Academic literature on the topic 'Stick-slip motion mode'

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Journal articles on the topic "Stick-slip motion mode"

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Karachevtseva, Iuliia, Arcady V. Dyskin, and Elena Pasternak. "The Cyclic Loading as a Result of the Stick-Slip Motion." Advanced Materials Research 891-892 (March 2014): 878–83. http://dx.doi.org/10.4028/www.scientific.net/amr.891-892.878.

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We investigate the influence of oscillating normal force on the frictional sliding. Frictional sliding in the case of a simple mass-spring model of Burridge and Knopoff type demonstrates stick-slip even when the friction coefficient is constant. Oscillations of the normal force in this case do not produce noticeable changes in the stick-slip sliding mode. A completely different picture is observed when the oscillations of normal force are applied to the system, which is in the state of steady sliding. In this case the normal oscillations turn the steady sliding into stick slip. A special case
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Shi, Yunlai, Chengshu Lou, and Jun Zhang. "Investigation on a Linear Piezoelectric Actuator Based on Stick-Slip/Scan Excitation." Actuators 10, no. 2 (2021): 39. http://dx.doi.org/10.3390/act10020039.

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To perform a high resolution and long stroke application in optical precision instruments, a linear piezoelectric actuator operated in stick-slip/scan modes for driving a linear motion table is presented. The proposed piezoelectric actuator is a piezoelectric composite structure, which includes a metal elastomer, a piezoelectric stack, and a frictional ball. The purpose of this paper is to describe the operation principle, design, and the running test and resolution test of the linear motion table driven by the proposed piezoelectric actuator. The notable feature is the flexible hinges of the
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Liu, Yang. "Control of a class of multibody underactuated mechanical systems with discontinuous friction using sliding-mode." Transactions of the Institute of Measurement and Control 40, no. 2 (2016): 514–27. http://dx.doi.org/10.1177/0142331216661759.

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This paper studies sliding-mode control of a class of multibody underactuated systems with discontinuous friction on the unactuated configuration variable taking into account parametric uncertainties. Global motion for this class system including sticking, stick-slip, and slip regimes are analysed, and their corresponding equilibria are identified. The control objective is to avoid the sticking and the stick-slip regimes while tracking a desired velocity in the slip regime. Three sliding-mode controllers which are robust to parametric uncertainties are proposed, and their stabilities are prove
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Pilipchuk, V. N., R. A. Ibrahim, and P. G. Blaschke. "Disc Brake Ring-Element Modeling Involving Friction-Induced Vibration." Journal of Vibration and Control 8, no. 8 (2002): 1085–104. http://dx.doi.org/10.1177/107754602029587.

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This paper presents the analytical modeling and dynamic characteristics of disc brake systems under equal contact loads on both sides of the disc. The friction force acting on the pad is assumed to be concentrated along its trailing edge due to the moment arising from the friction force, and thus results in a redistribution of normal forces. In view of equal contact forces, the disc will not experience transverse motion but only tangential and radial vibrations. The only nonlinearity involved in the model arises mainly from contact forces. The dependence of the friction coefficient between the
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Kinder, Helmut. "Drum Coater With Reel-to-Reel Mode Enabled by Stick-Slip-Motion." IEEE Transactions on Applied Superconductivity 27, no. 4 (2017): 1–4. http://dx.doi.org/10.1109/tasc.2016.2644982.

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Berger, E. J., M. R. Begley, and M. Mahajani. "Structural Dynamic Effects on Interface Response: Formulation and Simulation Under Partial Slipping Conditions." Journal of Applied Mechanics 67, no. 4 (2000): 785–92. http://dx.doi.org/10.1115/1.1330545.

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A new formulation for dynamic sliding contact problems with partial slipping is presented and used to investigate the influence of structural dynamic response on interface behavior. The mixed differential-algebraic equation (MDAE) approach uses differential equations to describe the slipping dynamics and algebraic (constraint) equations to model interfacial sticking. An efficient method for solving the case of partial interface slipping has been developed, and special consideration has been given to the changing equations of motion (at the transition from stick-to-slip and slip-to-stick). An e
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Chandler, David M., Richard I. Waller, and William G. Adam. "Basal ice motion and deformation at the ice-sheet margin, West Greenland." Annals of Glaciology 42 (2005): 67–70. http://dx.doi.org/10.3189/172756405781813113.

