Ram that pushes soil from beneath buried pipe

09574321 ยท 2017-02-21

    Inventors

    Cpc classification

    International classification

    Abstract

    A device that excavates soil from beneath buried utility pipe. The excavated soil is pushed out using a piston shaft actuated ram's head. The piston shaft is attached to a power shovel's bucket. The piston shaft is hydraulically operated. Soil from the excavated area, when pushed out, falls into a previously dug opposite trench that is deeper than the bucket side trench where the shovel bucket is positioned for the pushing operation. Once the soil is pushed out from beneath buried pipe, the pipe is now accessible for inspections.

    Claims

    1. An excavating device comprising a head, said head coupled with a pin to a piston shaft, said piston shaft, protruding out through a bucket side wall, connected to a hydraulic press, said hydraulic press mounted horizontally within a bucket of a power shovel, said hydraulic press operated to push dirt from beneath a pipe to permit access for inspection of underground utility piping.

    2. The device of claim 1 whereby said head is a rectangular shaped metal plate, and when said head is in a retracted position as established by operation of said hydraulic press, then said head rests near an outside face of said bucket side wall, and when said piston shaft is extending by operation of said hydraulic press, said head pushes soil from beneath buried pipe utilizing compressive force of said hydraulic press transmitted through said piston shaft that is coupled to said head.

    3. The device of claim 1 whereby ram attachment brackets are fitted to said head of said ram by welding angle brackets to a surface of said head, and thereby forming a receptacle to accept a tongued coupling of a head device of a larger size to permit attachment to move larger quantities of soil beneath buried pipe in one extending stroke of said piston shaft.

    4. The device of claim 1 whereby said head is coupled to said piston shaft with said pin utilizing a sleeve coupling device fitted onto an end of said piston shaft opposite of the end connected to said hydraulic press, and whereby said coupling device is held secure on said piston shaft utilizing said pin passing through said coupling device and also through said piston shaft to enable attachment of said head to said piston shaft.

    5. The device of claim 1 whereby said piston shaft is a set of telescoping concentric shafts connected at one end to said hydraulic press and at an opposite end to said coupling device whereby said piston shaft passes through said bucket side wall of said power shovel and whereby said piston shaft is extended utilizing hydraulic forces generated by said hydraulic press to push said head and whereby said piston shaft is retracted utilizing hydraulic forces in an opposite direction from extension to withdraw said head.

    6. The device of claim 1 whereby said hydraulic press is horizontally mounted within said bucket side walls of said power shovel such that said piston shaft protrudes out through a side wall of said bucket when an extending force is generated by said hydraulic press.

    Description

    BRIEF DESCRIPTION OF THE DRAWINGS

    (1) The objects of this invention and other features, aspects, and advantages will become apparent to those skilled in the art with regard to the following description, appended claims, and accompanying drawings.

    (2) FIG. 1 is a perspective drawing of a ram having a head extended from the side wall of a bucket attached to a power shovel.

    (3) FIG. 2 is a perspective drawing of the ram having a head, a piston shaft to head connection, attachment brackets for larger alternate head devices.

    (4) FIG. 3 shows the ram that pushes soil from beneath buried pipe in operation.

    (5) FIG. 4 is used to demonstrate the power shovel positioned in the bucket side trench with the ram having a head retracted and ready to push soil from beneath a utility pipe. A person skilled in the art will note a deeper trench on the opposite side from where the shovel is positioned. This opposite, deeper, fill side trench floor accepts excavated fill soil, leaving a reasonably level trench upon completion of the excavating process.

    (6) FIG. 5 shows the ram having a head at a full stroke of the piston shaft. The drawing also shows the excavated soil resting in the opposite fill side trench. Filling in the slightly deeper fill side trench establishes a usably level work platform for inspectors.

    (7) TABLE-US-00001 DRAWINGS---Reference Numerals 10 Power shovel bucket 11 Bucket side wall 15 Width dimension of the bucket 20 Head 21 head attachment brackets 30 Piston shaft 31 Hydraulic press 35 Pinned coupling 40 Buried Pipe 45 Pin 50 Soil beneath buried pipe 51 Tongued coupling 52 Alternate head device 60 Fill side trench floor 65 Bucket side trench floor 70 Extended piston shaft 71 Retracted piston shaft 80 Power shovel 90 Fill soil

