• 제목/요약/키워드: Auxetic structure

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소듐 이온전지용 주석 음극의 안정화를 위한 PVdF 옥세틱 구조의 영향 (Effect of Auxetic Structure of PVdF on Tin Anode Stability for Na-ion Batteries)

  • 박진수
    • 한국분말재료학회지
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    • 제25권6호
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    • pp.507-513
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    • 2018
  • This study investigates the viability of using a Na-ion battery with a tin(Sn) anode to mitigate the vulnerability caused by volume changes during discharge and charge cycling. In general, the volume changes of carbon material do not cause any instability during intercalation into its layer structure. Sn has a high theoretical capacity of $847mAh\;g^{-1}$. However, it expands dramatically in the discharge process by alloying Na-Sn, placing the electrode under massive internal stress, and particularly straining the binder over the elastic limit. The repeating strain results in loss of active material and its electric contact, as well as capacity decrease. This paper expands the scope of fabrication of Na-ion batteries with Sn by fabricating the binder as an auxetic structure with a unique feature: a negative Poisson ratio (NPR), which increases the resistance to internal stress in the Na-Sn alloying/de-alloying processes. Electrochemical tests and micrograph images of auxetic and common binders are used to compare dimensional and structural differences. Results show that the capacity of an auxetic-structured Sn electrode is much larger than that of a Sn electrode with a common-structured binder. Furthermore, using an auxetic structured Sn electrode, stability in discharge and charge cycling is obtained.

리엔트런트 패널의 전면볼록성에 대한 정량적 해석

  • 허정민;이지환
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.228-233
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    • 2016
  • Auxetic material is a material which has negative Poisson's ratio(NPR). Auxetic material shows some distinctive property like high energy absorbing property and high shear modulus. Among these, synclastic curvature is very interesting characteristic. When synclastic-curvature-material bends, it changes its shape like dome, contrary to non-auxetic material which changes its shape like saddle(anticlastic). This distinctive property could make it easy to manufacture curved structure like nose cone or wing panel in aerospace engineering. In this study, we studied a quantitative analysis about synclastic curvature of re-entrant panel with finite element model. We suggested a concept 'Degree of Synclasticity(DOS)', which means a ratio of curvature of load-direction and load-orthogonal direction. We studied the variation of DOS with two factor, unit cell inner angle(${\theta}$) and load position angle(${\phi}$). DOS decreases as ${\theta}$ increases because the unit cell goes out of auxetic-shape. As ${\phi}$ varies, DOS changes in a large range. So proper optimization of ${\phi}$ would be needed for application.

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EDISON 프로그램을 사용한 3차원 팽창 피라미드 구조의 최적화 연구 (A study on the optimization of three-dimensional auxetic pyramid structure by using EDISON program)

  • 김규영;김수호;윤기원;김현규
    • 한국항공우주학회지
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    • 제45권9호
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    • pp.807-815
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    • 2017
  • 팽창(auxetic) 구조물은 음의 프와송 비로 거동하는 구조체로, 에너지 흡수 및 파괴 인성 등이 높은 것으로 알려져 있다. 본 논문에서는 최적화의 목적을 음의 프와송비가 높으며 50 N/mm 이상의 강성을 갖는 팽창 구조를 설계하고자한다. 길이, 두께, 각도를 설계 인자로 정의하였고, 응력, 프와송 비 그리고 강성을 반응 요소로서 정의하였다. Box-Behnken 방법을 사용하여 4인자, 3수준 실험 설계를 수행하였고, Edison 프로그램 중 CSD_EPLAST를 사용하여 유한요소 해석을 수행하였다.

3D Auxetic Pyramid 구조의 최적화 연구 (A Study on Optimization of 3D Auxetic Pyramid Structure)

  • 김규영;김수호;윤기원
    • EDISON SW 활용 경진대회 논문집
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    • 제6회(2017년)
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    • pp.241-250
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    • 2017
  • Auxetic is a structure that behave as negative Poisson's ratio. It is known for high mechanical property like energy absorption and destruction toughness so far. In this paper, we aimed to design auxetic structure which has small internal energy when force is applied and high NPR and over 50N/mm stiffness by using optimization method. We defined length(L), thickness(t), angle(${\theta}_1$, ${\theta}_2$) as design factors and also von-Mises stress, NPR, stiffness as reaction factors. We used Box-Behnken method and conducted 4factors - 3levels experiment design. We also analyzed each models by using CSD_EPLAST, Edison program, and did extra analysis for more accurate results. Finally, we found out the optimal design factors which is satisfied aimed value and increased reliability through factor analysis and validity verification.

