SPRUOGIS, Bronislovas ;TURLA, Vytautas . A Damper of Torsional Vibrations and an Investigation of Its Efficiency. Strojniški vestnik - Journal of Mechanical Engineering, [S.l.], v. 52, n.4, p. 225-236, august 2017. ISSN 0039-2480. Available at: <https://www.sv-jme.eu/sl/article/a-damper-of-torsional-vibrations-and-an-investigation-of-its-efficiency/>. Date accessed: 10 dec. 2024. doi:http://dx.doi.org/.
Spruogis, B., & Turla, V. (2006). A Damper of Torsional Vibrations and an Investigation of Its Efficiency. Strojniški vestnik - Journal of Mechanical Engineering, 52(4), 225-236. doi:http://dx.doi.org/
@article{., author = {Bronislovas Spruogis and Vytautas Turla}, title = {A Damper of Torsional Vibrations and an Investigation of Its Efficiency}, journal = {Strojniški vestnik - Journal of Mechanical Engineering}, volume = {52}, number = {4}, year = {2006}, keywords = {torsional vibration dampers; rotary flexible rings; vibrations; equivalent inertia moments; stability; }, abstract = {This paper reviews an original torsional vibration damper retaining its efficiency over a wide disturbing frequency band. Some potential design alternatives are considered. The basic structural element of the damper is a rotary flexible ring. The paper investigates the motion system on the basis of a set of nonlinear differential equations. By separating the motion into uniform rotary and oscillatory, expanding the equation coefficients into a Taylors power series and excluding the static members, a system of equations for insignificant oscillations is derived. The system contains inertia, flexible and gyroscopic terms. The equations of motion are derived and the stability conditions for the systems dynamic balance are formulated. Proper consideration is given to other possible loss-of-stability forms and regions of the flexible ring. An analysis of the systems natural frequencies is made. The efficiency estimation of the damper versus various parameters is effected as a result of the expression of the equivalent inertia moment and its limit values.}, issn = {0039-2480}, pages = {225-236}, doi = {}, url = {https://www.sv-jme.eu/sl/article/a-damper-of-torsional-vibrations-and-an-investigation-of-its-efficiency/} }
Spruogis, B.,Turla, V. 2006 August 52. A Damper of Torsional Vibrations and an Investigation of Its Efficiency. Strojniški vestnik - Journal of Mechanical Engineering. [Online] 52:4
%A Spruogis, Bronislovas %A Turla, Vytautas %D 2006 %T A Damper of Torsional Vibrations and an Investigation of Its Efficiency %B 2006 %9 torsional vibration dampers; rotary flexible rings; vibrations; equivalent inertia moments; stability; %! A Damper of Torsional Vibrations and an Investigation of Its Efficiency %K torsional vibration dampers; rotary flexible rings; vibrations; equivalent inertia moments; stability; %X This paper reviews an original torsional vibration damper retaining its efficiency over a wide disturbing frequency band. Some potential design alternatives are considered. The basic structural element of the damper is a rotary flexible ring. The paper investigates the motion system on the basis of a set of nonlinear differential equations. By separating the motion into uniform rotary and oscillatory, expanding the equation coefficients into a Taylors power series and excluding the static members, a system of equations for insignificant oscillations is derived. The system contains inertia, flexible and gyroscopic terms. The equations of motion are derived and the stability conditions for the systems dynamic balance are formulated. Proper consideration is given to other possible loss-of-stability forms and regions of the flexible ring. An analysis of the systems natural frequencies is made. The efficiency estimation of the damper versus various parameters is effected as a result of the expression of the equivalent inertia moment and its limit values. %U https://www.sv-jme.eu/sl/article/a-damper-of-torsional-vibrations-and-an-investigation-of-its-efficiency/ %0 Journal Article %R %& 225 %P 12 %J Strojniški vestnik - Journal of Mechanical Engineering %V 52 %N 4 %@ 0039-2480 %8 2017-08-18 %7 2017-08-18
Spruogis, Bronislovas, & Vytautas Turla. "A Damper of Torsional Vibrations and an Investigation of Its Efficiency." Strojniški vestnik - Journal of Mechanical Engineering [Online], 52.4 (2006): 225-236. Web. 10 Dec. 2024
