Not applicable.
Not applicable.
Embodiments may relate generally to replacement lens cartridges directed to protective face and eyewear such as might be worn in the shipyard industry, but might be suitable for different types of construction sites where, for example, sandblasting/shot blasting is performed.
In order to build or repair ships, workers often have to crawl and work in very tight space (vessel, portal, etc.) where their protective equipment (for example a respirator) is subjected to grit rebound. Those rebounds will damage the lens of their respirator and blur their vision. Also, workers currently use a respirator that typically only provides a 4½ inch×2¾ inch flat field of view. This tunnel vision adds to the claustrophobic effect of their work environment. Plus, it requires more head movement from the worker to see where he is aiming with the blasting gun. Workers would benefit from a larger field of vision. Disclosed embodiments seek to provide one or more improvements to help workers in their difficult field, for example.
Aspects of the disclosure may include embodiments of a replaceable lens cartridge for use with a face mask comprising one or more of the following: a plurality of removable lenses; a carrier mounting the lenses in a stacked arrangement, wherein the stacked arrangement may comprise gaps between the lenses; and a plurality of gaskets located between the lenses in the stacked arrangement, wherein the gaskets may be operable to seal the gaps between the lenses. In an embodiment, the gaskets may comprise a shape corresponding approximately to an outline of the lenses and may be located in proximity to the edges of the lenses. In an embodiment, the gaskets may comprise an adhesive material that may attach securely to a back surface of a first lens and may seal to a front surface of a second lens. In an embodiment, the seal of the gaskets to the corresponding front surface of the second lens may be removable, such that when the first lens might be removed from the cartridge, the corresponding gasket that is attached to the back surface of the first lens may be completely removed as well and may remain attached to the back surface of the first lens. In an embodiment, when the first lens may be removed from the cartridge, the gasket may be completely removed from sealing with the front surface of the second lens, without leaving any portion of the gasket material on the front surface of the second lens. In an embodiment, each lens may comprise a plurality of catches and the carrier may comprise a corresponding plurality of catches to receive the catches of the lenses to form the stacked arrangement. In an embodiment, the plurality of catches on each lens may comprise at least four projections extending from the perimeter of the lens, and wherein the corresponding plurality of catches on the carrier may comprise a matching number of reliefs on the carrier, each relief receiving one of the projections.
In an embodiment, the carrier might further comprise a peripheral lip that may extend over perimeters of the lenses mounted in the stacked arrangement on the carrier, and the plurality of catches of the carrier may be formed in the peripheral lip of the carrier. In an embodiment, the carrier might further comprise a fixed lens underlying the lenses mounted in stacked arrangement on the carrier, and the lens cartridge might further comprise a gasket located behind the fixed lens operable to seal between the fixed lens of the carrier and the face mask. In an embodiment, the carrier might further comprise a plurality of mount catches for engagement with the face mask. In an embodiment, the face mask may comprise a base lens and the gasket located behind the fixed lens may seal between the fixed lens of the carrier and the base lens of the face mask. In an embodiment, the plurality of lenses and the fixed lens of the carrier may comprise a curved shape. In an embodiment, the curved shape of the lenses may allow for a field of vision of between about 100° and about 170°, and in an embodiment the gaskets may comprise a curved shape corresponding to the curved shape of the removable lenses and the fixed lens. In an embodiment, the plurality of lenses may be formed of molded polycarbonate plastic material.
Other aspects of the disclosure may include embodiments of a replaceable lens cartridge for use with a respirator face mask for use during blasting with grit comprising one or more of the following: a plurality of removable lenses formed of molded plastic; a carrier mounting the lenses in a stacked arrangement, wherein the stacked arrangement may comprise gaps between the lenses; and a plurality of gaskets located between the lenses in the stacked arrangement, wherein the gaskets may be operable to seal the gaps between the lenses sufficiently to prevent grit from entering between the lenses, wherein each gasket may comprise an adhesive material between a corresponding top lens and bottom lens, wherein the gasket may be affixed to a back surface of the top lens and may seal removably to a front surface of the bottom lens. In an embodiment, upon removal of the top lens from the cartridge, the corresponding gasket that may be attached to the back surface of the top lens may be completely removed and may remain affixed to the hack surface of the top lens, without leaving any significant portion of the gasket material on the front surface of the bottom lens. In an embodiment, the lens cartridge might further comprise a plurality of pull tabs, each tab corresponding to one of the lenses, wherein the tab may be centered on the lens and attached to the lens to allow for removal of the lens from the carrier when the tab is pulled, wherein each lens may include a recess underlying the pull tab to receive the pull tab and prevent unwanted interference between the pull tab and any adjacent lens. In an embodiment, the gaskets may comprise a shape corresponding approximately to a perimeter outline of the lenses which includes a notch to avoid interference with the pull tabs.
