Agricultural machine with retaining elements for retaining a header in an elevated position

Information

  • Patent Grant
  • 9603306
  • Patent Number
    9,603,306
  • Date Filed
    Wednesday, July 9, 2014
    10 years ago
  • Date Issued
    Tuesday, March 28, 2017
    7 years ago
  • CPC
  • Field of Search
    • US
    • 172 311000
    • 172 625000
    • 172 466000
    • 172 386000
    • 280 462000
    • 280 463000
    • 280 409000
    • 056 228000
    • CPC
    • A01B73/005
    • A01B73/00
    • A01B51/04
    • A01B59/042
    • A01B73/046
    • A01B73/065
    • A01B63/002
    • A01B71/06
    • A01D67/005
    • A01D75/002
    • A01D75/004
    • Y10S56/09
    • Y10S56/14
  • International Classifications
    • A01B49/00
    • A01D75/00
    • A01B73/00
Abstract
A transport arrangement for an agricultural machine having a suspension system. The transport arrangement includes a header unit a tongue arrangement and a retaining system. The header unit is carried by the suspension system. The tongue arrangement is coupled to the suspension system, and is pivotal about an axis relative to the header unit and the suspension system. The retaining system is configured to releasably couple the tongue arrangement to the header unit and/or the suspension system to thereby retain the header unit in an elevated position.
Description
BACKGROUND

1. Field of the Invention


The subject disclosure relates to transport arrangements for agricultural machines, and, more particularly, relates to an arrangement for the machine, such as an agricultural mower, to enable the machine to be transitioned to a transport mode such that the header is retained in an elevated position.


2. Description of the Related Art


Agricultural mowers and mower/conditioners, hereinafter referred to simply as mowers, are well known and include self-propelled and pull-behind types. A problem with pull-behind mowers involves the transporting of the machines between fields, since the width of the machine may exceed practical or regulatory limits. Machine movement may be necessary over farm lanes, through gates or on highways where the machine width will not allow passage in the operating orientation.


A typically solution is to place the mower-conditioner header mechanism on a separate trailer such that the lateral width of the mechanism is generally aligned with the length of the trailer (lateral transport) and then tow the trailer with the tractor. One such example is the Discbine™ Transporter (by common assignee) which is specifically configured for loading, unloading, and laterally transporting a Model 1441/1442 disc mower conditioner while attached to the operating power unit (tractor). Such special trailers add significant cost, requires significant skill to load and unload, and must be used to transport the machine between locations or separately transported.


It would be advantageous to provide a reconfigurable transport arrangement for supporting a pull-behind mower header to be laterally transported while attached to a tractor and retaining the header of the mower in an elevated position without requiring an additional implement or special trailer. Further advantages would be realized by a lateral transport system that is quickly and easily transitioned to a passively retained header in an elevated position in the lateral transport configuration. Still further advantages would be realized by a lateral transport system that can be produced with less cost than the separate trailer lateral transport option it replaces.


SUMMARY

The following presents a simplified summary in order to provide a basic understanding of some aspects of the disclosed examples. This summary is not an extensive overview and is intended to neither identify key or critical elements nor delineate the scope of such aspects. Its purpose is to present some concepts in a simplified form as a prelude to the more detailed description that is presented later.


The subject disclosure provides a transport arrangement for supporting a mower allowing lateral transportation of the mower, with the header of the mower passively retained while attached to a tractor without requiring an additional implement or special trailer.


The disclosure in one form is directed to a transport arrangement for an agricultural machine having a suspension system. The transport arrangement includes a header unit a tongue arrangement and a retaining system. The header unit is carried by the suspension system. The tongue arrangement is coupled to the suspension system, and is pivotal about an axis relative to the header unit and the suspension system. The retaining system is configured to releasably couple the tongue arrangement to the header unit and/or the suspension system to thereby retain the header unit in an elevated position.


The disclosure in another form is directed to an agricultural mower including a chassis, a header unit carried by the chassis, a tongue arrangement and a retaining system. The tongue arrangement is coupled to the chassis. The tongue arrangement is pivotal about an axis relative to the header unit and the chassis. The retaining system is configured to releasably couple the tongue arrangement to the header unit and/or the chassis to thereby retain the header unit in an elevated position.


