System for applying finishing compound
10633871 ยท 2020-04-28
Assignee
Inventors
Cpc classification
B05C17/002
PERFORMING OPERATIONS; TRANSPORTING
B05C17/0103
PERFORMING OPERATIONS; TRANSPORTING
E04F21/06
FIXED CONSTRUCTIONS
B05C17/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
E04F21/165
FIXED CONSTRUCTIONS
B05C17/00
PERFORMING OPERATIONS; TRANSPORTING
B05C17/01
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A system for finishing surfaces with a finishing material includes a handle assembly with proximal and distal ends. A material reservoir is mounted on the handle distal and includes an inlet and an outlet. A material applicator tool is mounted on the reservoir and receives material from the reservoir outlet. A discharge mechanism includes an extendable-retractable component connected to the reservoir for discharging or reloading material. An alternative embodiment includes a lockable, compressible gas spring. Another alternative embodiment includes a rotating element driven by a reversible motor mounted on the handle assembly. The rotating element drives a discharge mechanism in a discharge direction of rotation, and reloads the reservoir in a reload direction of rotation.
Claims
1. A system for applying a finishing material to a work surface, which system includes: a handle assembly including a hollow, tubular body with a proximal end, a distal end and a handle bore extending between said ends; a material reservoir mounted on said distal end of said handle assembly, said reservoir including an interior configured for receiving a quantity of finishing material, an inlet to said interior and an outlet from said interior, said inlet and outlet respectively admitting and discharging material with respect to said reservoir interior; a discharge mechanism configured for discharging material from said reservoir interior through said outlet; a finishing tool mounted on said receptacle and configured for receiving material via said outlet and applying material to a work surface; said discharge mechanism including a rotating threaded rod having a proximal end, a distal end, and an axis of rotation coaxial with said tubular body; said discharge mechanism further including a plunger in said reservoir connected to said distal end of said threaded rod; a drive motor mounted on said handle assembly proximal end and drivingly connected to said threaded rod such that rotation of said threaded rod in a first direction extends said plunger in said reservoir and rotation of said threaded rod in a second direction retracts said plunger in said reservoir; and an actuating mechanism mounted on said handle assembly proximal end and configured for causing said drive motor to selectively rotate said threaded rod in said first and second directions.
2. The system according to claim 1 wherein said reservoir includes a swivel connection at said reservoir outlet, said swivel connection mounting said finishing tool and configured for accommodating finishing tool swivel movement relative to said reservoir.
3. The system according to claim 2 wherein said reservoir includes a throttle valve respectively opening and closing said outlet.
4. A system for applying a finishing material to a work surface, which system includes: a handle assembly including a hollow, tubular body with a proximal end, a distal end and a handle bore extending between said ends; a material reservoir mounted on said distal end of said handle assembly, said reservoir including an interior configured for receiving a quantity of finishing material, an inlet to said interior and an outlet from said interior, said inlet and outlet respectively admitting and discharging material with respect to said reservoir interior; a discharge mechanism including a helical rotating element with an axis of rotation coaxial with said tubular body and configured for selectively discharging material through said outlet in a first direction of rotation and reloading said material reservoir in a second direction of rotation; a finishing tool mounted on said receptacle and configured for receiving material via said outlet and applying material to a work surface; a drive motor mounted on said handle assembly proximal end and selectively, drivingly connected to said rotating element; and an actuating mechanism mounted on said handle end and configured for causing said drive motor to selectively rotate in said first and second directions of rotation.
5. The system according to claim 4 wherein said rotating element includes an auger rotatably mounted in said handle bore or said reservoir interior.
6. The system according to claim 4, which includes: said reservoir having a generally tubular configuration with proximal and distal ends; a plunger in said reservoir and reciprocable between said reservoir proximal and distal ends; and said rotating element comprising a threaded rod threadably connected to said plunger whereby rotating said threaded rod extends and retracts said plunger within said reservoir.
7. The system according to claim 4 wherein said actuating mechanism comprises a switch connected to said motor and including forward/discharge, reverse/reload and off positions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawings constitute a part of this specification and include exemplary embodiments of the present invention illustrating various objects and features thereof:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
I. Introduction and Environment
(32) As required, detailed aspects of the present invention are disclosed herein, however, it is to be understood that the disclosed aspects are merely exemplary of the invention, which may be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art how to variously employ the present invention in virtually any appropriately detailed structure.
(33) Certain terminology will be used in the following description for convenience in reference only and will not be limiting. For example, up, down, front, back, right and left refer to the invention as orientated in the view being referred to. The words, inwardly and outwardly refer to directions toward and away from, respectively, the geometric center of the aspect being described and designated parts thereof. Forwardly and rearwardly are generally in reference to the direction of travel, if appropriate. Said terminology will include the words specifically mentioned, derivatives thereof and words of similar meaning.
II. First Modified Embodiment or Alternative Aspect of the Invention (FIGS. 1-5)
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(35) A handle 14 can extend the distance between a user and the intended application surface 7. Various embodiments of certain features of the invention can also be mounted onto or in the handle 14.
(36) The extendable-retractable handle 14 can include one or more sections 14a, 14b, etc., which can telescope with respect to each other. A pressurized cylinder 30 can be mounted in the handle 14 for dispensing a quantity of material 6, such as drywall finishing compound or mud.
