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      KCI등재 SCIE SCOPUS

      Tribology in Linear Electric Motor with Plate Mover

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      https://www.riss.kr/link?id=A107809029

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      다국어 초록 (Multilingual Abstract)

      This paper deals with tribological systems of a linear electric motor for high-frequency motion and high acceleration, intended for the creation of an acoustic wave of the thermoacoustic conversion system. The main originality of this structure reside...

      This paper deals with tribological systems of a linear electric motor for high-frequency motion and high acceleration, intended for the creation of an acoustic wave of the thermoacoustic conversion system. The main originality of this structure resides in the linear guidance (based on pressure screws acting on springs) used for the plate mover. Given the high acceleration and speed, it was impossible to use traditional mechanical guidance processes (V-guide rail and Cam-roller guide). The plate mover is made up of a translator of sandwiched magnets between two stationary stators. This plate mover is in magnetic balance between the two stationary stators through a controlled friction device.

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      참고문헌 (Reference)

      1 Cann P, "Welcome to the fi rst issue of biotribology" 1 : 3-24, 2015

      2 Johnson MT, "User interface with haptic feedback US 13/879,420"

      3 Hector T, "Tribological behaviour of MoS 2-based self-lubricating laser cladding for use in high temperature applications" 126 : 153-165, 2018

      4 Backhaus S, "Traveling-wave thermoacoutic electric generator" 85 : 1085-, 2004

      5 Vakis AI, "Three-DOF dynamic model with lubricant contact for thermal fly-height control nanotechnology" 45 : 135402-, 2012

      6 Tominaga A, "Thermodynamic aspects of thermoacoustic theory" 35 : 427-440, 1995

      7 Canchi SV, "Thermal fly-height control slider instability and dynamics at touchdown : Explanations using nonlinear systems theory" 133 : 021902-, 2011

      8 Persson BNJ, "Theory of rubber friction and contact mechanics" 115 : 3840-3861, 2001

      9 Scheibert J, "The role of fi ngerprints in the coding of tactile information probed with a biomimetic sensor" 323 : 1503-1506, 2009

      10 Vojtov V, "The quality of the tribosystem as a factor of wear resistance" 7 (7): 25-29, 2018

      1 Cann P, "Welcome to the fi rst issue of biotribology" 1 : 3-24, 2015

      2 Johnson MT, "User interface with haptic feedback US 13/879,420"

      3 Hector T, "Tribological behaviour of MoS 2-based self-lubricating laser cladding for use in high temperature applications" 126 : 153-165, 2018

      4 Backhaus S, "Traveling-wave thermoacoutic electric generator" 85 : 1085-, 2004

      5 Vakis AI, "Three-DOF dynamic model with lubricant contact for thermal fly-height control nanotechnology" 45 : 135402-, 2012

      6 Tominaga A, "Thermodynamic aspects of thermoacoustic theory" 35 : 427-440, 1995

      7 Canchi SV, "Thermal fly-height control slider instability and dynamics at touchdown : Explanations using nonlinear systems theory" 133 : 021902-, 2011

      8 Persson BNJ, "Theory of rubber friction and contact mechanics" 115 : 3840-3861, 2001

      9 Scheibert J, "The role of fi ngerprints in the coding of tactile information probed with a biomimetic sensor" 323 : 1503-1506, 2009

      10 Vojtov V, "The quality of the tribosystem as a factor of wear resistance" 7 (7): 25-29, 2018

      11 Persson B, "The effect of surface roughness on the adhesion of elastic plates with application to biological systems" 119 : 11437-11444, 2003

      12 Rashid H, "The eff ect of surface roughness on ceramics used in dentistry : a review of literature" 8 : 571-579, 2014

      13 Morales-Espejel GE, "Surface roughness eff ects in elastohydrodynamic lubrication : a review with contributions" 228 : 1217-1242, 2014

      14 Martin J, "Superlubricity of molybdenum disulphide" 48 : 10583-, 1993

      15 Dienwiebel M, "Superlubricity of graphite" 92 : 126101-, 2004

      16 Hirano M, "Superlubricity and frictional anisotropy" 168 : 121-125, 1993

      17 Kanazawa Y, "Studies of friction in grease-lubricated rolling bearings using ball-on-disc and full bearing tests" 63 (63): 77-89, 2020

