Process for measuring the tension in a metal strip
In a process for measuring the tension in a metal strip ( 10 ) running over two rolls ( 12, 14; 26, 28 ) spaced from each other the vibration frequency of the strip between the contact lines ( 16, 18 ) at the surface of the rolls is measured and used as a measure of the tension in the strip.
1 . Process for measuring the tension in a metal strip ( 10 ) running over two rolls ( 12 , 14 ; 26 , 28 ) spaced from each other, wherein a natural resonant frequency of vibration of the strip resulting from the motion of the metal strip ( 10 ) over the two rolls ( 12 , 14 ; 26 , 28 ), between the contact lines ( 16 , 18 ) at the surface of the rolls, is measured and used as a measure of the tension in the strip.
2 . Process according to claim 1 , characterised in that the vibration frequencies include fundamental and harmonics of fundamental transitional modes and modes of vibration involving twisting and/or flexing of the strip.
3 . Process according to claim 1 , characterised in that the tension in the strip ( 10 ) is calculated according to the equation
f
0
=
1
2
L
√
T
Wtp
where f 0 is a frequency of the fundamental transitional mode of vibration, L is the length of the strip between the rolls, W is the width of the strip, t is the thickness of the strip, p is the density of the strip and T is the tension in the strip.
4 . Process according to claim 1 , characterised in that the frequency is measured with a vibration sensor ( 32 ).
5 . Process according to claim 4 , characterised in that the vibration sensor ( 32 ) is a non-contact sensor such as a laser vibrometer, an inductive proximity sensor, a capacitive sensor, an optical displacement sensor or an ultrasonic or sonic sensor.
6 . Process according to claim 1 , characterised in that the measured vibration frequency is used to control the tension in a running strip ( 10 ).
7 . Process according to claim 1 , characterised in that the measured vibration frequency is used to measure and/or control the tension of strips ( 10 ) in a slitter arrangement ( 20 ).
8 . Process according to claim 1 , characterised in that the vibration frequencies occurring due to the slitter process are measured.
9 . Process according to claim 8 , characterised in that the vibration frequencies occurring due to the slitter process are additionally excited.