Affiliation:
1. Chengdu Aeronautic Polytechnic
Abstract
<div class="section abstract"><div class="htmlview paragraph">Wire rod is one of the important products of modern manufacturing. Laying head is
widely used for wire rod coiling and storage. Rotors of laying head are typical
rotating equipment in which vibration during operation is inevitable. To address
the problem of achieving precise dynamic balance for the laying head rotor with
complex and asymmetrical structures, a vibration test is performed on the rotor
to determine its primary cause. Modal analysis is conducted on the laying head
rotor using finite element analysis, with the critical speed calculated.
Unbalance response analysis of the rotor is executed, coupled with the rotor
structure to identify appropriate balancing planes. The rotor’s
three-dimensional model is used to calculate the distribution of the unbalance
amount. The balancing process effectively decreased the rotor’s eccentricity and
vibration intensity with no significant increase in overall mass, meeting
operational requirements. This method significantly increased balancing
efficiency, compared to empirical balancing methods, without requiring multiple
equipment start–stop cycles. The balancing outcomes suggest that the proposed
method is an effective and efficient solution for rotor balancing.</div></div>
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