US20080201997A1 - Tooth and Adaptor Assembly - Google Patents
Tooth and Adaptor Assembly Download PDFInfo
- Publication number
- US20080201997A1 US20080201997A1 US11/572,975 US57297505A US2008201997A1 US 20080201997 A1 US20080201997 A1 US 20080201997A1 US 57297505 A US57297505 A US 57297505A US 2008201997 A1 US2008201997 A1 US 2008201997A1
- Authority
- US
- United States
- Prior art keywords
- channel
- adaptor
- tooth
- nose
- locking mechanism
- 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.)
- Abandoned
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F9/00—Component parts of dredgers or soil-shifting machines, not restricted to one of the kinds covered by groups E02F3/00 - E02F7/00
- E02F9/28—Small metalwork for digging elements, e.g. teeth scraper bits
- E02F9/2808—Teeth
- E02F9/2816—Mountings therefor
- E02F9/2833—Retaining means, e.g. pins
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F9/00—Component parts of dredgers or soil-shifting machines, not restricted to one of the kinds covered by groups E02F3/00 - E02F7/00
- E02F9/28—Small metalwork for digging elements, e.g. teeth scraper bits
- E02F9/2808—Teeth
- E02F9/2816—Mountings therefor
- E02F9/2825—Mountings therefor using adapters
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F9/00—Component parts of dredgers or soil-shifting machines, not restricted to one of the kinds covered by groups E02F3/00 - E02F7/00
- E02F9/28—Small metalwork for digging elements, e.g. teeth scraper bits
- E02F9/2808—Teeth
- E02F9/2816—Mountings therefor
- E02F9/2833—Retaining means, e.g. pins
- E02F9/2841—Retaining means, e.g. pins resilient
Definitions
- This invention relates particularly to the mining and construction industries and the use of earthmoving and similar machinery used in those industries. More particularly this invention relates to the wear components, namely the replaceable wear teeth on the excavator and the mode in which they are secured thereto.
- the machinery often has a bucket having several teeth extending from its leading edge. These teeth experience substantial wear and may need to be replaced daily in some environments.
- complementary shapes to those of the tooth also need to be cast in the adaptor, typically in the form of grooves or indents. These grooves and indents are typically used to receive the locking mechanism within, which co-acts with the two components.
- the cross section of the adaptor must therefore change significantly to accommodate these complimentary shapes, resulting in concentrations of stress during manufacture and service of the component.
- the present invention provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
- the present invention provides a configuration which is easy to cast, reducing regions of high stress. Furthermore, the locking mechanism is fully enclosed, protecting it from the abrasive surroundings which could damage the mechanism and make removal extremely difficult.
- the locking mechanism As the locking mechanism is fully enclosed in the enclosure, there is no chance that the mechanism can be unintentionally dislodged and allow the tooth to be removed from the adaptor, to expose the adaptor to the environment. As the locking mechanism is protected, the forces required to retain the locking mechanism are greatly reduced than prior art configurations, and hence requires minimal force to remove the locking mechanism, enabling quick change out time, reducing the amount of downtime of the machinery.
- the entire tooth is used as a wear protection element for the adaptor. Hence there is no additional weight added to the tooth which would not prolong its life.
- the shape of the tooth allows for easy casting, reducing areas of increased stress, which may cause failure of the assembly during service. This is true for the tooth but also for the adaptor.
- the simple shape of the nose of the adaptor represents minimal change to its cross sectional shape and allows the socket of the tooth to be manufactured such that it is snugly received on the nose.
- the locking mechanism may comprise two pins.
- Each pin may be adapted to be received in the respective aperture in the upper wall of the tooth.
- Each pin may comprise a housing and a retaining clip which provides the projection.
- the retaining clip may be bonded to a resiliently flexible material.
- the resiliently flexible material may be received in a recess of the housing.
- the projection may extend beyond the boundary of the housing when the pin is in its normal condition.
- the housing may be made of metal.
- each pin engages a front surface of the second channel closest to the front of the nose, with a portion of the retaining clip adjacent the projection engaging a rear face of the second channel adjacent either side of the first channel.
- the adaptor When assembled, neither the rear surface of the socket, nor the rear part of the tooth adjacent the socket opening engage the adaptor.
- each pin does not protrude beyond the upper wall or bottom wall of the tooth.
- the front face of the adaptor nose is rectangular in shape.
- the nose diverges outwardly, in a direction rearward of the front face.
- the upper surface and lower surface of the nose are curved.
- the first channel of the adaptor extends from adjacent a front face of the nose rearwardly.
- the first channel may be parallel with the path the tooth travels as the tooth is positioned upon the adaptor.
- the second channel is substantially perpendicular to the first channel.
- the second channel bisects the first channel.
- the second channel has a wider portion adjacent the upper surface which contracts as it approaches the first channel.
- the portion of the second channel above the first channel is wider near the upper surface and has a inwardly raised ramp adjacent the first channel.
- the additional width of the second channel allows the pin to be easily positioned within the assembly. Once in this position, the fitter only needs to tap the pin, forcing the retaining clip to move inwardly with respect to the housing of the pin as it engages the ramp. Once the projection passes the ramp, the resilient nature of the pin urges the retaining clip outwardly such that the assembly is in the locked condition.
- the tooth is a unitary member and provides the wear member.
- the interior surfaces of the socket complement the surfaces of the nose.
- the upper wall and bottom wall of the tooth have a curved section which protrudes beyond the sidewalls.
- the curved section adds further wear protection to the adaptor.
- the elongate protrusion extends between the third channel and the rear surface of the socket.
- the third channel is substantially perpendicular to the protrusion.
- the protrusion may be parallel with the path the tooth travels as the tooth is positioned upon the adaptor.
- the elongate protrusion extends substantially parallel to the longitudinal axis of the tooth.
- the third channel has a uniform cross section along its longitudinal axis.
- the tab of the tooth is offset from the third channel.
- a recess may be provided by the first channel of the adaptor when the adaptor is received in the tooth, the recess being defined by a portion of the first channel of the adaptor adjacent the second channel.
