• 제목/요약/키워드: Fiber Orientation Analysis

검색결과 187건 처리시간 0.029초

Optimized design for perforated plates with quasi-square hole by grey wolf optimizer

  • Chaleshtari, Mohammad H. Bayati;Jafari, Mohammad
    • Structural Engineering and Mechanics
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    • 제63권3호
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    • pp.269-280
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    • 2017
  • One major concern that has occupied the mind of the designers is a structural failure as result of stress concentration in the geometrical discontinuities. Understanding the effective parameters contribute to stress concentration and proper selection of these parameters enables the designer get to a reliable design. In the analysis of perforated isotropic and orthotropic plates, the effective parameters on stress distribution around holes include load angle, curvature radius of the corner of the hole, hole orientation and fiber angle for orthotropic materials. This present paper tries to examine the possible effects of these parameters on stress analysis of infinite perforated plates with central quasi-square hole applying grey wolf optimizer (GWO) inspired by the particular leadership hierarchy and hunting behavior of grey wolves in nature, and also the present study tries to introduce general optimum parameters in order to achieve the minimum amount of stress concentration around this type of hole on isotropic and orthotropic plates. The advantages of grey wolf optimizer are stout, flexible, simple, and easy to be enforced. The used analytical solution is the expansion of Lekhnitskii's solution method. Lekhnitskii applied this method for the stress analysis of anisotropic plates containing circular and elliptical holes. Finite element numerical solution is employed to examine the results of present analytical solution. Results represent that by selecting the aforementioned parameters properly, fewer amounts of stress could be achieved around the hole leading to an increase in load-bearing capacity of the structure.

패션비즈니스에서 소비자의 에코라벨 인지도가 기업연상과 구매의도에 미치는 영향연구 (Effect of eco-label recognition on corporate association and purchasing intention in fashion business)

  • 신상무;김민정
    • 복식문화연구
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    • 제23권3호
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    • pp.523-536
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    • 2015
  • Corporate association-which refers to consumers' beliefs, knowledge, perceptions, and evaluations of a corporation -can affect consumers' purchasing intentions. Corporate association consists of corporate ability association and corporate social responsibility association. Corporate ability association refers to a company's product quality, corporate innovation, productivity, consumer orientation, and after service. Corporate social responsibility association, which refers to the social perspective a company has of its responsibility to society, can affect corporate image and consumers' purchasing intentions. Eco-labeling for protecting and sustaining the environment is one of the important green marketing strategies in the fashion business that can influence corporate association and consumers' purchasing intentions. The purpose of this study was to investigate the effect of consumers' eco-label recognition on their corporate association and intentions to purchase eco-friendly fashion products. Questionnaires were distributed to consumers. The 263 usable questionnaires that were returned were analyzed by descriptive statistics, Cronbach's alpha, factor analysis, regression analysis, and t-test. The results were as follows: There was a significant effect of eco-label recognition on corporate association (ability association and social responsibility association). Eco-label recognition and corporate association were found to significantly affect consumers' purchasing intentions. Regarding the eco-friendly fashion product buying experience, there was no significant difference on corporate association and buying intention, but there was significant difference on eco-label recognition.

BSCCO 선재에서 극점도를 통한 초전도심의 깊이에 따른 집합조직 연구 (A Study of Texture Through the Depth of Core for BSCCO Superconductor Tape with Pole Figure Analysis)

  • 지봉기;주진호;나완수;류경우;박노진
    • 한국전기전자재료학회논문지
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    • 제14권6호
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    • pp.499-504
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    • 2001
  • We evaluated the degree of texture through depth of the superconductor core of Bi-Sr-Ca-Cu-O(BSCCO) superconductor tape. The degree of texture was characterized by pole figure analysis indicating that the degree of texture varied significantly with depth of the superconductor core. It was observed that the degree of texture was higher near the interface than inside the superconductor core. Specifically, as getting near to the center from the sheath/core interface, the orientation of BSCCO became dispersed from normal direction(ND) which, in turn, resulted in the degradation of <001>-fiber texture. In addition, the <001> texture was non-uniform an, better texture was developed along rolling direction(RD), compared to transverse direction(TD). Microstructural investigation showed that grain alignment was locally degraded by the existence of second phases. I was observed that larger grain size and better texturing were developed near the relatively straight interface compared to those inside the superconducting core. Based on our study, the region near the interface is thought to carry significant current compared to that inside the core.

