• 제목/요약/키워드: Effect mechanism

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열 컴플라이언트 메커니즘의 위상 최적설계 (Topology Optimization of Thermal Actuated Compliant Mechanisms)

  • 이원구;임민규;박재용;한석영
    • 한국생산제조학회지
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    • 제19권4호
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    • pp.434-439
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    • 2010
  • A compliant mechanism is a mechanism that produces its motion by the flexibility of some or all of its members when input force or thermal load is applied. Whereas the topology optimizations based on homogenization and SIMP parameterization have been successfully applied for compliant mechanism design, ESO approach has been hardly considered yet for the optimization of these types of systems. In this paper, traditional ESO method is adopted to achieve the optimum design of a compliant mechanism for thermal load, since AESO method cannot consider the effect of both heat conduction and convection. Sensitivity number, a criterion for element removal in traditional ESO, was newly defined for input thermal loading. The procedure has been tested in numerical applications and compared with the results obtained by other methods to validate these approaches.

가변 강성 엑츄에이터인 재밍 메커니즘의 힘 체인 안정성 분석 (Force Chain Stability Analysis in Jamming Mechanism for Variable Stiffness Actuator)

  • 이정수;조영준;구자춘
    • 로봇학회논문지
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    • 제14권4호
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    • pp.326-332
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    • 2019
  • In the case of conventional soft robots, the basic stiffness is small due to the use of flexible materials. Therefore, there is a limitation that the load that can bear is limited. In order to overcome these limitations, a study on a variable stiffness method has been conducted. And it can be seen that the jamming mechanism is most effective in increasing the stiffness of the soft robot. However, the jamming mechanism as a method in which a large number of variable act together is not even theoretically analyzed, and there is no study on intrinsic principle. In this paper, a study was carried out to increase the stability of the force chain to increase the stiffness due to the jamming transition phenomenon. Particle size variables, backbone mechanisms were used to analyze the stability of the force chains. We choose a jamming mechanism as a variable stiffness method of a soft robot, and improve the effect of stiffness based on theoretical analysis, modeling FEM simulation, prototyping and experiment.

가변 휠 메커니즘을 가지는 필드 주행 로봇 설계 (Design of Field-Driving Robot with Variable Wheel Mechanism)

  • 이준성;김영석;김건중;유기호
    • 로봇학회논문지
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    • 제14권3호
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    • pp.186-190
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    • 2019
  • When problems occurred in the unstable and/or extreme terrain environment, formal field-driving robots were unable to provide any other options such as the transformation of the wheel and body structure, and so on. For such reason, this paper proposed a novel type of integrated wheel mechanism that can be operated as a conventional driving wheel mode and hybrid wheel-leg mode in order to be negotiated in an unstable terrain environment. The mechanical effect of the proposed variable wheel mechanism was analyzed considering the geometric constraint and power requirement of the actuator for the transformation. In addition, we designed and manufactured the prototype of field-driving robot, which reliably control the variable wheel shape. Finally, the effectiveness of the variable wheel mechanism was verified by preliminary experimental approach.

거풍지보단(祛風至寶丹)의 혈관이완 효능과 기전에 관한 연구 (Studies on the Effect and Mechanism of Geupoongjibo-dan's Relaxation on a Blood Vessel)

  • 김동은;박동완;정승현;신길조;이원철;한성호
    • 대한한방내과학회지
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    • 제22권2호
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    • pp.119-125
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    • 2001
  • Objectives : This study was conducted to evaluate the effect and mechanism of Geupoongjibo-dan's relaxation of the tension of the blood vessel caused by Phenylephrine and KCI. Methods : In order to study the effect of Geupoongjibo-dan's relaxation of the blood vessel tension, Geupoongjibo-dan extract was infused into Phenylephrine and KCI-induced contracted rabbit aorta strips. To analyze the mechanism of Geupoongjibo-dan's effect on the blood vessel, Geupoongjibo-dan extract infused into Phenylephrine and KCI-induced contracted strips induced by agonists after treatment of N${\omega}$-nitro-L-arginine, Methylene Blue. Results : 1. Geupoongjibo-dan was very effective in relaxing the blood vessels contracted by Phenylephrine. 2. Geupoongjibo-dan was effective against Phenylephrine, than against KCI. 3. Geupoongjibo-dan's more relaxation effect on a blood vessel was terminated by N${\omega}$-nitro-L-arginine and methylene treatment. Conclusion : THis study showed that Geupoongjibo-dan's relaxation effect on a blood vessel is irrelevant to ${\alpha}$-adrenalin receptor, and it relaxes contracted vessels through cGMP channel.

