Multicomponent dispenser
10293362 ยท 2019-05-21
Assignee
Inventors
Cpc classification
B05C17/00596
PERFORMING OPERATIONS; TRANSPORTING
B05C17/00566
PERFORMING OPERATIONS; TRANSPORTING
B05C17/0103
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05C17/01
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A dispenser for mixing and dispensing a multi-component adhesive or sealant includes a first motor operably coupled to two or more plungers, each plunger being slidably disposed in a respective one of two or more barrels and configured to apply a dispensing pressure to respective materials to be dispensed, a second motor operably coupled to an output drive shaft having a mating end, and a coupling plate removably attached to a front end of the dispenser, the coupling plate configured to attach to a disposable mixer attachment configured to mix and dispense the multi-component adhesive or sealant, the disposable mixer attachment having a drive shaft driving a mixing component and configured to selectively couple with the mating end of the output drive shaft of the second motor, thereby enabling dynamic mixing of the respective materials to be dispensed.
Claims
1. A dispenser for mixing and dispensing a multi-component adhesive or sealant, the dispenser comprising: a dispensing mechanism for dispensing the materials; a holder portion for holding the materials relative to the dispensing mechanism; a stock portion coupled to the holder and defining a handle portion to enable a user to hold the dispenser by griping the handle, thereby to operate the dispenser as a hand-held dispenser; a first electric motor coupled to the dispensing mechanism to drive the dispensing mechanism; a mixer holder for holding a mixer attachment relative to the holder portion to receive the materials for mixing inside a mixer; a mixing mechanism for coupling to the mixer attachment when the mixer attachment is attached to the mixer holder; a second electric motor coupled to the mixing mechanism by a planetary gearbox and a gear set for driving the mixer attachment when the mixer attachment is attached to the mixer holder; and a controller configured to control the first electric motor as a variable speed motor based on a magnitude of a user input and to control the second electric motor as a fixed speed motor by switching the second motor on and off based on the presence of the user input.
2. A dispenser as claimed in claim 1, wherein the first electric motor is housed by the stock portion.
3. A dispenser as claimed in claim 2, wherein the holder is coupled to the stock portion at a first end and is coupled or coupleable to the mixer holder at a second, opposed end and the second motor is secured to the holder adjacent the second end.
4. A dispenser as claimed in claim 3, wherein the mixer holder can be removeably secured to the holder portion and the mixing mechanism engages a mixer attachment secured to the mixer holder when the mixer holder is secured to the holder portion.
5. A dispenser as claimed in claim 1, wherein the holder portion is configured to accommodate one or more cartridges together defining two or more barrels containing the materials to be mixed.
6. A dispenser as claimed in claim 1, wherein the holder portion defines two or more barrels for containing the viscous materials.
7. A dispenser as claimed in claim 5, wherein the dispensing mechanism comprises two or more plungers driveable by the first electric motor into respective ones of the two or more barrels.
8. A dispenser as claimed in claim 5, wherein the mixer holder is arranged to sealingly engage the barrels and defines respective material conduits to connect each barrel with a corresponding outlet port for engaging respective mixer attachment inlets.
9. A dispenser as claimed in claim 1, wherein the mixer holder is removeably secured to the holder portion.
10. A dispenser for dispensing a mixture of viscous materials, the dispenser comprising: a stock portion defining a handle to enable a user to hold the dispenser by gripping the handle, thereby to operate the dispenser as a hand-held dispenser; a holder portion secured to the stock portion to hold the materials in respective barrels relative to the stock portion; a first electric motor housed by the stock portion; a dispensing mechanism coupled to the first electric motor to dispense the materials from the holder portion; a mixer holder securable to the holder portion to guide the materials from their barrels to a respective outlet port for fluidically coupling to inlet ports of a mixer attachment; and a second electric motor coupled to the mixer by a planetary gearbox and a gear set, when the mixer attachment is attached to the outlet ports, to actuate the mixer attachment; and a controller configured to control the first electric motor as a variable speed motor based on a magnitude of a user input and to control the second electric motor as a fixed speed motor by switching the second motor on and off based on the presence of the user input.
11. A dispenser as claimed in claim 10, wherein the second electric motor is disposed adjacent the mixer holder.
12. A dispenser as claimed in claim 10, in combination with a mixer having one or more mixer components moveable inside the mixer attachment to mix a material in the mixer attachment, wherein the mixer components can be driven by the second electric motor when the mixer attachment is coupled to the dispenser.
