Dock leveler having an inflatable member

Information

  • Patent Grant
  • 6760944
  • Patent Number
    6,760,944
  • Date Filed
    Tuesday, February 18, 2003
    21 years ago
  • Date Issued
    Tuesday, July 13, 2004
    20 years ago
Abstract
A loading dock including a dock surface and a supporting structure positioned within a pit in the dock surface. The loading dock also includes a ramp, an inflatable assembly, and a support. The ramp is pivotally coupled to the supporting structure, and the inflatable assembly is positioned under the ramp and adapted to move the ramp between a lowered position and a raised position. The support is positioned under and supports the inflatable assembly. The support is supported by a pit floor and is unsecured to the pit floor.
Description




FIELD OF THE INVENTION




The invention relates to dock levelers, and more particularly to dock levelers having inflatable members.




BACKGROUND OF THE INVENTION




Dock levelers or dock boards are mounted on loading docks and are adapted to bridge the gap between the dock and the bed of a truck or carrier parked in front of the dock to enable material handling equipment, such as a forklift truck to move between the dock and the truck bed.




The typical dock leveler includes a frame or supporting structure which is mounted in a pit or depression in the loading dock and the rear end of a ramp or deck plate is pivoted to the supporting structure so that the ramp is movable between a horizontal cross traffic position and an upwardly inclined position.




Hinged to the forward end of the ramp is an extension lip that is movable between a downwardly hanging pendant position and an extended position where the lip forms an extension to the ramp.




After a truck has parked in front of the loading dock in preparation for a loading operation, the ramp of the conventional dock leveler is pivoted upwardly and as the ramp approaches its upwardly inclined position, the lip is pivoted outwardly to the extended position. As the ramp is subsequently lowered, the extended lip will engage the bed of the truck. After the loading operation has been completed, the lip will fall by gravity to the pendent position as the truck pulls away from the loading dock.




Traditionally, the ramp of the dock leveler has been operated either by a mechanical or hydraulic mechanism. With a typical mechanical operation, an extension spring is mounted in the pit beneath the ramp and is connected through a lever arm to the rear edge of the ramp. When a ramp holddown mechanism is released, the force of the spring will pivot the ramp to the upwardly inclined position.




With a hydraulically-operated dock leveler, a hydraulic cylinder unit is connected between the supporting frame and the ramp and through extension of the cylinder unit, the ramp will be pivoted to the upwardly inclined position.




U.S. patent application Ser. No.


07


/


814


,


002


, filed Dec. 26, 1991, now abandoned, describes an inflatable bag mechanism that is utilized to pivot the ramp to the upwardly inclined position. As described in that patent application, a pleated bag is interposed between the bottom of the pit in the loading dock and the undersurface of the ramp. By inflating the bag with low pressure air, the ramp will be pivoted to the upwardly inclined position.




SUMMARY OF THE INVENTION




One embodiment of the present invention includes a loading dock including a dock surface and a supporting structure positioned within a pit in the dock surface. The loading dock also includes a ramp, an inflatable assembly, and a support. The ramp is pivotally coupled to the supporting structure, and the inflatable assembly is positioned under the ramp and adapted to move the ramp between a lowered position and a raised position. The support is positioned under and supports the inflatable assembly. The support is supported by a pit floor and is unsecured to the pit floor.




An additional embodiment of the invention includes a loading dock including a dock surface and a supporting structure positioned within a pit in the dock surface. The loading dock also includes a ramp, an inflatable assembly, and a support. The ramp is pivotally coupled to the supporting structure for movement between a generally horizontal lowered position and an upwardly-inclined raised position. The inflatable assembly is positioned under the ramp, and the support is positioned under and supports the inflatable assembly. The support is supported by a pit floor and can be manually lifted completely out of engagement with the pit floor when the ramp is in the raised position.




Other features and advantages of the invention will become apparent to those skilled in the art upon review of the following detailed description, claims, and drawings.











BRIEF DESCRIPTION OF THE DRAWINGS





FIG. 1

is a vertical section of a dock leveler incorporating the invention with the ramp being shown in the horizontal position;





FIG. 2

is a view similar to

FIG. 1

showing the ramp in the upwardly inclined position;





FIG. 3

is an enlarged fragmentary vertical section showing the attachment of the bag support member to the ramp;





FIG. 4

is a section taken along line


4





4


of

FIG. 2

;





FIG. 5

is a section taken along line


5





5


of

FIG. 1

; and





FIG. 6

is a section taken along line


6





6


of FIG.


