Hearing Protection Devices And Attenuation Button For Same
20200375801 ยท 2020-12-03
Assignee
Inventors
- Blaise Delfino (Bethlehem, PA, US)
- Gregory Delfino (Bethlehem, PA, US)
- Kevin Skeuse (Stockton, NJ, US)
- Paul Dowd (Scarsdale, NY, US)
Cpc classification
International classification
Abstract
A manually, selectively attenuating earplug button is disclosed, for insertion into a cavity of an earplug of a hearing protection device. The earplug button comprises a nested configuration of a first housing member (including a first opening to receive sound from an ambient environment) and a second housing member, surrounding the first housing member and including a second opening to output at least a portion of the sound passing through an audio channel located between said first and second openings. The first and second housing members include sidewall apertures for permitting a wearer to manually adjust the amount of sound admitted to the wear's ear from said ambient environment by rotating the first housing member (and thus its sidewall aperture) with respect to the second housing member.
Claims
1. A manually-adjustable earplug button comprising a first cylindrical housing member including a first opening formed along a longitudinal central axis and at least one first aperture formed through a sidewall thereof, the first opening defining an input audio port, providing an inner chamber of an audio channel in combination with the at least one first aperture; and a second cylindrical housing member disposed to surround the first cylindrical housing member so as to form a nested configuration while providing a gap to allow for the first cylindrical housing member to freely rotate within the second cylindrical housing member, the second cylindrical housing member including at least one second aperture formed through a sidewall thereof, wherein an overlap between the least one first and second apertures forms an outer chamber of the audio channel terminating at a second opening, the audio channel manually adjustable by rotation of the first cylindrical housing member to adjust an amount of overlap between the at least one first aperture and the at least one second aperture.
2. The earplug button as defined in claim 1 wherein the earplug button further comprises a turning knob disposed on a top surface of the first cylindrical housing member, said turning knob having a textured surface to promote manual rotation of the first cylindrical housing member within the second cylindrical housing member.
3. The earplug button as defined in claim 1 wherein the second cylindrical housing member includes a plurality of gripping members formed on an outer surface thereof, the plurality of gripping members engaging with a surrounding earplug to maintain stationary position of the second cylindrical housing member during manual rotation of the first cylindrical housing member.
4. The earplug button as defined in claim 1 wherein the first cylindrical housing member and the second cylindrical housing member are formed of materials selected from the group consisting of: nylon, polystyrene, polypropylene, polyethylene, and thermoplastic.
5. The earplug button as defined in claim 1 wherein the at least one first aperture has a tapered top edge to provide overlap control with the at least one second aperture, creating multiple levels of attenuation adjustment.
6. The earplug button as defined in claim 1 wherein the second cylindrical housing members includes a bottom horizontal surface for supporting a lower termination of the first cylindrical housing member.
7. The earplug button as defined in claim 1 wherein the at least one first aperture comprises a pair of first apertures formed in opposition to one another and the least one second aperture comprises a pair of second apertures formed in opposition to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings illustrate preferred embodiments of the invention as well as other information pertinent to the disclosure, in which:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION
[0031] The present disclosure provides a selectively attenuating earplug button that can be used with prefabricated foam, rubber, silicone or custom-made molded soft resilient earplugs. The preferred earplug button may be adjusted between multiple operating modes to alter the performance of the earplug. The selective attenuating earplug button provides, in a first embodiment, at least a first setting that allows sound having a specified frequency or intensity to pass to the ear canal of a wearer with little or no attenuation, and a second setting providing a maximum level of attenuation across a certain frequency and/or intensity range, and one or more intermediate (or even an infinite number of) settings that permit varying degrees of attenuation of sounds in a different frequencies or intensity ranges. The selective capability of the earplug button of this embodiment allows a wearer to dial-in the degree of desired sound attenuation depending on the current environment surround the wearer. A selective attenuation setting may be selected when a wearer desires to hear speech or warning signals in a noisy environment, for example, while still being protected from dangerous noises. Such a setting may be particularly desirable when the noisy environment includes loud concert music, aircraft or motor racing noises, and the like. A maximum attenuation setting may be selected to minimize most sounds throughout the frequency range from entering an ear canal, regardless of the intensity.
[0032] With reference to the figures and in particular, to
[0033] The earplug button 100 includes an audio channel located between the first opening 13 and the second opening or openings 22. The audio channel includes an inner chamber, shown for example as inner chamber 23 and an outer chamber, or chambers 25, disposed generally along the longitudinal central axis 11.
[0034] The earplug button 100 further includes a first housing member 19 and a second housing member 12 which are preferably coaxially connected together, as shown in
[0035] The first housing member 19, as shown in
[0036] Finally, the preferred earplug button 100 includes a sound attenuation turning knob 15 shown in
[0037] Also in
[0038] In order to provide relative axial rotation between the first housing member 19 and the second housing member 12, it is desirable to prevent the rotation of the second housing member 12 after it is inserted into the earplug 45. This can be accomplished by sidewall indents 20, shown in
[0039] In a further embodiment of the present invention as shown in
[0040] In a further preferred embodiment of the present invention, the first housing teeth or tooth 18 and second housing teeth 28 of
[0041] The earplug button 100 of the present invention preferably includes only two components, the first housing member 19 and second housing member 12, although three or more could also be used. They are preferably injection molded thermal plastic components, but they could easily be made out of metal or ceramic components and made with conventional manufacturing processes. The earplug buttons 100 are designed in a preferred embodiment, to be inserted into an earplug 45 which can be of a conventional design, quite often molded to the shape of the ear of the wearer. Such molding techniques are known in the relevant art and any suitable conventional molding technique may be used to produce the earplug button 100 of the present invention. The earplug button 100 may be manufactured by using the procedures and details disclosed in U.S. Pat. No. 4,867,149, and preferably the earplug button 100 is composed of the same polymeric material, such as nylon, polystyrene, polypropylene, polyethylene, or suitable low cost thermoplastic material.