An advantage of the subject disclosure is that the lateral transport mode is accomplished without a separate implement or trailer.


Another advantage is that the transport mode is achieved using hydraulic controls available on the tractor and the header is passively retained in an elevated position.


To the accomplishment of the foregoing and related ends, one or more examples comprise the features hereinafter fully described and particularly pointed out in the claims. The following description and the annexed drawings set forth in detail certain illustrative aspects and are indicative of but a few of the various ways in which the principles of the various aspects may be employed. Other advantages and novel features will become apparent from the following detailed description when considered in conjunction with the drawings and the disclosed examples are intended to include all such aspects and their equivalents.





BRIEF DESCRIPTION OF THE DRAWINGS

The above-mentioned and other features and advantages of this disclosure, and the manner of attaining them, will become more apparent and the disclosure will be better understood by reference to the following description of an embodiment of the disclosure taken in conjunction with the accompanying drawings, wherein:



FIG. 1 is a perspective view of an agricultural machine in the form of a mower including a transport arrangement in the stowed position with part of the structure cut away to illustrate an embodiment of a retaining system of the present application;



FIG. 2 is a top view of the mower with the retaining system shown in FIG. 1;



FIG. 3 is a perspective view of the mower shown in FIGS. 1 and 2, with the tongue shifted to a field use position;



FIG. 4 is another perspective view of the mower of FIGS. 1-3, illustrating the transport arrangement of the present application being deployed;



FIG. 5 is yet another perspective view of the mower of FIGS. 1-4, illustrating the transport arrangement of the present application being further deployed lifting the chassis of the mower;



FIG. 6 is yet another perspective view of the mower of FIGS. 1-5, illustrating the tongue of the mower being pivoted to a transport position and the retaining system being engaged;



FIG. 7 is a front view of the mower of FIGS. 1-6, illustrating the transport arrangement of the present application being deployed for transporting the mower, from the perspective of the operator in a tractor;



FIG. 8 is a side view of the mower of FIGS. 1-7, illustrating the transport arrangement of the present application being fully deployed having lifted the header of the mower and engaged the retaining system; and



FIG. 9 is a partial view of the transport arrangement of FIGS. 1-8 showing details of the retaining system.





Corresponding reference characters indicate corresponding parts throughout the several views. The exemplification set out herein illustrates an embodiment of the subject disclosure, and such exemplification is not to be construed as limiting the scope of the subject disclosure in any manner.


DETAILED DESCRIPTION

Referring now to the drawings, and more particularly to FIG. 1, there is shown a perspective view of an agricultural machine in the form of a mower 10, which can be attached to a tractor (not shown). Mower 10 generally includes a pair of wheels 11A and 11B and a chassis 12, which carries a number of other components such as crop engaging blades 14, and drive components 16. A tongue 18 is pivotally connected to chassis 12, an end of which can be connected to the tractor. A field suspension system 20 supports mower 10 while mower 10 is in a field mode. Mower 10 additionally includes a transport arrangement 22, which, when deployed, provides the support for the transport of mower 10. Crop engaging blades 14 can be disc cutter blades 14 or a sickle bar, or another crop cutting device. Mower 10 additionally includes a retaining system 40 for the passive coupling of a header 42 to tongue 18. Retaining system 40 includes a hook 44, e.g., a first retaining element, and a retaining pin 46, e.g., a second retaining element.


Now, additionally referring to FIGS. 2-8, transport arrangement 22 includes suspension elements 24 and 26, which respectively have wheels 28 and 30 connected to corresponding ends of suspension elements 24 and 26. Suspension elements 24 and 26 are rotatable about an axis 32, when suspension element 26 is in the position shown in FIGS. 4-8. Additionally, suspension element 26 is rotatable about an axis 34 as it transitions from a stowed position illustrated in FIGS. 1-3 to the position shown in FIG. 4. Axis 32 is generally perpendicular to axis 34.


