Retractable holder for writing, pointing instruments
10086640 ยท 2018-10-02
Inventors
Cpc classification
International classification
Abstract
A utility retractor having a utility adaptor, and having a retractable tether comprised of Ultra High Molecular Weight Polyethylene (UHMWPE) material. The UHMWPE exhibits many important qualities suitable in a utility retractor, including abrasion resistance, the ability to be knotted without tangling, and it is very slippery to achieve a significant useful life. The retractor may also include an energy absorber disposed on the tether configured to prevent the danger of the utility adapter flailing indiscriminately during retraction. The energy absorber can be selectively positioned.
Claims
1. A retractable device for retaining a writing instrument, comprising: a retractor comprising a retractor body housing a cable, the cable having a first end positioned within the retractor body and a second end positioned outside the retractor body, wherein the cable is selectively extendable from the retractor body and retractable into the retractor body; a selectively detachable member comprising a pair of magnets disposed between the first end and the second end of the cable, or at the second end of the cable, configured to allow separation of the retractor body and the adapter; and an adapter coupled to the second end, the adapter having a recess configured to selectively and seemingly receive a writing instrument, wherein the cable comprises of an ultra high molecular weight polyethylene (UHMWPE) material.
2. The retractable device as specified in claim 1 further comprising an energy absorbing member disposed between the first end and the second end of the cable, the energy absorbing member configured to restrict the adapter from striking the retractor body when retracted.
3. The retractable device as specified claim 2 wherein the energy absorbing member is disposed proximate the second end of the cable.
4. The retractable device as specified in claim 2 wherein the energy absorbing member comprises a resilient material.
5. The retractable as specified its claim 4 wherein the energy absorbing member comprises an elongated member extending along a portion of the cable.
6. The retractable device as specified in claim 5 wherein the elongated member comprises a sleeve.
7. The retractable device as specified in claim 4 wherein the energy absorbing member is configured to compress when the adapter approaches the retractor body.
8. The retractable device specified in claim 2 wherein the energy absorbing member is configured to be selectively positioned on the cable.
9. The retractable device as specified in claim 1 wherein the cable has a protuberance at the second end, and the adapter is coupled to the protuberance.
10. The retractable device as specified in claim 9 wherein the adapter has a bore, and the protuberance is secured through the bore in a friction fit arrangement.
11. The retractable device as specified in claim 9 wherein the protuberance comprises a knot formed in the cable distal end.
12. The retractable device as specified in claim 11 further comprising a cylindrical member disposed adjacent the knot, wherein the cylindrical member is also configured to be disposed through the bore in a friction fit arrangement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) Exemplary embodiments disclosed herein are directed to a retractable device for retaining writing, marking or pointing instruments at an accessible location for an individual. Generally, the retractable device is composed of a retractable reel coupled to a flexible member that is sized to engage an instrument. The flexible member may be selectively extended and retracted to provide better access to the instrument. The flexible member includes a first bore and a second bore. The first bore is sized to receive a connector from the retractable reel. The second bore has a varying inner diameter thereby allowing instruments of various sizes to be held within the flexible member.
(12) According to various exemplary embodiments, the retractable device may include fasteners to reversibly couple the retractable device to the user or other readily accessible surfaces. For example, one exemplary embodiment of the retractable device utilizes a clip that allows the device to be coupled to the belt or pants of the user. In another exemplary embodiment, the device includes a shaft that extends from the device that may be placed within a pencil holder or the like.
(13) The detailed description set forth below in connection with the appended drawings is intended as a description of exemplary embodiments and is not intended to represent the only forms in which the exemplary embodiments may be constructed and/or utilized.
(14) Turning to the drawings,
(15) The retractor 11 has an internal retractable reel connected to a cable 14, also referred to as a tether in this application, that can be extended approximately 2 to approximately 4+ feet from the reel, although the length of the cable 14 may be varied to accommodate various intended uses. According to this disclosure, the utility retractor includes cable 14 comprised of UHMWPE, which will be described in more detail shortly.
(16) As shown in
(17) As shown in
(18) As shown in
(19) The adapter 17 may be made of a plurality of materials that have the characteristic of being relatively stiff, yet slightly resilient. Exemplary materials include, but are not limited to, vinyl or rubber.
