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今井 啓太, 山本 麻微, 阪上 雅昭, 稲岡 恭二, 千田 衛
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滝谷 俊夫
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Supersonic steam flow in nozzles has been considered in the viewpoint of release of latent heat and entropy of droplet formation during water vapor condensation. Total pressure losses were calculated by using conservation equations related to continuity, momentum and energy with both calorimetric and thermal state equations. Furthermore, the theory of nucleation and droplet growth was combined with the thermofluid dynamics equations. When the condensation rate becomes higher and non-equilibrium becomes stronger, consideration of kinetic theory and statistical mechanics have an increase need for treating the problems in that case.
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松島 栄次, 河田 誠, 松村 健太
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Functionally Graded Materials (FGM) have been developed as the material which can stand at high temperatures. FGM is a nonhomogeneous material and information about distribution of thermophysical properties is demanded to evaluate its heat resistance. So we develop a new method to measure electrical and thermophysical properties using an induction heating. Then a method to measure electrical conductivity and thermal diffusivity simultaneously is investigated by detecting electric potential and temperature at induction heating for homogeneous material. This report describes a comparison between analyses of electromagnetic induction and heat conduction and experiment of those.
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松島 栄次, 林 真太郎
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Functionally Graded Materials (FGM) have been developed as the material which can stand at high temperatures. FGM is a nonhomogeneous material and information about distribution of mechanical properties is demanded to evaluate its heat resistance. So we develop a new method to measure electrical and mechanical properties using an electromagnetic force. Then a method to measure electrical conductivity and modulus of elasticity simultaneously is investigated by detecting electric potential and displacement at electromagnetic induction for homogeneous material. This report describes a comparison between analyses of electromagnetic induction and elastic deformation and experiment of those.
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井藤 宗親
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143-146
発行日: 2015/03/16
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FIT scheme started from July 2012, woody biomass power generation business is becoming popular in society. In this paper, a summary of the FIT scheme, features of woody biomass, biomass boilers are described, The profitability of woody biomass power generation business by feasibility study was examined.
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松本 亮介, 白神 洋輔, 竹森 利和, 毛笠 明志, 堀 司, 久角 喜徳, 小澤 守, 香月 正司
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The purpose of this study is to develop the superheated steam generator (S-SG) using tubular flame. Tubular flame is formed in a swirl flow field by injecting the air-fuel mixture tangentially into the cylindrical chamber. S-SG using tubular flame was constructed by the internally finned tube following the combustion chamber, which was surrounded by pool water for the evaporation. The saturated steam is conducted into the water tube as a superheater installing in the hot gas core of tubular flame. The evaporation rate was achieved the target value of 90 cc/min with 280 deg.C. of the superheated steam temperature.
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堀 司, 白神 洋輔, 毛笠 明志, 林 潤, 赤松 史光
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The effects of the combustion tube length and diameter are investigated on oscillation combustion of the tubular flame burner. The flame oscillation and the axial mode of acoustic oscillation are observed by FFT of OH* and sound pressure. The flame oscillation is composed of the primary frequency and its harmonic frequencies that is the integer multiple of the primary frequency. The frequency of flame oscillation indicates the maximum spectral intensity of SPL (Sound Pressure Level). The increase in combustion tube diameter and the short length of the combustion tube are effective to reduce the flame oscillation, so that the SPL is reduced.
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白神 洋輔, 堀 司, 林 潤, 毛笠 明志, 赤松 史光
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Lean burn and exhaust gas recirculation are considered to be effective methods to reduce NO_x. However, these lean combustion methods may lead to increasing exhaust loss or deteriorating heating performance. The purpose of this research is to develop a NO_x reduction method under near stoichiometric conditions by improving so-called two-stage combustion. A rich tubular flame is burned at near rich flammability limit in the first combustion chamber. Then, the burned gas is cooled before entering the second burner, where the gas is re-burned perfectly with additional air. This technology showed that NO_x concentration could be reduced down to about 10 ppm.