When suspension element 26 is in the stowed position it is generally above, or at least vertically elevated above, suspension element 24. Additionally, suspension element 26 is somewhat shorter than suspension element 24, as can be particularly seen in FIG. 2, where it can also be seen that suspension element 26 is positioned such that wheel 30 is behind wheel 28 when transport arrangement 22 is in a stowed position.


A sequence of movements of the elements of mower 10 will now be discussed with references to the various figures. FIGS. 1 and 2 illustrate transport arrangement 22 in a stowed position and tongue 18 is angularly positioned in a substantially forward direction 36. This is a configuration in which mower 10 can be used, but generally mower 10 will be used with tongue 18 located to either side, such as that shown in FIG. 3. FIG. 3 illustrates a predetermined position for tongue 18 to be located to allow the needed clearance for suspension element 26 to be rotated about axis 34 by a primary lateral transport cylinder 25, as shown fully deployed, in FIG. 4. Initially the field wheels 11A and 11B associated with field suspension system 20 are fully extended by lift cylinders 13A and 13B, respectively, to lift chassis 12.


Once transport arrangement 22 is positioned as shown in FIG. 4, then both suspension elements 24 and 26 are rotated about axis 32 by a secondary lateral transport cylinder 27 causing wheels 28 and 30 to contact the ground thereby lifting chassis 12 so that field suspension system 20 is lifted off of the ground. Field suspension system 20 can be coordinated to also lift its wheels 11A and 11B while or after wheels 28 and 30 contact the ground but after header 42 is secured in a raised position. A result of this step is that transport arrangement 22 is fully deployed as seen in FIG. 5 and is in the transport position, except for the position of tongue 18. In FIGS. 1-5, retaining system 40 is not engaged and header 42 is completely under the control of actuators 13A, 13B that position header 42 as suspension system 20 is deployed or retracted.


The next step is that tongue 18 is now swung by a cylinder 29 to a transport position as shown in FIG. 6 about an axis 50 (shown in FIG. 1). This step has to wait on the full deployment of transport arrangement 22 to prevent mower 10 from tipping to one side. As tongue 18 is completely moved to the position shown in FIG. 6, hook 44 is moved along a circular path A (illustrated in FIG. 2) until it engages retaining pin 46 thereby securing header 42 in the raised position. With header 42 secured in a raised position if actuators 13A, 13B that are used to raise header 42 are retracted, or simply slowly relax, retaining system 40 holds header 42 in the raised position as shown in FIGS. 6-9. The wheels 11A and 11B of field suspension system 20 are raised to provide ground clearance by the retraction of the lift cylinders 13A and 13B associated with field suspension system 20 (as can be seen in FIGS. 7 and 8). FIGS. 7 and 8 show mower 10 in the transport mode respectively from the operator viewpoint and the right hand side of mower 10.


The steps needed to configure mower 10 for field use are the reverse of those just discussed in order to transition from the transport position to the stowed position of transport arrangement 22. The position of tongue 18 in the transport mode is at a small angle to the tracking of mower 10, as seen in FIG. 7, so as to position the hitch in the desired location for connection with the tractor.


Transport arrangement 22 is coupled to chassis 12 and more particularly to trail frame 38, which is part of chassis 12. The coupling of transport arrangement 22 is offset to the side of the centerline of mower 10. The folding mechanism of transport arrangement 22 is provided to allow at least portions of transport arrangement 22 to be stowed above and to the rear of the trail frame 38 during field operations. Upon placing the center pivot disc mower conditioner 10 (CPDMC) in the full field left position, the mechanism of transport arrangement 22 rotates about a pivot axis 34 that is parallel to or substantially parallel to the trail frame 38 (or the axis of the field wheels). This action can deploy the left hand (as in transport position) wheel 30 to a position ahead of the header (ahead as in the field position) while still located above the trail frame 38. When this rotation has been completed, a secondary rotation takes place about axis 32; this action is a pivoting action, which is above, and perpendicular to the trail frame 38 and the field wheel axis. This action rotates wheels 28 and 30 from their position above trail frame 38 to a position below trail frame 38 and in contact with the ground.


