US641838A - Sheet-piling. - Google Patents

Sheet-piling. Download PDF

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Publication number
US641838A
US641838A US70693799A US1899706937A US641838A US 641838 A US641838 A US 641838A US 70693799 A US70693799 A US 70693799A US 1899706937 A US1899706937 A US 1899706937A US 641838 A US641838 A US 641838A
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piling
timber
timbers
edges
grooves
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US70693799A
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George H Cavanagh
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D5/00Bulkheads, piles, or other structural elements specially adapted to foundation engineering
    • E02D5/02Sheet piles or sheet pile bulkheads

Definitions

  • This invention has for its object toimprove the construction of sheet-piling, I meaning thereby any system of using timber plankingin connection with cotter-dams, dry-docks, and other construction for preventing the passage of water or for the production of strong piling for any position desired.
  • This joint-section may and preferably will be driven in the soil upon which the piling stands, for the driving of the ends of the metallic sections adds very greatly to the general stability I of the pilin g.
  • Figure 1 shows a portion of piling representing my invention. of one piece of piling.
  • Fig. 3 showsseveral sections united together in accordance with this invention.
  • Fig. 4; shows a modification wherein a single timber is used, a section of the timber being shown sawed out at one corner and the piece so removed again out to leave in the timber a substantially T-shaped groove; and
  • Figs. 5, 6, and 7 represent modifications to be referred to.
  • I take timber, preferably in the form of plank of the desired width and thickness, and groove the same at its edges, and I thereafter shape the plank between said groove and its edges so that when two pieces of plank so grooved are put together their grooves will come in line with each other and leave a suitable groove to receive the edges of a suitable metallic joint section.
  • This joint section is Fig. 2 is an end view.
  • the metallic joint-section will be of suitable shape to enter the grooves of the timber placed edge to edge and form a metallic connection between the edges of said timbers, locking the same firmly and rigidly together.
  • the metallic joint-section willcontain,preferably at its longitudinal edges, suitable enlargements or bends to effect a strong engagement with the timber.
  • This I-beam may be in one or more pieces to extend substantially throughout the length of the piling, and it may be driven below the timber or plank into the soil, thus bracing up and stiffening the piling.
  • a represents a piling composed of a series of timbers or planks.
  • the plank may be one-half the thickness desired for each member of the piling.
  • Each of these timbers has made in it, at one side, near its longitudinal edges grooves b, substantially parallel, and each timber is shown as provided with two such grooves, and a portion of the lip I)", left between the grooves 19 and the edges of the timber, is removed to constitute one-half of the space 19 (see Fig. 3) for receiving the shank of the I-beam.
  • I then unite the timbers together firmly by nails or bolts 0 or otherwise, leaving at each side of the piling so formed a T-shaped groove.
  • I preferably stand the timber up, as shown, and insert one end of an I-beam into the T- shaped groove therein, and I then place the next piece of timber over the T-shaped opposite end of the I-beam, and by a hammer, pressure, or percussion I gradually force the I-beam and the timber down and form the piling.
  • This invention is not limited, however, to the precise manner of forming the T-shaped grooves or spaces in the timber forming the piling to receive the ends of the I-beam, and instead of making the grooves and spaces to receive the T-shaped end of the I-beam, as hereinbeforedescribed, I may cut or fashion the timber of the piling in any suitable way whereby each end of the I-beam may be made to retain a firm hold upon adjacent timbers of the piling to be made.
  • FIG. 4 shows by full lines a portion of the timber separated from the adjacent part and united by a suitable bolt 0. This construction would require more pieces, but shows another way of providing the T-shaped groove, and this may be done in solid timber.
  • Fig. 5 shows a metallic j oint-section d, it having its parallel edges rounded, as at (1, instead of T-shaped, and to apply this section (1 the timber has to have a round hole intersected by a slot.
  • FIG. 6 shows yet another metallic joint-section c, it being composed of a sheet of strong metal having its opposite edges 6' flanged.
  • This joint 0 is shown as applied to a timber composed of two planks united together.
  • Fig. 7 shows yet anothersimple method of metallic joint to unite the edges of adjacent timbers, the said joint consisting of a piece of metal f, having one of its edges inserted into a groove at one edge of one of said timbers and confined therein by suitable rivets or boltsf, the opposed edge of the said piece of metal being flanged or shaped substantially as shown to enter a groove in the opposed timber.
  • a piling consisting of two sections abutting edge to edge, and a coupling member uniting the two sections and holding them in rigid relation relatively to each other and inclosed by said sections.
  • a piling consisting of two sections abutting edge to edge, and a coupling member uniting the two sections and holding them in rigid relation relatively to each other and in.- closed by said' sections, said coupling member projecting below the lower end of the two sections.
  • a piling composed of timbers having flat faces upon their adjacent edges which are adapted to abut against each other, and a metallic coupling member uniting the two timbers and holding them in rigid relation relatively to each other and inclosed by said timbers.
  • a piling consisting of timbers presenting flat engaging faces having T-shaped grooves, and an I-beam adapted to be driven into said grooves and to hold the timbers in rigid relation relatively to each other.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)

