US20100147179A1 - Gear switch and trolley stop for a conveyor assembly - Google Patents
Gear switch and trolley stop for a conveyor assembly Download PDFInfo
- Publication number
- US20100147179A1 US20100147179A1 US12/711,778 US71177810A US2010147179A1 US 20100147179 A1 US20100147179 A1 US 20100147179A1 US 71177810 A US71177810 A US 71177810A US 2010147179 A1 US2010147179 A1 US 2010147179A1
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- US
- United States
- Prior art keywords
- gear
- assembly
- rail section
- gate
- stop
- 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
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B61—RAILWAYS
- B61K—AUXILIARY EQUIPMENT SPECIALLY ADAPTED FOR RAILWAYS, NOT OTHERWISE PROVIDED FOR
- B61K7/00—Railway stops fixed to permanent way; Track brakes or retarding apparatus fixed to permanent way; Sand tracks or the like
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B61—RAILWAYS
- B61B—RAILWAY SYSTEMS; EQUIPMENT THEREFOR NOT OTHERWISE PROVIDED FOR
- B61B10/00—Power and free systems
- B61B10/001—Arrangements for routing vehicles
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01B—PERMANENT WAY; PERMANENT-WAY TOOLS; MACHINES FOR MAKING RAILWAYS OF ALL KINDS
- E01B25/00—Tracks for special kinds of railways
- E01B25/22—Tracks for railways with the vehicle suspended from rigid supporting rails
-
- E—FIXED CONSTRUCTIONS
- E01—CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
- E01B—PERMANENT WAY; PERMANENT-WAY TOOLS; MACHINES FOR MAKING RAILWAYS OF ALL KINDS
- E01B25/00—Tracks for special kinds of railways
- E01B25/22—Tracks for railways with the vehicle suspended from rigid supporting rails
- E01B25/26—Switches; Crossings
Definitions
- the present invention relates to switch mechanisms for conveyors, and in particular gear switches and trolley stops for use with conveyor assemblies.
- the systems are used for transporting various types of merchandise, including hanging meat, garments and other products, through manufacturing, warehousing and distribution facilities.
- One typical overhead conveyer system pushes heavy, metal trolleys along a track system.
- the trolleys carry loads of products.
- the overhead rail systems are designed and installed so that goods may be suspended from the trolleys and then moved in different directions along the rail system to transfer the goods from a first location to a second location.
- Some such systems employ a system of two, parallel tracks or rails; an upper power rail and a lower free rail.
- the upper rail generally includes a drive chain that engages a component of the trolley, while the trolley's wheels are designed to ride within the free rail.
- the load supported by the trolley is most often suspended below the level of the free rail.
- overhead rail systems use a rail switching mechanism at points in the track or rail where rails traveling in different directions intersect.
- the switching mechanism operates to control and direct the movement of the trolleys along various routes of the track system, such as to introduce a turn onto a different rail.
- One form of switching mechanism is a gear switch.
- Current gear switches are typically formed of an assembly including two gear assemblies, each of which are operable to move gates into and out of engagement with a rail section connected thereto.
- the two gear assemblies in current switching mechanisms are arranged such that they are horizontally spaced apart in a plane which is perpendicular to the rail and at a height which is approximately parallel to each other and the rail. More specifically, the pivot axis of each of the gear assemblies is level and positioned in the same plane.
- a power chain is run through a bridge which is often used to connect first and second rail sections forming a portion of the rail switch assembly.
- projections often referred to as pusher dogs, are suspended from the drive chain.
- a pusher dog assembly may be provided for the transportation of products on trolley in a conveyer system.
- a pusher dog is, generally, a projection that engages and pushes loads along a track or conveyor system.
- a power chain or drive chain pusher dog may be engaged to the chain and may be designed to directly engage trolley and push them along the series of interconnected rails. Movement of the trolley is thus accomplished by the mechanized action of the pusher dog on a protruding trolley part. Therefore, the drive chain commonly includes a pusher dog that extends downward from the drive chain and engages a part of the trolley that protrudes above the level of the free track or rail.
- a trolley stop is used to prevent overrun or interference of a trolley with a rail that is not currently being used.
- a current trolley stop used with such switch mechanisms is formed by a piece or member that is connected on the side of the rail section by a pivot member. At the lower end of the trolley stop is a weight, which causes rotation about the pivot member.
- the gate member must be precisely closed, coming over the top of the mechanism, or the gate may become wedged in place in the gate receptor, inhibiting the switching of the rails.
- a switch for a conveyor assembly has a rail section forming a portion of the conveyor assembly.
- the switch also includes a first gear assembly pivotable about a first pivot axis and carrying a first gate, as well as a second gear assembly pivotable about a second pivot axis and carrying a second gate.
- the second pivot member is positioned below a plane extending perpendicular to the rail section from the first pivot axis.
- a trolley stop for a conveyor assembly is also provided.
- the trolley stop comprises a body having a first side portion and a second side portion arranged to be disposed on first and second sides of a rail section.
- a pivot member extends through the body and at least a portion of the rail section.
- a stop member may be carried by an upper portion of the body.
- a weight may also be carried by the body, and is arranged to position the stop member for engagement with a trolley.
- a conveyor assembly is further provided.
- the conveyor assembly includes a switch assembly for use in directing items along various paths in a rail system, wherein said switch assembly has a first rail section, a first gear assembly pivotable about a first pivot axis and carrying a first gate, as well as a second gear assembly pivotable about a second pivot axis and carrying a second gate.
- the second pivot member is positioned below a plane extending perpendicular to the rail section from the first pivot axis.
- the conveyor assembly also includes a trolley stop positioned on a second rail section having a body with a first side portion and a second side portion arranged to be disposed on first and second sides of the second rail section, a pivot member extending through the body and at least a portion of the second rail section, a stop member carried by an upper portion of the body, and a weight carried by the body arranged to position the stop member for engagement with a trolley when the first gate is engaged with the first rail section.
- the second pivot axis provides a lower travel path and approximate side-action of the gate which reduces if not eliminates interference with the trolley, pusher dogs and/or drive chain.
- the centralized positioning of the rail section in relation to the weighted pivotal movement of the trolley stop assembly permits the trolley stop assembly to rotate smoothly without binding.
- FIG. 1 is a perspective view of a switch assembly according to an exemplary embodiment of the present invention with the switch assembly in a first extreme position and showing a trolley stop on the curved rail section wherein the trolley stop is not positioned for stopping a trolley.
- FIG. 2 is a perspective view of the switch assembly shown in FIG. 1 showing the switch assembly in a second extreme position.
- FIG. 3 is an elevation view of the switch assembly shown in FIG. 1 , taken from line 3 - 3 of FIG. 1 .
- FIG. 4 is an elevation view of the switch assembly shown in FIG. 1 , taken from line 4 - 4 of FIG. 1 .
- FIG. 5 is a plan view of the switch assembly shown in FIG. 1 , taken from line 5 - 5 of FIG. 1 .
- FIG. 6 illustrates an exemplary conveyor assembly for use with the switch assembly of FIG. 1 , showing a drive assembly, pusher dog, trolley and rail.
- FIG. 7 is a perspective view of a portion of the switch assembly shown in FIG. 1 , showing a rail section, mounting portion, and gear assemblies.
- FIG. 8 is a perspective view of a portion of the switch assembly shown in FIG. 1 , showing the assembly of FIG. 7 absent the rail section.
- FIG. 9 is an elevation view of a portion of the switch assembly shown in FIG. 1 , taken along the line 9 - 9 of FIG. 7 , showing the switch assembly in a first extreme position.
- FIG. 10 is an elevation view of a portion of the switch assembly shown in FIG. 1 , showing the switch assembly in a second extreme position from that shown in FIG. 9 .
- FIG. 11 is a perspective view of a portion of the switch assembly shown in FIG. 1 , showing a rail section, mounting portion, and pivot members.
- FIG. 12 is a perspective view of a portion of the switch assembly shown in FIG. 1 , showing only the rail section of FIG. 11 .
- FIG. 13 is an elevation view of a transfer plate for use with the switching assembly shown in FIG. 1 .
- FIG. 14 is a perspective view of a gear assembly of FIG. 8 for use with the switching assembly shown in FIG. 1 .
- FIG. 15 is a perspective view of an additional gear assembly of FIG. 8 for use with the switching assembly shown in FIG. 1 .
- FIG. 16 is a top plan view of a curved rail section and trolley stop for use with the switch assembly shown in FIG. 1 .
- FIG. 17 is an elevation view of a curved rail section and trolley stop for use with the switch assembly shown in FIG. 1 , taken along line 17 - 17 of FIG. 16 .
- FIG. 18 is an elevation view of a curved rail section and trolley stop for use with the switch assembly shown in FIG. 1 , taken along line 18 - 18 of FIG. 16 .
- FIG. 19 is an elevation view of a curved rail section shown in FIG. 18 for use with the switch assembly shown in FIG. 1 , absent the trolley stop.
- FIG. 20 is a perspective view of a trolley stop shown in FIG. 18 for use with the switch assembly of FIG. 1 .
- FIG. 21 is a cut away perspective view of the trolley stop shown in FIG. 20 for use with the switch assembly of FIG. 1 , taken along line 21 - 21 of FIG. 20 .
- FIG. 22 is a perspective view of a side plate for use with the trolley stop shown in FIG. 20 , taken along line 22 - 22 of FIG. 21 .