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3차원 절삭에서 표면환경이 절삭기구에 미치는 영향 (The Effect of Surface Environment on the Mechanism in Oblique Cutting)

  • 서남섭
    • 한국정밀공학회지
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    • 제1권2호
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    • pp.24-32
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    • 1984
  • The object of the study is to discuss the effect of magic ink as a surface active substance on the mechanism of chip formation in oblique cutting. The Rehbinder effect has been known as a phenomenon that the mechanical strength reduces when the metal is coated with some surface active substances. In order to interpret these surface effects defined by Rehbinder, the influence on the shear strength of shear plane by coating surface active substances, cutting force by the depth of cut, surface roughness and hardness ratio were observed. The results are as follows: 1. By coating the magic ink on free surface of the forming chip, the effective shear angle increases, and the cuttinbg force and the deformed chip thickness decreases. 2. With the large inclination angle the effective shear angle increases, and the specific cutting force and the friction angle decrease. 3. Cutting of the coated surface improves the surface roughness and the hardness ratio drops, which means another Rehbinder effect.

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Correlation of the Rates of Solvolysis of Electron-Rich Benzoyl Chloride Using the Extended Grunwald-Wistein Equation

  • Oh, Hyunjung;Choi, Hojune;Park, Jong Keun;Yang, Kiyull;Koo, In Sun
    • Bulletin of the Korean Chemical Society
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    • 제34권9호
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    • pp.2697-2701
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    • 2013
  • The solvolysis rate constants of piperonyloyl chloride (1) in 27 different solvents are well correlated with the extended Grunwald-Winstein equation, using the $N_T$ solvent nucleophilicity scale, $Y_{Cl}$ solvent ionizing scale, and I aromatic ring parameter with sensitivity values of $0.30{\pm}0.05$, $0.71{\pm}0.02$, and $0.60{\pm}0.04$ for l, m, and h, respectively. The solvent kinetic isotope effect values (SKIE, $k_{MeOH}/k_{MeOD}$ and $k_{50%MeOD-50%D2O}$) of 1.16 and 1.12 were also in accord with the values for the $S_N1$ mechanism and/or the dissociative $S_N2$ mechanism. The product selectivity values (S) for solvolysis of 1 in alcohol/water mixtures were in the range of 0.5 to 1.9, which is also consistent with the proposed unimolecular ionization mechanism.

C 언어에서 프로세서의 스택관리 형태가 프로그램 보안에 미치는 영향 (A Study on the Effect of Processor Stack Frame Mechanism on Secure Programming in C Language)

  • 이형봉;차홍준;노희영;이상민
    • 정보처리학회논문지C
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    • 제8C권1호
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    • pp.1-11
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    • 2001
  • 전통적으로 프로그램이 갖춰야 할 품질조건으로 정확성, 신뢰성, 효율성, 호환성, 이식성 등 여러 가지가 제안되어 왔지만, 최근에는 보안성이란 새로운 항목이 요구되고 있다. 보안성은 설계된 프로그램의 흐름을 사용자가 임의로 변경함으로써 보안 침해수단으로 사용하는 사례가 늘어나면서 그 중요성이 더욱 강조되고 있다. 이러한 보안 침해기법은 기본적으로 스택의 조작에서부터 출발한다. 스택과 관련된 일련의 동작들은 프로세서에 따라 고유하게 이루어지고, C 언어는 그러한 고유한 특성에 따라 스택을 관리한다. 본 논문에서는 스택 조작을 통한 보안침해의 개념을 살펴보고, 팬티엄(Pentium), 알파(Alpha), 스파크(SPARC) 등이 제공하는 스택 메커니즘을 자세히 조명해 본 후, 그 것들이 프로그램의 보안성에 어떻게 영향을 미치는지를 규명함으로써 안전 한 프로그램 작성을 위한 치침에 기여하도록 한다.