These and other features will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings and claims.
For a more complete understanding of the present disclosure, reference is now made to the following brief description, taken in connection with the accompanying drawings and detailed description, wherein like reference numerals represent like parts.
It should be understood at the outset that although illustrative implementations of one or more embodiments are illustrated below, the disclosed systems and methods may be implemented using any number of techniques, whether currently known or not yet in existence. The disclosure should in no way be limited to the illustrative implementations, drawings, and techniques illustrated below, but may be modified within the scope of the appended claims along with their full scope of equivalents.
The following brief definition of terms shall apply throughout the application:
The term “comprising” means including but not limited to, and should be interpreted in the manner it is typically used in the patent context;
The phrases “in one embodiment,” “according to one embodiment,” and the like generally mean that the particular feature, structure, or characteristic following the phrase may be included in at least one embodiment of the present invention, and may be included in more than one embodiment of the present invention (importantly, such phrases do not necessarily refer to the same embodiment);
If the specification describes something as “exemplary” or an “example,” it should be understood that refers to a non-exclusive example;
The terms “about” or approximately” or the like, when used with a number, may mean that specific number, or alternatively, a range in proximity to the specific number, as understood by persons of skill in the art field; and
If the specification states a component or feature “may,” “can,” “could,” “should,” “would,” “preferably,” “possibly,” “typically,” “optionally,” “for example,” “often,” or “might” (or other such language) be included or have a characteristic, that particular component or feature is not required to be included or to have the characteristic. Such component or feature may be optionally included in some embodiments, or it may be excluded.
According to one feature, a replacement lens cartridge 10 is made from molded plastic (for example, polycarbonate, TPU, acrylic, etc.), preferably suitable for optic purposes. Because of the process and material, the cartridge 10 offers a cost effective system compared to conventional products. Furthermore, the density of resins, such as polycarbonate, is half of the glass density which brings down the weight considerably in comparison to conventional products.
With reference to
As seen in
The carrier 20 holds the stack of lenses 22 together and provides means to attach the cartridge 10 on the respirator 14. Its also the last layer of protection of the cartridge 10 with a fixed lens 33. As best seen in
As best seen in
As best seen in
As best seen in
As best seen in
When the lenses 22 are placed into the carrier 20, the bottom tooth 52 on each lens 22 will snap into the blade 48 of the carrier bridge portion 46, with each lens 22 having its own opening 50 in the blade 48. As illustrated by the horizontal dashed lines in
As with the prior described embodiments, the embodiment of
As with the prior described concepts, the concept is to make the replacement lens cartridge 10 with molded plastic (for example, polycarbonate, TPU, acrylic, etc.) suitable for optic purposes. Because of the process and material, this concept is also a cost effective system. Density of resins, such as polycarbonate, is half of the glass density which brings down the weight considerably.
The embodiment of
As with the prior embodiments, the cartridge 10 comprises a carrier 20 and multiple disposable lenses 22 (typically 3 or 4 such lenses). Because the cartridge 10 is molded, the lenses 22 are no longer limited by flat surfaces, and may be cylindrical lens, spherical lens or tonic lens. With those curvatures its possible to offer more peripheral view. For example, in one embodiment, the curved shape of the lenses 22 may allow for a field of vision of between about 100° and about 170°.
While each lens inside the carrier 20 can be identical, if overwhelming distortion occurs by stacking the lenses 22 it would be possible to make each of them slightly different to correct distortion made by the previous lens 22 in the cartridge 10. More specifically, as best seen in
As best seen in
As best seen in
As best seen in
The gaskets 150 may be designed such that when the first removable lens 22a is removed from the cartridge 10, the corresponding gasket 150 remains attached, affixed or adhered to the first lens 22a and is completely released from the seal with the second lens 22b and may in some embodiments release the seal with the second lens 22h substantially without any residue, adhesive, or gasket material remaining on the surface or edge of the second lens 22b. Similarly, the gasket 151 may be attached or adhered to the back edge or surface of the fixed lens 33 of the carrier 20 and may be designed such that a seal is formed between the fixed lens 33 and the base lens 26 of the face mask 12, while allowing for the gasket 151 to be removed along with the removable cartridge 10 when necessary. In other words, when the cartridge 10 (and therefore the carrier 20) is removed from the face mask 12, the gasket 151 may remain attached to the carrier 20 and be completely released from the seal with the base lens 26 and in some embodiments may release the seal without any residue, adhesive, or gasket material remaining on the surface or edge of the base lens 26.
