IP Library › Granted Patent US 12,735,219
Granted Patent B2
US 12,735,219 · App. 18/622,468 · Granted Sep 15, 2026

Flow stabilized high speed axial fan blower for stretch wrapping machine tail treatment

Inventor: Jean-Louis Limousin (Louisville, KY)
Assignee: Lantech.com, LLC
B65B51/20B65B11/025B65B41/12B65B61/06
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Quick Facts
Patent No.
US 12,735,219
App. No.
18/622,468
Granted
Sep 15, 2026
Kind
B2
Abstract

A method and load wrapping apparatus in some instances may utilize a flow stabilized high speed axial fan blower to direct a flow of fluid towards a packaging material tail to assist in adhering a packaging material tail to the side of a load at the completion of a wrapping operation.

Claims (81)

1 . An apparatus for wrapping a load, the apparatus comprising:

a packaging material dispenser configured to dispense a web of packaging material to the load;

a rotational drive configured to generate relative rotation between the packaging material dispenser and the load about a center of rotation;

a cutting assembly configured to sever the web of packaging material to form a packaging material tail extending from a corner of the load; and

a flow stabilized high speed axial fan blower positioned to direct a flow of fluid towards the packaging material tail from a position generally upstream of a free end of the packaging material tail and at an acute angle relative to the side of the load while the free end of the packaging material tail is unsupported to cause the packaging material tail to come into contact with the side of the load, wherein the flow stabilized high speed axial fan blower is configured to generate the flow of fluid to have, proximate the corner of the load, a velocity of at least 10 miles per hour throughout a target area defined in a plane generally transverse to a longitudinal axis of the flow stabilized high speed axial fan blower, wherein the flow stabilized high speed axial fan blower is positioned such that the target area extends at least 3 inches on each side of the corner of the load.

2 . The apparatus of claim 1 , wherein the target area has a height that is at least a height of the packaging material tail proximate the corner of the load.

3 . The apparatus of claim 1 , wherein the flow stabilized high speed axial fan blower is configured to generate the flow of fluid to have, proximate a center of the target area, a velocity of at least 20 miles per hour, and proximate a perimeter of the target area, a velocity of at least 10 miles per hour.

4 . The apparatus of claim 1 , wherein the flow stabilized high speed axial fan blower is configured to generate the flow of fluid to have a velocity of at least 50 miles per hour proximate an outlet of the flow stabilized high speed axial fan blower.

5 . The apparatus of claim 1 , wherein the flow stabilized high speed axial fan blower is inclined upwardly at least 8 degrees.

6 . The apparatus of claim 5 , wherein the flow stabilized high speed axial fan blower is inclined upwardly at least 16 degrees.

7 . The apparatus of claim 1 , further comprising:

a rotating arm, wherein the packaging material dispenser is coupled to the rotating arm and the rotational drive is configured to generate the relative rotation between the packaging material dispenser and the load about the center of rotation by rotating the rotating arm about the center of rotation; and

a base supporting the rotating arm, wherein the flow stabilized high speed axial fan blower is mounted to the base.

8 . The apparatus of claim 7 , wherein the base includes at least one leg and a bollard disposed proximate an end of the at least one leg, and wherein the flow stabilized high speed axial fan blower is mounted within the bollard.

9 . The apparatus of claim 1 , further comprising a turntable for supporting the load, wherein the rotational drive is configured to generate the relative rotation between the packaging material dispenser and the load about the center of rotation by rotating the turntable.

10 . The apparatus of claim 9 , wherein the flow stabilized high speed axial fan blower is mounted to a support leg disposed proximate the turntable.

11 . The apparatus of claim 1 , wherein the acute angle is a first angle, the position is a first position, and the flow of fluid is a first flow of fluid, the apparatus further comprising a flow device configured to direct a second flow of fluid towards the packaging material tail from a second position and at a second angle relative to the side of the load.