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Analysis of laminated composite plates based on different shear deformation plate theories

  • Tanzadeh, Hojat;Amoushahi, Hossein
    • Structural Engineering and Mechanics
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    • 제75권2호
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    • pp.247-269
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    • 2020
  • A finite strip formulation was developed for buckling and free vibration analysis of laminated composite plates based on different shear deformation plate theories. The different shear deformation theories such as Zigzag higher order, Refined Plate Theory (RPT) and other higher order plate theories by variation of transverse shear strains through plate thickness in the parabolic form, sine and exponential were adopted here. The two loaded opposite edges of the plate were assumed to be simply supported and remaining edges were assumed to have arbitrary boundary conditions. The polynomial shape functions are applied to assess the in-plane and out-of-plane deflection and rotation of the normal cross-section of plates in the transverse direction. The finite strip procedure based on the virtual work principle was applied to derive the stiffness, geometric and mass matrices. Numerical results were obtained based on various shear deformation plate theories to verify the proposed formulation. The effects of length to thickness ratios, modulus ratios, boundary conditions, the number of layers and fiber orientation of cross-ply and angle-ply laminates were determined. The additional results on the same effects in the interaction of biaxial in-plane loadings on the critical buckling load were determined as well.

반평면 전단하중력하에서 곡면형상 접합면을 가지는 폼과 복합재료 접합부의 계면크랙에 관한 연구 (The Curved Interfacial Crack Analysis between Foam and Composite Materials under Anti-plane Shear Force)

  • 박상현;전흥재
    • Composites Research
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    • 제13권4호
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    • pp.67-74
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    • 2000
  • 계면크랙으로부터 먼 거리에 일정한 반평면(anti-plane) 전단력이 가해지는 경우에 대해서 복소변수 변위함수(complex variable displacement function)를 이용하여 곡면형상의 접합면을 가지는 폼과 복합재료의 접합재료에 대한 일반해를 고찰하였다. 점탄성 모델을 표현하기 위하여 Kelvin-Maxwell 모델을 제시하였으며, 폼의 점탄성을 나타내는 수학적 모델을 라플라스 변환을 이용하여 처리하였다. 폼의 점탄성 및 복합재료의 이방성을 고려하여 계면크랙에서의 응력세기계수를 예측하였다. 응력세기계수는 접합면의 곡률이 증가할수록 증가하는 경향을 보이며 시간이 지남에 따라 증가하다 일정값에 수렴하였다. 또한 폼과 복합재료 사이의 전단 강성계수비가 증가할수록 응력세기계수가 증가하였으며, 복합재료의 섬유방향이 응력세기계수의 변화에 미치는 영향은 점차 감소하였다.

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Buckling and stability analysis of sandwich beams subjected to varying axial loads

  • Eltaher, Mohamed A.;Mohamed, Salwa A
    • Steel and Composite Structures
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    • 제34권2호
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    • pp.241-260
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    • 2020
  • This article presented a comprehensive model to study static buckling stability and associated mode-shapes of higher shear deformation theories of sandwich laminated composite beam under the compression of varying axial load function. Four higher order shear deformation beam theories are considered in formulation and analysis. So, the model can consider the influence of both thick and thin beams without needing to shear correction factor. The compression force can be described through axial direction by uniform constant, linear and parabolic distribution functions. The Hamilton's principle is exploited to derive equilibrium governing equations of unified sandwich laminated beams. The governing equilibrium differential equations are transformed to algebraic system of equations by using numerical differential quadrature method (DQM). The system of equations is solved as an eigenvalue problem to get critical buckling loads and their corresponding mode-shapes. The stability of DQM in determining of buckling loads of sandwich structure is performed. The validation studies are achieved and the obtained results are matched with those. Parametric studies are presented to figure out effects of in-plane load type, sandwich thickness, fiber orientation and boundary conditions on buckling loads and mode-shapes. The present model is important in designing process of aircraft, naval structural components, and naval structural when non-uniform in-plane compressive loading is dominated.

20mm 범용탄약적재장비의 복합재 이중리드나선구조 설계 (Stress Analysis of Composite Double Lead Spiral in 20mm Universal Ammunition Loading System)

  • 제현민;김위대
    • Composites Research
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    • 제31권6호
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    • pp.340-346
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    • 2018
  • 본 연구에서는 20mm 범용탄약적재장비의 운행 시 탄약의 운동에 관여하는 이중리드나선의 설계를 위해 이중리드나선에 발생하는 응력과 변형에 대하여 ABAQUS 프로그램을 이용해서 해석한다. 해석을 위해 복합재를 적용한 나선형 물체의 회전 시 발생하는 응력 해석의 타당성을 확인한다. 이중리드나선의 재료를 일반 금속과 복합재로 적용하여 해석하고 모델을 복합재료로 대체 하였을 때 이점을 제시한다. 또한 복합재료의 적층각과 적층순서, 회전속도의 변경 시에 발생하는 응력과 변형을 예측하고, Tsai-Wu failure 이론에 해석결과를 적용하여 파손을 확인하며. 탄약적재시 스텝의 개발을 위한 복합재 이중나선구조의 설계결과를 제시한다.

