USRE37339E1 - Hydraulic latch pin assembly for coupling a tool to a construction equipment - Google Patents
Hydraulic latch pin assembly for coupling a tool to a construction equipment Download PDFInfo
- Publication number
- USRE37339E1 USRE37339E1 US09/526,972 US52697200A USRE37339E US RE37339 E1 USRE37339 E1 US RE37339E1 US 52697200 A US52697200 A US 52697200A US RE37339 E USRE37339 E US RE37339E
- Authority
- US
- United States
- Prior art keywords
- valve
- hydraulic motor
- fluid
- line
- assembly
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 230000008878 coupling Effects 0.000 title claims abstract description 83
- 238000010168 coupling process Methods 0.000 title claims abstract description 83
- 238000005859 coupling reaction Methods 0.000 title claims abstract description 83
- 238000010276 construction Methods 0.000 title claims description 9
- 239000012530 fluid Substances 0.000 claims description 194
- 238000000034 method Methods 0.000 abstract description 6
- 238000009412 basement excavation Methods 0.000 description 6
- 230000013011 mating Effects 0.000 description 3
- 230000000712 assembly Effects 0.000 description 2
- 238000000429 assembly Methods 0.000 description 2
- 230000009977 dual effect Effects 0.000 description 2
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 239000000356 contaminant Substances 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000010422 painting Methods 0.000 description 1
- 239000011435 rock Substances 0.000 description 1
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/28—Dredgers; Soil-shifting machines mechanically-driven with digging tools mounted on a dipper- or bucket-arm, i.e. there is either one arm or a pair of arms, e.g. dippers, buckets
- E02F3/36—Component parts
- E02F3/3604—Devices to connect tools to arms, booms or the like
- E02F3/3609—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat
- E02F3/3622—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat with a hook and a locking element acting on a pin
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/28—Dredgers; Soil-shifting machines mechanically-driven with digging tools mounted on a dipper- or bucket-arm, i.e. there is either one arm or a pair of arms, e.g. dippers, buckets
- E02F3/36—Component parts
- E02F3/3604—Devices to connect tools to arms, booms or the like
- E02F3/3609—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat
- E02F3/3627—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat with a hook and a longitudinal locking element
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/28—Dredgers; Soil-shifting machines mechanically-driven with digging tools mounted on a dipper- or bucket-arm, i.e. there is either one arm or a pair of arms, e.g. dippers, buckets
- E02F3/36—Component parts
- E02F3/3604—Devices to connect tools to arms, booms or the like
- E02F3/3609—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat
- E02F3/3663—Devices to connect tools to arms, booms or the like of the quick acting type, e.g. controlled from the operator seat hydraulically-operated
Definitions
- the invention relates to tool couplers for excavation, demolition and construction equipment.
- Some types of construction equipment such as backhoes and excavators, have a movable dipperstick (also referred to as an arm) to which a variety of tools, such as, for example, buckets and grapples, can be attached.
- a hydraulic linkage allows the equipment operator to pivot the tool from the free end of the dipperstick.
- a universal coupler can be fixed to the dipperstick linkage.
- a selected tool can then be removably attached to the coupler, a process that typically involves manually positioning at least one latch pin between the coupler and the tool.
- One type of actuated coupler first engages a crossbar formed in the tool with hooks depending from the coupler, and then engages a latch pin (or a block or a wedge) with a mating receptacle formed in a collar on the tool.
- a double-action hydraulic cylinder in line with the latch pin is positioned so that the cylinder extends to push the latch pin into the receptacle.
- the operator retracts the rod into the cylinder body, pulling the pin out of the receptacle.
- the invention provides a coupling assembly for coupling a tool to a dipperstick, or arm, on an apparatus which has a hydraulic system for moving the tool.
- the coupling assembly includes a coupler body having a frame that defines a central cavity, and also having link structure for pivotally coupling to the dipperstick.
- An actuator assembly positioned within the central cavity includes a latch pin movable between an extended position and a retracted position. In the extended position, an end of the latch pin projects rearward from an opening in a rear end of the frame for engaging an aperture or receptacle defined by the tool. In the retracted position, the end of the latch pin is disengaged from the tool receptacle and positioned substantially within the frame.
