• 제목/요약/키워드: indentation force

검색결과 128건 처리시간 0.026초

On the dynamics of hockey stick after contacting with the ball

  • Yue Jia
    • Advances in concrete construction
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    • 제15권4호
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    • pp.287-301
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    • 2023
  • Hockey games attracts many fans around the world. This game requires a specific type of ball and a stick for controlling the motion and trace of the ball. This control of motion involves hitting the ball which is a direct intensive dynamic loading. The impact load transferred directly to the hand of the player and in the professional player may cause long term medical problems. Therefore, dynamic motion of the stick should be understood. In the current study, we analyze the dynamic motion of a hockey stick under impact loading from a hockey ball. In doing so, the stick geometry is simplified as a beam structure and quasi-2D relations of displacement is applied along with classical linear elasticity theory for isotropic materials. The governing equations and natural boundary condition are extracted using Hamilton's principle. The final equations in terms of displacement components are solved using Galerkin's numerical method. The results are presented using indentation and contact force values for variations of different parameters.

사파이어 화학기계적 연마에서 결정 방향이 재료제거 특성에 미치는 영향 (Effect of Crystal Orientation on Material Removal Characteristics in Sapphire Chemical Mechanical Polishing)

  • 이상진;이상직;김형재;박철진;손근용
    • Tribology and Lubricants
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    • 제33권3호
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    • pp.106-111
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    • 2017
  • Sapphire is an anisotropic material with excellent physical and chemical properties and is used as a substrate material in various fields such as LED (light emitting diode), power semiconductor, superconductor, sensor, and optical devices. Sapphire is processed into the final substrate through multi-wire saw, double-side lapping, heat treatment, diamond mechanical polishing, and chemical mechanical polishing. Among these, chemical mechanical polishing is the key process that determines the final surface quality of the substrate. Recent studies have reported that the material removal characteristics during chemical mechanical polishing changes according to the crystal orientations, however, detailed analysis of this phenomenon has not reported. In this work, we carried out chemical mechanical polishing of C(0001), R($1{\bar{1}}02$), and A($11{\bar{2}}0$) substrates with different sapphire crystal planes, and analyzed the effect of crystal orientation on the material removal characteristics and their correlations. We measured the material removal rate and frictional force to determine the material removal phenomenon, and performed nano-indentation to evaluate the material characteristics before and after the reaction. Our findings show that the material removal rate and frictional force depend on the crystal orientation, and the chemical reaction between the sapphire substrate and the slurry accelerates the material removal rate during chemical mechanical polishing.

교각에 작용하는 설계선박충돌력 산정에 관한 연구 I : 평균충돌력 (A Study for the Evaluation of Ship Collision Forces for the Design of Bridge Pier I : Mean Collision Force)

  • 이계희;홍관영
    • 대한토목학회논문집
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    • 제31권3A호
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    • pp.199-206
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    • 2011
  • 현재 국내에서 사용되고 있는 교량의 선박충돌력에 대한 설계기준은 Woisin의 실험으로부터 제안된 평균충돌력을 적용한 AASHTO LRFD에 기반을 두고 있다. 이러한 평균충돌력의 보수성을 평가하기 위하여, 본 연구에서는 비선형 유한요소해석을 토대로 선박의 질량-가속도의 관계, 선수의 변형-운동에너지의 관계를 이용하여 선수충돌시 발생하는 평균충돌력을 산정하고 이를 AASHTO 설계기준과 비교하였다. 그 결과, 선박의 크기에 따른 평균충돌력의 변화는 해석에서 얻어진 평균충돌력에 비해 매우 보수적이지만 경향은 일치하는 것으로 나타났다. 그러나 속도에 따른 평균충돌력의 변화는 충돌속도에 비례하는 설계기준의 값과는 달리 선수의 소성거동에 지배를 받는 것으로 나타났다.