Description

. Patented Jan. 23,1900. H. BAVANAGH. sneer muse.
(Application filed. Feb. 27, 1899.)
(No Modal.)
WITNESSES: JNVENTOR.
% 1M1 a 6'30? eJfCavangh.
ATTORNEY.
UNITED STATES ATENT OFFICE. V
GEORGE H. OAVANAGH, OF BOSTON, MASSACHUSETTS.
SHEET-PILING.
SPECIFICATION forming part of Letters Patent No. 641,838, dated January 23, 1900.
Application filed February 27, 1899. Serial No. 706,937. (N0 model.)
To all whom it may concern:
Be it known that I, GEORGE H. OAVANAGH, of Boston, countyof Suffolk, and State of Massachusetts, have invented an Improvement in Sheet-Piling, of which thefollowing description, in connection with the accompa nying drawings, is a specification, like letters on the drawings representing like parts.
This invention has for its object toimprove the construction of sheet-piling, I meaning thereby any system of using timber plankingin connection with cotter-dams, dry-docks, and other construction for preventing the passage of water or for the production of strong piling for any position desired.
In accordance with my invention I desire to construct a very strong and serviceable piling, and I desire to hold the various timbers used in the piling firmly together, making the joint connecting them substantially continuous throughout the length of the timbers employed in the piling. To do this, I provide the adjacent edges of the timber used in the piling with grooves,and in these grooves I insert a metallic joint-section, it extending substantially throughout the length of the timbers. This joint-section may and preferably will be driven in the soil upon which the piling stands, for the driving of the ends of the metallic sections adds very greatly to the general stability I of the pilin g.
Figure 1 shows a portion of piling representing my invention. of one piece of piling. Fig. 3 showsseveral sections united together in accordance with this invention. Fig. 4; shows a modification wherein a single timber is used, a section of the timber being shown sawed out at one corner and the piece so removed again out to leave in the timber a substantially T-shaped groove; and Figs. 5, 6, and 7 represent modifications to be referred to.
In accordance with my invention I take timber, preferably in the form of plank of the desired width and thickness, and groove the same at its edges, and I thereafter shape the plank between said groove and its edges so that when two pieces of plank so grooved are put together their grooves will come in line with each other and leave a suitable groove to receive the edges of a suitable metallic joint section. This joint section is Fig. 2 is an end view.
made to occupy a position in said grooves for a. considerable length of the timber, prefererably throughout the entire length thereof.
The metallic joint-section will be of suitable shape to enter the grooves of the timber placed edge to edge and form a metallic connection between the edges of said timbers, locking the same firmly and rigidly together.
The metallic joint-section willcontain,preferably at its longitudinal edges, suitable enlargements or bends to effect a strong engagement with the timber. For the best results, however, I prefer to use for this joint-section an I-shaped beam, it being of such width be tween its flaring longitudinal edges thatwhen the edges of the beam are inserted each in its proper groove in the timbers it is to connect the edges of said timber will be brought preferably close together. This I-beam may be in one or more pieces to extend substantially throughout the length of the piling, and it may be driven below the timber or plank into the soil, thus bracing up and stiffening the piling.
Referring to the drawings, a represents a piling composed of a series of timbers or planks. As herein shown, the plank may be one-half the thickness desired for each member of the piling. Each of these timbers has made in it, at one side, near its longitudinal edges grooves b, substantially parallel, and each timber is shown as provided with two such grooves, and a portion of the lip I)", left between the grooves 19 and the edges of the timber, is removed to constitute one-half of the space 19 (see Fig. 3) for receiving the shank of the I-beam.
Having provided each timber of the piling with two grooves, as stated, I then unite the timbers together firmly by nails or bolts 0 or otherwise, leaving at each side of the piling so formed a T-shaped groove. (See Fig. 2.) I preferably stand the timber up, as shown, and insert one end of an I-beam into the T- shaped groove therein, and I then place the next piece of timber over the T-shaped opposite end of the I-beam, and by a hammer, pressure, or percussion I gradually force the I-beam and the timber down and form the piling.
