IP Library Granted Patent US 12,378,083
Granted Patent B2
US 12,378,083 · App. 18/117,076 · Granted Aug 5, 2025

Conveyor gap blocker

Inventor: Mark Steven Pettinga (Grandville, MI)
Assignee: Flexible Steel Lacing Company
B65G47/66
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Quick Facts
Patent No.
US 12,378,083
App. No.
18/117,076
Granted
Aug 5, 2025
Kind
B2
Abstract

In one aspect, a gap blocker having a body configured to be supported in a gap of a roller conveyor by upstream and downstream rollers. The body has an upper blocking portion with upper contact portions for slidingly contacting the upstream and downstream rollers above a narrowest portion of the gap. The body further includes a plurality of laterally spaced upstream leg portions connected to the upper blocking portion and a plurality of laterally spaced downstream leg portions connected to the upper blocking portion longitudinally spaced from the upstream leg portions. The upstream leg portions have upstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap. The downstream leg portions likewise have downstream end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap.

Claims (91)

1. A gap blocker for a roller conveyor having upstream and downstream rollers for conveying an object in a downstream longitudinal direction and a gap between the upstream and downstream rollers, the gap blocker comprising:

a body configured to be supported in the gap by the upstream and downstream rollers as the upstream and downstream rollers rotate during operation of the roller conveyor;

an upper blocking portion of the body to inhibit the object from falling through the gap;

upper contact portions of the upper blocking portion for slidingly contacting the upstream and downstream rollers above a narrowest portion of the gap;

a plurality of laterally spaced upstream leg portions of the body connected to the upper blocking portion and having upstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap;

a plurality of laterally spaced downstream leg portions of the body connected to the upper blocking portion longitudinally spaced from the upstream leg portions so that the upstream and downstream leg portions have a space therebetween extending in a longitudinal direction, the downstream leg portions having downstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap; and

the upstream leg portions of the body configured to be spaced from the upstream roller with the body supported in the gap by the upstream and downstream rollers as the upstream and downstream rollers rotate during operation of the roller conveyor.

2. A gap blocker for a roller conveyor having upstream and downstream rollers for conveying an object in a downstream longitudinal direction and a gap between the upstream and downstream rollers, the gap blocker comprising:

a body configured to be supported in the gap by the upstream and downstream rollers as the upstream and downstream rollers rotate during operation of the roller conveyor;

an upper blocking portion of the body to inhibit the object from falling through the gap;

upper contact portions of the upper blocking portion for slidingly contacting the upstream and downstream rollers above a narrowest portion of the gap;

a plurality of laterally spaced upstream leg portions of the body connected to the upper blocking portion and having upstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap;

a plurality of laterally spaced downstream leg portions of the body connected to the upper blocking portion longitudinally spaced from the upstream leg portions so that the upstream and downstream leg portions have a space therebetween extending in a longitudinal direction, the downstream leg portions having downstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap;

wherein the body includes upstream lateral spacings laterally spacing adjacent pairs of the upstream leg portions and downstream lateral spacings laterally spacing adjacent pairs of the downstream leg portions; and

wherein the upstream lateral spacings are longitudinally aligned with the downstream lateral spacings to facilitate cutting of the body in a longitudinal direction through an aligned upstream and downstream lateral spacing of the body.

3. The gap blocker of claim 1 wherein the upper contact portions include an upstream contact portion having a plurality of upstream recesses and a downstream contact portion having a plurality of downstream recesses to reduce contact areas between the body and the upstream and downstream rollers.

4. The gap blocker of claim 3 wherein the body includes upstream lateral spacings laterally spacing adjacent pairs of the upstream leg portions and downstream lateral spacings laterally spacing adjacent pairs of the downstream leg portions; and

wherein the upstream lateral spacings are longitudinally aligned with the upstream recesses and wherein the downstream lateral spacings are longitudinally aligned with the downstream recesses to facilitate cutting of the body in a longitudinal direction through longitudinally aligned ones of the upstream recesses, downstream recesses, upstream lateral spacings, and downstream lateral spacings.

5. The gap blocker of claim 1 wherein the plurality of upstream leg portions include at least four upstream leg portions; and

wherein the plurality of downstream leg portions include at least four downstream leg portions.

6. The gap blocker of claim 1 wherein the longitudinal spacing between the upstream and downstream leg portions extends continuously from the upper blocking portion of the body to the upstream and downstream distal end portions of the upstream and downstream leg portions.

7. The gap blocker of claim 1 wherein the downstream distal end portions of the downstream leg portions are configured to slidingly contact the downstream roller during operation of the roller conveyor.

8. The gap blocker of claim 1 wherein the upstream and downstream leg portions include a plurality of pairs of longitudinally aligned upstream and downstream leg portions.

9. The gap blocker of claim 1 wherein the upstream and downstream leg portions are resilient to permit the leg portions to be deflected as the gap blocker is positioned in the gap.

10. The gap blocker of claim 1 wherein the upstream and downstream leg portions have outer surfaces above the upstream and downstream distal end portions configured to be in clearance with the upstream and downstream rollers with the body supported in the gap by the upstream and downstream rollers.