- the projection from the pin is releasable retained in the recess to hold the pin in place when the assembly is in an assembled condition. In this state the assembly is in the locked condition.
- the bottom wall of the tooth incorporates two apertures.
- each aperture in the bottom wall is aligned with the third channel and is of sufficient size to allow the respective pin to pass through.
- the apertures in the bottom wall are of suitable size such that the pins cannot pass therethrough.
- a tool may be inserted through each aperture of the bottom wall to dislodge the pins, allowing the pin to be removed through the apertures in the upper wall.
- the present invention further provides a tooth for use on an adaptor of earthmoving machinery, the tooth being adapted to be received over a nose of the adaptor and releasably secured thereto, the tooth comprising:
- the present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
- the present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
- the present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising a tooth received on an adaptor, the tooth being locked onto the adaptor by a locking mechanism, whereby the locking mechanism comprises at least one pin received in an enclosure defined by the tooth and the adaptor, the enclosure being such that the at least one pin is protected from the environment and can only be removed via an aperture through which it is received into the enclosure.
- the present invention still further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
- the portion is in the form of a tab adjacent the opening of the socket.
- the present invention further provides a tooth for use on an adaptor of earthmoving machinery, the tooth being adapted to be received over a nose of the adaptor, and releasably secured thereto, the tooth comprising:
- the portion is in the form of a tab adjacent the opening of the socket.
- the present invention further yet provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
- FIG. 1 is a rear perspective view of a tooth according to a first embodiment of the invention
- FIG. 2 is a cross sectional plan view of FIG. 1 ;
- FIG. 3 is a cross sectional side view of FIG. 1
- FIG. 4 is a cross sectional perspective view of FIG. 1 from a rear position
- FIG. 5 is a cross sectional perspective view of FIG. 1 from a forward position
- FIG. 6 is a view similar to FIG. 5 from an elevated position
- FIG. 7 is a view similar to FIG. 4 from a lower position
- FIG. 8 is an exploded view of section A as shown in FIG. 7 ;
- FIG. 9 is a front perspective view of an adaptor according to an embodiment of the invention.
- FIG. 10 is a view similar to FIG. 9 , but only showing the nose section
- FIG. 11 is a cross sectional plan view of FIG. 10 ;
- FIG. 12 is a front view of FIG. 9 ;
- FIG. 13 is a side view of FIG. 9 ;
- FIG. 14 is a bottom view of FIG. 9 ;
- FIG. 15 is a cross sectional view of a locking mechanism according to an embodiment of the invention.
- FIG. 16 is a cross sectional view of the tooth received on the nose of the adaptor, with the locking mechanism partially inserted in an enclosure;
- FIG. 17 is a view similar to FIG. 16 with the locking mechanism positioned further in the enclosure;
- FIG. 18 is a view similar to FIG. 16 with the assembly in a locked position.
- FIG. 19 is a view similar to FIG. 16 with the locking mechanism passing through a bottom aperture
- FIG. 20 is a rear perspective view of a tooth according to a second embodiment of the invention.
- FIG. 21 is a cross sectional plan view of FIG. 20 ;
- FIG. 22 is a cross sectional view of the tooth according to the second embodiment received on the nose of the adaptor, with the locking mechanism partially inserted in an enclosure;
- FIG. 23 is a view similar to FIG. 22 with the assembly in a locked position.
- the invention according to a first embodiment of the invention comprises a tooth and adaptor assembly 11 for use on earthmoving or similar machinery.
- the assembly 11 comprises an adaptor 21 , having a first end 23 adapted to receive a tooth 41 , with a locking mechanism 71 being received therein to lock the tooth 41 relative to the adaptor 21 .
- the adaptor 21 has a second end 25 adapted to be secured to a bucket or like component on the earthmoving machinery (not shown).
- the configuration of the second end 25 varies according to its particular application.
- the adaptor 21 comprises a nose 27 at the first end 23 .
- the nose 27 diverges outwardly in a rearward direction from a front surface 29 .
- the nose 27 comprises an upper surface 31 , a lower surface 33 , both having a curved contour, and two sidewalls 35 .
- Each sidewall 35 incorporates a first channel 37 extending longitudinally along the nose 27 rearward from the front surface 29 , and a second channel 39 extending between the upper surface 31 of the nose 27 to the lower surface 33 such that it bisects the first channel 37 and is substantially perpendicular thereto.
- the portion of the second channel 39 above the first channel 37 comprises a wider portion 41 than the lower part of the second channel 39 , and a ramp 40 adjacent the first channel 37 , as best shown in FIGS. 10 and 13 , for reasons which are explained below.
- the tooth 41 is adapted to be received over the nose 27 of the adaptor 21 , to be releasably secured thereto.
- the tooth 41 comprises a socket 43 being defined by an opening 45 , a rear surface 47 , an upper wall 49 , a bottom wall 51 and two sidewalls 53 .
- the shape of the socket 43 complements the surface of the nose 27 to provide a snug fit when the tooth 41 is received on the adaptor 21 .
- Each sidewall 53 incorporates a third channel 55 .
- the third channel 55 is substantially parallel to the opening 45 such that when assembled, the second channel 39 of the nose 27 and third channel 55 co-operate to define an enclosure 91 .
- the upper wall 49 has two apertures 57 a therethrough. Each aperture 57 a is in alignment with the respective third channel 55 on each sidewall 53 .
- the bottom wall 51 also has two apertures 57 b. These apertures 57 b are the same size and in alignment with the two apertures 57 a of the upper wall 49 .
- Each sidewall 53 also provides an inwardly projecting elongate protrusion 59 adapted to be slidingly received in the first channel 37 of the adaptor nose 27 during assembly of the tooth 41 and adaptor 21 .
- the elongate protrusion 59 extends between the third channel 55 and the rear surface 47 of the socket 43 , and is substantially perpendicular to the third channel 55 .
- each sidewall 53 also provides a tab 61 protruding into the opening 45 , and which is in longitudinal alignment with the elongate protrusion 59 .
