• 제목/요약/키워드: Anisotropic Material Properties

검색결과 153건 처리시간 0.023초

횡등방성 원통 셸에 의한 수중 음파의 공명 산란 (Resonant Scattering of Underwater Acoustic Wave by Transversely Isotropic Cylindrical Shells)

  • 김진연
    • 소음진동
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    • 제7권3호
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    • pp.449-455
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    • 1997
  • A theoretical study is presented for the prediction of the scattering of obliquely incident plane acoustic wave by transversely isotropic cylindrical shells immersed in water. In dorder to illustrate the vailidity of the theory backscattering form functions are compared with the existing results for degenerated problems: the catterings by isotropic shell and transversely isotropic solid cylinder. The unidirectional fiber reinforced boron-aluminum composites are selected as a model of transversely isotropic materials having potential applications in practice. From the resonant scattering analysis of the partial backscattering form functions, the dispersion curves for fluid-borne Stoneley wave, guided wave along the shell, and the lowest three Lamb type waves can be found. The Lamb type dispersions are compared with those of the flat plate. The variation of anisotropy significantly affects the properties of circumferential waves. From these results, it can be possible to identify parametrically the material properties of anisotropic cylindrical targets.

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Evaluation of Elastic Properties of Anisotropic Cylindrical Tubes Using an Ultrasonic Resonance Scattering Spectroscopy

  • Kim, Jin-Yeon;Li, Zheng
    • 비파괴검사학회지
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    • 제30권6호
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    • pp.548-557
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    • 2010
  • An ultrasonic resonance scattering spectroscopy technique is developed and applied for reconstructing elastic constants of a transversely isotropic cylindrical component. Immersion ultrasonic measurements are performed on tube samples made from a boron/aluminum composite material to obtain resonance frequencies and dispersion curves of different guided wave modes propagating in the tube. Theoretical analysis on the acoustic resonance scattering from a transversely isotropic cylindrical tube is also performed, from which complete backscattering and resonance scattering spectra and theoretical dispersion curves are calculated. A sensitive change of the dispersion curves to the elastic properties of the composite tube is observed for both normal and oblique incidences; this is exploited for a systematic evaluation of damage and elastic constants of the composite tube samples. The elastic constants of two boron/aluminum composite tube samples manufactured under different conditions are reconstructed through an optimization procedure in which the residual between the experimental and theoretical phase velocities (dispersion curves) is minimized.

압밀조건이 지반재료의 공학적 성질에 미치는 영향 (Effects of Consolidation Mode on Engineering Properties of Geomaterials)

  • 김대규
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2004년도 춘계학술대회
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    • pp.39-41
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    • 2004
  • The engineering properties of the geomaterial, an essential material in construction engineering, are significantly influenced by consolidation mode, which is called inherent anisotropy. Speically cohesive soils feature the anisotropy mainly due to their flate-like minerals and chemical interactions. In this research, an experimental study was conducted for the investigation of the anisoropy. Three isotropic and four anisotropic consolidated-undrained triaxial compression tests were performed for the cohesive specimens with various stress ratios of consolidation. The effects of the consolidation mode for cohesive soils were presented and investigated in stress-strain behavior, pore water pressure, and undrained shear strength of the test results.

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비이차 비등방 항복함수를 이용한 리튬-이온 배터리 파우치의 이방성 및 성형성 예측 (Prediction of Anisotropy and Formability of Lithium-ion Battery Pouch Sheet using Non-quadratic Yield Function)

  • 김재승;문찬미;이형림;이명규
    • 소성∙가공
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    • 제32권3호
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    • pp.136-144
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    • 2023
  • This study analyzed the mechanical behavior of lithium-ion battery pouch material and predicted its formability. A homogenization method was used to evaluate the physical properties of the pouch, and a new hardening model was developed. The yield function for the plastic model was optimized, and the anisotropic property was determined. Also, the forming limits were measured and predicted using the M-K forming limit diagram. Finally, a square cup drawing experiment confirmed the accuracy of the measured mechanical properties and the formability calculation.

