• 제목/요약/키워드: rheological properties

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공작기계 적용을 위한 MR 클러치 설계 (Design of a Magneto-Rheological Fluid Clutch for Machine Tool Application)

  • 김옥현
    • 한국기계가공학회지
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    • 제8권1호
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    • pp.57-63
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    • 2009
  • Magneto-Rheological(MR) fluid composes of a base fluid and ferromagnetic particles less than tens of micrometer size dispersed in the fluid. It is called as a smart material because its rheological properties are changable by a magnetic field. Its important applications are active devices such as controllable dampers and controllable clutches. The merit of those products is that their functional characteristics are controllable such that they enable active control strategies. This paper proposes an idea for machine tool applications of the MR fluid clutch as a safety device for power transmission. FEM has been used for magnetic field analyses and the results are compared with some former experiments. Some design syntheses of the MR clutches are suggested and hopefully considered that it may be an effective safety device for power transmission of machine tools.

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나선형 기계 교반 장비로 제조된 레오로지 소재의 Thixoforging 공정 (Thixoforging Process of Rheology Materials Fabricated by Spiral Mechanical Stirring Equipment)

  • 정일갑;한수훈;배정운;강충길
    • 소성∙가공
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    • 제17권1호
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    • pp.5-8
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    • 2008
  • As the semi-solid forming technology has a lot of advantages compared to the die casting, squeeze casting and hot/cold forging, it has been studied actively. This paper focuses on the thixoforging of the rheological materials fabricated by the spiral mechanical stirring equipment with A356 casting aluminum alloy and A6061 wrought aluminum alloy. Formability tests of rheological materials fabricated by spiral mechanical stirring were carried out and the microstructures of forged sample were observed. After thixoforging experiment, the heat-treated conditions of forged samples are investigated to improve the mechanical properties. These results are able to suggest the possibility of commercialization for rheological materials fabricated by spiral mechanical stirring.

Rheological Analysis in a Spinning Process of a hollow fiber membrane

  • Jang, Moon-Seog
    • 한국막학회:학술대회논문집
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    • 한국막학회 1995년도 추계 총회 및 학술발표회
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    • pp.5-9
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    • 1995
  • In the dry-jet-wet-spinning process of a hollow fiber membrane, the polymer solution is pumped into a coaxial tube, jet spinneret. The threadline emerging from the spinneret is stabilized by an internal coagulating medium(liquid or gas) as it emerges from the jet orifice. The nascent hollow thread is further stabilized in a quench bath as shown in Fig. 1. In this scheme, three mechanism of formatiota(temperature gradient, solvent evaporation, and solvent-nonsotvent exchange) can be combined. The changes which promote stabilization often play a dominant role in determining the ultimate fiber wall structure as well. Hence, in pratice, hollow fiber stabilization and development of membrane structure are commonly inseparable. However, fiber dimension(the inside diameter and wall thickness of the hollow fiber) is mainly a rheological problem and is determined by dope pumping rate, spinneret diatance from the coagulation bath, inner coagulant flow rate, and fiber draw-rate. Besides rheological phenomena play a prominent part in the final properties of the hollow fiber.

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Rheological Behavior of Polymer/Layered Silicate Nanocomposites under Uniaxial Extensional Flow

  • Park Jun-Uk;Kim Jeong-Lim;Kim Do-Hoon;Ahn Kyung-Hyun;Lee Seung-Jong;Cho Kwang-Soo
    • Macromolecular Research
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    • 제14권3호
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    • pp.318-323
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    • 2006
  • We investigated the rheological behaviors and orientation of three different types of layered silicate composite systems under external flow: microcomposite, intercalated and exfoliated nanocomposites. Rheological measurements under shear and uniaxial extensional flows, two-dimensional, small-angle X-ray scattering and transmission electron microscopy were conducted to investigate the properties, as well as nano- and micro-structural changes, of polymer/layered silicate nanocomposites. The preferred orientation of the silicate layers to the flow direction was observed under uniaxial extensional flow for both intercalated and exfoliated systems, while the strain hardening behavior was observed only in the exfoliated systems. The degree of compatibility between the polymer matrix and clay determined the microstructure of polymer/clay composites, strain hardening behavior and spatial orientation of the clays under extensional flow.