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AbstractMeasurements of basal ice deformation at the margin of Russell Glacier, West Greenland, have provided an opportunity to gain more insight into basal processes occurring near the margin. The basal ice layer comprises a debris-rich, heterogeneous stratified facies, overlain by a comparatively debris-poor dispersed facies. Ice velocities were obtained from anchors placed in both ice facies, at three sites under 5–15 m ice depth. Mean velocities ranged from 20 to 43 m a–1, and velocity gradients indicate high shear strain rates within the basal ice. Stick–slip motion and diurnal variations
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Tsetas, Athanasios, Apostolos Tsouvalas, Timo Molenkamp, and Andrei V. Metrikine. "A mode-matching method for the prediction of stick-slip relative motion of two elastic rods in frictional contact." Acta Mechanica 233, no. 2 (2022): 753–73. http://dx.doi.org/10.1007/s00707-021-03132-z.

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AbstractThis paper presents a computationally efficient mode-matching method to predict the relative axial motion of two elastic rods in frictional contact. The motion is of the stick-slip type and is non-uniform along the rods. The proposed method utilizes the piecewise linearity of the problem in time and space. The original set of nonlinear partial differential equations describing the dynamics of the coupled system is first reduced to a system of linear, per time interval, ordinary differential equations by means of modal decomposition. The global modes are used for one of the two rods, wh
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Ning, Peng, Guangda Qiao, Xiao Xia, Xiaohui Lu, and Tinghai Cheng. "A stick–slip linear actuator with high speed and nano-resolution by resonance/non-resonance hybrid driving." Review of Scientific Instruments 93, no. 5 (2022): 055002. http://dx.doi.org/10.1063/5.0082660.

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To achieve high speed, nano-resolution, and large stroke, a resonance/non-resonance hybrid piezoelectric stick–slip actuator with a lever-type flexure hinge (LTFH-PSSA) is proposed in this work. The actuator can achieve high speed and large stroke in the resonance mode by the stick–slip working principle and achieve nano-resolution in the non-resonant mode by the direct drive working principle. The excitation electrical signals used in the two working modes are the sine waveform and half-sine waveform, respectively. Compared with the traditional sawtooth waveform, the excitation signal of the
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Richard, Thomas, and Emmanuel Detournay. "Stick–slip motion in a friction oscillator with normal and tangential mode coupling." Comptes Rendus de l'Académie des Sciences - Series IIB - Mechanics 328, no. 9 (2000): 671–78. http://dx.doi.org/10.1016/s1620-7742(00)01240-x.

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Dissertations / Theses on the topic "Stick-slip motion mode"

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Lyashenko, I. A., Олексій Віталійович Хоменко, Алексей Витальевич Хоменко, et al. "Hysteresis Phenomena in the Stick-Slip Motion at the Boundary Friction Mode." Thesis, Sumy State University, 2013. http://essuir.sumdu.edu.ua/handle/123456789/35072.

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The tribological system is considered, which consists of two atomically smooth solid surfaces separated by an ultrathin lubricant film. The thermodynamic model based on the Landau theory of phase transitions is built, which describes behavior of this system in the boundary friction mode. The free energy density for an ultrathin lubricant film is given in the form of expansion into series by the powers of order parameter that is reduced to the shear modulus of lubricant. The kinetics of the system is studied on the basis of model describing first-order phase transitions between kinetic mod
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Ляшенко, Яків Олександрович, Яков Александрович Ляшенко та Yakiv Oleksandrovych Liashenko. "Фазовые переходы между кинетическими режимами граничного трения". Thesis, Сумский государственный университет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/46497.

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У дисертацiї побудовано теорiю тертя атомарно-гладких твердих поверхонь, роздiлених межовим мастилом, плавлення i тверднення якого подано як фазовi переходи першого або другого роду. Описано переривчастий режим руху та ефекти пам’ятi, пов’язанi з релаксацiйними процесами. При врахуваннi залежностi ефективної в’язкостi вiд температури i градiєнта швидкостi описано статичну силу тертя. Можливий випадок, коли по площi контакту iснує доменна структура з рiдиноподiбними i твердоподiбними дiлянками. При просторово неоднорiдному розподiлi параметра порядку мастило швидко набуває однорiдного стану. Пр
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Manko, N. N., and I. A. Lyashenko. "Stochastic Oscillations at Stick-Slip Motion in the Boundary Friction Regime." Thesis, Sumy State University, 2013. http://essuir.sumdu.edu.ua/handle/123456789/35148.