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음의 각을 가지는 허니컴 스포크를 사용한 비 공압타이어의 접지압 분포 (Contact Pressure of Non-Pneumatic Tires with Auxetic Honeycomb Spoke)

  • 김광원;김두만
    • 항공우주시스템공학회지
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    • 제4권2호
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    • pp.1-9
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    • 2010
  • An airless tire has advantages over the conventional pneumatic tire in terms of flat proof and maintenance free. According to the recently disclosed inventions on the airless tire, non-pneumatic tire (NPT) consists of the flexible polygon spokes. Considering the NPT structure, the spokes undergo the tension-compression cyclic loading while the tire rolls. Therefore the spokes of NPT are required to have both stiffness and resilience under the cyclic tensile-compressible loading. In general, if a material has a high stiffness, it shows a low elastic strain limit. In this paper, using the auxetic honeycomb structure with negative poissons's ratio, the spokes of NPT tire are designed to have both stiffness and resilience. Finite element based numerical simulation of the contact pressure of a NPT is carried out with ABAQUS.

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채우기 밀도별 형상 기억 TPU 3D 프린팅 Re-entrant 스트립의 특성 분석 (Characterization of 3D Printed Re-entrant Strips Using Shape Memory Thermoplastic Polyurethane with Various Infill Density)

  • 정임주;이선희
    • 한국의류산업학회지
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    • 제24권6호
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    • pp.812-824
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    • 2022
  • This study proposes to develop a 3D printed re-entrant(RE) strip by shape memory thermoplastic polyurethane that can be deformed and recovered by thermal stimulation. The most suitable 3D printing infill density condition and temperature condition during shape recovery for mechanical behavior were confirmed. As the poisson's ratio indicated, the higher the recovery temperature, the closer the poisson's ratio to zero and the better the auxetic properties. After recovery testing for five minutes, it appeared that the shape recovery ratio was the highest at 70℃. The temperature range when the shape recovery ratio appeared to be more than 90% was a recovery temperature of more than 50℃ and 60℃ when deformed under a constant load of 100 gf and 300 gf, respectively. This indicated that further deformation occurred after maximum recovery when recovered at a temperature of 80℃, which is above the glass transition temperature range. As for REstrip by infill density, a shape recovery properties of 100% was superior than 50%. Additionally, as the re-entrant structure exhibited a shape recovery ratio of more than 90%, and exhibited auxetic properties. It was confirmed that the infill density condition of 100% and the temperature condition of 70℃ are suitable for REstrips for applying the actuator.

빔 요소를 이용한 리엔트런트 오그제틱 구조에 대한 전산구조설계

  • 신재광;서동식
    • EDISON SW 활용 경진대회 논문집
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    • 제4회(2015년)
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    • pp.197-200
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    • 2015
  • 푸아송비(poisson's ratio)는 종방향 변형률에 대한 횡방향 변형률의 비로, 우리 주위 대부분의 재료들은 양의 푸아송비를 지닌다. 그러나 재료가 특정한 격자구조를 이루도록 설계할 경우 구성물질이 양의 푸아송비를 가지더라도 거시적으로는 음의 푸아송비를 구현할 수 있으며, 이러한 극한물성물질(metamaterial)을 오그제틱 물질(auxetic material)이라고 부른다. 이전까지 오그제틱 물질을 구현하기 위한 많은 메커니즘들이 개발되고 역학적, 수치적으로 해석되어 왔다. 이 논문에서는 가장 대표적인 오그제틱 구조인 리엔트런트(re-entrant) 오그제틱 구조를 빔 구조물로 모델링하여 유한요소해석을 수행하고 주요 설계 변수인 리엔트런트 각에 따라서 푸아송비와 유효 탄성계수가 어떻게 변화하는지 확인하였다.

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소프트 로봇용 4D 프린팅 소재 (4D Printing Materials for Soft Robots)

