Disposable face masks are widely used in the medical field. Healthcare personnel and patients alike benefit from the protection afforded by face masks. As such, face masks are commonly worn by healthcare personnel as well as patients in connection with a multitude of procedures ranging from surgery to non-surgical examinations.
In light of the above, substantial efforts have been made to improve upon face mask material(s) as well as overall construction or structure. As a result, a plethora of differently-configured face masks are currently available, many of which are specifically designed to address requirement(s) of a particular procedure and/or user. For example, depending upon the malady or maladies afflicting a particular patient (e.g., immune system deficiencies, highly communicable virus, etc.), the best suited face mask is characterized by more rigorous filtering of airborne contaminants as compared to acceptable face mask material(s) for less demanding situations. Other performance characteristics commonly addressed by different face mask designs include breathability and heat protection to name but two Similarly, a particular user may desire a face mask having a size and/or shape differing from other available face masks (e.g., smaller-sized face masks are more appropriate for small patients, such as children, whereas larger-sized face masks are generally preferred by adult users).
While performance and wearability characteristics of medical face masks have greatly improved over time, the manner in which face masks are packaged and presented to healthcare personnel has remained substantially unchanged. In general terms, healthcare facilities typically purchase face masks in bulk form, and greatly desire to have numerous face mask styles (in terms of performance characteristics, size, shape, etc.) on hand at all times. To meet these needs, face mask manufacturers typically package a number of identical face masks into a single cardboard box or similar paper-based, rigid container. Thus, each style of face mask is purchased and stored by the healthcare facility in a separate box. In light of the wide variety of different face mask styles normally desired to be on hand, then, the healthcare facility will at all times have a large number of boxed face masks in inventory. To promote ease of access, at least one box of each face mask style is temporarily stored at locations nearby areas where procedures are typically performed (e.g., on shelving, within a cabinet, under a desk, etc.).
While well accepted, the above approach can be problematic for the healthcare facility and its personnel. For example, where a number of boxes of different face mask styles are randomly placed in a temporary storage area, healthcare personnel oftentimes are required to waste time searching through all of the boxes when looking for the desired face mask style. Along these same lines, after searching through multiple boxes, the healthcare personnel may forget to neatly replace the boxes in the storage area, leading to an unkempt appearance. Healthcare facilities, on the other hand, greatly prefer that all areas remain tidy so as to enhance a patient's confidence in the level of care being received. Further, the face mask boxes may be accidentally dropped or exposed to contaminants in the storage area, especially when other face mask boxes in the storage area are repeatedly moved. This is especially true for a box of less commonly used face mask style that may otherwise remain in the storage area for extended periods of time.
In light of the above, a need exists for improved face mask packaging, dispensing systems, and methods of dispensing face masks.
Benefits achieved in accordance with principles of the disclosed invention include an improved face mask dispensing system that facilitates removal of individual masks by a user; facilitates replacement of stacked masks through the use of face mask package units that can be easily replaced in the dispenser; and/or afford the advantage of multi-compartmentalizing different kinds of face masks within a single dispenser site. It has been discovered that such dispensing systems can be constructed having these desirable features simultaneously, and yet is of relatively simple and easy construction that can also easily be installed. Other benefits include providing user with a flexible or “soft” face mask package unit that is convenient to store, and promotes face mask sterility and single mask dispensing.
Some aspects of the disclosed invention relate to a method of packaging and dispensing a plurality of face masks. The method includes providing a first package unit including a plurality of stacked face masks and a containment body. The containment body includes a top wall forming a passage, and is sized to contain the plurality of stacked face masks therein. In this regard, the plurality of face masks includes a top-most face mask that is otherwise positioned adjacent the top wall. With this in mind, the first package unit is inserted into a first compartment of a dispenser housing that otherwise includes a front panel forming a slot corresponding with the first compartment. With this configuration, upon insertion of the first package unit within the first compartment, the passage of the containment body is accessible via the slot in the front panel of the dispenser housing. The top-most face mask is then removed or dispensed from the package unit through the slot in the front panel and the passage in the containment body. With this technique, the plurality of stacked masks can be stored in a location that is conveniently accessible by users. In some embodiments, two or more different face mask package units are stored in corresponding compartments of the dispenser housing, with the method further including visually discerning one stored package unit from another in selecting a desired face mask for dispensement. In other embodiments, upon insertion of the package unit into the dispenser housing compartment, the package unit is urged toward the front panel to promote consistent dispensement of a face mask from the corresponding package unit.