When this action is complete, the trail frame/header is then rotated to a position essentially in-line with tongue 18, thus allowing a narrow transport for public roads. The steps to transition from field operation to lateral transport operation are thus: 1. Fully lift chassis 12 to the non-mowing position by extending the field wheels 11A, 11B of field suspension system 20 by the lift cylinders 13A, 13B; 2. Rotate chassis 12 to the full field left position; 3. Extend the primary lateral transport cylinder 25 to rotate suspension element 26 along with wheel 30 from a position above and behind the trail frame 38 to a position above and ahead of the trail frame 38; 4. Extend the secondary lateral transport cylinder 27 to rotate suspension elements 24 and 26 with wheels 28 and 30 down below the trail frame 38, with wheel 28 being behind the header/trail frame 38 and wheel 30 being in front of the header/trail frame 38; 5. Initiate the system to complete the rotation of chassis 12 to the full lateral transport position and retract the lift cylinders 13A, 13B to raise the field wheels 11A, 11B. The steps to transition from lateral transport to field operation are then to reverse the actions starting with step 5 and working backward to step 1.


Header unit 42 is carried by suspension system 20. The tongue 18 arrangement is coupled to suspension system 20, with the tongue 18 arrangement being pivotal about an axis 50 relative to header unit 42 and suspension system 20. The retaining system 40 is configured to releasably couple the tongue 18 arrangement to header unit 42 and/or suspension system 20 to thereby retain header unit 42 in an elevated position. As can be seen in FIG. 1, hook 44 has a U-shaped opening, which is positioned in an offset fashion relative to tongue 18, and the U-shaped opening is open in a generally horizontal direction. The U-shaped opening is configured to have a generally reduced throat toward the bottom of the U-shape, in order to capture, then retain, retaining pin 46.


The subject disclosure includes a tongue-mounted hook 44 extending down toward header 42. Hook 42 has a corresponding retaining pin 46 or shaft 46 mounted on the top of header 42. When header 42/trail frame 38 are rotated to the full lateral transport position, where header 42 and trail frame 38 are basically parallel to tongue 18, then hook 44, hanging down from tongue 18, and shaft 46 extending up from header 42 engage. When the field wheels 11A, 11B are lifted by lift cylinders 13A, 13B to provide ground clearance, the engagement of hook 44 with shaft 46 does not allow header 42 to lower. However, the coupling of the header lift arms to the wheel arms allows the field wheels 11A, 11B to be lifted up. Any system can be used to actuate the lateral transport rotations, which engage and disengage hook 44 and shaft 46, with hydraulic cylinders being assumed, but the actions can be accomplished with any arrangement of cylinders, actuators, linear motors, rotational motors, to name a few.


Advantages of the subject disclosure include that retaining system 40 is completely position-based and passive. There are no pins or clasps that must be activated/actuated in order for the engagement to take place. Header 42 must only be lifted with the field wheels 11A, 11B during the rotation, as the hydraulic system undertakes, in order for hook 44 to engage with shaft 46.


While this disclosure has been described with respect to at least one embodiment, the subject disclosure can be further modified within the spirit and scope of this disclosure. This application is therefore intended to cover any variations, uses, or adaptations of the disclosure using its general principles. Further, this application is intended to cover such departures from the subject disclosure as come within known or customary practice in the art to which this disclosure pertains and which fall within the limits of the appended claims.

