US981226A - Mine-roof support. - Google Patents

Mine-roof support. Download PDF

Info

Publication number
US981226A
US981226A US50260109A US1909502601A US981226A US 981226 A US981226 A US 981226A US 50260109 A US50260109 A US 50260109A US 1909502601 A US1909502601 A US 1909502601A US 981226 A US981226 A US 981226A
Authority
US
United States
Prior art keywords
blocks
mine
arch
cement
pillars
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US50260109A
Inventor
James Gardner Sanderson
Clarence B Sturges
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US50260109A priority Critical patent/US981226A/en
Application granted granted Critical
Publication of US981226A publication Critical patent/US981226A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21DSHAFTS; TUNNELS; GALLERIES; LARGE UNDERGROUND CHAMBERS
    • E21D11/00Lining tunnels, galleries or other underground cavities, e.g. large underground chambers; Linings therefor; Making such linings in situ, e.g. by assembling
    • E21D11/006Lining anchored in the rock

Definitions

  • the present invention relates to supports for the roofs of mines and similar Iexcavations, and has for its purpose to provide such a means constructed of concret-e sections, adapted to have reinforcing means, the several parts whereof are assembled in their permanent form at precisely their place of use.
  • the invention is designed with the especial view of displacing the present used types of supports of this character, wherein said supports are of timber and in consequence thereof deteriorate with time and eX- posure to the elements, thereby rendering the same unsafe in use.
  • the saine usually consists of a post or pillar constructed on the spot, but which is defective in that it is an obstruction in the passageway.
  • Figure 1 is a view through a section of a mine showing the support in position; said structure being shown partly in section;
  • Fig. 2 is a part elevation and part sectional view 0f a modified form of structure;
  • Fig. 3 is a detail view of one of the concrete blocks provided with a reinforcing bar but not filled with concrete;
  • Fig. 4 is a side elevation of Fig. 3;
  • Fig. 5 is a transversesectional view of Fig. 3, taken along the linea-a lwith the central part filled with concrete;
  • Fig. G is a similar view showing a modified form of reinforcing bar;
  • Fig. 7 is a modiiied form of concrete block provided with a further modified reinforcing bar.
  • l designates the vertical supports or end posts which are built up against the side walls of the tunnel or shaft in precisely the manner shown in Fig. 1. These supports are built to such height as will bring theiry Aupper ends into immediate contact with the upper sides of the roof as indicated by the numeral 2, and in which position they provide a direct brace or pillar for that section of said roof.
  • Connecting the side posts l is an arch 3 constructed in precisely the same manner as the pillars 1, but varying in design whereby to form an arch, the Arsupporting ends 4 of which are seated within complementary recesses formed within said end posts.
  • That space between the arch ⁇ structure 3, the pillars l, and the wall of the excavation is adapted to be filled with rocks 3 or the like whereby to give the proper bearing means to the supporting structure.
  • Each of the pillars l and the arch 3 may be constructed of concrete blocks alone, the union of the several blocks being made elfective into one struct-ure by a cement filling, for which purpose the several blocks are suitably adapted to receive the cement, as will, be hereinafter described, and to reinforce the structure when built along the lines just indicated, the hollow space provided by the several blocks when assembled, may have embedded within the cement filling reinforcing bars 5, of which there would be one or more for each of the side pillars and one or more for the arch 3.
  • This form of structure will likewise be presented at length in the following description.
  • Fig. 2 As an alternative to the structure shown in Fig. l, that shown in Fig. 2 may be employed.
  • the side posts or pillars 1 are erected in precisely the manner described of the same parts in Fig. l, but instead of the arch structure 3 the straight girder or lateral support 6 is used.
  • the several sections or blocks from which the structure is built comprises each a block 8, whose design herein shown in cross-sec ⁇ boards in position.
  • tion is substantially that of a U, and is preferably molded from concrete or such other appropriate material as would have the required supporting qualities and durability.
  • These blocks may have other than lU-shaped section, so constructed as to allow of the insertion of a continuous metal reinforcement to be embedded in a cement mixture.
  • T hese concrete blocks are presumably molded Aat any place convenient to their position for erection, and have such length as would render the same convenient to handle.
  • the space within the blocks 8 is adapted to receive the cement filling 9 when the several blocks are assembled in respective alinement, and which with the hardening of the cement forms the several blocks into a substantially single structure.
  • a number of retaining boards or plates 10 are employed, which boards in their manner of application are held against the open ends of the blocks by bracket arms 11, which engage against the rear face of said blocks, and by -means of wedges 12 hold the retaining
  • the type of reinforcement 13 vshown in Fig. G may be employed, or as a further alternative ka pipe 14 may be used with equal effectiveness. In this latter insta-nce, the ybore of the pipe may be filled with cement 15.
  • the reinforcing bars for the side pillars are first positioned,'after which the reinforcing element of the arch is likewise fixed, being secured to the side reinforcing elements by bolts or otherwise.
  • the several concrete blocks 8 are assembled, and when the same are all in position, the hollow space or tunnel, and the space between the blocks, are filled with the cement which is held until it becomes hard in the manner above explained.
  • This structure is then left for the necessary time, when the temporary means is removed and the plastic structure remains permanent.
  • the operation is about the same, only that it is not necessary to secure together the several reinforcing bars.
  • the cement filling constitutes of itself a virtually integral or unbroken arch. And there is the further advantage that this filling, by reason ⁇ of bein@ exposed in the manner it is, may be readily cut away or otherwise removed, either for replacing the filling or for removing the structure entirely.
  • a structure of the character described comprising end pillars, a cross girder supported thereon, said pillars and girder comprising a pluralityv of blocks having channels therein exposed outwardly and adapted to aline and receive a plastic filling, and a reinforcing bar for each of said pillars and girder coextensive in length therewith, the girder reinforcing bar being supported by the pillar reinforcing bars, said bars embedded within the plastic filling.