- the actuator assembly also includes a hydraulic latch cylinder that has a movable part, and a fixed part.
- the movable part is coupled to the latch pin by a latch pin coupling assembly, which is structured and arranged such that, when the movable part is extended from the fixed part, the latch pin moves to the retracted position.
- the latch pin coupling assembly includes a bias member structured and arranged to apply a bias force that urges the latch pin towards the extended position.
- a threshold level of hydraulic pressure is applied to the latch cylinder, the movable part of the cylinder overcomes the bias force and extends to move the latch pin to the retracted position and out of engagement with the tool.
- latch cylinder can be a single-action cylinder.
- the latch cylinder can be positioned on an axis different from an axis defined by the latch pin, such as along side the latch pin.
- the hydraulic pressure to the latch cylinder can be controlled by an electrically actuated valve assembly that hydraulically couples the dipperstick hydraulics to the latch cylinder.
- the valve assembly can include one or more solenoid valves that only allow hydraulic pressure to enter and remain in the latch cylinder when they are energized.
- valve assembly can be structured and arranged such that the dipperstick hydraulics must be approximately fully pressurized while extended to pressurize the latch cylinder.
- the coupling assembly can also include a pin indicator that readily shows whether the latch pin is retracted.
- the indicator is located such that it can be viewed easily from the operator position.
- a drop in hydraulic pressure in the latch cylinder below the threshold level allows the bias spring to push the coupling pin towards the extended position.
- An unexpected hydraulic pressure loss can be caused by a failure in the hydraulic system or by a failure in the valve assembly.
- the spring apply, hydraulic release system is safe in that it assures that an attached tool will not accidentally uncouple from the coupling assembly if there is a loss in hydraulic pressure in the latch cylinder.
- the invention also provides a method of removing a tool from the coupler assembly having features as described above.
- An operator can remove a tool by the steps of applying hydraulic pressure to a latch cylinder that has a part fixed relative to the coupler body and a movable part rigidly coupled to the latch pin, extending the movable part from the fixed part, thereby urging the latch pin to the retracted position, engaging a cross member of the excavation tool with a hook structure depending and extending forward from the coupler body, rotating the coupler body toward the tool, aligning the latch pin with a mating receptacle formed in the excavation tool, reducing hydraulic pressure to the latch cylinder, and applying a bias force to the latch pin, urging the latch pin to the engaged position, thereby engaging the latch pin in the receptacle and securing the excavation tool to the coupler body.
- the method further includes the step of removing the tool from the coupler, including rotating the coupler body and the tool to a full forward position, again applying hydraulic pressure to the latch cylinder, again extending the movable part from the fixed part, thereby urging the latch pin to the retracted position and disengaging the latch pin from the receptacle, and disengaging the hook structure from the cross member of the excavation tool.
- the latch cylinder extends using the more powerful head end to extract the latch pin, whereas coupling systems using an in-line dual-action cylinder and latch pin arrangement use the less powerful rod end for this purpose.
- This feature of the invention is important when extracting a frozen pin, which can require substantially more force than inserting a free moving pin.
- the rod of the latch cylinder is normally in the retracted position during the tool working period. Because the latch cylinder is retracted, the rod of the latch cylinder is not subject to damage from rocks and sharp objects. Normally, the only time the rod is extended, and thereby exposed to the elements and contaminants, is when a tool is being attached or detached from the coupling assembly.
- FIG. 1 is a perspective view of dipperstick with an attached coupling assembly, and a conventional bucket that can be attached to the coupling assembly.
- FIG. 3 is a top plan view of a coupling assembly, partially showing a bucket, with the latch pin in an unlatched, retracted position.
- FIG. 3A is a similar view, partially broken away, showing the latch pin in a latched, extended position.
- FIG. 6 is a schematic diagram of a hydraulic system and an electrical system according to the invention.
- FIGS. 6A, 6 B and 6 C illustrate other embodiments of a valve assembly.
- a hydraulic coupler assembly 10 is attached to a conventional dipperstick or arm 12 . Only a free end of dipperstick 12 is illustrated in FIGS. 1 and 2. The other end of dipperstick 12 is pivotally coupled, typically via an intermediate articulation (not shown), to a base (not shown) that includes a hydraulic power system, and hydraulic and electric operator controls located in a cab. Coupler assembly 10 can be used for coupling the dipperstick 12 to any of a variety of tools, such as, for example, a conventional bucket 14 .