적층방법에 따른 복합적층판의 저속충격거동 조사 (Investigation of Low Velocity Impact Behavior of Laminated Composite Plates Considering the Stacking Method)

  • 김승덕;권숙준
    • 한국공간구조학회논문집
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    • 제10권4호
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    • pp.75-83
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    • 2010
  • 복합적층판은 다른 금속재료에 비해 높은 비강도, 비강성 등의 우수한 역학적 특성을 지니므로, 최근 다양한 분야에서 사용하고 있다. 그러나 이러한 복합적층판은 충격에 약하다는 단점이 있다. 그리하여 복합적층판의 충격거동에 대한 많은 연구가 이루어지고 있다. 충격거동을 조사하기 위해서는 우선 충격체와 복합적층판사이의 접촉력을 계산하여야 한다. 접촉력을 알기 위해서는 운동방정식, 복합적층판의 운동방정식 그리고 압입량에 관한 관계식을 동시에 풀어야 한다. 본 연구에서는 고전적인 헤르츠식, 썬식, 썬&양식 그리고 썬&탄식을 포함한 유한요소프로그램을 이용하여 복합적층판의 저속충격거동을 조사한다.

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암반 커팅 스플리팅 공법의 적정 압입력 추산을 위한 분석해 (Estimating and Analyzing the Appropriate Pressing Force of the Rock Cutting Splitting Method)

  • 이상민;김문규;조정우;유상화
    • 터널과지하공간
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    • 제31권6호
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    • pp.415-427
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    • 2021
  • 본 기술보고는 개발 중인 암반 커팅 스플리팅 공법을 간략히 소개하였다. 이 공법은 암반 커팅 공정 후 블럭을 스플리팅하여 암반을 굴착하는 공법이다. 암반면의 커팅 지오메트리를 설계한 후 치즐을 압입하여 암석블록을 제거하는 방식이다. 이 때 적절하게 커팅블록이 설계되어야 원활한 암석블록 하단부에 인장균열이 원활히 전파된다. 인장균열 성장에 필요한 파괴인성 모드1을 이용하여 암석블럭의 스플리팅에 필요한 압입력을 추산하는 분석해를 고안하였다. 굴착기의 유압브레이커의 타격력을 분석하였고, 암석블록 설계 지오메트리에 따라 시공가능한 굴착기 등급을 분석하였다.

Impact response of a novel flat steel-concrete-corrugated steel panel

  • Lu, Jingyi;Wang, Yonghui;Zhai, Ximei;Zhou, Hongyuan
    • Steel and Composite Structures
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    • 제42권2호
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    • pp.277-288
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    • 2022
  • A novel flat steel plate-concrete-corrugated steel plate (FS-C-CS) sandwich panel was proposed for resisting impact load. The failure mode, impact force and displacement response of the FS-C-CS panel under impact loading were studied via drop-weight impact tests. The combined global flexure and local indentation deformation mode of the FS-C-CS panel was observed, and three stages of impact process were identified. Moreover, the effects of corrugated plate height and steel plate thickness on the impact responses of the FS-C-CS panels were quantitatively analysed, and the impact resistant performance of the FS-C-CS panel was found to be generally improved on increasing corrugated plate height and thickness in terms of smaller deformation as well as larger impact force and post-peak mean force. The Finite Element (FE) model of the FS-C-CS panel under impact loading was established to predict its dynamic response and further reveal its failure mode and impact energy dissipation mechanism. The numerical results indicated that the concrete core and corrugated steel plate dissipated the majority of impact energy. In addition, employing end plates and high strength bolts as shear connectors could prevent the slip between steel plates and concrete core and assure the full composite action of the FS-C-CS panel.

Nanoprobing Charge Transport Properties of Strained and Indented Topological Insulator

  • Hwang, Jin Heui;Kwon, Sangku;Park, Joonbum;Lee, Jhinhwan;Kim, Jun Sung;Lyeo, Ho-Ki;Park, Jeong Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.128.1-128.1
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    • 2013
  • We investigated the correlation between electrical transport and mechanical stress in $Bi_2Te_2Se$ by using a conductive probe atomic force microscopy in an ultra-high vacuum environment. Uniform distribution of measured friction and current were observed over a single quintuple layer terrace, which is an indication of the uniform chemical composition of the surface. By measuring the charge transport of $Bi_2Te_2Se$ surface as a function of the load applied by a tip to the sample, we found that the current density varies with applied load. The variation of current density was explained in light of the combined effect of the changes in the in-plane conductance and spin-orbit coupling that were theoretically predicted. We suppose that the local density of states is modified by tip-induced strain, but topological phase still remains. We exposed a clean topological insulator surface by tip-induced indentation. The surface conductance on the indented $Bi_2Te_2Se$ surface was studied, and the role of surface oxide on the surface conductance is discussed.