    DETAILED DESCRIPTION

    (8) For illustrative purposes only, the following are various embodiments of the ram that pushes soil from beneath buried pipe. The invention is an excavating device consisting of a power shovel bucket 10 where within is fitted a hydraulic press 31 and a piston shaft 30. A head 20 is coupled to a piston shaft 30. The piston shaft 30 telescopes to extend to a range larger than the outside diameter of the buried pipe 40. The piston shaft 30 is mounted and installed inside the power shovel bucket 10. The head 20 pushes soil beneath buried pipe 50 using hydraulic force on the piston shaft 30. The invention is a ram that pushes soil from beneath buried pipe to permit access for inspection of underground utility piping. The head 20 is a metal plate. The shape of the head 20 is rectangular, but other shapes will suffice to perform a pushing function also. A head 20 uses a pinned coupling 35 to attach the head 20 to the piston shaft 30. The head 20 rests, in the retracted position, outside of the bucket side wall 11. The head 20 is a shaped metal plate of mass and structure to push soil beneath buried pipe 50. Head attachment brackets 21, and an alternate head device 52 are used for moving larger quantities of soil beneath buried pipe 50 in one stroke of the piston. The power shovel bucket 10 is positioned in the bucket side trench floor 65 and pushes soil beneath buried pipe 50 causing the fill soil 90 to be displaced into the fill side trench floor 60. The fill side trench floor 60 is dug slightly deeper by the power shovel operator prior to the process of pushing the soil from beneath buried pipe 50.

    (9) The range of travel of the head 20 beneath the buried pipe 40 is a function of the travel of the piston shaft 30. Both single stage and multiple-stage piston shaft(s) 30 may be utilized to push soil. The determination of the range of travel of the head 20 is further a function of the width dimension of the bucket 15. When the head 20 is in the retracted piston shaft 71 position, the piston shaft 30 is fitted inside the power shovel bucket 10. Only the head 20 and a portion of the pinned coupling 35 remain outside the power shovel bucket side wall 11 when the piston shaft 30 is retracted. Retraction of the piston shaft 30 serves not only to permit repetitious excavating capability of the invention, but also allows for unobstructed travel of the power shovel bucket 10 to and from various work sites.

    (10) The piston shaft 30 is an arm member that is slideably telescopic using concentric shafts. The piston shaft 30 is a combination of one shaft within an outer shaft.

    (11) FIG. 2 shows the pin 45 and the pinned coupling 35 detail of the piston shaft 30 to the head 20. FIG. 2 also shows an attachment scheme for holding an alternate device 52. Head attachment brackets 21 are angle iron pieces fabricated to fit on the face of a ram's head 20. The head attachment brackets 21 are welded at a distance apart to form the groove to accept a tongued coupling 51. The head attachment brackets 21 include a metal bottom welded to the head 20 to support the weight to the tongued coupling 51 and the alternate head device 52.

    (12) The arrangement of the head 20, the pin 45, the pinned coupling 35, the piston shaft 30, the hydraulic press 31, and the power shovel bucket 10 are illustrated in FIG. 4. The width dimension of the bucket 15 establishes the size of the hydraulic press 31 to utilize. The size of the hydraulic press 31, and its multi-stage capability, determine the range of stroke of the piston shaft 30. The range of stroke of the piston shaft 30 determines how far the head 20 will protrude from the bucket side wall 11. Larger power shovel buckets 10 are used for larger diameter buried pipe 40. Smaller power shovel buckets 10 correlate with smaller diameter buried pipe 40.

    (13) FIG. 4 illustrates a power shovel 80 positioned to set the power shovel bucket 10 into a position to use the head 20. A method used by the operator, while using this invention, is to dig the opposite fill side trench floor 60 at a depth slightly deeper that the bucket side trench floor 65.

    (14) When the head 20 pushes soil beneath buried pipe 50 as illustrated in FIG. 3, that excavated soil, now fill soil 90, fills the opposite fill side trench floor 60 that was originally dug slightly deeper. FIG. 5 shows the extended piston shaft 70. The end result is a trench with a level surface useable for the next set of workers; generally the inspectors of the pipe. Manual labor accomplished this excavating work in the past under stringent guidelines of OSHA.

    CONCLUSION, RAMIFICATIONS AND SCOPE

    (15) Although the present invention has been described in considerable detail with reference to certain preferred versions thereof, other versions are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the preferred version contained therein.

    (16) The reader's attention is directed to all papers and documents which are filed concurrently with this specification and are open to public inspection with this specification, and the contents of all such papers and documents are incorporated herein by reference. All features disclosed in this specification (including any accompanying claims, abstract, and drawings) may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise. Each feature disclosed is one example only of a generic series of equivalent or similar features.

    (17) While the above description contains much specificity, these should not be construed as limitations on the scope of any embodiment but as exemplifications of the presently preferred embodiments thereof. Other ramifications and variations are possible within the teachings of the various embodiments. Thus, the scope of the invention should be determined by the appended claims and their legal equivalents, not by the examples given.

    SEQUENCE LISTING

    (18) Not Applicable