- the elongate protrusion 59 and tab 61 are separated by the third channel 55 , with the tab 61 being offset from the third channel 55 , as best shown in FIGS. 7 and 8 .
- the locking mechanism 71 comprises two pins 73 (only one shown), each being adapted to be received through aperture 57 a in the upper wall 49 of the tooth 41 , and into the enclosure 91 during assembly.
- Each pin 73 comprises a metal retaining clip 75 providing a projection 77 .
- the retaining clip 75 is bonded to a resiliently flexibly material 79 , such as polyurethane.
- the resiliently flexible material 79 is received in a recess 81 of a metal housing 83 .
- the projection 77 extends beyond the boundary of the housing 83 when the pin 73 is in its normal condition.
- the adaptor 21 is secured to a component of the earthmoving equipment, such as a bucket, not shown.
- the adaptor 21 is typically welded to the bucket.
- the adaptor 21 is protected from substantial wear by the tooth 41 , which is replaced as the tooth becomes worn or damage. As this is quite regular it is important to have a tooth 41 which may easily and quickly be removed from the adaptor 21 .
- the socket 43 of the tooth 41 receives the nose 27 of the adaptor 21 such that the tab 61 and elongate protrusion 59 align with, and are slidingly received in the first channel 37 of the nose 27 .
- the tooth 41 continues to slide along the nose 27 until the internal surfaces of the upper wall 49 and bottom wall 51 of the socket 43 engage the upper surface 31 and lower surface 33 of the nose 27 respectively, at which point the third channel 55 aligns with the second channel 39 to provide an enclosure 91 .
- each pin 73 is placed in the enclosure 91 to be releasably retained therein.
- Each pin 73 is inserted through each aperture 57 a and passes through the wider portion 41 of the second channel 39 until the projection 77 of the pin 73 engages the ramp 40 , as shown in FIG. 17 .
- each pin 73 engages a wall 38 a of the second channel 39
- adjacent portions 78 of the projection 77 engage an opposed wall 38 b to wall 38 a, maintaining the tooth 41 in good fitment relative to the adaptor 21 .
- each pin 73 When disassembling the tooth from the adaptor, each pin 73 must first be removed. In order to do so, a tool (not shown) is inserted into the apertures 57 a in the upper wall 49 . A relatively small force is then applied to the pin 73 to force the projection 77 inwardly to allow the pin to pass through apertures 57 b in the bottom wall 51 of the tooth 41 .
- FIGS. 20 to 23 show a tooth 141 according to a second embodiment. Like numbering is used on similar components as was used for describing the tooth according to the first embodiment. In this embodiment, the configuration of the locking mechanism 71 and adaptor 21 remain the same as was described in the first embodiment.
- the tooth 141 of the second embodiment has two apertures 57 through the upper wall 49 .
- Each aperture 57 is in alignment with the respective third channel 55 on each sidewall 53 .
- the bottom wall 51 also has two apertures 58 . These apertures 58 are smaller in size than the two apertures 57 of the upper wall 49 , and are of suitable size such that the locking mechanism 71 is prevented from passing therethrough.
- each pin 73 When each pin 73 is in position, the bottom of the pin 73 engages or is adjacent the bottom wall 51 of the tooth 41 , whilst the top of the pin 73 is adjacent or substantially flush with the outer surface of the upper wall 49 of the tooth 41 , as best shown in FIG. 23 .
- each pin 73 When disassembling the tooth 141 from the adaptor 21 each pin 73 must first be removed. In order to do so, a tool (not shown) is inserted into the apertures 58 in the bottom wall 51 . A relatively small force is then applied to the pin 73 to force the projection 77 inwardly as it passes over the ramp 40 . Once each pin 73 is removed, the tooth 141 may easily be removed from the adaptor 21 .
- the configuration of the present invention protect the pin 73 from the environment and ensures the pins 73 are not knocked out or damaged during service. Due to this configuration, the fit of the pins 73 relative to the tooth and adaptor need not be as robust as if the pins 73 were exposed. Hence the forces required to insert and remove the pins are relatively small when compared to those of other available systems.
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Abstract
Description
- This invention relates particularly to the mining and construction industries and the use of earthmoving and similar machinery used in those industries. More particularly this invention relates to the wear components, namely the replaceable wear teeth on the excavator and the mode in which they are secured thereto.
- Within the mining and construction industries machinery such as excavators and front end loaders are used to move debris for various purposes. This machinery is often used in an extremely abrasive environment resulting in extreme wear on components.
- The machinery often has a bucket having several teeth extending from its leading edge. These teeth experience substantial wear and may need to be replaced daily in some environments.
- To reduce downtime in replacing the teeth, various configurations have been developed which use an adaptor secured to the bucket of the machine, a tooth releasably retained on the adaptor and a locking mechanism to retain the tooth to the adaptor.
- These configurations have been numerous. However, the configurations put forward to date are not without disadvantages. For instance, various configurations utilise a pin as the locking mechanism to secure the tooth to the adaptor. These pins are often exposed to the same environment the tooth is exposed, requiring that they be very secure with respect to the assembly so that they are not accidentally dislodged during use. Typically in order to meet this requirement, a large force is then required to dislodge the pin when the tooth is to be removed. Furthermore, the pins exposure to the environment can result in damage to the pin rendering it even more difficult to dislodge.
- Other configurations are complex in shape, often having large areas of metal extending beyond the main body of the tooth. These shapes can be difficult to cast and may result in the build up of stresses within the adaptor or tooth during casting, creating weak points within the components. Also, the extra metal does not always contribute to extending the wear life of the tooth and hence adds unnecessary weight to the assembly.
- Also, complementary shapes to those of the tooth also need to be cast in the adaptor, typically in the form of grooves or indents. These grooves and indents are typically used to receive the locking mechanism within, which co-acts with the two components. The cross section of the adaptor must therefore change significantly to accommodate these complimentary shapes, resulting in concentrations of stress during manufacture and service of the component.
- Some configurations put forward in the past require a hole passing through the adaptor. This obviously weakens the structure and induces areas of stress within the component.
