The present invention relates to fastening devices for jewelry, such as bracelets and necklaces, and, more particularly, is concerned with a magnetic jewelry attachment assembly.
Jewelry, such as bracelets and necklaces, typically include fastening devices, such as clasps, that affix one end of an open loop to another to close the loop. Elderly persons, as well as many others, with vision or dexterity issues, have a problem engaging and disengaging many jewelry clasps and thus have a particular need for clasps that will make an item of jewelry easier to put on and take off and still have an aesthetically pleasing appearance and be secure when worn.
Jewelry clasps incorporating magnet technology have been proposed to fill this need. One approach to providing a secure, easy to use, and aesthetically pleasing magnetic jewelry clasp is disclosed in U.S. Pat. App. Pub. No. 2003/0229974. The approach involves eliminating the usual mechanical clasp components and instead affixing magnetic clasp components to respective free ends of the band of the item of jewelry. Then, the magnetic clasp components are concealed within a housing affixed to one end of the jewelry band about one of the magnetic clasp components. The housing has an internal recess that is configured to accept the other free end of the band with the other of the magnetic components affixed to it. The housing internal recess is also configured to force the magnetic components into alignment where magnetic attraction occurs that connects them together. The housing may also be configured with external design features to give the aesthetic appearance of a clasp as well as incorporate a mechanical lock to supplement the magnetic lock.
However, the above-described approach introduces a drawback which limits its utility as a viable solution to the problem of providing a suitable magnetic jewelry clasp. The elimination of the original mechanical clasp components and their replacement by the magnetic clasp components directly attached to the jewelry band ends, together with a housing for hiding the new magnetic clasp components, would appear to limit application of this approach to new items of jewelry. It seems unlikely that owners of existing items of jewelry already having conventional mechanical clasps would find such a drastic modification acceptable.
Accordingly, there has been a long-standing, yet unmet, need for a jewelry attachment assembly in the art for an innovation that will overcome the drawbacks of the prior art and the problems that remain unsolved.
The present invention is directed to an innovation that overcomes the deficiencies of the prior art and the problems that remain unsolved by providing a jewelry attachment assembly. The jewelry attachment assembly includes a first case and a second case, both of generally cylindrical construction. The first case includes, at a mating end, a male section having an annular flange with a pair of diametrically opposite splines that extend in a radial direction. The second case includes, at a mating end, a female section having a hollow sleeve with a shell body that includes a pair of diametrically opposite channels formed in the shell. Each channel includes an axially-directed slot that interconnects with an associated circumferential-directed slot. In operation, the pair of splines are fitted in the pair of channels by first being displaced through a respective axial slot and then by traversing through a respective circumferential slot via a relative rotary movement between the cases. The registration of the pair of splines from the first case within the pair of channels of the second case facilitates a reversible locking engagement between the cases. The assembly is equipped with a pair of opposite polarity magnets housed within respective ones of the cases so that, in the assembled arrangement of the cases, the magnets are situated in close, adjacent proximity to one another to create a magnetic attraction between them that draws the cases together. The first case and the second case are fitted with fastening mechanisms at respective securing ends of the cases, which enable clasps located at free ends of an item of jewelry to fasten onto the first case and the second case and thereby establish a closed loop with the assembled cases.
Accordingly, in an aspect of the present invention, an assembly for use in releasably connecting free ends of an item of jewelry comprises:
a first case and a second case;
the first case having a body including a mating end and a securing end, the body of the first case further including a male section disposed at the mating end of the body, the male section including an annular flange having an interior space defined therein and extending from a main section of the body, the first case body having a cavity in communication with the interior space of the annular flange, the first case further including a pair of splines each extending radially from an outer surface of the annular flange;
the second case having a body including a mating end and a securing end, the body of the second case further including a female section defining the terminus of the mating end, the female section including a sleeve portion having an interior space defined therein that is complementary to the annular flange of the first case to enable the annular flange of the first case to be receivable within the interior space of the sleeve portion;
the sleeve portion of the second case female section including a pair of channels formed therein, each channel having an axial slot and a circumferential slot contiguous with the associated axial slot, each axial slot extending from a rim of the sleeve portion, the circumferential slot of one channel and the circumferential slot of the other channel each extending from its respective axial slot in a common angular direction;
the male section of the first case and the female section of the second case having complementary configurations enabling registration of the pair of splines within the pair of channels during a reversible operational lock mode of the assembly, the registration involving alignment of the pair of splines with the pair of channels, relative axial displacement between the first case and the second case to situate the pair of splines within the axial slots of the pair of channels, and relative rotation between the first case and the second case to situate the pair of splines within the circumferential slots of the pair of channels; and
a pair of magnets, one magnet operably disposed in the cavity of the first case body, another magnet operably disposed in the interior space of the sleeve portion of the second case female section and housed in the interior space of the annular flange of the first case male section during the operational lock mode of the assembly.