1


.











Before one embodiment of the invention is explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangements of the components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or being carried out in various ways. Also, it is understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of “including” and “comprising” and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. The use of “consisting of” and variations thereof herein is meant to encompass only the items listed thereafter. The use of letters to identify elements of a method or process is simply for identification and is not meant to indicate that the elements should be performed in a particular order.




DETAILED DESCRIPTION





FIG. 1

illustrates a dock leveler I which is mounted in a pit or depression


2


in a loading dock


3


. The lower surface or floor


4


of pit


2


slopes downwardly and forwardly as seen in

FIGS. 1 and 2

. Dock leveler


1


is adapted to bridge the gap between the upper surface of the loading dock


3


and the bed of a truck or carrier parked in front of the loading dock.




Dock leveler


1


includes a frame or supporting structure


5


, which is mounted in the rear of pit


2


, and the rear end of a ramp or deck plate


6


is pivoted to the frame


5


, so that the ramp is movable between a generally horizontal cross traffic position, where the ramp is flush with the upper surface of dock


3


, and an upwardly-inclined position, as shown in FIG.


2


.




To pivot the ramp


6


to frame


5


, a series of lugs


7


are mounted on vertical legs


8


of frame


5


and are pivoted through a hinge pin


9


to the rear end of ramp


6


.




Hinged to the forward end of ramp


6


is an extension lip


10


which is adapted to be pivoted from a downwardly hanging pendant position, as shown in

FIG. 1

to an outwardly extending position, as shown in

FIG. 2

, where the lip forms an extension to ramp


6


. Lip


10


can be moved from the pendant to the extension position and held in that position by various mechanical hydraulic or pneumatic mechanisms, and the lip lifting and latching mechanism is not, in itself, a part of the present invention.




When the ramp is in the horizontal position, as shown in

FIG. 1

, and the lip


10


is pendant, the lower end of the lip is retained within keepers


10




a


, which are mounted on the front face of dock


3


. Engagement of lip


10


with keepers


10




a


maintains the ramp in the horizontal position.




An inflatable bag assembly


11


is located in pit


2


beneath the ramp


6


, and by inflating the bag assembly ramp


6


can be pivoted from the horizontal to the upwardly inclined position. Bag assembly


11


is composed of a pair of vertically superimposed bags


12


and


13


. While the drawings show a pair of bags


12


and


13


, it is contemplated that any number of stacked bags can be utilized in the bag assembly.




The construction of the bag assembly


11


can be similar to that described in U.S. Pat. No. 5,446,938.




Bags


12


and


13


are preferably formed of fabric, such as nylon or polyester, impregnated with a thermoplastic resin and have contiguous horizontal surfaces which are joined together along an annular sealed area


14


that borders an unsealed central area. One or more holes


15


extend through the central area to provide communication between the interiors of the bags


12


and


13


.




The upper surface of bag assembly


11


bears against an upper plate


17


which is mounted to the underside of ramp


6


, while the lower surface of the bag assembly is supported on a bag support member or frame


18


.




To inflate bag assembly


11


, a low pressure fan


19


, similar to that described in pending U.S. patent application Ser. No. 07/814,002, filed Dec. 26, 1991, now abandoned, is mounted to the undersurface of ramp


5


between the parallel beams


22


of the ramp


6


. The outlet of fan


19


is connected through an air line


20


to a fitting


21


in bag


12


. With this construction operation of fan


19


will inflate bags


12


and


13


. When operation of fan


19


is terminated, the weight of the ramp


6


will deflate the bags


12


and


13


, exhausting the air through the fan


19


.




The bag support member


18


, as best shown in

FIGS. 4 and 5

is composed of a plurality of parallel, spaced, channel-shaped sections


23


. Rollers


24


are located between adjacent sections


23


and similar rollers


24


are located outboard of the outer sections


23


. Rollers


24


are journaled on a shaft


25


that extends through the flanges of the channel-shaped sections


23


.




As shown in

FIGS. 1 and 2

, rollers


24


, which are located at the forward end of the bag support member


18


, are adapted to ride on the sloping floor


4


of pit


2


, as the ramp is raised and lowered.