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CH4/Air 예혼합화염의 하류영역에서 체류시간 및 열손실에 의한 NOx의 생성특성 (The Effect of Residence Time and Heat Loss on NOx Formation Characteristics in the Downstream Region of CH4/Air Premixed Flame)

  • 황철홍;현승호;탁영조;이창언
    • 대한기계학회논문집B
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    • 제31권1호
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    • pp.99-108
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    • 2007
  • In this study, the NOx formation characteristics of one-dimensional $CH_4$/Air premixed flame using detailed-kinetic chemistry are examined numerically. The combustor length and the amount of heat loss are varied to investigate the effect of residence time and heat loss on the NOx formation in a post-flame region. In the flame region, NO is mainly produced by the Prompt NO mechanism including $N_2$O-intermediate NO mechanism over all equivalence ratios. However, thermal NO mechanism is more important than Prompt NO mechanism in the post-flame region. In the case of adiabatic condition, the increase of combustor length causes the remarkable increase of NO emission at the exit due to the increase of residence time. On the other hand, NO reaches the equilibrium state in the vicinity of flame region, considering radiation and conduction heat losses. Furthermore the NO, in the case of $\phi$=1.2, is gradually reduced in the downstream region as the heat loss is increased. From these results, it can be concluded that the controls of residence time and heat loss in a combustor should be recognized as an important NOx reduction technology.

KH-19의 5-flurouracil 부작용 억제 효력 및 기전 연구 (Studies on medicinal protection with KH-19 against side effect of 5-fIurouracil and its mechanism)

  • 양동식;성현제;윤유식
    • 한국한의학연구원논문집
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    • 제9권1호
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    • pp.137-144
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    • 2003
  • The objective on this study was to investigate medicinal protection with KH-19, which was composed of 9 kinds of oriental herbs tonifying the blood, against side effect of chemotherapy in mice and its mechanism through microarray. Not only WBC (white blood cell), and PLT (platelet) as a hematopoiesis toxicity indicator but also spleen weight as an immune toxicity indicator was reduced significantly 7 day after. 5-flurouracil (FU) treatment. However, reduction of WBC, PLT, and spleen weight after 5-FU treatment was significantly recovered by KH-19. For mechanic study on KH-19 action, gene expression in mouse spleen treated 5-FU was compared with gene expression in mouse treated 5-FU and KH-19. The result indicates that 23 genes were increased. in expression level over 2 fold and 41 genes were decreased in expression level more than 2 fold at mouse spleen by KH-19 treatment. KH-19 mechanism may be complicated more than other drug which of mechanism were composed of single compound because KH-19 was composed of various compounds.

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A Study on the Breakdown Mechanism of Rotating Machine Insulation

  • Kim, Hee-Gon;Kim, Hee-Soo;Park, Yong-Kwan
    • Journal of Electrical Engineering and information Science
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    • 제2권3호
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    • pp.71-76
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    • 1997
  • A lot of experiments and analyses have been done to determine the aging mechanism of mica-epoxy composite material used for large generator stator windings in order to estimate remaining life of the generator for last decades. After degrading artificially the mica-epoxy composite material, the surface analysis is performed to analyze breakdown mechanism of insulation in air and hydrogen atmosphere; i) In the case of air atmosphere, it is observed that an aging propagation from conductor to core by partial discharge effect and the formation of cracks between layers is widely carbonized surface. ii) In case of hydrogen atmosphere, the partial discharge effect is reduced by the hydrogen pressure (4kg/$\textrm{cm}^2$). Potassium ions forming a sheet of mica is replaced by hydrogen ions, which can lead to microcracks. It is confirmed that the sizes of crack by SEM analysis are 10∼20[$\mu\textrm{m}$] in length under air, and 1∼5[$\mu\textrm{m}$] in diameter, 10∼50[$\mu\textrm{m}$] in length under hydrogen atmosphere respectively. The breakdown mechanism of sttor winding insulation materials which are composed of mica-epoxy is analyzed by the component of materials with EDS, SEM techniques. We concluded that the postassium ions of mica components are replaced by H\ulcorner, H$_3$O\ulcorner at boundary area of mica-epoxy and/or mica-mica. It is proposed that through these phenomena, the conductive layers of potassium enable creation of voids and cracks due to thermal, mechanical, electrical and environmental stresses.

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