In one embodiment, the gaskets 150 and 151 may comprise the same material or different materials, and in one embodiment the gaskets 150 and 151 may comprise a gasket material provided by Dymax™ GA-105. In an embodiment, the material of the gasket may comprise a soft, sticky material, for example an adhesive, and may in some embodiments comprise acrylated urethane, which may have the appearance of a clear translucent gel. In an embodiment where the gasket material may be uncured (that is before the gasket shape is formed) the material may have a density of about 1 g/mL, and may have a nominal viscosity of about 40,000 cP. As used herein, cured means solidifying material by exposing it to heat, air, time, or UV rays, for example. In an embodiment, the gasket material may reach a cured state by exposure to visible and/or UV light, and the cured gasket material may have hardness of about 70 Durometer and modulus of elasticity of about 0.2 MPa. When cured and in place on the lens, the gasket material may comprise a tackiness that allows for removal of the gasket with the first lens (such that the gasket is securely attached or affixed to the hack surface of the first lens) without leaving residue or gasket material on the second lens. The gasket material may also comprise a thickness of about 0.05 to 0.1 inch when in place on the lens, wherein the thickness may measure the distance the gasket extends from the surface of the lens, and the gasket material may comprise a width of about 0.05 to 0.1 inch when in place on the lens.
In one embodiment, an adhesive may be used between the gasket 150 and the back edge or surface of the lenses 22a, 22b, and 22c to ensure that the gasket remains adhered to the first lens 22a when it is removed and does not remain sealed to the second lens 22b, and similarly to ensure that the gasket remains adhered to the second lens 22h when it is removed and does not remain sealed to the third lens 22c, etc. In another embodiment, the material of the gasket 150 may be adhesive itself, typically with one side (i.e. the side in contact with the back edge or surface of the lens 22a, 22b, and 22c) having a higher adhesive property/quality than the other side of the gasket 150, allowing for complete removal of the gasket 150 with the lens 22a, 22b, and 22c. Similarly, the material of the gasket 151 may be designed such that one side (i.e. the side in contact with the back edge or surface of the fixed lens 33 of the carrier 20) has higher adhesive property/quality than the other side of the gasket 151, allowing for complete removal of the gasket 151 with the fixed lens 33 of the carrier 20. In some embodiment adhesive gasket may form a secure attachment to the first (or top) lens by being place on the first lens and cured before the gasket contacts the second (or bottom) lens. By curing the adhesive gasket material prior to contact with the second lens, a removable seal may be formed between the gasket and the second lens (while the gasket is securely affixed to the first lens).
In an embodiment shown in
Alternative embodiments of means for sealing between the sacrificial lenses (to minimize entry of grit between lenses while allowing each lens to be removed as needed, for example with gloved hand(s)) may be understood by persons of interest based on the disclosure herein. For example, rather than (or in addition to) using adhesive gasket(s) between lenses, overmolding and/or two shot molding of rubber-like material on the lenses might be used, a d/or overmolding and/or two shot molding of rubber-like material on the magazine (cartridge) might be used. These and other sealing means may be available for specific embodiments.
Another embodiment of the disclosure may comprise a method of making or assembling a removable lens cartridge comprised of removable lenses, wherein a plurality of lenses may be provided, wherein the lenses may be formed of molded polycarbonate plastic material. Gasket material may then be placed on the back surface of each of the plurality of lenses, and may be cured (for example using visible and/or UV light) such that the gasket material becomes affixed to the back surface of each of the removable lenses. The material of the gasket may be such that, after the material is cured it remains sticky or tacky enough to form a seal with another surface, such as that of another lens. In an embodiment, the placing of the gasket material on the back surface of the lenses may be performed automatically, such as by a robot for example. Additionally, a carrier may be provided operable to hold the plurality of removable lenses in a stacked arrangement, wherein the carrier may comprise a fixed lens and may be at least partially formed of molded polycarbonate plastic material. After the gasket material is placed on the back surface of the removable lenses and is cured, the lenses may be placed in the stacked arrangement within the carrier. In an embodiment, a first removable lens may be placed within the carrier, and the gasket material affixed to the back surface of the removable lens may contact the front surface of the fixed lens of the carrier and may form a seal between the fixed lens and the removable lens. Then, a second removable lens may be placed within the carrier and the gasket material affixed to the back surface of the second removable lens may contact the front surface of the first removable lens and may form a seal between the two removable lenses. This method may be repeated until the carrier holds the number of removable lenses it is designed to hold (typically three or four lenses), wherein each of the plurality of removable lenses located within the carrier may be sealed to one another with the gasket material. In an alternative embodiment, the lenses may all be attached to one another, creating seals between each of the lenses, and then placed within the carrier. Additionally, gasket material may be placed on the back surface of the fixed lens of the carrier and cured so that the gasket material becomes affixed to the back surface of the fixed lens. The carrier may then be placed on a face mask of a respirator, wherein the face mask may comprise a base lens, and a seal may be formed between the front surface of the base lens of the face mask and the back surface of the fixed lens of the carrier.