Claims
  • 1. An agricultural mower comprising: a chassis;a pair of wheels coupled to the chassis;a header unit coupled to the chassis, the header unit being vertically moveable by at least one actuator relative to the chassis between a field position, in which the pair of wheels contact a ground surface to support the header unit, and to an elevated position;a tongue arrangement coupled to the chassis, the tongue arrangement being pivotal by an actuator about a generally vertical axis relative to the header unit and the chassis, the tongue arrangement carrying a first retaining element along a path about the vertical axis; anda second retaining element connected to the header unit,wherein the at least one actuator is configured to move the header unit vertically to place the second retaining element in the path of the first retaining element to allow the first retaining element to capture the second retaining element as the tongue arrangement pivots from a field mode to a transport mode to thereby retain the header unit in the elevated position.
  • 2. The agricultural mower of claim 1, wherein the second retaining element frees from the first retaining element as the tongue arrangement pivots from the transport mode to the field mode.
  • 3. The agricultural mower of claim 2, wherein the first retaining element is a hook and the second retaining element is a receiving pin.
  • 4. The agricultural mower of claim 3, wherein the hook is configured to engage the receiving pin to retain the header unit in the elevated position without a use of hydraulic actuators while the tongue arrangement is in the transport mode.
  • 5. The agricultural mower of claim 3, wherein the hook is offset to a side of the tongue.
  • 6. The agricultural mower of claim 5, wherein the hook has a U-shaped opening open in a generally horizontal direction.
  • 7. An agricultural mower, comprising: a chassis;a pair of wheels coupled to the chassis;a header unit coupled to the chassis, the header unit being vertically moveable by at least one actuator relative to the chassis between a field position, in which the pair of wheels contact a ground surface to support the header unit, and an elevated position;a tongue arrangement coupled to the chassis, the tongue arrangement being pivotal by an actuator about a generally vertical axis relative to the header unit and the chassis, the tongue arrangement carrying a first retaining element along a path about the vertical axis; anda second retaining element connected to the header unit, the second retaining element being in the path of the first retaining element only when the header unit is in the elevated position to allow the first retaining element to capture the second retaining element as the tongue arrangement pivots from a field mode to a transport mode to thereby retain the header unit in the elevated position,wherein the at least one actuator is configured to move the header unit vertically to place the second retaining element in the path of the first retaining element.
  • 8. The agricultural mower of claim 7, wherein the second retaining element frees from the first retaining element as the tongue arrangement pivots from the transport mode to the field mode.
  • 9. The agricultural mower of claim 8, wherein the first retaining element is a hook and the second retaining element is a receiving pin.
  • 10. The agricultural mower of claim 9, wherein the hook is configured to engage the receiving pin to retain the header unit in the elevated position without a use of hydraulic actuators while the tongue arrangement is in the transport mode.
  • 11. The agricultural mower of claim 9, wherein the hook is offset to a side of the tongue.
  • 12. The agricultural mower of claim 11, wherein the hook has a U-shaped opening open in a generally horizontal direction.