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In this paper, the further development of the synergetic model describing the ultrathin lubricant film state clamped between two atomically smooth solid surfaces operating under boundary friction mode has been done based on the Lorentz model for the approximation of a viscoelastic medium. In all cases, the phase portraits have been built. It has been found that the friction surfaces' temperature increasing leads to the growth of stochasticity in the investigated system. In the phase plane the stochastic oscillation mode can be described as a strange attractor. Also, the behavior of two di
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Book chapters on the topic "Stick-slip motion mode"

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Watanabe, Kazumi. "Wave Radiation from a Stick-Slip-Like Source Motion (SH-Wave)." In Advanced Dynamics and Model-Based Control of Structures and Machines. Springer Vienna, 2011. http://dx.doi.org/10.1007/978-3-7091-0797-3_24.

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Jang, Min Gyu, Chul Hee Lee, and Seung Bok Choi. "Precision Motion Control of a Smart Structure Using an Enhanced Stick-Slip Model." In Emboding Intelligence in Structures and Integrated Systems. Trans Tech Publications Ltd., 2008. http://dx.doi.org/10.4028/3-908158-13-3.98.

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Goicoechea, Hector Eduardo, Roberta Lima, Rubens Sampaio, Marta B. Rosales, and F. S. Buezas. "A Stochastic Approach for a Cosserat Rod Drill-String Model with Stick-Slip Motion." In Lecture Notes in Mechanical Engineering. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-53669-5_8.

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Cheng, Tinghai, Xiaosong Zhang, Xiaohui Lu, Hengyu Li, Qi Gao, and Guangda Qiao. "The Asymmetric Flexure Hinge Structures and the Hybrid Excitation Methods for Piezoelectric Stick-Slip Actuators." In Piezoelectric Actuators - Principles, Design, Experiments and Applications [Working Title]. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.95536.

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Piezoelectric stick–slip actuators have become viable candidates for precise positioning and precise metering due to simple structure and long stroke. To improve the performances of the piezoelectric stick–slip actuators, our team deeply studies the actuators from both structural designs and driving methods. In terms of structural designs, the trapezoid-type, asymmetrical flexure hinges and mode conversion piezoelectric stick–slip actuators are proposed to improve the velocity and load based on the asymmetric structure; besides, a piezoelectric stick–slip actuator with a coupled asymmetrical f
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Chakrabarti, Bikas K., and L. Gilles Benguigui. "Earthquakes in Model Systems." In Statistical Physics of Fracture and Breakdown in Disordered Systems. Oxford University PressOxford, 1997. http://dx.doi.org/10.1093/oso/9780198520566.003.0004.

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Abstract We discuss in this chapter several model studies for earthquakes. Earthquakes are large scale failures, occurring mainly as a consequence of frictional slips in the upper region of the earth’s crust, to adjust the stress accumulated by the large scale tectonic plate motions over long periods of several decades of years (see e.g. Guttenberg and Richter 1954, Kostrov and Das 1988, Scholz 1990). Like in the cases of fracture or breakdown (discussed in the previous chapters), where the stresses or fields are redistributed within the surviving or unbroken portions of the material, the stre
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Song, Siyang, Shaoqi Huang, Shubao Shao, et al. "An Inertia Stick-Slip Piezoelectric Actuator for Bidirectional Rotations with Improved Velocity and Torque." In Studies in Applied Electromagnetics and Mechanics. IOS Press, 2025. https://doi.org/10.3233/saem250025.

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The output performance of stick-slip piezoelectric actuators is comprehensively determined by the electro-mechanical responses of the driving unit, control strategy, and the contact status between the driving unit and the slider. Most previously developed inertial piezoelectric actuators face the problems of frequency dependence, motion speed, excessive volume, step resolution, and loading capacity. To exhaustively improve actuation performance, we propose a compact bi-directional piezoelectric-based rotary actuator incorporating the single excitation source, rhombic amplification mechanism, a
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Janaki, N., K. Sushita, A. L. Wisemin Lins, and T. R. Premila. "Modeling and Characterization of Carbon Nano Tube Nanocomposites." In Intelligent Technologies for Scientific Research and Engineering. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815079395123010016.