TY - JOUR AU - Spruogis, Bronislovas AU - Turla, Vytautas PY - 2006 TI - A Damper of Torsional Vibrations and an Investigation of Its Efficiency JF - Strojniški vestnik - Journal of Mechanical Engineering DO - KW - torsional vibration dampers; rotary flexible rings; vibrations; equivalent inertia moments; stability; N2 - This paper reviews an original torsional vibration damper retaining its efficiency over a wide disturbing frequency band. Some potential design alternatives are considered. The basic structural element of the damper is a rotary flexible ring. The paper investigates the motion system on the basis of a set of nonlinear differential equations. By separating the motion into uniform rotary and oscillatory, expanding the equation coefficients into a Taylors power series and excluding the static members, a system of equations for insignificant oscillations is derived. The system contains inertia, flexible and gyroscopic terms. The equations of motion are derived and the stability conditions for the systems dynamic balance are formulated. Proper consideration is given to other possible loss-of-stability forms and regions of the flexible ring. An analysis of the systems natural frequencies is made. The efficiency estimation of the damper versus various parameters is effected as a result of the expression of the equivalent inertia moment and its limit values. UR - https://www.sv-jme.eu/sl/article/a-damper-of-torsional-vibrations-and-an-investigation-of-its-efficiency/
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TY - JOUR AU - Spruogis, Bronislovas AU - Turla, Vytautas PY - 2017/08/18 TI - A Damper of Torsional Vibrations and an Investigation of Its Efficiency JF - Strojniški vestnik - Journal of Mechanical Engineering; Vol 52, No 4 (2006): Strojniški vestnik - Journal of Mechanical Engineering DO - KW - torsional vibration dampers, rotary flexible rings, vibrations, equivalent inertia moments, stability, N2 - This paper reviews an original torsional vibration damper retaining its efficiency over a wide disturbing frequency band. Some potential design alternatives are considered. The basic structural element of the damper is a rotary flexible ring. The paper investigates the motion system on the basis of a set of nonlinear differential equations. By separating the motion into uniform rotary and oscillatory, expanding the equation coefficients into a Taylors power series and excluding the static members, a system of equations for insignificant oscillations is derived. The system contains inertia, flexible and gyroscopic terms. The equations of motion are derived and the stability conditions for the systems dynamic balance are formulated. Proper consideration is given to other possible loss-of-stability forms and regions of the flexible ring. An analysis of the systems natural frequencies is made. The efficiency estimation of the damper versus various parameters is effected as a result of the expression of the equivalent inertia moment and its limit values. UR - https://www.sv-jme.eu/sl/article/a-damper-of-torsional-vibrations-and-an-investigation-of-its-efficiency/
Spruogis, Bronislovas, AND Turla, Vytautas. "A Damper of Torsional Vibrations and an Investigation of Its Efficiency" Strojniški vestnik - Journal of Mechanical Engineering [Online], Volume 52 Number 4 (18 August 2017)
Strojniški vestnik - Journal of Mechanical Engineering 52(2006)4, 225-236
© The Authors, CC-BY 4.0 Int. Change in copyright policy from 2022, Jan 1st.
This paper reviews an original torsional vibration damper retaining its efficiency over a wide disturbing frequency band. Some potential design alternatives are considered. The basic structural element of the damper is a rotary flexible ring. The paper investigates the motion system on the basis of a set of nonlinear differential equations. By separating the motion into uniform rotary and oscillatory, expanding the equation coefficients into a Taylors power series and excluding the static members, a system of equations for insignificant oscillations is derived. The system contains inertia, flexible and gyroscopic terms. The equations of motion are derived and the stability conditions for the systems dynamic balance are formulated. Proper consideration is given to other possible loss-of-stability forms and regions of the flexible ring. An analysis of the systems natural frequencies is made. The efficiency estimation of the damper versus various parameters is effected as a result of the expression of the equivalent inertia moment and its limit values.