Numerical analysis of stress wave of projectile impact composite laminate

  • Zhangxin Guo;Weijing Niu;Junjie Cui;Gin Boay Chai;Yongcun Li;Xiaodong Wu
    • Structural Engineering and Mechanics
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    • 제87권2호
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    • pp.107-116
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    • 2023
  • The three-dimensional Hashin criterion and user subroutine VUMAT were used to simulate the damage in the composite layer, and the secondary stress criterion was used to simulate the interlayer failure of the cohesive element of the bonding layer and the propagation characteristics under the layer. The results showed that when the shear stress wave (shear wave) propagates on the surface of the laminate, the stress wave attenuation along the fiber strength direction is small, and thus producing a large stress profile. When the compressive stress wave (longitudinal wave) is transmitted between the layers, it is reflected immediately instead of being transmitted immediately. This phenomenon occurs only when the energy has accumulated to a certain degree between the layers. The transmission of longitudinal waves is related to the thickness and the layer orientation. Along the symmetry across the thickness direction, the greater is the stress amplitude along the layer direction. Based on the detailed investigation on the impact on various laminated composites carried out in this paper, the propagation characteristics of stress waves, the damage and the destruction of laminates can be explained from the perspective of stress waves and a reasonable layering sequence of the composite can be designed against damage and failure from low velocity impact.

대퇴부 거동 해석 및 복합재료 보철물 설계 (Behavior Analysis of the Treated Femur and Design of Composite Hip Prosthesis)

  • 임종완;하성규
    • 대한의용생체공학회:의공학회지
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    • 제23권2호
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    • pp.119-130
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    • 2002
  • 무시멘트 인공 고관절 전치환술 후, 복합재료 스템을 갖는 대퇴골의 장기 거동과 인공 대퇴 보철물의 설계 성능을 분석하기 위하여 비선형 유한요소 프로그램이 개발되었다. 한 발로 서 있을 때의 관절 접촉 하중과 근육하중이 적용되었고, 816개의 brick요소를 갖는 타원형 단면의 복합재료 스템으로 치환된 대퇴골이 3차원 유한요소로 모델링 되었다. 프로그램을 사용하여 대퇴골의 밀도 변화, 응력분포, 상대미소운동이 plate cut과 bend mold와 같은 제작 방법에 대한 스템의 적층 각도 변경에 따라서 평가되었다. 결과는 코발트 크롭 합금, 티타늄 합금, 스테인레스 강과 같은 금속 재료보다 AS4/PEEK, T300/976과 같은 복합재료가 적은 골 흡수를 보였다. 대퇴골 보철물의 장기 안정성 증대는 적당한 복합재료의 적층과 적층 각도의 선택에 의하여 얻어질 수 있었다.

Melt-blown 방사에 의한 PP/Ba-ferrite 복합 부직포 제조시의 공정인자가 부직포의 특성에 미치는 영향 (Effect of Processing Factors on the Properties of Melt-blown PP/Ba-ferrite Composite Fabrics)

  • 한종헌;이동진;임형미;이승호;오성근
    • 공업화학
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    • 제17권3호
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    • pp.267-273
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    • 2006
  • Melt-blown 방사법으로 Ba-ferrite 포함하는 PP 복합수지를 방사하여 부직포 섬유를 제조하는 공정에서 방사공정인자와 부직포 특성과의 상관관계를 조사하였다. PP 수지와 Ba-ferrite 분말을 혼합한 후 단축 압출 성형기를 이용하여 펠렛 형태로 제조하고 Melt-blown 섬유 방사기를 이용하여 screw turning force (rpm)와 DCD (die-to-collector distance)를 변화시켜 Ba-ferrite 분말이 부직포 섬유의 기계적, 열적, 결정학적 및 자성 특성에 미치는 영향을 조사하였다. SEM 관찰을 통하여 방사 거리가 증가할수록 혹은 screw turning force가 감소할수록 부직포 섬유의 연신율이 증가하고, 섬유의 직경 및 인장강도가 감소하는 것을 알 수 있었고, XRD 측정 결과로부터 방사거리의 증가는 섬유의 결정성을 높이는 것으로 관찰되었다. 복합 부직포에서는 입자가 고분자와 분리되어 고분자와 입자간의 결합력이 떨어져 순수한 PP대비 인장강도가 감소하였다. Ba-ferrite 분말에 의한 부직포의 자성적 성질을 보면 방사거리에 따라 보자력, 최대 자화, 잔류 자화 값은 감소하였다. TGA 측정을 통한 부직포 섬유의 내열성 시험 결과는 방사거리의 감소에 따라 내열성이 증가하였으며 난연성은 Ba-ferrite 분말의 함량 증가에 따라 증가하였다.