- The reference to the abovementioned prior art is for the purposes of background only and is not, and should not be taken as, an acknowledgement or any form of suggestion that the prior art forms part of the general knowledge.
- It is an object of this invention to provide a tooth and adaptor assembly which incorporates a locking mechanism which can be removed from the assembly with minimal force.
- The present invention provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
-
- an adaptor adapted to be secured to a bucket or like component on earthmoving machinery, the adaptor comprising a nose at one end having a front surface, an upper surface, a lower surface and two sidewalls, each sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface of the nose to the lower surface such that it bisects the first channel;
- a tooth adapted to be received over the nose of the adaptor, and releasably secured thereto, the tooth comprising
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- each sidewall incorporates a third channel extending between the upper wall and bottom wall and being at an angle complementary to the second channel of the nose, such that when assembled, the second channel and third channel co-operate to define an enclosure, each sidewall also has an inwardly projecting elongate protrusion adapted to be slidingly received in the first channel of the adaptor nose during assembly, and an inwardly projecting tab adjacent the opening and in longitudinal alignment with the elongate protrusion, the third channel separating the elongate protrusion and tab,
- the upper wall having two apertures therethrough, each aperture aligning with the respective third channel;
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- a locking mechanism for locking the tooth to the adaptor, the locking mechanism being adapted to be received through the apertures, each locking mechanism having a projection,
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of both the upper wall and bottom wall of the socket engages the upper surface and lower surface of the nose, the locking mechanism can then be inserted into the enclosure defined by the second channel and third channel through the aperture, whereby the projection of the locking mechanism moves inwardly with respect to the locking mechanism as it enters the enclosure, the locking mechanism moving towards its normal extended position when the projection aligns with the first channel wherein the assembly is in a locked condition.
- In contrast with the prior art the present invention provides a configuration which is easy to cast, reducing regions of high stress. Furthermore, the locking mechanism is fully enclosed, protecting it from the abrasive surroundings which could damage the mechanism and make removal extremely difficult.
- As the locking mechanism is fully enclosed in the enclosure, there is no chance that the mechanism can be unintentionally dislodged and allow the tooth to be removed from the adaptor, to expose the adaptor to the environment. As the locking mechanism is protected, the forces required to retain the locking mechanism are greatly reduced than prior art configurations, and hence requires minimal force to remove the locking mechanism, enabling quick change out time, reducing the amount of downtime of the machinery.
- Owing to the design of the present invention, the entire tooth is used as a wear protection element for the adaptor. Hence there is no additional weight added to the tooth which would not prolong its life.
- Also, the shape of the tooth allows for easy casting, reducing areas of increased stress, which may cause failure of the assembly during service. This is true for the tooth but also for the adaptor. The simple shape of the nose of the adaptor represents minimal change to its cross sectional shape and allows the socket of the tooth to be manufactured such that it is snugly received on the nose.
- The locking mechanism may comprise two pins.
- Each pin may be adapted to be received in the respective aperture in the upper wall of the tooth.
- Each pin may comprise a housing and a retaining clip which provides the projection.
- The retaining clip may be bonded to a resiliently flexible material.
- The resiliently flexible material may be received in a recess of the housing.
- The projection may extend beyond the boundary of the housing when the pin is in its normal condition.
- The housing may be made of metal.
- Preferably, when the tooth and adaptor are in an assembled condition, each pin engages a front surface of the second channel closest to the front of the nose, with a portion of the retaining clip adjacent the projection engaging a rear face of the second channel adjacent either side of the first channel. When assembled, neither the rear surface of the socket, nor the rear part of the tooth adjacent the socket opening engage the adaptor.
- Preferably when in an assembled condition each pin does not protrude beyond the upper wall or bottom wall of the tooth.
- Preferably the front face of the adaptor nose is rectangular in shape.
- Preferably the nose diverges outwardly, in a direction rearward of the front face.
- Preferably the upper surface and lower surface of the nose are curved.
- Preferably the first channel of the adaptor extends from adjacent a front face of the nose rearwardly.
- The first channel may be parallel with the path the tooth travels as the tooth is positioned upon the adaptor.
- Preferably the second channel is substantially perpendicular to the first channel.
- Preferably the second channel bisects the first channel.
- Preferably the second channel has a wider portion adjacent the upper surface which contracts as it approaches the first channel.
- Preferably the portion of the second channel above the first channel is wider near the upper surface and has a inwardly raised ramp adjacent the first channel. The additional width of the second channel allows the pin to be easily positioned within the assembly. Once in this position, the fitter only needs to tap the pin, forcing the retaining clip to move inwardly with respect to the housing of the pin as it engages the ramp. Once the projection passes the ramp, the resilient nature of the pin urges the retaining clip outwardly such that the assembly is in the locked condition.
- Preferably the tooth is a unitary member and provides the wear member.
- Preferably the interior surfaces of the socket complement the surfaces of the nose.
- Preferably the upper wall and bottom wall of the tooth have a curved section which protrudes beyond the sidewalls. The curved section adds further wear protection to the adaptor.
- Preferably the elongate protrusion extends between the third channel and the rear surface of the socket.
- Preferably the third channel is substantially perpendicular to the protrusion.
- The protrusion may be parallel with the path the tooth travels as the tooth is positioned upon the adaptor.
- Preferably the elongate protrusion extends substantially parallel to the longitudinal axis of the tooth.
- Preferably the third channel has a uniform cross section along its longitudinal axis.
- Preferably the tab of the tooth is offset from the third channel. As a result of the offset, a recess may be provided by the first channel of the adaptor when the adaptor is received in the tooth, the recess being defined by a portion of the first channel of the adaptor adjacent the second channel.
- Preferably the projection from the pin is releasable retained in the recess to hold the pin in place when the assembly is in an assembled condition. In this state the assembly is in the locked condition.
- Preferably the bottom wall of the tooth incorporates two apertures.
- In one aspect of the invention each aperture in the bottom wall is aligned with the third channel and is of sufficient size to allow the respective pin to pass through. With this arrangement, the assembly can be disassembled by knocking the pin through the aperture in the bottom wall.
