This application is a continuation of U.S. application Ser. No. 16/440,841, filed Jun. 13, 2019, which is a continuation of U.S. application Ser. No. 15/471,437, filed Mar. 28, 2017, issued on Jun. 18, 2019, as U.S. Pat. No. 10,321,752, which claims benefit of provisional U.S. application Ser. No. 62/314,289, filed Mar. 28, 2016, which is herein incorporated by reference in its entirety and should be considered a part of this specification. Any and all applications for which a foreign or domestic priority claim is identified in the Application Data Sheet as filed with the present application are hereby incorporated by reference.
Certain embodiments discussed herein relate to a buckle assembly, and more particularly, to belt buckle that houses a multi-tool.
A multi tool is a tool that includes a variety of different tools. Multi tools can include a group of tools that are useful for certain sports (e.g., cycling, camping). For example, a multi tool for cycling can include a group of wrenches that have different sizes and configurations (e.g., flathead, hex) to match the differently sized bolts on a bike. A camping pocketknife can include a folding blade as well as other tools that can be handy for camping (e.g., a screwdriver, a can opener, a pair of tweezers). Foldable multi tools are known to provide compact storage for a group of tools. In a foldable multi tool, the individual tools of the multi tool can pivot between a folded configuration and an unfolded configuration. An individual tool of the multi tool can be used in the unfolded configuration and then moved to the folded configuration for storage.
A problem with multi tools is that they are often carried loose, which can result in loss of the multi tool. Multi tools can be stored at the hip of a user in a case that is threaded onto a belt. A problem with this style of multi tool is that it protrudes from the belt, making the multi tool susceptible to becoming entangled on items that brush past the user's body. What is needed is a multi-tool that can be stored in a secure and convenient way.
The systems, methods and devices described herein have innovative aspects, no single one of which is indispensable or solely responsible for their desirable attributes. Without limiting the scope of the claims, some of the advantageous features will now be summarized.
In some embodiments, a multi tool buckle assembly is disclosed. The buckle assembly includes a buckle and a multi tool insert. The buckle includes a receptacle. The multi tool insert is removably securable within the receptacle. The multi tool insert includes a tool body that has at least one articulating tool element.
The buckle assembly of the preceding paragraph can further include one or more of the following features: The multi tool insert further includes a tool sleeve that is removably securable to the tool body. The tool sleeve includes one or more tool features. The tool sleeve and the tool body include a detent arrangement that inhibits unintentional separation of the tool sleeve and the tool body. The tool sleeve and the tool body include at least one pair of cooperating magnetic elements that inhibit unintentional separation of the tool sleeve and the tool body. The tool sleeve includes a plate portion that extends along one side of the tool body. The tool sleeve further includes a hook portion that extends around an end portion of the tool body. The buckle includes a biasing element that engages the multi tool insert to inhibit unintentional separation of the multi tool insert from the buckle. The buckle includes a base and a cover that are coupled to one another by one or more fasteners, with the fasteners also coupling the biasing element to the buckle. The buckle includes a base and a cover that are coupled to one another. The buckle operates on a cam lock principle. The multi tool insert includes tool elements and tool features adapted for use in one or more of the following applications: snowboarding, skateboarding and bicycling.
In some embodiments, a multi tool buckle assembly is disclosed. The buckle assembly includes a buckle and a multi tool insert. The buckle defines an envelope sized to receive the multi tool insert. The multi tool insert is removably securable within the envelope. The multi tool insert includes a tool body and a tool sleeve that is removably securable to the tool body. Each of the tool body and the tool sleeve includes a tool element or tool feature.
The buckle assembly of the preceding paragraph can further include one or more of the following features: The tool sleeve and the tool body include a detent arrangement that inhibits unintentional separation of the tool sleeve and the tool body. The tool sleeve and the tool body include at least one pair of cooperating magnetic elements adapted to inhibit unintentional separation of the tool sleeve and the tool body. The tool sleeve includes a plate portion that extends along one side of the tool body. The tool sleeve further includes a hook portion that extends around an end portion of the tool body. The buckle includes a biasing element that engages the multi tool insert to inhibit unintentional separation of the multi tool insert from the buckle. The buckle comprises a base and a cover that are coupled to one another by one or more fasteners, with the fasteners also coupling the biasing element to the buckle. The buckle includes a base and a cover that are coupled to one another. The buckle operates on a cam lock principle. The multi tool insert includes tool elements and tool features adapted for use in one or more of the following applications: snowboarding, skateboarding and bicycling.
The foregoing and other features of the present disclosure will become more fully apparent from the following description and appended claims, taken in conjunction with the accompanying drawings. Understanding that these drawings depict only several embodiments in accordance with the disclosure and are not to be considered limiting of its scope, the disclosure will be described with additional specificity and detail through the use of the accompanying drawings.