- Dipperstick 12 linkage includes a bucket guide link 16 pivotally attached to the dipperstick 12 , a bucket cylinder 18 for actuating the coupling assembly 10 and the bucket 14 , and a bucket link 20 .
- Extending bucket cylinder 18 rotates coupling assembly 10 , and any tool attached to coupling assembly 10 , inwardly in a forward direction.
- coupling assembly 10 includes a frame 24 forming a central space 22 .
- Frame 24 includes side walls 26 , a bottom plate 28 , a coupler spreader plate 30 and a rear face plate 32 .
- a pair of forward extending hooks 34 that are adapted to fit through an opening or recess 36 formed in a back sheet 38 of bucket 14 (see FIG. 1 ). The hooks 34 can then engage a cross tube 40 to support a forward end of bucket 14 .
- Bucket 14 is adapted to be coupled to dipperstick 12 with coupling assembly 10 .
- a recess 36 is formed in back sheet 38 of the bucket for receiving hooks 34 .
- This connection provides a first point of connection between coupling assembly 10 and bucket 14 .
- a receptacle 50 formed in a latch collar 51 fixed to a plate 52 on the rear end of bucket 14 engages one end of a movable latch pin 48 .
- Latch pin 48 slides within the bore of a bushing 60 welded to rear face plate 32 within frame 24 .
- a forward end of spring guide rod 66 includes a notch 68 that is positioned against an angled top edge 69 of coupler spreader plate 30 and held in place by the spring force from spring 56 .
- the other end of spring guide rod 66 acts as a stop for latch pin 48 in the retracted position (see FIG. 4 ).
- the body 70 of latch cylinder 58 is fixed to pin block 62 .
- body 70 has screw threads formed on its outer surface and screws into mating threads formed in a through hole in pin block 62 , and is held in place by a set screw 71 .
- the cylinder's extensible rod, or piston 72 extends through the hole in pin block 62 .
- Pin block 62 includes a cylindrical opening 76 that receives spring guide rod 66 when latch pin 48 is retracted by actuation of cylinder 58 (see FIG. 3 ).
- spring guide rod 66 stops latch pin 48 from retracting beyond a predetermined point.
- the end of spring guide rod 66 is inside the cylindrical opening 76 in pin block 62 and projects beyond the corresponding end of spring 56 .
- a transverse assembly hole 78 formed in the end of spring guide rod 66 is aligned with a U-shaped slot 80 formed in pin block 66 .
- An assembly pin (not shown) can be placed in assembly hole 78 .
- latch pin 48 When pressure in cylinder 58 is released, latch pin 48 can be manually moved to the latched position, thereby releasing spring guide rod 66 from cylindrical opening 76 in pin block 62 . Assembly pin in hole 78 keeps spring 56 compressed on spring guide rod 66 . With pin block 62 out of the way, the assembled latch spring assembly, comprised of spring guide rod 66 , spring 56 , and winged end plate 64 , can be removed as a unit from coupler 10 . The latch spring assembly can be installed in coupler 10 by a reverse procedure.
- a hydraulic circuit 86 for operating latch cylinder 58 taps into the hydraulics of the excavator.
- a hydraulic pump 88 and a reservoir 90 are coupled to bucket cylinder 18 via a lever-operated, three-position, two-pole valve 92 .
- Pump 88 , reservoir 90 and valve 92 are located in the base 93 of the excavator.
- Hydraulic hoses 94 , 96 connect between valve 92 and the rod end 98 and cylinder end 100 of bucket cylinder, respectively.
- Hydraulic hose 96 has a T-connection leading to one port of a valve assembly 102 . The T-connection can be conveniently made at the hydraulic fitting for the cylinder side 100 of bucket cylinder 18 .
- valve assembly 102 connects via hydraulic hose 104 to fitting 73 in latch cylinder 58 .
- Valve assembly 102 can be strapped, bolted or otherwise attached to a fixed part of bucket cylinder 18 or to an upper portion of dipperstick 12 .