- In another aspect of the invention the apertures in the bottom wall are of suitable size such that the pins cannot pass therethrough. To remove each pin, a tool may be inserted through each aperture of the bottom wall to dislodge the pins, allowing the pin to be removed through the apertures in the upper wall.
- The present invention further provides a tooth for use on an adaptor of earthmoving machinery, the tooth being adapted to be received over a nose of the adaptor and releasably secured thereto, the tooth comprising:
-
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- each sidewall incorporates a channel extending between the upper wall and bottom wall, an inwardly projecting elongate protrusion and an inwardly projecting tab adjacent the opening and in longitudinal alignment with the elongate protrusion, the channel extending between the elongate protrusion and tab,
- the upper wall having two apertures therethrough, each aperture aligning with the respective channel;
- the bottom wall having two apertures in alignment with those in the upper wall;
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of both the upper wall and bottom wall of the socket engage the nose whereby the adaptor and each channel of the tooth cooperate to provide an enclosure, a locking mechanism is then positioned within the enclosure such that a projection of the locking mechanism is received in a recess provided by the adaptor, locking the tooth relative to the adaptor.
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- The present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
-
- an adaptor adapted to be secured to a bucket or like component on the earthmoving machinery, the adaptor comprising a nose at one end having a front surface, an upper surface, a lower surface and two sidewalls, each sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface of the nose to the lower surface such that it bisects the first channel;
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that a surface of a socket of the tooth engages the nose whereby the second channel of the adaptor and the tooth co-operate to provide an enclosure, a locking mechanism is then positioned within the enclosure such that a projection of the locking mechanism is received in a recess defined by the first channel, locking the tooth relative to the adaptor.
- an adaptor adapted to be secured to a bucket or like component on the earthmoving machinery, the adaptor comprising a nose at one end having a front surface, an upper surface, a lower surface and two sidewalls, each sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface of the nose to the lower surface such that it bisects the first channel;
- The present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
-
- an adaptor adapted to be secured to a bucket or like component on earthmoving machinery, the adaptor comprising a nose at one end having a front surface, an upper surface, a lower surface and two sidewalls, at least one sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface of the nose to the lower surface such that it bisects the first channel;
- a tooth adapted to be received over the nose of the adaptor, and releasably secured thereto, the tooth comprising
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls, at least one sidewall, complementary to the at least one
- sidewall of the adaptor, incorporates a third channel extending between the upper wall and bottom wall and being at an angle complementary to the second channel of the nose, such that when assembled, the second channel and third channel co-operate to define an enclosure,
- the upper wall having at least one aperture therethrough, the at least one aperture aligning with the third channel of the sidewall;
- the at least one sidewall having an inwardly projecting elongate protrusion adapted to be slidingly received in the first channel of the adaptor nose during assembly, and an inwardly projecting tab adjacent the opening and in longitudinal alignment with the elongate protrusion, the third channel separating the elongate protrusion and tab,
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls, at least one sidewall, complementary to the at least one
- at least one locking mechanism for locking the tooth to the adaptor, the locking mechanism being adapted to be received through the at least one aperture, the at least one locking mechanism having at least one projection,
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of both the upper wall and bottom wall of the socket engages the upper surface and lower surface of the nose whereby the second channel of the adaptor is in opposed relation to the third channel of the tooth, the locking mechanism is then positioned through the aperture into the enclosure, whereupon the application of force, the projection of the locking mechanism moves inwardly as it enters the enclosure, the locking mechanism moves towards its normal condition whereby the projection aligns with the first channel wherein the assembly is in its locked condition.
- The present invention further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising a tooth received on an adaptor, the tooth being locked onto the adaptor by a locking mechanism, whereby the locking mechanism comprises at least one pin received in an enclosure defined by the tooth and the adaptor, the enclosure being such that the at least one pin is protected from the environment and can only be removed via an aperture through which it is received into the enclosure.
- The present invention still further provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
-
- an adaptor adapted to be secured to a bucket or like component on the earthmoving machinery, the adaptor comprising a nose at one end having a front surface, an upper surface, a lower surface and two sidewalls, each sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface of the nose to the lower surface such that it bisects the first channel;
- a tooth adapted to be received over the nose of the adaptor, and releasably secured thereto, the tooth comprising
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- each sidewall incorporates a third channel extending between the upper wall and bottom wall and being at an angle complementary to the second channel of the nose, such that when assembled, the second channel and third channel define an enclosure,
- the upper wall having two apertures therethrough, each aperture aligning with the respective third channel on each sidewall;
- each sidewall has an inwardly projecting portion adapted to be slidingly received in the first channel of the adaptor nose during assembly,
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- a locking mechanism for locking the tooth to the adaptor, the locking mechanism being adapted to be received through the apertures, each locking mechanism having a projection,
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of the upper wall and bottom wall of the socket engages the upper surface and lower surface of the nose whereby the first channel of the adaptor is in opposed relation to the third channel of the tooth, the locking mechanism is then positioned through the aperture into the enclosure, whereupon the application of force, the projection of the locking mechanism moves inwardly with respect to the locking mechanism as it enters the enclosure, the locking mechanism moves towards its normal condition when the projection aligns with the first channel wherein the assembly is in its locked condition.
- Preferably the portion is in the form of a tab adjacent the opening of the socket.
- The present invention further provides a tooth for use on an adaptor of earthmoving machinery, the tooth being adapted to be received over a nose of the adaptor, and releasably secured thereto, the tooth comprising:
-
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- each sidewall incorporates a channel extending between the upper wall and bottom wall,
- the upper wall having two apertures therethrough, each aperture aligning with the respective channel on an inner surface of each sidewall;
- the bottom wall having two apertures in alignment with those in the upper wall;
- the inner surface of each sidewall having an inwardly projecting portion,
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of the upper wall and bottom wall of the socket engage the nose whereby the adaptor and each third channel of the tooth co-operate to provide an enclosure, a locking mechanism is then positioned within the enclosure such that a projection of the locking mechanism is received in a recess defined by the adaptor, locking the tooth relative to the adaptor.