Embodiments of systems, components and methods of assembly and manufacture will now be described with reference to the accompanying figures, wherein like numerals refer to like or similar elements throughout. Although several embodiments, examples and illustrations are disclosed below, it will be understood by those of ordinary skill in the art that the inventions described herein extends beyond the specifically disclosed embodiments, examples and illustrations, and can include other uses of the inventions and obvious modifications and equivalents thereof. The terminology used in the description presented herein is not intended to be interpreted in any limited or restrictive manner simply because it is being used in conjunction with a detailed description of certain specific embodiments of the inventions. In addition, embodiments of the inventions can comprise several novel features and no single feature is solely responsible for its desirable attributes or is essential to practicing the inventions herein described.
Certain terminology may be used in the following description for the purpose of reference only, and thus are not intended to be limiting. For example, terms such as “above” and “below” refer to directions in the drawings to which reference is made. Terms such as “front,” “back,” “left,” “right,” “rear,” and “side” describe the orientation and/or location of portions of the components or elements within a consistent but arbitrary frame of reference which is made clear by reference to the text and the associated drawings describing the components or elements under discussion. Moreover, terms such as “first,” “second,” “third,” and so on may be used to describe separate components. Such terminology may include the words specifically mentioned above, derivatives thereof, and words of similar import.
The multi tool insert 300 is removable and, in at least some configurations, can be easily accessible at the waist of the user or at another location. As discussed below, the multi tool buckle assembly 100 can include a retention mechanism that is adapted so that the removable multi tool insert 300 stays secure inside the buckle 200 even with excessive body motion. The multi tool insert 300 can include one or more tools. A user can remove the multi tool insert 300 from the buckle 200 to allow the user to use the tools of the multi tool insert 300. The multi tool insert 300 can be stored in the buckle 200. A user can store the multi tool insert 300 in the buckle 200 when the user does not need to use the tools of the multi tool insert 300.
The buckle 200 can be any type of buckle for a belt or other type of strap. The buckle 200 can couple a belt or strap to itself to create a loop or can couple strap portions to one another. The buckle 200 functionality can be provided by any suitable arrangement, such as a cam lock mechanism, a pin or post-in-hole arrangement or a snap-fit arrangement, for example and without limitation. The multi-tool insert 300 can include one or more articulating (e.g., foldable) tool elements. In some configurations, the multi-tool insert 300 comprises a sleeve that receives a body of the multi-tool. The sleeve can include tool features, as discussed in more detail below.
Referring to
The tool base 206 and the tool cover 208 can be held together by rivets 214. As described below, the tool base 206 and the tool cover 208 can form an envelope that stores the multi tool insert 300. As shown in
The buckle 200 can include a spring clip 218 that inhibits or prevents the multi tool insert 300 from disengaging from the buckle 200 as a result of normal forces encountered during sport applications, or other intended applications. However, the user can manually overcome the spring clip 218 tension with finger pressure applied to the multi tool insert 300 opposite where the tool 300 enters the tool cover 208, such as beside the hard stop 216. The tool cover 208 can include a lever 220 opposite the pivot end for opening and closing of the cam mechanism. The buckle 200 can be sized to accommodate, for example, a 1.5″ wide belt that is substantial enough to handle the weight of the multi tool buckle assembly 100 but narrow enough to fit thru standard apparel belt loops.
Several example tool combinations are illustrated herein for different sport applications. However, the multi tool insert 300 can be designed for other sports, activities or uses, as well. A generic multi tool insert 300 (or a dimensional envelope thereof) is illustrated in
The multi tool insert 300 can include a tool body 302 and a tool sleeve 304. As described in more detail below, the tool body 302 can be inserted into the tool sleeve 304, as shown in
Referring to
With continued reference to
As mentioned,
The buckle 200A can include a base plate 202A and a cover 208A that define a receptacle sized to receive the multi tool insert 300, as described previously. The buckle 200A can include a hard stop 216A that prevents or inhibits the multi tool insert 300 from exiting the buckle 200A at the end having the hard stop 216A. As shown in
The spring clip 218A can have a leading face 222A that faces toward the hard stop 216A. The spring clip 218A can have a trailing face 224A that faces away from the hard stop 216A. When the multi tool insert 300 is secured inside the buckle 200A, the spring clip 218A can rest against the recessed portion of the retention plates 312 (shown in
The buckle 200 and the multi tool insert 300 combination can be arranged such that the wearer will remove the multi tool insert 300 from the buckle 200 with the right hand, given that the majority of the population is right handed. However, in other arrangements, the combination can be designed or otherwise configured to allow removal with the left hand.