마요네즈의 유동 특성과 유화 안정성에 미치는 초산 농도의 영향 (Effects of Acetic Acid Concentration on Rheological Characteristics and Emulsion Stability of Mayonnaise)

  • 배효미;오명숙
    • 한국식품조리과학회지
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    • 제5권1호
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    • pp.9-13
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    • 1989
  • 초산용액의 초산농도를 0, 1, 2, 4, 6%로 변화하여 제조한 마요네즈의 유동 특성, 유화 안정성, 색도에 대하여 조사하였다. 마요네즈의 유동은 항복응력을 가지는 소성유동이며, 초산농도가 높아질수록 항복응력 및 점주도지수가 커져서 초산농도가 높아질수록 마요네즈의 물성이 점주해지는 것을 나타내었다. 마요네즈의 유화안정성은 초산농도가 높아질수록 감소하는 경향을 보였고, 초산노도 4%일 때 가장 안정성이 낮았다. 색도는 초산함량이 증가할수록 L값(명도)이 증가하고 b값(yellowness)은 감소하였다.

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농후 고추장-물 현탁액의 리올로지 연구 (Rheological Study on Concentrated Kochujang (Korean Red Pepper Paste)-Water Suspensions)

  • 김갑수;이범수;이상귀;이신영
    • 한국식품과학회지
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    • 제21권6호
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    • pp.826-831
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    • 1989
  • 농후 고추장-물 현탁액의 리올로지 거동을 검토하였다. 리올로지 거동은 Herschel-Bulkley식에 적합하였다. 가수량 12.5-100%의 모든 고추장 현탁액은 전단속도 $0.25-179.20sec^{-1}$에서 항복응력을 갖는 의가소성을 보였으며, 전단속도 $5.16sec^{-1}$ 이상에서는 전단속도가 증가함에 따라 의가소성이 더욱 증가함을 보였다. 또, 이들 의가소성은 가수량의 증가 및 측정온도의 감소로 더욱 약해졌다. 고추장 현탁액의 점조도지수에 대한 온도의존성은 매우 낮았으며 점조도지수 값은 고형분함량의 증가로 낮아졌으나 가열로 증가되었다. 고온에서의 리올로지 거동에 대한 주요인 성분은 발효 중의 미분해 전분 또는 단백질인 것으로 추정되었으며, 식초첨가에 의한 리올로지 거동의 변화는 단지 희석효과에 기인하였다.

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쌀의 지방과 단백질이 쌀가루 호화액의 리올리지 특성에 미치는 영향 (Effect of Rice Lipid and Protein on Rheological Characteristics of Gelatinized Rice Flour Solutions)

  • 이영순;김인호;김현정;이상효;이현유;박광희
    • 한국식품영양과학회지
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    • 제28권6호
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    • pp.1293-1297
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    • 1999
  • Effect of rice protein and lipid on rheological properties of gelatinized rice flour solutions(4%) with three rice varieties(Dongjin, Jinmi, Tamjin) known for varying taste of cooked rice was investigated with Haake viscometer. The rheological behaviors of all rice flour solutions were illustrated by Herschel Bulkley equation and exhibited pseudoplastic behavior with yield stress. When rice flour solutions treated with protease and dithiothreitol, there was decreased in flow behavior index value. Flow behavior index was decreased by dealbumin and deglutelin rice flour solutions among deprotein groups. The Jinmi rice flour solutions exhibited slightly lower consistency index than Dongjin and Tamjin. Defatted rice flour solutions exhibited lower consistency index than rice flour solutions, while dealbumin, deglutelin rice flour solutions exhibited high consistency index. Protease treated rice flour solutions exhibited increase in Dongjin and Tamjin. The yield stress was increased in sequence eating quality. Yield stress of defatted rice flour solutions was decreased, while deglutelin and rice starch flour solutions was increased. The time dependent charac teristics of all rice flour solutions appeared forming hysteresis loop and thixotropic behavior showed. The time dependent characteristics was appeared in sequence eating quality. Rice starch and deglutelin flour solutions appeared greatly time dependent characteristics, but defatted rice flour solutions appeared very little.