- Valve assembly 102 includes two solenoid actuated valves 108 , 110 , each with a power connection controlled by a locking electrical toggle switch 111 located in the cab of the excavator. In an unlatch switch position the solenoids are energized and in a latch switch position the solenoids are shut off. When the solenoids are not energized (see FIG. 6 ), springs 112 , 114 urge valves 108 , 110 , respectively to a position wherein a check valve portion 116 of valve 108 and a through portion 118 of valve 110 are connected in series between lines 96 and 104 . When valves 108 , 110 are energized (not shown), a through portion 120 of valve 108 and a check valve 122 portion of valve 110 are-placed in the circuit.
- FIG. 6A another embodiment of a valve assembly 102 ′ includes valve 108 in series with check valve 124 between lines 96 and 104 .
- Check valve 24 prevents back flow from line 104 to 96 .
- a drain line 126 normally connects between line 104 and reservoir 90 via through portion 128 of solenoid valve 130 .
- valves 108 and 130 are energized, drain line 126 is blocked by check valve portion 132 of valve 130 , and through portion 120 is positioned in series connection with check valve 124 between lines 96 and 104 .
- Check valve 124 similar to check valve portion 122 , is set to permit pressurization of line 104 and latch cylinder 58 when full hydraulic pressure is applied to extend bucket cylinder 18 .
- a fourth embodiment of a valve assembly 102 ′′′ includes solenoid valves 138 and 110 .
- cylinder 58 drains to reservoir 90 via through portion 118 of valve 110 and lower through portion 140 of valve 138 .
- pressure line 96 is coupled to cylinder 58 via upper through portion 142 of valve 138 and check valve portion 122 of valve 110 .
- a single operator in the cab of the excavation equipment can detach a tool, such as bucket 14 , to the coupling assembly 10 and attach a new tool to the coupling assembly without any assistance, as described in detail below.
- a tool such as bucket 14
- Some particulars of the following recitation of steps for coupling and removing a tool are made with reference to the embodiment of valve assembly 102 illustrated in FIG. 6 . It will be understood that the embodiments of valve assemblies 102 ′, 102 ′′, and 102 ′′′ illustrated in FIGS. 6A, 6 B, and 6 C, respectively, will function in much the same manner, and the operator will make essentially the same sequence of steps to attach or detach a tool.
- check valve 122 is set such that the coupling assembly 10 and attached tool 14 must be rotated fully forward and approximately full pressure must be applied in line 96 to bucket cylinder 18 to open check valve 122 . This assures that accidentally throwing switch 111 will not, by itself, be sufficient to retract latch pin 48 .
- latch cylinder 58 extends and thereby retracts latch pin 48 .
- the operator can confirm that the latch pin 48 is retracted if he sees the pin block 62 in the retracted position. While the switch 111 is still in the “tunlatch” position, the latch pin 48 will be held back retracted.
- solenoid valves 108 , 110 are still energized and in the unlatch position, and check valve 122 retains pressure in latch cylinder 58 . The operator can then use free hands to maneuver the vehicle to disengage the hooks 34 from cross member 40 to uncouple the tool.
- the operator throws toggle switch 111 to the latch position, de-energizing the solenoid valves in valve assembly 102 , and lowers hydraulic pressure in line 96 .
- This allows pressure to drop in latch cylinder 58 such that spring 56 urges latch pin 48 to the engaged, or latched position, thereby bringing the piston 72 of cylinder 58 to a protected position retracted into cylinder body 70 .
- the operator adjusts pressure in the bucket cylinder 18 and maneuvers the coupling assembly 10 to insert hooks 34 into the recess 36 of the new tool and engage cross tube 40 .
- the operator then lifts the tool off the ground, and rolls coupling assembly 10 forward by extending bucket cylinder 18 .
- Coupler crescent 61 engages an upper side of latch collar 51 , thus bringing latch pin 48 into alignment with receptacle 50 on bucket 14 .