12 . The apparatus of claim 11 , wherein the flow device includes one or more nozzles coupled to a source of pressurized fluid.

13 . The apparatus of claim 12 , wherein the one or more nozzles are rotatably supported by a support assembly that is at least partially inside of a zone of rotation for the packaging material dispenser to rotate between a substantially horizontal storage position and a substantially vertical operating position.

14 . The apparatus of claim 11 , wherein the second angle is substantially orthogonal relative to the side of the load, the flow device is configured to be activated after the flow stabilized high speed axial fan blower is activated, and the flow device is configured to be activated concurrently with the packaging material tail coming into contact with the side of the load.

15 . The apparatus of claim 1 , wherein the flow stabilized high speed axial fan blower includes:

a housing extending along the longitudinal axis between an inlet and an outlet;

an axial fan blade disposed in the housing and configured to rotate about the longitudinal axis;

a fan motor coupled to the axial fan blade and configured to rotate the axial fan blade about the longitudinal axis at a rate at or greater than 10,000 RPM; and

a plurality of stabilizing vanes extending between the axial fan blade and the outlet of the housing and configured to stabilize fluid flow downstream of the axial fan blade.

16 . The apparatus of claim 15 , wherein the housing is substantially cylindrical and has a length to width ratio between 1.5 to 1 and 4 to 1.

17 . The apparatus of claim 15 , wherein the axial fan blade includes 8 to 15 blades.

18 . The apparatus of claim 15 , wherein the fan motor is configured to rotate the axial fan blade at a rate at or greater than 20,000 RPM.

19 . The apparatus of claim 18 , wherein the fan motor is configured to rotate the axial fan blade at a rate at or greater than 40,000 RPM.

20 . The apparatus of claim 15 , wherein the fan motor is a variable speed DC motor.

21 . The apparatus of claim 15 , wherein the plurality of stabilizing vanes includes four stabilizing vanes.

22 . The apparatus of claim 15 , wherein each of the plurality of stabilizing vanes includes a leading edge disposed proximate the axial fan blade and a trailing edge disposed proximate the outlet of the housing such that the plurality of stabilizing vanes extend substantially throughout a space between the axial fan blade and the outlet of the housing.

23 . The apparatus of claim 15 , wherein each of the plurality of stabilizing vanes includes a curved leading edge that curves in a direction opposite of a direction of rotation of the axial fan blade.

24 . The apparatus of claim 15 , wherein the blower further comprises an inner housing extending along the longitudinal axis within the outer housing, wherein the plurality of stabilizing vanes are coupled to the inner housing.

25 . The apparatus of claim 24 , wherein the inner housing is substantially cylindrical.

26 . The apparatus of claim 25 , wherein the inner housing includes an open end facing the inlet of the outer housing and at least a portion of the fan motor is received within the open end of the inner housing.

27 . The apparatus of claim 15 , wherein the blower further includes a flared inlet.

28 . The apparatus of claim 27 , wherein a leading end of the axial fan blade is substantially even with a narrower diameter end of the flared inlet.

29 . An apparatus for wrapping a load, the apparatus comprising:

a packaging material dispenser configured to dispense a web of packaging material to the load;

a rotational drive configured to generate relative rotation between the packaging material dispenser and the load about a center of rotation;

a cutting assembly configured to sever the web of packaging material to form a packaging material tail extending from a corner of the load; and

a flow stabilized high speed axial fan blower positioned to direct a flow of fluid towards the packaging material tail from a position generally upstream of a free end of the packaging material tail and at an acute angle relative to the side of the load while the free end of the packaging material tail is unsupported to cause the packaging material tail to come into contact with the side of the load, wherein the flow stabilized high speed axial fan blower comprises:

an outer housing extending along a longitudinal axis between an inlet and an outlet;

an inner housing extending along the longitudinal axis within the outer housing;

an axial fan blade disposed in the outer housing and configured to rotate about the longitudinal axis;

a fan motor coupled to the axial fan blade and configured to rotate the axial fan blade about the longitudinal axis at a rate at or greater than 10,000 RPM; and

a plurality of stabilizing vanes extending between the axial fan blade and the outlet of the outer housing and configured to stabilize fluid flow downstream of the axial fan blade, wherein each of the plurality of stabilizing vanes includes a leading edge disposed proximate the axial fan blade and a trailing edge disposed proximate the outlet of the outer housing such that the plurality of stabilizing vanes extend substantially throughout a space between the axial fan blade and the outlet of the outer housing and substantially along a length between opposing ends of the inner housing along the longitudinal axis.

