Marker holder
10180154 ยท 2019-01-15
Inventors
Cpc classification
F16B9/05
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/0486
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B9/054
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B9/09
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B2/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A marker assembly is provided. The marker assembly is attachable to a roof or roof element to alert a worker to potential hazards nearby. For example, the marker assemblies may be attached to a roof, such as a corrugated roof, adjacent to four corners of a skylight, to alert a worker that the skylight may be nearby, particularly in the event that it may be buried or otherwise hidden or obscured. A transmitting beacon within the marker holder which may provide an output signal receivable by a computerized receiver. Upon receipt of the output signal by the computerized receiver, the computerized receiver can provide a notifying output.
Claims
1. A marker holder comprising: a base, the base configured to attach directly to a roof; a holder attached to the base, the holder extending from a top of the base; and a marker held within the holder, the marker extending away from the base; a transmitting beacon, the transmitting beacon providing an output signal receivable by a computerized receiver, and wherein upon receipt of the output signal by the computerized receiver, the computerized receiver provides a notifying output.
2. The marker holder of claim 1 wherein the base is configured to attach directly to a corrugation of the roof.
3. The marker holder of claim 2 wherein the base is shaped with a bottom surface having a flat center and downwardly angled sides.
4. The marker holder of claim 1 further comprising a screw connecting the base to the roof, the screw positioned coaxially with the holder.
5. The marker holder of claim 1 further comprising a screw connecting the base to the roof, the screw positioned adjacent to the holder.
6. The marker holder of claim 1 further comprising a screw connecting the base to the roof, the screw positioned to be laterally offset from the holder.
7. The marker holder of claim 1 further comprising a washer attached to a bottom of the base, the washer configured to provide a spacing between the roof and the base.
8. The marker holder of claim 7 wherein the washer is one of a plastic or a rubber.
9. A marker assembly comprising the marker holder of claim 1 and further comprising a screw connecting the base to the roof at a protruding corrugation of the roof adjacent to a skylight portion of the roof.
10. A marker assembly comprising the marker holder of claim 1 and further comprising a screw connecting the base to the roof adjacent to a skylight portion of the roof.
11. The marker holder of claim 1 further comprising two depending edges on opposite widthwise edges of the base, each of the depending edges configured to extend over a corrugation of the roof.
12. The marker holder of claim 11 further comprising a first screw threadedly passed through a first of the two depending edges, and a second screw threadedly passed through a second of the two depending edges.
13. A marker holder comprising: a base, the base configured to attach directly to a roof; a holder attached to the base, the holder extending from a top of the base; and a marker held within the holder, the marker extending away from the base; a shaft extending laterally from the base, a first block attached to a first end of the shaft, a second block attached to a second end of the shaft, wherein the shaft and block assembly is extendable and retractable in length, and wherein each of the first and second block are configured to be urged against opposing corrugations of the roof.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(13) The detailed description set forth below in connection with the appended drawings is intended as a description of presently preferred embodiments of the invention and does not represent the only forms in which the present invention may be constructed and/or utilized. The description sets forth the functions and the sequence of steps for constructing and operating the invention in connection with the illustrated embodiments.
(14) Generally, the present invention concerns a clamp and marker assembly configured to be fastened or otherwise attached to a buried, or buryable pipe or other elongate element, with the marker extending out of the burying material. In one embodiment, the clamp and marker assembly may have a clamping region formed as a worm clamp (also known in the art as a screw clamp, hose clamp, or band clamp), a holder attached to the worm clamp, and an elongate marker held by the holder extending away from the clamp. The holder may be formed as any number of connection structures, allowing it hold varying marker structure in varying directions. As such, the marker may be able to extend out of the burying material at multiple different angles and directions. However, it should be understood that the present invention may have any number of structures to achieve a similar function without straying from the scope of the invention.