(20) According to various exemplary embodiments, as shown in
(21) The adapter is capable of housing various instruments of different diameter sizes due to the resilient nature of the material and the varying diameters of the cavity 22. For instance, as shown in
(22) In another exemplary embodiment, the retractor 11 includes a pencil-rod attachment 25. This attachment 25 is a generally elongated cylindrical structure. The attachment 25 is sized to be inserted in a bore 38 or a press-in clip bracket that is found on most hand-pulled or motorized golf carts. According to one exemplary embodiment, the attachment 25 has a diameter that is approximately the same diameter of a typical golf pencil. As those skilled in the art will appreciate, the diameter and/or length of the attachment 25 may be varied depending upon the intended application.
(23) As shown in
(24) Referring now to
(25) UHMWPE is odorless, tasteless, and nontoxic. It is highly resistant to corrosive chemicals except oxidizing acids; has extremely low moisture absorption and a very low coefficient of friction; is self-lubricating; and is highly resistant to abrasion, in some forms being 15 times more resistant to abrasion than carbon steel. Its coefficient of friction is significantly lower than that of nylon and acetal, and is comparable to that of polytetrafluoroethylene (PTFE, Teflon), but UHMWPE has better abrasion resistance than PTFE.
(26) Another benefit of using UHMWPE as cable 14 is the ability to mark the cable 14 and remove these marks without damaging the material. The marks serve as distance measurements. So the user is able lay a customized pattern for their particular trade. For example: A carpenter building common walls for a house, will have to repeat the same measurementssuch as a 16 center to center spacing for studs. Rather than having to continually use his tape measure while using his retractable holder of his carpenter pencil, he is able to use the marks on the UHMWPE cable/tether 14. If he later needs to make other spacing, he can mark the cable/tether 14 appropriately.
(27) Because the UHMWPE is very flexible and compact, the user is also able to make a very compact knot anywhere along the length of the tether. These knots can be used in lieu of marks and because they can be made very tight they will not interfere with the winding and unwinding mechanisms and construction of the retractor.
(28) Because UHMWPE is very strong compared to nylon and polyester, a smaller diameter cord can be used in the utility retractor, resulting in the ability to use a more compact retractor while achieving the same length or longer tether, meaning lower cost, less material, and a more environmentally friendly product.
(29) Moreover, UHMWPE is very resistant to a variety of chemicals and dirt, another advantage in this application area. Construction adhesives typically will not stick to this UHMWPE. Dirt and dust can be washed off without affecting the material; in contrast, nylon and polyester are weakened by continued washing and are rendered worthless after touching adhesives.
(30) Because UHMWPE is resistant to most known adhesives, special techniques are required for coupling the tether 14 to the retractor reel and to the flexible adaptor 17. Shown in
(31) According to another embodiment of this disclosure, at times the user may wish to slow down the speed of retraction of the flexible adaptor 17. It is possible for the retraction forces to be large enough to cause the flexible adaptor 17, and object being held, to bounce or flail indiscriminately when the adaptor 17 is suddenly stopped as a reaction to the collision with the body 10 of the retractor 11. This is typically a situation when the user attaches the retractor body 10 close to his head, for example, or attached to a shirt collar of pocket.
(32) To mitigate the potential danger, shown in
(33) In another embodiment, the absorber 50 may have an hour glass shape shown at 54 in
(34) Yet another embodiment of absorber 50 is a large knot, a piece of tape, that is too large to retract into the opening of the retractor 11. In a home position, the absorber 50 offers minimal amount of force absorption when the tether is being retracted. In this position, the energy absorption is limited to the characteristics of the absorber 50 material and also the shape of the absorber 50. The absorber 50 can be engineered to be shaped for better force absorption including, but not limited to, any number of irregular shapes and how tightly the absorber 50 grips the tether 14.
(35) The user may desire to increase the absorption of the retracting flexible adapter 17. This could be the situation if the retractor 11 is attached close to the user's headperhaps on a shirt collar, pocket or hat. As adapter 17 is pulled out further from the retractor 11, more energy is stored in the internal coil spring and that energy that will be dissipated when it is released. In order to dissipate the forces further from the housing 10 and the person's head, the adapter 50 can be selectively repositioned on the tether 14 4-6 from the housing 10. If the adapter 17 is released, the absorber 50 will make the first impact with the housing 10. The absorber 50 will absorb the energy as the SEA, and it may slide somewhat along the 4-6 tether 14 but its velocity will be slowed down enough to flop harmlessly away from the retractor 11 and the person to whom it is attached. The adapter 17 and the cylindrical fitting is secured against the typical pull forced of the user and retractor.
(36) At times, the user may wish to disengage the flexible adapter 17 and instrument from the tether 14. As shown in
(37) While exemplary embodiments have been described, it is recognized that additional variations may be devised without departing from the inventive concept.