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吉本 隆光, 鍛冶 勇至, 廣澤 謙弥, 渡邊 紳之介, 赤松 浩
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The effective combustion technology has been studied for useful energy. But there is a problem that the flame lifting leading to blow-off from the nozzle base occurs for low-grade fuels such as biomass fuel. Stable combustion methods have been studied to suppress lifting flame. Moreover, plasma-assisted combustion has been studied in recent years. The fuel before combustion is introduced into Atmospheric pressure low-temperature plasma. Fuel is excited to the chemical active state by plasma. And it promotes the combustion reaction by activated fuel burning. The flame behaviors and combustion characteristics with/without plasma-assisted combustion are researched into in this study.
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岡 泰央, 高井 由佳, 後藤 彰彦, 岡 興造
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The hanging scroll is a traditional mounting format for paintings and calligraphy. The scroll must be hung straight when it is displayed, and rolled up smoothly when it is stored. For making this two function be possible, the scroll maker used wash papers and a starch paste for lining. The paste is usually diluted with a water and it cannot have the enough adhesive power. And the mounter uses the special pounding brush for getting the strong adhesiveness. In this study, an adhesive effect of the diluted paste and pounding technique will be researched with using a peeling test.
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古川 貴士, 高井 由佳, 後藤 彰彦, 桑原 教彰, 来田 宣幸, 濱田 泰以
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In Japan, there is the traditional dyeing method named "Yuzen-zome". Generally, "Yuzen-zome" can be classified into five types: hand-drawn Yuzen, kata Yuzen (i.e., dyed with paper patterns), screen printed, machine printed, and inkjet dyeing. Among them, the representative example is the hand-drawn Yuzen which whole production process is performed by handwork. In the Japanese dress industry, it is said that the workers need to spend much time, since they can evaluate many designs and values of kimono clothes. In this research, the workers of the Japanese dress industry to actually see goods, and we observed where they evaluated.
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遠藤 淳司, 弓永 久哲, 杉本 卓也, 下出 祐太郎, 濱田 泰以
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There is an Urushi crafts technique in Japan. Maki-e is one of the decoration techniques in Urushi crafts. Various patterns are drawn by Urushi and metallic powder. This study aimed to examine a relationship between level of skill and state of production in polishing process of Maki-e technique. A color measurement, gloss measurement, surface roughness test and electromyography of right interosseus muscle were conducted in this study. As these results, there wasn't so much of a difference about gloss and surface roughness between expert and non-expert craftspeople. Expert turned the Maki-e surface more yellow than the non-expert, and worked the right interosseus muscle rhythmically.
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小竹 茂夫
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In general cam curve decides the trajectory of cam follower but not that of output mass in cam-follower oscillator. However it is important to determine the trajectory of output mass, since it describes positions and velocities of the following machineries during operation. In this study we introduce general cam design method by using vibration manipulation functions, which is deduced from intermittent energy transfer wave algorithm in virtual three-vibro-impact oscillator. General cam curve is decided from discrete aimed positions and velocities of the output mass at every natural period of the oscillator. We also show design method of the cam to meet arbitral dwell conditions at the intermittent boundaries.
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室巻 孝郎, 二川 真太郎, 徳永 泰伸, 南 裕樹
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In this paper, we develop a distributed robotic lighting system composed of multiple LED units which have pan-tilt mechanisms. We can control not only the lighting pattern (on/off) of each LED unit, but also the light distribution since the LED unit has two degree-of-reedom mechanism. First, we show the developed experiment system with 25 LED units, and its performance. Then, we mention a control problem of the robotic lighting system.
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和田 明浩, 朴 将海, 北川 英二, 伊藤 博
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In the field of civil engineering, laminated plates consisting of thermoplastic, organic fabric and SMC (Sheet molding compound) are used to rehabilitate aged sewerage pipes. In order to reduce the construction cost by minimizing the cycle time, cure monitoring is required. In this study, an ultrasonic testing is applied to cure monitoring of SMC layer. Especially, the arrival time of Lamb wave is evaluated based on AIC (Akaike Information Criterion) analysis. It is found that the arrival time of Lamb wave can be used as cure index of resin.