In another aspect of the invention, an assembly for use in releasably connecting free ends of an item of jewelry comprises:
a first case and a second case;
the first case having a body including a mating end and a securing end, the body of the first case further including a male section disposed at the mating end of the body, the male section including an annular flange having an interior space defined therein and extending from a main section of the body, the first case body having a cavity in communication with the interior space of the annular flange, the first case further including a pair of splines each extending radially from an outer surface of the annular flange;
the second case having a body including a mating end and a securing end, the body of the second case further including a female section defining the terminus of the mating end, the female section including a sleeve portion having an interior space defined therein that is complementary to the annular flange of the first case to enable the annular flange of the first case to be receivable within the interior space of the sleeve portion, the sleeve portion including a shell body;
the sleeve portion of the second case female section including a pair of channels formed in the shell body thereof, each channel having an axial slot and an associated circumferential slot adjoining the axial slot, the axial slot extending in an axial direction and the circumferential slot extending in a circumferential direction, each axial slot extending from a rim of the sleeve portion, the circumferential slot of one channel and the circumferential slot of the other channel each extending from its respective axial slot in a common angular direction;
the male section of the first case and the female section of the second case having reciprocal complementary configurations enabling registration of the pair of splines within the pair of channels during an operational lock mode of the assembly;
a pair of magnets, one magnet operably disposed in the cavity of the first case body, another magnet operably disposed in the interior space of the sleeve portion of the second case female section and housed in the interior space of the annular flange of the first case male section during the operational lock mode of the assembly;
a first interior compartment disposed at the securing end of the first case body, the first compartment having an opening communicating with an exterior of the first case;
a second interior compartment disposed at the securing end of the second case body, the second compartment having an opening communicating with an exterior of the second case;
a first post disposed in the first compartment of the first case body; and
a second post disposed in the second compartment of the second case body.
In another aspect of the invention, an assembly for use in releasably connecting free ends of an item of jewelry comprises:
a first case and a second case;
the first case having a body including a mating end and a securing end, the body of the first case further including a male section disposed at the mating end of the body, the male section including an annular flange having an interior space defined therein and extending from a main section of the body, the first case body having a cavity in communication with the interior space of the annular flange, the first case further including a pair of splines each extending radially from an outer surface of the annular flange;
the second case having a body including a mating end and a securing end, the body of the second case further including a female section defining the terminus of the mating end, the female section including a sleeve portion having an interior space defined therein that is complementary to the annular flange of the first case to enable the annular flange of the first case to be receivable within the interior space of the sleeve portion, the sleeve portion including a shell body;
the sleeve portion of the second case female section including a pair of channels formed in the shell body thereof, each channel having an axial slot and an associated circumferential slot adjoining the axial slot, the axial slot extending in an axial direction and the circumferential slot extending in a circumferential direction, each axial slot extending from a rim of the sleeve portion, the circumferential slot of one channel and the circumferential slot of the other channel each extending from its respective axial slot in a common angular direction;
the male section of the first case and the female section of the second case having reciprocal complementary configurations enabling registration of the pair of splines within the pair of channels during an operational lock mode of the assembly;
a pair of magnets, one magnet operably disposed in the cavity of the first case body, another magnet operably disposed in the interior space of the sleeve portion of the second case female section and housed in the interior space of the annular flange of the first case male section during the operational lock mode of the assembly;
the first case body having an outer end surface defined at the securing end thereof;
the second case body having an outer end surface defined at the securing end thereof; and
a pair of hook elements each disposed at a respective one of the outer end surface of the first case body and the outer end surface of the second case body.