열분해유 유래 피치로부터 이방성 미세구조 코크스 제조 및 특성 평가 (Preparation and Characterization of Pitch based Coke with Anisotropic Microstructure Derived from Pyrolysis Fuel Oil)

  • 조종훈;김지홍;이영석;임지선;강석창
    • 공업화학
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    • 제32권6호
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    • pp.640-646
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    • 2021
  • 본 연구에서는 열분해유 유래 피치 합성 및 합성 피치로부터 이방성 미세구조를 갖는 코크스를 제조하고 그 특성을 평가하였다. 열분해유는 주로 방향족 고리가 2~3개로 구성된 분자로 이루어져 있어, 400 ℃ 이상의 온도에서 흡열반응인 축합중합으로 피치가 제조되었다. 코크스 반응기는 피치를 유동화 시키는 전처리 반응기, 코킹화 열에너지를 가해주는 preheater 및 코크스의 미세구조를 유도하는 코크스 드럼으로 구성되었으며, preheater의 온도를 400~490 ℃로 조절하여 제조된 피치로부터 코크스를 제조하고 편광현미경, XRD 및 Raman spectroscopy로 특성을 평가하였다. Preheater의 온도가 460 ℃에서 제조된 코크스는 이방성 미세조직이 flow 형태로 나타났으며, 높은 결정성으로 전기전도성이 72.0 S/cm이였다. 그리고 전도성 탄소 재료인 Super-P보다 대략 2.2배 높은 전기전도성을 나타냈다.

탄소재료 첨가에 의한 Polycarbonate의 기계적 물성 향상 및 기능화에 관한 연구 (Improved of Mechanical Properties and Functionalization of Polycarbonate by Adding Carbon Materials)

  • 김정근;최선호;고선호;곽이구;강성수
    • 한국기계가공학회지
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    • 제19권10호
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    • pp.59-67
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    • 2020
  • Polycarbonate thermoplastic composite materials are anisotropic and exhibit physical properties in the longitudinal direction. Therefore, the physical properties depend on the type and direction of reinforcements. The thermal conductivity, electrical conductivity, and resin impregnation can be controlled by adding carbon nanotubes to polycarbonate resin. However, the carbon fiber used as a reinforcing material is expensive, interfacial adhesion issues occur, and simulation values are different from actual values, making it difficult to perform mathematical analysis. However, carbon nanotubes have advantages such as light weight, rigidity, impact resistance, and reduced number of parts compared to metals. Due to these advantages, it has been applied to various products to reduce weight, improve corrosion resistance, and increase impact durability. As the content of carbon nanotubes or carbon fibers increases, the mechanical properties and antistatic and electromagnetic shielding performance improve. It is expected that the amount of carbon nanotubes or carbon fibers can be optimized and applied to various industrial products.

MnO$_2$가 첨가된 하이드로폰용 PbTiO$_3$계 세라믹스의 구조적 전기적 특성 (Structural and Electrical properties of MnO$_2$ added PbTiO$_3$system ceramics for Hydrophone)

  • 홍재일;유주현;박정흠;이두희;박창엽
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1994년도 추계학술대회 논문집
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    • pp.3-7
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    • 1994
  • In this study, to improve sintering condition, anisotropic Property(k$\_$t//k$\_$p/) of electromechanical coupling coefficients, and hydrostatic piezoelerlric constants d$\_$h/ and g$\_$h/, MnO$_2$impurity was added to the (Pb$\_$0.76/Ca$\_$0.24)[(Co$\_$$\frac{1}{2}$W$\_$$\frac{1}{2}$/)$\_$0.04/Ti$\_$0.96/]O$_3$ System ceramics for hydrophone. And the structural, electrical properties of them were investigated. As a results. tetragonality was decreased with MnO$_2$ additives and density was the highest value of 7.06(g/㎤) at H2-3 specimen. Electromechanical coupling coefficients of H2-3 specimen were k$\_$t/=49 and k$\_$p/ 0, which exibited the hightest hydrostatic piezoelectric constants of d$\_$h/=64.52[10$\^$-1/C/N] and g$\_$h/=35.92[10$\^$-3/ Vm/N].