Description

rut NoRnIS Plrsns co., wAsNiNaraN. n. c,
J.4 G'. sANnERsoN spo. B.' str mens.
MINBZROOMYPOBT. Y APPLIOATION FILED .Nm3 1a, 19'09.
Patented, Jan. 10,1911.
2 ,BHEBTB-SHEET 2.
Jl Gl SANDERSON & C. B. STURGES.
MINE Roof SUPPORT.
urLIoA'Tron yHmm JUNE xe, 19de.
m: Nomus parses co4. wxsmivaron. n, c.
UNITED sTATEs PATENT oEEicE.
JAMES GARDNER SANDERSON AND CLARENCE B. 'STURGES, 0F SCRANTON, PENN- SYLVANIA.
MINE-Boor sUrPoRT.
Specification of Letters Patent.
Application led .Tune 16, 1909.
Patented Jan. 10, 1911.
Serial No. 502,601.
To all whom it may concern:
Be it known that we, JAMES GARDNER SANDERSON and 'CLARENCE B. STURGES, citizens of the United States, and residents of Scranton, in the county of Lackawanna and State of Pennsylvania, have invented certain new and useful Improvements in Mine- Roof Supports, of which the following is a specification.
The present invention relates to supports for the roofs of mines and similar Iexcavations, and has for its purpose to provide such a means constructed of concret-e sections, adapted to have reinforcing means, the several parts whereof are assembled in their permanent form at precisely their place of use.
The invention is designed with the especial view of displacing the present used types of supports of this character, wherein said supports are of timber and in consequence thereof deteriorate with time and eX- posure to the elements, thereby rendering the same unsafe in use. With the concrete structures now employed, the saine usually consists of a post or pillar constructed on the spot, but which is defective in that it is an obstruction in the passageway. Another, -and often used support, lis that of permittin a column of coal to remain in its natura state and thus provide a support for the roof. This method is likewise at fault, in that the coal constituting the support is wasted.
By our improved roof support, all of the available coal may be mined and there is atall times a complete clearance through the tunnel, and there is the further advantage that the strength of the structure increases with time.
With these as the essential advantages, there are other points of merit in the invention in question, which points will be clear from the course of the following extended description and as set forth in the claim.
In the accompanying drawings, which show our invention in its preferred embodiment, Figure 1 is a view through a section of a mine showing the support in position; said structure being shown partly in section; Fig. 2 is a part elevation and part sectional view 0f a modified form of structure; Fig. 3 is a detail view of one of the concrete blocks provided with a reinforcing bar but not filled with concrete; Fig. 4 is a side elevation of Fig. 3; Fig. 5 is a transversesectional view of Fig. 3, taken along the linea-a lwith the central part filled with concrete; Fig. G is a similar view showing a modified form of reinforcing bar; and Fig. 7 is a modiiied form of concrete block provided with a further modified reinforcing bar.
Referring to the several figures in detail, wherein like numerals of reference indicate corresponding parts in the different views shown, l designates the vertical supports or end posts which are built up against the side walls of the tunnel or shaft in precisely the manner shown in Fig. 1. These supports are built to such height as will bring theiry Aupper ends into immediate contact with the upper sides of the roof as indicated by the numeral 2, and in which position they provide a direct brace or pillar for that section of said roof. Connecting the side posts l is an arch 3 constructed in precisely the same manner as the pillars 1, but varying in design whereby to form an arch, the Arsupporting ends 4 of which are seated within complementary recesses formed within said end posts. That space between the arch `structure 3, the pillars l, and the wall of the excavation is adapted to be filled with rocks 3 or the like whereby to give the proper bearing means to the supporting structure. Each of the pillars l and the arch 3 may be constructed of concrete blocks alone, the union of the several blocks being made elfective into one struct-ure by a cement filling, for which purpose the several blocks are suitably adapted to receive the cement, as will, be hereinafter described, and to reinforce the structure when built along the lines just indicated, the hollow space provided by the several blocks when assembled, may have embedded within the cement filling reinforcing bars 5, of which there would be one or more for each of the side pillars and one or more for the arch 3. This form of structure will likewise be presented at length in the following description.
