US3036542A - Embedment anchor - Google Patents

Embedment anchor Download PDF

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Publication number
US3036542A
US3036542A US788314A US78831459A US3036542A US 3036542 A US3036542 A US 3036542A US 788314 A US788314 A US 788314A US 78831459 A US78831459 A US 78831459A US 3036542 A US3036542 A US 3036542A
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anchor
housing
water
cable
charge
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US788314A
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Russell S Robinson
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Pneumo Dynamics Corp
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Pneumo Dynamics Corp
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Priority to US788314A priority Critical patent/US3036542A/en
Priority to BE586184A priority patent/BE586184A/en
Priority to ES0255191A priority patent/ES255191A1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B21/00Tying-up; Shifting, towing, or pushing equipment; Anchoring
    • B63B21/24Anchors
    • B63B21/26Anchors securing to bed
    • B63B21/28Anchors securing to bed driven in by explosive charge

Definitions

  • This invention relates to anchors and more particularly to an embedment anchor in which an explosive charge is used to drive the anchor into an ocean bottom or the like so that the anchor has a high holding power.
  • FIGURE 1 is a schematic illustration of an embedment anchor according to this invention showing the anchor as it engages the ocean bottom;
  • FIGURE 2 is a view similar to FIGURE 1 showing the elements after the anchor has embedded itself in the bottom;
  • FIGURE 3 is an enlarged side elevation of an anchor according to this invention.
  • FIGURE 4 is a longitudinal section taken along 4-4 of FIGURE 3 showing the interior structure of the anchor
  • FIGURE 5 is an enlarged fragmentary view of the ignition or ring mechanism showing the ignition mechanism as it is initially immersed in water;
  • FIGURE 6 is a view similar to FIGURE 5 showing the tiring mechanism when it is submerged prior to detonation of the propellant charge;
  • FIGURE 7 is a view similar to FIGURES 5 and 6 showing the operation of the tiring mechanism when it ignites the propelling charge;
  • FIGURE 8 is a cross section taken along 8-8 ofl FIG- URE 5;
  • FIGURE 9 is an enlarged fragmentary view of the safety switch modified for use in fresh water.
  • An anchor which includes propulsion means to embed the anchor has the ⁇ advantage of providing large anchoring forces with the relatively lightweight structure.
  • the anchor is provided with a safety means which insures that the propelling charge used to embed the anchor cannot be ignited before the anchor is lowered into the water. It also has a tiring mechanism which is insensitive to water pressure so that it will only ignite the propelling charge upon engagement of the anchor with the ocean ICC bottom.
  • FIGURES 1 and 2 the operation is schematically shown. When the anchor 8 engages the ocean bottom 9 as shown in FIGURE l, the propellant charge drives the anchor into the bottom as shown in FIG- URE 2.
  • the anchor 8 includes an anchor body comprising a main tubular housing 10 formed with axially extending symmetrical tins 11. Threaded onto the lower end of the housing 10 is a nose member 12 formed with a central bore 13 in which is positioned a battery 14 used to ignite a propellant charge 16.
  • the propellant charge 16 is located within a cup-shaped piston 17 positioned within the tubular housing 10 adjacent to the nose member 12.
  • the piston 17 is formed with a thin lip 18 which is clamped between the nose member 12 and the tubular housing 16. This lip provides a uid tight seal to prevent water from reaching the ignition mechanism and the propellant charge 16 but is proportioned so that it is pulled out of its clamped engagement by the force developed upon ignition of the charge 16.
  • An electrically operated squib 19, positioned in the bore 13 adjacent to the propellant charge 16, is electrically ignited upon engagement of the anchor with the bottom of the body of water and in turn operates to ignite the propellant charge 16.
  • the electrical circuit used to ignite the squib 19 includes a water operated safety switch 21 and a tiring pin type switch 15 both connected in series between the battery 14 and the squib 19.
  • the water safety switch 21 is merely a conductor 23 which connects to the upper terminal of the battery 14 and projects through the side wall of the nose member 12.
  • the conductor 23 provides a bare end 20 insulated from the nose member 12 and positioned in a side port 24 formed in the nose member 12.
  • the side port 24 provides a recessed location for the bared end 20 to protect it against damage.
  • the anchor When the anchor is submerged in salt water, the water acts as a conductor to electrically connect the bare end 2t) of the conductor 23 with the nose member 12 and ground the upper terminal of the battery 14.