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자기유변유체를 이용한 반능동형 스퀴즈 필름 댐퍼의 해석 및 회전체 불균형 응답 제어 (Analysis of Magneto-rheological Fluid Based Semi-active Squeeze Film Damper and its Application to Unbalance Response Control of Rotor)

  • 김근주;이종원
    • 한국소음진동공학회논문집
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    • 제15권3호
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    • pp.354-363
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    • 2005
  • Squeeze film dampers (SFDs) have been commonly used to effectively enhance the dynamic behavior of the rotating shaft supported by rolling element bearings. However, due to the recent trends of high operating speed, high load capacity and light weight in rotating machinery, it is becoming increasingly important to change the dynamic characteristics of rotating machines in operation so that the excessive vibrations, which may occurparticularly when passing through critical speeds or unstable regions, can be avoided. Semi-active type SFDs using magneto-rheological fluid (MR fluid), which responds to an applied magnetic field with a change in rheological behavior, are introduced in order to find its applications to rotating machinery as an effective device attenuating unbalance responses. In this paper, a semi-active SFD using MR fluid is designed, tested, and identified to investigate the capability of changing its dynamic properties such as damping and stiffness.In order to apply the MR-SFD to the vibration attenuation of a rotor, a systematic approach for determining the damper's optimal location is investigated, and also, a control algorithm that could improve the unbalance response characteristics of a flexible rotor is proposed and its control performance is validated with a numerical example.

The influence of the rheological parameters on the dispersion of the flexural waves in a viscoelastic bi-layered hollow cylinder

  • Kocal, Tarik;Akbarov, Surkay D.
    • Structural Engineering and Mechanics
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    • 제71권5호
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    • pp.577-601
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    • 2019
  • The paper investigates the influence of the rheological parameters which characterize the creep time, the long-term values of the mechanical properties of viscoelastic materials and a form of the creep function around the initial state of a deformation of the materials of the hollow bi-layered cylinder on the dispersion of the flexural waves propagated in this cylinder. Constitutive relations for the cylinder's materials are given through the fractional exponential operators by Rabotnov. The dispersive attenuation case is considered and numerical results related to the dispersion curves are presented and discussed for the first and second modes under the first harmonic in the circumferential direction. According to these results, it is established that the viscosity of the materials of the constituents causes a decrease in the flexural wave propagation velocity in the bi-layered cylinder under consideration. At the same time, the character of the influence of the rheological parameters, as well as other problem parameters such as the thickness-radius ratio and the elastic modulus ratio of the layers' materials on the dispersion curves, are established.

Printing performance of 3D printing cement-based materials containing steel slag

  • Zhu, Lingli;Yang, Zhang;Zhao, Yu;Wu, Xikai;Guan, Xuemao
    • Advances in concrete construction
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    • 제13권4호
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    • pp.281-289
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    • 2022
  • 3D printing cement-based materials (3DPCBM) is an innovative rapid prototyping technology for construction materials. This study is tested on the rheological behavior, printability and buildability of steel slag (SS) content based on the extrusion system of 3D printing. 0, 8 wt%, 16 wt%, 24 wt%, 32 wt% and 40 wt% SS was replaced cement, The test results revealed that the addition of SS would increase the fluidity of the printed paste, prolong the open time and setting time, reduce the plastic viscosity, dynamic yield stress and thixotropy, and is beneficial to improve the pumping and extrudability of 3DPCBM. With the increase of SS content, the static yield stress developed slowly with time which indicated that SS is harmful to the buildability of printing paste. The content of SS in 3DPCBM can reach up to 40% at most under the condition of satisfying rheological property and buildability, it provides a reference for the subsequent introduction of SS and other industrial solid waste into 3DPCBM by explored the influence law of SS on the rheological properties of 3DPCBM.