  • 13. The agricultural mower of claim 12, wherein the U-shaped opening diminishes in breadth towards a bottom of the U-shaped opening.
  • 14. An agricultural mower comprising: a chassis;a pair of field wheels coupled to the chassis;a transport arrangement coupled to the chassis, the transport arrangement comprising a pair of suspension elements and a pair of transport wheels connected to respective ones of the pair of suspension elements, the pair of transport wheels movable by the at least one transport actuator between a first position in which they are not in contact with a ground surface and a second position in which they are in contact with the ground surface;a header unit coupled to the chassis, the header unit being vertically moveable by at least one lift actuator relative to the chassis between a field position, in which the pair of field wheels contact the ground surface to support the header unit, and an elevated position;a tongue arrangement coupled to the chassis, the tongue arrangement being pivotal by an actuator about a generally vertical axis relative to the header unit and the chassis, the tongue arrangement carrying a first retaining element along a path about the vertical axis; anda second retaining element connected to the header unit,wherein the at least one lift actuator is configured to move the header unit vertically to place the second retaining element in the path of the first retaining element to allow the first retaining element to capture the second retaining element as the tongue arrangement pivots from a field mode to a transport mode to thereby retain the header unit in the elevated position, andwherein the at least one lift actuator is configured to contract after the first retaining element has captured the second retaining element and while the pair of transport wheel are in the second position to raise the pair of field wheels off the ground surface.
  • 15. The agricultural mower of claim 14, wherein the second retaining element frees from the first retaining element as the tongue arrangement pivots from the transport mode to the field mode.
  • 16. The agricultural mower of claim 15, wherein the first retaining element is a hook and the second retaining element is a receiving pin.
  • 17. The agricultural mower of claim 16, wherein the hook is configured to engage the receiving pin to retain the header unit in the elevated position without a use of hydraulic actuators while the tongue arrangement is in the transport mode.
  • 18. The agricultural mower of claim 16, wherein the hook is offset to a side of the tongue.
  • 19. The agricultural mower of claim 18, wherein the hook has a U-shaped opening open in a generally horizontal direction.
US Referenced Citations (135)
Number Name Date Kind
1421439 Finckh Jul 1922 A
2109098 Baxter Feb 1938 A
2148311 Vutz Feb 1939 A
2286305 Priestley Jun 1942 A
2540228 Adkisson Feb 1951 A
2833105 Naery May 1958 A
2911780 Brady Nov 1959 A
2938588 Stein May 1960 A
2963303 Young Dec 1960 A
3241300 Fell et al. Mar 1966 A
3245695 Bernard Apr 1966 A
3288480 Calkins et al. Nov 1966 A
3408956 Rebenok et al. Nov 1968 A
3515408 Cagle Jun 1970 A
3523410 Taylor et al. Aug 1970 A
3577713 McCarty May 1971 A
3590928 Mirus Jul 1971 A
3648780 Fueslein et al. Mar 1972 A
3683602 Scarnato et al. Aug 1972 A
3721073 Scarnato et al. Mar 1973 A
3786764 Beers, Jr. et al. Jan 1974 A
3814191 Tilbury Jun 1974 A
3841070 Scarnato et al. Oct 1974 A
3881301 Sawyer et al. May 1975 A
3897832 Leedahl et al. Aug 1975 A
3911649 Scarnato et al. Oct 1975 A
3919831 Halls et al. Nov 1975 A
3955627 Brown May 1976 A
4026365 Andersson et al. May 1977 A
4043403 Anderson et al. Aug 1977 A
4099364 Kanengieter et al. Jul 1978 A
4106788 Bohnert Aug 1978 A
4106813 Goodbary Aug 1978 A
4119329 Smith Oct 1978 A
4162085 Miranowski Jul 1979 A
4180135 Birkenbach et al. Dec 1979 A
4222334 Peterson Sep 1980 A