  • the circuit is open and it is impossible for the charge 16 to be ignited even if the tiring pin accidently movesto the operated or closed position.
  • the lower terminal of the battery 14 is connected to one side of the squib 19 by a conductor 26.
  • the other side of the squib 19 is connected by a conductor 27 to the tiring switch 15.
  • the conductor 27 extends with sealing engagement through an axial passage in an end member 28 threaded into the nose member 12 and provides a bare end positioned for engagement by a tiring pin 22.
  • This pin is formed with a spider section 29 guided along an end bore 31 for Aaxial movement between the normal or open position shown in FIGURES 4, 5, and 6 and a closed or operated position shown in FIGURE 7.
  • the lower end of the nose member 12 is -formed with an inwardly extending shoulder 32 engageable by an outwardly extending shoulder 50 formed on the pin 22 to prevent downward movement of the tiring pin 22 beyond the normal open position.
  • a conical guide section 33 is threaded on the lower end of the tiring pin 22 to prevent the entry of foreign matter into the bore 31 but does not provide a fluid tight seal with the nose member 12.
  • FIGURES 7 and 8 illustrate the operation of the trapped air in preventing water from reaching the conductor 27. This structure also permits substantial tipping of the anchor from the vertical without loss of the trapped air. Because the firing pin 22 is exposed on all sides to the fluid under pressure, the pressure of the water has no effect on the. firing pin i22 and does not tend to close the circuit.
  • a spring 36 extends between the end of the nose memiber 12 and the firing pin 22 normally maintaining the firing pin in the open position. This prevents the water resistance from 4moving the firing pin upward regardless of the rate of descent of the anchor.
  • the weight of the anchor overcomes the action of the spring 36 and moves the firing pin upward until it engages the bared end of the conductor 27 thereby grounding the conductor and completing the circuit.
  • the completion of Ithe electrical circuit operates to ignite the squib 19 and in turn the propellant charge 16. Ignition of the charge 16 causes the piston 17 to be expelled upwardly along the tubular housing y10 displacing the water contained therein producing a large thrust to drive the anchor into the bottom 9.
  • An anchor cable 37 is connected to the upper end of an eye 38 which is in turn mounted in a cap member 39.
  • the cap member 39 is formed with an annular lip 41 which resiliently projects into a groove 42 around the upper end of the tubular housing 10 to releasably clamp the cap member 39 to the housing 10 and support the anchor in the vertical position as it is lowered.
  • the eye 38 extends lthrough the cap 39 and is provided with a lower portion to which is connected a short connecting cable 43.
  • the connecting cable 43 is coiled within the storage recess defined fby the tubular housing 10 and cap member 39 and has one end projecting through a slot 44 in the housing '10 immediately below the cap 39.
  • This end of the connecting cable ⁇ 43 is connected to one end of a link 46 which is in turn connected to the tubular housing 10 by a pivot 47 intermediate the ends of the housing 10.
  • the connection between the cap 39 and the housing 10 is sufficient to support the weight of the anchor when it is handled on shipboard or lowered into the water but is not sufficient to overcome the large reaction force which occurs when the charge 16 is ignited. Therefore, the ignition of the charge 16 operates to drive the anchor downward into the bottom and also projects the cable 43 out of the housing 10.
  • the coil of cable stored within the housing 10 provides sufficient slack to prevent a large thrust from being applied to the anchor cable and permits the anchor to freely move downward for maximum embedment.
  • the cap 39 is formed with scoops 48 which serves the double function of permitting entry of Water into the housing l10 above the piston A17 and also providing a water resistance which assists in separating the cap 39 from the housing 10 when the charge is ignited.
  • scoops 48 serves the double function of permitting entry of Water into the housing l10 above the piston A17 and also providing a water resistance which assists in separating the cap 39 from the housing 10 when the charge is ignited.
  • any force on the anchor cable 37 tending toremove the anchor is applied to the housing at the pivot 47. Since the pivot 47 is positioned eccentric of the housing and intermediate the ends, such a force produces a force couple tending to cock or rotate the anchor in the bottom to a position perpendicular to the cable. This prevents the movement of the anchor back up through the hole that it forms in the ocean bottom during the embedding operation and causes the entire side area of the anchor to resist the removal instead of the much smaller cross sectional area. By using this structure, the small cross section is all that resists embedrnent fbut the much larger side area resists removal.