30 . The apparatus of claim 29 , wherein the outer housing is substantially cylindrical and has a length to width ratio of between 1.5 to 1 and 4 to 1.

31 . The apparatus of claim 29 , wherein the axial fan blade includes 8 to 15 blades.

32 . The apparatus of claim 29 , wherein the fan motor is configured to rotate the axial fan blade at a rate at or greater than 20,000 RPM.

33 . The apparatus of claim 32 , wherein the fan motor is configured to rotate the axial fan blade at a rate at or greater than 40,000 RPM.

34 . The apparatus of claim 29 , wherein the fan motor is a variable speed DC motor.

35 . The apparatus of claim 29 , wherein the plurality of stabilizing vanes includes four stabilizing vanes.

36 . The apparatus of claim 29 , wherein each of the plurality of stabilizing vanes includes a curved leading edge that curves in a direction opposite of a direction of rotation of the axial fan blade.

37 . The apparatus of claim 29 , wherein the plurality of stabilizing vanes are coupled to the inner housing.

38 . The apparatus of claim 37 , wherein the inner housing is substantially cylindrical.

39 . The apparatus of claim 38 , wherein the inner housing includes an open end facing the inlet of the outer housing and at least a portion of the fan motor is received within the open end of the inner housing.

40 . The apparatus of claim 29 , wherein the blower further includes a flared inlet.

41 . The apparatus of claim 40 , wherein a leading end of the axial fan blade is substantially even with a narrower diameter end of the flared inlet.

42 . An apparatus for wrapping a load, the apparatus comprising:

a packaging material dispenser configured to dispense a web of packaging material to the load;

a rotational drive configured to generate relative rotation between the packaging material dispenser and the load about a center of rotation;

a cutting assembly configured to sever the web of packaging material to form a packaging material tail extending from a corner of the load; and

a flow stabilized high speed axial fan blower positioned to direct a flow of fluid towards the packaging material tail, wherein the flow stabilized high speed axial fan blower comprises:

an outer housing extending along a longitudinal axis between an inlet and an outlet;

an inner housing extending along the longitudinal axis within the outer housing;

an axial fan blade disposed in the outer housing and configured to rotate about the longitudinal axis;

a fan motor coupled to the axial fan blade and configured to rotate the axial fan blade about the longitudinal axis at a rate at or greater than 10,000 RPM; and

a plurality of stabilizing vanes extending between the axial fan blade and the outlet of the outer housing and configured to stabilize fluid flow downstream of the axial fan blade, wherein each of the plurality of stabilizing vanes includes a leading edge disposed proximate the axial fan blade and a trailing edge disposed proximate the outlet of the outer housing such that the plurality of stabilizing vanes extend substantially throughout a space between the axial fan blade and the outlet of the outer housing and substantially along a length between opposing ends of the inner housing along the longitudinal axis.

43 . The apparatus of claim 42 , further comprising a controller coupled to the rotational drive and the flow stabilized high speed axial fan blower, wherein the controller is configured to:

activate the flow stabilized high speed axial fan blower a first time to direct a first flow of fluid towards the packaging material tail from a position generally upstream of a free end of the packaging material tail and at an acute first angle relative to the side of the load while the free end of the packaging material tail is unsupported to cause the packaging material tail to come into contact with the side of the load;

activate the rotational drive to rotate the load relative to the flow stabilized high speed axial fan blower; and

after rotation of the load relative to the flow stabilized high speed axial fan blower, activate the flow stabilized high speed axial fan blower a second time and at a second angle relative to the side of the load to increase adherence of the packaging material tail to the side of the load.

