Patent · US12410575B2 · B2 · US
Erosion control securing apparatus and method
- (11) Publication number
- US12410575B2
- (21) Application number
- 17/767,320
- (22) Filing date
- 2021-05-28
- (30) Priority date
- 2020-05-29
- (43) Publication date
- 2025-09-09
- (45) Date of grant
- 2025-09-09
- (51) IPC
- E02D 17/20; E02D 5/80
- (52) CPC
- (73) Assignee
- Western Green LLC
- (72) Inventors
- Chad Lipscomb
- (54) Title
- Erosion control securing apparatus and method
- (57) Abstract
An erosion control securing apparatus and method is disclosed. For example, an erosion control securing device is provided that includes a main shaft with a hexagonal-shaped head portion at its proximal end and a coil portion at its distal end. In one example, the coil portion of the erosion control securing device includes three turns. Further, a method of using the presently disclosed erosion control securing device for securing erosion control products is provided.
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Claims (17)
- An erosion control securing system kit, comprising: an erosion control securing device comprising: a main shaft having a main shaft proximal end and a main shaft distal end; a head portion at the main shaft proximal end, the head portion being substantially hexagonal in shape; and a coil portion at the main shaft distal end; and a rotational drive mechanism for installing the securing device, wherein the rotational drive mechanism comprises: a socket with a body having a recess on one side, the recess being substantially hexagonal in shape and dimensioned to receive the head portion, wherein the substantially hexagonal recess includes a central recess that is substantially circular; a magnet within the central recess; and an arrangement of engaging features within the substantially hexagonal recess and surrounding the central recess, wherein the arrangement of engaging features each extend from the central recess to the head portion in an instance in which the head portion is received by the recess.
- The securing system kit of claim 1, wherein the body has a socket wrench receiver on a side opposing the one side.
- The securing system kit of claim 1, wherein the coil portion has three turns, with a first turn of the three turns having a first radius, a second turn of the three turns having a radius larger than the first radius, and a third turn of the three turns having a radius the same as the first radius.
- The securing system kit of claim 3, wherein the first radius is about 0.156 inches and the second radius is about 0.675 inches.
- The securing system kit of claim 4, wherein the three turns each has a radius ranging from about 0.125 inches to about 1.25 inches.
- The securing system kit of claim 1, wherein the main shaft, the head portion, and the coil portion are connected in a substantially continuous matter.
- The securing system kit of claim 6, wherein the main shaft, the head portion, and the coil portion are substantially tubular with a radius of about 0.156 inches.
- The securing system kit of claim 1, further comprising a head transition segment between the head portion and the main shaft proximal end, wherein the main shaft is arranged substantially normal to a plane of the head portion.
- The securing system kit of claim 8, further comprising a coil transition segment between the main shaft distal end and the proximal end of the coil portion, a tip at the distal end of the coil portion, and a tip transition segment between the distal end of the coil portion and the proximal end of the tip.
- The securing system kit of claim 9, wherein the tip is about 0.44 inches long, wherein the coil transition segment is about 0.16 inches long, and wherein the tip transition segment is about 0.16 inches long.
- The securing system kit of claim 9, wherein an overall length of the securing device is about 8.156 inches, wherein the main shaft is about 4.25 inches long, and wherein the coil portion is about 3.00 inches long, and wherein a width of the head portion is about 1.47 inches.
- The securing system kit of claim 9, wherein the head portion is formed by adjoining segments, the adjoining segments including a terminal end segment next to four central segments next to a head transition segment, the head transition segment connected to the main shaft, wherein the head transition segment is spaced apart from the terminal end segment.
- The securing system kit of claim 12, wherein the terminal end segment is about 0.33 inches long, and wherein the four central segments are each about 0.85 inches long.
- The securing system kit of claim 12, wherein the head transition segment includes three adjoining segments, a first segment of the three adjoining segments being connected to one of the four central segments, a second segment of the three adjoining segments, wherein a length of the second segment being about the same length as a length of the first segment of the three adjoining segments, and a third segment of the three adjoining segments being connected to the main shaft.
- A method for using an erosional control securing system, comprising: providing an erosion control securing device comprising: a main shaft having a main shaft proximal end and a main shaft distal end; a head portion at the main shaft proximal end, the head portion being substantially hexagonal in shape; and a coil portion at the main shaft distal end; providing a matting material; laying out the matting material over an area; installing the securing device into the matting material to secure the matting material to the area, wherein the head portion is on one side of the matting material and the main shaft and coil portion are on an opposing side of the matting material, wherein the securing device is installed into the matting material by a rotational drive mechanism for installing the securing device, wherein the rotational drive mechanism comprises: a socket with a body having a recess on one side, the recess being substantially hexagonal in shape and dimensioned to receive the head portion, wherein the substantially hexagonal recess includes a central recess that is substantially circular; a magnet within the central recess; and an arrangement of engaging features within the substantially hexagonal recess and surrounding the central recess, wherein the arrangement of engaging features each extend from the central recess to the head portion in an instance in which the head portion is received by the recess.