- rail switching mechanisms include a switch mounting which may be suspended from a ceiling or attached to a wall, beam, or other support, and which is used to support the rail sections used in the switching mechanism.
- the rail sections which are used may be either straight rail sections or curved rail sections.
- the rail sections may be bolted to the switch mounting, or they may be connected by welding them to the switch mounting.
- the rail sections used in the switching mechanism also contain one or more gate receptors for receiving the gates which are attached to the rail section.
- the gate receptors are formed by the absence of a portion of the rail so that a gate can close and be seated in the gate receptor.
- the opening and closing of the gates controls the movement of trolleys along intersecting rails in the rail system.
- An exemplary rail switching mechanism is shown in U.S. patent application Ser. No. 11/836,268 filed Aug. 9, 2007, which is hereby incorporated by reference in its entirety herein.
- the switch assembly 10 is a gear switch assembly in that the mechanism by which tracks or rails are changed is facilitated, at least in part, by a gear or combination of gears or gear assemblies.
- the switch assembly 10 includes or is formed by at least a portion of a first rail 12 , which as illustrated may be a straight rail.
- the first rail or first rail section 12 carries or forms a portion of the switch assembly 10 , and may include a trolley stop 14 on a portion of the switch assembly.
- the first rail section 12 is attached to or operably associated with a second rail or second rail section 16 by a bridge 18 .
- the second rail 16 may also carry a trolley stop 20 .
- the second rail section 16 in the illustrated embodiment is a curved rail. While straight and curved rails are specifically illustrated, alternatives would not depart from the overall scope of the present invention.
- the foregoing assembly 10 may be attached to a larger conveyor assembly including a plurality of rail sections, such as two or more rail sections. Additionally, the switch assembly 10 may be used in association with a drive chain 22 or track having one or more pusher dogs 24 thereon.
- the rail 12 or 16 may also carry a trolley 26 adapted to carry or transport product (see FIG. 6 ).
- the gear switch assembly 10 generally includes a rail section 12 and/or 16 , as well as a first gear assembly 28 and a second gear assembly 30 carried by a mounting member 32 carried by the rail section 12 .
- the switch assembly 10 may thus include at least one rail section 12 or a portion of a rail section (see FIGS. 7-15 ).
- the first rail section 12 is a straight rail section.
- the rail section 12 has first and second ends 34 , 36 for engagement with additional rail sections, and a gate receptor 38 formed by the absence of a portion of the rail (see FIGS. 11-12 ) so that a gate 40 or 42 can close and be seated in the gate receptor 38 (see FIG. 7 ).
- the gate receptor 38 is positioned between the first and second ends 34 , 36 .
- the rail section 12 also has a first side portion 44 and a second side portion 46 .
- the first side portion 44 carries a mounting member 32 or portion which has first and second gear assemblies 28 , 30 (see FIGS. 7-8 ).
- the mounting member 32 is formed by a first transfer plate 48 and a second transfer plate 50 that may be positioned on the first side portion of the rail section.
- the first transfer plate 48 and second transfer plate 50 may be spaced a distance apart and may be positioned at a location below the gate receptor 38 .
- the plates 48 , 50 may be attached by any suitable means, including, but not limited to, welding, tongue and groove, friction fit, and fasteners or combinations thereof. In the illustrated embodiment, as best shown in FIG.
- each of the first and second plates 48 , 50 is formed of a first end 52 for positioning on or near the rail section 12 , and a second end 54 arranged to extend a distance away from the rail section.
- the plates 48 , 50 include a first extended portion 56 and a second angled portion or downwardly turned portion 58 .
- the first extended portion 56 includes a first aperture or receptor 60 for a first pivot member 62 .
- the second downwardly turned portion 58 includes a second aperture or receptor 64 for receipt of a second pivot member 66 .
- the second aperture 64 is positioned offset from the first aperture 60 .
- the second aperture 64 is positioned such that its location is disposed below the plane 68 formed perpendicular to the axis of the first aperture/pivot member 70 , and more preferably at or below the plane 72 extending perpendicular from the lower edge 74 of the rail 12 (see FIGS. 9-10 ).
- the first and second plates 48 , 50 carry the first pivotable gear assembly 28 .
- the first gear assembly 28 as shown in FIGS. 14-15 may include pivot member 62 or pin which is rotatably or pivotably received by the first apertures 60 in the first and second plates 48 , 50 (see also FIGS. 7-11 ).
- the pivot member 62 may be secured in a fixed position in the first and second plates 48 , 50 .
- the first pivot member 62 forms first pivot axis 70 .
- the first pivot member 62 may be a bolt or other rod or pin and may include a nut on an end thereof to retain same in place on the switch assembly 10 .
- the first gear assembly 28 also may include a housing 76 which is carried by the first pivot member 62 ( FIG. 14 ).
- the housing 76 of the exemplary embodiment is formed of a bushing 78 which may be rotatable about the pivot member 62 or may be stationary thereon.
- the bushing 78 may carry a front pivot spacer 80 .
- the front pivot spacer 80 is attached to a portion of the bushing 78 for movement in connection with the pivotal movement of the assembly.
- the front pivot spacer 80 carries a first gate member 40 .
- the gate member 40 is shaped such that it mates with the gate receptor 38 of the rail section 12 and provides a travel path for a trolley 26 across its top surface 82 . As indicated, in the illustrated embodiment, the gate member 40 is a straight gate member.
- first gear 84 which may be a gear wheel having a plurality of gear teeth 86 .
- first gear 84 is a small gear having a number of teeth 86 sufficient to engage an adjacent gear 88 .
- the first gear 84 is therefore pivotable in connection with the housing 76 .
- the first gear 84 may be attached to the housing 76 , integral therewith or separate there from.
- the pivot member, bushing, pivot spacer, gear and gate portion may be formed by any suitable means, and maybe a single integral component, or more than one component or combinations thereof attached by suitable attachment mechanisms, such as, but not limited to welding, adhesive, fasteners, tongue and groove, and the like.
- the second pivotal gear assembly 30 may be carried by the first and second transfer plates 48 , 50 .
- the second gear assembly 30 includes second pivot member 66 or pin which is rotatably or pivotably received by the second apertures 64 in the first and second plates 48 , 50 (see FIGS. 7-11 ).
- the pivot member 66 may be provided in a fixed position on the plates 48 , 50 .
- the second pivot member 66 forms a second pivot axis 90 .
- the second pivot member 66 may be a bolt or other rod or pin and may include a nut on an end thereof to retain same in place on the switch assembly 10 .
- the second gear assembly 30 also may include a housing 92 which is carried by the second pivot member 66 .
- the housing 92 of the exemplary embodiment is formed of a bushing 94 which may be rotatable about the pivot member 66 or may be stationary thereon.
- the bushing 94 may carry a gate lever 96 , such as, but not limited to, a curved or shaped gate lever 96 .
- the gate lever 96 is attached to a portion of the bushing 94 for movement in connection with the pivotal movement of the assembly.
- the gate lever 96 carries second gate member 42 , which in the illustrated embodiment is a curved gate member. As can be seen in FIG. 15 , the gate lever 96 is attached to a side portion of the gate member 42 .
- the gate lever 96 does not interfere with a trolley 26 which may travel along the rail 12 , 16 or gate 42 .
- the gate lever 96 in the exemplary illustrated embodiment is shaped such that it is adapted to place the gate 42 in position and provide clearance for the first gear assembly 28 .
- the gate lever 96 has a length and degree of curvature that extends over the first gear assembly 28 during both movement and final positioning.
- the gate member 42 may be shaped such that it mates with the gate receptor 38 of the first rail section 12 and a gate receptor 98 of the second rail section 16 to provide a travel path for a trolley 26 across its top surface or edge 100 .
- trolley stop 14 is carried by the second gear assembly 30 .
- trolley stop 14 is carried by the gate lever 96 , and may be formed of an attachment portion 102 and a stop portion 104 or arm which is arranged to engage a trolley 26 when the second gate portion 42 is in position.
- the pivot member also carries a second gear 88 , which may be a gear wheel having a plurality of gear teeth 106 .
- the second gear 88 is a large gear, or a gear which is larger than the first gear 86 , and having a number of teeth 106 sufficient to engage an adjacent gear, namely the first gear 86 .
- the second gear 88 is provided in association with housing 92 and may be pivotable in connection therewith.
- the second gear 88 may be attached to the housing 92 , integral with or separate there from.
- the pivot member, bushing, gate lever, gate portion, gear and trolley stop may be formed by any suitable means, and maybe a single integral component, or more than one component or combination of component attached by suitable attachment mechanisms, such as, but not limited to welding, adhesive, fasteners, tongue and groove, and the like.
- the second pivot or gear assembly 30 is positioned such that its pivot axis, the second pivot axis 90 , is provided in a location below the plane 68 extending from the first pivot or gear assembly axis 70 . As can be seen, this plane 68 extends perpendicular to the first rail section 12 . Furthermore, the second gear assembly 30 or pivot assembly has a pivot axis 90 which may extend or be provided below the plane 72 extending perpendicular to the rail section 12 from the bottom edge 74 of the rail section.
- any one or more of the components of the conveyor assembly, switch assembly or rails described herein may be formed of metal, such as stainless or galvanized steel, aluminum, and the like, as well as plastics, composites, and combinations of any of the foregoing.
- the components may be integrally formed, or formed separately and connected together, such as by welding, adhesive, tongue and groove, fasteners, and the like.