- the operator knows that the coupler crescent 61 has engaged latch collar 51 when he sees the bucket 14 visibly begins to roll forward. Less than full pressurization of the bucket cylinder 18 is typically required to bring the coupling assembly to this position.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Mining & Mineral Resources (AREA)
- Civil Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Structural Engineering (AREA)
- Shovels (AREA)
- Fluid-Pressure Circuits (AREA)
Abstract
Description
Claims (50)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US09/526,972 USRE37339E1 (en) | 1996-04-18 | 2000-03-16 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US08/634,561 US5727342A (en) | 1996-04-18 | 1996-04-18 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US08/947,441 US5966850A (en) | 1996-04-18 | 1997-09-24 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US09/526,972 USRE37339E1 (en) | 1996-04-18 | 2000-03-16 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
Related Parent Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US08/947,441 Reissue US5966850A (en) | 1996-04-18 | 1997-09-24 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| USRE37339E1 true USRE37339E1 (en) | 2001-08-28 |
Family
ID=24544297
Family Applications (4)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US08/634,561 Ceased US5727342A (en) | 1996-04-18 | 1996-04-18 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US08/947,441 Ceased US5966850A (en) | 1996-04-18 | 1997-09-24 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US09/526,973 Expired - Lifetime USRE37320E1 (en) | 1996-04-18 | 2000-03-16 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US09/526,972 Expired - Lifetime USRE37339E1 (en) | 1996-04-18 | 2000-03-16 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
Family Applications Before (3)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US08/634,561 Ceased US5727342A (en) | 1996-04-18 | 1996-04-18 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US08/947,441 Ceased US5966850A (en) | 1996-04-18 | 1997-09-24 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US09/526,973 Expired - Lifetime USRE37320E1 (en) | 1996-04-18 | 2000-03-16 | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
Country Status (1)
| Country | Link |
|---|---|
| US (4) | US5727342A (en) |
Cited By (13)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20040016586A1 (en) * | 2002-07-29 | 2004-01-29 | Dvorak Paul A. | Control system for, and a method of, disengaging a hydraulically-driven implement from a work machine |
| US6691438B2 (en) * | 2001-04-26 | 2004-02-17 | Jrb Company, Inc. | Coupler with improved structure and method for manufacturing same |
| US20070134081A1 (en) * | 2004-05-21 | 2007-06-14 | Seabolt Steven P | Tool carrier attachment adapter |
| US20080296031A1 (en) * | 2007-05-30 | 2008-12-04 | Brandt Industries Ltd. | Quick Coupling Mechanism for Tool Attachment |
| US20090007465A1 (en) * | 2007-07-05 | 2009-01-08 | Caterpillar Inc. | Quick coupler assembly |
| US20120237283A1 (en) * | 2011-03-14 | 2012-09-20 | Brandt Industries Ltd. | Compact quick coupling mechanism for tool attachment |
| US20130255574A1 (en) * | 2009-04-07 | 2013-10-03 | John Cunningham | Sensor system for explosive detection and removal |
| US8684623B2 (en) | 2012-05-30 | 2014-04-01 | Caterpillar Inc. | Tool coupler having anti-release mechanism |
| US8869437B2 (en) | 2012-05-30 | 2014-10-28 | Caterpillar Inc. | Quick coupler |
| US8974137B2 (en) | 2011-12-22 | 2015-03-10 | Caterpillar Inc. | Quick coupler |
| US9217235B2 (en) | 2012-05-30 | 2015-12-22 | Caterpillar Inc. | Tool coupler system having multiple pressure sources |
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| US11851845B2 (en) | 2017-11-01 | 2023-12-26 | Doosan Bobcat North America Inc. | Implement carrier |
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| US5727342A (en) * | 1996-04-18 | 1998-03-17 | Wain-Roy, Inc. | Hydraulic latch pin assembly for coupling a tool to a construction equipment |
| US6000154A (en) * | 1997-03-10 | 1999-12-14 | Clark Equipment Company | Quick change attachment for powered auxiliary tool |