  • An embedment anchor comprising a housing, explosive means in said housing operable to propel said housing and embed it in a solid upon contact therewith, a cap secured to said housing releasable therefrom in response to a predetermined force applied thereto, said cap co-operating with said housing to define a storage chamber, a cable having a portion coiled in said chamber, first means connecting one end of said coiled portion to said housing, and second means connecting the other end of said coiled portion to said cap, operation of said explosive means producing said predetermined force to release said cap.
  • An embedment vanchor comprising a housing, explosive means :in said housing operable to propel said lhousing and enrbed it in a solid upon contact therewith, a
  • cap secured ⁇ to said housing releasable therefrom in response to a predetermined force applied thereto, said cap co-operating with said housing to dene a storage chamber, a cable having a portion coiled in said chamber, rst means connecting one end of said coiled portion to said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said cap, operation of said explosive means producing said predetermined force to release said cap.
  • An embedment anchor comprising a tubular housing, explosive means -in said housing operable to propel said housing into a solid upon contact therewith, a cable having a portion coiled in said housing, first means connecting one end of said coiled portion to said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said housing releasable therefrom in response to a predetermined force applied thereto, operation of said explosive means producing said predetermined force to release said second means.
  • An embedment anchor comprising a tubular housing, explosive means in said housing operable to propel said housing into a Abottom of ⁇ a body of water upon contact therewith, a cable having a portion coiled in said housing, ⁇ first means connecting one end of said coiled portion to the outside of said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said housing releasable therefrom in response to a predetermined force applied thereto, operation of said explosive means producing said predetermined force to release said second means.
  • a switch adapted to be submerged in a liquid comprising a body ⁇ formed with a vertically extending recess open at its lower end, a conductor insulated from said body formed with a bared section in the upper portion of said recess, an element supported by said body for movement from a iirst position spaced from said bared section to a second position in engagement with said bared section, said recess being adapted to trap gas preventing contact between liquid and said bared section.
  • An embedment anchor comprising a housing, electrically ignitable propulsion means in said housing operable to drive said housing into the bottom of a body of water, a submersible switch operable to ignite said propulsion means, said switch including a body formed with a vertically extending recess open at its lower end, a conductor insulated from said body formed with an exposed end in the upper portion of said recess, an element supported by said body for movement under the influence of engagement with said Ibottom ⁇ from a rist position spaced from said exposed end to a second position in engagement with said exposed end, said recess being adapted to trap gas preventing contact between liquid and said bared section.
  • An embedment anchor comprising a housing, elec- -trically ignitable propulsion means in said housing operable to drive said housing into the bottom of a body of water, a submersible switch operable to ignite said propulsion means, said switch including a body formed with a vertically extending recess open at its lower end, said recess including a lower portion having a first cross section land an upper portion having a cross section substantially less than said lower portion, a conductor insulated from said Ibody formed with an exposed end in said upper portion, an element supported by said body for movement under the inliuence of engagement with said bottom from a rst position spaced from said exposed end to a second position in engagement with said exposed end, said recess being adapted to trap gas preventing contact between liquid and said bared section.
  • An anchor adapted to embed itself in the bottom of a body of water comprising a tubular housing, a cable connected to one end of said housing, a propellant charge in said housing, a nose member on the other end of said housing formed with a vertically extending recess open only at its lower end, a rst conductor insulated from said nose member having a bared end positioned at -the upper end of said recess, said recess being ⁇ adapted to trap gas preventing contact between liquid and said bared section, a ring element movable from a normal position spaced from said bared end to an operated position engaging said bared end, a second conductor insulated from said nose member formed with an end exposed to said water when said anchor is immersed, and electrical ignition means connected to both of said conductors operable to ignite said propellant when said firing element engages said bared end Iand said second conductor is immersed in water.
  • An anchor adapted to embed itself in the bottom of a body of water comprising a housing assembly, an anchor cable connected at its end to said assembly, a propellant charge in said body operable on ignition to propel said body downward, said cable including a portion coiled in said body assembly, separable means conii nected between said cable above said coil and said assembly maintaining said anchor in a vertical position prior to the ignition of said propellant charge, ignition means connected to said .propellant charge including a tiring mechanism operable to ignite said charge upon engagement between said anchor and said bottom, and a safety mechanism connected to said ignition means operable to permit ignition of said propellant charge only when said anchor is immersed in water.