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The interfacial sliding motion of carbon nanotubes (CNTs) within a polymeric hosting matrix gives rise to energy dissipation. By tuning the interfacial shear strength (ISS) of the CNT-matrix interface, the dissipation can take place within tunable ranges of strain amplitudes. This is the basis for conceiving new multilayered carbon nanotube nanocomposites in which different layers with tunable ISS can lead to a concurrent optimization of strength and dissipation, often seen as two conflicting targets. Such optimization is tackled by a novel meso-mechanical nonlinear inelastic model proven to e
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Conference papers on the topic "Stick-slip motion mode"

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Watt, David, Ngoc-Ha Dao, Mohamed Mahjoub, Stephane Menand, and Mark Smith. "How Motor Bend Affects Stick-Slip Vibrations: Modeling and Case Study." In SPE Annual Technical Conference and Exhibition. SPE, 2022. http://dx.doi.org/10.2118/210483-ms.

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Abstract Contact friction along drill string is one of root causes of stick-slip vibrations, especially when drilling an unconventional well with a long lateral section. By using a downhole steerable motor in rotating mode, the motor bend can create important contact forces between the drill string and wellbore and consequently generate considerable frictional torques opposed to the drill string rotation. Therefore, for more accurate estimations of stick-slip behavior, these forces need to be considered in stick-slip modeling. In this paper, a torsional vibration model based on a mass-spring s
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Yao, Hong, Hai Bi, Junjie Wei, and Fangxin Chen. "Design and Optimization of a Multi-Mode Piezo-Motor Based on a Compliant Mechanism." In ASME 2023 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2023. http://dx.doi.org/10.1115/detc2023-114897.

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Abstract Piezo-motors are widely used in precision positioning. However, the traditional piezo-motor moves via single motion mode such as stick-slip mode, inchworm mode, and scan mode, respectively. A single motion mode cannot balance motion speed, load capacity, and resolution at the same time. Integrating multiple motion modes into a piezo-motor is a sensible approach for conflict resolution. This paper presented a multi-mode piezo-motor based on a compliant mechanism that is able to regulate the contact force to achieve different motion modes. The characteristic of the compliant mechanism i
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Yang, Shiduo, Fayez Al-Mutairi, Tianhua Zhang, et al. "An Innovated Image-Based Approach for Logging-While-Drilling Image Quality Improvement in Stick and Slip Phase." In IADC/SPE Asia Pacific Drilling Technology Conference and Exhibition. SPE, 2022. http://dx.doi.org/10.2118/209913-ms.

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Abstract Stick/slip motion is an extremely severe torsional oscillation that can cause the drill bit to come to a complete stop and then followed by an extra acceleration of the surface rotation. Due to the lack of downhole sensors for direct speed measurement of logging-while-drilling (LWD) image tools, the depth measured on the surface can appear to be smoother than the downhole sensors’ real movement. Using the smoothed surface depth for time-to-depth gating of the images might lead to the formation features appearing to be compressed or stretched semicyclically in the depth domain when sen
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Ina´cio, Octa´vio, Lui´s Henrique, and Jose´ Antunes. "Simulation of the Oscillation Regimes of Bowed Bars: A Nonlinear Modal Approach." In ASME 2002 International Mechanical Engineering Congress and Exposition. ASMEDC, 2002. http://dx.doi.org/10.1115/imece2002-32415.

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It is still a challenge to properly simulate the complex stick-slip behavior of multi-degree-of-freedom systems. In the present paper we investigate the self-excited nonlinear responses of bowed bars, using a time-domain modal approach, coupled with an explicit model for the frictional forces, which is able to emulate stick-slip behavior. This computational approach can provide very detailed simulations and is well suited to deal with systems presenting a dispersive behavior. The effects of the bar supporting fixture are included in the model, as well as a velocity-dependent friction coefficie
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Tinker, Michael L. "Nonlinearities due to Joint Friction and Clearance in a Structural Dynamic Test Fixture." In ASME 1996 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/imece1996-0012.

