Automatic vibrator assembly usable with a concrete finishing tool
10968574 ยท 2021-04-06
Inventors
Cpc classification
E01C19/38
FIXED CONSTRUCTIONS
International classification
E01C19/00
FIXED CONSTRUCTIONS
E01C19/38
FIXED CONSTRUCTIONS
Abstract
An automatic vibrator assembly includes a single vibrator mechanism or first and second vibrator mechanisms connected to first and second switch assemblies that are all housed with a case that attaches between a concrete finishing tool float and adaptor using industry standard bolt layouts. The vibrator mechanisms propel the float when the switch assemblies recognize a predetermined amount of forward and backward float tilt. Where the assembly uses two vibrator mechanisms or a single bidirectional vibrator assembly, the vibrator mechanisms can propel the float in different directions depending on the direction of tilt. Additional features include a variable speed controller, master switch for operating in automatic or manual mode, and docks that accommodate one or two removable batteries.
Claims
1. An automatic vibrator assembly usable with a concrete finishing tool and a float having industry standard float adaptor bolt layout, the vibrator assembly comprising: a) a case comprising a lid and defining a case chamber, wherein the case is configured to cooperate with the float's industry standard float adaptor bolt layout and the lid is configured to cooperate with the concrete finishing tool; b) a vibrator mechanism attached to the case and positioned within the case chamber; c) a first switch assembly in electrical communication with the vibrator mechanism, wherein the first switch assembly is attached to the case and positioned within the case chamber, comprises a first level sensor, and is configured to selectively engage the vibrator mechanism when a first threshold level of tilt is identified; d) a second switch assembly in electrical communication with the vibrator mechanism, wherein the second switch assembly is attached to the case and positioned within the case chamber, comprises a second level sensor, and is configured to selective engage the vibrator mechanism when a second threshold level of tilt is identified; and e) a dock for receiving a power source, wherein the dock attaches to the lid and wherein the power source is in electrical communication with the vibrator mechanism when it is positioned in the dock.
2. The automatic vibrator assembly of claim 1 wherein the dock comprises a first dock and a second dock, wherein the first and second docks are configured to receive first and second batteries, and wherein first and second batteries are in parallel electrical communication with the vibrator mechanism.
3. The automatic vibrator assembly of claim 1 wherein the first and second threshold levels of tilt are 8 degrees.
4. The automatic vibrator assembly of claim 1 wherein the first switch assembly comprises: a) a first tube having a first end and a second end and defining a channel from the first end to the second end and a slot near the first end, wherein the tube is disposed at a first angle relative to the bottom of the case and wherein the first angle corresponds to the first threshold level of tilt; b) a first plurality of reciprocating members disposed in the first tube; c) a first micro switch comprising a first lever, wherein the first micro switch is positioned next to the first tube and such that the first lever extends into the channel of the first tube through the slot on the first tube; d) a second tube having a first end and a second end and defining a channel from the first end to the second end and a slot near the first end, wherein the second tube is disposed at a second angle relative to the bottom of the case and wherein the second angle corresponds to the second threshold level of tilt; e) a second plurality of reciprocating members disposed in the second tube; and f) a second micro switch comprising a second lever, wherein the second micro switch is positioned next to the second tube and such that the second lever extends into the channel of the second tube through the slot on the second tube.
5. The automatic vibrator assembly of claim 1 wherein the first and second switch assemblies are adjustable such that the first and second threshold levels of tilt are adjustable.
6. The automatic vibrator assembly of claim 1 wherein the vibrator mechanism is a bidirectional vibrator mechanism.
7. The automatic vibrator assembly of claim 1 further comprising: a) a variable speed controller positioned in the case chamber and in electrical communication with the vibrator mechanism; and b) a variable speed input positioned on the case and in electrical communication with the variable speed controller.
8. The automatic vibrator assembly of claim 1 wherein the vibrator mechanism comprises a first vibrator mechanism and a second vibrator mechanism, wherein the first switch assembly is in electrical communication with the first vibrator mechanism and is configured to selectively engage the first vibrator mechanism when the first threshold level of tilt is identified, and wherein the second switch assembly is in electrical communication with the second vibrator mechanism and is configured to selectively engage the second vibrator mechanism when the second threshold level of tilt is identified.