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金澤 宗達, 太田 智子, 王 澤龍, 高井 由佳, 後藤 彰彦, 濱田 泰以
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In this research, a classic Japanese tea whisks were paid attention the expert and non-expert with different experience years were employed as the behavior subject. During "the way of tea" performance, both beginner and expert's motion and trace were captured by high-speed camera. The difference of motion features between expert and non-expert were inspected and compared as well. Finally, expert was able to control stir speed and make a good tea finally.
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高井 由佳, 池元 茂, 後藤 彰彦, 濱田 泰以
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The goal of this research is development of learning system for automobile repair. In this study, the purpose is characteristics of spray gun handling of automobile repair painting expert. Spray gun movements of 55 craftsmen's were measured by using motion capture system. The spray gun movements of expert were longer length, longer time, higher speed, and narrower swing range, compared to that of non-expert.
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和田 明浩, 高尾 諒佑, 辻本 剛三
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Design method for single layer armor units is proposed considering wave dissipation characteristic and structural strength. A new wave dissipating block has been developed from the viewpoint of stability, hydraulic characteristics, construction condition and so on. In order to investigate impact strength of the block, drop test was carried out, and corresponding FEM analysis was conducted to elucidate fracture mechanism of the block. Design method to satisfy the requirement of porosity and structural strength is discussed based on FEM analysis.
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中川 秀夫, 北山 一郎
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When a massive earthquake occurs, littoral residents have to take refuge in the higher location before tsunami invades. Then a small trailer called "Rear-Car" is effective as an auxiliary implement for carrying the bedridden old person or disabled person in legs. And if torque assistant apparatus used air pressure is attached, the traction going up hills will be reduced. In this research, the small trailer assisted by air pressure was manufactured, and the basic testing was performed.
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奥田 孝一
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199-202
発行日: 2015/03/16
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This paper describes the recent trends in ultra-precision and micro cutting technology and author's study cases. The ultra-precision and micro cutting technology is one of the most essential manufacturing processes in various fields such as IT, optical instrument and medical care. As one study case, the influence of the cutting atmosphere on the surface roughness and tool wear in CO_2-blow cutting of carbon steel with a diamond tool is demonstrated. As another case, the cutting properties of LiNbO_3 wafer in the direct cutting of micro grooves for the fabrication of SAW device in μ-TAS is demonstrated.
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石川 諒, 佐伯 壮一
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This paper presents Dynamic Optical Coherence Straingraphy (D-OCSA). In this study, the quantitative accuracy evaluation of the proposed D-OCSA was carried out using Dynamical numerical experiment based on Monte Calro simulation preparing pseudo OCT speckle images of polymer matrix sample with notch, as well as FEM determining speckle deformation under uniaxial tensile load. Consequently, micro-tomographic strain rate distribution calculated continuously by D-OCSA agreed quantitatively with the simulated ones. It was, therefore, concluded that D-OCSA could provide the accurate tomography of strain rate tensor, which is a fracture diagnosing tool of polymer matrix materials.
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王 俊, 茨木 創一, 田口 陽介, 山田 崇恭, 松原 厚
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This paper studies the deformation of a thin wall during milling process. First, cutting experiments are presented to investigate the influence of the workpiece thickness on its deformation and the cutting force. Then, this paper presents an FEM-based model to simulate the deformation of thin-wall workpiece during milling process. With a tool rotation, cutting force is distributed along the helical cutting edge, and the workpiece deformation is calculated at each time interval with tool rotation. The simulated result is compared with a simpler model where a constant cutting force is uniformly distributed on an oblique line representing the material removal by a cylindrical tool. Finally an application for designing ribs of thin wall parts during machining was also discussed.