- a socket being defined by an opening, a rear surface, an upper wall, a bottom wall and two sidewalls,
- Preferably the portion is in the form of a tab adjacent the opening of the socket.
- The present invention further yet provides a tooth and adaptor assembly for use on earthmoving machinery, the assembly comprising:
-
- an adaptor adapted to be secured to a bucket or like component on the earthmoving machinery, the adaptor comprising a nose at one end having an upper surface, a lower surface and two sidewalls, at least one sidewall having a first channel extending longitudinally, and a second channel extending between the upper surface and the lower surface such that it bisects the first channel;
- a tooth adapted to be received over the nose of the adaptor, and releasably secured thereto, the tooth comprising
- a socket being defined by an upper wall, a bottom wall and two sidewalls,
- at least one sidewall incorporates a third channel extending between the upper wall and bottom wall and being at an angle complementary to the second channel of the nose, such that when assembled, the second channel and third channel co-operate to define an enclosure, the at least one sidewall also has an inwardly projecting protrusion adapted to be slidingly received in the first channel of the adaptor nose during assembly,
- the upper wall having at least one aperture therethrough, aligned with the third channel;
- a socket being defined by an upper wall, a bottom wall and two sidewalls,
- at least one locking mechanism for locking the tooth to the adaptor, the locking mechanism being adapted to be received through the aperture, the at least one locking mechanism having at least one projection,
wherein during assembly the tooth is slidingly positioned over the nose of the adaptor such that the inner surface of both the upper wall and bottom wall of the socket engages the upper surface and lower surface of the nose whereby the second channel of the adaptor is in opposed relation to the third channel, the locking mechanism can then be inserted into the enclosure through the aperture, whereby the projection of the locking mechanism moves inwardly with respect to the locking mechanism as it enters the enclosure, the locking mechanism moving towards its normal extended position when the projection aligns with the first channel wherein the assembly is locked together.
- The invention will be better understood by reference to the following description of two embodiments of the invention, as shown in the accompanying drawings in which:
-
FIG. 1 is a rear perspective view of a tooth according to a first embodiment of the invention; -
FIG. 2 is a cross sectional plan view ofFIG. 1 ; -
FIG. 3 is a cross sectional side view ofFIG. 1 -
FIG. 4 is a cross sectional perspective view ofFIG. 1 from a rear position; -
FIG. 5 is a cross sectional perspective view ofFIG. 1 from a forward position; -
FIG. 6 is a view similar toFIG. 5 from an elevated position; -
FIG. 7 is a view similar toFIG. 4 from a lower position; -
FIG. 8 is an exploded view of section A as shown inFIG. 7 ; -
FIG. 9 is a front perspective view of an adaptor according to an embodiment of the invention; -
FIG. 10 is a view similar toFIG. 9 , but only showing the nose section; -
FIG. 11 is a cross sectional plan view ofFIG. 10 ; -
FIG. 12 is a front view ofFIG. 9 ; -
FIG. 13 is a side view ofFIG. 9 ; -
FIG. 14 is a bottom view ofFIG. 9 ; -
FIG. 15 is a cross sectional view of a locking mechanism according to an embodiment of the invention; -
FIG. 16 is a cross sectional view of the tooth received on the nose of the adaptor, with the locking mechanism partially inserted in an enclosure; -
FIG. 17 is a view similar toFIG. 16 with the locking mechanism positioned further in the enclosure; -
FIG. 18 is a view similar toFIG. 16 with the assembly in a locked position. -
FIG. 19 is a view similar toFIG. 16 with the locking mechanism passing through a bottom aperture; -
FIG. 20 is a rear perspective view of a tooth according to a second embodiment of the invention; -
FIG. 21 is a cross sectional plan view ofFIG. 20 ; -
FIG. 22 is a cross sectional view of the tooth according to the second embodiment received on the nose of the adaptor, with the locking mechanism partially inserted in an enclosure; and -
FIG. 23 is a view similar toFIG. 22 with the assembly in a locked position. - Referring to the
FIGS. 1 to 19 , the invention according to a first embodiment of the invention comprises a tooth and adaptor assembly 11 for use on earthmoving or similar machinery. The assembly 11 comprises anadaptor 21, having afirst end 23 adapted to receive atooth 41, with alocking mechanism 71 being received therein to lock thetooth 41 relative to theadaptor 21. - Shown in
FIGS. 9 to 14 is theadaptor 21. Theadaptor 21 has asecond end 25 adapted to be secured to a bucket or like component on the earthmoving machinery (not shown). The configuration of thesecond end 25 varies according to its particular application. - The
adaptor 21 comprises anose 27 at thefirst end 23. Thenose 27 diverges outwardly in a rearward direction from afront surface 29. Thenose 27 comprises anupper surface 31, alower surface 33, both having a curved contour, and twosidewalls 35. - Each
sidewall 35 incorporates afirst channel 37 extending longitudinally along thenose 27 rearward from thefront surface 29, and asecond channel 39 extending between theupper surface 31 of thenose 27 to thelower surface 33 such that it bisects thefirst channel 37 and is substantially perpendicular thereto. - The portion of the
second channel 39 above thefirst channel 37 comprises awider portion 41 than the lower part of thesecond channel 39, and aramp 40 adjacent thefirst channel 37, as best shown inFIGS. 10 and 13 , for reasons which are explained below. - Shown in
FIGS. 1 to 8 , is thetooth 41. Thetooth 41 is adapted to be received over thenose 27 of theadaptor 21, to be releasably secured thereto. Thetooth 41 comprises asocket 43 being defined by anopening 45, arear surface 47, anupper wall 49, abottom wall 51 and twosidewalls 53. The shape of thesocket 43 complements the surface of thenose 27 to provide a snug fit when thetooth 41 is received on theadaptor 21. - Each
sidewall 53 incorporates athird channel 55. Thethird channel 55 is substantially parallel to theopening 45 such that when assembled, thesecond channel 39 of thenose 27 andthird channel 55 co-operate to define anenclosure 91. - The