- The method of claim 15, wherein the body has a socket wrench receiver on a side opposing the one side.
- The method of claim 15, wherein the coil portion has three turns, with a first turn of the three turns having a first radius, a second turn of the three turns having a radius larger than the first radius, and a third turn of the three turns having a radius the same as the first radius.
Description
The presently disclosed subject matter relates generally to the installation and performance of erosion control products and more particularly to an erosion control securing apparatus and method.
Erosion control is important to the environment and its inhabitants. Not only does severe erosion threaten plant and animal life, economic concerns are triggered when commercial and infrastructure facilities are disrupted or harmed.
On land areas that are susceptible to erosion, therefore, it may be necessary to provide some kind of erosion control system. In one example, erosion control matting or blankets may be laid out over the land area. One issue is keeping this material in place in areas having slopes and channels The erosion control matting or blankets may be secured in place by the use of securing devices, such as pins, pegs, or staples. However, a drawback of such devices is that they can be easily removed, may not be reliable and/or may not be able to be easily installed, which can lead to failure of the erosion control system.
Accordingly, there remains a need for improved erosion protection that is reliable and convenient.
The following presents a simplified summary of the invention in order to provide a basic understanding of some aspects of the invention. This summary is not an extensive overview of the invention. It is not intended to identify key or critical elements of the invention or to delineate the scope of the invention; its sole purpose is to present concepts of the invention in a simplified form as a prelude to the more detailed description that is subsequently presented.
Citations (11)
- US2603319A
- US4543972A
- US6715384B1
- US20040148877A1
- US7044031B1
- US20120217709A1
- DE102011014880A1
- WO2016020631A2
- US20170218593A1
- US20210048055A1
- US20220098815A1
Record as JSON
{
"publication_number": "US12410575B2",
"country": "US",
"kind": "B2",
"title": "Erosion control securing apparatus and method",
"abstract": "An erosion control securing apparatus and method is disclosed. For example, an erosion control securing device is provided that includes a main shaft with a hexagonal-shaped head portion at its proximal end and a coil portion at its distal end. In one example, the coil portion of the erosion control securing device includes three turns. Further, a method of using the presently disclosed erosion control securing device for securing erosion control products is provided.",
"claims": [
"1. An erosion control securing system kit, comprising: an erosion control securing device comprising: a main shaft having a main shaft proximal end and a main shaft distal end; a head portion at the main shaft proximal end, the head portion being substantially hexagonal in shape; and a coil portion at the main shaft distal end; and a rotational drive mechanism for installing the securing device, wherein the rotational drive mechanism comprises: a socket with a body having a recess on one side, the recess being substantially hexagonal in shape and dimensioned to receive the head portion, wherein the substantially hexagonal recess includes a central recess that is substantially circular; a magnet within the central recess; and an arrangement of engaging features within the substantially hexagonal recess and surrounding the central recess, wherein the arrangement of engaging features each extend from the central recess to the head portion in an instance in which the head portion is received by the recess.",
"2. The securing system kit of claim 1, wherein the body has a socket wrench receiver on a side opposing the one side.",
"3. The securing system kit of claim 1, wherein the coil portion has three turns, with a first turn of the three turns having a first radius, a second turn of the three turns having a radius larger than the first radius, and a third turn of the three turns having a radius the same as the first radius.",
"4. The securing system kit of claim 3, wherein the first radius is about 0.156 inches and the second radius is about 0.675 inches.",
"5. The securing system kit of claim 4, wherein the three turns each has a radius ranging from about 0.125 inches to about 1.25 inches.",
"6. The securing system kit of claim 1, wherein the main shaft, the head portion, and the coil portion are connected in a substantially continuous matter.",
"7. The securing system kit of claim 6, wherein the main shaft, the head portion, and the coil portion are substantially tubular with a radius of about 0.156 inches.",
"8. The securing system kit of claim 1, further comprising a head transition segment between the head portion and the main shaft proximal end, wherein the main shaft is arranged substantially normal to a plane of the head portion.",
"9. The securing system kit of claim 8, further comprising a coil transition segment between the main shaft distal end and the proximal end of the coil portion, a tip at the distal end of the coil portion, and a tip transition segment between the distal end of the coil portion and the proximal end of the tip.",
"10. The securing system kit of claim 9, wherein the tip is about 0.44 inches long, wherein the coil transition segment is about 0.16 inches long, and wherein the tip transition segment is about 0.16 inches long.",