  • An embedment anchor comprising an anchor body, a member releasably secured to said anchor body, an explosive charge operable to separate said member from said anchor body by reaction therewith and to propel said anchor body and embed it in the earth, detonation means on said anchor body operably connected to said charge for igniting said charge in response to engagement between said detonation means and the earth only after said anchor is immersed in water, an anchor cable connected to said member for lowering said embedment anchor into the water, and a slack length of cable connected at one end to said anchor body at a point intermediate its ends and connected at its other end to said anchor cable.
  • An embedment anchor comprising an anchor body, a member releasably secured to said anchor body, an explosive charge operable to separate said member from said anchor body by reaction therewith and propel said anchor body and embed it in the earth, detonation means mounted on said anchor body for movement relative thereto in response to engagement thereof with the earth, and means connecting said detonation means ⁇ 'and charge for igniting said charge in response to movement of said detonation means after said anchor is immersed in water, an anchor cable connected to said member for lowering said embedment anchor into the Water, ⁇ and a slack length of cable connected at one end to said anchor body at a point intermediate its ends and connected at its other end to said anchor cable.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Piles And Underground Anchors (AREA)
  • Air Bags (AREA)

Description

May 29, 1962 R. s. ROBINSON EMBEDMENT ANCHOR Filed Jan. 22. 1959 AT TORNE Y United States Patent O 3,036,542 EMBEDMENT ANCHOR Russell S. Robinson, Claremont, Calif., assignor, by mesne assignments, to PneumoDynamics Corporation, Cleveland, Ohio, a corporation of Delaware Filed Jan. 22, 1959, Ser. No. 788,314 12 Claims. (Cl. 114-206) This invention relates to anchors and more particularly to an embedment anchor in which an explosive charge is used to drive the anchor into an ocean bottom or the like so that the anchor has a high holding power.
It is an important object of this invention to provide a new and improved embedment anchor.
It is another object of this invention to provide an embedment anchor having explosive propulsion means and an ignition means which `are insensitive to water depth.
It is another object of this invention to provide an ignition system for an embedment anchor which prevents the ignition of the propulsion charge until Vthe anchor is immersed in water.
It is another object of this invention to provide an embedment anchor having an explosive propulsion means which provides maximum utilization of the propulsion energy.
It is still -another object of this invention to provide an embedment anchor having a coil of anchor cable within the anchor housing which prevents strains from being transmitted to the anchor cable when the anchor is operated to embed itself in the ocean bottom.
It is still another object of this invention to provide an embedment anchor having a cable connection intermediate the ends of the anchor so that any force on the cable tending to loosen the anchor produces a force moment which moves the anchor crosswise to the direction of the cable.
Further objects and advantages will appear from the following description and drawings, wherein:
FIGURE 1 is a schematic illustration of an embedment anchor according to this invention showing the anchor as it engages the ocean bottom;
FIGURE 2 is a view similar to FIGURE 1 showing the elements after the anchor has embedded itself in the bottom;
FIGURE 3 is an enlarged side elevation of an anchor according to this invention;
FIGURE 4 is a longitudinal section taken along 4-4 of FIGURE 3 showing the interior structure of the anchor;
FIGURE 5 is an enlarged fragmentary view of the ignition or ring mechanism showing the ignition mechanism as it is initially immersed in water;
FIGURE 6 is a view similar to FIGURE 5 showing the tiring mechanism when it is submerged prior to detonation of the propellant charge;
FIGURE 7 is a view similar to FIGURES 5 and 6 showing the operation of the tiring mechanism when it ignites the propelling charge;
FIGURE 8 is a cross section taken along 8-8 ofl FIG- URE 5; and
FIGURE 9 is an enlarged fragmentary view of the safety switch modified for use in fresh water.
An anchor which includes propulsion means to embed the anchor has the `advantage of providing large anchoring forces with the relatively lightweight structure. The anchor is provided with a safety means which insures that the propelling charge used to embed the anchor cannot be ignited before the anchor is lowered into the water. It also has a tiring mechanism which is insensitive to water pressure so that it will only ignite the propelling charge upon engagement of the anchor with the ocean ICC bottom. In FIGURES 1 and 2, the operation is schematically shown. When the anchor 8 engages the ocean bottom 9 as shown in FIGURE l, the propellant charge drives the anchor into the bottom as shown in FIG- URE 2.