4283071 Pedersen Aug 1981 A
4316511 Andersen Feb 1982 A
4361341 Gustafson Nov 1982 A
4381118 Weeks Apr 1983 A
4418516 Donovan Dec 1983 A
4418517 Ehrhart Dec 1983 A
4418518 Koch Dec 1983 A
4435948 Jennings Mar 1984 A
4442662 Jennings Apr 1984 A
4455034 de Graff et al. Jun 1984 A
4460193 Dietz et al. Jul 1984 A
4506904 Kinzenbaw Mar 1985 A
4512416 Smith Apr 1985 A
4526235 Kinzenbaw Jul 1985 A
4534416 Johnson Aug 1985 A
4558560 Koch Dec 1985 A
4573309 Patterson Mar 1986 A
4607996 Koch Aug 1986 A
4660654 Wiebe Apr 1987 A
4662646 Schlapman et al. May 1987 A
4682462 Johnson, Sr. Jul 1987 A
4765639 Murray Aug 1988 A
4831814 Frisk et al. May 1989 A
4867245 Stevens Sep 1989 A
4871028 Murray Oct 1989 A
4905466 Heppner Mar 1990 A
4934131 Frisk Jun 1990 A
4986064 Ermacora Jan 1991 A
4991383 Ermarcora Feb 1991 A
5000268 Zimmerman Mar 1991 A
5024279 Warner et al. Jun 1991 A
5025616 Moss Jun 1991 A
5113956 Friesen May 1992 A
5136828 Ermacora Aug 1992 A
5199250 Ermacora Apr 1993 A
5243810 Fox et al. Sep 1993 A
5261497 Snyder Nov 1993 A
5274990 Aron Jan 1994 A
5429195 Turnis Jul 1995 A
5566536 Krafka Oct 1996 A
5642607 Stephenson et al. Jul 1997 A
5778647 McLean et al. Jul 1998 A
5839516 Arnold Nov 1998 A
5901533 Ermacora et al. May 1999 A
5930988 Hanson Aug 1999 A
5943848 Rice et al. Aug 1999 A
6152240 Nonhoff et al. Nov 2000 A
6189306 Walch Feb 2001 B1
6209297 Yeomans Apr 2001 B1
6213219 Mosdal et al. Apr 2001 B1
6238170 Pingry May 2001 B1
6260629 Toth Jul 2001 B1
6273449 Harkcom Aug 2001 B1
6321852 Pratt Nov 2001 B1
6336313 Bonnewitz Jan 2002 B1
6360516 Harkcom et al. Mar 2002 B1
6408950 Shoup Jun 2002 B1
6421994 Boucher et al. Jul 2002 B1
6485246 Harkcom Nov 2002 B1
6546708 Faivre Apr 2003 B2
6606956 Paluch Aug 2003 B1
6702035 Friesen Mar 2004 B1
6739612 Colistro May 2004 B2
6854251 Snider Feb 2005 B2
6907719 Ligouy Jun 2005 B2
7047714 Stephenson May 2006 B1
7100350 Breneur Sep 2006 B2
7197865 Enns et al. Apr 2007 B1
7347277 Enns et al. Mar 2008 B2
7552579 Tippery et al. Jun 2009 B2
7712544 Misenhelder May 2010 B1
7849933 Marggi Dec 2010 B2
7926249 Cook Apr 2011 B1
8112977 Priepke Feb 2012 B2
8141652 Poole Mar 2012 B2
8209946 Neudorf et al. Jul 2012 B2
8292328 Honas et al. Oct 2012 B2
8464508 Matousek et al. Jun 2013 B2
9179591 Barnett et al. Nov 2015 B2
9179592 Snider et al. Nov 2015 B2
9185837 Barnett et al. Nov 2015 B2
9185838 Chan et al. Nov 2015 B2
9185839 Kolegaev et al. Nov 2015 B2
20020005629 Rosenboom Jan 2002 A1
20040011538 Raducha Jan 2004 A1
20060123764 McLean et al. Jun 2006 A1
20110197561 Priepke Aug 2011 A1
20110272917 Hilsabeck et al. Nov 2011 A1
20120132768 Lammerant et al. May 2012 A1
20130284467 Snider et al. Oct 2013 A1
20130284468 Barnett et al. Oct 2013 A1
20130284469 Barnett Oct 2013 A1
20140053522 Kolegaev et al. Feb 2014 A1
20140083071 Fay, II Mar 2014 A1
20140096498 Estock et al. Apr 2014 A1
20140196429 Gantzer Jul 2014 A1
20150282426 Gantzer et al. Oct 2015 A1
20160007534 Fay, II Jan 2016 A1
Foreign Referenced Citations (16)
Number Date Country
4309498 Sep 1994 DE
20113820 Dec 2001 DE
350513 Jan 1990 EP
628237 Dec 1994 EP
764396 Mar 1997 EP
0 818 134 Jan 1998 EP
823985 Feb 1998 EP
1769668 Apr 2007 EP
2332690 Jun 1977 FR
2712137 May 1995 FR
2752356 Feb 1998 FR
2194872 Mar 1988 GB
2232055 Dec 1990 GB
2490342 Oct 2012 GB
2504093 Jan 2014 GB
WO2013135676 Sep 2013 WO
Non-Patent Literature Citations (3)
Entry
U.S. Appl. No. 15/099,827, entitled “Pull-Type Disk Mowing Machine Transport System,” MacDon Industries Ltd. & Maschinenfabrik Bernard Krone GmbH Applicants, Specification, 45 pp.
U.S. Appl. No. 15/099,827, entitled “Pull-Type Disk Mowing Machine Transport System,” MacDon Industries Ltd. & Maschinenfabrik Bernard Krone GmbH Applicants, Drawings, 16 pp.
EP Application No. 15175673, European Search Report, dated Nov. 27, 2015, 6 pp.
Related Publications (1)
Number Date Country
20160007534 A1 Jan 2016 US