9. The automatic vibrator assembly of claim 8 wherein the first and second threshold levels of tilt are 8 degrees.
10. The automatic vibrator assembly of claim 8 wherein the first switch assembly comprises: a) a first tube having a first end and a second end and defining a channel from the first end to the second end and a slot near the first end, wherein the tube is disposed at a first angle relative to the bottom of the case and wherein the first angle corresponds to the first threshold level of tilt; b) a first plurality of reciprocating members disposed in the first tube; c) a first micro switch comprising a first lever, wherein the first micro switch is positioned next to the first tube and such that the first lever extends into the channel of the first tube through the slot on the first tube; d) a second tube having a first end and a second end and defining a channel from the first end to the second end and a slot near the first end, wherein the second tube is disposed at a second angle relative to the bottom of the case and wherein the second angle corresponds to the second threshold level of tilt; e) a second plurality of reciprocating members disposed in the second tube; and f) a second micro switch comprising a second lever, wherein the second micro switch is positioned next to the second tube and such that the second lever extends into the channel of the second tube through the slot on the second tube.
11. The automatic vibrator assembly of claim 8 further comprising: a) a variable speed controller positioned in the case chamber and in electrical communication with the first and second vibrator mechanisms; and b) a variable speed input positioned on the case and in electrical communication with the variable speed controller.
12. The automatic vibrator assembly of claim 8 wherein the dock comprises a first dock and a second dock, wherein the first and second docks are configured to receive first and second batteries, and wherein first and second batteries are in parallel electrical communication with the first and second vibrator mechanisms.
13. The automatic vibrator assembly of claim 8 wherein the case comprises: a) a bottom section comprising a plurality of pillars extending from and integral with the bottom of the case, wherein the pillars are positioned to cooperate with the industry standard float adaptor bolt layout; b) opposing front and back sides attached to the bottom section wherein the front and back sides are substantially parallel to a leading edge and a trailing edge of the cooperating float when case is attached to the float according to industry standard float adaptor bolt layout; c) opposing first and second ends attached to the bottom section and positioned between the front and back sides such that the front side, first end, back side, and second end form a perimeter around the bottom section and together with the bottom section form the case chamber; and d) a float adaptor configured to cooperate with a concrete finishing tool, wherein the lid removably attaches to the case sides and ends, and wherein the float adaptor attaches to the float with a plurality of fasteners extending through the lid and case pillars.
14. The automatic vibrator assembly of claim 13 further comprising a master switch positioned on the case and in electrical communication with the first and second vibrator mechanisms and the variable speed controller, wherein the master switch selectively engages first vibrator mechanism only for manual operation, first and second vibrator mechanisms and first and second switching assemblies for automatic operation, or no vibrator mechanisms.
15. The automatic vibrator assembly of claim 13 wherein the first end comprises a first access port positioned to provide access to the first vibrator mechanism and wherein the second end further comprises a first access port positioned to provide access to the second vibrator mechanism.
16. The automatic vibrator assembly of claim 1 wherein the case comprises: a) a bottom section comprising a plurality of pillars extending from and integral with the bottom of the case, wherein the pillars are positioned to cooperate with the industry standard float adaptor bolt layout; b) opposing front and back sides attached to the bottom section wherein the front and back sides are substantially parallel to a leading edge and a trailing edge of the cooperating float when case is attached to the float according to industry standard float adaptor bolt layout; c) opposing first and second ends attached to the bottom section and positioned between the front and back sides such that the front side, first end, back side, and second end form a perimeter around the bottom section and together with the bottom section form the case chamber; and d) a float adaptor configured to cooperate with a concrete finishing tool, wherein the lid removably attaches to the case sides and ends, and wherein the float adaptor attaches to the float with a plurality of fasteners extending through the lid and case pillars.
17. The automatic vibrator assembly of claim 16 further comprising a master switch positioned on the case and in electrical communication with the vibrator mechanism, wherein the master switch selectively engages the vibrator mechanism for manual operation, the vibrator mechanism and first and second switch assemblies for automatic operation, or no vibrator mechanism.
18. The automatic vibrator assembly of claim 16 wherein the first end comprises a first access port positioned to provide access to the vibrator mechanism.