(15) Turning now to
(16) The holder 12 is sized and configured to receive and hold a marker 11. In one embodiment, holder 12 may be oriented perpendicularly to the pipe to which it may attach, as shown in
(17) In some embodiment, marker 11 will fit into the holder 12 until it reaches a bottom or other stop, and cannot pass any further. In still other embodiments, the marker 11 may attach to the holder in other manners such as threaded attachment, clamps, stoppers, and the like. Marker 11 is shown herein as an elongate shaft element. Similarly, holder is shown as a rounded cylinder that forms an elongate aperture to receive the marker 11. In other embodiments having differently shaped or configured markers, the holder may similarly adjust. For example, an elongate marker having a square cross section may be held by a holder having any aperture capable of holding this shaped marker (whether it is a circle, square, hex shape or the like).
(18) The worm clamp 13 of the present invention may operate as a traditional worm clamp would. Specifically, the worm clamp 13 has a band 21a into which a screw thread pattern, or other pattern interfacable with a screw has been cut or pressed. One end of the band 21a contains a captive screw 21 attached to the band at 21b. The clamp 13 is put around the pipe, tube, or other buryable element to which it is to be connected, with the loose end being fed into a narrow space between the band 21b and the captive screw 21. When the screw is turned, it acts as a worm drive, pulling the threads of the band 21, causing the band to tighten around the buryable element. When screwed the opposite direction, the band may loosen. Once attached to the pipe 14 or other element, marker 11 may be connected via holder 12, forming the worm clamp marker assembly embodiment shown in
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(21) The worm clamp holder may be made of any material or combination of materials resilient enough to be attached to a surface and to hold a marker in place to extend away from the fastener. Generally, the present invention may be made of metals, plastics, composites, woods, and the like.
(22) The worm clamp holder of the present invention may be used in any manner capable of attaching the fastener to an element and allowing a marker to extend away from the element. In a particular embodiment, the worm clamp may be attached to a pipe and tightened down by screwing (or otherwise rotating) the worm clamp tight. Once secured in place to the pipe, a marker can be inserted into the holder, the marker sized and oriented such that it extends upwards away from the pipe through any burying material.
(23) Further, turning to
(24) Two screws 62 extend from a bottom of the base 60 to attach the base 60 to the roof corrugation on either side of the holder 12. In one embodiment, the screw 62 may be positioned inside holder 12 (which is, in this embodiment, a hollow elongate cylinder) such that the screw 62 is coaxial with the holder 12. In another embodiment, the screw or screws 62 may be laterally offset from the holder 12, as in the embodiment shown. Washer 61 may be positioned on a bottom of the base 60. Washer 61 may be formed of a material configured to protect the roof from the base, for example the washer 61 may be formed of a plastic or rubber material, but is not limited to such materials. This embodiment may be used to directly attach the base to a roof to flag an element below or nearby, in the event that such an element may be covered or obscured. Even if exposed, the marker 11 will make the element more visible.
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(30) The marker used in any of the embodiments may further be equipped with additional elements to enhance its visibility. For example, one embodiment of the marker may comprise a solar powered LED that may, for example, illuminate at night, at all times, may flash, and the like.
(31) In another embodiment, the marker may be equipped with a proximity sensor. The proximity sensor may be configured to detect the presence of a worker, such as by motion, sound, vibration, or the like. In one embodiment, this proximity sensor may be self-contained. The proximity sensor may then provide a notice such as a flashing light or audible alarm to further warn a nearby worker of a potentially dangerous element nearby. In another embodiment, the proximity may send a warning signal to a smartphone.
(32) In a further embodiment, a beacon, or beacon like device may be used or attached to the marker or marker holder. This beacon may provide data and/or warnings to an operator nearby. In one embodiment, the beacon may be a Bluetooth smart beacon that may provide simultaneous advertising on multiple bandwidths. The beacon may have multiple built-in sensors such as temperature, motion, light, and/or magnetometers, and may transmit this sensed information to a connected computing device. In use, a user may be alerted to proximity to the marker and accordingly the hazard by a warning provided by, for example, a smartphone or other specialized computing device in communication with the beacon.
(33) In some embodiments, such as that shown in
(34) While several variations of the present invention have been illustrated by way of example in preferred or particular embodiments, it is apparent that further embodiments could be developed within the spirit and scope of the present invention, or the inventive concept thereof. However, it is to be expressly understood that such modifications and adaptations are within the spirit and scope of the present invention, and are inclusive, but not limited to the following appended claims as set forth.