- the rail sections, gates, and other components of the assemblies described herein may be formed by any suitable means, and may include CNC cutting, drilling, or otherwise removing of a portion from a solid piece of material. This may include, but is not limited to, use of a laser, a plasma cutting device, or a water jet. Alternative methods of forming the rail and components of the gate are contemplated, including, but not limited to die cut and mold.
- the switch assembly 10 may be formed by connecting the first and second transfer plates 48 , 50 to the first rail 12 , assembling the first and second gear assemblies 28 , 30 on the transfer plates 48 , 50 , such as by inserting the pivot members 62 , 66 through the apertures 60 , 64 in the transfer plates and into the housings 76 , 92 and/or gears 84 , 88 of the gear assemblies.
- the gear assemblies 28 , 30 may be formed by attaching the gate member 40 or 42 to the arm or lever 80 , 96 and attaching the arm or lever to the housing 76 , 92 .
- the first rail section 12 may be attached to the second rail section 16 by, for example, connecting the bridge 18 with the first rail section 12 and the second rail section 16 . While a specific arrangement and order of assembly is described, the forgoing is provided by way of example only, and any suitable arrangement or order may be acceptable for purposes of the present invention.
- the rail sections 12 and 16 of the switch assembly 10 may be formed into a larger conveyor assembly by attachment of one or more additional rail sections to the ends of first and second rail sections.
- the first gear assembly 28 and second gear assembly 30 cooperate to move the respective first and second gate members 40 , 42 between the respective extremes shown in FIGS. 1 and 2 and FIGS. 9 and 10 .
- the first gate member 40 may be positioned such that it is in mating relation with the first rail section 12 .
- the first gear assembly 28 may pivot about the first pivot axis 70 .
- first gear 84 and housing 76 which carries the first gate member 40 , pivotal rotation causes the first gate member 40 to be lifted from the gate receptor 38 and travel in a radial pattern about the axis 70 of the pivot member, until it arrives at a final resting position.
- the gear teeth 86 of the first gear 84 engage the gear teeth 106 of the second gear 88 , causing the pivotal rotational movement of the second gear assembly 30 about the second pivot axis 90 in relation to the first assembly.
- the second gear 88 pivots or rotates in a direction opposite the first gear 84 .
- Rotation of the second gear 88 about the pivot axis 90 causes the rotation of the associated housing 92 , gate lever 96 , and second gate member 42 in connection therewith.
- Rotation moves the second gate member 42 in an approximate radial arc about the second pivot axis 90 to a rest position.
- the rest position occurs, in the exemplary embodiment, when a gate member 42 is placed in contact with the gate receptor 38 , 98 on the first and/or second rail section 12 , 16 .
- the second gate member 42 moves into mating position in the gate receptor 38 and may simultaneously engage a mating portion 98 of the second rail section 16 .
- Movement of the second gate member 42 occurs, such that it does not interfere with the first gate member 40 or respective assembly.
- the first gate 40 moves in an approximate radial motion below the second gate member 40 .
- the second gate member 40 approaches the rail section 12 and the gate receptor 38 at least partially from a side of the rail, although a degree of motion may extend above the rail section.
- Rotation of the first and second gear assemblies 28 , 30 in the opposite direction causes the disengagement of the second gate member 42 and engagement of the first gate member 40 with the gate receptor 38 on the first rail section 12 , in the same manner.
- Positioning of the second pivot axis 90 below the first pivot axis 70 of the respective gear assemblies, or positioning of the second pivot axis 90 below the plane 72 of the rail section provides significant advantages.
- the second pivot axis provides a lower travel path, and the approximate side-action of the gate reduces, if not eliminates, interference with the trolley, pusher dogs and/or drive chain.
- the second gate member approaches the rail section at least partially from a side thereof, it may avoid the trolley, pusher dogs and chain.
- the switch assembly 10 of an exemplary embodiment may also or alternatively be provided with trolley stop assembly 20 .
- the trolley stop assembly 20 in the illustrated embodiment is carried by the second rail section 16 , and may be provided in an on-center or near on-center position.
- Trolley stop assembly 20 may be formed of a body 108 including one or more of a first side plate 110 , a second side plate 112 , a pivot member 114 , a trolley stop member 116 , and a weight or weighted member 118 .
- the second rail section 16 is formed as a curved rail having a first end portion 120 , a second end portion 122 , a top 124 and a bottom 126 .
- the trolley stop 20 is positioned on or carried by the first end portion 120 of the rail section 16 .
- the first end portion 120 may also have a gate engagement portion or receptor portion 98 , which may be formed by a recess or cutout or other form which mates with an end portion 130 of the gate member 42 and may serve to at least partially support the gate member 42 .
- the first end portion 120 may also include a section 132 arranged to receive a portion of the stop member 116 and/or a section 133 arranged to receive or permit movement of the weighted member 118 (see FIG. 19 ).
- the trolley stop 20 includes a body 108 having first and second side plates 110 , 112 or portions.
- Each of the side plates 110 , 112 is formed of a first portion 134 and a second portion 136 .
- the first portion 134 carries a stop member 116 .
- the second portion 136 carries a weight or weighted member 118 .
- the stop member 116 and weighted member 118 are carried by each of the side plates 110 , 112 .
- a central portion 138 is provided on each of the side plates for receipt of a pin member, or pivot member 114 forming a pivot axis 140 .
- the central portion 138 may be therefore provided with an aperture 142 or other recess for permitting pass through of a pivot pin 114 .
- the pivot pin or member 114 is formed of a rod or bolt or other suitable device.
- the pivot pin 114 extends through the first side plate 110 and the first end 120 of the rail section 16 , and may further extend through the second side plate 112 .
- a nut or other attachment mechanism may be used to secure the pivot member 114 in place, although such an attachment mechanism may not be required.
- the stop member 116 is carried by a portion of the side plates 110 , 112 and in the exemplary embodiment is positioned adjacent or on a first portion 134 of the plates. As can be seen in FIGS. 20-21 , the stop member 116 may be carried by the upper portion of each of the side plates in a location between the first and second side plates 110 , 112 .
- the stop member 116 may be attached, or operably attached to the side plates, by any suitable means, including but not limited to welding, integral forming or mold, or other attachment mechanism.
- the stop member 116 may be formed, at least in part, of a rail portion 144 .
- the stop member 116 may have a portion which corresponds to the top portion of the second rail section 16 , enabling a trolley 26 to move there along when the stop member 116 is not positioned for stopping the trolley.
- the stop member 116 when positioned for stopping the trolley 26 , has a portion 146 which extends above the top surface 124 of the second rail section 16 , or above a plane formed perpendicular the top surface 124 of the rail section.
- a portion 148 of the stop member 116 , or a portion of the side plates, may be formed and thus adapted to receive a portion of the gate member 42 and cause the movement of the trolley stop assembly 20 in response thereto.
- the weighted member 118 for use with the trolley stop 20 is formed by a weighted device sufficient to move the trolley stop 20 from a first position to a second position.
- the weight is sufficient to pivot the trolley stop 20 about the pivot axis 140 of the pivot member 114 to a “trolley stop” position illustrated in dashed lines in FIG. 18 , which may occur when the gate member 42 is not engaged with the second rail section 16 .
- the weight may be formed of any suitable material, such as but not limited to, a metal, and may be formed of the material used to form the rail.
- the weight 118 is positioned at the second portion 133 of the first and second side plate 110 , 112 and may be carried therebetween.
- the weighted member 118 may be attached or operably attached to the side plates 110 , 112 by any suitable means, including, but not limited to, welding or fasteners or integral forming, such as by mold. As shown in FIG. 21 , the weighted member 118 may also be positioned opposite the stop member 116 . In an exemplary embodiment, when positioned as shown in FIGS. 17-18 , which may be the position of gate member 42 engagement with the second rail section 16 , the weight 118 is positioned on a first side of the pivot member 114 , and pivoted radially upwardly about the pivot axis 140 . In this position, upon removal of the gate member 40 , the natural force of gravity causes the weighted member 118 to move downward about the pivot axis 140 , in turn causing the upward movement of the stop member 116 shown in dashed lines in FIG. 18 .
- the foregoing assembly may be formed of any suitable materials for use with conveyor assemblies.
- any one or more of the components of the conveyor assembly, trolley stop assembly or rails described herein may be formed of metal, such as stainless or galvanized steel, aluminum, and the like, as well as plastics, composites, and combinations of any of the foregoing.
- the components may be integrally formed, or formed separately and connected together, such as by welding, adhesive, tongue and groove, fasteners, and the like.
- the trolley stop assembly 20 may be formed by positioning the first and second side plates 110 , 112 on first and second sides 150 , 152 of the rail 16 and inserting the pivot member 114 through the apertures 142 in the central portion 138 of the side plates 110 , 112 and into the end portion 120 of the second rail.
- the stop member 116 may be attached to the upper or first portion 134 of the side plates and the weighted member 118 may be attached to the lower or second portion 136 of the side plates in the manner previously described. While a specific arrangement and order of assembly is described, the forgoing is provided by way of example only, and any suitable arrangement or order may be acceptable for purposes of the present invention.
- the stop member 116 and weighted member 118 may be attached to the side plates 110 , 112 prior to placing the side plates in connection with the second rail section 16 .
- a first rail section 12 and a second rail section 16 are provided.
- a switch assembly 10 may be formed by attachment of a first gear assembly 28 and a second gear assembly 30 to one or more transfer plates 48 , 50 .
- the transfer plates may be attached to the first rail section 12 .