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新堂 正俊, 松田 亮, 古木 辰也, 廣垣 俊樹, 青山 栄一
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We developed a wireless multifunctional tool holder system equipped with a thermocouple in the end mill to monitor the tool internal temperature. We compared the temperature measured by high performance infrared thermographic imagery with that measured by a wireless tool holder system when end milling the stainless steel under dry coolant conditions. We confirmed that the tool internal temperature measured by the wireless tool holder agrees with one calculated by FEM model based on infrared thermographic imagery. As a result, we demonstrated that the developed method with a wireless system is effective to estimate the tool temperature in end-milling processes.
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早瀬 友哉, 奥田 孝一, 児玉 紘幸
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The aim of this study is to derive conditions of high efficiency machining in groove processing of Ultra heat-resistant alloy Inconel 718 sheet. Effect of cutting parameters were examined from the view point of cutting resistance, tool temperature and tool wear. As a result, if processing under conditions of axial depth of cut is smaller than other conditions at the same material removal rate, it has been found that it is possible to reduce the tool temperature and tool wear.
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道畑 正岐, 川嵜 彬史, 足立 篤, 高谷 裕浩
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This study proposes the new measurement method for the diameter of a microsphere, which utilizes the whispering gallery mode (WGM). WGMs are the light propagation mode, so it is necessary to determine the mode number to the obtained WGM wavelength for the accurate diameter measurement. Using wide wavelength bandwidth and polarization control, it was possible to identify the mode number of the detected WGMs, which was conformed by comparison with the theoretical values. Finally, the diameter measurement was implemented and the results were compared with other measurement instrument, revealing the performance of the proposed technique, accuracy was greater than 1 μm and resolution was less than 1 nm.
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池上 貴一, 廣垣 俊樹, 青山 栄一
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This paper describes the development of direct drive motor (DD motor), which consists of no reduction gear, for the rotary motion of machine tools and its applications. We investigate novel DD motor from a view of total performance for machine tools. Moreover, we estimate the developed DD motors for the five-axis controlled machine tools and the multi-functional machine tools. As a result, the required performance is clarified to achieve the rotary motion on the machine tools, and the developed DD motors are found to be effective to apply them.
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馬 雷, 矢口 航, 青山 栄一, 廣垣 俊樹
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Currently, when performing a finishing on a flat or curved surface by using magnetic abrasive finishing method, it is difficult to perform a stable finishing, and unevenness is also occurring on the surface of workpiece. It can be attributed to large dispersions which affect the brush. In the present study, we attempt to use the steel-balls to reproduce the processing which by commercial abrasive paste for clarifying what caused the unevenness. Further, we proposed the new polishing tool by utilizing the characteristic of brush shape that following the shape of the processing site, and clarifying its polishing mechanism.
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織田 良輔, 廣垣 俊樹, 青山 栄一, 小川 圭二
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We focus on a small power semiconductor laser beam as a heat source to perform less deformation entire hardening of thin plate. In the present report, we discuss the plate deformation and the power consumption in laser processing. As a result, a suitable laser irradiating condition is found to minimize the power consumption under the less plate deformation
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椎木 祐策, Mohammad Isnaini, 佐藤 隆太, 白瀬 敬一
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A new methodology for operation planning has been proposed. New machining data (MD) consisting of cutting conditions and tool paths is generated by referring previous machining cases. Old MD is associated with a removal volume (RV) and stored as previous machining case. To generate a new operation plan, features of RVs are recognized first. The similarity of new and past features of RVs is calculated and the most similar feature of RV is selected for referring its MD. The MD associated with the selected feature of RV is applied to generate a new operation plan. By introducing our process planning system developed, it is possible to generate NC part program automatically from product and material CAD models.
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中川 修一, 一柳 隆義, 西海 孝夫
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It is known that industrial machinery emits hydraulic noise, and that the noise can change under operational conditions. Noise can play a role as a signal that indicates normal operation. It is therefore important to understand the behavior of the hydraulic pressure ripples that are a source of hydraulic noise under operation. This study has investigated the behavior resulting from temperature change. The variables controlling hydraulic pressure ripples have been defined, and the temperature characteristics of those variables have been obtained. A cause-analysis on the behavior has been conducted using calculations including the temperature characteristics. They have been verified experimentally.