These and other aspects, features, and advantages of the present invention will become more readily apparent from the attached drawings and the detailed description of the preferred embodiments, which follow.
The preferred embodiments of the invention will hereinafter be described in conjunction with the appended drawings provided to illustrate and not to limit the invention, in which:
Like reference numerals refer to like parts throughout the several views of the drawings.
The following detailed description is merely exemplary in nature and is not intended to limit the described embodiments or the application and uses of the described embodiments. As used herein, the word “exemplary” or “illustrative” means “serving as an example, instance, or illustration.” Any implementation described herein as “exemplary” or “illustrative” is not necessarily to be construed as preferred or advantageous over other implementations. All of the implementations described below are exemplary implementations provided to enable persons skilled in the art to make or use the embodiments of the disclosure and are not intended to limit the scope of the disclosure, which is defined by the claims. For purposes of description herein, the terms “upper”, “lower”, “left”, “rear”, “right”, “front”, “vertical”, “horizontal”, and derivatives thereof shall relate to the invention as oriented in
Referring now to
Turning momentarily to
More particularly, referring again to
Further, as depicted in
More particularly, as shown in
A first pair 106a of the plurality of layers 106 of magnetic material are applied on the respective inner surface portions 128, 130 of the inner surface 122 of the one case 102, and a second pair 106b of the plurality of layers 106 of magnetic material are applied on the respective inner surface portions 128, 130 of the inner surface 122 of the other case 104. The first pair of layers 106a is magnetically attracted to the second pair of layers 106b such that the one case 102 is magnetically attracted to the other case 104 and will magnetically mate together to form the composite magnetic clasp case. The internal hollow cavity 108 formed into each of the elongated bodies 114 of the cases 102, 104, by way of example but not limitation, is of cylindrical shape, open at an outer end 142 of the hollow cavity 108 and the first outer end surface 116 of the elongated body 114, and extends therefrom to proximate to, but short of, the intermediate inner surface portion 140 of the inner surface 122 of the elongated body 114. The inner end portion 112 of the hollow cavity 108, where the securement device 110 is located and into which one of the mechanical clasp components 202, 204 extends, is reduced in diameter compared to the remainder of the hollow cavity.
As best seen in
To recap, the magnetic jewelry attachment assembly 100 of the present invention allows easy installation to existing jewelry, that is, to any item of jewelry that has a clasp-type lock. The underlying concept is that the existing claw and link end components of the original mechanical clasp are placed in respective magnetically-attractive hollow case bodies, without using any attachment tools, which together form a composite magnetic clasp case which may have a pleasing external ornamental appearance. The magnetically-attractive case bodies hold the respective clasp components separate from one another and hidden from view while magnetic attraction of the case bodies to one another provides a convenient easy way for a wearer to put the item of jewelry on or take it off without using the respective original mechanical clasp components. The attachment assembly 100 is particularly helpful to elderly or those with vision or dexterity issues. The attachment assembly 100 is attractive in and of itself so that it will appeal to younger wearers as well.
Referring now to
Referring more particularly to
The body 520 of first case 502 further includes an inner cavity space 542 (best shown in
The male section 530 at mating end 522 of first case 502 further includes a pair of splines 544, 546 projecting radially from an outer annular surface or periphery 548 of annular flange section 532 (as best shown in
The second case 504 includes a body 560 having a mating end 562 and a securing end 564. The mating end 562 and securing end 564 define opposing ends of second case 504. The body 560 has a main section 566 having a generally cylindrical or tubular construction. The body 560 includes a female section 570 at the mating end 562. The female section 570 defines a terminus of second case 504 at its mating end 562. The female section 570 includes a sleeve portion 572 having an interior space 574. The sleeve portion 572 includes an axially facing outer end surface or face 576 defined at a rim 578 of sleeve portion 572. The sleeve portion 572 includes a generally cylindrical or tubular body having a shell or casing 573.