Other aspects in accordance with principles of the present disclosure include a face mask dispensing system including a package unit and a dispenser housing. The package unit includes a plurality of stacked face masks disposed within a containment body. The containment body includes a top wall forming a passage through which the plurality of face masks are accessible. The dispenser housing includes a front panel and forms a compartment. Further, the front panel defines a slot that is associated with the compartment. Upon assembly of the package unit within the compartment, the top wall of the containment body is adjacent the front panel of the dispenser housing, and the passage is aligned with the slot. With this configuration, the stack of face masks is accessible from an exterior of the housing via the slot and the passage. In some embodiments, a size of the slot in the front panel is greater than a size of the passage in the containment body, and is less than a size of the top wall of the containment body. With this configuration, the front panel resists dislodgement of the package unit from the compartment upon application of a pulling force to a top-most face mask of the package unit during a dispensing procedure. In other embodiments, a depth of the compartment is greater than a depth of the package unit, and the dispenser housing further includes a biasing device for urging the package unit toward the front panel upon final assembly.
Yet other aspects in accordance with principles of the present disclosure relate to a package unit of face masks including a plurality of stacked face masks and a flexible containment body containing the face masks. The containment body includes top, side, and bottom walls each formed of a flexible film. Further, the top wall includes a passage through which a top-most face mask is accessible. With this configuration, the flexible containment body facilitates use of the package unit within a dispenser housing that otherwise includes a biasing device acting upon the bottom wall; for example, the flexible nature of the containment body promotes translation of a biasing force applied to the bottom wall directly onto the contained stack of face masks. In some embodiments, the package unit further includes a lid removably attached to the containment body and extending across the passage. In yet other embodiments, the lid is flexible, and serves to seal the face masks within the containment body so as to maintain a sterility of the face masks. In yet other embodiments, the flexible containment body, including the top wall, is substantially translucent such that a dominant color associated with the contained face masks is visually perceptible from an exterior of the containment body.
One embodiment of a face mask dispensing system 20 in accordance with principles of the present disclosure is shown in exploded form in
The plurality of stacked face masks 40 is comprised of two or more of the individual face masks 30 (illustrated generally in
The containment body 40 can also assume a variety of forms, and includes or is defined by a top wall 50, a bottom wall 52, and side walls 54 (referenced generally in
Regardless, in some embodiments, the film material selected for one or more of the walls 50-54 is substantially translucent (e.g., sufficiently transparent such that a color of an article contained within the containment body 42 can be visually perceived through the wall(s) 50-54). In this regard, one or more of, and in some embodiments all of, the walls 50-54 are substantially translucent. For example, in other embodiments, only the top wall 50 and the bottom wall 52 are substantially translucent.
The flexible containment body 42 can be constructed in a variety of manners, and in some embodiments includes the bottom and side walls 52, 54 being simultaneously formed from a first film web, whereas the top wall 50 is separately formed from a second film web and subsequently assembled to the formed bottom and side walls 52, 54. Any suitable film forming process(es) can be employed (e.g., blown film, film extrusion, etc.), and can result in the combined bottom and side walls 52, 54 having an integral, contiguous form that defines a pocket (unnumbered) for receiving the stack of face masks 40. With this but one acceptable technique, the separately formed top wall 50 can then be assembled to the side walls 54 (following placement of the plurality of stacked face masks 40 within the pocket) in a variety of known fashions, for example shaping the side walls 54 to terminate in a shoulder or flange to which the top wall 50 is secured (e.g., heat seal, adhesive, RF weld, etc.). In some embodiments, the top wall 50 is sealed to the side walls 54. Alternatively, a wide variety of other manufacturing techniques are also available; for example, the each of the various walls 50-54 can be separately formed and subsequently assembled. Further, in other embodiments, the containment body 42 can have other shapes and can include additional features and/or walls.
Regardless of the particular material(s) selected for the containment body 42 and the method of manufacture thereof, the top wall 50 forms a passage 56 for selectively dispensing a contained face mask. The passage 56 can assume a variety of shapes and sizes, and in some embodiments is a slit cut formed through the top wall 50. As should be evident from
The lid 44 is an optional component of the face mask package unit 22. Where provided, the lid 44 is releasably secured to the containment body 42, and in particular extends across, or covers, the passage 56. In some embodiments, the lid 44 is formed of a thin film material conducive for sealing to the top wall 50 (that can otherwise be a film material) via suitable technique (e.g., heat seal, adhesive, RF welding, etc.). With this approach, then, where the containment body 42 is formed of a film material, the plurality of face masks 40 can be sterilized prior to, or after, placement within the bottom wall 52/side walls 54 pocket, and the top wall 50 and the lid 44 sealed thereto, with the containment body 42 and the lid 44 combining to maintain a sterility of the contained plurality of face masks 40 prior to removal of the lid 44. Regardless, assembly of the lid 44 to the containment body 42 is such that that lid 44 can readily be removed by a user (as described below) to thus uncover the passage 56, thereby affording access to the contained stack of face masks 40.