The timbers of the piling will .be driven down to the desired point to form the piling,
and in such condition it will be understood that adjacent timbers will be held securely together bythe metallic I-beam, it constituting a preferred form of metallic joint-section, and by driving the ends of the I-beam below the timbers into the ground, as in Fig. 1, the piling will be thoroughly braced and stiffened. This form of piling may be easily and quickly made, and it is very strong and durable. This invention is not limited, however, to the precise manner of forming the T-shaped grooves or spaces in the timber forming the piling to receive the ends of the I-beam, and instead of making the grooves and spaces to receive the T-shaped end of the I-beam, as hereinbeforedescribed, I may cut or fashion the timber of the piling in any suitable way whereby each end of the I-beam may be made to retain a firm hold upon adjacent timbers of the piling to be made.
Referring to Fig. 4, it shows by full lines a portion of the timber separated from the adjacent part and united by a suitable bolt 0. This construction would require more pieces, but shows another way of providing the T-shaped groove, and this may be done in solid timber.
I believe that I am the first to unite timbers of pilingby metallic joint-sections, said jointsections locking together the adjacent edges of the timbers used in the piling, and while I prefer to employ for this purpose an I-beam, such as hereinbefore specifically described, yet I consider as within the scope of my invention any metallic connection between the adjacent timbers, so long as said connections extend for a distance in the grooves of said timbers and are so applied as to form a lock between the timbers. For instance, Fig. 5 shows a metallic j oint-section d, it having its parallel edges rounded, as at (1, instead of T-shaped, and to apply this section (1 the timber has to have a round hole intersected by a slot. Fig.
6 shows yet another metallic joint-section c, it being composed of a sheet of strong metal having its opposite edges 6' flanged. This joint 0 is shown as applied to a timber composed of two planks united together. Fig. 7 shows yet anothersimple method of metallic joint to unite the edges of adjacent timbers, the said joint consisting of a piece of metal f, having one of its edges inserted into a groove at one edge of one of said timbers and confined therein by suitable rivets or boltsf, the opposed edge of the said piece of metal being flanged or shaped substantially as shown to enter a groove in the opposed timber.
Having described my invention, what I claim as new, and desire to secure by Letters Patent, is-
1. A piling consisting of two sections abutting edge to edge, and a coupling member uniting the two sections and holding them in rigid relation relatively to each other and inclosed by said sections.
2. A piling consisting of two sections abutting edge to edge, and a coupling member uniting the two sections and holding them in rigid relation relatively to each other and in.- closed by said' sections, said coupling member projecting below the lower end of the two sections.
3. A piling composed of timbers having flat faces upon their adjacent edges which are adapted to abut against each other, and a metallic coupling member uniting the two timbers and holding them in rigid relation relatively to each other and inclosed by said timbers.
4. A piling consisting of timbers presenting flat engaging faces having T-shaped grooves, and an I-beam adapted to be driven into said grooves and to hold the timbers in rigid relation relatively to each other.
In testimony whereof I have signed my name to this specification in the presence of two subscribing witnesses.
GEORGE H. OAVANAGH.
Vitnesses:
GEO. W. GREGORY, MARGARET A. DUNN.
US70693799A 1899-02-27 1899-02-27 Sheet-piling. Expired - Lifetime US641838A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2898643A (en) * 1957-04-26 1959-08-11 Gen Motors Corp Window frame
US2898647A (en) * 1955-11-14 1959-08-11 Gen Motors Corp Window frame
US3311989A (en) * 1965-09-24 1967-04-04 Manville George Dewey Level and straight-edge gage combination and improved attachment therefor
US3517516A (en) * 1968-07-31 1970-06-30 Shell Oil Co Folding support structure for offshore drilling platforms

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2898647A (en) * 1955-11-14 1959-08-11 Gen Motors Corp Window frame
US2898643A (en) * 1957-04-26 1959-08-11 Gen Motors Corp Window frame
US3311989A (en) * 1965-09-24 1967-04-04 Manville George Dewey Level and straight-edge gage combination and improved attachment therefor
US3517516A (en) * 1968-07-31 1970-06-30 Shell Oil Co Folding support structure for offshore drilling platforms

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