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秋下 貞夫
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This paper describes a new method of designing low noise wing using Non-compact Green function represented by Mathieu function. The author stands for the theory of vortex sound for predicting wing noise from low Mach number flow, where the Green function represents the acoustical boundary condition. 'Compact Green function' has been developed for predicting the wing noise, whose effectiveness is confined within low frequency range. On the contrary the new Non-compact Green function is feasible on high frequency range, since the function satisfys the Helmholtz equation in place of the Laplace equation. Mathieu function is introduced to represents the boundary condition of wing-like flat body. Boundary condition of porous surface is considered to compose the Green function. Two cases are presented for designing method of low flow noise body, firstly a circular cylinder and secondly the slender 2-D wing.
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古口 睦士, 久保 世志, 矢地 謙太郎, 山田 崇恭, 泉井 一浩, 西脇 眞二
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This paper proposes a topology optimization method for steady state incompressible viscous flow problem, based on the level set method and the finite volume method. In addition, Reynolds Averaged Navier-Stokes equation which is one of the famous turbulence model is also considered. The optimization problem is formulated to minimize the total pressure loss under a volume constraint. The optimization algorithm is developed based on this formulation, using the adjoint variable method for the sensitivity analysis. The level set function updating scheme uses a reaction-diffusion equation. Several examples are shown to confirm the method.
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テ リャント, 山口 修一, 上野 明, 森島 圭祐
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河合 江美, 澄川 貴志, 北村 隆行
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To examine the creep crack propagation behavior at the interface between a submicron-thick epoxy film and a silicon substrate, we conduct experiments and analysis using four cantilever specimens including epoxy film of different thickness. The interface crack propagation velocity increases with decreasing the thickness of epoxy film. The cause of this is the increase of stress intensity, which is due to the repression of expansion of the creep zone. The result of analysis shows the interface crack propagation velocity is related with the elastic singular stress field. These results signify the interface crack propagates under the small-scale creep condition.
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川野 光輝, 巽 和也, 山本 裕亮, 中部 主敬
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The present study describes a new micro-device which can accurately align and sort particles or cells with a very high-throughput using the dielectrophoretic (DEP) force. The proposed rail-type and ladder-type electrodes can precisely locate the particles in certain spanwise and height positions, and moreover, control the distance between particles and align them. This allows accurate and high response sorting rate at the gate region of the device. The particle motion and alignment performance of the ladder-type is discussed numerically and validated by the experiment. Further, the sorting performance combining the three types of electrodes is measured and evaluated.
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重松 大輝, 越山 顕一朗, 和田 成生
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Molecular dynamics simulations of pure DPPC and DPPC/cholesterol bilayers under stretching with various stretching speeds were performed. The lower the stretching speed, the more ordered the DPPC molecules, which tendency was more prominent in the DPPC/cholesterol bilayer. The critical areal strain, where the rupture occurs, in the pure DPPC bilayer significantly increased with the increase of the stretching speed, whereas that in the DPPC/cholesterol bilayer did not. The difference of the process of the molecular orientation changes under stretching might cause the difference of the stretching speed effects on the critical areal strain.
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梅野 篤, 伊藤 智博, 新谷 篤彦, 中川 智皓
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近山 拓也, 中川 智皓, 新谷 篤彦, 伊藤 智博
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陸 暁豊, 宇津野 秀夫
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大庭 崇史, 山田 啓介
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草田 俊介, 中川 智皓, 米津 亮, 新谷 篤彦, 伊藤 智博
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加島 英剛, 新谷 篤彦, 伊藤 智博, 中川 智皓
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萩原 新一郎, 中村 友道
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浅野 真由, 辻内 伸好, 伊藤 彰人, 大木 淳嗣
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井前 譲, 赤澤 勇樹, 小林 友明
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角井 康司, 辻内 伸好, 伊藤 彰人, 市村 まどか, 堀井 宏祐
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辻田 啓志, 新谷 篤彦, 伊藤 智博, 中川 智皓
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セッションID: M111
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