While various embodiments in accordance with the principles disclosed herein have been shown and described above, modifications thereof may be made by one skilled in the art without departing from the spirit and the teachings of the disclosure. The embodiments described herein are representative only and are not intended to be limiting. Many variations, combinations, and modifications are possible and are within the scope of the disclosure. Alternative embodiments that result from combining, integrating, and/or omitting features of the embodiment(s) are also within the scope of the disclosure. Accordingly, the scope of protection is not limited by the description set out above, but is defined by the claims which follow, that scope including all equivalents of the subject matter of the claims. Each and every claim is incorporated as further disclosure into the specification and the claims are embodiment(s) of the present invention(s). Furthermore, any advantages and features described above may relate to specific embodiments, but shall not limit the application of such issued claims to processes and structures accomplishing any or all of the above advantages or having any or all of the above features.
Additionally, the section headings used herein are provided for consistency with the suggestions under 37 C.F.R. 1.77 or to otherwise provide organizational cues. These headings shall not limit or characterize the invention(s) set out in any claims that may issue from this disclosure. Specifically and by way of example, although the headings might refer to a “Field,” the claims should not be limited by the language chosen under this heading to describe the so-called field. Further, a description of a technology in the “Background” is not to be construed as an admission that certain technology is prior art to any invention(s) in this disclosure. Neither is the “Summary” to be considered as a limiting characterization of the invention(s) set forth in issued claims. Furthermore, any reference in this disclosure to “invention” in the singular should not be used to argue that there is only a single point of novelty in this disclosure. Multiple inventions may be set forth according to the limitations of the multiple claims issuing from this disclosure, and such claims accordingly define the invention(s), and their equivalents, that are protected thereby. In all instances, the scope of the claims shall be considered on their own merits in light of this disclosure, but should not be constrained by the headings set forth herein.
Use of broader terms such as comprises, includes, and having should be understood to provide support for narrower terms such as consisting of, consisting essentially of, and comprised substantially of. Use of the term “optionally,” “may,” “might,” “possibly,” and the like with respect to any element of an embodiment means that the element is not required, or alternatively, the element is required, both alternatives being within the scope of the embodiment(s). Also, references to examples are merely provided for illustrative purposes, and are not intended to be exclusive.
While several embodiments have been provided in the present disclosure, it should be understood that the disclosed systems and methods may be embodied in many other specific forms without departing from the spirit or scope of the present disclosure. The present examples are to be considered as illustrative and not restrictive, and the intention is not to be limited to the details given herein. For example, the various elements or components may be combined or integrated in another system or certain features may be omitted or not implemented.
Also, techniques, systems, subsystems, and methods described and illustrated in the various embodiments as discrete or separate may be combined or integrated with other systems, modules, techniques, or methods without departing from the scope of the present disclosure. Other items shown or discussed as directly coupled or communicating with each other may be indirectly coupled or communicating through some interface, device, or intermediate component, whether electrically, mechanically, or otherwise. Other examples of changes, substitutions, and alterations are ascertainable by one skilled in the art and could be made without departing from the spirit and scope disclosed herein.
This application is a Continuation-in-Part of PCT application Ser. No. PCT/US2011/044229, filed Jul. 15, 2011 and entitled Replacement Lens Cartridge, which is related to and claims the benefit of the filing date of U.S. Provisional Patent Application Ser. No. 61/365,149, filed Jul. 16, 2010 and U.S. Provisional Patent Application Ser. No. 61/465,422, filed Mar. 18, 2011, all of which are hereby incorporated by reference as if reproduced in their entirety. This application claims priority to India Provisional Application Serial No. 3292/DEL/2012, filed Oct. 25, 2012 in the India Patent Office and entitled “Replacement Lens Cartridge”, hereby incorporated by reference as if reproduced in its entirety. This application is a continuation in part of U.S. patent application Ser. No. 13/683,013, entitled “Abrasive Blast Respirator”, filed Nov. 21, 2012 in the U.S. Patent Office, which is incorporated herein by reference in its entirety to the extent it does not conflict with this disclosure.
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Entry |
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PCT/US2011/044229; International Preliminary Report on Patentability and Written Opinion; Jan. 22, 2013; 6 pages. |
Number | Date | Country | |
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20130081615 A1 | Apr 2013 | US |
Number | Date | Country | |
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61365149 | Jul 2010 | US | |
61465422 | Mar 2011 | US |
Number | Date | Country | |
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Parent | PCT/US2011/044229 | Jul 2011 | US |
Child | 13683661 | US | |
Parent | 13683013 | Nov 2012 | US |
Child | PCT/US2011/044229 | US |