upper wall 49 has twoapertures 57 a therethrough. Eachaperture 57 a is in alignment with the respectivethird channel 55 on eachsidewall 53. - The
bottom wall 51 also has twoapertures 57 b. Theseapertures 57 b are the same size and in alignment with the twoapertures 57 a of theupper wall 49. - Each
sidewall 53 also provides an inwardly projectingelongate protrusion 59 adapted to be slidingly received in thefirst channel 37 of theadaptor nose 27 during assembly of thetooth 41 andadaptor 21. Theelongate protrusion 59 extends between thethird channel 55 and therear surface 47 of thesocket 43, and is substantially perpendicular to thethird channel 55. - The inner surface of each
sidewall 53 also provides atab 61 protruding into theopening 45, and which is in longitudinal alignment with theelongate protrusion 59. Theelongate protrusion 59 andtab 61 are separated by thethird channel 55, with thetab 61 being offset from thethird channel 55, as best shown inFIGS. 7 and 8 . - Referring to
FIG. 15 , thelocking mechanism 71 comprises two pins 73 (only one shown), each being adapted to be received throughaperture 57 a in theupper wall 49 of thetooth 41, and into theenclosure 91 during assembly. - Each
pin 73 comprises ametal retaining clip 75 providing aprojection 77. The retainingclip 75 is bonded to a resiliently flexibly material 79, such as polyurethane. - The resiliently
flexible material 79 is received in arecess 81 of ametal housing 83. - When the
pin 73 is assembled, theprojection 77 extends beyond the boundary of thehousing 83 when thepin 73 is in its normal condition. - In use, the
adaptor 21 is secured to a component of the earthmoving equipment, such as a bucket, not shown. Theadaptor 21 is typically welded to the bucket. Theadaptor 21 is protected from substantial wear by thetooth 41, which is replaced as the tooth becomes worn or damage. As this is quite regular it is important to have atooth 41 which may easily and quickly be removed from theadaptor 21. - Referring to
FIGS. 16 to 19 , when assembling thetooth 41 to theadaptor 21, thesocket 43 of thetooth 41 receives thenose 27 of theadaptor 21 such that thetab 61 andelongate protrusion 59 align with, and are slidingly received in thefirst channel 37 of thenose 27. Thetooth 41 continues to slide along thenose 27 until the internal surfaces of theupper wall 49 andbottom wall 51 of thesocket 43 engage theupper surface 31 andlower surface 33 of thenose 27 respectively, at which point thethird channel 55 aligns with thesecond channel 39 to provide anenclosure 91. - Due to the offset of the
tab 61 from thethird channel 55, when thetooth 41 is received on theadaptor 21, a portion of thefirst channel 37 provides arecess 93 between thesecond channel 39 and thetab 61, for reasons which are detailed below. - In order to lock the
tooth 41 to theadaptor 21, eachpin 73 is placed in theenclosure 91 to be releasably retained therein. Eachpin 73 is inserted through eachaperture 57 a and passes through thewider portion 41 of thesecond channel 39 until theprojection 77 of thepin 73 engages theramp 40, as shown inFIG. 17 . - In order to move past the ramp 40 a relatively small force is applied to the
pin 73. Theramp 40 forces theprojection 77 inwardly with respect to thehousing 83, allowing thepin 73 to move further along theenclosure 91. - As the
projection 77 passes over the ramp, 40, theprojection 77 aligns with therecess 93 and is urged outwardly by the resilient nature of theflexible material 79 until theprojection 77 is received in therecess 93, as best shown inFIG. 18 . In this position therear surface 85 of eachpin 73 engages a wall 38 a of thesecond channel 39, whilstadjacent portions 78 of theprojection 77 engage anopposed wall 38 b to wall 38 a, maintaining thetooth 41 in good fitment relative to theadaptor 21. - When each
pin 73 is in position, the bottom and top of thepin 73 do not protrude beyond the upper and lower peripheries of thetooth 41, as best shown inFIG. 18 . - When disassembling the tooth from the adaptor, each
pin 73 must first be removed. In order to do so, a tool (not shown) is inserted into theapertures 57 a in theupper wall 49. A relatively small force is then applied to thepin 73 to force theprojection 77 inwardly to allow the pin to pass throughapertures 57 b in thebottom wall 51 of thetooth 41. -
FIGS. 20 to 23 show a tooth 141 according to a second embodiment. Like numbering is used on similar components as was used for describing the tooth according to the first embodiment. In this embodiment, the configuration of thelocking mechanism 71 andadaptor 21 remain the same as was described in the first embodiment. - Similarly to the first embodiment, the tooth 141 of the second embodiment has two
apertures 57 through theupper wall 49. Eachaperture 57 is in alignment with the respectivethird channel 55 on eachsidewall 53. - The
bottom wall 51 also has twoapertures 58. Theseapertures 58 are smaller in size than the twoapertures 57 of theupper wall 49, and are of suitable size such that thelocking mechanism 71 is prevented from passing therethrough. - When each
pin 73 is in position, the bottom of thepin 73 engages or is adjacent thebottom wall 51 of thetooth 41, whilst the top of thepin 73 is adjacent or substantially flush with the outer surface of theupper wall 49 of thetooth 41, as best shown inFIG. 23 . - When disassembling the tooth 141 from the
adaptor 21 eachpin 73 must first be removed. In order to do so, a tool (not shown) is inserted into theapertures 58 in thebottom wall 51. A relatively small force is then applied to thepin 73 to force theprojection 77 inwardly as it passes over theramp 40. Once eachpin 73 is removed, the tooth 141 may easily be removed from theadaptor 21. - The configuration of the present invention protect the
pin 73 from the environment and ensures thepins 73 are not knocked out or damaged during service. Due to this configuration, the fit of thepins 73 relative to the tooth and adaptor need not be as robust as if thepins 73 were exposed. Hence the forces required to insert and remove the pins are relatively small when compared to those of other available systems. - Throughout the specification, unless the context requires otherwise, the word “comprise” or variations such as “comprises” or “comprising”, will be understood to imply the inclusion of a stated integer or group of integers but not the exclusion of any other integer or group of integers.