As a feature of the invention, the rear end of the bag support member


18


is pivoted to the rear end of ramp


6


. In this regard, a cross bar


26


is mounted to the underside of the ramp and extends transversely of the ramp, and a series of lugs


27


extend downwardly from cross bar


26


. A pivot shaft


28


extends through aligned holes in lugs


27


, as well as in the flanges of the channel-shaped sections


23


, and serves to pivotally connect the bag support member


18


to the ramp.




Each of the bags


12


and


13


is provided with a rearwardly extending strip or tether


29


and the tethers are secured to the rear end of bag support member


18


, as best illustrated in

FIG. 3. A

cross bar


30


extends transversely across the upper surfaces of the sections


23


, and the tethers


29


are secured to the cross bar through a clamping bar


31


and bolts


32


. The tethers


29


prevent the bags


12


and


13


from squeezing forwardly as the bags are inflated to elevate the ramp


6


.




As the bag support member


18


is connected directly to the ramp


6


, the bag support member will move forwardly with the ramp as the ramp is pivoted upwardly and the rollers


24


permit the bag support member to ride on the pit floor


4


, as the ramp is raised and lowered. As the ramp


6


and bag support member


18


move together, relative movement between the bag assembly


11


and ramp plate


17


and bag support member


18


is minimized.




If bag support member


18


was not tied to ramp


6


and instead was connected to frame


5


, the ramp would tend to move forwardly to a greater extent than the bag support member as the bag was inflated and the ramp was elevated. Initially, friction would tend to hold the bag in engagement with the ramp plate and the bag supporting plate, but as the bag was further inflated, the frictional forces are overcome causing the bag to snap forwardly. This action would put a strain on the tethers. Further, the relative movement between the upper and lower surfaces of the bag against the ramp plate and the bag support member could cause undue wear on the bag surfaces.




As a feature of the invention, the upper surface face of bag


12


is connected to the plate


17


, preferably by a removable connection. As shown in the drawings, the releasable connection can take the form of a pair of loops


34


secured to the forward end of upper bag


12


, and the loops are each connected through a strap or cord


35


to the underside of ramp


6


. Engagement of straps


35


and loops


34


will prevent the bag assembly


11


from collapsing downwardly against the bag supporting member


18


when operation of fan


19


is discontinued and will maintain the bag volume. For example, when the ramp


6


descends from the upwardly inclined position shown in

FIG. 2

, due to discontinuation of operation of fan


19


, the extended lip


10


will engage the truck bed, but the bag assembly


11


will maintain its volume and will not collapse against the bag support member


18


, due to the connections


34


,


35


. If the truck bed is above the level of dock


3


and the truck subsequently pulls away from the dock, the ramp will further descend, compressing the air within the bag assembly


11


, and exhausting the air through the restriction of fan


19


. Thus, the ramp will descend slowly, enabling the lip


10


to fall to its pendant position where it can engage the keepers


10




a


on the dock face.




The connection between the bag assembly


11


and the ramp plate


17


is also important in situations where the ramp may be at a downwardly inclined position during the loading operation. When the truck subsequently pulls away from the dock with the ramp


6


in this downwardly inclined position, the lip


10


will not be in position to engage the keepers


10




a


, with the result that the ramp will descend and bottom out in the pit


2


. With the connection between the plate


17


and the bag assembly


11


, which retains the bag volume, the descent of the ramp will be slowed, so it will not slam into the pit floor.




While the drawings show the releasable connection to be straps


35


and loops


34


, it is contemplated that various types of connections can be employed to connect the upper end of bag assembly


11


to the ramp plate


17


or the ramp


6


, to thereby prevent the deflated bag assembly from collapsing downwardly against the bag support member


18


.




The foregoing description of the present invention has been presented for purposes of illustration and description. Furthermore, the description is not intended to limit the invention to the form disclosed herein. Consequently, variations and modifications commensurate with the above teachings, and the skill or knowledge of the relevant art, are within the scope of the present invention. The embodiments described herein are further intended to explain best modes known for practicing the invention and to enable others skilled in the art to utilize the invention in such, or other, embodiments and with various modifications required by the particular applications or uses of the present invention. It is intended that the appended claims be construed to include alternative embodiments to the extent permitted by the prior art.