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복합적층판의 초기응력에 의한 충격거동 특성 (Characteristic of Impact Behavior of Laminated Composite Plates due to Initial Stress)

  • 김승덕;강주원;권숙준
    • 한국공간구조학회논문집
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    • 제11권3호
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    • pp.77-83
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    • 2011
  • 복합적층판은 다른 금속재료에 비해 높은 비강도, 비강성 등의 우수한 역학적 특성을 지니므로 최근 다양한 분야에서 사용하고 있다. 그러나 이러한 복합적층판은 일반 금속재료에 비해 충격에 약하다는 단점이 있다. 이 점을 해결하기 위한 연구는 많은 연구자들에 의해 다양하게 시도되고 있다. 본 연구는 복합적층판에 초기응력을 도입하여 충격거동 특성을 파악한다. 고전적인 이론식인 Hertz의 접촉법칙과 실험식인 Sun과 Tan의 압입법칙을 포함한 유한요소프로그램을 이용하여 복합적층판의 초기응력에 의한 충격거동 특성을 조사한다.

나노압흔시 응력에 따른 결정립계거동의 분자역학모사 (MOLECULAR DYNAMICS SIMULATION OF STRESS INDUCED GRAIN BOUNDARY MIGRATION DURING NANOINDENTATION EXPERIMENTS)

  • 윤장혁;김성진;장호
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2003년도 추계학술발표강연 및 논문개요집
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    • pp.39-39
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    • 2003
  • Molecular dynamics (MD) simulation was performed to study the stress induced grain boundary migration caused by the interaction of dislocations with a gain boundary. The simulation was carried out in a Ni block (295020 atoms) with a ∑ = 5 (210) grain boundary and an embedded atom potential for Ni was used for the MD calculation. Stress was provided by indenting a diamond indenter and the interaction between Ni surface and diamond indenter was assumed to have a fully repulsive force to emulate a faction free surface. Results showed that the indentation nucleated perfect dislocations and the dislocations produced stacking faults in the form of a parallelepiped tube. The parallelepiped tube consisted of two pairs of parallel dislocations with Shockley partials and was produced successively during the penetration of the indenter. The dislocations propagated along the parallelepiped slip planes and fully merged onto the ∑ = 5 (210) grain boundary without emitting a dislocation on the other grain. The interaction of the dislocations with the grain boundary induced the migration of the grain boundary plane in the direction normal to the boundary plane and the migration continued as long as the dislocations merged onto the grain boundary plane. The detailed mechanism of the conservative motion of atoms at the gram boundary was associated with the geometric feature of the ∑ = 5 (210) grain boundary.

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Impact response of steel-concrete composite panels: Experiments and FE analyses

  • Zhao, Weiyi;Guo, Quanquan;Dou, Xuqiang;Zhou, Yao;Ye, Yinghua
    • Steel and Composite Structures
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    • 제26권3호
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    • pp.255-263
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    • 2018
  • A steel-concrete composite (SC) panel typically consists of two steel faceplates and a plain concrete core. This paper investigated the impact response of SC panels through drop hammer tests and numerical simulations. The influence of the drop height, faceplate thickness, and axial compressive preload was studied. Experimental results showed that the deformation of SC panels under impact consists of local indentation and overall bending. The resistance of the panel significantly decreased after the local failure occurred. A three-dimensional finite element model was established to simulate the response of SC panels under low-velocity impact, in which the axial preload could be considered reasonably. The predicted displacements and impact force were in good agreement with the experimental results. Based on the validated model, a parametric study was conducted to further discuss the effect of the axial compressive preload.