44 . A method of wrapping a load, the method comprising:

dispensing a web of packaging material to the load with a packaging material dispenser and generating relative rotation between the packaging material dispenser and the load about a center of rotation to wrap the web of packaging material around the load;

severing the web of packaging material to form a packaging material tail extending from a corner of the load; and

directing a flow of fluid towards the packaging material tail from a position generally upstream of a free end of the packaging material tail and at an acute angle relative to the side of the load while the free end of the packaging material tail is unsupported to cause the packaging material tail to come into contact with the side of the load using a flow stabilized high speed axial fan blower, wherein the flow stabilized high speed axial fan blower is configured to generate the flow of fluid to have, proximate the corner of the load, a velocity of at least 10 miles per hour throughout a target area defined in a plane generally transverse to a longitudinal axis of the flow stabilized high speed axial fan blower, wherein the flow stabilized high speed axial fan blower is positioned such that the target area extends at least 3 inches on each side of the corner of the load.

45 . The method of claim 44 , wherein the flow of fluid is a first flow of fluid and the acute angle is a first angle, and wherein the method further comprises:

rotating the load relative to the flow stabilized high speed axial fan blower; and

after rotation of the load relative to the flow stabilized high speed axial fan blower, activating the flow stabilized high speed axial fan blower at a second angle relative to the side of the load to increase adherence of the packaging material tail to the side of the load.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2024
From: LIMOUSIN, JEAN-LOUIS
To: LANTECH.COM, LLC
Reel/Frame 067964/0229 →
Continuity (2)
Provisional Application 63495610 · Apr 12, 2023
Related Publication 20240343437A1 · Oct 17, 2024
References Cited (57)
US 4152879A · Shulman · 1979 [cited by applicant]
US 4189894A · Laing · 1980 [cited by applicant]
US 4355496A · Teates et al. · 1982 [cited by applicant]
US 4616474A · Morley · 1986 [cited by applicant]
US 4993209A · Halolia · 1991 [cited by applicant]
US 4995224A · Yourgalite et al. · 1991 [cited by applicant]
US 5005335A · Yourgalite et al. · 1991 [cited by applicant]
US 5787682A · Tolson · 1998 [cited by applicant]
US 6164047A · Rossi · 2000 [cited by applicant]
US 6453643B1 · Buscherini et al. · 2002 [cited by applicant]
US 6796105B2 · Rossi · 2004 [cited by applicant]
US 7007403B1 · Studebaker · 2006 [cited by examiner]
US 7469520B2 · Lancaster, III et al. · 2008 [cited by applicant]
US 8099935B2 · Forni et al. · 2012 [cited by applicant]
US 8695312B2 · Johnson et al. · 2014 [cited by applicant]
US 9290285B2 · Johnson et al. · 2016 [cited by applicant]
US 9631627B2 · Avedon · 2017 [cited by examiner]
US 10040583B2 · Smith et al. · 2018 [cited by applicant]
US 10227988B2 · Gao · 2019 [cited by examiner]
US 10604284B2 · Pierson et al. · 2020 [cited by applicant]
US 10711804B2 · Chen · 2020 [cited by examiner]
US 11794933B2 · Lancaster, III · 2023 [cited by examiner]
US 20030093974A1 · Rossi · 2003 [cited by applicant]
US 20070157557A1 · Lancaster, III · 2007 [cited by examiner]
US 20140140861A1 · Pellenc · 2014 [cited by examiner]