Claims (43)
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AU2004904285 | 2004-08-02 | ||
| AU2004904285A AU2004904285A0 (en) | 2004-08-02 | Tooth and Adaptor Assembly | |
| PCT/AU2005/001154 WO2006012689A1 (en) | 2004-08-02 | 2005-08-02 | Tooth and adaptor assembly |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US20080201997A1 true US20080201997A1 (en) | 2008-08-28 |
Family
ID=35786818
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US11/572,975 Abandoned US20080201997A1 (en) | 2004-08-02 | 2005-08-02 | Tooth and Adaptor Assembly |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20080201997A1 (en) |
| EP (1) | EP1778924A4 (en) |
| CN (2) | CN101006230A (en) |
| AU (2) | AU2005269266A1 (en) |
| CA (1) | CA2576218A1 (en) |
| WO (1) | WO2006012689A1 (en) |
| ZA (1) | ZA200701815B (en) |
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| US20090304442A1 (en) * | 2005-12-23 | 2009-12-10 | Sandvik Intellectual Property Ab | Connection assembly |
| USD624943S1 (en) * | 2009-04-03 | 2010-10-05 | Graham John Gibbon | Ground engaging tool |
| JP2013501176A (en) * | 2009-08-05 | 2013-01-10 | エイチ アンド エル トゥース カンパニー | Teeth assembly for releasably coupling a tooth to an adapter and associated method |
| US8943717B2 (en) | 2011-10-08 | 2015-02-03 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US8943716B2 (en) | 2011-10-10 | 2015-02-03 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| USD728635S1 (en) * | 2013-08-01 | 2015-05-05 | Caterpillar Inc. | Coupler for a ground engaging machine implement |
| USD728636S1 (en) * | 2013-08-01 | 2015-05-05 | Caterpillar Inc. | Coupler and tip for a ground engaging machine implement |
| USD728637S1 (en) * | 2013-08-01 | 2015-05-05 | Caterpillar Inc. | Tip for a ground engaging machine implement |
| US9057177B2 (en) | 2011-10-08 | 2015-06-16 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9062436B2 (en) | 2011-10-07 | 2015-06-23 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9359744B2 (en) | 2009-08-05 | 2016-06-07 | H&L Tooth Company | Multipiece wear assembly |
| WO2017095625A1 (en) * | 2015-12-01 | 2017-06-08 | Srj, Inc. | Flex pin |
| US10400427B2 (en) | 2017-05-31 | 2019-09-03 | Srj, Inc. | Flex pin |
| US10508418B2 (en) | 2016-05-13 | 2019-12-17 | Hensley Industries, Inc. | Stabilizing features in a wear member assembly |
| IT201900023211A1 (en) * | 2019-12-06 | 2021-06-06 | Esti S R L | COMPLEX CONSISTING OF A TIP AND A DRILL HOLDER FOR EARTH-MOVING MACHINES |
| US11598074B2 (en) | 2019-09-13 | 2023-03-07 | Komatsu Ltd. | Tooth mounting structure for bucket and tooth for bucket |
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| CN101768992B (en) * | 2008-12-30 | 2011-12-21 | 宁波浙东精密铸造有限公司 | Excavating tooth component, tooth holder and bucket teeth |
| ES2344049B1 (en) * | 2009-02-13 | 2011-06-09 | Avicola De Tarragona, S.A. (Avitasa) | DEODORIZED COMPOSITION OF BUTIRIC ACID AND / OR ITS SALTS. |
| US7980011B2 (en) * | 2009-03-23 | 2011-07-19 | Black Cat Blades Ltd. | Fully stabilized excavator tooth attachment |
| WO2012006664A1 (en) * | 2010-07-13 | 2012-01-19 | Bradken Resources Pty Limited | Excavation tooth assembly |
| US8887826B2 (en) * | 2011-09-30 | 2014-11-18 | Caterpillar Inc. | Shank protector for a ripper shank assembly |
| CN102619253B (en) * | 2012-04-11 | 2015-05-06 | 宁波市鄞州精铸五金厂 | Bucket tooth of excavator |
| AU2014268636B2 (en) * | 2013-05-20 | 2017-11-30 | CR Mining Equipment (USA) LLC | Hydraulic locking mechanism for securing teeth and tooth carrying adapters to excavating buckets of excavating equipment |
| NL2015672B1 (en) * | 2015-10-28 | 2017-05-29 | Ihc Holland Ie Bv | Tooth retaining and locking system. |
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| US20090304442A1 (en) * | 2005-12-23 | 2009-12-10 | Sandvik Intellectual Property Ab | Connection assembly |
| USD624943S1 (en) * | 2009-04-03 | 2010-10-05 | Graham John Gibbon | Ground engaging tool |
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| US9359744B2 (en) | 2009-08-05 | 2016-06-07 | H&L Tooth Company | Multipiece wear assembly |
| US9062436B2 (en) | 2011-10-07 | 2015-06-23 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9428886B2 (en) | 2011-10-07 | 2016-08-30 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US8943717B2 (en) | 2011-10-08 | 2015-02-03 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9624651B2 (en) | 2011-10-08 | 2017-04-18 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9057177B2 (en) | 2011-10-08 | 2015-06-16 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US10041230B2 (en) | 2011-10-08 | 2018-08-07 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US9528248B2 (en) | 2011-10-08 | 2016-12-27 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
| US10060100B2 (en) | 2011-10-10 | 2018-08-28 | Caterpillar Inc. | Implement tooth assembly with tip and adapter |
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Also Published As
| Publication number | Publication date |
|---|---|
| AU2005269266A1 (en) | 2006-02-09 |
| EP1778924A4 (en) | 2011-07-06 |
| AU2011100261A4 (en) | 2011-04-14 |
| CN101006230A (en) | 2007-07-25 |
| WO2006012689A1 (en) | 2006-02-09 |
| ZA200701815B (en) | 2008-08-27 |
| EP1778924A1 (en) | 2007-05-02 |
| CN101892684A (en) | 2010-11-24 |
| CA2576218A1 (en) | 2006-02-09 |
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