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PZT-PSN 세라믹스의 WO3의 첨가량에 따른 압전 특성 (Piezoelectric Characteristics of PZT-PSN Ceramics Depending on WO3Addition)

  • 배숙희;김성곤;김철수;이경화;이상렬
    • 한국전기전자재료학회논문지
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    • 제15권9호
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    • pp.794-797
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    • 2002
  • Piezoelectric properties of PZT-PSN ceramics were investigated as a function of WO$_3$ addition from 0 wt% to 6.0 wt%. The dielectric and piezoelectric characteristics of PZT-PSN ceramics have been investigated at different calcination (80$0^{\circ}C$~90$0^{\circ}C$) and sintering (110$0^{\circ}C$~130$0^{\circ}C$) temperatures. The grain size was increased with the addition of WO$_3$and the sintering temperatures. Anisotropic properties of electromechanical coupling coefficient and piezoelectric coefficient are proven to be dependent on processing temperatures and amount of addition. At the specimen with 0.6 wt% WO$_3$ addition, using calcination temperature of 80$0^{\circ}C$ and sintering temperature of 110$0^{\circ}C$ , mechanical quality factor(Q$_{m}$) and electromechanical coupling coefficient(k$_{p}$) showed the excellent results of 1560 and 0.48, respectively Experimental results indicated that the PZT-PSN system ceramics with WO$_3$impurity could be effectively used for the microtransformer and actuator applications, etc.etc.

Scanning acoustic microscopy for material evaluation

  • Hyunung Yu
    • Applied Microscopy
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    • 제50권
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    • pp.25.1-25.11
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    • 2020
  • Scanning acoustic microscopy (SAM) or Acoustic Micro Imaging (AMI) is a powerful, non-destructive technique that can detect hidden defects in elastic and biological samples as well as non-transparent hard materials. By monitoring the internal features of a sample in three-dimensional integration, this technique can efficiently find physical defects such as cracks, voids, and delamination with high sensitivity. In recent years, advanced techniques such as ultrasound impedance microscopy, ultrasound speed microscopy, and scanning acoustic gigahertz microscopy have been developed for applications in industries and in the medical field to provide additional information on the internal stress, viscoelastic, and anisotropic, or nonlinear properties. X-ray, magnetic resonance, and infrared techniques are the other competitive and widely used methods. However, they have their own advantages and limitations owing to their inherent properties such as different light sources and sensors. This paper provides an overview of the principle of SAM and presents a few results to demonstrate the applications of modern acoustic imaging technology. A variety of inspection modes, such as vertical, horizontal, and diagonal cross-sections have been presented by employing the focus pathway and image reconstruction algorithm. Images have been reconstructed from the reflected echoes resulting from the change in the acoustic impedance at the interface of the material layers or defects. The results described in this paper indicate that the novel acoustic technology can expand the scope of SAM as a versatile diagnostic tool requiring less time and having a high efficiency.

Woven Type CFRP의 SHPB에 대한 동적 압축 물성 획득 및 검증 (Acquisition and Verification of Dynamic Compression Properties for SHPB of Woven Type CFRP)

  • 박기환;김연복;김정
    • 한국항공우주학회지
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    • 제48권5호
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    • pp.363-372
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    • 2020
  • 고 변형률 속도에 대한 소재의 동적 압축 물성은 고속 충돌 및 고속 성형 등 동적 환경에서의 유한요소 해석의 신뢰성 향상을 위해 필수적이다. 일반적으로 고 변형률 속도에 대한 소재의 동적 압축 물성은 SHPB(Split Hopkinson Pressure Bar) 장비를 통해 획득 가능하다. 본 연구에서는 최근 무인 항공기에 확대 적용되고 있는 Woven type CFRP(Carbon Fiber Reinforced Plastic) 소재에 대한 충돌 해석에 대응하기 위해 SHPB 장비를 활용하여 해당 소재의 동적 압축 물성을 획득하였다. 또한 Pulse shaper를 활용하여, Elastic-brittle 특성을 지니는 소재에 대한 일정한 변형률 속도 확보 및 실험 데이터에 대한 신뢰도를 향상시켰다. CFRP 소재의 경우 방향 별 기계적 물성이 다른 이방성 소재이므로 두께 방향과 면내 방향 시편을 제작하여 각각 실험을 수행하였다. SHPB 실험 결과 면내 방향 시편의 경우 일정한 변형률 속도 영역에 도달하기 전, 시편의 파단이 발생하여 데이터의 재현성 및 신뢰성 확보에 어려움이 있는 반면, 두께 방향의 시편의 경우 시편 전·후면 응력일치도가 우수하여 데이터 신뢰도가 높으며, 일정한 변형률 속도 영역을 획득할 수 있다. LS-dyna를 활용한 유한요소해석을 통해, 압력봉으로부터 측정되는 데이터는 시편과 압력봉의 변형에 의해 변형률이 과도하게 예측되는 것을 확인하였다.