The present disclosure is related to cleaning devices. More particularly, the present disclosure is related to versatile cleaning devices that can be easily configured for a number of different cleaning tasks and in a number of different positions.
Residential and commercial cleaning requires the cleaning all different types of surfaces, where the surfaces can be in different locations and in hard to reach places. In many instances, specialized cleaning devices have been designed to meet each cleaning task—which results in a burdensome number of different cleaning devices being needed to clean a living or working space.
Accordingly, it has been determined by the present disclosure that there is a continuing need for versatile cleaning devices that overcome, alleviate, and/or mitigate one or more of the aforementioned and other problems associated with prior art devices.
A versatile cleaning device is provided that can be easily configured for a number of different cleaning tasks and in a number of different positions. The device allows the user to change and/or replace to the cleaning head and/or the cleaning member carried by the head. The device allows the user to change a first angle between the handle and the extension arm via a pivot assembly. Further, the device allows the user to secure the handle to an extension device for greater reach and cleaning range. Accordingly, the cleaning device allows for even increased reach and cleaning range, as well as allowing the device to be folded for easy and compact storage/shipping.
A versatile cleaning device is provided that includes a handle defining a first axis, an extension arm defining a second axis, a head attaching assembly, and a pivot assembly. The head attaching assembly secures a plurality of cleaning heads to the extension arm. The pivot assembly secures the handle and extension arm to one another for rotational movement about a pivot axis among a first position, at least one intermediate position, and a second position. The first and second axes are perpendicular to one another in the first position, but are parallel to one another in the second position.
A versatile cleaning device is also provided that include a handle, an extension arm, a head attaching assembly, and a pivot assembly. The head attaching assembly secures a plurality of cleaning heads to the extension arm. The pivot assembly secures the handle and extension arm to one another for rotational movement about a pivot axis. The pivot assembly includes a first housing, a second housing, a gear lock, a biasing member, and a release button. The first housing depends from one of the handle and the extension arm, while the second housing depending from the other one of the handle and the extension arm. The gear lock is in the first and second housings for sliding movement along the pivot axis. The first and second housings and the gear lock all have a corresponding number of teeth, respectively. The gear lock having a width that is less than or equal to a depth of the second housing so that the gear lock can slide along the pivot axis into the second housing with the teeth of the gear lock being engaged with only the teeth of the second housing. The biasing member is in one of the first and second housings, the biasing member normally biasing the gear lock to a position in which the teeth of the gear lock are engaged with the teeth of both the first and second housings to lock the pivot assembly in position against rotation about the pivot axis. The release button extends from one of the first and second housings. The release button abuts the gear lock so that a pressure applied to the release button over comes the biasing force of the bias member and slides the gear lock along the pivot axis into the second housing to unlock the pivot assembly for rotation about the pivot axis.
A versatile cleaning device is also provided that includes a handle defining a first axis, an extension arm defining a second axis and having a first attaching feature, a first cleaning head having a second attaching feature, and a pivot assembly. The first and second attaching features removably secure the first cleaning head to the extension arm. The pivot assembly secures the handle and extension arm to one another for rotational movement about a pivot axis among a first position, at least one intermediate position, and a second position. The pivot assembly has a release button that selectively allows or prevents movement among the first, intermediate, and second positions.
The above-described and other features and advantages of the present disclosure will be appreciated and understood by those skilled in the art from the following detailed description, drawings, and appended claims.
Referring to the drawings and in particular to
Device 10 includes a handle 12, a pivot assembly 14, an extension arm 16, and a head attaching assembly 18, which allows a first cleaning head 20 to be removably secured thereto. First cleaning head 20 includes a cleaning member 22 that can be used to perform one or more cleaning operations.
For purposes of clarity, device 10 is described herein by way of example with the cleaning operation described as a dusting operation—such that cleaning member 22 is illustrated as a dusting cloth or dusting element. Here, first cleaning head 20 is illustrated as a delicate duster.
Of course, it is contemplated by the present disclosure for the cleaning operation to be operations other than dusting such as, but not limited to, window cleaning, floor cleaning, surface wiping, surface scraping, and any other cleaning operation—as well as any combinations thereof.
