WO2002096610A1 - Apparatus and method for roughing surface of concrete casting blocks - Google Patents

Apparatus and method for roughing surface of concrete casting blocks Download PDF

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Publication number
WO2002096610A1
WO2002096610A1 PCT/CA2002/000739 CA0200739W WO02096610A1 WO 2002096610 A1 WO2002096610 A1 WO 2002096610A1 CA 0200739 W CA0200739 W CA 0200739W WO 02096610 A1 WO02096610 A1 WO 02096610A1
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WO
WIPO (PCT)
Prior art keywords
blocks
roughing
concrete
concrete blocks
ledge
Prior art date
Application number
PCT/CA2002/000739
Other languages
French (fr)
Inventor
Charles Ciccarello
Yvon Laporte
Hugo Laporte
Original Assignee
Techo-Bloc, Inc.
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
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First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=4169150&utm_source=***_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2002096610(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Techo-Bloc, Inc. filed Critical Techo-Bloc, Inc.
Priority to DE60203110T priority Critical patent/DE60203110T2/en
Priority to EP02729706A priority patent/EP1390183B1/en
Priority to JP2002593112A priority patent/JP2004526602A/en
Priority to MXPA03010899A priority patent/MXPA03010899A/en
Priority to AT02729706T priority patent/ATE289906T1/en
Publication of WO2002096610A1 publication Critical patent/WO2002096610A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D1/00Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor
    • B28D1/006Artificial ageing of stones; Providing stones with an antique appearance
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B11/00Apparatus or processes for treating or working the shaped or preshaped articles
    • B28B11/08Apparatus or processes for treating or working the shaped or preshaped articles for reshaping the surface, e.g. smoothing, roughening, corrugating, making screw-threads
    • B28B11/0818Apparatus or processes for treating or working the shaped or preshaped articles for reshaping the surface, e.g. smoothing, roughening, corrugating, making screw-threads for roughening, profiling, corrugating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B11/00Apparatus or processes for treating or working the shaped or preshaped articles
    • B28B11/08Apparatus or processes for treating or working the shaped or preshaped articles for reshaping the surface, e.g. smoothing, roughening, corrugating, making screw-threads
    • B28B11/089Using impacting tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D1/00Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor
    • B28D1/18Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor by milling, e.g. channelling by means of milling tools
    • B28D1/181Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor by milling, e.g. channelling by means of milling tools using cutters loosely mounted on a turning tool support
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D7/00Accessories specially adapted for use with machines or devices of the preceding groups
    • B28D7/04Accessories specially adapted for use with machines or devices of the preceding groups for supporting or holding work or conveying or discharging work