The anchor 8 includes an anchor body comprising a main tubular housing 10 formed with axially extending symmetrical tins 11. Threaded onto the lower end of the housing 10 is a nose member 12 formed with a central bore 13 in which is positioned a battery 14 used to ignite a propellant charge 16. The propellant charge 16 is located within a cup-shaped piston 17 positioned within the tubular housing 10 adjacent to the nose member 12. The piston 17 is formed with a thin lip 18 which is clamped between the nose member 12 and the tubular housing 16. This lip provides a uid tight seal to prevent water from reaching the ignition mechanism and the propellant charge 16 but is proportioned so that it is pulled out of its clamped engagement by the force developed upon ignition of the charge 16. An electrically operated squib 19, positioned in the bore 13 adjacent to the propellant charge 16, is electrically ignited upon engagement of the anchor with the bottom of the body of water and in turn operates to ignite the propellant charge 16.
The electrical circuit used to ignite the squib 19 includes a water operated safety switch 21 and a tiring pin type switch 15 both connected in series between the battery 14 and the squib 19. The water safety switch 21 is merely a conductor 23 which connects to the upper terminal of the battery 14 and projects through the side wall of the nose member 12. The conductor 23 provides a bare end 20 insulated from the nose member 12 and positioned in a side port 24 formed in the nose member 12. The side port 24 provides a recessed location for the bared end 20 to protect it against damage. When the anchor is submerged in salt water, the water acts as a conductor to electrically connect the bare end 2t) of the conductor 23 with the nose member 12 and ground the upper terminal of the battery 14. When water is not present to complete this circuit prior to the immersion of the anchor, the circuit is open and it is impossible for the charge 16 to be ignited even if the tiring pin accidently movesto the operated or closed position.
In the event the anchor is to be used in fresh water which does not have sutiicient conducting properties, it is merely necessary to place a tablet 25 (shown in FIG- URE 9) of suitable electrolyte, such as salt, in the port 24 which is dissolved upon immersion ofthe anchor to provide the completion of the circuit. A piece of metal gauze 30 is used to retain the tablet in place.
The lower terminal of the battery 14 is connected to one side of the squib 19 by a conductor 26. The other side of the squib 19 is connected by a conductor 27 to the tiring switch 15. The conductor 27 extends with sealing engagement through an axial passage in an end member 28 threaded into the nose member 12 and provides a bare end positioned for engagement by a tiring pin 22. This pin is formed with a spider section 29 guided along an end bore 31 for Aaxial movement between the normal or open position shown in FIGURES 4, 5, and 6 and a closed or operated position shown in FIGURE 7. The lower end of the nose member 12 is -formed with an inwardly extending shoulder 32 engageable by an outwardly extending shoulder 50 formed on the pin 22 to prevent downward movement of the tiring pin 22 beyond the normal open position. A conical guide section 33 is threaded on the lower end of the tiring pin 22 to prevent the entry of foreign matter into the bore 31 but does not provide a fluid tight seal with the nose member 12. When the anchor is lowered into the Water, a small amount of air is trapped within the bore 31 which prevents water from reaching the bared end of the conductor 27 and thus prevents the hydraulic grounding of this conductor 27. The end member 28 is formed with a small diameter recess 34 best shown in FIGURES 5 through 7 in which the bared end of the conductor 27 is positioned. The cross sectional area of this recess is relatively small when compared to the cross section of the bore 31 so even though the anchor is lowered to substantial depths, in excess of 150 fathoms, the pressure of the water will not cause sufficient pressurization of the air trapped within the bore 31 to permit the water to reach the bared end of the conductor 27. FIGURES 7 and 8 illustrate the operation of the trapped air in preventing water from reaching the conductor 27. This structure also permits substantial tipping of the anchor from the vertical without loss of the trapped air. Because the firing pin 22 is exposed on all sides to the fluid under pressure, the pressure of the water has no effect on the. firing pin i22 and does not tend to close the circuit.
A spring 36 extends between the end of the nose memiber 12 and the firing pin 22 normally maintaining the firing pin in the open position. This prevents the water resistance from 4moving the firing pin upward regardless of the rate of descent of the anchor. When the firing pin engages the bottom 9 of the body of water, the weight of the anchor overcomes the action of the spring 36 and moves the firing pin upward until it engages the bared end of the conductor 27 thereby grounding the conductor and completing the circuit. The completion of Ithe electrical circuit operates to ignite the squib 19 and in turn the propellant charge 16. Ignition of the charge 16 causes the piston 17 to be expelled upwardly along the tubular housing y10 displacing the water contained therein producing a large thrust to drive the anchor into the bottom 9.