Handle 12 and a portion of pivot assembly 14 are illustrated as being integrally formed. Similarly, extension arm 16 and another portion of pivot assembly 14 are illustrated as being integrally formed. Of course, it is contemplated by the present disclosure for these components to be separately formed and joined to one another in any desired manner. Handle 12, preferably, includes a free end 24 that is configured to removably receive an extension device (not shown)—such as an extension handle, a pole, a telescoping pole, and any combinations thereof—that allows the reach of device 10 be increased as needed.
Head attaching assembly 18 includes a first feature 26 on extension arm 16 and a second feature 28 on first cleaning head 20. In the illustrated embodiment, first feature 26 is illustrated as a flexible release button, while second feature 28 is illustrated as an opening. Of course, it is contemplated by the present disclosure for head attaching assembly 18 to include any desired combination of first and second cooperating features 26, 28 that releasably secure head 20 to extension arm 16.
Head attaching assembly 18, in some embodiments where first feature 26 is the flexible release button and second feature 28 is the opening, preferably is configured to include a cam or lead in so that the action of attaching extension arm 16 and first cleaning head 20 acts to bias the first feature until the first feature is aligned with the second feature, at which time the release button returns to its normal state under its own resilience. In other embodiments where first feature 26 is the flexible release button, extension arm 16 can include one or more protrusions and/or indentations that prevent or at least mitigate the potential of over stroking the resilient portion of the flexible release button.
Device 10—by virtue of head attaching assembly 18—allows first cleaning head 20 to be removed and replaced with different cleaning heads.
For example, device 10 is illustrated in
Since first and second cleaning heads 20, 120 both releaseably attach to the same head attaching assembly 18, it can be seen that the second cleaning head 120 also includes second feature 28.
Additionally, device 10 is illustrated in
Of course, it is contemplated by the present disclosure for third cleaning head 220 to be any other type of a feather duster such as, but not limited to, that disclosed in Applicant's own U.S. patent application Ser. Nos. 13/088,838 and 13/750,553—the contents of each of which are incorporated herein by reference thereto.
The operation of pivot assembly 14 are initially described with reference to
Pivot assembly 14 allows device 10 to be configured with a first angle A1 between first axis 40 of handle 12 and second axis 42 of extension arm 16 when the extension arm is rotated to is left most position as shown in
Pivot assembly 14 also allows device 10 to be rotated from the position shown in
In this manner, pivot assembly 14 provides extension arm 16 with 270 degrees or more of rotation and any degree of rotation therebetween. It has been determined by the present disclosure that pivot assembly 14 allows for both surfaces of first cleaning head 20 to be rotated to a position where they are substantially perpendicular to handle 12—which provides the user with the ability to clean using either surface without having to remove or replace cleaning member 22.
An exemplary embodiment of the structure of pivot assembly 14 is described with reference to
Pivot assembly 14 includes a first housing 44, a second housing 46, a gear lock 48, a biasing member 50, and a release button 52.
First housing 44 is formed as part of or connected to handle 12, while second housing 46 is formed as part of or connected to extension arm 16. Housings 44, 46 and gear lock 48 all have a corresponding number teeth 54-1, 54-2, and 54-3, respectively. Gear lock 48 is positioned in housings 44, 46 for sliding movement along the axis of rotation (R) of pivot assembly 14.
When teeth 54 of gear lock 48 are engaged with teeth 54-1, 54-2 of housings 44, 46, pivot assembly 14 is locked in position against rotation. Conversely, when teeth 54-3 of gear lock 48 are engaged with only teeth 54-1 or 54-2 of one of the housings 44, 46, pivot assembly 14 is released so as to be rotatable about the axis (R).
Gear lock 48 has a width (W) that is less than or equal to a depth (D) of second housing 46. In this manner, gear lock 48 can slide along the axis of rotation (R) entirely into second housing 46—to unlock pivot assembly 14—and can slide along the axis of rotation (R) into engagement with both first and second housings 44, 46.
Biasing member 50, illustrated as a compression spring, normally biases gear lock 48 along axis (R) into engagement with both first and second housings 44, 46. Thus, pivot assembly 14 is normally biased to a locked condition.