Definitions

  • the present invention relates to casted 5 concrete block manufacturing and, more particularly, to an apparatus and method for roughing blocks to give them a worn or rough appearance .
  • the concrete block casting industry is well 0 developed and is highly automated in its process operations for manufacturing conventional rectangular concrete blocks and the like.
  • the casted blocks have a geometrically uniform rectangular prism configuration in which the surfaces thereof are substantially planar 5 with adjacent surfaces delimited by sharp edges.
  • a known method consists in disposing the casted blocks in large tumbling drums. 0 These tumbling drums are rotated about their longitudinal axis in order for the concrete blocks to tumble therein and to collide in order to get damaged.
  • This method although producing a generally satisfying look, entails substantial costs due to unrepairable damages to concrete blocks . Some blocks are damaged to a point where they may no longer be used and are thus thrown away or recycled. Also, some concrete block patterns may contain blocks of different sizes and these must be sorted and assembled, which is very time consuming. Also, if a particular one of the blocks in pattern is destroyed more than other blocks, then often the other blocks are no longer useful as a ratio of blocks must be kept.
  • the tumbling drum requires frequent repairs. Furthermore, the personnel used for these purposes must deal with a noisy environment due to the tumbling action, and injuries are frequent due to the hazardous operations and handling required thereby. It is difficult to maintain a stable labour force for this work.
  • U.S. Patent No. 5,133,915, issued on July 28, 1992 to Metten et al . discloses a surface upon which a plurality of concrete blocks are disposed in a spaced apart relationship.
  • a roller brush translates over the surface of concrete blocks in a reciprocating manner, thereby stripping and roughing the surface of the concrete blocks.
  • the brush can only strike them at a certain velocity in order not to displace them. If they are displaced, they may end up in abutment with one another, whereby only the top surfaces will be abraded, leaving the sharp edges of the block intact.
  • These blocks are usually treated before the concrete is cured. This patent could not provide the desired result of producing an irregular roughened appearance to concrete blocks .
  • the present invention provides an apparatus for roughing at least one of surfaces and edges of concrete casted blocks, comprising a block support surface having at least two surface sections.
  • a first of the surface sections has at least a rear end thereof above an adjacent front end of a second of the surface sections to create a ledge 'for projecting a leading edge portion of concrete blocks' conveyed over the first surface section.
  • a first roughing device has a plurality of impacting elements thereon for roughing concrete blocks.
  • the first roughing device is disposed generally above the rear end of the first surface section for abrading a projecting leading edge portion of each concrete block as they are conveyed over the rear end.
  • Conveying means displace the concrete blocks over the first and second surface sections, the blocks being tilted when reaching a predetermined position over the ledge to avoid being abraded by the roughing device .
  • a method for roughing portions of concrete casted blocks comprising the steps of (i) providing a block support surface having at least a section thereof inclined to create a ledge for projecting a leading edge portion of concrete blocks conveyed over the ledge by conveying means; (ii) providing at least a roughing device having a plurality of impacting elements thereon and disposed at a predetermined position above the ledge; and (iii) impacting the leading edge portions of the concrete blocks by the roughing device as they are projected over the ledge by the conveying means, the blocks being tilted when reaching a predetermined position over the ledge to avoid being abraded by the roughing device.
  • Fig. 1 is a perspective view of an apparatus for roughing concrete blocks in accordance with the present invention
  • Fig. 2 is an enlarged elevational view of slanted support panels and a roughing tool in accordance with the present invention
  • Fig. 3 is an enlarged perspective view of an embodiment of the roughing tool ;
  • Fig. 4 is a simplified schematic top plan view of a series of apparatuses- for roughing concrete blocks ;
  • Fig. 5 is an enlarged side elevational view of another embodiment of the apparatus for roughing concrete blocks of the present invention.
  • Fig. 6 is an enlarged side elevational view of still another embodiment of the apparatus for roughing concrete blocks of the present invention.
  • Fig. l an apparatus for roughing concrete blocks (i.e bricks, paving stones, wall retaining blocks, masonry stones) is generally shown at
  • the apparatus 10 comprises a table 11 having a top surface 12, a front end 13, a rear end 14 and lateral sides 15 and 16.
  • the top surface 12 is defined by rectangular panels 17, 18, 19 and 20. It is observed that the rectangular panel 17 is at the front end 13 of the table 11, whereas the rectangular panel 20 is at the rear end 14 thereof .
  • the rectangular panels 17, 18 and 19 are each secured to the table 11 in a slanted or inclined position with respect to the horizontal, such that each of the rectangular panels 17 and 18 has its front side edge lower than its rear side edge. Rectangular panel 19 is flat on the table for reasons which will be described later. Consequently, as seen in Fig. 1, a rear side edge 17R of the rectangular panel 17 is vertically offset with respect to adjacent front side edge 18F of the rectangular panel 18, such as to be above it to create a ledge L. It is pointed out that there is a similar relation between the front side and rear side edges of the rectangular panels 18 and 19. It is also pointed out that the rectangular panel 20 is substantially horizontal and in a co-planar relationship with the rectangular panel 19. Its rear side edge 2OR represents the rear end 14 of the table
  • the present invention is not restricted to four rectangular panels as fewer or more rectangular panels could form the table 11.
  • the successive rectangular panels being cascaded could each have been in a horizontal position rather than in a slanted position, with a decrease in vertical positioning from the front end 14 of the table 11 to the rear end 15 thereof, such as to, again, have a cascading relation between the rectangular panels.
  • Support posts 25A and 25B project upwardly from the lateral sides 15 and 16, respectively, of the table 11 on opposed sides of the junction of the rectangular panels 17 and 18.
  • Similar support posts 26A and 26B, and 27A and 27B are upwardly extending at opposed sides of the junctions of the rectangular panels 18 and 19, and of the rectangular panels 19 and 20, respectively.
  • Each of the support posts has at a top end thereof a throughbore having a journal bearing therein (not shown) .
  • the support posts 25A and 25B support a roughing tool 30 through their journal bearings.
  • the roughing tool 30 is comprised of a pair of disks 31A and 3IB removably linked by support bars 32.
  • a drive shaft 33A is secured to the disk 31A, whereas the other disk 3IB is connected to an idle and free to rotate shaft (not shown) journaled at the top end of the support post 25A.