      18 Donnet C, "Solid lubricant coatings : recent developments and future trends" 17 : 389-397, 2004

      19 Carpick RW, "Scratching the surface : fundamental investigations of tribology with atomic force microscopy" 97 : 1163-1194, 1997

      20 조규진, "Review of Manufacturing Processes for Soft Biomimetic Robots" 한국정밀공학회 10 (10): 171-181, 2009

      21 Klöcker A, "Physical factors infl uencing pleasant touch during tactile exploration" 8 : e79085-, 2013

      22 Persson B, "On the nature of surface roughness with application to contact mechanics, sealing, rubber friction and adhesion" 17 : R1-, 2004

      23 Li T, "Numerical and experimental analysis of the honing texture on the lubrication performance of piston ring-cylinder liner tribosystem" 62 (62): 991-1006, 2019

      24 Bhushan B, "Nanotribology and nanomechanics of MEMS/NEMS and BioMEMS/BioNEMS materials and devices" 84 : 387-412, 2007

      25 Kim SH, "Nanotribology and MEMS" 2 : 22-29, 2007

      26 Kappl M, "Nanoscale friction and adhesion of tree frog toe pads" 11 : 035003-, 2016

      27 Ma S, "Nanoporous substrate-infi ltrated hydrogels : a bioinspired regenerable surface for high load bearing and tunable friction" 25 : 7366-7374, 2015

      28 Ma S, "Nanohydrogel brushes for switchable underwater adhesion" 121 : 8452-8463, 2017

      29 Kenfack P, "Mover guide in a linear electric generator with double-sided stationary stators" 17 : 3986-3990, 2019

      30 Souissi A, "Linear synchronous machines: application to sustainable energy and mobility" Springer 2019

      31 Kenfack P, "La conception, l’étude théorique et expérimentale, d’une génératrice électrique linéaire à structure polyentrefer à lames guides ou frottantes" Université de Montpellier 2018

      32 Hayward V, "Is there a “plenhaptic” function?" 366 : 3115-3122, 2011

      33 Gorb SN, "Insects did it fi rst : a micropatterned adhesive tape for robotic applications" 2 : S117-, 2007

      34 Berman D, "Friction. Macroscale superlubricity enabled by graphene nanoscroll formation" 348 : 1118-1122, 2015

      35 Wilhelm F, "Friction compensation control for power steering" 24 (24): 1354-1367, 2016

      36 Urbakh M, "Friction : towards macroscale superlubricity" 8 : 893-894, 2013

      37 Xing P, "Experimental investigation on identifying friction state in lubricated tribosystem based on friction-induced vibration signals" 123 : 106590-, 2020

      38 Huber G, "Evidence for capillarity contributions to gecko adhesion from single spatula nanomechanical measurements" 102 : 16293-16296, 2005

      39 Telesz MP, "Design and testing of a thermoacoustic power converter" Georgia Institute of Technology 2006

      40 Neville A, "Compatibility between tribological surfaces and lubricant additives—how friction and wear reduction can be controlled by surface/lube synergies" 40 : 1680-1695, 2007

      41 Czichos H, "Chapter 10. Measurement, testing and sensor technology: fundamentals and application to materials and technical systems" Springer 2018

      42 Stolarski TA, "Chapter 1. Tribology in machine design" Butterworth Heinemann 1990

      43 Paulo Davim J, "Chapter 1. Measurement in machining and tribology" Springer 2019

      44 Khonsari MM, "Chapter 1. Applied tribology: bearing design and lubrication" Wiley 2017

      45 Verbert KAJ, "Adaptive friction compensation : a globally stable approach" 21 (21): 351-363, 2016

      46 Prescott TJ, "Active touch sensing" 366 : 2989-2995, 2011

      47 Ligun W, "Active disturbance rejection control in stribeck friction dynamic compensation for highaccuracy servo systems" 2016

      48 van Kuilenburg J, "A review of fi ngerpad contact mechanics and friction and how this aff ects tactile perception" 229 : 243-258, 2015

      49 Papangelo A, "A Maugis–Dugdale cohesive solution for adhesion of a surface with a dimple" 2017

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : Journal of Electrical Engineering & Technology(JEET)
      외국어명 : Journal of Electrical Engineering & Technology
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 학술지 통합 (기타) KCI등재
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.45 0.21 0.39
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.37 0.34 0.372 0.04
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