13. A dispenser for dispensing a mixture of viscous materials, the dispenser comprising: a dispensing mechanism for dispensing the materials; a holder portion for holding the materials relative to the dispensing mechanism; a stock portion coupled to the holder and defining a handle portion to enable a user to hold the dispenser by gripping the handle, thereby to operate the dispenser as a hand-held dispenser; a first electric motor coupled to the dispensing mechanism to drive the dispensing mechanism; a mixer holder for holding a mixer attachment relative to the holder portion to receive the materials for mixing inside a mixer; a mixing mechanism for coupling to the mixer attachment when the mixer attachment is attached to the mixer holder; a second electric motor coupled to the mixing mechanism by a planetary gearbox and a gear set for driving the mixer attachment when the mixer attachment is attached to the mixer holder; and a controller configured to operate the first electric motor as a variable speed motor based on magnitude of a user operational input and to operate the second electric motor as a fixed speed motor upon the presence of user input.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be explained in more detail hereinafter with reference to the drawings.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE EMBODIMENTS
(6) With reference to
(7) A coupling plate 28 seals the barrels 14 at a front end of the dispenser and provides a fluidic path from the inside of the sealed barrels 14 to a mixer attachment 30, as will be described in detail below. A further motor 32 is housed by the holder portion 6, disposed at the front end of the holder portion 6, for driving a mixer mechanism that is coupled to the mixer attachment when the mixer attachment is in place.
(8) With reference to
(9) The coupling plate 28 is removably held against a sealing surface 46 of the motor mounting block 34 by four clamping toggles 48, which can engage respective recesses 50 to securely hold the coupling plate 28 against the motor mounting block 34 while sealing against the sealing surface 46. In the sealed configuration, the coupling plate 28 provides a conduit 52 for guiding flow from an outlet opening 54 of the barrel to a corresponding outlet opening 56 in the coupling plate. It will be understood that one conduit 52 and outlet 56 is provided for each barrel 14 and barrel outlet 54, that is two in the case described with reference to
(10) With reference to
(11) Returning to
(12) The dispenser 2 comprises a controller (not shown) for controlling the operation of the motors 10 and 32 in response to actuation of triggers 24 and 26 by a user. Trigger 24 is coupled to a potentiometer, so that actuation of the trigger 24 generates a command signal related to the degree to which the trigger 24 is depressed. In response to this control signal, the controller controls the motor 10 to turn with a variable speed as a function of the control signal, so that the dispensing speed of the dispenser 2 can be controlled by a degree to which the trigger 24 is depressed. The controller also controls the motor 32 in response to depression of the trigger 24. In contrast to the motor 10, the motor 32 is not controlled to rotate at a velocity corresponding to the degree of depression of the trigger 24 but rather is simply turned on to mix dispensed material when the trigger 24 is started to be depressed and turned off when the trigger 24 is not pressed anymore to mix any dispensed material. Control of the motor 32 may be a simply on off switch, or the motor may be controlled to rotate at a fixed speed and/or generating a fixed torque, or simply be controlled by supply with a fixed current voltage.
(13) In operation, each of the barrels 14 is loaded with a respective material in a foil pack and the coupling plate 28 is secured to the motor mounting block 34 by means of the clamping toggles 48. Typically, the materials will form a two (or more) component adhesive or sealant when dispensed and mixed together. A mixer attachment 30 is attached to the coupling plate 28 and held in place by means of the mixer retainer plate 72 being engaged. To dispense and mix the materials, the user depresses the trigger 24 to a desired degree and for a desired amount of time to dispense a desired amount of materials at a desired speed. Actuation of the trigger causes the motor 10 to drive the plunger 16 into the barrels 14, resulting in a dispensing pressure which causes flow of the materials through the respective conduits 52 into the mixer housing 60 where they are mixed by rotation of the mixer components 66 rotating inside the mixer housing 60. When it is desired to retract the plungers, for example to change the foil packs inside the barrels 14, a user depresses the trigger 26 until reverse rotation of the motor has caused the plungers 16 to retract sufficiently.
(14) While a specific example of an embodiment has been described, it will be appreciated that many operations, alterations and juxtapositions of the features described above are possible and will readily be apparent to the person skilled in the art and that, accordingly, the above description is made by way of example and not limitation.
(15) For example, the described embodiment can readily be adapted to other number of materials to be mixed, for example three or four. Further, while an embodiment with sealed barrels and materials in respective foil packs has been described above, it will be appreciated that the sealed barrels as material holders can be replaced with a holder for a cartridge combining two or more barrels holding respective materials and providing respective outlets for engagement with the mixer attachment.
(16) Various constructional details can also be varied. For example, other securing arrangements than the clamping toggle described above are equally possible, for example sliding arrangements or arrangements in which the coupling plate is held in place by threaded nuts. It will also be appreciated that the configuration of the drive dog and mating recess can be inversed so that the recess is provided on the mixer attachment 30 and the drive dog on the drive shaft 42. Evidently, other arrangements for coupling the drive shaft to the mixer attachment are equally possible.
(17) Regarding the control of the two separate motors discussed above, it is equally envisaged that both motors could be operated with variable speed or with a fixed speed. Equally either or both motors may be operated using a different control scheme, for example one or both could be operated with fixed current, or variable flux, voltage or torque control, as appropriate. Thus, any combination of the same or different control schemes for the two motors is possible, subject to the application constraints.