"11. The securing system kit of claim 9, wherein an overall length of the securing device is about 8.156 inches, wherein the main shaft is about 4.25 inches long, and wherein the coil portion is about 3.00 inches long, and wherein a width of the head portion is about 1.47 inches.",
"12. The securing system kit of claim 9, wherein the head portion is formed by adjoining segments, the adjoining segments including a terminal end segment next to four central segments next to a head transition segment, the head transition segment connected to the main shaft, wherein the head transition segment is spaced apart from the terminal end segment.",
"13. The securing system kit of claim 12, wherein the terminal end segment is about 0.33 inches long, and wherein the four central segments are each about 0.85 inches long.",
"14. The securing system kit of claim 12, wherein the head transition segment includes three adjoining segments, a first segment of the three adjoining segments being connected to one of the four central segments, a second segment of the three adjoining segments, wherein a length of the second segment being about the same length as a length of the first segment of the three adjoining segments, and a third segment of the three adjoining segments being connected to the main shaft.",
"15. A method for using an erosional control securing system, comprising: providing an erosion control securing device comprising: a main shaft having a main shaft proximal end and a main shaft distal end; a head portion at the main shaft proximal end, the head portion being substantially hexagonal in shape; and a coil portion at the main shaft distal end; providing a matting material; laying out the matting material over an area; installing the securing device into the matting material to secure the matting material to the area, wherein the head portion is on one side of the matting material and the main shaft and coil portion are on an opposing side of the matting material, wherein the securing device is installed into the matting material by a rotational drive mechanism for installing the securing device, wherein the rotational drive mechanism comprises: a socket with a body having a recess on one side, the recess being substantially hexagonal in shape and dimensioned to receive the head portion, wherein the substantially hexagonal recess includes a central recess that is substantially circular; a magnet within the central recess; and an arrangement of engaging features within the substantially hexagonal recess and surrounding the central recess, wherein the arrangement of engaging features each extend from the central recess to the head portion in an instance in which the head portion is received by the recess.",
"16. The method of claim 15, wherein the body has a socket wrench receiver on a side opposing the one side.",
"17. The method of claim 15, wherein the coil portion has three turns, with a first turn of the three turns having a first radius, a second turn of the three turns having a radius larger than the first radius, and a third turn of the three turns having a radius the same as the first radius."
],
"description_excerpt": "The presently disclosed subject matter relates generally to the installation and performance of erosion control products and more particularly to an erosion control securing apparatus and method.\n\nErosion control is important to the environment and its inhabitants. Not only does severe erosion threaten plant and animal life, economic concerns are triggered when commercial and infrastructure facilities are disrupted or harmed.\n\nOn land areas that are susceptible to erosion, therefore, it may be necessary to provide some kind of erosion control system. In one example, erosion control matting or blankets may be laid out over the land area. One issue is keeping this material in place in areas having slopes and channels The erosion control matting or blankets may be secured in place by the use of securing devices, such as pins, pegs, or staples. However, a drawback of such devices is that they can be easily removed, may not be reliable and/or may not be able to be easily installed, which can lead to failure of the erosion control system.\n\nAccordingly, there remains a need for improved erosion protection that is reliable and convenient.\n\nThe following presents a simplified summary of the invention in order to provide a basic understanding of some aspects of the invention. This summary is not an extensive overview of the invention. It is not intended to identify key or critical elements of the invention or to delineate the scope of the invention; its sole purpose is to present concepts of the invention in a simplified form as a prelude to the more detailed description that is subsequently presented.",
"cpc": [
"E02D 5/801",
"B25B 13/065",
"B25B 13/50",
"E02B 3/122",
"E02D 17/202",
"E02D 2200/1671",
"E02D 2600/30"
],
"ipc": [
"E02D 17/20",
"E02D 5/80"
],
"assignees": [
"Western Green LLC"
],
"inventors": [
"Chad Lipscomb"
],
"filing_date": "2021-05-28",
"publication_date": "2025-09-09",
"grant_date": "2025-09-09",
"priority_date": "2020-05-29",
"application_number": "US-202117767320-A",
"family_id": "78722831",
"cited_by_count": 0,
"citations": [
"US2603319A",
"US4543972A",
"US6715384B1",
"US20040148877A1",
"US7044031B1",
"US20120217709A1",
"DE102011014880A1",
"WO2016020631A2",
"US20170218593A1",
"US20210048055A1",
"US20220098815A1"
]
}
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