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Abstract Modal survey testing of the Space Station Common Module Prototype in a test fixture designed to simulate Shuttle Orbiter constraints revealed a number of sources of nonlinearities in the measured frequency response functions. First, the test fixture original design, which utilized spherical bearing joints and an airbag suspension system for offloading the test article weight, is described in detail in order to provide a basis for understanding the test data. Several experimental and analytical lowest-frequency mode shapes are compared, and differences are pointed out. One of the basic
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Shimizu, Jun, Takahiro Ito, Yoshiyuki Tsuji, and Yutaka Kukita. "Macroscopic Streaming Associated With Vertical, Cyclic Motion of Interface Confined in a Cylindrical Enclosure." In 10th International Conference on Nuclear Engineering. ASMEDC, 2002. http://dx.doi.org/10.1115/icone10-22727.

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The interface between overlaid fluids can become unstable when the fluids are excited vertically. The instability caused by the variation in the vertical acceleration is known by the name of the Faraday waves. Ito et al. (1999) studied a combined excitation problem where the fluids were excited vertically in a stationary cylinder while the interface motion was restricted by the mobility of the fluid-fluid-wall contact line. They found that, under such circumstances, the symmetric fundamental mode grows on the interface, even for excitation amplitude and frequency falling in the stable regime o
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Zhang, Tianhua, Shiduo Yang, Chandramani Shrivastava, and Nadege Bize-Forest. "A NEW PSEUDO-VELOCITY-BASED METHOD TO MITIGATE LWD IMAGE INTERPRETATION RISKS." In 2021 SPWLA 62nd Annual Logging Symposium Online. Society of Petrophysicists and Well Log Analysts, 2021. http://dx.doi.org/10.30632/spwla-2021-0048.

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Borehole Imaging technology is often key for reservoir characterization and becomes more relevant when images are acquired while drilling to capture reservoir geology and petrophysical property distributions around the borehole. Logging While Drilling (LWD) high-resolution electrical/acoustics images of the borehole can resolve formation layers and heterogeneity down to 5mm (0.2in) scale and can detect response from far smaller features. This allows both, improved operational efficiency and better-informed drilling as well as shortening of the geological interpretation turn-around time from wi
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Murray, John J., Djoni E. Sidarta, Xiaohua Lu, Himanshu Gupta, and Pierre Beynet. "Effects of Slip-Stick on Top Tensioned Riser Fatigue." In ASME 2002 21st International Conference on Offshore Mechanics and Arctic Engineering. ASMEDC, 2002. http://dx.doi.org/10.1115/omae2002-28130.

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In a Truss Spar system, top tensioned risers are tensioned, and centralized, inside a buoyancy can stem that extends all the way to the keel. This stem and buoyancy can contact the hull by guides at the buoyancy can, at the deck stopper, at the heave plates and at the keel where the riser exits the hull and descends to the seafloor wellhead. The buoyancy cans are in constant contact with the hull because of a preloaded contact guides located on each can. The buoyancy cans and their guides are designed to let the riser stroke with respect to the platform, however the friction forces at the guid
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Inoue, Tomoya, Tokihiro Katsui, Chang-Kyu Rheem, Zengo Yoshida, and Miki Y. Matsuo. "Preliminary Study on Stick-Slip in Drillstring With Analytical Model Expressed With Neutral Delay Differential Equation." In ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/omae2014-23424.

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Stick-slip is a major problem in offshore drilling because it may cause damage to the drill bit as well as crushing or grinding the sediment layer, which is crucial problem in scientific drilling because the purpose of the scientific drilling is to recover core samples from the layers. To mitigate stick-slip, first of all it is necessary to establish a model of the torsional motion of the drill bit and express the stick-slip phenomenon. Toward this end, the present study proposes a model of torsional waves propagating in a drillstring. An analytical model is developed and used to derive a neut
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Larsson, Henric, and Kambiz Farhang. "Investigation of Stick-Slip Phenomenon Using a Two-Disk Friction System Vibration Model." In ASME 1997 Design Engineering Technical Conferences. American Society of Mechanical Engineers, 1997. http://dx.doi.org/10.1115/detc97/vib-4162.

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Abstract A lumped parameter model is presented for studying the dynamic interaction between two disks in relative rotational motion and in frictional contact. The contact elastic and dissipative characteristics are represented by equivalent stiffnesses and damping coefficients in the axial as well as torsional directions. The formulation accounts for the coupling between the axial and angular motions by viewing the contact normal force to be the result of axial behavior of the system. The model is used to investigate stick-slip behavior of a two-disk friction system. In this effort the frictio
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