The face mask package unit 22 is shown in final form (and prior to use) in
With the one embodiment of
While the face mask package unit 22 can be provided to a user without the lid 44, in other embodiments where the lid 44 is included, the package unit 22 can further include additional features to enhance a sterility of the individual face masks 30 following removal of the lid 44. For example, and with reference to
Returning to
The dispenser housing 24 can assume a variety of different sizes (e.g., height, width and/or depth) as desired, and can define any number of compartments 28. Thus, and with additional reference to
To facilitate insertion of the package unit 22 into a respective one of the compartments 28, the dispenser housing 24 can form a fill opening 82 (referenced generally) to each compartment 28 at a side 84 of the housing 24. The fill openings 82 can be permanently open as shown in the
As should be evident from
In addition to providing the dispensing slots 32, in some embodiments the front panel 26 is configured to facilitate viewing of the face mask package unit 22 otherwise loaded into a respective one of the compartments 28. For example, the front panel 26 can be formed of a rigid, yet substantially transparent material (e.g., clear plastic, glass, etc.) at least in a region of each of the slots 32. With this configuration, and in combination with the one embodiment in which at least a portion of the containment body 42 (
The rear panel 70 also forms a portion of each of the compartments 28 in extension between the top and bottom panels 72, 74. In some embodiments and with reference to
Finally, and as shown in
The face mask dispensing system 20 is shown in final, assembled form in
Once inserted into one of the compartments 28, the corresponding biasing device 80 urges the package unit 22 toward the front panel 26. For example, the first biasing device 80a bears against the bottom wall 52 (referenced generally) of the first package unit 22a, thus urging the first package unit 22a toward the front panel 26. In this regard, due to a flexible nature of the containment body 42 in accordance with some embodiments (e.g., where the containment body 42 is a film), the biasing or urging force generated by the biasing device 80 is translated directly onto the contained stack of face masks 40. Thus, regardless of whether the stack of face masks 40 completely “fills” an available volume of the corresponding containment body 42, a top-most face mask (referenced at 30a in
With reference to
With embodiments in which two or more of the inserted face mask package units 22 have differently-styled face masks 30 (e.g., the face masks 30a of the first package unit 22a exhibit a first breathability characteristic and the face masks 30b of the second package unit 22b exhibit a second breathability characteristic differing from the first), the user 100 can, prior to dispensing a face mask, visually determine which of the various compartments 28 contains the particular face mask style desired by the user 100. For example, the face masks 30a of the first package unit 22a (and thus of the first compartment 28a) can have a first dominant color otherwise indicative of the first breathability characteristic, and the face masks 30b of the second package unit 22b (and thus of the second compartment 28b) can have a second dominant color otherwise indicative of the second breathability characteristic (with the first and second dominant colors being different). Through experience and/or by reference to a guide chart, the user 100 will understand the correlation between color and breathability characteristic. Thus, prior to removing a particular face mask, the user 100 can first evaluate the breathability characteristic required or otherwise indicated by the procedure to be performed. With this information in mind, the user 100 can then visually perceive the dominant color associated with the face masks 30 in each of the compartments 28 (e.g., viewing through the front panel 26 and/slot 32, as well as the top wall 50 of each of the package units 22, the user 100 can visually compare the dominant color of the first and second masks 30a, 30b), and make an appropriate selection. In this way, then, the user 100 is not required to remove each package unit 22 from the dispenser housing 24 prior to making a face mask selection.
Once the stack of face masks 40 from the corresponding package unit 22 has been depleted (or at other times as desired by the user 100), the package unit 22 can be removed from the dispenser housing 24 and replaced with a new package unit 22. For example, as shown in
The face mask packaging, dispensing systems and methods of dispensing face masks in accordance with aspects of the present disclosure provide marked improvements over previous designs. By compartmentally storing differently-styled face masks in close relation to one another, health care personnel can consistently, and quickly, find a desired face mask for a particular procedure. Further, the face mask package units are neatly stored and not unduly exposed to possible contamination. In other embodiments, the flexible containment body (e.g., “soft” puck) presents a marked improvement over conventional cardboard box face mask packaging, and can be employed to maintain face mask sterility.
Although the present invention has been described with reference to preferred embodiments, workers skilled in the art will recognize that changes can be made in form and detail without departing from the spirit and scope of the present invention. For example, while the dispenser housing has been described in connection with face mask package units otherwise incorporating a flexible containment body (e.g., a film-based containment body structure), in other embodiments, more conventional face mask packaging can be employed. Conversely, the face mask package unit with flexible containment body is highly useful and unique as a standalone article, such that the dispenser housing is not required.
This application claims priority under 35 U.S.C. §119(e)(1) to U.S. Provisional Patent Application Ser. No. 60/719,298, filed Sep. 21, 2005, and entitled “Face Mask Dispensing System,” the entire teachings of which are incorporated herein by reference.
Number | Date | Country | |
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60719298 | Sep 2005 | US |