The multi tool insert 300 can be removed along the axis of the waist line to prevent having to lift a shirt or jacket above the waistline and expose bare skin when removing the multi tool insert 300 from the multi tool buckle assembly 100 in public. The multi tool buckle assembly 100 can be arranged so that a user can access the multi tool insert 300 from a standing or sitting position. The multi tool buckle assembly 100 can be arranged so that when the buckle 200 is open, in the event that the user needs to use the restroom, the multi tool insert 300 will not fall out of the buckle 200. In certain arrangements, the multi tool insert 300 can be removed from the buckle 200 without having direct line of sight. For example, the multi tool buckle assembly 100 can include clear tactile cues for removal and insertion of the multi tool insert 300. The multi tool buckle assembly 100 can be arranged so that the multi tool insert 300 does not need to be removed from the buckle 200 to secure the belt around the waist. Normal use of the belt and use of the multi tool insert 300 are completely unrelated and do not interfere with each other. The combination of the multi tool insert 300 and the tool housing (in the form of the buckle 200) with specific size requirements creates opportunities to express attachment outside of the size constraints, such as other buckle types and other placements and locations for use.
The primary carrying mode for the multi tool buckle assembly 100 is the belt buckle. However, given the unique interface of the multi tool insert 300 and the buckle 200, the multi tool buckle assembly 100 can easily be mounted on other hard and soft surfaces. For example, the tool base 202 (shown in
The multi tool buckle assembly 100 can be mounted onto a backpack. Several holes (e.g., 4) can be provided in the tool base 202 (e.g., one at each corner). In certain arrangements, the tool base 202 can be modified to extend beyond the illustrated footprint. A portion of the backpack (e.g., the shoulder strap) can be sandwiched between the tool base 202 and another metal plate that has corresponding holes adapted to align with the holes of the base 202. Rivets can pass through the shoulder strap of a backpack and secure the metal plate to the base 202, thereby securing the multi tool buckle assembly 100 to the backpack.
The multi tool buckle assembly 100 can be mounted onto a jacket. Several holes (e.g., 4) can be provided in the tool base 202 (e.g., one at each corner). In certain arrangements, the tool base 202 can be modified to extend beyond the illustrated footprint. A portion of the jacket (e.g., the fabric near the chest) can be sandwiched between the tool base 202 and another metal plate that has corresponding holes adapted to align with the holes of the base 202. Rivets can pass through the jacket and secure the metal plate to the base 202, thereby securing the multi tool buckle assembly 100 to the jacket. The same construction could also be applied to secure the multi tool buckle assembly 100 on locations at the wrist, forearm, bicep, abdomen, or shoulder portion of the jacket.
The multi tool buckle assembly 100 can be mounted onto cycling shorts. Several holes (e.g., 4) can be provided in the tool base 202 (e.g., one at each corner). In certain arrangements, the tool base 202 can be modified to extend beyond the illustrated footprint. As described above, rivets can sandwich fabric on the hip, just below the hip joint, and be secured with another metal plate that matches the same footprint and attachment holes of the base 202. The same construction could also be applied for locations on the back of the waistline, top of the thigh, or back of the thigh. Any location that avoids joint motion during cycling would be suitable.
The multi tool buckle assembly 100 can be mounted onto snowboard pants. As described above, a number (e.g., 4) of holes can be provided in the tool base 202 (e.g., one at each corner), which can extend beyond the current footprint. Rivets could sandwich the fabric and be secured with another metal plate that matches the same footprint and 4 attachment holes. Optimal locations would be on the thigh or as low as the calf/shin area. Because snowboard bindings do not release in the event of a crash, the hips, rear, or knees would not be favorable as those are usually the first to impact the ground.
The multi tool buckle assembly 100 can be mounted onto a skateboard. A number (e.g., 4) of holes can be provided in the tool base 202 (e.g., one at each corner), which can extend beyond the current footprint. Screws could anchor the tool base 202 to the skateboard. Favorable locations would be clear of the nose, tail, or wheels and on the bottom side of the board as to not interfere with foot locations. The structure of the skateboard would likely not be compromised given the historical use of rails, nose guards, and skid plates. Those are attached similarly with no issues.
The multi tool buckle assembly 100 can be mounted onto a bicycle. For any flat surfaces that are available on a bike frame, the backside of the tool base 202 could be bonded using double sided foam adhesive tape. This would avoid any holes in the frame which could compromise frame integrity. For original equipment manufacturer (OEM) solutions, rivets or screws could be incorporated into the frame design similar to the other mounting solutions.
The multi tool buckle assembly 100 can be mounted onto a snowboard. Any flat surface on the top of the board, clear of the bindings, would be ideal to mount the multi tool buckle assembly 100. The tool base 202 could be bonded using double sided foam adhesive tape. Screws or rivets are not recommended as snowboards rely on a great deal of flex to perform properly and any interruption in flex could result in poor performance or a stress riser.
