Step-Change in Friction Under Electrovibration
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Cagatay Basdogan | Benoit P. Delhaye | Philippe Lefèvre | Idil Ozdamar | M. Reza Alipour | C. Basdogan | P. Lefèvre | Idil Ozdamar | Mohammadreza Alipour Sormoli
[1] Philippe Lefèvre,et al. Surface strain measurements of fingertip skin under shearing , 2016, Journal of The Royal Society Interface.
[2] K. O. Johnson,et al. Tactile spatial resolution. III. A continuum mechanics model of skin predicting mechanoreceptor responses to bars, edges, and gratings. , 1981, Journal of neurophysiology.
[3] M. Masen,et al. A review of fingerpad contact mechanics and friction and how this affects tactile perception , 2015 .
[4] Cagatay Basdogan,et al. Electroadhesion with application to touchscreens. , 2019, Soft matter.
[5] Cagatay Basdogan,et al. Contact mechanics between the human finger and a touchscreen under electroadhesion , 2018, Proceedings of the National Academy of Sciences.
[6] Brian J. Briscoe,et al. Friction and lubrication of human skin , 2007 .
[7] Cagatay Basdogan,et al. Psychophysical Evaluation of Change in Friction on an Ultrasonically-Actuated Touchscreen , 2018, IEEE Transactions on Haptics.
[8] J. Edward Colgate,et al. Bioinspired artificial fingertips that exhibit friction reduction when subjected to transverse ultrasonic vibrations , 2015, 2015 IEEE World Haptics Conference (WHC).
[9] Pradeep K. Khosla,et al. Psychophysical Characterization and Testbed Validation of a Wearable Vibrotactile Glove for Telemanipulation , 2003, Presence: Teleoperators & Virtual Environments.
[10] R. Johansson,et al. Properties of cutaneous mechanoreceptors in the human hand related to touch sensation. , 1984, Human neurobiology.
[11] Cagatay Basdogan,et al. Roughness perception of virtual textures displayed by electrovibration on touch screens , 2017, 2017 IEEE World Haptics Conference (WHC).
[12] Akio Yamamoto,et al. Modeling and control of electroadhesion force in DC voltage , 2017 .
[13] Cagatay Basdogan,et al. Tactile Perception of Virtual Edges and Gratings Displayed by Friction Modulation via Ultrasonic Actuation , 2020, IEEE Transactions on Haptics.
[14] Philippe Lefèvre,et al. Dynamics of fingertip contact during the onset of tangential slip , 2014, Journal of The Royal Society Interface.
[15] S. Derler,et al. Friction of human skin against smooth and rough glass as a function of the contact pressure , 2009 .
[16] J. Edward Colgate,et al. On the electrical characterization of electroadhesive displays and the prominent interfacial gap impedance associated with sliding fingertips , 2018, 2018 IEEE Haptics Symposium (HAPTICS).
[17] Betty Lemaire-Semail,et al. The Perception of Ultrasonic Square Reductions of Friction With Variable Sharpness and Duration , 2019, IEEE Transactions on Haptics.
[18] Cagatay Basdogan,et al. Fingerpad contact evolution under electrovibration , 2019, Journal of the Royal Society Interface.
[19] M. Tada,et al. An imaging system of incipient slip for modelling how human perceives slip of a fingertip , 2004, The 26th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[20] J. Scheibert,et al. Evolution of real contact area under shear and the value of static friction of soft materials , 2018, Proceedings of the National Academy of Sciences.
[21] Benoit P. Delhaye,et al. Simulating tactile signals from the whole hand with millisecond precision , 2017, Proceedings of the National Academy of Sciences.