The present invention relates to an improved tool belt. One aspect of the present invention is a tool belt that provides for an easily adjusted, secure fit. Another aspect of the present invention is a system for adjusting or tightening the tool belt. Another aspect of the present invention is a quick release for easily removing the tool belt.
In another embodiment, disclosed is a tool belt system having a support strap having a first end and a second end, a release band disposed at the first end, and a base coupled to the second end. A release is rotationally attached to the base and having a first position and a second position and comprising a tooth lock, a tooth coupling rotationally attached to the base and operably engaged with the release and the release band, a lever rotationally attached to the release and operably engaged with the release band, and comprising at least one tightening tooth. When the release is in the first position the tooth coupling and the lever are engaged with the release band and allow for slidable movement in a tightening direction and prevent movement in a loosening direction, and when the release is in the second position, the tooth coupling is operably engaged with the release and the tooth coupling and the lever are disengaged with the release band and allow for movement in both the tightening and loosening directions.
Typically, a tool belt has a belt and buckle, although the belt and buckle may be made of a variety of materials with varying durability. The conventional buckle is similar to closures that are available on other standard belts. This limits the available sizes and adjustment options, however. It also requires the buckle to be unfastened in order to make even a minor adjustment. Thus, there is a need for a better, more secure tool belt that can be easily and quickly adjusted. There also remains a need for a tool belt that can be quickly released. In cold climates, this may be important as workers may be wearing numerous layers of clothing which shift and constant re-adjustment of the belt is burdensome and time-consuming. In certain applications such as weight-lifting, a user may wish to loosen the belt after each set, and quickly re-tighten just before starting the next set of lifts.
The present invention relates generally to an improved tool belt and in particular, to the devices, methods, and design principles of tool belt that can be easily adjusted and quickly removed for use in various applications, such as a construction tool belt system, a law enforcement belt, a weight lifting belt, a military belt, or a cable/telephone repair belt, or any other type of work that requires tools weighing approximately 30-50 pounds or more to be attached to a user's waist for easy access during work duties.
In a first embodiment, disclosed is a quick release tool belt for the waist of a user, which includes a support strap, a release band with belt teeth on a first end and a binding with a release mechanism on the second end and slidably coupled to the release band. The binding has a base, a release rotationally attached to the base with a tooth lock, a tooth coupling rotationally attached to the base and engaged with the release and the release band, and a lever rotationally attached to the release and engaged with the release band with a tightening tooth. When the release is in the engaged position the tooth coupling and the lever are engaged with the release band and when the release is in the release position, the tooth coupling is operably engaged with the release and the tooth coupling and the lever are disengaged with the release band.
In another embodiment, disclosed is a belt system having a support strap with a first end and a second end, a release band at the first end, and a base coupled to the second end. The belt may further have a release rotationally attached to the base and having a first position and a second position with a tooth lock, a tooth coupling rotationally attached to the base and operably engaged with the release and the release band, and a lever rotationally attached to the release and operably engaged with the release band, and comprising at least one tightening tooth. When the release is in the first position the tooth coupling and the lever are engaged with the release band and allow for slidable movement in a tightening direction and prevent movement in a loosening direction. When the release is in the second position, the tooth coupling is operably engaged with the release and the tooth coupling and the lever are disengaged with the release band and allow for movement in both the tightening and loosening directions.
In another embodiment, disclosed is a method of tightening and loosening a tool belt, comprising the steps of providing a tool belt capable of holding a plurality tools weighing at least 30 pounds around the waist of a user, providing a release band on the belt, providing a binding operably engaged with the release band on the belt, sliding a first end of the release band through the binding, preventing the release band from loosening by providing a plurality of teeth within the binding and the on the release band that allow for relative sliding movement in a tightening direction around the user, and prevent relative sliding movement in a loosening direction around the user. Then tightening the belt incrementally by rotating an elongate lever on the binding, forcing incremental sliding movement in a tightening direction between the binding and the release band. Then loosening the belt by rotating a release away from the release band, thereby disengaging the plurality of teeth within the binding and on the release band and allowing for relative movement in both the tightening and loosening directions between the binding and the release band.
Discussed herein are various embodiments, systems and methods relating to an improved tool belt. For brevity, these embodiments may be described in relation to a “tool belt” or “belt” though that is not intended to limit the scope of the disclosure in any way. For instance, the present invention can be used in carpentry, construction, and other applications beyond those described herein, including belt applications that require a secure fit with this ability to hold items that may have a lot of weight or mass and would benefit from the advantages of the present invention.
