Results 171 to 180 of about 6,331 (214)
Some of the next articles are maybe not open access.

Vibration Localization Analysis of Bladed Disk with Grouped Blades

Advanced Materials Research, 2010
Vibration localization of bladed disk turns to be much complex when a number of blades are assembled into periodic groups. This work focused on natural frequency distribution and modal localization of bladed disks with grouped blades based on the lumped parameter models, and effects of the blade number in each group on natural frequency were studied ...
Ai Lun Wang, Bo Hai Sun, Jin Bo Chen
openaire   +1 more source

Non-linear flapping vibrations of rotating blades

Journal of Sound and Vibration, 1982
Summary: The nonlinear equations of motion of a rotating blade undergoing extensional and flapwise bending vibrations are derived, including nonlinearities up to 0(e3). The strain-displacement relationship derived is compared with expressions derived by earlier investigators and the errors and the approximations made in some of those are brought out ...
Venkatesan, C, Nagaraj, VT
openaire   +2 more sources

The Stress Problem of Vibrating Compressor Blades

Journal of Applied Mechanics, 1955
Abstract In order to demonstrate the general nature of the actual vibrations of compressor and turbine blades, the author undertakes a simplified analysis in which a single stiff blade, with one translational and one pitching mode, is studied.
openaire   +2 more sources

The Vibrations of Laced Turbine Blades

The Journal of the Royal Aeronautical Society, 1957
While the use of blade lacing wires or shrouding is not altogether common in gas turbine practice, occasions may arise when their use is desirable, and the purpose of this note is t o present a method whereby the vibrational characteristics of a number of blades wired together may be conveniently found.
J. P. Ellington, H. McCallion
openaire   +1 more source

Turbine Blade Vibrations of Turbochargers

SAE Technical Paper Series, 1967
<div class="htmlview paragraph">The causes of turbine blade excitation are described, and the factors that influence amplitudes of vibration are discussed. Blade rotation in an asymmetrical pressure field produces a periodic force on the blade. Harmonics of this periodic force excite the blades at their natural frequencies.
V. A. Zastrow, E. R. Bernson
openaire   +1 more source

Localization of Vibrations in Blade Assemblies

Journal of Vibration and Control, 2010
A simple model of blade interactions through an elastic disk is suggested in this paper. The elasticity of a disk is modeled using a ring on an elastic foundation. The linear discrete model of a bladed disk is obtained using the flexibility matrix.
K.V. Avramov, J. Awrejcewicz
openaire   +1 more source

Turbine-Blade Vibration and Strength

Journal of Fluids Engineering, 1955
Abstract In the design of turbines, the strength of the blades is a matter of great importance since blading is the heart of the turbine. The authors discuss the factors which affect the strength of turbine blades and show what recent progress has been made and what studies are under way toward improved blade designs.
W. E. Trumpler, H. M. Owens
openaire   +1 more source

The Vibration of Blades in Axial Turbomachinery

ASME 1966 Winter Annual Meeting: GT Papers, 1966
This paper describes a recommended design and development procedure for reducing the possibility of vibrational problems in the blading of axial turbomachinery. The recommendations that are presented are based upon a study undertaken for the Bureau of Ships, United States Navy, under Contract No. NObs-92089.
openaire   +1 more source

Vibrations of Twisted Rotating Blades

Journal of Vibration and Acoustics, 1984
The literature dealing with vibrations of turbomachinery blades is voluminous, but the vast majority of it treats the blades as beams. In a previous paper a two-dimensional analytical procedure was developed and demonstrated on simple models of blades having camber.
A. W. Leissa, J. K. Lee, A. J. Wang
openaire   +1 more source

Vibration of Marine-Turbine Blading

Journal of Fluids Engineering, 1950
Abstract The purpose of this paper is to give a general explanation of the vibration phenomena encountered in turbine design. Detailed methods have been omitted. The behavior of a vibrating cantilever is expressed in terms of the exciting force and damping factor. The sources of damping and excitation are discussed. Impulse excitation is
openaire   +1 more source

Home - About - Disclaimer - Privacy