As an alternative to the structure shown in Fig. l, that shown in Fig. 2 may be employed. In this instance, the side posts or pillars 1 are erected in precisely the manner described of the same parts in Fig. l, but instead of the arch structure 3 the straight girder or lateral support 6 is used. In this The several sections or blocks from which the structure is built, comprises each a block 8, whose design herein shown in cross-sec `boards in position.
tion is substantially that of a U, and is preferably molded from concrete or such other appropriate material as would have the required supporting qualities and durability. These blocks may have other than lU-shaped section, so constructed as to allow of the insertion of a continuous metal reinforcement to be embedded in a cement mixture. T hese concrete blocks are presumably molded Aat any place convenient to their position for erection, and have such length as would render the same convenient to handle. The space within the blocks 8 is adapted to receive the cement filling 9 when the several blocks are assembled in respective alinement, and which with the hardening of the cement forms the several blocks into a substantially single structure.V For the purpose of filling the cement within the space of the blocks 8 and holding` the same therein until such time as'it has become sufiiciently hardened, a number of retaining boards or plates 10 are employed, which boards in their manner of application are held against the open ends of the blocks by bracket arms 11, which engage against the rear face of said blocks, and by -means of wedges 12 hold the retaining Instead of that form of reinforcement 5 shown in Fig. 5, which in this instance is merely the utilization of such track rails as are otherwise unserviceable, the type of reinforcement 13 vshown in Fig. G may be employed, or as a further alternative ka pipe 14 may be used with equal effectiveness. In this latter insta-nce, the ybore of the pipe may be filled with cement 15.
Y' The design of block 16 shown in Fig. 7, is in all respects similar to the one heretofore mentioned, excepting that the recess or filling space is enlarged to provide the shoulders 17 that serve as an additional strengthening or retaining means for the concrete.
In building a structure of the arch design, the reinforcing bars for the side pillars are first positioned,'after which the reinforcing element of the arch is likewise fixed, being secured to the side reinforcing elements by bolts or otherwise. Upon this frame-work, the several concrete blocks 8 are assembled, and when the same are all in position, the hollow space or tunnel, and the space between the blocks, are filled with the cement which is held until it becomes hard in the manner above explained. This structure is then left for the necessary time, when the temporary means is removed and the plastic structure remains permanent. In the building of that structure shown in Fig. 2, the operation is about the same, only that it is not necessary to secure together the several reinforcing bars.
In either of the structures built as above described, the cement filling constitutes of itself a virtually integral or unbroken arch. And there is the further advantage that this filling, by reason `of bein@ exposed in the manner it is, may be readily cut away or otherwise removed, either for replacing the filling or for removing the structure entirely.
lVhen no reinforcing means are employed, the structure when erected is temporarily supported by any suitable means, such for instance as staging, etc.
Where it is desired to erect independent props or columns without the arch or girder, the construction would be the same as shown in the vertical side posts herein.
What is claimed is:-
A structure of the character described comprising end pillars, a cross girder supported thereon, said pillars and girder comprising a pluralityv of blocks having channels therein exposed outwardly and adapted to aline and receive a plastic filling, and a reinforcing bar for each of said pillars and girder coextensive in length therewith, the girder reinforcing bar being supported by the pillar reinforcing bars, said bars embedded within the plastic filling.
The foregoing specification signed at Scranton Pennsylvania this 4th day of May, 1909.
JAMES GARDNER SANDERSON. CLARENCE B. STURGES.
M. M. REESE.
US50260109A 1909-06-16 1909-06-16 Mine-roof support. Expired - Lifetime US981226A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US50260109A US981226A (en) 1909-06-16 1909-06-16 Mine-roof support.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US50260109A US981226A (en) 1909-06-16 1909-06-16 Mine-roof support.

