Abstract
Luis Alberto Baltazar-Tadeo, Jorge Colín-Ocampo, Arturo Abúndez‐Pliego, Saulo Jesús Landa-Damas, Martin Rodríguez-Vázquez, Julio Cesar VERGARA-VÁZQUEZ, Jorge Yusef Colín-Castillo
Abstract
Authors
Institutions
No local reference links have been materialized yet.
No local citing links have been materialized yet.
10.1098/rspa.1933.0158
10.1098/rspa.1933.0158
Critical speed Behavior of Unsymmetrical Shafts
10.1115/1.4009017 · 1940
Special Problems of Two-Pole Turbine Generators
10.1109/t-aiee.1940.5058002 · 1940
Critical Speeds of a Rotor with Unequal Shaft Flexibilities, Mounted in Bearings of Unequal Flexibility—I
10.1115/1.4009262 · 1943
The whirling of shafts having sections with unequal principal bending moduli, London, Edinburgh, Dublin Philos
1948
Shaft Whirling as Influenced by Stiffness Asymmetry
10.1115/1.3664468 · 1961
10.1098/rsta.1965.0052
10.1098/rsta.1965.0052
On the balancing of shafts with axial asymmetry
1966
On the balancing convergence of flexible rotors, with special reference to asymmetric rotors
10.1016/0022-460x(79)90684-9 · 1979
Response Analysis of a General Asymmetric Rotor-Bearing System
10.1115/1.3254705 · 1980
Provenance
crossref
Confidence 100%
ror
Confidence 99%
openalex
Confidence 95%
datacite
Confidence 0%
A Modified Influence Coefficient Method for Balancing Unsymmetrical Rotor-Bearing Systems
10.1006/jsvi.1996.0353 · 1996
Development and Modification of a Unified Balancing Method for Unsymmetrical Rotor-Bearing Systems
10.1006/jsvi.1996.0652 · 1997
A modified approach based on influence coefficient method for balancing crank-shafts
10.1006/jsvi.1999.2873 · 2000
An accuracy improvement for balancing crankshafts
10.1016/s0094-114x(03)00097-1 · 2003
A novel methodology for the angular position identification of the unbalance force on asymmetric rotors by response polar plot analysis
10.1016/j.ymssp.2017.03.028 · 2017
Aldemir Ap Cavallini Jr, and Valder Steffen Jr., Theoretical and experimental applications of a rotor balancing technique without using trial weights based on augmented Kalman filter
2024
Dynamic balance optimization method for aero-engine rotor without trial weight
10.1177/16878132251343928 · 2025
Mechanical rotor unbalance monitoring based on system identification and signal processing approaches
10.1016/j.jsv.2022.117313 · 2022
Transient dynamic balancing of the rotor system with uncertainty
10.1016/j.ymssp.2022.108894 · 2022
The influence of unbalance identification position on the transient dynamic balancing of a single-disk rotor without trial weights
10.1177/10775463251407650 · 2025
Effects of Unbalance Identification Locations on Transient Dynamic Balancing without Trial Weights Performance of Power Turbine Rotor
10.3390/s25237242 · 2025
10.1016/j.cnsns.2026.110039
10.1016/j.cnsns.2026.110039
Weak signal extraction of micro‐motor rotor unbalance based on all‐phase fast Fourier transform
10.1002/msd2.12116 · 2024
The use of Machine Learning for TSA Improvement Implemented on Rotor Balancing using Low SNR Vibration Signal
10.1109/icsmech62936.2024.10812323 · 2024
Deep Learning-based Identification of Shaft Imbalance Faults in Rotating Machinery using the NARX Model
10.1007/s42417-025-01823-8 · 2025
Flexible Rotor Dynamic Balancing Method based on a Multi-Layer LSTM Network
10.3390/app152011130 · 2025
An Integrated Balancing Method for Asymmetric Rotor-Bearing Systems: Algebraic Identification, Modal Balancing, and active Balancing Disks
2022
Balancing of Asymmetric Rotor‑Bearing Systems using Modal Masses Array calculated by Algebraic Identification of Modal Unbalance
10.1007/s42417-022-00598-6 · 2023
Unresolved referenced work
1988
An algebraic framework for linear identification
10.1051/cocv:2003008 · 2003