11. A gap blocker for a roller conveyor having upstream and downstream rollers for conveying an object in a downstream longitudinal direction and a gap between the upstream and downstream rollers, the gap blocker comprising:

a body configured to be supported in the gap by the upstream and downstream rollers as the upstream and downstream rollers rotate during operation of the roller conveyor;

an upper blocking portion of the body to inhibit the object from falling through the gap;

upper contact portions of the upper blocking portion for slidingly contacting the upstream and downstream rollers above a narrowest portion of the gap;

a plurality of laterally spaced upstream leg portions of the body connected to the upper blocking portion and having upstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap; and

a plurality of laterally spaced downstream leg portions of the body connected to the upper blocking portion longitudinally spaced from the upstream leg portions so that the upstream and downstream leg portions have a space therebetween extending in a longitudinal direction, the downstream leg portions having downstream distal end portions to be positioned below the narrowest portion of the gap for keeping the body in the gap;

wherein the body includes upstream open-ended slots laterally spacing the upstream leg portions apart from one another; and

wherein the body includes downstream open-ended slots laterally spacing the downstream leg portions apart from one another.

12. The gap blocker of claim 1 wherein the body has opposite lateral side portions extending between the contact portions of the upper blocking portion; and

wherein at least one of the lateral side portions of the body includes a resilient biasing member configured to engage an adjacent surface and apply a biasing force in a lateral direction against the adjacent surface.

13. The gap blocker of claim 12 in combination with another gap blocker, the other gap blocker having another resilient biasing member that includes the adjacent surface.

14. The gap blocker of claim 1 wherein the upper blocking portion includes an upper channel to provide clearance for a drive member extending between the upstream and downstream rollers.

15. The gap blocker of claim 1 wherein the upper blocking portion includes an upper surface for spanning across the gap and a lower surface opposite the upper surface; and

wherein the lower surface includes a plurality of recesses and transversely extending surface portions associated with each of the recesses.

16. The gap blocker of claim 1 wherein the upstream and downstream leg portions each include an upper end portion connected to a lower surface of the upper blocking portion and a free end opposite the upper end portion, wherein each of the upstream and downstream leg portions are separated from the adjacent upstream and downstream leg portions for the entire extent thereof.

17. The gap blocker of claim 1 wherein the body has a unitary, one-piece construction.

18. The gap blocker of claim 1 wherein the body has a width that extends longitudinally when the body is in the gap and a length perpendicular to the width that extends laterally when the body is in the gap, the length being greater than the width.

19. A gap blocker for being positioned in a gap between upstream and downstream rollers that are rotatable to convey an object in a downstream longitudinal direction across the gap, the gap blocker comprising:

a body to be positioned in the gap;

an upstream contact portion of the body for slidingly contacting the upstream roller;

a downstream contact portion of the body for slidingly contacting the downstream roller;

opposite lateral side portions of the body extending longitudinally intermediate the upstream and downstream contact portions; and

a lateral biasing member of one of lateral side portions of the body configured to apply a biasing force in a lateral direction against a surface adjacent to the body and maintain a spacing between the body and the surface during operation of the roller conveyor.

20. The gap blocker of claim 19 further comprising another lateral biasing member of the other one of the lateral side portions, the lateral biasing members are configured to apply first and second biasing forces in opposite lateral directions against surfaces adjacent to the lateral side portions.

21. The gap blocker of claim 19 wherein the lateral biasing member has an initial configuration and a deflected configuration, the lateral biasing member configured to apply the biasing force in the lateral direction in response to the body being positioned in the gap adjacent the surface and the lateral biasing member shifting from the initial configuration to the deflected configuration due to engagement with the surface.

22. The gap blocker of claim 19 wherein the lateral biasing member comprises a resilient arm having a free end portion configured to engage the surface adjacent to the body.

23. The gap blocker of claim 22 wherein the free end portion includes a cam surface to engage another surface and deflect the resilient arm as the gap blocker is positioned in the gap.

24. The gap blocker of claim 23 wherein the cam surface extends transverse to the lateral direction.

25. The gap blocker of claim 19 wherein the lateral biasing member comprises a first resilient arm, the body further comprising a second resilient arm of the other one of the lateral side portions.

26. The gap blocker of claim 19 wherein the body includes an upper blocking portion for extending from the upstream roller to the downstream roller, the upper blocking portion including the upstream and downstream contact portions; and

wherein the lateral biasing member depends from the upper blocking portion.

27. The gap blocker of claim 19 wherein the lateral biasing member is longitudinally intermediate the upstream and downstream contact portions along the body.

28. The gap blocker of claim 19 wherein the body includes a upstream leg portion and a downstream leg portion having a longitudinal spacing therebetween; and

wherein the lateral biasing member is longitudinally intermediate the upstream and downstream leg portions.

29. The gap blocker of claim 19 wherein the body includes an upper portion having a maximum width larger than a narrowest width of the gap; and

wherein the body includes a lower portion with a maximum width larger than narrowest width of the gap.