- At least one and preferably two gate members 40 , 42 may also be provided. Gate members 40 , 42 may be attached to the gear assemblies 28 , 30 as described in detail hereinabove.
- a trolley stop 20 may be connected to an end 120 of the second rail section 16 by pivot member 114 .
- the first rail 12 and second rail section 16 may also be connected by attachment of a bridge 18 .
- the weighted member 118 and stop member 116 pivot about the pivot member 114 in response to gate member 42 interaction with the second rail section 16 .
- the second gate member 42 may be positioned such that it is in mating relation with the second rail section 16 . In this position, the stop member 116 is positioned such that it does not interfere with trolley 26 movement.
- the switch assembly 10 which may occur by manual or automated means, the second gate member 42 may be lifted from the gate receptor 98 of the second rail section 16 .
- the weighted member 118 pivotally moves about the pivot axis 140 , raising a portion of the stop member 116 above the top portion 124 of the second rail section 16 so as to engage or prevent movement of a trolley 26 there beyond.
- the gate member 42 presses upon the trolley stop 20 along a portion 148 of the stop member 116 or side plates, causing pivotal movement of the trolley stop assembly 20 in the opposite direction until the gate member 42 reaches its rest position and the stop member 116 is positioned in alignment with the top of the second rail 16 .
- first and second side plates Unlike traditional trolley stops, which are often positioned to the side of the rail, the use of first and second side plates, and thus, the centralized positioning of the rail section in relation to the pivotal or more specifically, weighted pivotal movement of the trolley stop assembly, permits the trolley stop assembly to rotate smoothly without binding. Furthermore, this positioning enables or enhances the engagement and disengagement of the gate member with the trolley stop, providing consistent non-binding movement and ease of operation.
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- Chain Conveyers (AREA)
Abstract
A switch assembly for a conveyor is provided. The switch assembly includes a rail section forming a portion of the conveyor assembly. The switch assembly has a first gear assembly pivotable about a first pivot axis and carrying a first gate and a first gear, and a second gear assembly pivotable about a second pivot axis and carrying a second gate and a second gear, the second pivot axis being positioned below a plane extending perpendicular to the rail section from the first pivot axis, and the second gear in rotational engagement with the first gear. A trolley stop assembly for a conveyor is also provided. The trolley stop includes a body having a first side portion and a second side portion arranged to be disposed on first and second sides of a rail section. A pivot member extends through the body and at least a portion of the rail section. A stop member is carried by an upper portion of the body, the stop member including a rail section portion and a stop portion. A weighted member is also carried by the body arranged to position the stop member for engagement with a trolley. A conveyor assembly including a switch assembly and trolley stop is also disclosed.
Description
- This application is a continuation of U.S. patent application Ser. No. 12/185,505, filed on Aug. 4, 2008, entitled GEAR SWITCH FOR A CONVEYOR ASSEMBLY, the contents of which is hereby incorporated in its entirety by reference.
- The present invention relates to switch mechanisms for conveyors, and in particular gear switches and trolley stops for use with conveyor assemblies.
- It is known to use overhead rail systems along which trolleys travel in order to move goods during processing or manufacture. The systems are used for transporting various types of merchandise, including hanging meat, garments and other products, through manufacturing, warehousing and distribution facilities. One typical overhead conveyer system pushes heavy, metal trolleys along a track system. The trolleys carry loads of products. The overhead rail systems are designed and installed so that goods may be suspended from the trolleys and then moved in different directions along the rail system to transfer the goods from a first location to a second location. Some such systems employ a system of two, parallel tracks or rails; an upper power rail and a lower free rail. The upper rail generally includes a drive chain that engages a component of the trolley, while the trolley's wheels are designed to ride within the free rail. The load supported by the trolley is most often suspended below the level of the free rail.
- Oftentimes, overhead rail systems use a rail switching mechanism at points in the track or rail where rails traveling in different directions intersect. The switching mechanism operates to control and direct the movement of the trolleys along various routes of the track system, such as to introduce a turn onto a different rail.
- One form of switching mechanism is a gear switch. Current gear switches are typically formed of an assembly including two gear assemblies, each of which are operable to move gates into and out of engagement with a rail section connected thereto. The two gear assemblies in current switching mechanisms are arranged such that they are horizontally spaced apart in a plane which is perpendicular to the rail and at a height which is approximately parallel to each other and the rail. More specifically, the pivot axis of each of the gear assemblies is level and positioned in the same plane.
- In a common conveyor assembly using a gear switch mechanism, a power chain is run through a bridge which is often used to connect first and second rail sections forming a portion of the rail switch assembly. In conveyors, projections, often referred to as pusher dogs, are suspended from the drive chain. A pusher dog assembly may be provided for the transportation of products on trolley in a conveyer system. A pusher dog is, generally, a projection that engages and pushes loads along a track or conveyor system. Thus, a power chain or drive chain pusher dog may be engaged to the chain and may be designed to directly engage trolley and push them along the series of interconnected rails. Movement of the trolley is thus accomplished by the mechanized action of the pusher dog on a protruding trolley part. Therefore, the drive chain commonly includes a pusher dog that extends downward from the drive chain and engages a part of the trolley that protrudes above the level of the free track or rail.
- Unfortunately, current switching mechanisms, due to the travel path and location of the gear assemblies carrying the gate members, are prone to catch or bind with the pusher dog if the gate is switched at the wrong time. Thus, a high level of precision and timing must be used to switch the rail, or the drive chain must be stopped.
- Additionally, in current switching mechanisms, a trolley stop is used to prevent overrun or interference of a trolley with a rail that is not currently being used. A current trolley stop used with such switch mechanisms is formed by a piece or member that is connected on the side of the rail section by a pivot member. At the lower end of the trolley stop is a weight, which causes rotation about the pivot member. Unfortunately, due to the side attachment of the trolley stop to the rail, and the position of the weight, these trolley stops are prone to bind. Moreover, the gate member must be precisely closed, coming over the top of the mechanism, or the gate may become wedged in place in the gate receptor, inhibiting the switching of the rails.
- Accordingly, what is needed in the art is a rail switching mechanism that can be switched without binding. There is also a need in the art for a trolley stop for such a switch mechanism that may pivot on center or near center with the rail to stop the trolley or engage the switching mechanism.
- A switch for a conveyor assembly is provided. The switch has a rail section forming a portion of the conveyor assembly. The switch also includes a first gear assembly pivotable about a first pivot axis and carrying a first gate, as well as a second gear assembly pivotable about a second pivot axis and carrying a second gate. The second pivot member is positioned below a plane extending perpendicular to the rail section from the first pivot axis.
- A trolley stop for a conveyor assembly is also provided. The trolley stop comprises a body having a first side portion and a second side portion arranged to be disposed on first and second sides of a rail section. A pivot member extends through the body and at least a portion of the rail section. A stop member may be carried by an upper portion of the body. A weight may also be carried by the body, and is arranged to position the stop member for engagement with a trolley.
- A conveyor assembly is further provided. The conveyor assembly includes a switch assembly for use in directing items along various paths in a rail system, wherein said switch assembly has a first rail section, a first gear assembly pivotable about a first pivot axis and carrying a first gate, as well as a second gear assembly pivotable about a second pivot axis and carrying a second gate. The second pivot member is positioned below a plane extending perpendicular to the rail section from the first pivot axis. The conveyor assembly also includes a trolley stop positioned on a second rail section having a body with a first side portion and a second side portion arranged to be disposed on first and second sides of the second rail section, a pivot member extending through the body and at least a portion of the second rail section, a stop member carried by an upper portion of the body, and a weight carried by the body arranged to position the stop member for engagement with a trolley when the first gate is engaged with the first rail section.
- In an exemplary embodiment of a conveyor assembly having the foregoing components the second pivot axis provides a lower travel path and approximate side-action of the gate which reduces if not eliminates interference with the trolley, pusher dogs and/or drive chain. Furthermore, unlike traditional trolley stops which are often positioned to the side of the rail, the centralized positioning of the rail section in relation to the weighted pivotal movement of the trolley stop assembly permits the trolley stop assembly to rotate smoothly without binding. Other advantages and features may become apparent from the following description, drawings, and claims.