19. An automatic vibrator assembly usable with a concrete finishing tool and a float having industry standard float adaptor bolt layout, a front leading edge, and a trailing leading edge, the vibrator assembly comprising: a) a case comprising: i) a bottom section configured to cooperate with the float's industry standard float adapter bolt layout; ii) opposing front and back sides attached to the bottom section wherein the front and back sides are substantially parallel to the leading edge and a trailing edge of the cooperating float when case is attached to the float according to industry standard float adaptor bolt layout; iii) opposing first and second ends attached to the bottom section and positioned between the front and back sides such that the front side, first end, back side, and second end form a perimeter around the bottom section and together with the bottom section form a case chamber; and iv) a lid configured to attach to the perimeter of the case and to cooperate with the concrete finishing tool; b) a first vibrator mechanism attached to the bottom section of the case and positioned within the case chamber; c) a second vibrator mechanism attached to the bottom section of the case and positioned within the case chamber; d) a first switch assembly in electrical communication with the vibrator mechanism, wherein the first switch assembly is attached to the bottom section of the case near the back side of the case and positioned within the case chamber, comprises a first level sensor, and is configured to selectively engage the vibrator mechanism when a first threshold level of tilt is identified; e) a second switch assembly in electrical communication with the vibrator mechanism, wherein the second switch assembly is attached to the case near the front side of the case and positioned within the case chamber, comprises a second level sensor, and is configured to selective engage the vibrator mechanism when a second threshold level of tilt is identified; f) a variable speed controller positioned in the case chamber and in electrical communication with the vibrator mechanism; g) a variable speed input positioned on the case and in electrical communication with the variable speed controller; h) a dock for receiving a power source, wherein the dock attaches to the lid and wherein the power source is in electrical communication with the vibrator mechanism when it is positioned in the dock; and i) a master switch positioned on the case and in electrical communication with the vibrator mechanism, wherein the master switch selectively engages the vibrator mechanism for manual operation, the vibrator mechanism and first and second switch assemblies for automatic operation, or no vibrator mechanism.
20. An automatic vibrator assembly usable with a concrete finishing tool and a float having industry standard float adaptor bolt layout, a front leading edge, and a trailing leading edge, the vibrator assembly comprising: a) a case comprising: i) a bottom section configured to cooperate with the float's industry standard float adapter bolt layout; ii) opposing front and back sides attached to the bottom section wherein the front and back sides are substantially parallel to the leading edge and a trailing edge of the cooperating float when case is attached to the float according to industry standard float adaptor bolt layout; iii) opposing first and second ends attached to the bottom section and positioned between the front and back sides such that the front side, first end, back side, and second end form a perimeter around the bottom section and together with the bottom section form a case chamber; and iv) a lid configured to attach to the perimeter of the case and to cooperate with the concrete finishing tool; b) a vibrator mechanism attached to the bottom section of the case and positioned within the case chamber; c) a first switch assembly in electrical communication with the vibrator mechanism, wherein the first switch assembly is attached to the bottom section of the case near the back side of the case and positioned within the case chamber, comprises a first level sensor, and is configured to selectively engage the first vibrator mechanism when a first threshold level of tilt is identified; d) a second switch assembly in electrical communication with the vibrator mechanism, wherein the second switch assembly is attached to the case near the front side of the case and positioned within the case chamber, comprises a second level sensor, and is configured to selective engage the second vibrator mechanism when a second threshold level of tilt is identified; e) a variable speed controller positioned in the case chamber and in electrical communication with the vibrator mechanism; f) a variable speed input positioned on the case and in electrical communication with the variable speed controller; g) a dock for receiving a power source, wherein the dock attaches to the lid and wherein the power source is in electrical communication with the vibrator mechanism when it is positioned in the dock; and h) a master switch positioned on the case and in electrical communication with the vibrator mechanism, wherein the master switch selectively engages the vibrator mechanism for manual operation, the vibrator mechanism and first and second switch assemblies for automatic operation, or no vibrator mechanism.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(16) For a better understanding of the invention reference is made to the following detailed description of the preferred embodiments of the invention which should be taken in conjunction with the above described drawings.
DETAILED DESCRIPTION OF THE INVENTION
(17) Various aspects of the present invention will evolve from the following detailed description of the preferred embodiments thereof which should be referenced to the prior described drawings.
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(19) Preferably, as shown in
(20) Case 100 also preferably houses or supports at least one battery 120 that couples to vibrator mechanisms 20, 22 to provide power necessary to operate their respective motors. Preferably, case 100 houses first and second batteries 120, 122 connected in parallel that couple to vibrator mechanisms 20, 22 to work together to provide power necessary to operate the motors. As shown in
(21) Case 100 further preferably houses automatic switch assembly 130 that couples to first and second vibrator mechanisms 20, 22 using wires or couplers (not labeled). In the preferred embodiment and as shown in
(22) Disposed within a channel formed by tube 310 are a series of reciprocating members 330. Preferably, there are three reciprocating members 330 in each tube 310, and reciprocating members 330 are inch ball bearings. The ball bearings are secured with tube 310 by bolts 312 that extend across tube 310 at each end as shown in
(23) In the preferred embodiment, for automatic switch assembly 130, the first end 3108 of tube 310 is near a back wall 104 of case 100. For automatic switch assembly 132, the first end 310B of tube 310 is near a front wall 103 of case 100.