The sleeve portion 572 includes a pair of channels 580, 581 formed in shell 573 of sleeve portion 572. Each one of the pair of channels 580, 581 defines a respective axial slot 582 and an associated circumferential slot 584. The axial slot 582 and its associated circumferential slot 584 are contiguous with one another. In particular, axial slot 582 and its associated circumferential slot 584 are arranged in communication with one another. The axial slot 582 extends in an axial dimension of shell 573 and circumferential slot 584 extends in a circumferential dimension about shell 573. The axial slot 582 and its paired, associated circumferential slot 584 adjoin one another. The axial slot 582 has an opening 586 at the rim 578 of sleeve portion 572. In particular, the outer end surface 576 of sleeve portion 572 is discontinuous at two locations along rim 578, where a pair of gaps or interstices are formed at rim 578 to define the opening 586 of axial slot 582 of each channel 580, 581. In one form, the pair of axial slots 582 of the pair of channels 580, 581 are disposed diametrically opposite one another.
In other forms, each one of the pair of channels 580, 581 can be considered a passageway, guideway, keyway, cleft, or incision formed in the shell 573 of sleeve portion 572. In other forms, the gap-like openings 586 make sleeve portion 572 have a split-ring construction. The respective circumferential slot 584 of each one of the pair of channels 580, 581 extends from its respective axial slot 582 in a common angular direction. For example, viewing second case 504 along a longitudinal direction from mating end 562 to securing end 564, the circumferential slot 584 extends in a counter-clockwise direction from its associated axial slot 582. The pair of channels 580, 581 are configured with the same dimensions.
Turning now to the assembled arrangement of assembly 500, reference is again made to
Next, the first case 502 and second case 504 are brought into alignment with one another such that the pair of splines 544, 546 of annular flange section 532 of first case 502 align with respective axial slots 582 of the pair of channels 580, 581 of sleeve portion 572 of second case 504. Once this aligned orientation is established, relative axial movement or displacement is effected between first case 502 and second case 504 in order to facilitate simultaneous entry of the pair of splines 544, 546 into respective axial slots 582 of the pair of channels 580, 581 via respective entrances or openings 586 of axial slots 582. Following this entry action, continued relative displacement between first case 502 and second case 504 (i.e., first case 502 and second case 504 are moved toward one another) causes the pair of splines 544, 546 to be slidingly guided through the respective axial slots 582 of the pair of channels 580, 581. This guided axial movement of the pair of splines 544, 546 is continued until the pair of splines 544, 546 becomes fully accessible to the circumferential slot 584 of its associated axial slot 582. In this configuration, shown in
At the same time that the pair of splines 544, 546 of first case 502 are traversing through the pair of channels 580, 581 of second case 504 to achieve the interlock between first case 502 and second case 504, the annular flange section 532 of the male section 530 at mating end 522 of first case 502 is entering and becoming situated within the interior space 574 defined by sleeve portion 572 of the female section 570 of second case 504. In this manner, second magnet 512 that is positioned within the second case 504 becomes housed within the interior space 534 of annular flange section 532. As best shown in
In the locked position of assembly 500, best shown in
For the purpose of facilitating the interlock arrangement between first case 502 and second case 504, the male section 530 at mating end 522 of first case 502 and the female section 570 at the mating end 562 of second case 504 are complementary to one another so that the respective cases can be mated together. As a result, first case 502 and second case 504 are counterparts to one another. For example, the pair of channels 580, 581 formed in shell 573 of sleeve portion 572 of second case 504 are suitably configured to receive and accommodate the pair of splines 544, 546 of first case 502. The annular flange section 532 disposed at the mating end 522 of first case 502 is suitably configured to enable it to be received within the interior space 574 of sleeve portion 572 at the mating end 562 of second case 504, while at the same time enabling proper registration of the pair of splines 544, 546 within the pair of channels 580, 581 formed in shell 573 of sleeve portion 572 of second case 504. In one form, the body 520 of first case 502 and the body 560 of second case 504 are suitably configured so that when the first case 502 and second case 504 are joined together in their interlocking arrangement, the first case 502 and second case 504 are flush with one another, making it appear that assembly 500 has a single, continuous construction.