- The invention will now be described, by way of example, with reference to the attached drawings, of which:
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FIG. 1 is a perspective view of a switch assembly according to an exemplary embodiment of the present invention with the switch assembly in a first extreme position and showing a trolley stop on the curved rail section wherein the trolley stop is not positioned for stopping a trolley. -
FIG. 2 is a perspective view of the switch assembly shown inFIG. 1 showing the switch assembly in a second extreme position. -
FIG. 3 is an elevation view of the switch assembly shown inFIG. 1 , taken from line 3-3 ofFIG. 1 . -
FIG. 4 is an elevation view of the switch assembly shown inFIG. 1 , taken from line 4-4 ofFIG. 1 . -
FIG. 5 is a plan view of the switch assembly shown inFIG. 1 , taken from line 5-5 ofFIG. 1 . -
FIG. 6 illustrates an exemplary conveyor assembly for use with the switch assembly ofFIG. 1 , showing a drive assembly, pusher dog, trolley and rail. -
FIG. 7 is a perspective view of a portion of the switch assembly shown inFIG. 1 , showing a rail section, mounting portion, and gear assemblies. -
FIG. 8 is a perspective view of a portion of the switch assembly shown inFIG. 1 , showing the assembly ofFIG. 7 absent the rail section. -
FIG. 9 is an elevation view of a portion of the switch assembly shown inFIG. 1 , taken along the line 9-9 ofFIG. 7 , showing the switch assembly in a first extreme position. -
FIG. 10 is an elevation view of a portion of the switch assembly shown inFIG. 1 , showing the switch assembly in a second extreme position from that shown inFIG. 9 . -
FIG. 11 is a perspective view of a portion of the switch assembly shown inFIG. 1 , showing a rail section, mounting portion, and pivot members. -
FIG. 12 is a perspective view of a portion of the switch assembly shown inFIG. 1 , showing only the rail section ofFIG. 11 . -
FIG. 13 is an elevation view of a transfer plate for use with the switching assembly shown inFIG. 1 . -
FIG. 14 is a perspective view of a gear assembly ofFIG. 8 for use with the switching assembly shown inFIG. 1 . -
FIG. 15 is a perspective view of an additional gear assembly ofFIG. 8 for use with the switching assembly shown inFIG. 1 . -
FIG. 16 is a top plan view of a curved rail section and trolley stop for use with the switch assembly shown inFIG. 1 . -
FIG. 17 is an elevation view of a curved rail section and trolley stop for use with the switch assembly shown inFIG. 1 , taken along line 17-17 ofFIG. 16 . -
FIG. 18 is an elevation view of a curved rail section and trolley stop for use with the switch assembly shown inFIG. 1 , taken along line 18-18 ofFIG. 16 . -
FIG. 19 is an elevation view of a curved rail section shown inFIG. 18 for use with the switch assembly shown inFIG. 1 , absent the trolley stop. -
FIG. 20 is a perspective view of a trolley stop shown inFIG. 18 for use with the switch assembly ofFIG. 1 . -
FIG. 21 is a cut away perspective view of the trolley stop shown inFIG. 20 for use with the switch assembly ofFIG. 1 , taken along line 21-21 ofFIG. 20 . -
FIG. 22 is a perspective view of a side plate for use with the trolley stop shown inFIG. 20 , taken along line 22-22 ofFIG. 21 . - While the disclosure herein is particularly described with regard to overhead trolley conveyors, it will be understood and apparent to those of skill in the art that the present invention has other applications where switching mechanisms are used at points where rails or tracks intersect, in order to direct the objects moving along a track system.
- Generally, rail switching mechanisms include a switch mounting which may be suspended from a ceiling or attached to a wall, beam, or other support, and which is used to support the rail sections used in the switching mechanism. The rail sections which are used may be either straight rail sections or curved rail sections. The rail sections may be bolted to the switch mounting, or they may be connected by welding them to the switch mounting. The rail sections used in the switching mechanism also contain one or more gate receptors for receiving the gates which are attached to the rail section. The gate receptors are formed by the absence of a portion of the rail so that a gate can close and be seated in the gate receptor. The opening and closing of the gates controls the movement of trolleys along intersecting rails in the rail system. An exemplary rail switching mechanism is shown in U.S. patent application Ser. No. 11/836,268 filed Aug. 9, 2007, which is hereby incorporated by reference in its entirety herein.
- The Figures illustrate a
switch assembly 10 for a conveyor as described herein. In an exemplary embodiment, theswitch assembly 10 is a gear switch assembly in that the mechanism by which tracks or rails are changed is facilitated, at least in part, by a gear or combination of gears or gear assemblies. InFIGS. 1-5 , theswitch assembly 10 includes or is formed by at least a portion of afirst rail 12, which as illustrated may be a straight rail. Thus, as shown, the first rail orfirst rail section 12 carries or forms a portion of theswitch assembly 10, and may include atrolley stop 14 on a portion of the switch assembly. Thefirst rail section 12 is attached to or operably associated with a second rail orsecond rail section 16 by abridge 18. Thesecond rail 16 may also carry atrolley stop 20. Thesecond rail section 16 in the illustrated embodiment is a curved rail. While straight and curved rails are specifically illustrated, alternatives would not depart from the overall scope of the present invention. - The foregoing
assembly 10 may be attached to a larger conveyor assembly including a plurality of rail sections, such as two or more rail sections. Additionally, theswitch assembly 10 may be used in association with adrive chain 22 or track having one ormore pusher dogs 24 thereon. Therail trolley 26 adapted to carry or transport product (seeFIG. 6 ). - The
gear switch assembly 10 generally includes arail section 12 and/or 16, as well as afirst gear assembly 28 and asecond gear assembly 30 carried by a mountingmember 32 carried by therail section 12. Theswitch assembly 10 may thus include at least onerail section 12 or a portion of a rail section (seeFIGS. 7-15 ). In FIGS. 7 and 9-12, thefirst rail section 12 is a straight rail section. Therail section 12 has first and second ends 34, 36 for engagement with additional rail sections, and agate receptor 38 formed by the absence of a portion of the rail (seeFIGS. 11-12 ) so that agate FIG. 7 ). Thegate receptor 38 is positioned between the first and second ends 34, 36. - The
rail section 12 also has afirst side portion 44 and asecond side portion 46. Thefirst side portion 44 carries a mountingmember 32 or portion which has first andsecond gear assemblies 28, 30 (seeFIGS. 7-8 ). In an exemplary embodiment, as shown inFIG. 11 , the mountingmember 32 is formed by afirst transfer plate 48 and asecond transfer plate 50 that may be positioned on the first side portion of the rail section. Thefirst transfer plate 48 andsecond transfer plate 50 may be spaced a distance apart and may be positioned at a location below thegate receptor 38. Theplates FIG. 13 , each of the first andsecond plates first end 52 for positioning on or near therail section 12, and asecond end 54 arranged to extend a distance away from the rail section. Theplates extended portion 56 and a second angled portion or downwardly turnedportion 58. The firstextended portion 56 includes a first aperture orreceptor 60 for afirst pivot member 62. The second downwardly turnedportion 58 includes a second aperture orreceptor 64 for receipt of asecond pivot member 66. In an exemplary embodiment, thesecond aperture 64 is positioned offset from thefirst aperture 60. More preferably, thesecond aperture 64 is positioned such that its location is disposed below theplane 68 formed perpendicular to the axis of the first aperture/pivot member 70, and more preferably at or below theplane 72 extending perpendicular from the lower edge 74 of the rail 12 (seeFIGS. 9-10 ). - The first and
second plates pivotable gear assembly 28. Thefirst gear assembly 28 as shown inFIGS. 14-15 may includepivot member 62 or pin which is rotatably or pivotably received by thefirst apertures 60 in the first andsecond plates 48, 50 (see alsoFIGS. 7-11 ). Alternatively, thepivot member 62 may be secured in a fixed position in the first andsecond plates first pivot member 62 formsfirst pivot axis 70. Thefirst pivot member 62 may be a bolt or other rod or pin and may include a nut on an end thereof to retain same in place on theswitch assembly 10. Thefirst gear assembly 28 also may include ahousing 76 which is carried by the first pivot member 62 (FIG. 14 ). Thehousing 76 of the exemplary embodiment is formed of abushing 78 which may be rotatable about thepivot member 62 or may be stationary thereon. Thebushing 78 may carry afront pivot spacer 80. Preferably, thefront pivot spacer 80 is attached to a portion of thebushing 78 for movement in connection with the pivotal movement of the assembly. Thefront pivot spacer 80 carries afirst gate member 40. Thegate member 40 is shaped such that it mates with thegate receptor 38 of therail section 12 and provides a travel path for atrolley 26 across itstop surface 82. As indicated, in the illustrated embodiment, thegate member 40 is a straight gate member. Also carried by thepivot member 62 is afirst gear 84, which may be a gear wheel having a plurality ofgear teeth 86. In the illustrated embodiment, thefirst gear 84 is a small gear having a number ofteeth 86 sufficient to engage anadjacent gear 88. Thefirst gear 84 is therefore pivotable in connection with thehousing 76. Thefirst gear 84 may be attached to thehousing 76, integral therewith or separate there from. The pivot member, bushing, pivot spacer, gear and gate portion may be formed by any suitable means, and maybe a single integral component, or more than one component or combinations thereof attached by suitable attachment mechanisms, such as, but not limited to welding, adhesive, fasteners, tongue and groove, and the like. - The second
pivotal gear assembly 30 may be carried by the first andsecond transfer plates second gear assembly 30 includessecond pivot member 66 or pin which is rotatably or pivotably received by thesecond apertures 64 in the first andsecond plates 48, 50 (seeFIGS. 7-11 ). Alternatively, thepivot member 66 may be provided in a fixed position on theplates second pivot member 66 forms asecond pivot axis 90. As seen inFIG. 15 , thesecond pivot member 66 may be a bolt or other rod or pin and may include a nut on an end thereof to retain same in place on theswitch assembly 10. Thesecond gear assembly 30 also may include ahousing 92 which is carried by thesecond pivot member 66. Thehousing 92 of the exemplary embodiment is formed of abushing 94 which may be rotatable about thepivot member 66 or may be stationary thereon. Thebushing 94 may carry agate lever 96, such as, but not limited to, a curved or shapedgate lever 96. Preferably, thegate lever 96 is attached to a portion of thebushing 94 for movement in connection with the pivotal movement of the assembly. Thegate lever 96 carriessecond gate member 42, which in the illustrated embodiment is a curved gate member. As can be seen inFIG. 15 , thegate lever 96 is attached to a side portion of thegate member 42. In this position, thegate lever 96 does not interfere with atrolley 26 which may travel along therail gate 42. Also, thegate lever 96 in the exemplary illustrated embodiment is shaped such that it is adapted to place thegate 42 in position and provide clearance for thefirst gear assembly 28. As shown inFIGS. 2 and 10 , thegate lever 96 has a length and degree of curvature that extends over thefirst gear assembly 28 during both movement and final positioning. Thegate member 42 may be shaped such that it mates with thegate receptor 38 of thefirst rail section 12 and agate receptor 98 of thesecond rail section 16 to provide a travel path for atrolley 26 across its top surface oredge 100. Also carried by thesecond gear assembly 30 istrolley stop 14. In the illustrated embodiment,trolley stop 14 is carried by thegate lever 96, and may be formed of anattachment portion 102 and astop portion 104 or arm which is arranged to engage atrolley 26 when thesecond gate portion 42 is in position. The pivot member also carries asecond gear 88, which may be a gear wheel having a plurality ofgear teeth 106. In the illustrated embodiment, thesecond gear 88 is a large gear, or a gear which is larger than thefirst gear 86, and having a number ofteeth 106 sufficient to engage an adjacent gear, namely thefirst gear 86. Thesecond gear 88 is provided in association withhousing 92 and may be pivotable in connection therewith. Thesecond gear 88 may be attached to thehousing 92, integral with or separate there from. The pivot member, bushing, gate lever, gate portion, gear and trolley stop may be formed by any suitable means, and maybe a single integral component, or more than one component or combination of component attached by suitable attachment mechanisms, such as, but not limited to welding, adhesive, fasteners, tongue and groove, and the like. - In an exemplary embodiment, as best seen in