As best shown in
In various implementations, the support strap 12 has a side portion 12A and another side portion 12B and the various components of the quick release assembly 16 can be disposed or otherwise arranged variously on the side portions 12A, 12B. It is understood that in certain implementations, the support strap 12 can have support padding 12C or other comfort and support features known in the art, such as foam or the like, disposed within the comparatively rigid side portions 12A, 12B.
In the implementations of
As best shown in
Turning to
Returning to
As shown in the implementation of
In various implementations, the tightening and release mechanism 30 comprises an elongate tightening lever 32 disposed across the binding 20 and in operable communication with a pivot 34. In various embodiments, the pivot 34 is also in operable communication with a release 36, which in the implementation of
As also shown in the implementations of
As shown in
Conversely, and returning to
Tightening of the belt 10 is shown in the implementation of
Another embodiment is shown in
Similarly to the embodiment of
A base part 142 may be attached to the belt 12A. This attachment may be in any manner known in the art, such as rivets or the like. The tooth coupling may be rotationally attached to the base 142 at axis 152. This attachment may be a rivet, a nut and bolt, or any other attachment known in the art that allows for relative rotational movement. There may be a spring (not shown) or other biasing mechanism that urges the tooth coupling into engagement with the belt 18. As the release is rotated to a second or release position, it may be returned to the home position by the spring.
The release 136 may be attached to the base 142 at axis 150. This attachment may be a rivet, a nut and bolt, or any other attachment known in the art that allows for relative rotational movement. The release 136 may be urged into a first or home position by a spring (not shown) or other biasing member, or may be urged by the engagement between the tooth coupling shelf 139 which is biased by its own spring, and the pawl 137.
The tightening lever 132 may be attached to the release 136 at axis 154. This attachment may be a rivet, a nut and bolt, or any other attachment known in the art that allows for relative rotational movement. The lever 132 may be urged into a first or home position by a spring (not shown) or other biasing member between the lever 132 and the release 136. As the lever is rotated to a second or tightening position, the lever is returned to the home position by the spring.
The material of the components of the binding may be any material suited to handle the loads that will be introduced to the binding 130 by the release band 18 when a full load of tools in attached to the belt. A full load of tools may be 30-50 lbs, or even more in some circumstances. The material may be steel, aluminum, a plastic such as a glass-filled nylon, or other plastic or any other material that may be suited to the loads. Depending on the material chosen, the dimensions of the components may need to be larger or smaller. For instance, with a plastic lever 132 and belt 18, the width of the teeth 160 and belt teeth 40 may need to be greater than the width of steel teeth 160 and 40, in order to handle to loads presented. Further, the materials may be in combination, for instance a plastic lever 132 over-molded onto steel or aluminum teeth 160. Similarly, the tooth coupling 138 and the tooth 140 dimensions may need to be larger for a plastic coupling 138 than other materials.
Although the disclosure has been described with reference to preferred embodiments, persons skilled in the art will recognize that changes may be made in form and detail without departing from the spirit and scope of the disclosed apparatus, systems and methods. For instance, persons skilled in the art will recognize the various suitable materials for the assembly, taking into account the specific application and required durability of the belt.
Although the disclosure has been described with reference to preferred embodiments, persons skilled in the art will recognize that changes may be made in form and detail without departing from the spirit and scope of the disclosed apparatus, systems and methods.
The foregoing description and drawings comprise illustrative embodiments of the present inventions. The foregoing embodiments and the methods described herein may vary based on the ability, experience, and preference of those skilled in the art. Merely listing the steps of the method in a certain order does not constitute any limitation on the order of the steps of the method. The foregoing description and drawings merely explain and illustrate the invention, and the invention is not limited thereto, except insofar as the claims are so limited. Those skilled in the art who have the disclosure before them will be able to make modifications and variations therein without departing from the scope of the invention.
This application claims priority to U.S. patent application Ser. No. 16/302,518, filed Jun. 2, 2017, entitled “SECURE FIT AND QUICK RELEASE BELT AND SYSTEMS AND METHODS FOR USE,” which claims the benefit of priority to U.S. Provisional Patent Application No. 62/345,455, filed on Jun. 3, 2016, entitled “SECURE FIT AND QUICK RELEASE BELT AND SYSTEMS AND METHODS FOR USE,” the disclosures of which are hereby incorporated by reference in their entireties.
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20210169181 A1 | Jun 2021 | US |
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62345455 | Jun 2016 | US |
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Parent | 16302518 | US | |
Child | 17181816 | US |