The assembly 500, once maneuvered into its locked position, can be unlocked by reversing the movements used to originally lock the assembly 500. In particular, relative rotation between first case 502 and second case 504 is initially completed, followed by withdrawal of the first case 502 from the second case 504 by pulling them apart along a longitudinal axis of the assembly 500. The magnetic coupling afforded by the combination of first magnet 510 and second magnet 512 can be overcome using a modest level of effort. The first magnet 510 and second magnet 512 can be selected with a view towards providing different levels of coupling strength delivered by the magnetic attraction.
Referring again to
Referring now to
The assembly 500 provides a set of independent features for maintaining an adjustable and temporary connection or linkage between the free ends of an item of jewelry. One feature involves the releasable and reversible interlocking arrangement between the first case 502 and second case 504 of assembly 500. The interlocking joint, which is facilitated by the rotary coupling of first case 502 to second case 504 via the registration of a pair of splines (male components) to a pair of complementary channels having axial and circumferential slots (female components), offers a sturdy and reliable connection that resists inadvertent efforts to disconnect or dislodge the cases from their locked position. Because jewelry worn about the neck or wrist typically has a measure of slack to aid comfort (i.e., hangs loosely), the jewelry can easily catch on objects having angled or projecting features. If the user is unaware, movements of the hands, for example, can cause the caught object to yank or pull on the item of jewelry, such as a bracelet. However, because the connection between first case 502 and second case 504 has a rotary-style lock, the first case 502 and second case 504 remain joined together despite the longitudinal pulling action. Additionally, another feature of assembly 500 that facilitates linkage between first case 502 and second case 504 involves the magnetic attraction between the pair of magnets housed in first case 502 and second case 504. The magnetic action exerts a force in the longitudinal direction of assembly 500 that tends to press or urge the first case 502 and second case 504 together. In this manner, the pair of magnets helps to stabilize the locked position of first case 502 and second case 504 in both the axial and rotational directions. For example, any rotary forces experienced by either first case 502 or second case 504 can be resisted by the magnetic attraction between the pair of magnets. The magnetic attraction acts in the axial or longitudinal dimension of assembly 500, enabling the first case 502 and second case 504 to be urged into tight engagement with one another, which can help close out any axial spaces or clearances between the mating ends of the cases. Once joined, the first case 502 and second case 504 form a composite, integral arrangement.
The composite packaging of the first case 502 and the second case 504 benefits from the male-female coupling employed by assembly 500. In particular, during assembly, the male section of first case 502 is joined to the female section of the second case 504 by registration of the pair of splines within the pair of circumferential slots by first guiding the splines through the axial slots, then guiding the splines through the circumferential slots. The ensuing configuration represents a locked condition of assembly 500 that is stable and secure, yet permits convenient release and reversibility to enable the user to readily disconnect the cases and remove the jewelry item.
Additionally, assembly 500 provides various means to fasten the item of jewelry to the assembled cases. In one form, the free ends of the jewelry item are hooked over a pair of interior posts each situated, generally out of view, within rearward compartments of each case that the user can access via the open-ended structure of the compartment. Alternately, the securing ends of the cases are fitted with exterior hooks located on the outside of the case. The free ends of the jewelry item can be fastened to these exterior hooks. Once the pair of cases are assembled (i.e., the pair of splines are registered within the circumferential slots of the pair of channels), and the free ends of the jewelry item are attached to the securing ends of the cases, a closed loop is formed that secures the jewelry item to the wearer.
The above-described embodiments are merely exemplary illustrations of implementations set forth for a clear understanding of the principles of the invention. Many variations, combinations, modifications or equivalents may be substituted for elements thereof without departing from the scope of the invention. Therefore, it is intended that the invention not be limited to the particular embodiments disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all the embodiments falling within the scope of the appended claims.
This U.S. non-provisional patent application claims the benefit of U.S. provisional patent application No. 62/459,704, filed Feb. 16, 2017, which is hereby incorporated-by-reference herein its entirety.
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