IP Library › Granted Patent US 10,981,731
Granted Patent B2
US 10,981,731 · App. 16/740,428 · Granted Apr 20, 2021

Active control system for belt conveyors

Inventor: Victor N Prutu (Cumming, GA)
B65G43/08B65G43/10B65G47/31B65G2203/044B65G2811/0673B65G2811/095
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Quick Facts
Patent No.
US 10,981,731
App. No.
16/740,428
Granted
Apr 20, 2021
Kind
B2
Abstract

The present concepts comprise various methods and apparatuses for the sorting of packages and other articles or objects in a cost- and time-efficient manner such that the life of the apparatuses for sorting and transporting said objects is extended. Likewise, the integrity of the conveyed articles is likewise maintained, such that the articles are not damaged or altered. This is done by detecting and rectifying Jamming, Overload, and Overflow. Another purpose of the concept is to eliminate the subjectivity of the human operator; stoppage due to the jamming or overload excepted.

Claims (40)

1. A method of controlling the flow of objects conveyed by a conveyor along a conveying path, said method including the following steps:

A) Monitoring said flow of objects;

B) If during Step A, object overflow is detected on said conveying path, then conveyor speed along said path is modified such that the relative speed of a downstream portion of said conveyor is increased relative to the speed of an upstream portion of said conveyor, wherein object overflow includes a determination that the density of objects on said conveyor is higher than a predetermined upper value;

C) If after Step B, a predetermined time passes and overflow continues, then objects along said conveying path are buffered to a separate buffering conveyor;

D) If during Step A, object jamming is detected on said conveying path, then objects along said conveying path are buffered to said separate buffering conveyor, wherein object jamming includes a determination that one or more objects are not moving due to at least one parcel being stopped at a location where it should otherwise be moving;

E) If after Step D, a predetermined time passes and jamming continues, then said conveyor is stopped, and induction to said conveyor is also stopped; and

F) If during Step A, overload is detected on the conveying path, then said conveyor is stopped, and induction to said conveyor is also stopped, wherein overload of a conveyor is determined by looking at amperage and how long the amperage draw goes above a threshold.

2. The method of controlling the flow of objects as claimed in claim 1 , wherein in Step A, said flow monitoring is measured at least in part by sensing devices.

3. The method of controlling the flow of objects as claimed in claim 2 , wherein said sensing devices include a light curtain.

4. The method of controlling the flow of objects as claimed in claim 2 , wherein said sensing devices include a light sensor.

5. The method of controlling the flow of objects as claimed in claim 1 , wherein in Step A, said conveying path can include a power turn conveyor, or the intersection of one or more conveyors.

6. The method of controlling the flow of objects as claimed in claim 1 , wherein in Step B, said conveyor speed modification comprised speeding up said downstream conveyor portion.

7. The method of controlling the flow of objects as claimed in claim 1 , wherein in Step B, said conveyor speed modification comprised slowing down said upstream conveyor portion.

8. The method of controlling the flow of objects as claimed in claim 1 , wherein in Steps C and D, objects along said conveying path are buffered to said separate buffering conveyor in “first in last out” order.

9. The method of controlling the flow of objects as claimed in claim 1 , wherein in Steps C and D, an induction conveyor is used between said conveyor path and said buffering conveyor.

10. A method of controlling the flow of objects conveyed by a conveyor along a conveying path, said method including the following steps:

A) Monitoring said flow of objects;

B) If during Step A, object overflow is detected on said conveying path, then conveyor speed along said path is modified such that the relative speed of a downstream portion of said conveyor is increased relative to the speed of an upstream portion of said conveyor, wherein object overflow includes a determination that the density of objects on said conveyor is higher than a predetermined upper value;

C) If after Step B, a predetermined time passes and overflow continues, then objects along said conveying path are buffered to a separate buffering conveyor;

D) If during Step A, object jamming is detected on said conveying path, then objects along said conveying path are buffered to said separate buffering conveyor, wherein object jamming includes a determination that one or more objects are not moving due to at least one parcel being stopped at a location where it should otherwise be moving;

E) If after Step D, a predetermined time passes and jamming continues, then said conveyor is stopped, and induction to said conveyor is also stopped;

F) If during Step A, overload is detected on the conveying path, then said conveyor is stopped, and induction to said conveyor is also stopped, wherein overload of a conveyor is determined by looking at amperage and how long the amperage draw goes above a threshold; and

G) If overload or jamming is corrected to suitable levels, parcels are debuffered back into the flow.

11. The method of controlling the flow of objects as claimed in claim 10 , wherein in Step A, said conveying path can include a power turn conveyor, or the intersection of one or more conveyors.

12. The method of controlling the flow of objects as claimed in claim 10 , wherein in Steps C and D, objects along said conveying path are buffered to said separate buffering conveyor in “first in last out” order.

13. The method of controlling the flow of objects as claimed in claim 10 , wherein in Steps C and D, an induction conveyor is used between said conveyor path and said buffering conveyor.

14. The method of controlling the flow of objects as claimed in claim 10 , wherein in Steps C and D, an induction conveyor used between said conveyor path and said buffering conveyor, said induction conveyor being configured to speed up and slow down in order to insert items into gaps between other items on said conveyor path.

15. The method of controlling the flow of objects as claimed in claim 10 , further comprising the step of allowing for the manual removal of objects from said conveyor by operating personnel.

16. A method of controlling the flow of objects conveyed by a conveyor along a conveying path through a transition point, including the following steps:

A) Monitoring said flow of objects;

B) If during Step A, object overflow is detected on said conveying path, then conveyor speed along said path is modified such that the relative speed of a downstream portion of said conveyor is increased relative to the speed of an upstream portion of said conveyor, wherein object overflow includes a determination that the density of objects on said conveyor is higher than a predetermined upper value;

C) If after Step B, a predetermined time passes and overflow continues, then objects along said conveying path are buffered to a separate buffering conveyor;

D) If during Step A, object jamming is detected on said conveying path, then objects along said conveying path are buffered to a separate buffering conveyor, wherein object jamming includes a determination that one or more objects are not moving due to at least one parcel being stopped at a location where it should otherwise be moving;

E) If after Step D, a predetermined time passes and jamming continues, then said conveyor is stopped, and induction to said conveyor is also stopped;

F) If during Step A, overload is detected on the conveying path, then said conveyor is stopped, and induction to said conveyor is also stopped, wherein overload of a conveyor is determined by looking at amperage and how long the amperage draw goes above a threshold; and

G) If overload or jamming is corrected to suitable levels, determining a window of opportunity in order to re-introduce buffered objects into a path, reintroducing objects by use of window of opportunity if overflow or jamming is fixed.

17. The method of controlling the flow of objects as claimed in claim 16 , wherein in Step A, said conveying path can include a power turn conveyor, or the intersection of one or more conveyors.

18. The method of controlling the flow of objects as claimed in claim 16 , wherein in Steps C and D, objects along said conveying path are buffered to said separate buffering conveyor in “first in last out” order.

19. The method of controlling the flow of objects as claimed in claim 16 , wherein in Steps C and D, an induction conveyor is used between said conveyor path and said buffering conveyor, said induction conveyor being configured to speed up and slow down in order to insert items into gaps between other items on said conveyor path.

20. The method of controlling the flow of objects as claimed in claim 16 , further comprising the step of allowing for the manual removal of objects from said conveyor by operating personnel.

Continuity (2)
Provisional Application 62791757 · Jan 12, 2019
Related Publication 20200223642A1 · Jul 16, 2020
Cited By (1)
US 12,214,969