  • a plurality of chain link sections 34 are secured to the support bars 32, and are comprised of at least two interconnected loop chain links. The support bars 32 extend through an end loop of each chain link section 34.
  • the roughing tool 30 is rotated by a motor Ml connected to the drive shaft 33A by a belt Bl and pulley PI assembly.
  • the motor Ml may consist a variable speed electric motor.
  • the roughing tools 40 and 50 are journaled between the support posts 26A and 26B, and 27A and 27B, respectively.
  • the roughing tools 40 and 50 comprise the same elements as the roughing tool 30. Therefore, the roughing tools 40 and 50 will not be described.
  • like elements will be related by having like last digits.
  • the disks 31A and 3IB for the roughing tool 30 are generally identical to the disks 41A and 41B of the roughing tool 40.
  • the disks 51A and 51B of the roughing tool 50 are generally identical to the disks 31A of the 3 IB of the roughing tool 30.
  • the motors and belt/pulley assemblies driving the roughing tools 40 and 50 are not shown.
  • the slanted or inclined positioning of the rectangular panels 17 and 18, whereby they are cascaded, allows for given portions of the concrete blocks C disposed on the top surface 12 of the table 11 to be exposed to the chain link sections 34 and 44 of the roughing tools 30 and 40, respectively, during their travel over the panels and specifically over the ledges.
  • the configuration of the rectangular panel 17 with respect to panel 18 allows for only an edge C of a concrete block C to be exposed for being impacted by the chain link sections 34 as it is conveyed by the conveyor bars 65 over the ledge L.
  • the block C will tilt down and fall on the rectangular panel 18, and its top surface C ' will avoid the chain link sections 34.
  • the roughing tools 30, 40 and 50 may be positioned strategically with respect to the table 11 in order for predetermined portions of the concrete blocks C to be abraded . Consequently, the slanted configuration of the rectangular panels 17 and 18 allows for only the exposed edge portions of the concrete blocks C to be roughened.
  • three roughing tools are provided in order to treat the concrete blocks C disposed thereon for various effects.
  • the roughing tool 30 is positioned to strike the exposed edges C of the concrete blocks C such as to do a rough treating thereof and remove bigger chunks of material.
  • the roughing tool 40 is positioned such as to treat the edges of the blocks C to a smoother finishing.
  • rectangular panel 19 is flat and the roughing tool 50 is positioned to abrade the top surface C ' of the blocks C.
  • the roughing tools 30, 40 and 50 are driven by a variable speed motor (not shown) and may thus be rotated to various speeds in order to impact the concrete blocks C at various forces. They can also be independently driven. As seen in Fig. 3, a bolt B and nuts N have been added to an end chain link of a chain link section 34 such as to provide a random pattern on the concrete blocks C upon same being struck.
  • the apparatus 10 is provided with a conveyor 60 to displace the concrete blocks C over the panels 17, 18, 19 and 20.
  • the conveyor 60 comprises a pair of chain loops 61A and 61B adjacent the lateral sides 15 and 16, respectively, of the table 11.
  • the chain loop 61A is operatingly held about a pair of sprockets 62F and 62R, with the sprocket 62R being driven by a motor M2 and a belt B2 and pulley P2 assembly.
  • the chain loop 61B is disposed about a sprocket 63F and the driven sprocket 63R, the latter being connected to an opposed end of an axle 64 upon which is secured the sprocket 62R.
  • the chain loops 61A and 6IB are linked by a plurality of bars 65 which are equidistantly spaced.
  • the bars 65 come in contact with the concrete blocks C disposed on the top surface 12 of the table 11 such as to displace the concrete blocks C from the front end 13 to the rear end 14 thereof.
  • the motor M2 may be of various speeds in order to provide various velocities to the blocks moving forward.
  • a plurality of apparatuses for ⁇ roughing concrete blocks or tables in accordance with the present invention may be provided in series in order to treat the various edge surfaces and top surfaces of the concrete blocks C.
  • Concrete blocks C are initially loaded onto apparatus 10A such as to have first lateral side edges thereof treated by roughing tools 30A (rougher edge finish) and 40A (smoother edge finish) .
  • roughing tools 30A rougher edge finish
  • 40A similar edge finish
  • elements of an apparatus have been affixed a like letter (for instance, roughing tool 30A of apparatus 10A) .
  • the concrete blocks C are then transferred to a transfer table 100A, where a push bar 101A will load the concrete blocks C to apparatus 10B. It is pointed out that the front side edges of the concrete blocks C will now be treated as a consequence of the apparatus 10B being perpendicular to the apparatus 10A.
  • the concrete blocks C will then move onward to the apparatuses 10C and 10D through the transfer tables 100B and 100C, respectively, so as to be treated on all side edges.
  • a third roughing tool 50D is provided on the apparatus 10D to treat the top surface of the concrete blocks C. This operation only requires to be achieved once as all side edges of the concrete blocks C share the same top surface .
  • the concrete blocks can be loaded on to a stack of concrete blocks
  • the panels forming the block support surface of the apparatuses may be solid. It has also been thought to provide a grid surface, as shown at G for one of the panels of apparatus 10B in Fig. 4, so that concrete particles resulting from the concrete blocks being treated fall through the grid surface G to the floor, thereby not accumulating on the top surface of the panels.
  • FIG. 5 a further embodiment of the apparatus 10 is shown, wherein the concrete blocks C will be abraded from a roughing tool 60, similar to the roughing tools 30, 40 and 50 described above, but disposed underneath the top surface 12, herein shown below rectangular panels 17 and 18.
  • the rectangular panels 17 and 18 in this embodiment are shown further spread apart by a gap G2 , as well as being offset by ledge L, to allow for the bottom trailing edges of concrete blocks C to drop in the gap G2 to be exposed to the abrading chain link sections 64 of the roughing tool 60 to be abraded thereby.
  • Guides (not shown) are provided such that the bars 65 and the chain loops 61A and 61B avoid the chain link sections 64 of the roughing tool 60 when moving across the gap G2.
  • the roughing tool 60 is depicted once more underneath the top surface 12 of the roughing apparatus 10, yet the rectangular panels 17 and 18 are not offset by the ledge L, whereby the concrete blocks driven across the gap G will have their bottom trailing surfaces exposed to be abraded by the chain link sections 64' of the roughing tool 60'.
  • the roughing tool below the top surface 12 ensures that the chips or the dust resulting from the abrading action on the concrete blocks C will not accumulate . on the top surface 12 of the apparatus 10.
  • the roughing tool below the top surface 12 are used in combination with roughing tools disposed above the top surface 12 of the apparatus 10, as described above, whereby two opposed sides and edges of the concrete blocks C are abraded on the same apparatus . It is within the ambit of the present invention to cover any obvious modifications of the embodiments described herein, provided such modifications fall within the scope of the appended claims .