(24) The optional variable speed motor controller 160 is also coupled to each vibrator mechanism 20, 22 and receives input from the variable speed input 162 regarding at what speed the motor should operate. Preferably, variable speed input 162 is a twist knob, and input 162 can be positioned on case 100 or on a wirelessly connected remote if automatic vibrator assembly 10 includes remote operation communication and control components. Any type of input that allows for selection among numerous options can be used for input 162, however. Optional variable speed motor controller 160 can be independently coupled and in electrical communication with vibrator mechanisms 20, 22 using wires or couplers (not labeled). There also can be multiple optional variable speed motor controllers and inputs so that one controls the speed of the first motor and another controls the speed of the second motor. Additionally, the variable speed motor controller 160 can be used when automatic vibrator assembly 10 is operating automatically or when it is placed in manual mode.
(25) Case 100 can be any shape and size as long as it provides adequate support and protection for the components housed within it and supported by it. Preferably, case 100 has a substantially rectangular footprint, is preferably made from aluminum and more preferably from 3/16 inch thick aluminum, and includes an optional and preferred removable lid 102 that removably attaches to and rests atop four walls that also connect with a floor 107. The four walls include a front side wall 103, a back side wall 104, a first end wall 105, and a second end wall 106. Lid 102 preferably secures to the top of front side wall 103, back side wall 104, and first and second end walls 105 and 106 with fasteners 101 such as screws or bolts that fit into holes 100A defined by the front, back, and side walls. Alternatively, lid 102 may attach with other types of locking or secure fasteners, and preferably is supported by an O-ring or other seal 203 that extends around the top edges of front side wall 103, first end wall 105, back side wall 104, and second end wall 106.
(26) Case 100 also preferably defines openings for connectors and inputs, and is further sized to cooperate with general float dimensions so that it does not extend beyond the edges of the float. Case 100 also preferably attaches to a standard float 12 using industry standard float adapter bolt layouts. For example, case 100 attaches with bolts to float 12 using case or bolt openings 108 defined by case 100. Preferably, bolt openings 108 are defined by pillars 109 extending upward from and integrally formed with floor 107 as shown in
(27) Case 100 further attaches to a concrete finishing tool pole 52 either directly or by using an adaptor 50 or multiple adaptor components 50 and 50A. For example, a float adaptor or knuckle adaptor 50 can rest on top or be fixedly attached to case 100 as shown in
(28) Lid 102 provides access to the motor housings 110, 112 and other components housed within case 100. On one or both side walls 105 and 106 of case 100 one or more hinged access doors, rubber or pipe plugs, threaded caps, or large set screws 210, 212 are located to provide access to the components within and specifically to provide access to the bearings of vibrator mechanisms 20, 22 for lubrication and maintenance. Preferably, access plugs 210, 212 are removable threaded plugs. Alternatively, any partly or fully removable object can be used as long as it provides a sealable access port for the bearings.
(29) Case 100 additionally supports a master switch 152 and voltage relay 150, which can be used to power on and off or otherwise activate the motors of vibrator mechanism 20, 22. Master switch 152 which is preferably positioned on case 100 in a location readily accessible by the automatic vibrating assembly 10 operator, such as on back side wall as shown in
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(31) Operationally, the automatic vibrating assembly 10 can selectively engage either vibrator mechanism 20, 22 when two vibrator mechanism s are present or the single vibrator mechanism 20 when only one vibrator mechanism is present. Where two opposing unidirectional vibrator mechanism s are present or one bidirectional vibrating assembly is present, vibrating assembly 10 selectively engage the vibrator mechanism or vibrator mechanism's mode so that its motors rotate in a direction that encourages an overall movement of the motor, rotors, and attached float either backward or forward depending on whether the tool operator has oriented float 12 for a backward or forward motion. For example, with respect to the embodiment illustrated in
(32) While in the foregoing, embodiments of the present invention have been set forth in considerable detail for the purposes of making a complete disclosure of the invention, it may be apparent to those of skill in the art that numerous changes may be made in such detail without departing from the spirit and principles of the invention.