An anchor cable 37 is connected to the upper end of an eye 38 which is in turn mounted in a cap member 39. The cap member 39 is formed with an annular lip 41 which resiliently projects into a groove 42 around the upper end of the tubular housing 10 to releasably clamp the cap member 39 to the housing 10 and support the anchor in the vertical position as it is lowered. The eye 38 extends lthrough the cap 39 and is provided with a lower portion to which is connected a short connecting cable 43. 'The connecting cable 43 is coiled within the storage recess defined fby the tubular housing 10 and cap member 39 and has one end projecting through a slot 44 in the housing '10 immediately below the cap 39. This end of the connecting cable `43 is connected to one end of a link 46 which is in turn connected to the tubular housing 10 by a pivot 47 intermediate the ends of the housing 10. The connection between the cap 39 and the housing 10 is sufficient to support the weight of the anchor when it is handled on shipboard or lowered into the water but is not sufficient to overcome the large reaction force which occurs when the charge 16 is ignited. Therefore, the ignition of the charge 16 operates to drive the anchor downward into the bottom and also projects the cable 43 out of the housing 10. The coil of cable stored within the housing 10 provides sufficient slack to prevent a large thrust from being applied to the anchor cable and permits the anchor to freely move downward for maximum embedment.
The cap 39 is formed with scoops 48 which serves the double function of permitting entry of Water into the housing l10 above the piston A17 and also providing a water resistance which assists in separating the cap 39 from the housing 10 when the charge is ignited. By insuring that the tubular housing 10 above the piston '17 is filled with water, improved performance is provided because the large mass of the water within the tubular housing 10 1s rapidly expelled upward by the piston i17 and produces a large thrust reaction on the anchor. Also, the mass of water within the housing 10 surrounding the cable 43 tends to provide a hydraulic connection which expel-s the cable from the housing before the piston 17 can engage the cable 43.
Once the anchor is embeded in the bottom, :any force on the anchor cable 37 tending toremove the anchor is applied to the housing at the pivot 47. Since the pivot 47 is positioned eccentric of the housing and intermediate the ends, such a force produces a force couple tending to cock or rotate the anchor in the bottom to a position perpendicular to the cable. This prevents the movement of the anchor back up through the hole that it forms in the ocean bottom during the embedding operation and causes the entire side area of the anchor to resist the removal instead of the much smaller cross sectional area. By using this structure, the small cross section is all that resists embedrnent fbut the much larger side area resists removal.
Although a preferred embodiment of this invention is illustrated, it will be realized that various modifications of the structural details may be made without departing from the mode of operation and the essence of the invention. Therefore, except insofar as they are claimed in the appended claims, structural details may be varied widely without modifying the mode of operation. Accordingly, the appended claims yand not the aforesaid detailed description are determinative of the scope of the invention.
I'claim:
1. An embedment anchor comprising a housing, explosive means in said housing operable to propel said housing and embed it in a solid upon contact therewith, a cap secured to said housing releasable therefrom in response to a predetermined force applied thereto, said cap co-operating with said housing to define a storage chamber, a cable having a portion coiled in said chamber, first means connecting one end of said coiled portion to said housing, and second means connecting the other end of said coiled portion to said cap, operation of said explosive means producing said predetermined force to release said cap.
Z. An embedment vanchor comprising a housing, explosive means :in said housing operable to propel said lhousing and enrbed it in a solid upon contact therewith, a
cap secured `to said housing releasable therefrom in response to a predetermined force applied thereto, said cap co-operating with said housing to dene a storage chamber, a cable having a portion coiled in said chamber, rst means connecting one end of said coiled portion to said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said cap, operation of said explosive means producing said predetermined force to release said cap.
3. An embedment anchor comprising a tubular housing, explosive means -in said housing operable to propel said housing into a solid upon contact therewith, a cable having a portion coiled in said housing, first means connecting one end of said coiled portion to said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said housing releasable therefrom in response to a predetermined force applied thereto, operation of said explosive means producing said predetermined force to release said second means.
4. An embedment anchor comprising a tubular housing, explosive means in said housing operable to propel said housing into a Abottom of `a body of water upon contact therewith, a cable having a portion coiled in said housing, `first means connecting one end of said coiled portion to the outside of said housing intermediate the ends thereof, and second means connecting the other end of said coiled portion to said housing releasable therefrom in response to a predetermined force applied thereto, operation of said explosive means producing said predetermined force to release said second means.