Claims
  • 1. A loading dock comprising:a dock surface including a pit having a pit floor, a ramp pivotally coupled to the dock surface; an inflatable assembly positioned under the ramp and adapted to move the ramp between a lowered position and a raised position; and a support positioned under and supporting the inflatable assembly, wherein the support is unsecured to the pit floor to allow lifting of the support away from the pit floor.
  • 2. The loading dock of claim 1, wherein the support is pivotable.
  • 3. The loading dock of claim 2, wherein the support is pivotally coupled to the ramp.
  • 4. The loading dock of claim 1, wherein the support includes at least two ends, and wherein the pit floor directly supports only one end of the support.
  • 5. The loading dock of claim 4, wherein the support includes a roller rotatably connected to the one end of the support, and wherein the roller is supported by the pit floor.
  • 6. The loading dock of claim 1, wherein the inflatable assembly supports the ramp in the raised position when the inflatable assembly is in the operative position, wherein the support engages the pit floor when in the inflatable assembly is in the operative position.
  • 7. A loading dock comprising:a dock surface including a pit having a pit floor; a ramp pivotally coupled to the dock surface for movement between a generally horizontal lowered position and an upwardly-inclined raised position; an inflatable assembly positioned under the ramp; and a support positioned under and supporting the inflatable assembly, wherein the support is unsecured to the pit floor to allow the support to be manually lifted away from the pit floor.
  • 8. The loading dock of claim 7, wherein the support is pivotable.
  • 9. The loading dock of claim 8, wherein the support is pivotally coupled to the ramp.
  • 10. The loading dock of claim 7, wherein the support includes at least two ends, and wherein the pit floor supports only one end of the support.
  • 11. The loading dock of claim 10, wherein the support includes a roller rotatably connected to the one end of the support, and wherein the roller is supported by the pit floor.
  • 12. The loading dock of claim 7, wherein the inflatable assembly supports the ramp in the upwardly-inclined raised position when the inflatable assembly is in the operative position, wherein the support engages the pit floor when in the inflatable assembly is in the operative position.
  • 13. A loading dock comprising:a dock surface including a pit having a pit floor; a ramp pivotally coupled to the dock surface; an inflatable assembly positioned under the ramp; and a support positioned under the inflatable assembly, the support having a front portion and a rear portion, the support being movable relative to the floor from a first position adjacent the floor to a second position wherein the front and rear portions of the support are spaced from the floor sufficiently to permit cleaning of the floor beneath the ramp.
  • 14. The loading dock of claim 13, wherein at least a portion of the support is supported on the pit floor when the support is in the first position.
  • 15. The loading dock of claim 13, wherein substantially no part of the support is directly supported by the pit floor when the support is in the second position.
  • 16. The loading dock of claim 13, wherein the support can be manually lifted from the first position to the second position.
  • 17. A loading dock comprising:a dock surface including a pit having a pit floor; a ramp pivotally coupled to the dock surface; an inflatable assembly positioned under the ramp and adapted to move the ramp between a lowered position and a raised position; and a gas moving device fluidly connected to the inflatable assembly, wherein the gas moving device is positioned closer to the ramp than to the pit floor.
  • 18. The loading dock of claim 17, wherein the ramp includes an undersurface, and wherein the gas moving device is connected to the undersurface.
  • 19. The loading dock of claim 17, wherein the gas moving device is entirely positioned above a midpoint between the ramp and the pit floor.
REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. patent application Ser. No. 10/222,444 filed Aug. 16, 2002, which is a continuation of U.S. patent application Ser. No. 10/005,395 filed Dec. 3, 2001, now U.S. Pat. No. 6,460,212, which is a continuation of U.S. patent application Ser. No. 09/613,224 filed Jul. 10, 2000, now abandoned, which is a continuation of U.S. patent application Ser. No. 09/456,207 filed Dec. 7, 1999 now abandoned, which is a continuation of U.S. patent application Ser. No. 09/093,234 filed Jun. 8, 1998, now U.S. Pat. No. 5,996,156, which is a continuation-in-part of U.S. patent application Ser. No. 08/531,011 filed Sep. 20, 1995, now U.S. Pat. No. 5,802,650, which is a continuation-in-part of U.S. patent application Ser. No. 08/131,983 filed Oct. 4, 1993, now U.S. Pat. No. 5,471,693, all of which are incorporated herein by reference in their entirety.