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Structural Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Mining & Mineral Resources (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)
  • Devices For Post-Treatments, Processing, Supply, Discharge, And Other Processes (AREA)
  • Grinding Of Cylindrical And Plane Surfaces (AREA)
  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)
  • Disintegrating Or Milling (AREA)
  • Road Paving Structures (AREA)

Abstract

An apparatus (10, 10A, 10B, 10C, 10D) and method for roughing surfaces and edges (C') of concrete casted blocks (C), comprising a block support surface (12) having a plurality of surface sections (17, 18, 19, 20). A first (17, 18, 19) of the surface sections has a rear end (17R, 18R, 19R) thereof above an adjacent front end (18F, 19F, 20F) of a second (18, 19, 20) of the surface sections to create a ledge (L) for projecting a leading edge portion (C') of concrete blocks (C) conveyed over the first surface section (17, 18, 19). A first roughing device (30, 40, 50) has a plurality of impacting elements (34, 44, 54) thereon for roughing concrete blocks (C). The first roughing device (30, 40, 50) is disposed generally above the rear end (17R, 18R, 19R) of the first surface section (17, 18, 19) for abrading a projecting leading edge portion (C') of each concrete block (C) as they are conveyed over the rear end (17R, 18R, 19R). A conveyor (60) displaces concrete blocks (C) over the first (17, 18, 19) and second (18, 19, 20) surface sections, the blocks (C) being tilted when reaching a predetermined position over the ledge (L) to avoid being abraded by the roughing device (30, 40, 50).