| US5974706A (en) * | 1997-03-10 | 1999-11-02 | Clark Equipment Company | Attachment construction for earthworking implement |
| US6163989A (en) * | 1997-03-10 | 2000-12-26 | Clark Equipment Company | Frame for mounting on a boom mounted quick change bracket |
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| US6196265B1 (en) | 1998-07-29 | 2001-03-06 | Wec Co. | Multi-line fluid connector |
| GB2330570B (en) * | 1998-09-08 | 1999-09-15 | Miller Ronald Keith | Quick coupler for bucket excavators |
| US6312212B1 (en) | 1999-01-29 | 2001-11-06 | Caterpillar Inc. | Coupler assembly |
| US6349959B2 (en) * | 1999-05-07 | 2002-02-26 | Case Corporation | Warning device and method |
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| USD440983S1 (en) | 1999-06-21 | 2001-04-24 | Ronald Keith Miller | Coupler for bucket excavators |
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| PL1852555T3 (en) * | 2006-05-02 | 2013-01-31 | Kinshofer Gmbh | A safety locking device for a quick coupler |
| USD551684S1 (en) * | 2006-06-29 | 2007-09-25 | Caterpillar Inc | Excavator bucket |
| US7438494B1 (en) * | 2007-07-23 | 2008-10-21 | Tony Da Costa | Tool coupler/adaptor |
| JP5203131B2 (en) * | 2008-10-21 | 2013-06-05 | 日立建機株式会社 | Hydraulic circuit for construction machinery |
| FR2938560B1 (en) * | 2008-11-14 | 2012-06-08 | Smtpo Soc De Distrib De Materiel De Travaux Public D Oucques | CONNECTING DEVICE FOR A BUCKET FOR EXCAVATION MACHINE |
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| US8281506B2 (en) * | 2010-02-26 | 2012-10-09 | Caterpillar Inc. | Tool coupler assembly |
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| GB2509303A (en) | 2012-11-08 | 2014-07-02 | Miller Int Ltd | Coupler |
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|---|---|---|---|---|
| US6691438B2 (en) * | 2001-04-26 | 2004-02-17 | Jrb Company, Inc. | Coupler with improved structure and method for manufacturing same |
| US6837319B2 (en) * | 2002-07-29 | 2005-01-04 | Caterpillar S.A.R.L. | Control system for, and a method of, disengaging a hydraulically-driven implement from a work machine |
| US20040016586A1 (en) * | 2002-07-29 | 2004-01-29 | Dvorak Paul A. | Control system for, and a method of, disengaging a hydraulically-driven implement from a work machine |
| US20070134081A1 (en) * | 2004-05-21 | 2007-06-14 | Seabolt Steven P | Tool carrier attachment adapter |
| US20080296031A1 (en) * | 2007-05-30 | 2008-12-04 | Brandt Industries Ltd. | Quick Coupling Mechanism for Tool Attachment |
| US7654019B2 (en) * | 2007-05-30 | 2010-02-02 | Brandt Industries Ltd. | Quick coupling mechanism for tool attachment |
| US20090007465A1 (en) * | 2007-07-05 | 2009-01-08 | Caterpillar Inc. | Quick coupler assembly |
| US7984575B2 (en) | 2007-07-05 | 2011-07-26 | Caterpillar Inc. | Quick coupler assembly |
| US9488450B2 (en) * | 2009-04-07 | 2016-11-08 | John Cunningham | Sensor system for explosive detection and removal |
| US20130255574A1 (en) * | 2009-04-07 | 2013-10-03 | John Cunningham | Sensor system for explosive detection and removal |
| US20120237283A1 (en) * | 2011-03-14 | 2012-09-20 | Brandt Industries Ltd. | Compact quick coupling mechanism for tool attachment |
| US8602676B2 (en) * | 2011-03-14 | 2013-12-10 | Brandt Industries Ltd. | Compact quick coupling mechanism for tool attachment |
| US8974137B2 (en) | 2011-12-22 | 2015-03-10 | Caterpillar Inc. | Quick coupler |
| US8684623B2 (en) | 2012-05-30 | 2014-04-01 | Caterpillar Inc. | Tool coupler having anti-release mechanism |
| US8869437B2 (en) | 2012-05-30 | 2014-10-28 | Caterpillar Inc. | Quick coupler |
| US9217235B2 (en) | 2012-05-30 | 2015-12-22 | Caterpillar Inc. | Tool coupler system having multiple pressure sources |
| US9228314B2 (en) | 2013-05-08 | 2016-01-05 | Caterpillar Inc. | Quick coupler hydraulic control system |
| US11851845B2 (en) | 2017-11-01 | 2023-12-26 | Doosan Bobcat North America Inc. | Implement carrier |
Also Published As
| Publication number | Publication date |
|---|---|
| US5966850A (en) | 1999-10-19 |
| US5727342A (en) | 1998-03-17 |
| USRE37320E1 (en) | 2001-08-14 |
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