  • 이선희
    • 한국의류산업학회지
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    • 제24권6호
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    • pp.667-685
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    • 2022
  • 본 원고는 소프트 로봇용 4D 프린팅 소재와 어그제틱 구조체에 대한 연구 동향을 정리한 것이다. 먼저 4D 프린팅 소재의 형상 변화 거동을 형상 변화와 형상기억 소재, 이중, 삼중, 다중 형상기억 효과, 접힘과 굽힘, 표면지형별로 구분하여 알아보았다. 형상 변화와 형상기억 소재 등 열이나 수분의 자극에 가역적/비가역적 혹은 규칙적/불규칙적 형상 변형이 가능할 수 있다. 다음으로, 차원별 형상이동 유형에 따른 특성과 물성에 대해 알아본 바, 1차원에서 다차원으로의 형상이동을 1D-1D 팽창/수축, 1D-2D 접힘/굽힘, 1D-3D 접힘 (1D-to-3D folding)으로 구분할 수 있다. 2차원에서 형상이동은 2D-2D 굽힙, 2D3D 굽힘/접힘/꼬임/표면말림/표면지형변화/굽힘과 꼬임, 3차원에서 다차원으로의 형상이동은 3D-3D 굽힙과 3D-3D 선형/비선형 거동으로 구분할 수 있다. 마지막으로 4D 프린팅 메타구조체 중 힌지 구조체를 적용한 KinetiX는 단일단위 터셀레이션과 다중단위 터셀레이션으로 모델링할 수 있고, 평면 및 공간 변환이 용이하고, 컨포머블 헬멧에 적용할 수 있다. 키리가미 구조체를 기본으로 한 공압형 어그제틱 구조체는 역설계 기반 구조체로써 굽힘각도를 제어하는 알고리즘으로 설계할 수 있다. 설계 후 3D 프린팅하여 TPU 멤브레인으로 프로토 타입을 제조하였고, 압력을 낮추면서 원하는 3차원 형상으로 완성될 수 있음을 확인하였다. 온도나 습도 등의 외부자극요소에 따라 형상이나 물성을 변화할 수 있는 재료를 사용하여 변형가능한 3차원 구조체로 성형한 4D 프린팅 소재를 이용하여 상지, 하지, 손, 발 등 소프트 로봇의 외골격(exoskeleton) 소재에 적용할 수 있을 것이다. 즉 자세제어, 상황인식, 동작신호 생성 등 다양한 환경에 대응하여 착용자의 움직임에 고하중, 고기동성, 운동지속성을 지원하는 기능을 갖는 소프트 로봇용 4D 프린팅 소재는 헬스케어 웨어러블 의류 제품화 개발로의 용도 전개가 가능할 것이다. 특히 4D 프린팅 소프트 소재 및 공정개발 분야는 일상 생할 보조용이나 재활치료용 의류를 개발하기 위한 3D 프린팅 소재 및 공정의 원천 기술에 해당하므로 이와 관련한 연구의 기초 자료로서 활용되기를 기대한다.

생체모방 접근법을 반영한 현대 패션의 유기적 형태 생성 (Organic Form Generation Reflecting a Biomimetic Approach in Contemporary Fashion)

  • 노주현
    • 한국의류학회지
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    • 제46권5호
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    • pp.927-943
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    • 2022
  • This study explores the organic form generation method, which reflects the evolving biomimetic approaches converging in fashion technology and considers the characteristics of the organic relationship between the body and the clothing to be represented in contemporary fashion. A literature review on biomimetic architecture and design-related theory and a case study on biomimetic fashion were both conducted. Images, articles, and data related to biomimicry fashion and clothing, including the increase in virtual fashion cases around 2020, were analyzed based on the literature review. Biomimicry was used to derive interdisciplinary similarities in the organic morphogenesis principle, and the result was categorized as a network system, folds and unfolds, pneumatic structures, auxetic growth, and membranes. The biomimetic fashion characteristics, including externalization of the body's interior, expansion of the body structure and silhouette, body protection, independence from the body, and post-human expression through virtualization, were analyzed. Morphogenetic processes performed through biomimetic vision are expected to aid in generating research on the possibility of mass production or popularization in the future through various experimental technical studies.

Nonlinear static analysis of composite cylinders with metamaterial core layer, adjustable Poisson's ratio, and non-uniform thickness

  • Eipakchi, Hamidreza;Nasrekani, Farid Mahboubi
    • Steel and Composite Structures
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    • 제43권2호
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    • pp.241-256
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    • 2022
  • In this article, an analytical procedure is presented for static analysis of composite cylinders with the geometrically nonlinear behavior, and non-uniform thickness profiles under different loading conditions by considering moderately large deformation. The composite cylinder includes two inner and outer isotropic layers and one honeycomb core layer with adjustable Poisson's ratio. The Mirsky-Herman theory in conjunction with the von-Karman nonlinear theory is employed to extract the governing equations which are a system of nonlinear differential equations with variable coefficients. The governing equations are solved analytically using the matched asymptotic expansion (MAE) method of the perturbation technique and the effects of moderately large deformations are studied. The presented method obtains the results with fast convergence and high accuracy even in the regions near the boundaries. Highlights: • An analytical procedure based on the matched asymptotic expansion method is proposed for the static nonlinear analysis of composite cylindrical shells with a honeycomb core layer and non-uniform thickness. • The effect of moderately large deformation has been considered in the kinematic relations by assuming the nonlinear von Karman theory. • By conducting a parametric study, the effect of the honeycomb structure on the results is studied. • By adjusting the Poisson ratio, the effect of auxetic behavior on the nonlinear results is investigated.