Description

APPARATUS AND METHOD FOR ROUGHING SURFACE OF CONCRETE CASTING BLOCKS
TECHNICAL FIELD
The present invention relates to casted 5 concrete block manufacturing and, more particularly, to an apparatus and method for roughing blocks to give them a worn or rough appearance .
BACKGROUND ART
The concrete block casting industry is well 0 developed and is highly automated in its process operations for manufacturing conventional rectangular concrete blocks and the like. The casted blocks have a geometrically uniform rectangular prism configuration in which the surfaces thereof are substantially planar 5 with adjacent surfaces delimited by sharp edges.
It has been known to treat the concrete blocks in order to get a more natural rough look. As authentic stone blocks are known to have rounded edges and irregular shaped surfaces, systems have been 0 provided in order to produce such effect on casted concrete blocks. However, the equipment used in order to treat these blocks has been incompatible with the fully automated handling equipment used in the other operations of the concrete block producing process. 5 Substantial amount of manual labor and high costs are inherent with the presently used block roughing systems .
For instance, a known method consists in disposing the casted blocks in large tumbling drums. 0 These tumbling drums are rotated about their longitudinal axis in order for the concrete blocks to tumble therein and to collide in order to get damaged. This method, although producing a generally satisfying look, entails substantial costs due to unrepairable damages to concrete blocks . Some blocks are damaged to a point where they may no longer be used and are thus thrown away or recycled. Also, some concrete block patterns may contain blocks of different sizes and these must be sorted and assembled, which is very time consuming. Also, if a particular one of the blocks in pattern is destroyed more than other blocks, then often the other blocks are no longer useful as a ratio of blocks must be kept. By its nature, the tumbling drum requires frequent repairs. Furthermore, the personnel used for these purposes must deal with a noisy environment due to the tumbling action, and injuries are frequent due to the hazardous operations and handling required thereby. It is difficult to maintain a stable labour force for this work.
U.S. Patent No. 5,133,915, issued on July 28, 1992 to Metten et al . , discloses a surface upon which a plurality of concrete blocks are disposed in a spaced apart relationship. A roller brush translates over the surface of concrete blocks in a reciprocating manner, thereby stripping and roughing the surface of the concrete blocks. Although this method provides substantial advantages over the tumbling drum method described above, it requires that the concrete blocks are spaced apart in order for the sharp edges thereof to be treated. Otherwise, only the top surface would be abraded. Furthermore, the brush type roller provides a relatively uniform abrasion of the concrete blocks, which is not a desired result for use with paving blocks. Finally, as the concrete blocks are spaced apart, the brush can only strike them at a certain velocity in order not to displace them. If they are displaced, they may end up in abutment with one another, whereby only the top surfaces will be abraded, leaving the sharp edges of the block intact. These blocks are usually treated before the concrete is cured. This patent could not provide the desired result of producing an irregular roughened appearance to concrete blocks .
DISCLOSURE OF INVENTION It is a feature of the present invention to provide a concrete block roughing apparatus and method which substantially overcomes the disadvantages of the above mentioned prior art.
According to the above features , from a broad aspect, the present invention provides an apparatus for roughing at least one of surfaces and edges of concrete casted blocks, comprising a block support surface having at least two surface sections.. A first of the surface sections has at least a rear end thereof above an adjacent front end of a second of the surface sections to create a ledge 'for projecting a leading edge portion of concrete blocks' conveyed over the first surface section. A first roughing device has a plurality of impacting elements thereon for roughing concrete blocks. The first roughing device is disposed generally above the rear end of the first surface section for abrading a projecting leading edge portion of each concrete block as they are conveyed over the rear end. Conveying means displace the concrete blocks over the first and second surface sections, the blocks being tilted when reaching a predetermined position over the ledge to avoid being abraded by the roughing device .
According to a further broad aspect of the present invention, there is provided a method for roughing portions of concrete casted blocks comprising the steps of (i) providing a block support surface having at least a section thereof inclined to create a ledge for projecting a leading edge portion of concrete blocks conveyed over the ledge by conveying means; (ii) providing at least a roughing device having a plurality of impacting elements thereon and disposed at a predetermined position above the ledge; and (iii) impacting the leading edge portions of the concrete blocks by the roughing device as they are projected over the ledge by the conveying means, the blocks being tilted when reaching a predetermined position over the ledge to avoid being abraded by the roughing device.
BRIEF DESCRIPTION OF THE DRAWINGS A preferred embodiment of the present invention as illustrated by examples thereof will now be described with reference to the accompanying drawings in which:
Fig. 1 is a perspective view of an apparatus for roughing concrete blocks in accordance with the present invention;
Fig. 2 is an enlarged elevational view of slanted support panels and a roughing tool in accordance with the present invention; Fig. 3 is an enlarged perspective view of an embodiment of the roughing tool ;
Fig. 4 is a simplified schematic top plan view of a series of apparatuses- for roughing concrete blocks ; Fig. 5 is an enlarged side elevational view of another embodiment of the apparatus for roughing concrete blocks of the present invention; and
Fig. 6 is an enlarged side elevational view of still another embodiment of the apparatus for roughing concrete blocks of the present invention.
MODE FOR CARRYING OUT THE INVENTION
According to the drawings and, more particularly to Fig. l, an apparatus for roughing concrete blocks (i.e bricks, paving stones, wall retaining blocks, masonry stones) is generally shown at
10. The apparatus 10 comprises a table 11 having a top surface 12, a front end 13, a rear end 14 and lateral sides 15 and 16. The top surface 12 is defined by rectangular panels 17, 18, 19 and 20. It is observed that the rectangular panel 17 is at the front end 13 of the table 11, whereas the rectangular panel 20 is at the rear end 14 thereof .
The rectangular panels 17, 18 and 19 are each secured to the table 11 in a slanted or inclined position with respect to the horizontal, such that each of the rectangular panels 17 and 18 has its front side edge lower than its rear side edge. Rectangular panel 19 is flat on the table for reasons which will be described later. Consequently, as seen in Fig. 1, a rear side edge 17R of the rectangular panel 17 is vertically offset with respect to adjacent front side edge 18F of the rectangular panel 18, such as to be above it to create a ledge L. It is pointed out that there is a similar relation between the front side and rear side edges of the rectangular panels 18 and 19. It is also pointed out that the rectangular panel 20 is substantially horizontal and in a co-planar relationship with the rectangular panel 19. Its rear side edge 2OR represents the rear end 14 of the table
11. Also, the present invention is not restricted to four rectangular panels as fewer or more rectangular panels could form the table 11. Furthermore, the successive rectangular panels being cascaded could each have been in a horizontal position rather than in a slanted position, with a decrease in vertical positioning from the front end 14 of the table 11 to the rear end 15 thereof, such as to, again, have a cascading relation between the rectangular panels. Support posts 25A and 25B project upwardly from the lateral sides 15 and 16, respectively, of the table 11 on opposed sides of the junction of the rectangular panels 17 and 18. Similar support posts 26A and 26B, and 27A and 27B are upwardly extending at opposed sides of the junctions of the rectangular panels 18 and 19, and of the rectangular panels 19 and 20, respectively.