FIGS. 9-10 , the second pivot orgear assembly 30 is positioned such that its pivot axis, thesecond pivot axis 90, is provided in a location below theplane 68 extending from the first pivot orgear assembly axis 70. As can be seen, thisplane 68 extends perpendicular to thefirst rail section 12. Furthermore, thesecond gear assembly 30 or pivot assembly has apivot axis 90 which may extend or be provided below theplane 72 extending perpendicular to therail section 12 from the bottom edge 74 of the rail section. - The foregoing assembly may be formed of any suitable materials for use with conveyor assemblies. In an exemplary embodiment, any one or more of the components of the conveyor assembly, switch assembly or rails described herein may be formed of metal, such as stainless or galvanized steel, aluminum, and the like, as well as plastics, composites, and combinations of any of the foregoing. The components may be integrally formed, or formed separately and connected together, such as by welding, adhesive, tongue and groove, fasteners, and the like. Also, the rail sections, gates, and other components of the assemblies described herein may be formed by any suitable means, and may include CNC cutting, drilling, or otherwise removing of a portion from a solid piece of material. This may include, but is not limited to, use of a laser, a plasma cutting device, or a water jet. Alternative methods of forming the rail and components of the gate are contemplated, including, but not limited to die cut and mold.
- The
switch assembly 10 may be formed by connecting the first andsecond transfer plates first rail 12, assembling the first andsecond gear assemblies transfer plates pivot members apertures housings gear assemblies gate member lever housing first rail section 12 may be attached to thesecond rail section 16 by, for example, connecting thebridge 18 with thefirst rail section 12 and thesecond rail section 16. While a specific arrangement and order of assembly is described, the forgoing is provided by way of example only, and any suitable arrangement or order may be acceptable for purposes of the present invention. - Generally, the
rail sections switch assembly 10 may be formed into a larger conveyor assembly by attachment of one or more additional rail sections to the ends of first and second rail sections. - In operation of the exemplary embodiment of the
switch assembly 10 shown inFIGS. 1-15 , thefirst gear assembly 28 andsecond gear assembly 30 cooperate to move the respective first andsecond gate members FIGS. 1 and 2 andFIGS. 9 and 10 . For example, thefirst gate member 40 may be positioned such that it is in mating relation with thefirst rail section 12. Upon operation of theswitch 10, which may occur by manual or automated means, thefirst gear assembly 28 may pivot about thefirst pivot axis 70. Due to the connection of thefirst gear 84 andhousing 76, which carries thefirst gate member 40, pivotal rotation causes thefirst gate member 40 to be lifted from thegate receptor 38 and travel in a radial pattern about theaxis 70 of the pivot member, until it arrives at a final resting position. At the same time, thegear teeth 86 of thefirst gear 84 engage thegear teeth 106 of thesecond gear 88, causing the pivotal rotational movement of thesecond gear assembly 30 about thesecond pivot axis 90 in relation to the first assembly. - More specifically, the
second gear 88 pivots or rotates in a direction opposite thefirst gear 84. Rotation of thesecond gear 88 about thepivot axis 90 causes the rotation of the associatedhousing 92,gate lever 96, andsecond gate member 42 in connection therewith. Rotation moves thesecond gate member 42 in an approximate radial arc about thesecond pivot axis 90 to a rest position. The rest position occurs, in the exemplary embodiment, when agate member 42 is placed in contact with thegate receptor second rail section second gate member 42 moves into mating position in thegate receptor 38 and may simultaneously engage amating portion 98 of thesecond rail section 16. Movement of thesecond gate member 42 occurs, such that it does not interfere with thefirst gate member 40 or respective assembly. Thus, in the exemplary embodiment, thefirst gate 40 moves in an approximate radial motion below thesecond gate member 40. Furthermore, as a result of the position of theaxis 90 of rotation of thesecond gear assembly 30, thesecond gate member 40 approaches therail section 12 and thegate receptor 38 at least partially from a side of the rail, although a degree of motion may extend above the rail section. Rotation of the first andsecond gear assemblies second gate member 42 and engagement of thefirst gate member 40 with thegate receptor 38 on thefirst rail section 12, in the same manner. - Positioning of the
second pivot axis 90 below thefirst pivot axis 70 of the respective gear assemblies, or positioning of thesecond pivot axis 90 below theplane 72 of the rail section provides significant advantages. For instance, the second pivot axis provides a lower travel path, and the approximate side-action of the gate reduces, if not eliminates, interference with the trolley, pusher dogs and/or drive chain. In other words, as the second gate member approaches the rail section at least partially from a side thereof, it may avoid the trolley, pusher dogs and chain. - The
switch assembly 10 of an exemplary embodiment may also or alternatively be provided withtrolley stop assembly 20. As shown in FIGS. 3 and 16-17, thetrolley stop assembly 20 in the illustrated embodiment is carried by thesecond rail section 16, and may be provided in an on-center or near on-center position.Trolley stop assembly 20 may be formed of abody 108 including one or more of afirst side plate 110, asecond side plate 112, apivot member 114, atrolley stop member 116, and a weight orweighted member 118. - Accordingly, as shown in
FIGS. 16-17 , thesecond rail section 16 is formed as a curved rail having afirst end portion 120, asecond end portion 122, a top 124 and a bottom 126. Thetrolley stop 20 is positioned on or carried by thefirst end portion 120 of therail section 16. Thefirst end portion 120, as shown inFIGS. 18-19 , may also have a gate engagement portion orreceptor portion 98, which may be formed by a recess or cutout or other form which mates with anend portion 130 of thegate member 42 and may serve to at least partially support thegate member 42. Thefirst end portion 120 may also include asection 132 arranged to receive a portion of thestop member 116 and/or asection 133 arranged to receive or permit movement of the weighted member 118 (seeFIG. 19 ). - As indicated and shown in
FIGS. 20-22 , thetrolley stop 20 includes abody 108 having first andsecond side plates side plates first portion 134 and asecond portion 136. Thefirst portion 134 carries astop member 116. Thesecond portion 136 carries a weight orweighted member 118. In an exemplary embodiment, thestop member 116 andweighted member 118 are carried by each of theside plates central portion 138 is provided on each of the side plates for receipt of a pin member, orpivot member 114 forming apivot axis 140. Thecentral portion 138 may be therefore provided with anaperture 142 or other recess for permitting pass through of apivot pin 114. - The pivot pin or
member 114 is formed of a rod or bolt or other suitable device. Thepivot pin 114 extends through thefirst side plate 110 and thefirst end 120 of therail section 16, and may further extend through thesecond side plate 112. A nut or other attachment mechanism may be used to secure thepivot member 114 in place, although such an attachment mechanism may not be required. - The
stop member 116 is carried by a portion of theside plates first portion 134 of the plates. As can be seen inFIGS. 20-21 , thestop member 116 may be carried by the upper portion of each of the side plates in a location between the first andsecond side plates stop member 116 may be attached, or operably attached to the side plates, by any suitable means, including but not limited to welding, integral forming or mold, or other attachment mechanism. Thestop member 116 may be formed, at least in part, of arail portion 144. In other words, thestop member 116 may have a portion which corresponds to the top portion of thesecond rail section 16, enabling atrolley 26 to move there along when thestop member 116 is not positioned for stopping the trolley. Thestop member 116, when positioned for stopping thetrolley 26, has aportion 146 which extends above thetop surface 124 of thesecond rail section 16, or above a plane formed perpendicular thetop surface 124 of the rail section. Aportion 148 of thestop member 116, or a portion of the side plates, may be formed and thus adapted to receive a portion of thegate member 42 and cause the movement of thetrolley stop assembly 20 in response thereto. - The
weighted member 118 for use with thetrolley stop 20 is formed by a weighted device sufficient to move the trolley stop 20 from a first position to a second position. In an exemplary embodiment, the weight is sufficient to pivot the trolley stop 20 about thepivot axis 140 of thepivot member 114 to a “trolley stop” position illustrated in dashed lines inFIG. 18 , which may occur when thegate member 42 is not engaged with thesecond rail section 16. The weight may be formed of any suitable material, such as but not limited to, a metal, and may be formed of the material used to form the rail. In the exemplary embodiment shown inFIGS. 20-21 , theweight 118 is positioned at thesecond portion 133 of the first andsecond side plate weighted member 118 may be attached or operably attached to theside plates FIG. 21 , theweighted member 118 may also be positioned opposite thestop member 116. In an exemplary embodiment, when positioned as shown inFIGS. 17-18 , which may be the position ofgate member 42 engagement with thesecond rail section 16, theweight 118 is positioned on a first side of thepivot member 114, and pivoted radially upwardly about thepivot axis 140. In this position, upon removal of thegate member 40, the natural force of gravity causes theweighted member 118 to move downward about thepivot axis 140, in turn causing the upward movement of thestop member 116 shown in dashed lines inFIG. 18 . - The foregoing assembly may be formed of any suitable materials for use with conveyor assemblies. In an exemplary embodiment, any one or more of the components of the conveyor assembly, trolley stop assembly or rails described herein may be formed of metal, such as stainless or galvanized steel, aluminum, and the like, as well as plastics, composites, and combinations of any of the foregoing. The components may be integrally formed, or formed separately and connected together, such as by welding, adhesive, tongue and groove, fasteners, and the like.