Publications (1)

Publication Number Publication Date
US981226A true US981226A (en) 1911-01-10

Family

ID=3049591

Family Applications (1)

Application Number Title Priority Date Filing Date
US50260109A Expired - Lifetime US981226A (en) 1909-06-16 1909-06-16 Mine-roof support.

Country Status (1)

Country Link
US (1) US981226A (en)

Similar Documents

Publication Publication Date Title
US4018055A (en) Steel caissons
US1474808A (en) Method of tunnel construction
GB1045331A (en) Improvements in or relating to building construction
US981226A (en) Mine-roof support.
JP4576564B2 (en) Protective structures and construction methods
US886666A (en) Automatic adjustable arch construction.
US1212499A (en) Form for concrete construction.
JP2017115315A (en) Tunnel interior structure and its construction method
US954410A (en) Sectional arch.
JP2011012493A (en) Method for reinforcing abutment and bridge girder
JP6630398B2 (en) Pca middle pillar
JP6630399B2 (en) Pca footing
JP2018059318A (en) Foundation beam structure and method of constructing foundation beam
US1167159A (en) Construction of concrete sewers, aqueducts, &c.
JP2017095915A (en) Junction structure between column-beam joint part and column, rigid-frame viaduct, construction method for junction structure between column-beam joint part and column, and precast concrete member
US317337A (en) goodridge
JP4444074B2 (en) L-shaped side gutter with earth retaining wall
US388986A (en) Half to john r
RU2704415C1 (en) Method for construction of column-type two-vane subway station by closed method of perfoming works
US963536A (en) Tunnel-support.
JP6395767B2 (en) Construction structure
JP2010138617A (en) Installation method for timbering for bridge
US317338A (en) goodridg-e
US950060A (en) Tile or slab.
KR20070019410A (en) Assembly-type the base of civil construction and method for constructing the same