Each of the support posts has at a top end thereof a throughbore having a journal bearing therein (not shown) . The support posts 25A and 25B support a roughing tool 30 through their journal bearings. The roughing tool 30 is comprised of a pair of disks 31A and 3IB removably linked by support bars 32. A drive shaft 33A is secured to the disk 31A, whereas the other disk 3IB is connected to an idle and free to rotate shaft (not shown) journaled at the top end of the support post 25A. A plurality of chain link sections 34 are secured to the support bars 32, and are comprised of at least two interconnected loop chain links. The support bars 32 extend through an end loop of each chain link section 34. By rotating the roughing tool 30 on its longitudinal axis, the chain link sections 34 will impact predetermined areas of concrete blocks C disposed on the table 11, as will be described later. The roughing tool 30 is rotated by a motor Ml connected to the drive shaft 33A by a belt Bl and pulley PI assembly. The motor Ml may consist a variable speed electric motor.
Generally identical roughing tools 40 and 50 are journaled between the support posts 26A and 26B, and 27A and 27B, respectively. The roughing tools 40 and 50 comprise the same elements as the roughing tool 30. Therefore, the roughing tools 40 and 50 will not be described. However, when referring to Fig. 1, like elements will be related by having like last digits. For instance, the disks 31A and 3IB for the roughing tool 30 are generally identical to the disks 41A and 41B of the roughing tool 40. Similarly, the disks 51A and 51B of the roughing tool 50 are generally identical to the disks 31A of the 3 IB of the roughing tool 30. However, for clarity purposes, the motors and belt/pulley assemblies driving the roughing tools 40 and 50 are not shown.
The slanted or inclined positioning of the rectangular panels 17 and 18, whereby they are cascaded, allows for given portions of the concrete blocks C disposed on the top surface 12 of the table 11 to be exposed to the chain link sections 34 and 44 of the roughing tools 30 and 40, respectively, during their travel over the panels and specifically over the ledges. As best seen in Fig. 2, the configuration of the rectangular panel 17 with respect to panel 18 allows for only an edge C of a concrete block C to be exposed for being impacted by the chain link sections 34 as it is conveyed by the conveyor bars 65 over the ledge L. As a bottom face of the concrete block C is projected over the ledge L, the block C will tilt down and fall on the rectangular panel 18, and its top surface C ' will avoid the chain link sections 34. As the concrete block C further advances on the table 11, contact with the chain link sections 34 is still avoided until it is projected again on the next ledge. The roughing tools 30, 40 and 50 may be positioned strategically with respect to the table 11 in order for predetermined portions of the concrete blocks C to be abraded . Consequently, the slanted configuration of the rectangular panels 17 and 18 allows for only the exposed edge portions of the concrete blocks C to be roughened. In the embodiment shown, three roughing tools are provided in order to treat the concrete blocks C disposed thereon for various effects. The roughing tool 30 is positioned to strike the exposed edges C of the concrete blocks C such as to do a rough treating thereof and remove bigger chunks of material. The roughing tool 40 is positioned such as to treat the edges of the blocks C to a smoother finishing. As can be seen, rectangular panel 19 is flat and the roughing tool 50 is positioned to abrade the top surface C ' of the blocks C.
The roughing tools 30, 40 and 50 are driven by a variable speed motor (not shown) and may thus be rotated to various speeds in order to impact the concrete blocks C at various forces. They can also be independently driven. As seen in Fig. 3, a bolt B and nuts N have been added to an end chain link of a chain link section 34 such as to provide a random pattern on the concrete blocks C upon same being struck.
Returning now to Fig. 1, the apparatus 10 is provided with a conveyor 60 to displace the concrete blocks C over the panels 17, 18, 19 and 20. The conveyor 60 comprises a pair of chain loops 61A and 61B adjacent the lateral sides 15 and 16, respectively, of the table 11. The chain loop 61A is operatingly held about a pair of sprockets 62F and 62R, with the sprocket 62R being driven by a motor M2 and a belt B2 and pulley P2 assembly. The chain loop 61B is disposed about a sprocket 63F and the driven sprocket 63R, the latter being connected to an opposed end of an axle 64 upon which is secured the sprocket 62R. The chain loops 61A and 6IB are linked by a plurality of bars 65 which are equidistantly spaced. The bars 65 come in contact with the concrete blocks C disposed on the top surface 12 of the table 11 such as to displace the concrete blocks C from the front end 13 to the rear end 14 thereof. It is noted that the motor M2 may be of various speeds in order to provide various velocities to the blocks moving forward. As shown in the schematic representation of Fig. 4, a plurality of apparatuses for ■ roughing concrete blocks or tables in accordance with the present invention may be provided in series in order to treat the various edge surfaces and top surfaces of the concrete blocks C. Concrete blocks C are initially loaded onto apparatus 10A such as to have first lateral side edges thereof treated by roughing tools 30A (rougher edge finish) and 40A (smoother edge finish) . For clarity purposes, elements of an apparatus have been affixed a like letter (for instance, roughing tool 30A of apparatus 10A) . The concrete blocks C are then transferred to a transfer table 100A, where a push bar 101A will load the concrete blocks C to apparatus 10B. It is pointed out that the front side edges of the concrete blocks C will now be treated as a consequence of the apparatus 10B being perpendicular to the apparatus 10A.
The concrete blocks C will then move onward to the apparatuses 10C and 10D through the transfer tables 100B and 100C, respectively, so as to be treated on all side edges. A third roughing tool 50D is provided on the apparatus 10D to treat the top surface of the concrete blocks C. This operation only requires to be achieved once as all side edges of the concrete blocks C share the same top surface . The concrete blocks can be loaded on to a stack of concrete blocks
(not shown) by transfer table 100D at an end of the series of apparatuses. It is observed that a plurality of concrete blocks C are treated at a same time on the series of apparatuses, whereby this configuration advantageously allows for a continuous output of treated concrete blocks.
The panels forming the block support surface of the apparatuses may be solid. It has also been thought to provide a grid surface, as shown at G for one of the panels of apparatus 10B in Fig. 4, so that concrete particles resulting from the concrete blocks being treated fall through the grid surface G to the floor, thereby not accumulating on the top surface of the panels.
Referring to Fig. 5, a further embodiment of the apparatus 10 is shown, wherein the concrete blocks C will be abraded from a roughing tool 60, similar to the roughing tools 30, 40 and 50 described above, but disposed underneath the top surface 12, herein shown below rectangular panels 17 and 18. The rectangular panels 17 and 18 in this embodiment are shown further spread apart by a gap G2 , as well as being offset by ledge L, to allow for the bottom trailing edges of concrete blocks C to drop in the gap G2 to be exposed to the abrading chain link sections 64 of the roughing tool 60 to be abraded thereby. Guides (not shown) are provided such that the bars 65 and the chain loops 61A and 61B avoid the chain link sections 64 of the roughing tool 60 when moving across the gap G2.
Referring to Fig. 6, the roughing tool 60 is depicted once more underneath the top surface 12 of the roughing apparatus 10, yet the rectangular panels 17 and 18 are not offset by the ledge L, whereby the concrete blocks driven across the gap G will have their bottom trailing surfaces exposed to be abraded by the chain link sections 64' of the roughing tool 60'.
Having the roughing tool 60 below the top surface 12 ensures that the chips or the dust resulting from the abrading action on the concrete blocks C will not accumulate . on the top surface 12 of the apparatus 10. The roughing tool below the top surface 12 are used in combination with roughing tools disposed above the top surface 12 of the apparatus 10, as described above, whereby two opposed sides and edges of the concrete blocks C are abraded on the same apparatus . It is within the ambit of the present invention to cover any obvious modifications of the embodiments described herein, provided such modifications fall within the scope of the appended claims .