Release button 52 can also slide along the axis of rotation (R) and is accessible to the user through first housing 44—namely can depend from or be recessed into the first housing. Release button 52 abuts gear lock 48 so that pressure applied to the button inward towards first housing 44 over comes the force of biasing member 50—to slide the button and the gear lock into second housing 46 only—namely to the unlocked position. After rotation of device 10 to the desired position, pressure can be released from button 52 so that biasing member 50 biases gear lock 48 back into engagement with teeth 54-1 of first housing 44 but only when teeth 54-3 of the gear lock are aligned with the teeth 54-1 of the first housing.
Stated another way, gear lock 48 acts as a piston sliding axially along axis of rotation (R) with teeth 54-3 of the gear lock maintaining engagement with teeth 54-2 of second housing 46 along the entire travel of the gear, but releasing or no longer maintaining engagement with teeth 54-1 of first housing 44 when the gear lock is received in the second housing.
In some embodiments, gear lock 48 is configured so that teeth 54-3 have a spacing that allows first cleaning head 20 can be located in the positions illustrated in
First cleaning head 20 is described in more detail with respect to
First cleaning head 20 is illustrated in
In some embodiments, first cleaning head 20 is reversible with respect to head attaching assembly 18—namely the first cleaning device has two second features 28—one on opposite sides as shown in
Second cleaning head 120 is illustrated in
It is contemplated by the present disclosure for the components of cleaning device 10 to be made of any material having sufficient properties to achieve the functions disclosed here. By way of example, it is contemplated by the present disclosure for handle 12—including first housing 44—extension arm 16—including second housing 46, and button 52, to be made of polymers such as, but not limited to, thermoset and thermoplastic materials including polypropylene, polycarbonate, acetal (also known as polyoxymethylene or POM), and others.
Gear lock 48 and biasing member 50 can be made of thermoset and thermoplastic materials such as those discussed above, as well as of metal or alloys thereof—such as cast metallic materials.
Cleaning members 22, 122, 222 can be made of materials such as, but not limited to, natural fibers and/or man-made fibers including cotton, wool, microfiber, and others. Additionally, it is contemplated by the present disclosure for cleaning members 22, 122, 222 to be reversible—namely to be able to be turned inside-out-such that all sides of the members are usable. Moreover, cleaning members 22, 122, 222 are preferably washable—such as in a common residential or industrial washing machine.
As can be imagined, different cleaning tasks require different cleaning heads 20, 120, 220 configured for such tasks. Thus, the first cleaning head 20 is illustrated as a delicate duster for legit items such as figurines—where cleaning member 22 includes a small duster and with longer strands of microfibers. Conversely, second cleaning head 120 is illustrated as a crevice duster that is a thin flexible duster that allows cleaning member 122 to get between and under surfaces.
Accordingly and as described herein, versatile cleaning device 10 is configured to be easily configured for a number of different cleaning tasks and in a number of different positions. Device 10 allows the user to change and/or replace to cleaning head 20, 120, 220 and/or the cleaning member 22, 122, 222. Device 10 allows the user to change the first angle A1 between handle 12 and extension arm 16 via pivot assembly 18. Further, device 10 allows the user to secure handle 12 to an extension device for greater reach and cleaning range. Changing the angle A1 between handle 12 and extension arm 18—particularly when used in combination with the extension device—can allow for even greater reach and cleaning range, as well as allowing device 10 to be folded for easy and compact storage/shipping.
It should also be noted that the terms “first”, “second”, “third”, “upper”, “lower”, and the like may be used herein to modify various elements. These modifiers do not imply a spatial, sequential, or hierarchical order to the modified elements unless specifically stated.
While the present disclosure has been described with reference to one or more exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the disclosure without departing from the scope thereof. Therefore, it is intended that the present disclosure not be limited to the particular embodiment(s) disclosed as the best mode contemplated, but that the disclosure will include all embodiments falling within the scope of the appended claims.
This application claims the benefit of U.S. Provisional Application Ser. No. 62/154,649 filed Apr. 29, 2015, the contents of which are incorporated by reference herein.
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