A Simplified Model for the On-Line Identification of Bearing Direct-Dynamic Parameters based on Algebraic Identification (AI)
10.3390/math11143131 · 2023
On the use of Balancing Machines for Flexible Rotors
10.1115/1.3428193 · 1972
The Vibration and Balancing of an Unbalanced Flexible Rotor
10.1243/jmes_jour_1959_001_010_02 · 1959
Fundamentals of Rotating Machinery Diagnostics
2002
Vibration analysis of timoshenko beams transversed by moving loads
1994
The Vibration and Balancing of an Unbalanced Flexible Rotor
10.1243/jmes_jour_1959_001_010_02 · doi-reference
On the use of Balancing Machines for Flexible Rotors
10.1115/1.3428193 · doi-reference
A Simplified Model for the On-Line Identification of Bearing Direct-Dynamic Parameters based on Algebraic Identification (AI)
10.3390/math11143131 · doi-reference
An algebraic framework for linear identification
10.1051/cocv:2003008 · doi-reference
Balancing of Asymmetric Rotor‑Bearing Systems using Modal Masses Array calculated by Algebraic Identification of Modal Unbalance
10.1007/s42417-022-00598-6 · doi-reference
Flexible Rotor Dynamic Balancing Method based on a Multi-Layer LSTM Network
10.3390/app152011130 · doi-reference
Deep Learning-based Identification of Shaft Imbalance Faults in Rotating Machinery using the NARX Model
10.1007/s42417-025-01823-8 · doi-reference
The use of Machine Learning for TSA Improvement Implemented on Rotor Balancing using Low SNR Vibration Signal
10.1109/icsmech62936.2024.10812323 · doi-reference
Weak signal extraction of micro‐motor rotor unbalance based on all‐phase fast Fourier transform
10.1002/msd2.12116 · doi-reference
10.1016/j.cnsns.2026.110039
10.1016/j.cnsns.2026.110039 · doi-reference
Effects of Unbalance Identification Locations on Transient Dynamic Balancing without Trial Weights Performance of Power Turbine Rotor
10.3390/s25237242 · doi-reference
The influence of unbalance identification position on the transient dynamic balancing of a single-disk rotor without trial weights
10.1177/10775463251407650 · doi-reference
Transient dynamic balancing of the rotor system with uncertainty
10.1016/j.ymssp.2022.108894 · doi-reference
Mechanical rotor unbalance monitoring based on system identification and signal processing approaches
10.1016/j.jsv.2022.117313 · doi-reference
Dynamic balance optimization method for aero-engine rotor without trial weight
10.1177/16878132251343928 · doi-reference
A novel methodology for the angular position identification of the unbalance force on asymmetric rotors by response polar plot analysis
10.1016/j.ymssp.2017.03.028 · doi-reference
An accuracy improvement for balancing crankshafts
10.1016/s0094-114x(03)00097-1 · doi-reference
A modified approach based on influence coefficient method for balancing crank-shafts
10.1006/jsvi.1999.2873 · doi-reference
Development and Modification of a Unified Balancing Method for Unsymmetrical Rotor-Bearing Systems
10.1006/jsvi.1996.0652 · doi-reference
A Modified Influence Coefficient Method for Balancing Unsymmetrical Rotor-Bearing Systems
10.1006/jsvi.1996.0353 · doi-reference
Response Analysis of a General Asymmetric Rotor-Bearing System
10.1115/1.3254705 · doi-reference
On the balancing convergence of flexible rotors, with special reference to asymmetric rotors
10.1016/0022-460x(79)90684-9 · doi-reference
10.1098/rsta.1965.0052
10.1098/rsta.1965.0052 · doi-reference
Shaft Whirling as Influenced by Stiffness Asymmetry
10.1115/1.3664468 · doi-reference
Critical Speeds of a Rotor with Unequal Shaft Flexibilities, Mounted in Bearings of Unequal Flexibility—I
10.1115/1.4009262 · doi-reference
Special Problems of Two-Pole Turbine Generators
10.1109/t-aiee.1940.5058002 · doi-reference
Critical speed Behavior of Unsymmetrical Shafts
10.1115/1.4009017 · doi-reference
10.1098/rspa.1933.0158
10.1098/rspa.1933.0158 · doi-reference