US Referenced Citations (72)
Number Name Date Kind
2070960 Phillips Feb 1937 A
2495292 Cox et al. Jan 1950 A
2610824 Grier Sep 1952 A
2689956 Fenton Sep 1954 A
2804114 Bayerkohler Aug 1957 A
2846703 Adley Aug 1958 A
3012804 Jeavons Dec 1961 A
3117332 Kelley et al. Jan 1964 A
3211425 Greulich et al. Oct 1965 A
3379411 Vanderjagt Apr 1968 A
3521861 Freudenthal et al. Jul 1970 A
3528118 Smith Sep 1970 A
3628487 Bennett Dec 1971 A
3659899 Phillips et al. May 1972 A
3685077 Wiener et al. Aug 1972 A
3711157 Smock Jan 1973 A
3763514 Bishop Oct 1973 A
3784255 Smock Jan 1974 A
3799504 Vaughen Mar 1974 A
3835497 Smith Sep 1974 A
3977349 Hummel Aug 1976 A
3997932 Artzberger Dec 1976 A
4012804 Catlett Mar 1977 A
4036472 Orndorff, Jr. Jul 1977 A
4060170 Walters Nov 1977 A
4061310 Vetter Dec 1977 A
4081874 Artzberger Apr 1978 A
4110860 Neff et al. Sep 1978 A
4149469 Bigler Apr 1979 A
4169296 Wipkink et al. Oct 1979 A
4257136 Loblock Mar 1981 A
4293969 Frommelt Oct 1981 A
4319666 Hunter Mar 1982 A
4343058 Loblick Aug 1982 A
4455703 Fromme et al. Jun 1984 A
4538311 Hall et al. Sep 1985 A
4570277 Hahn et al. Feb 1986 A
4572579 Saito Feb 1986 A
4619008 Kovach et al. Oct 1986 A
4629162 Porche Dec 1986 A
4665579 Bennett et al. May 1987 A
4688760 Garman et al. Aug 1987 A
4735457 Bonerb et al. Apr 1988 A
4776052 Delgado et al. Oct 1988 A
4782542 Sato Nov 1988 A
4786032 Garman et al. Nov 1988 A
4861215 Bonerb Aug 1989 A
4922568 Hageman May 1990 A
4937906 Alexander Jul 1990 A
4948107 Orndorff, Jr. Aug 1990 A
4955923 Hageman Sep 1990 A
5042103 Megens Aug 1991 A
5067774 Trowland Nov 1991 A
5088143 Alexander Feb 1992 A
5178367 Vaughen Jan 1993 A
5232202 Watson Aug 1993 A
5299386 Naegelli et al. Apr 1994 A
5414886 Sust et al. May 1995 A
5446938 Warner et al. Sep 1995 A
5450643 Warner Sep 1995 A
5471693 Hodges Dec 1995 A
5475888 Massey Dec 1995 A
5481774 Hodges et al. Jan 1996 A
5500968 Hodges Mar 1996 A
5522107 Hageman et al. Jun 1996 A
5522108 Massey et al. Jun 1996 A
5600859 Hodges et al. Feb 1997 A
5669086 Garman Sep 1997 A
5802650 Massey Sep 1998 A
5802651 Massey et al. Sep 1998 A
5996156 Massey Dec 1999 A
6216303 Massey Apr 2001 B1
Foreign Referenced Citations (17)
Number Date Country
165168 Jun 1949 AT
1 207 221 Dec 1965 DE
2354388 Mar 1974 DE
27 21 384 Nov 1978 DE
37 43 551 Jul 1989 DE
0 001 316 Apr 1979 EP
0 386 850 Dec 1990 EP
835 142 May 1960 GB
930163 Jul 1963 GB
2 145 041 Mar 1985 GB
2 206 158 Dec 1988 GB
7710543 Mar 1979 NL
161243 SU
931701 May 1982 SU
1362826 Dec 1987 SU
9011204 Oct 1990 WO
WO 9313267 Jul 1993 WO
Non-Patent Literature Citations (1)
Entry
Rite-Hite Semi-Automatic Dock Leveler, Specifications and Pit Details—2 pages.
Continuations (5)
Number Date Country
Parent 10/222444 Aug 2002 US
Child 10/369420 US
Parent 10/005395 Dec 2001 US
Child 10/222444 US
Parent 09/613224 Jul 2000 US
Child 10/005395 US
Parent 09/456207 Dec 1999 US
Child 09/613224 US
Parent 09/093234 Jun 1998 US
Child 09/456207 US
Continuation in Parts (2)
Number Date Country
Parent 08/531011 Sep 1995 US
Child 09/093234 US
Parent 08/131983 Oct 1993 US
Child 08/531011 US