5. A switch adapted to be submerged in a liquid comprising a body `formed with a vertically extending recess open at its lower end, a conductor insulated from said body formed with a bared section in the upper portion of said recess, an element supported by said body for movement from a iirst position spaced from said bared section to a second position in engagement with said bared section, said recess being adapted to trap gas preventing contact between liquid and said bared section.
6. An embedment anchor comprising a housing, electrically ignitable propulsion means in said housing operable to drive said housing into the bottom of a body of water, a submersible switch operable to ignite said propulsion means, said switch including a body formed with a vertically extending recess open at its lower end, a conductor insulated from said body formed with an exposed end in the upper portion of said recess, an element supported by said body for movement under the influence of engagement with said Ibottom `from a rist position spaced from said exposed end to a second position in engagement with said exposed end, said recess being adapted to trap gas preventing contact between liquid and said bared section.
7. An embedment anchor comprising a housing, elec- -trically ignitable propulsion means in said housing operable to drive said housing into the bottom of a body of water, a submersible switch operable to ignite said propulsion means, said switch including a body formed with a vertically extending recess open at its lower end, said recess including a lower portion having a first cross section land an upper portion having a cross section substantially less than said lower portion, a conductor insulated from said Ibody formed with an exposed end in said upper portion, an element supported by said body for movement under the inliuence of engagement with said bottom from a rst position spaced from said exposed end to a second position in engagement with said exposed end, said recess being adapted to trap gas preventing contact between liquid and said bared section.
8. An anchor adapted to embed itself in the bottom of a body of water comprising a tubular housing, a cable connected to one end of said housing, a propellant charge in said housing, a nose member on the other end of said housing formed with a vertically extending recess open only at its lower end, a rst conductor insulated from said nose member having a bared end positioned at -the upper end of said recess, said recess being `adapted to trap gas preventing contact between liquid and said bared section, a ring element movable from a normal position spaced from said bared end to an operated position engaging said bared end, a second conductor insulated from said nose member formed with an end exposed to said water when said anchor is immersed, and electrical ignition means connected to both of said conductors operable to ignite said propellant when said firing element engages said bared end Iand said second conductor is immersed in water.
9. An anchor adapted to embed itself in the bottom of a body of water comprising a housing assembly, an anchor cable connected at its end to said assembly, a propellant charge in said body operable on ignition to propel said body downward, said cable including a portion coiled in said body assembly, separable means conii nected between said cable above said coil and said assembly maintaining said anchor in a vertical position prior to the ignition of said propellant charge, ignition means connected to said .propellant charge including a tiring mechanism operable to ignite said charge upon engagement between said anchor and said bottom, and a safety mechanism connected to said ignition means operable to permit ignition of said propellant charge only when said anchor is immersed in water.
10. An embedment anchor comprising an anchor body, a member releasably secured to said anchor body, an explosive charge operable to separate said member from said anchor body by reaction therewith and to propel said anchor body and embed it in `the earth, an anchor cable connected to said member for lowering said ernbedment lanchor into the Water, and =a slack length of cable connected at one end to said anchor body at a point intermediate its ends and connected at its other end to said anchor cable.
1l. An embedment anchor comprising an anchor body, a member releasably secured to said anchor body, an explosive charge operable to separate said member from said anchor body by reaction therewith and to propel said anchor body and embed it in the earth, detonation means on said anchor body operably connected to said charge for igniting said charge in response to engagement between said detonation means and the earth only after said anchor is immersed in water, an anchor cable connected to said member for lowering said embedment anchor into the water, and a slack length of cable connected at one end to said anchor body at a point intermediate its ends and connected at its other end to said anchor cable.
12. An embedment anchor comprising an anchor body, a member releasably secured to said anchor body, an explosive charge operable to separate said member from said anchor body by reaction therewith and propel said anchor body and embed it in the earth, detonation means mounted on said anchor body for movement relative thereto in response to engagement thereof with the earth, and means connecting said detonation means `'and charge for igniting said charge in response to movement of said detonation means after said anchor is immersed in water, an anchor cable connected to said member for lowering said embedment anchor into the Water, `and a slack length of cable connected at one end to said anchor body at a point intermediate its ends and connected at its other end to said anchor cable.