Claims

CLAIMS ,
1. An apparatus (10 , 10A, 10B, IOC, 10D) for roughing at least one of surfaces and edges (C) of concrete casted blocks (C) , comprising a block support surface (12) having at least two surface sections (17,18,19,20), at least a first roughing device (30,40,50) having a plurality of impacting elements (34,44,54) thereon for roughing concrete blocks (C) , conveying means (60) for displacing concrete blocks (C) over said surface sections (17,18,19,20), characterized in that : a first (17,18,19) of said surface sections
(17,18,19,20) has at least a rear end (17R, 18R, 19R) thereof above an adjacent front end (18F, 19F, 2OF) of a second (18,19,20) of said surface sections
(17,18,19,20) to create a ledge (L) for projecting a leading edge portion (C ) of concrete blocks (C) conveyed over said first surface section (17,18,19); said first roughing device (30,40,50) is disposed generally above said rear end (17R, 18R, 19R) of said first surface section (17,18,19) for abrading a projecting leading edge portion (C ) of each said concrete block (C) as they are conveyed over said rear end (17R,18R,19R) ; and said blocks (C) are tilted when reaching a predetermined position over said ledge ( ) to avoid being abraded by said roughing device (30,40,50) .
2. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 1, characterized in that said surface sections
(17,18,19,20) are also separated by a gap (G2) , said apparatus (10, 10A, 10B, 10C, 10D) having at least a further roughing device (60,60') having a plurality of elements (64,64') thereon for roughing concrete blocks
(C) , said further roughing device (60,60') being disposed generally below said rear end (17R, 18R, 19R) of said first surface section (17,18,19) for abrading a trailing end portion (C) of each said concrete block (C) falling in said gap (G2) upon leaving said first surface section (17,18,19).
3. The apparatus (10 , 10A, 10B, IOC, 10D) according to claim 2, characterized in that said apparatus (10 , 10A, 10B, IOC, 10D) comprises further surface sections (18,19,20), said further surface sections (18,19,20) being generally coplanar and separated by a further gap (G2)', said apparatus (10 , 10A, 10B, 10C, 10D) having at least a still further roughing device (60,60') with a plurality of elements (64,64') thereon for roughing concrete blocks (C) , said still further roughing device (60,60') being disposed generally below said further gap (G2) between said surface sections for abrading a bottom surface (C) of each said concrete block (C) being displaced over said gap (G2) .
4. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 1, characterized in that said surface sections
(17,18,19,20) are inclined such that said rear end (17R,18R, 19R) of said first surface section (17,18,19) is above said front end (18F, 19F, 20F) of said subsequent second surface section (18,19,20).
5. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 4, characterized in that said block support surface (12) is constituted of inclined solid panels, whereby said surface sections (17,18,19,20) are top surfaces of said inclined panels.
6. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 4, characterized in that each said surface section (17,18,19,20) is constituted of an inclined grid panel (G) , so that concrete particles fall therethrough.
7. The apparatus (10 , 10A, 10B, IOC, 10D) according to claim 1, wherein said conveying means (60) engage abutment engagement (65) with said concrete blocks (C) to slide said concrete blocks (C) over said block support surface (12) .
8. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 1, wherein said roughing device (30,40,50) is an elongated impact rotor, said rotor being supported horizontally and having a drive shaft (33A, 43A, 53A) at one end thereof, a motor (Ml) being connected to said drive shaft (33A, 43A, 53A) to impart axial rotation to said rotor about a central longitudinal axis thereof, and said plurality of impacting elements (34,44,54) being secured along a working section of said rotor, said impacting elements (34,44,54) being flexible and constructed of material having a hardness greater than hardness of said concrete blocks (C) , said impacting elements (34,44,54) being dimensioned to abrade or chip said concrete blocks (C) when impacted thereon by rotation of said drive shaft (33A, 43A, 53A) .
9. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 8, wherein said motor (Ml) is a variable speed electric motor.
10. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 8, wherein said impacting elements (34,44,54) of said roughing device (30,40,50) are chain link sections .
11. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 10, wherein said chain link sections are secured to one or more support bars (32,42,52) connected between a pair of bar attachment disks (31A,31B,41A,41B,51A,51B) , said drive shaft (33A,43A,53A) being secured to one (31A, 41A, 51A) of said disks (31A, 31B, 41A, 41B, 51A, 51B) , the other (31B,41B,51B) of said disks (31A, 31B, 41A, 41B, 51A, 51B) having an idle shaft connected thereto.
12. The apparatus (10 , 10A, 10B, IOC, 10D) according to claim 11, wherein said chain link sections have at least two interconnected loop chain links, each said support bars (32,42,52) extending through an end loop of a plurality of chain link sections, said support bars (32,42,52) being removably connected to said bar attachment disks (31A, 31B, 41A, 4.IB, 51A, 51B) .
13. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 12, wherein at least one free end loop of said plurality of chain link sections has an impacting device (B,N) secured thereto.
14. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 13, wherein said impacting device is a bolt
(B) and nut (N) assembly.
15. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 1, wherein the concrete blocks (C) are one of bricks, paving stones, wall retaining blocks and masonry stones.
16. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 1, wherein the concrete blocks (C) are groups of blocks with some of said blocks being of different size.
17. The apparatus (10 , 10A, 10B, IOC, 10D) according to claim 7, wherein said conveying (60) means has a pair of motor driven chains (61A,61B) interconnected by a plurality of spaced push bars (65) , said chains
(61A,61B) being disposed on opposed sides (15,16) of said table (11) such that said push bars (65) push the concrete blocks (C) from a front end (13) of said table
(11) to a rear end (14) thereof.
18. The apparatus (10 , 10A, 10B, 10C, 10D) according to claim 17, wherein said chains (61A,61B) are trained about driven and idle sprockets (62F, 62R, 63R) which are. motor driven by a variable speed motor (M2) .
19. A concrete casted blocks roughing line comprising at least two apparatuses (10A, 10B, 10C, 10'D) according to claim 1, characterized in that a first one
(10A) of said apparatuses (10A, 10B, 10C, 10D) is placed upstream of at least a second one (10B) of said apparatuses (10A, 10B, 10C, 10D) , whereby concrete blocks
(C) transferred from said first one (10A) of said apparatuses (10A, 10B, 10C, 10D) to said second one (10B) of said apparatuses (10A, 10B, 10C, 10D) are positioned so as to have side edges (C ) unabraded on said first one
(10A) of said apparatuses (10A, 10B, 10C, 10D) abraded on said second one (10B) of said apparatuses
(10A, 10B,10C,10D) .
20. The concrete casted blocks roughing line according to claim 19, characterized in that subsequent apparatuses (10B, 10C, 10D) are in a . generally perpendicular relation with respect to one another so as to have unabraded side edges abraded on a downstream one of said subsequent apparatuses (10B, 10C, 10D) .
21. A method for roughing portions (C',C") of concrete casted blocks (C) characterized by the steps of :
(i) providing a block support surface (12) having at least a section (17,18,19) thereof inclined to create a ledge (L) for projecting a leading edge portion (C) of concrete blocks (C) conveyed over said ledge (L) by conveying means (60) ;
(ii) providing at least a roughing device
(30,40,50) having a plurality of impacting elements
(34,44,54) thereon and disposed at a predetermined position above said ledge (L) ; and
(iii) impacting said leading edge portions
(C) of said concrete blocks (C) by said roughing device (30,40,50) as they are projected over said ledge
(L) by said conveying means (60) , said blocks (C) being tilted when reaching a predetermined position over said ledge (L) to avoid being abraded by said roughing device (30,40, 50) .
22. The method according to claim 21, wherein said step (i) includes said block support surface (17,18,19,20) having a gap (G2) at said ledge (L) for exposing a bottom trailing edge portion (C) of each said concrete block (C) in said gap (G2) , wherein said step (ii) includes providing at least another roughing device (60,60') having a plurality of impacting elements (64,64') thereon and disposed at a predetermined position below said gap (G2) , and wherein step (iii) includes impacting said bottom trailing edge portion (C ) of said concrete blocks (C) as they fall in said gap (G2) by said conveying means (60) .
23. The method according to claim 21, wherein a plurality of block support surfaces (17,18,19,20) are provided in series, said concrete blocks (C) having untreated edge portions (C) placed in a leading position when transferred between subsequent block support surfaces (17,18,19,20), the steps (i) , (ii) and (iii) being repeated over each said block support surface (17,18,19,20) to treat all edge portions (C) of each said concrete blocks (C) .
24. The method according to claim 23, further comprising the step of treating a top surface (C ) of each said concrete block (C) by a further roughing device (40,50) .
PCT/CA2002/000739 2001-05-28 2002-05-22 Apparatus and method for roughing surface of concrete casting blocks WO2002096610A1 (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
DE60203110T DE60203110T2 (en) 2001-05-28 2002-05-22 DEVICE AND METHOD FOR GRINDING CASTED CONCRETE STONES
EP02729706A EP1390183B1 (en) 2001-05-28 2002-05-22 Apparatus and method for roughing surface of concrete casting blocks
JP2002593112A JP2004526602A (en) 2001-05-28 2002-05-22 Apparatus and method for roughening the surface of cast concrete block
MXPA03010899A MXPA03010899A (en) 2001-05-28 2002-05-22 Apparatus and method for roughing surface of concrete casting blocks.
AT02729706T ATE289906T1 (en) 2001-05-28 2002-05-22 DEVICE AND METHOD FOR ROUGH GRINDING OF CAST CONCRETE BLOCKS