- The
trolley stop assembly 20 may be formed by positioning the first andsecond side plates second sides rail 16 and inserting thepivot member 114 through theapertures 142 in thecentral portion 138 of theside plates end portion 120 of the second rail. Thestop member 116 may be attached to the upper orfirst portion 134 of the side plates and theweighted member 118 may be attached to the lower orsecond portion 136 of the side plates in the manner previously described. While a specific arrangement and order of assembly is described, the forgoing is provided by way of example only, and any suitable arrangement or order may be acceptable for purposes of the present invention. For example, thestop member 116 andweighted member 118 may be attached to theside plates second rail section 16. - Accordingly, in an exemplary embodiment of making and assembling the
gear switch 10 andtrolley stop 20, afirst rail section 12 and asecond rail section 16 are provided. Aswitch assembly 10 may be formed by attachment of afirst gear assembly 28 and asecond gear assembly 30 to one ormore transfer plates first rail section 12. At least one and preferably twogate members Gate members gear assemblies trolley stop 20 may be connected to anend 120 of thesecond rail section 16 bypivot member 114. Thefirst rail 12 andsecond rail section 16 may also be connected by attachment of abridge 18. - In operation of the exemplary embodiment of the
trolley stop assembly 20, theweighted member 118 and stopmember 116 pivot about thepivot member 114 in response togate member 42 interaction with thesecond rail section 16. For example, thesecond gate member 42 may be positioned such that it is in mating relation with thesecond rail section 16. In this position, thestop member 116 is positioned such that it does not interfere withtrolley 26 movement. Upon operation of theswitch assembly 10, which may occur by manual or automated means, thesecond gate member 42 may be lifted from thegate receptor 98 of thesecond rail section 16. Free of thegate member 42, which retains thetrolley stop member 20 in the position described hereinabove, theweighted member 118 pivotally moves about thepivot axis 140, raising a portion of thestop member 116 above thetop portion 124 of thesecond rail section 16 so as to engage or prevent movement of atrolley 26 there beyond. When thesecond gate member 42 is lowered again, thegate member 42 presses upon thetrolley stop 20 along aportion 148 of thestop member 116 or side plates, causing pivotal movement of thetrolley stop assembly 20 in the opposite direction until thegate member 42 reaches its rest position and thestop member 116 is positioned in alignment with the top of thesecond rail 16. - Unlike traditional trolley stops, which are often positioned to the side of the rail, the use of first and second side plates, and thus, the centralized positioning of the rail section in relation to the pivotal or more specifically, weighted pivotal movement of the trolley stop assembly, permits the trolley stop assembly to rotate smoothly without binding. Furthermore, this positioning enables or enhances the engagement and disengagement of the gate member with the trolley stop, providing consistent non-binding movement and ease of operation.
- Presently preferred embodiments of the invention and many of its improvements have been described with a degree of particularity. The previous description is of preferred examples for implementing the invention, and the scope of the invention should not necessarily be limited by this description. Although various representative embodiments of this invention have been described above with a certain degree of particularity, those skilled in the art could make numerous alterations to the disclosed embodiments without departing from the spirit or scope of the inventive subject matter set forth in the specification and claims. All directional references (e.g., upper, lower, upward, downward, left, right, leftward, rightward, top, bottom, above, below, vertical, horizontal, angled, and so forth) are only used for identification purposes to aid the reader's understanding of the embodiments of the present invention, and do not create limitations, particularly as to the position, orientation, or use of the invention unless specifically set forth in the claims. Joinder references (e.g., attached, coupled, connected, and the like) are to be construed broadly and may include intermediate members between a connection of elements and relative movement between elements. As such, joinder references do not necessarily infer that two elements are directly connected and in fixed relation to each other.
Claims (20)
1. A switch assembly for a conveyor comprising:
a rail section forming a portion of the conveyor assembly;
a first gear assembly pivotable about a first pivot axis, the first gear assembly carrying a first gate and a first gear; and
a second gear assembly pivotable about a second pivot axis and carrying a second gate and a second gear, the second pivot axis being positioned below a plane extending perpendicular to the rail section from the first pivot axis, and the second gear in rotational engagement with the first gear.
2. The switch assembly of claim 1 , wherein the rail section is a first rail section, further comprising a second rail section operably connected to the first rail section, and wherein the switch assembly is arranged to engage the first gate with the first rail section and the second gate with the second gate section.
3. The switch assembly of claim 1 , wherein the first gear and second gear each include at least one gear tooth, the at least one gear tooth of the first gear in communication with the at least one gear tooth of the second gear.
4. The switch assembly of claim 1 , wherein the switch assembly is attached to a conveyor assembly.
5. The switch assembly of claim 1 , wherein the first gear and second gear each include a plurality of gear teeth, the plurality of gear teeth of the first gear engage the plurality of gear teeth of the second gear.
6. The switch assembly of claim 1 , wherein the rail section further comprises a mounting portion for carrying the first and second gear assemblies.
7. The switch assembly of claim 6 , further comprising first and second pivot members carried by the mounting portion, wherein the first and second gear assemblies are pivotable about the pivot members.
8. The switch assembly of claim 6 , further comprising first and second pivot members carried by and pivotable on the mounting portion.
9. A trolley stop assembly for a conveyor comprising:
a body having a first side portion and a second side portion arranged to be disposed on first and second sides of a rail section;
a pivot member extending through the body and at least a portion of the rail section;
a stop member carried by an upper portion of the body, the stop member including a rail section portion and a stop portion; and
a weighted member carried by the body arranged to position the stop member for engagement with a trolley.
10. The trolley stop assembly of claim 9 , wherein the trolley stop is positioned on-center with the rail section.
11. The trolley stop assembly of claim 9 , wherein the weighted member is carried by a lower portion of the body.
12. The trolley stop assembly of claim 9 , wherein the stop member includes a gate member receiving portion adapted to receive a gate member from a rail switch assembly.
13. The trolley stop assembly of claim 9 , wherein the stop member and the weighted member are positioned between the first side portion and the second side portion of the body.
14. A conveyor assembly comprising a switch assembly for use in directing items along various paths in a rail system, wherein said switch assembly comprises a first rail section and a second rail section, a first gear assembly pivotable about a first pivot axis and carrying a first gate and a first gear, a second gear assembly pivotable about a second pivot axis and carrying a second gate and a second gear, the second pivot member being positioned below a plane extending perpendicular to the first rail section from the first pivot axis, the second gear in rotational engagement with the first gear, a trolley stop positioned on the second rail section having a body with a first side portion and a second side portion arranged to be disposed on first and second sides of the second rail section, a pivot member extending through the body and at least a portion of the second rail section, a stop member carried by an upper portion of the body, and a weighted member carried by the body and arranged to position the stop member for engagement with a trolley when the first gate is engaged with the first rail section.
15. The conveyor assembly of claim 14 , further comprising an additional rail section connected to at least one of the first rail section and the second rail section.
16. The conveyor assembly of claim 14 , further comprising a trolley for movement along the rail sections.
17. The conveyor assembly of claim 14 , further comprising a drive chain having a pusher dog in operable relation to the conveyor assembly.
18. The conveyor assembly of claim 14 , further comprising a bridge operably connecting the first rail section and the second rail section.
19. The conveyor assembly of claim 14 , further comprising an additional trolley stop attached to at least one of the second gear assembly.
