IP Library Granted Patent US 12,304,742
Granted Patent B2
US 12,304,742 · App. 17/500,247 · Granted May 20, 2025

Vibrating conveyor

Inventors: Sverre Faureholm Jensen (Odense S, DK); Thomas Norby (Odense S, DK); Mike Gornitzka (Odense S, DK)
Assignee: ABB SCHWEIZ AG
B65G27/16H02N2/043H02N2/065H02P25/032
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Quick Facts
Patent No.
US 12,304,742
App. No.
17/500,247
Granted
May 20, 2025
Kind
B2
Abstract

For tuning a vibrating conveyor having an electric vibrator that drives a vibration element connected to a conveying unit of the vibrating conveyor for oscillating the conveying unit to a mechanical resonance frequency f R of the vibrating conveyor, an electric drive unit varies the frequency f v of a AC drive voltage (u v ) in a given frequency range, measures a current consumption of the electric vibrator unit for different applied frequencies f v of the AC drive voltage (u v ) and using the frequency f v with the lowest current consumption of the electric vibrator unit as frequency f v of the AC drive voltage (u v ) for operating the vibrating conveyor.

Claims (24)

1. A method for controlling the oscillation of a vibrating conveyor, the vibrating conveyor including a vibration element, an oscillation conveyor coupled to the vibration element, and an electric vibrator arranged to vibrate the vibration element, the method comprising:

supplying the electric vibrator with an AC drive voltage having an initial frequency;

tuning the initial frequency of the AC drive voltage to an unknown mechanical resonance frequency of the vibrating conveyor;

wherein the tuning of the initial frequency of the AC drive voltage to the unknown mechanical resonance frequency of the vibrating conveyor comprises:

varying the initial frequency of the AC drive voltage in a given frequency range,

measuring an electric current consumption of the electric vibrator for different frequencies within the given frequency range, and

using one of the different frequencies within the given frequency range with the lowest electric current consumption of the electric vibrator as a tuned frequency of the AC drive voltage for operating the vibrating conveyor.

2. The method according to claim 1 , wherein the given frequency range comprises a number of given frequency increments.

3. The method according to claim 1 , further comprising initiating a re-tuning of the tuned frequency of the AC drive voltage one of regularly or when a deviation of an actual AC drive current and a given expected current flow exceeds a given admissible current difference.

4. The method according to claim 3 , wherein for re-tuning of the tuned frequency of the AC drive voltage comprises:

varying the tuned frequency of the AC drive voltage in the given frequency range,

measuring the electric current consumption of the electric vibrator for the different frequencies within the given frequency range, and

using one of the frequencies within the given frequency range with the lowest current consumption of the electric vibrator as a re-tuned frequency of the AC drive voltage for operating the vibrating conveyor.

5. The method according to claim 3 , wherein the given frequency range comprises a number of given frequency increments, and the re-tuning of the frequency of the AC drive voltage is changed by one of the given frequency increments.

6. A vibrating conveyor comprising:

a vibration element;

a conveying unit coupled to the vibration unit;

an electric vibrator arranged to drive the vibration element, which oscillates the conveying unit; and

an electric drive, which comprises a current measurement sensor, the electric drive being supplied with a supply voltage from a supply grid and being arranged to supply the electric vibrator with an AC drive voltage with a frequency tuned to an unknown mechanical resonance frequency for oscillating the conveying unit,

wherein the electric drive is structured to supply the electric vibrator with the AC drive voltage with an initial frequency that is tunable to the unknown mechanical resonance frequency of the vibrating conveyor by varying the initial frequency in a given frequency range while the electric drive is supplied with the supply voltage from the supply grid, to measure an electric current consumption of the electric vibrator with the current measurement sensor for the different frequencies in the given frequency range, and to use, as a tuned frequency of the AC drive voltage, one of the different frequencies with the lowest electric current consumption of the electric vibrator unit for operating the vibrating conveyor.

7. The vibrating conveyor according to claim 6 , wherein the electric vibrator comprises an electric coil.

8. The vibrating conveyor according to claim 7 , wherein the vibration element comprises one of a moving core of the electric coil or a magnetic element interacting with the electric coil.

9. The vibrating conveyor according to claim 6 , wherein the electric vibrator comprises an amplified piezoelectric actuator with a piezoelectric element and a mechanical transmission.

10. The vibrating conveyor according to claim 9 , wherein the mechanical transmission is arranged as the vibration element and the piezoelectric element is arranged as electric vibrator.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2025
From: B&R INDUSTRIAL AUTOMATION GMBH
To: ABB SCHWEIZ AG
Reel/Frame 070109/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2021
From: JENSEN, SVERRE FAUREHOLM; NORBY, THOMAS; GORNITZKA, MIKE
To: B&R INDUSTRIAL AUTOMATION GMBH
Reel/Frame 058149/0771 →
Priority Claims (1)
EP 20201834 · Oct 14, 2020 · regional
Continuity (1)
Related Publication 20220112032A1 · Apr 14, 2022
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