual printing time is low, the weight is minimized to a thickness of 2 mm, and the tilting angle of the RE pattern is 90° for good shock absorption. The choice of filaments may be decided upon according to the user's preference, since the TPU is stiff and the TPE is elastic.

Hydraulic fracture initiation pressure of anisotropic shale gas reservoirs

  • Zhu, Haiyan;Guo, Jianchun;Zhao, Xing;Lu, Qianli;Luo, Bo;Feng, Yong-Cun
    • Geomechanics and Engineering
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    • 제7권4호
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    • pp.403-430
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    • 2014
  • Shale gas formations exhibit strong mechanical and strength anisotropies. Thus, it is necessary to study the effect of anisotropy on the hydraulic fracture initiation pressure. The calculation model for the in-situ stress of the bedding formation is improved according to the effective stress theory. An analytical model of the stresses around wellbore in shale gas reservoirs, in consideration of stratum dip direction, dip angle, and in-situ stress azimuth, has been built. Besides, this work established a calculation model for the stress around the perforation holes. In combination with the tensile failure criterion, a prediction model for the hydraulic fracture initiation pressure in the shale gas reservoirs is put forward. The error between the prediction result and the measured value for the shale gas reservoir in the southern Sichuan Province is only 3.5%. Specifically, effects of factors including elasticity modulus, Poisson's ratio, in-situ stress ratio, tensile strength, perforation angle (the angle between perforation direction and the maximum principal stress) of anisotropic formations on hydraulic fracture initiation pressure have been investigated. The perforation angle has the largest effect on the fracture initiation pressure, followed by the in-situ stress ratio, ratio of tensile strength to pore pressure, and the anisotropy ratio of elasticity moduli as the last. The effect of the anisotropy ratio of the Poisson's ratio on the fracture initiation pressure can be ignored. This study provides a reference for the hydraulic fracturing design in shale gas wells.