(37) A tool assembly 4 includes a release lever 12, which is actuated by squeezing the lever 12 towards the body of the handle 14, thereby retracting a master rod 32 which rotates a first embodiment braking mechanism 38 (in this case, a pinch brake 40) thereby releasing a slave rod 34 which is a piston of the pressurized cylinder 30. The piston 34 is connected to the reservoir plunger 18. With the release lever 12 depressed, gas and/or spring pressure within the cylinder 30 pushes the slave rod 34 outwardly for continuous compound 6 dispensing until the release lever 12 is released or the handle reservoir 16 requires recharging with compound material 6.
(38) Upon releasing the lever 12, a first embodiment brake compression spring 42 (compressed with the retracted master rod 32) expands and extends the master rod 32, rotating the pinch brake 40 of the braking mechanism 38 in the opposite direction, thereby braking the outward motion of the slave rod 34.
(39) Reversing the direction of the slave rod 34 follows a sequence similar to that of the standard use sequence: squeezing the lever 12 retracts the master rod 32, which rotates the braking mechanism 38, thereby releasing the slave rod 34, at which point inward pressure on the opposite end of the piston 34 would re-pressurize the gas and/or spring pressure within the cylinder 30 with the slave rod 34 returned to its initial position, ready for the process to be repeated, and for recharging or reloading the reservoir 16 with drywall compound 6.
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III. Second Modified Embodiment or Alternative Aspect of the Invention (FIGS. 6-11)
(41) A second embodiment or aspect of the invention comprising a system designated 102 with a compound-dispensing tool 104 incorporates the use of a cam 150 in place of a pinch brake 40 and is shown in
(42) Similar to the operation of the previous embodiment, upon releasing a release lever 112, a second embodiment brake compression spring 152 squeezed by a retracted master rod 132 is allowed to expand, thereby extending the master rod 132, rotating the cam 150 of a braking mechanism 148 (in this case, a cam brake) in the opposite direction, thereby braking the outward motion of the slave rod 134.
(43) The handle 114 can include one or more sections 114a, 114b, etc. and can be connected to a source of the compound 6 for reloading or recharging a reservoir 116 as the material 6 is applied and used. A reservoir plunger 118 can be mounted to the end of the slave rod 134 to ease dispensing. Alternative arrangements for locking and releasing the piston rod 134 of a piston 134 and cylinder 130 unit are provided. These can include, without limitation, rotatable plates, cams, and other braking mechanisms. A non-limiting example of an application for the extendable handle 114 is a drywall finishing tool 104 mounting a drywall compound (mud) distribution box 8, as well as various other taping, sanding, painting, and finishing tools and equipment.
(44) The system 102 can, similarly to the previous embodiment, incorporate a fill access port 122, a ball valve throttle 124, and one or more openable clamp assemblies 120 to simplify use.
IV. Third Modified Embodiment or Alternative Aspect of the Invention (FIGS. 12-18)
(45) A third embodiment or aspect of the invention (
(46) Upon release of the trigger 212, the release pin 264 is no longer depressed and the locking, pressurized gas cylinder 268 locks, thereby braking the outward motion of the plunger 218.
(47) Reversing the direction of the cylinder 268 follows a sequence similar to that of the standard use sequence: squeezing the trigger 212 depresses the release pin 264, thereby unlocking the pressurized cylinder 268, at which point inward (retracting) pressure on the opposite end of the cylinder 268 would re-pressurize the gas pressure within the cylinder 268 and return the cylinder 268 to its initial position relative to the piston rod 266, ready for the process to be repeated.
(48) The system 202 can also include a trigger latch 260.
(49) Alternatively, the dispensing-locking positions of the trigger mechanism 212 can be reversed whereby squeezing the trigger mechanism 212 causes the tool assembly 204 to dispense material. The operation of the latch 260 can likewise be changed as appropriate for particular applications and to accommodate user preferences.
(50) The system 202 can, similarly to the previously-described embodiments, incorporate a fill access port 222, a ball valve throttle 224, and/or one or more openable clamp assemblies 220 to simplify use.
V. Fourth Modified Embodiment or Alternative Aspect of the Invention (FIGS. 19-27)
(51) Yet another alternative embodiment or aspect of the invention (
(52) Alternatively, the motor 378 can drive a threaded shaft threadably connected to a plunger 318 for expelling the material 6 contents of the reservoir 316. Upon release of the trigger 312 the motor 378 is no longer powered and ceases to rotate the shaft 382, thereby stopping the discharge flow of material 6.
(53) A variable- or static-speed forward/reverse (reverse optional) switch 380 can be included in the assembled tool 304. The switch 380 can control the speed and rotational direction of the motor 378 and can be housed with the motor 378 within the motor housing 376. The switch 380 can include forward and reverse closed positions for dispensing compound 6 or reloading (recharging) the reservoir 316, or retracting the plunger 318.
(54) Threaded rods, plungers and other operative components can be utilized with a reversible electric motor, such as the drive motor 378. Moreover, compound materials 6 can be loaded into and discharged from hollow portions of handles (e.g., 314) and/or reservoirs (e.g., 316) using suitable augers or shaft-plunger assemblies, which are rotated by the drive motor 378. For example, the threaded shaft 386 could extend through most of the length of the reservoir 316 and threadably mount the plunger 318 thereon for advancing and retracting through the reservoir 316 in a reciprocating range of motion.
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(56) Another embodiment of a potential mating connection between the motor 378 and the auger shaft 382 is shown in
(57) The battery 374 can be recharged by removing it from the assembled tool 304 and connecting it to a charger 390 (
(58) The system 302 can, similarly to the previous embodiments, incorporate a fill access port 322, a ball valve throttle 324, and one or more openable clamp assemblies 320 to simplify use.
(59) It is to be understood that while certain embodiments and/or aspects of the invention have been shown and described, the invention is not limited thereto and encompasses various other embodiments and aspects.