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CA002349095A CA2349095C (en) 2001-05-28 2001-05-28 Apparatus and method for roughing surfaces of concrete casted blocks
CA2,349,095 2001-05-28

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WO2002096610A1 true WO2002096610A1 (en) 2002-12-05

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JP (1) JP2004526602A (en)
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ES (1) ES2239229T3 (en)
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PL (1) PL199360B1 (en)
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DE102005056163B4 (en) 2005-06-22 2023-04-13 Baustoffwerke Gebhart & Söhne GmbH & Co. KG Method and device for artificially aging stones
JP5021441B2 (en) * 2007-12-12 2012-09-05 株式会社タイガーマシン製作所 Concrete block scraping method and concrete block scraping device
PL442276A1 (en) * 2022-09-14 2023-11-13 Politechnika Warszawska Method of producing prefabricated elements reducing railway noise

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ES2239229T3 (en) 2005-09-16
ATE289906T1 (en) 2005-03-15
CA2349095A1 (en) 2002-11-28
MXPA03010899A (en) 2004-11-22
PL366523A1 (en) 2005-02-07
EP1390183B1 (en) 2005-03-02
DE60203110T2 (en) 2006-05-18
PL199360B1 (en) 2008-09-30
EP1390183A1 (en) 2004-02-25
RU2003137573A (en) 2005-05-27
CA2349095C (en) 2006-11-28
RU2289506C2 (en) 2006-12-20
DE60203110D1 (en) 2005-04-07
JP2004526602A (en) 2004-09-02

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