US 20150203221A1 · Van De Hey et al. · 2015 [cited by applicant]
US 20180162568A1 · Pierson · 2018 [cited by applicant]
US 20220002012A1 · Lancaster, III · 2022 [cited by examiner]
US 20220316500A1 · Hoffman · 2022 [cited by examiner]
US 20240026980A1 · Lancaster, III et al. · 2024 [cited by applicant]
US 20240343438A1 · Limousin · 2024 [cited by applicant]
AU 2021306981B2 · 2024 [cited by applicant]
CA 3185130A1 · 2022 [cited by applicant]
CN 208565013U · 2019 [cited by applicant]
DE 19509649A1 · 1996 [cited by applicant]
EP 4175882A1 · 2023 [cited by applicant]
WO 03020591A1 · 2003 [cited by applicant]
WO 2022010654A1 · 2022 [cited by applicant]
WO 2022119573A1 · 2022 [cited by applicant]
WO 2024215501A2 · 2024 [cited by applicant]
Robopac USA, Genesis Futura 40 Automation Rotary Ring Stretch Wrapper-Arconvert Customer Plant, Retrieved from:https://www.youtube.com/watch?v=bg1LzR7ZuYc, Dec. 12, 2019. [cited by applicant]
Wulftect, Proven Cut & Wipe Film Treatment System, Retrieved from: https://www.wulftec.com/solutions/film-tail-treatment, Retrieved on Apr. 5, 2021. [cited by applicant]
Robopac, Turntable Stretch Wrapper TECHNOPLAT 3000, Direct Industry, Retrieved from: https://www.directindustry.com/prod/robopac-spa/product-97195-1853168.html, Retrieved on Apr. 5, 2021. [cited by applicant]
Integrated Machinery, OMS Model AV620 & AV630 Stretch Wrapper, Retrieved from: https://integratedmachinery.com.au/wp-content/uploads/2017/10/OMS_Model_AV620_and_AV630_Automated_Rotary_Arm_Stretch_Wrapper.pdf, Retrieved … [cited by applicant]
International Search Report and Written Opinion issued in PCT Application No. PCT/US2021/038776, dated Sep. 29, 2021, 18 pages. [cited by applicant]
US Patent and Trademark Office, Notice of Allowance issued in U.S. Appl. No. 17/356,426 dated Jun. 14, 2023. [cited by applicant]
US Patent and Trademark Office, Office Action issued in U.S. Appl. No. 17/356,426 dated Feb. 3, 2023. [cited by applicant]
Patent Cooperation Treaty; Invitation to Pay Additional Fees in International Patent Application No. PCT/US2024/022354; 11 pages; dated Sep. 10, 2024. [cited by applicant]
Patent Cooperation Treaty; International Search Report and Written Opinion Issued in PCT Application No. PCT/US2024/022354; 17 pages; dated Oct. 31, 2024. [cited by applicant]
Australian Government—IP Australia; Examination Report No. 1 issued in Application No. 2021306981; 4 pages Jan. 16, 2024. [cited by applicant]
Australian Government—IP Australia; Examination Report No. 2 issued in Application No. 2021306981; 6 pages; dated May 17, 2024. [cited by applicant]
United States Patent & Trademark Office; Non-Final Office Action filed in U.S. Appl. No. 18/473,744; 31 pages; dated Dec. 17, 2024. [cited by applicant]
European Patent Office; Extended Search Report issued in European Application No. 21836805.8; 6 pages; dated Jul. 2, 2024. [cited by applicant]
European Patent Office; Communication Pursuant to Rules70(2) and 70a(2); issued in application No. 21836805.8; 1 page; dated Jul. 19, 2024. [cited by applicant]
United States Patent & Trademark Office; Non-Final Office Action filed in U.S. Appl. No. 18/622,510; 45 pages; dated Jun. 3, 2025. [cited by applicant]
United States Patent & Trademark Office; Non-Final Office Action filed in U.S. Appl. No. 18/622,510 ; 50 pages; dated Jun. 3, 2025. [cited by applicant]
United States Patent & Trademark Office; Final Office Action filed in U.S. Appl. No. 18/622,510; 46 pages; dated Nov. 25, 2025. [cited by applicant]