The multi tool buckle assembly 100 can be mounted onto a motorcycle. For any flat surfaces that are available on the motorcycle, the backside of the tool base 202 could be bonded using double sided foam adhesive tape. This would avoid any holes in the frame which could compromise frame integrity. For OEM solutions, rivets or screws could be incorporated into the frame design similar to the other mounting solutions.
The multi tool buckle assembly 100 can be mounted onto a surfboard. Any flat surface near the rear of the board where the leash is mounted would be ideal. For aftermarket solutions, the tool base 202 can be bonded using double sided foam adhesive tape. The tool base 202 can also be embedded into traction pads. For OEM solutions, a plate can be adapted to match the footprint of the tool base 202 as mentioned for soft goods (e.g., backpacks, jackets). The plate could be glassed in and then the tool base 202 can be attached to the plate as described above.
The multi tool buckle assembly 100 can be mounted onto a helmet. The backside of the tool base 202 could have a shallow curve similar to point of view (POV) camera mounts to allow the multi tool buckle assembly 100 to be mounted to almost any mounting location. In some variants, the multi tool buckle assembly 100 can be mounted onto a helmet via double sided foam adhesive tape.
It should be emphasized that many variations and modifications may be made to the herein-described embodiments, the elements of which are to be understood as being among other acceptable examples. All such modifications and variations are intended to be included herein within the scope of this disclosure and protected by the following claims. Moreover, any of the steps described herein can be performed simultaneously or in an order different from the steps as ordered herein. Moreover, as should be apparent, the features and attributes of the specific embodiments disclosed herein may be combined in different ways to form additional embodiments, all of which fall within the scope of the present disclosure.
Conditional language used herein, such as, among others, “can,” “could,” “might,” “may,” “e.g.,” and the like, unless specifically stated otherwise, or otherwise understood within the context as used, is generally intended to convey that certain embodiments include, while other embodiments do not include, certain features, elements and/or states. Thus, such conditional language is not generally intended to imply that features, elements and/or states are in any way required for one or more embodiments or that one or more embodiments necessarily include logic for deciding, with or without author input or prompting, whether these features, elements and/or states are included or are to be performed in any particular embodiment.
Moreover, the following terminology may have been used herein. The singular forms “a,” “an,” and “the” include plural referents unless the context clearly dictates otherwise. Thus, for example, reference to an item includes reference to one or more items. The term “ones” refers to one, two, or more, and generally applies to the selection of some or all of a quantity. The term “plurality” refers to two or more of an item. The term “about” or “approximately” means that quantities, dimensions, sizes, formulations, parameters, shapes and other characteristics need not be exact, but may be approximated and/or larger or smaller, as desired, reflecting acceptable tolerances, conversion factors, rounding off, measurement error and the like and other factors known to those of skill in the art. The term “substantially” means that the recited characteristic, parameter, or value need not be achieved exactly, but that deviations or variations, including for example, tolerances, measurement error, measurement accuracy limitations and other factors known to those of skill in the art, may occur in amounts that do not preclude the effect the characteristic was intended to provide.
Numerical data may be expressed or presented herein in a range format. It is to be understood that such a range format is used merely for convenience and brevity and thus should be interpreted flexibly to include not only the numerical values explicitly recited as the limits of the range, but also interpreted to include all of the individual numerical values or sub-ranges encompassed within that range as if each numerical value and sub-range is explicitly recited. As an illustration, a numerical range of “about 1 to 5” should be interpreted to include not only the explicitly recited values of about 1 to about 5, but should also be interpreted to also include individual values and sub-ranges within the indicated range. Thus, included in this numerical range are individual values such as 2, 3 and 4 and sub-ranges such as “about 1 to about 3,” “about 2 to about 4” and “about 3 to about 5,” “1 to 3,” “2 to 4,” “3 to 5,” etc. This same principle applies to ranges reciting only one numerical value (e.g., “greater than about 1”) and should apply regardless of the breadth of the range or the characteristics being described. A plurality of items may be presented in a common list for convenience. However, these lists should be construed as though each member of the list is individually identified as a separate and unique member. Thus, no individual member of such list should be construed as a de facto equivalent of any other member of the same list solely based on their presentation in a common group without indications to the contrary. Furthermore, where the terms “and” and “or” are used in conjunction with a list of items, they are to be interpreted broadly, in that any one or more of the listed items may be used alone or in combination with other listed items. The term “alternatively” refers to selection of one of two or more alternatives, and is not intended to limit the selection to only those listed alternatives or to only one of the listed alternatives at a time, unless the context clearly indicates otherwise.
Number | Date | Country | |
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62314289 | Mar 2016 | US |
Number | Date | Country | |
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Parent | 16440841 | Jun 2019 | US |
Child | 17001220 | US | |
Parent | 15471437 | Mar 2017 | US |
Child | 16440841 | US |