[0042] In some embodiments, the attenuating earplug buttons 100 may be incorporated into hearing protection kits, such as those including resilient foam or silicone or rubber earplugs. In such applications, the earplug button 100 is inserted into resilient earplugs 45 as shown in
[0043] As shown in
[0044] These compounds can be thermally formed into intricate shapes by any conventional thermoplastic molding technique, or poured into a mold made from a cast of a patient's ear. Earplugs produced can generally be sterilized or cleansed without degradation thereof.
[0045] In a preferred embodiment, earplug buttons 100 work better if installed in a more rigid, but still comfortable, earplug, e.g., having a Shore A hardness, such as a molded, custom-made silicone earplug, or a tiered silicone cone shaped earplug. Alternatively, if the earplug buttons 100 are installed in normal colored-foam compressible foam earplugs, the wearer won't be able to compress the earplugs fully to insert them deeply into their ears, so he or she may have to try inserting the earplugs into his or her ears multiple times to get the right fit, and feel when they're seated properly. The preferred earplug 45 has a molded cavity therein sized for receiving an earplug button 100 having sound attenuation control capability. The cavity or recess can vary from about 0.125 to about 1 in diameter and or depth, and can be molded around the earplug insert 100. Preferred buttons 100 can be glued, molded into, or unglued and inserted into the cavity of the earplug 45. If merely inserted, they are completely transferable to different foam or silicone plugs if desired. To minimize fall out, the buttons 100 can be made to frictionally fit within the earplug 45. To insert the button 100, the wearer can stretch the back of the earplug 45 and re-insert it.
[0046] If the earplug 45 is molded over the button 100, the hard plastic of the button 100 can be made to have a melt or adhesive bond with the earplug 45, or no bond at all. Over-molding manufacturing processes can be used so that the interface between these components can include one or more interlocking inner and outer wall extended and impressed surfaces which, for example, can be formed by the impressions of sidewall indents 20, or a recessed rim around the earplug button 100 and matching extensions or a ring on the inside wall of the earplug 45 (not shown). Other shapes other that those shown could be used, and the earplug cavity could have impressions itself molded to receive extended surfaces of the earplug button 100, instead. The idea of selectively mechanically locking the earplug 45 and earplug button 100 together can be accomplished in many different ways, including using friction alone, threads, and/or a mechanical lock and/or adhesive, so long as the resulting effect is to restrain the earplug button 100 so that it can be manually adjusted by the wearer without substantially moving it within the earplug 45.
[0047] In some embodiments, the attenuating earplug buttons 100 may include multiple attenuator buttons 100 each having the same maximum attenuation which may be used as replacements or backups. In other embodiments, the plurality of buttons 100 may include an assortment of different attenuator valves (such as, the valve of the preferred button 100, a conical pin valve with a conical mating seat; a compressible sound attenuation media which attenuates more sound as it is compressed and becomes denser, and/or button filters). The valves and optional filters can have different maximum attenuations such as 9, 15, or 25 dB of attenuation, or multiple settings, such as 9, 15, or 25 dB settings within a single button 100 (which can made to further vary over portions of typical hearing frequencies), or set attenuation increments of 2 dB, per click or set rotation of the turning knob 15, so that a wearer can select the amount of protection needed based on expected exposure to noises or loud environmental sounds, on-the-fly, without having to take out the earplugs 45.
[0048] It is often desirable to provide a pair of earplugs tethered together by means of a length of cord, rope or tether. A combination of two sets of earplug buttons 100 and earplugs 45 can be joined together similarly. Such a tethered earplug construction can serve to prevent accidental dropping or loss. This can be useful, for instance, where the earplugs 45 are to be utilized in an industrial food processing environment or in an environment where a dropped earplug 45 or button 100 would likely be contaminated so as to be rendered unusable or lost altogether.
[0049] The buttons 100 are compatible with the left and right ears, and turn in opposite directions (clockwise and counterclockwise) for opening and closing the audio channel. Alternatively, the buttons 100 can be made so that they both operate in a clockwise or counterclockwise direction, designating one button for the right ear and one button for the left ear.
[0050] From the foregoing, it can be realized that this invention provides improved earplug buttons 100 which provide the wearer with interchangeability between, disposable foam, molded or hollowed out conventional or custom earplugs for hearing protection devices. The earplug buttons can have a more inexpensive construction than former devices, and a greater number of attenuation settings. Although various embodiments have been illustrated, this is for the purpose of describing but not limiting the invention. Various modifications which will become apparent to one skilled in the art, are within the scope of this invention described in the attached claims.