References Cited in the le of this patent UNITED STATES PATENTS 721,677 Dornfeld Mar. 3, 1903 1,560,451 Weyl-ick Nov. 3, 1925 2,433,234 McHugh Dec. 23, 1947 2,708,860 Arpin May 24, 1955 l2,888,768 Taylor June 2, 1959
US788314A 1959-01-22 1959-01-22 Embedment anchor Expired - Lifetime US3036542A (en)

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US788314A US3036542A (en) 1959-01-22 1959-01-22 Embedment anchor
BE586184A BE586184A (en) 1959-01-22 1959-12-31 Improvements made to anchoring systems
ES0255191A ES255191A1 (en) 1959-01-22 1960-01-22 Embedment anchor

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3170433A (en) * 1963-01-10 1965-02-23 Pneumo Dynamics Corp Imbedment anchor assembly
US3233415A (en) * 1962-09-12 1966-02-08 Harvey Aluminum Inc Apparatus for explosively installing anchors
US4665791A (en) * 1983-05-18 1987-05-19 Diehl Gmbh & Co. Method for accelerating an object and propelling arrangement for implementing the method for such object, particularly an object to be driven into ground below water
US4697958A (en) * 1984-01-30 1987-10-06 Ben-Jac, Inc. Embedment anchor
US6106199A (en) * 1996-08-30 2000-08-22 Petroleo Brasileiro S.A. -Petrobras Pile for anchoring floating structures and process for installing the same
US6257166B1 (en) * 1997-12-30 2001-07-10 Leiv Eiriksson Nyfotek As Anchor
US6360495B1 (en) * 1999-05-17 2002-03-26 The United States Of America As Represented By The Secretary Of The Navy Sand spike system
US6454494B1 (en) * 2001-03-23 2002-09-24 Patrick Agnew Device for anchoring a pipeline
US20060065180A1 (en) * 2003-03-04 2006-03-30 Raines Richard D Pile anchor with external vanes
CN113581372A (en) * 2021-08-13 2021-11-02 江苏科技大学 Detachable high-pressure jet type power anchor

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US721677A (en) * 1902-07-01 1903-03-03 Charles Dornfeld Grounding-preventer for marine vessels.
US1560451A (en) * 1921-11-05 1925-11-03 Goodyear Tire & Rubber Anchor for airships
US2433234A (en) * 1944-08-28 1947-12-23 James P Mchugh Device for anchoring cables and the like
US2708860A (en) * 1954-09-09 1955-05-24 Diving Corp Power spear
US2888768A (en) * 1957-10-04 1959-06-02 Ervin W Taylor Underwater spear gun

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US721677A (en) * 1902-07-01 1903-03-03 Charles Dornfeld Grounding-preventer for marine vessels.
US1560451A (en) * 1921-11-05 1925-11-03 Goodyear Tire & Rubber Anchor for airships
US2433234A (en) * 1944-08-28 1947-12-23 James P Mchugh Device for anchoring cables and the like
US2708860A (en) * 1954-09-09 1955-05-24 Diving Corp Power spear
US2888768A (en) * 1957-10-04 1959-06-02 Ervin W Taylor Underwater spear gun

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3233415A (en) * 1962-09-12 1966-02-08 Harvey Aluminum Inc Apparatus for explosively installing anchors
US3170433A (en) * 1963-01-10 1965-02-23 Pneumo Dynamics Corp Imbedment anchor assembly
US4665791A (en) * 1983-05-18 1987-05-19 Diehl Gmbh & Co. Method for accelerating an object and propelling arrangement for implementing the method for such object, particularly an object to be driven into ground below water
US4697958A (en) * 1984-01-30 1987-10-06 Ben-Jac, Inc. Embedment anchor
US6106199A (en) * 1996-08-30 2000-08-22 Petroleo Brasileiro S.A. -Petrobras Pile for anchoring floating structures and process for installing the same
US6257166B1 (en) * 1997-12-30 2001-07-10 Leiv Eiriksson Nyfotek As Anchor
US6360495B1 (en) * 1999-05-17 2002-03-26 The United States Of America As Represented By The Secretary Of The Navy Sand spike system
US6454494B1 (en) * 2001-03-23 2002-09-24 Patrick Agnew Device for anchoring a pipeline
US20060065180A1 (en) * 2003-03-04 2006-03-30 Raines Richard D Pile anchor with external vanes
US7140319B2 (en) * 2003-03-04 2006-11-28 Exxonmobil Upstream Research Company Pile anchor with external vanes
CN113581372A (en) * 2021-08-13 2021-11-02 江苏科技大学 Detachable high-pressure jet type power anchor
CN113581372B (en) * 2021-08-13 2022-03-18 江苏科技大学 Detachable high-pressure jet type power anchor

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