30. The gap blocker of claim 19 wherein the body includes a plurality of laterally spaced upstream leg portions and a plurality of laterally spaced downstream leg portions, the upstream leg portions and the downstream leg portions having a longitudinal spacing therebetween.

31. A gap blocker system for a roller conveyor having rollers operable to convey an object in a downstream longitudinal direction across a gap between the rollers, the roller conveyor having a conveyor structure adjacent the gap and laterally outward from the rollers, the gap blocker system comprising:

a gap blocker having a unitary, one-piece construction for being positioned in the gap, the gap blocker having contact portions configured to slidingly contact the rollers and support the gap blocker in the gap;

an upper surface of the gap blocker to keep an object from falling through the gap;

opposite lateral side portions of the gap blocker for extending longitudinally in the gap, wherein one of the lateral side portions is configured to be positioned adjacent the conveyor structure when the gap blocker is positioned in the gap; and

a retainer configured to keep the one lateral side portion of the gap blocker adjacent the conveyor structure and inhibit lateral movement of the gap blocker away from the conveyor structure during operation of the roller conveyor.

32. The gap blocker system of claim 31 wherein the retainer includes a mounting portion configured to be secured to the conveyor structure and an engaging portion spaced from the mounting portion for engaging the gap blocker.

33. The gap blocker system of claim 31 wherein the gap blocker and the retainer include an engagement projection and recess with the engagement projection configured to extend into the recess.

34. The gap blocker system of claim 33 wherein the retainer includes a receptacle comprising the recess.

35. The gap blocker system of claim 31 wherein the gap blocker and the retainer include portions configured to overlap in a lateral direction to allow the portions to engage and inhibit lateral movement of the gap blocker.

36. The gap blocker system of claim 31 wherein the gap blocker includes a resilient arm; and

wherein the retainer includes an upper, inclined lead-in surface configured to deflect the resilient arm as the gap blocker is lowered into the gap.

37. The gap blocker system of claim 31 in combination with the conveyor structure, the conveyor structure including the retainer.

38. The gap blocker system of claim 31 wherein the gap blocker includes an engaging portion and the retainer includes stop surfaces for receiving the engaging portion of the gap blocker therebetween, the stop surfaces spaced apart to permit a predetermined range of lateral movement of the gap blocker during operation of the roller conveyor.

39. The gap blocker of claim 1 wherein the body includes upstream lateral spacings laterally spacing adjacent pairs of the upstream leg portions and downstream lateral spacings laterally spacing adjacent pairs of the downstream leg portions; and

wherein the upstream lateral spacings are longitudinally aligned with the downstream lateral spacings to facilitate cutting of the body in a longitudinal direction through an aligned upstream and downstream lateral spacing of the body.

40. The gap blocker of claim 1 wherein the body includes upstream open-ended slots laterally spacing the upstream leg portions apart from one another; and

wherein the body includes downstream open-ended slots laterally spacing the downstream leg portions apart from one another.

41. The gap blocker of claim 2 wherein the body has a unitary, one-piece construction.

42. The gap blocker of claim 2 wherein the upstream leg portions include at least three upstream leg portions and the upstream lateral spacings include at least two upstream lateral spacings; and

wherein the downstream leg portions include at least three downstream leg portions and the downstream lateral spacings include at least two downstream lateral spacings.

43. The gap blocker of claim 2 wherein the upstream lateral spacings each include an upstream spacing maximum lateral width and the upstream leg portions each have an upstream leg portion maximum lateral width larger than the upstream spacing maximum lateral width of at least one adjacent upstream lateral spacing; and

wherein the downstream lateral spacings each include a downstream spacing maximum lateral width and the downstream leg portions each have a downstream leg portion maximum lateral width larger than the downstream spacing maximum lateral width of at least one adjacent downstream lateral spacing.

44. The gap blocker of claim 2 wherein the upstream leg portions include at least four upstream leg portions; and

wherein the downstream leg portions include at least four downstream leg portions.

45. The gap blocker of claim 11 wherein the body has a unitary, one-piece construction.

46. The gap blocker of claim 11 wherein the upstream open-ended slots each include an upstream open-ended slot maximum lateral width and the upstream leg portions each have an upstream leg portion maximum lateral width larger than the upstream open-ended slot maximum lateral width of at least one adjacent upstream open-ended slot; and

wherein the downstream open-ended slots each include a downstream open-ended slot maximum lateral width and the downstream leg portions each have a downstream leg portion maximum lateral width larger than the downstream open-ended slot maximum lateral width of at least one adjacent downstream open-ended slot.

47. The gap blocker of claim 11 wherein the upstream leg portions include at least four upstream leg portions; and

wherein the downstream leg portions include at least four downstream leg portions.

Assignments (2)
SECURITY INTEREST Recorded Mar 6, 2026
From: FLEXIBLE STEEL LACING COMPANY
To: BANK OF AMERICA, N.A., AS LENDER
Reel/Frame 074003/0692 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2023
From: PETTINGA, MARK STEVEN
To: FLEXIBLE STEEL LACING COMPANY
Reel/Frame 064972/0842 →
Continuity (2)
Provisional Application 63316344 · Mar 3, 2022
Related Publication 20230278808A1 · Sep 7, 2023
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