20. The conveyor assembly of claim 14 , wherein the first rail section is a straight rail section and the second rail section is a curved rail section.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US12/711,778 US20100147179A1 (en) | 2008-08-04 | 2010-02-24 | Gear switch and trolley stop for a conveyor assembly |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US12/185,505 US8186278B2 (en) | 2008-08-04 | 2008-08-04 | Gear switch for a conveyor assembly |
US12/711,778 US20100147179A1 (en) | 2008-08-04 | 2010-02-24 | Gear switch and trolley stop for a conveyor assembly |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US12/185,505 Continuation US8186278B2 (en) | 2008-08-04 | 2008-08-04 | Gear switch for a conveyor assembly |
Publications (1)
Publication Number | Publication Date |
---|---|
US20100147179A1 true US20100147179A1 (en) | 2010-06-17 |
Family
ID=41607005
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US12/185,505 Expired - Fee Related US8186278B2 (en) | 2008-08-04 | 2008-08-04 | Gear switch for a conveyor assembly |
US12/711,778 Abandoned US20100147179A1 (en) | 2008-08-04 | 2010-02-24 | Gear switch and trolley stop for a conveyor assembly |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US12/185,505 Expired - Fee Related US8186278B2 (en) | 2008-08-04 | 2008-08-04 | Gear switch for a conveyor assembly |
Country Status (1)
Country | Link |
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US (2) | US8186278B2 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20130305955A1 (en) * | 2011-02-01 | 2013-11-21 | Dematic Accounting Services Gmbh | Transporting system |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102007036329A1 (en) * | 2007-07-31 | 2009-02-05 | Josef Wiegand Gmbh & Co. Kg | Backstop |
CA3006391A1 (en) * | 2009-09-11 | 2011-03-17 | Rocky Mountain Coasters, Inc. | Improved rolling vehicle track |
Citations (24)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US604266A (en) * | 1898-05-17 | Overhead switch | ||
US709590A (en) * | 1902-04-07 | 1902-09-23 | Paul F Werner | Trolley-track switch. |
US721484A (en) * | 1901-07-11 | 1903-02-24 | Coburn Trolley Track Mfg Company | Switch for overhead-trolley tracks. |
US884283A (en) * | 1907-10-01 | 1908-04-07 | Simon Miller | Press for neckties. |
US1094037A (en) * | 1913-11-25 | 1914-04-21 | Anna R Tye | Automatic stop. |
US1144371A (en) * | 1914-11-07 | 1915-06-29 | George M Neal | Safety attachment for trolley-rail switches. |
US1171748A (en) * | 1915-12-20 | 1916-02-15 | Fisk Rubber Co | Trolley-track switch device. |
US2535541A (en) * | 1947-09-02 | 1950-12-26 | Fiell Sidney Le | Switch for overhead tracks |
US2873689A (en) * | 1955-02-14 | 1959-02-17 | Tangel Material Handling Equip | Conveyor switch device |
US2944491A (en) * | 1958-06-23 | 1960-07-12 | Fiell Sidney Le | Overhead switch unit employing spring toogle |
US3063384A (en) * | 1961-04-24 | 1962-11-13 | Jr Charles Edwin Sackett | Hanger switch |
US3366076A (en) * | 1965-11-19 | 1968-01-30 | St John & Co | Switch for trolleys of overhead conveyor |
US3503336A (en) * | 1967-09-15 | 1970-03-31 | Cincinnati Butchers Supply Co | Switch mechanism for overhead trolley |
US3538853A (en) * | 1967-09-21 | 1970-11-10 | Webb Co Jervis B | Car actuated selective switch operating mechanism for conveyors |
US3577930A (en) * | 1967-11-24 | 1971-05-11 | Republic Corp | Monorail system |
US3760739A (en) * | 1970-06-15 | 1973-09-25 | J Benner | Conveyor track switch actuated by a linear motor |
US4016818A (en) * | 1975-09-02 | 1977-04-12 | Ellzey Floyd P | Monorail switch |
US4498399A (en) * | 1980-11-28 | 1985-02-12 | Nakanishi Metal Works Co., Ltd. | Free line switch arrangement for power-and-free trolley conveyor |
US4646646A (en) * | 1984-07-30 | 1987-03-03 | The Cincinnati Butchers' Supply Company | Overhead trolley track switch |
US4993326A (en) * | 1988-06-03 | 1991-02-19 | Veit Transpo Gmbh | Rail switch |
US5152226A (en) * | 1991-05-24 | 1992-10-06 | Bond Equipment Corp. | Track switch with dual shaft pivot and rotatable hub connected to switch components and mounted on an outer pivot shaft having a greater preset length |
US5697301A (en) * | 1995-07-18 | 1997-12-16 | Rsl Logistik Gmbh & Co. | Suspension type conveyor means |
US6427831B1 (en) * | 1999-11-19 | 2002-08-06 | Frank B. Norton | Convertible conveyor bed and method |
US20090038498A1 (en) * | 2007-08-09 | 2009-02-12 | Todd Jager | Rail section and switch mechanism for a conveyor assembly and method of making and assembling same |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US884383A (en) * | 1908-02-29 | 1908-04-14 | Duncan & Company J | Switch for overhead carriers. |
US3662873A (en) * | 1970-04-22 | 1972-05-16 | American Chain & Cable Co | Conveyor system |
IT1195497B (en) * | 1983-03-08 | 1988-10-19 | Opocrin Spa | PROCEDURE FOR THE PREPARATION OF OLIGOSACCHARIDIC FRACTIONS EQUIPPED WITH PHARMACOLOGICAL PROPERTIES FOR CHEMICAL DEGRADATION OF HEPARIN |
US4712485A (en) * | 1985-05-24 | 1987-12-15 | Gerber Garment Technology, Inc. | Restricting bracket for automatic transport system |
DE4314459C1 (en) | 1993-05-03 | 1994-09-22 | Duerkopp Adler Ag | Switch for a suspended conveyor |
DE4314458C1 (en) | 1993-05-03 | 1994-09-22 | Duerkopp Adler Ag | Switch for a suspended conveyor |
-
2008
- 2008-08-04 US US12/185,505 patent/US8186278B2/en not_active Expired - Fee Related
-
2010
- 2010-02-24 US US12/711,778 patent/US20100147179A1/en not_active Abandoned
Patent Citations (24)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US604266A (en) * | 1898-05-17 | Overhead switch | ||
US721484A (en) * | 1901-07-11 | 1903-02-24 | Coburn Trolley Track Mfg Company | Switch for overhead-trolley tracks. |
US709590A (en) * | 1902-04-07 | 1902-09-23 | Paul F Werner | Trolley-track switch. |
US884283A (en) * | 1907-10-01 | 1908-04-07 | Simon Miller | Press for neckties. |
US1094037A (en) * | 1913-11-25 | 1914-04-21 | Anna R Tye | Automatic stop. |
US1144371A (en) * | 1914-11-07 | 1915-06-29 | George M Neal | Safety attachment for trolley-rail switches. |
US1171748A (en) * | 1915-12-20 | 1916-02-15 | Fisk Rubber Co | Trolley-track switch device. |
US2535541A (en) * | 1947-09-02 | 1950-12-26 | Fiell Sidney Le | Switch for overhead tracks |
US2873689A (en) * | 1955-02-14 | 1959-02-17 | Tangel Material Handling Equip | Conveyor switch device |
US2944491A (en) * | 1958-06-23 | 1960-07-12 | Fiell Sidney Le | Overhead switch unit employing spring toogle |
US3063384A (en) * | 1961-04-24 | 1962-11-13 | Jr Charles Edwin Sackett | Hanger switch |
US3366076A (en) * | 1965-11-19 | 1968-01-30 | St John & Co | Switch for trolleys of overhead conveyor |
US3503336A (en) * | 1967-09-15 | 1970-03-31 | Cincinnati Butchers Supply Co | Switch mechanism for overhead trolley |
US3538853A (en) * | 1967-09-21 | 1970-11-10 | Webb Co Jervis B | Car actuated selective switch operating mechanism for conveyors |
US3577930A (en) * | 1967-11-24 | 1971-05-11 | Republic Corp | Monorail system |
US3760739A (en) * | 1970-06-15 | 1973-09-25 | J Benner | Conveyor track switch actuated by a linear motor |
US4016818A (en) * | 1975-09-02 | 1977-04-12 | Ellzey Floyd P | Monorail switch |
US4498399A (en) * | 1980-11-28 | 1985-02-12 | Nakanishi Metal Works Co., Ltd. | Free line switch arrangement for power-and-free trolley conveyor |
US4646646A (en) * | 1984-07-30 | 1987-03-03 | The Cincinnati Butchers' Supply Company | Overhead trolley track switch |
US4993326A (en) * | 1988-06-03 | 1991-02-19 | Veit Transpo Gmbh | Rail switch |
US5152226A (en) * | 1991-05-24 | 1992-10-06 | Bond Equipment Corp. | Track switch with dual shaft pivot and rotatable hub connected to switch components and mounted on an outer pivot shaft having a greater preset length |
US5697301A (en) * | 1995-07-18 | 1997-12-16 | Rsl Logistik Gmbh & Co. | Suspension type conveyor means |
US6427831B1 (en) * | 1999-11-19 | 2002-08-06 | Frank B. Norton | Convertible conveyor bed and method |
US20090038498A1 (en) * | 2007-08-09 | 2009-02-12 | Todd Jager | Rail section and switch mechanism for a conveyor assembly and method of making and assembling same |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20130305955A1 (en) * | 2011-02-01 | 2013-11-21 | Dematic Accounting Services Gmbh | Transporting system |
US8973506B2 (en) * | 2011-02-01 | 2015-03-10 | Dematic Systems Gmbh | Transporting system |
Also Published As
Publication number | Publication date |
---|---|
US8186278B2 (en) | 2012-05-29 |
US20100024677A1 (en) | 2010-02-04 |
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Legal Events
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AS | Assignment |
Owner name: INDUSTRIAL DESIGN FABRICATION & INSTALLATION, INC. Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:JAGER, TODD;REEL/FRAME:024012/0976 Effective date: 20080804 |
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STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |