WO1982004217A1 - Device for marking out workpieces - Google Patents

Device for marking out workpieces Download PDF

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Publication number
WO1982004217A1
WO1982004217A1 PCT/NL1982/000019 NL8200019W WO8204217A1 WO 1982004217 A1 WO1982004217 A1 WO 1982004217A1 NL 8200019 W NL8200019 W NL 8200019W WO 8204217 A1 WO8204217 A1 WO 8204217A1
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WO
WIPO (PCT)
Prior art keywords
guider
shaped
bar
sliding block
holder
Prior art date
Application number
PCT/NL1982/000019
Other languages
French (fr)
Inventor
Christiaan Engbert Veeze
Original Assignee
Christiaan Engbert Veeze
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 Christiaan Engbert Veeze filed Critical Christiaan Engbert Veeze
Priority to AT82901794T priority Critical patent/ATE15778T1/en
Priority to DE8282901794T priority patent/DE3266509D1/en
Publication of WO1982004217A1 publication Critical patent/WO1982004217A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H7/00Marking-out or setting-out work
    • B25H7/04Devices, e.g. scribers, for marking

Definitions

  • the invention relates to a device for marking out workpieces.
  • a usual method for marking out for example holes in for example I-beams is measuring out the planed location of the holes in the web of the I-beam by means of a measuring tape, folding rule or the like and marking out this location on a flange of the I-beam, marking out the lines on which the holes have to be applied by means of a block square and a drawing point and further determining the location of the four holes on these lines by means of a measuring tape or a folding rule and marking this location with a center point.
  • This method often gives cause to inaccuracies. For example with in particular wide I-beams there are created deviations in that the block square is placed against or above round edges of the beam.
  • the invention has the object to provide a device for marking out workpieces with which the above disadvantages are eliminated and according to the Invention this object is attained in that the device comprises a sliding block provided with means for guiding thereof . along the outer edge of the work piece to be marked out and provided with a vertical wall adapted to rest against the outer edge of the working piece, a graduated horizontal bar-shaped guider being attached with one end to said sliding block at the upper side thereof and extending laterally therefrom, the device further comprising a holder for a pin-shaped marking out member, being displaceable longitudinally of the bar-shaped guider from a starting position near the sliding block, corresponding with the zero-position of the graduation, the holder being provided with a vertical through bore for receiving in a clamping way a stiff-shaped marking out member so that in the said starting position the axis of the bore is lying in the plane of the inner surface of the vertical wall of the sliding block.
  • the round edges of for example I-beam to be marked out does not give troubles because the sliding block is resting with its vertical wall against the outer edge of the work piece and thus the position of said sliding block is determined univocally. Because in the starting position the axis of the bore in which a drawing point can be received is coinciding with the inner surface of the vertical wall of the sliding block resting against the outer wall, the zero-position of the drawing point is determined univocally and the location to be measured out from that position of for example holes does not show deviations. 3ecause the drawing point always is held in a vertical position in the vertical bore of the holder no deviations can be created by tilting of the drawing point. The space within which has to be worked cannot play a part because the bar-shaped guider is extending along the upper side of the I—beam.
  • the holder for the shift—shaped member which can consist of a drawing point or a center point or a combination thereof is mounted to the guider which is secured to the sliding block.
  • the holder is displaced here along the bar-shaped guider.
  • the location of the holes in the web of the I-beam may be for example first measured longitudinally of the I-beam by means of a measuring tape after which the drawing point/center point will be placed in the measured location and the sliding block of the marking out device is placed on one of the flanges of the I-beam.
  • the proper location of the hole can be measured out through the graduation of the bar-shaped guider and can be centered by means of the center point.
  • Another possibility for marking out of holes can be achieved when, in the starting position of the holder the axis of the vertical bore lies in the central cross sectional plane of the sliding block.
  • the length of the sliding block will be taken Into account. The distance where the holes have to be applied is increased or decreased with the half length of the sliding block which distance then is marked out on a flange of the I-beam and the sliding block is then placed with one of its ends on the marked out location.
  • an alternate embodiment of the device accordig to the invention can be obtained in that the holder of the pin-shaped member is attached to and is displaceable longitudinally of a second graduated horizontal bar-shaped guider, which guider is perpendicular to the first guider and extending at both sides thereof, said second guider being displaceable longitudinally of the first guider from a starting position, in which the axis of the vertical bore of the holder is lying in the plane of the inner surface of the vertical side wall of the sliding block.
  • the graduation of the second bar-shaped guider contains a zero position between the ends of this guider so that, if the holder is in this position the axis of the vertical bore thereof is lying in the cross sectional plane through the center of the sliding block.
  • a very efficient embodiment of the device according to the invention is obtained in that the bar-shaped guider attached to the sliding block is articulating about a vertical shaft which is applied so that the axis thereof is coinciding with the axis of the vertical bore of the holder if the latter is in the zero position along the bar-shaped guider.
  • this device it is for example possible to cut-off angularly an a I-beam.
  • a protractor and according to the invention this can be attained in that the bar-shaped guider is secured to a plate which is secured to the upper side of the sliding block and which is provided with a protractor.
  • Fig. 1 shows a perspective elevation of an embodiment according to the invention, placed on a I-beam to be marked out.
  • Fig. 2 shows a perspective elevation of an alternate embodiment of the device according to the invention placed on a I-beam to be marked out.
  • Fig. 3 shows in outline a top view of an I-beam in which are indicated holes to be applied in the beam and marked out with the device according to the Invention.
  • Fig.4 shows in outline a top view of a I-beam in which are indicated lines for cutting off the I-beam which are marked out with the device according to the invention.
  • I-beam 1 is shown with a web 2 and the flanges 3 and 4.
  • the sliding block of the device according to the invention is placed, which sliding block has a vertical wall 6 resting against the flange 3 and a flanged edge 7 lying upon the edge of the flange 3.
  • the sliding block 5 is provided with an out- wardly projecting horizontal plate 8 provided with a protractor 9 with a graduation from 0° up to 180°.
  • a bar-shaped guider 10 is secured to the upper side of the plate 9 which guider is provided with a graduation 11 in centimeters and millimeters.
  • said bar 10 is provided at one end with an in- tegrated plate shaped portion 12, of which a portion of the circumference is half-circular which half-circular portion in the center thereof is provided with a recess 13 provided with a mark line 14 cooperating with the protractor 9.
  • Plate 12 is secured to the plate 8 by a screw 15, the plate 12 may articulate about said screw if the screw is loosened.
  • the articulating shaft is applied at such a way that the axis thereof is lying in the plane of the inner surface of the vertical wall 6, said axis also lying in the cross sectional plane of the block 5 extending through the center thereof.
  • the bar- shaped guider 10 is provided with a carriage 16, which is mounted to three vertical shafts 17, 18 and 19, said shafts being provided at the lower end thereof with three rotatable guiding wheels, of which one, 20, is visible.
  • the guiding wheels engage grooves applied at both sides of the guiding bar and extending longitudinal thereof, one of said grooves being visible and indicated with the reference number 21 in the drawings.
  • the carriage 16 is provided at one side edge with a body 22 of resilient plastic material which body is provided with a vertical bore 23 in which bore is received a pin 25 provided with a hardened point 24, said pin can be a drawing point or a center point or a combination thereof.
  • the inner diameter of the bore is such that the pin 25 is fitting in a clamping way therein.
  • the vertical bore 23 has been applied in Such a way that in the position in which the side 26 of the carriage 16, cooperating with the graduation, is in the zero position of the graduation 11, the axis of the bore coincides with the axis of the screw 15 and thus of the articulating shaft of the guider.
  • Fig. 3 is schematically shown in which way the marking out device shown in Fig. 1 can be used for marking out holes in a I-beam.
  • Fig. 3 a top view of the I-beam is shown.
  • the point B-B indicates locations where holes in the web of the I-beam have to be applied.
  • the desired distance 1 on the web of the I-beam is measured by means of a measuring tape and at this distance the point A is for example indicated.
  • the marking out device according to Fig. 1 is used for marking out and centering of the point B, B.
  • the bar 10 is locked by means of the screw 15 under an angle of 90° with respect to the block 5.
  • the drawing point 25 is placed in the bore 23 and the point of this drawing point is placed in the point A after which the sliding block 5 is placed on the flange 3.
  • a line passing through the point B,B is scratched, after which the carriage 16 is placed at the desired distance on the graduation of the bar and a center point is applied in the bore, which center point is driven home by means of the hammer 26 (Fig.1), after which the holder is shifted on the desired place along the guider to the other of said points B and the center point also is driven home at that point.
  • Fig. 3 there are also indicated four points E,E,F,F, the istance between the points E,F being equal to the length of the liding block 5 of the device accrding to the invention.
  • a length of requent employment is a length of 200 mm, corresponding with the measure of frequent occurrence of a sketching plate, to be connected to the I-beam of 200 x 200 mm.
  • the dimension lines c and d are indicated on the edge of the flange 3. The distance c-d is the length (200 mm) of a block of the marking out device.
  • the line c is marked out on the flange 3 at a distance from the left end of the I-beam corresponding to the distance of this end from the points E-E decreased with 100 mm, i.e. the half of the length of the block 5.
  • the block 5 of the marking out device is then applied with its left end (seen in top view) against the line c, after which the points E can be marked out and centered accurately in the way as declared above.
  • the line d can be marked out on the flange 3 at the right end (in top view) of the block 5, after which the block 5 with its left end is shifted from a position at the line c until this end is lying against the line d, after which points F, F can be marked out accurately and can be centered in the way as indicated above.
  • Fig. 4 a top view of an I-beam is diagrammically indicated, which view is interrupted in the middle thereof. In the left part is indicated the way in which the beam can be cut off rectangularly.
  • the marking out device according to Fig. 1 with the guiding bar placed under an angle of 90° with respect to the block 5.
  • the location where the beam must be cut off is measured out across the web of the bean and the location measured out is indicated by point G.
  • Pin 25 Is placed in point G after which the sliding block is placed against flange 3, after which the location where the beam must be cut off is scratched in the web by means of the carriage 16.
  • FIG. 4 In the right part of Fig. 4 is indicated in which way an I-beam can be cut off angularly.
  • the screw 15 of the marking out device is loosened by means of a screw driver and the bar-shaped is guider adjusted to the number of required grades on the protractor 9. Thereafter the screw is firmly tightened. Thereafter the block can be placed with its end on one of the measured out points J, K, L or M and the desired line can be scratched with the drawing point.
  • Points J,K,L or M for may also be obtained for example by transmiting a point N which already is marked out in the middle of the beam to the flanges and to mark out point L or II starting from that point, after which can be operated as indicated here above.
  • FIG. 2 an alternate embodiment of the marking out device according to the invention is shown.
  • the marking out device according to this embodiment comprises a sliding block 27 consisting of a half circular horizontal plate 28 at the bottom side of which a vertical plate 29 is mounted, resting against the flange 3. Plate 28 further rests on the edge of the flange 3. At the upper side plate 28 is provided with a protractor 30 of 0 to 180°.
  • a graduated guiding bar 31 is attached, which guiding bar is articulating about the shaft 32.
  • the device comprises a second guiding bar 33, also graduated, said bar 33 being secured perpendicularly with respect to bar 31 through a sliding block 34.
  • a sliding block 35 is mounted on bar 33, which sliding block is provided with a vertical tube 36 in which a drawing point or center point 37 is received.
  • the bar 33 is displaceable along bar 31 through the sliding block 34 from a zero-position on the graduation of bar 31.
  • the tube 36 of the sliding block 35 is applied in such a way that the axis thereof is lying in the plane of the inner surface of the vertical wall 29 of the sliding block 27 when the guiding bar 33 is in said zero-position of the graduation of bar 31.
  • the zero-position of the graduation of bar 33 is applied in such a way that, when the sliding block 35 has been brought in this zero position, the axis of the tube 36 is lying in the cross section plane through the center of the sliding block 27.
  • the guiding bar 33 it is possible, when the sliding block is placed in one determined measured out position on flange 3, to mark out holes from this position by shifting the guider 33 with respect to the guider 31 and by shifting the block 35 along the guider 33.
  • the bars 33 and 31 have exactly the same dimensions so that the block 35 can also be applied directly on the guider 31, by which a device is obtained equal to the device of Fig. 1, such as indicated in the right part of Fig.2.
  • the carriage 16 and the sliding blocks 34 and 35 can be provided with locking devices to lock said components in a desired position. Further the carriage and the sliding blocks 34 and 35 can be provided at the side with which they cooperate with the graduations of the guiding bars, with a nonius, by which a very accurate positioning can be obtained.
  • marking out device can be carried out in various dimensions.
  • marking out device can be provided with electronic driving which can be controlled by means of a computer or not.
  • the sliding block can be provided with a permanent, non-permanent or electric magnet to maintain said sliding block in proper position on the workingpiece.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Length-Measuring Instruments Using Mechanical Means (AREA)
  • A Measuring Device Byusing Mechanical Method (AREA)

Abstract

Marking out device having a sliding block (5) for sliding along the outer edge of a workpiece (2) with a vertical wall (6) resting against the outer edge of the workpiece. A graduated horizontal guider (10) is secured with one end to the upper side of the sliding block and extends laterally therefrom. A holder (16) with a vertical through bore (23) for clamping a pin-shaped marking out member (25) is displaceable along said guider starting from a zero-position of the graduation in which position the axis of the bore lies in the plane of the inner surface of the vertical wall of the sliding block.

Description

DEVICE FOR MARKING OUT WORKPIECES
The invention relates to a device for marking out workpieces. Until now a usual method for marking out for example holes in for example I-beams is measuring out the planed location of the holes in the web of the I-beam by means of a measuring tape, folding rule or the like and marking out this location on a flange of the I-beam, marking out the lines on which the holes have to be applied by means of a block square and a drawing point and further determining the location of the four holes on these lines by means of a measuring tape or a folding rule and marking this location with a center point. This method often gives cause to inaccuracies. For example with in particular wide I-beams there are created deviations in that the block square is placed against or above round edges of the beam. With narrower I-beams the space, in which has to be worked, plays a part. If the block square has been placed In a proper way, there are still possible deviations in that the drawing point with which Is marked out is more or less tilted. With the measuring out and marking out holes by means of a folding rule also all kinds of deviations are possible, such as more or less tilting of the drawing point, -found edges of the I-beam, lack of space, for example because the folding rule is longer than the width of the web of the I-beam.
The invention has the object to provide a device for marking out workpieces with which the above disadvantages are eliminated and according to the Invention this object is attained in that the device comprises a sliding block provided with means for guiding thereof . along the outer edge of the work piece to be marked out and provided with a vertical wall adapted to rest against the outer edge of the working piece, a graduated horizontal bar-shaped guider being attached with one end to said sliding block at the upper side thereof and extending laterally therefrom, the device further comprising a holder for a pin-shaped marking out member, being displaceable longitudinally of the bar-shaped guider from a starting position near the sliding block, corresponding with the zero-position of the graduation, the holder being provided with a vertical through bore for receiving in a clamping way a stiff-shaped marking out member so that in the said starting position the axis of the bore is lying in the plane of the inner surface of the vertical wall of the sliding block.
When working with th device according to the invention the round edges of for example I-beam to be marked out does not give troubles because the sliding block is resting with its vertical wall against the outer edge of the work piece and thus the position of said sliding block is determined univocally. Because in the starting position the axis of the bore in which a drawing point can be received is coinciding with the inner surface of the vertical wall of the sliding block resting against the outer wall, the zero-position of the drawing point is determined univocally and the location to be measured out from that position of for example holes does not show deviations. 3ecause the drawing point always is held in a vertical position in the vertical bore of the holder no deviations can be created by tilting of the drawing point. The space within which has to be worked cannot play a part because the bar-shaped guider is extending along the upper side of the I—beam.
According to an embodiment of a device according to the invention the holder for the shift—shaped member, which can consist of a drawing point or a center point or a combination thereof is mounted to the guider which is secured to the sliding block. Thus the holder is displaced here along the bar-shaped guider. For marking out of for example holes the location of the holes in the web of the I-beam may be for example first measured longitudinally of the I-beam by means of a measuring tape after which the drawing point/center point will be placed in the measured location and the sliding block of the marking out device is placed on one of the flanges of the I-beam. The proper location of the hole can be measured out through the graduation of the bar-shaped guider and can be centered by means of the center point.
Another possibility for marking out of holes can be achieved when, in the starting position of the holder the axis of the vertical bore lies in the central cross sectional plane of the sliding block. For measuring out the location of the holes the length of the sliding block will be taken Into account. The distance where the holes have to be applied is increased or decreased with the half length of the sliding block which distance then is marked out on a flange of the I-beam and the sliding block is then placed with one of its ends on the marked out location.
An alternate embodiment of the device accordig to the invention can be obtained in that the holder of the pin-shaped member is attached to and is displaceable longitudinally of a second graduated horizontal bar-shaped guider, which guider is perpendicular to the first guider and extending at both sides thereof, said second guider being displaceable longitudinally of the first guider from a starting position, in which the axis of the vertical bore of the holder is lying in the plane of the inner surface of the vertical side wall of the sliding block. With this device it is possible to determine directly the distance in longitudinal direction of the I-beam through the second bar-shaped guider and to mark the location of the holes with the center point. An efficient embodiment is obtained in that the graduation of the second bar-shaped guider contains a zero position between the ends of this guider so that, if the holder is in this position the axis of the vertical bore thereof is lying in the cross sectional plane through the center of the sliding block. With this device the same working can be done as with the device in which the holder of the pin-shaped member is directly mounted to the bar-shaped guider which is secured to the sliding block, while moreover the distance longitudinally of the I-beam can be determined directly through the second bar-shaped guider. A very efficient embodiment of the device according to the invention is obtained in that the bar-shaped guider attached to the sliding block is articulating about a vertical shaft which is applied so that the axis thereof is coinciding with the axis of the vertical bore of the holder if the latter is in the zero position along the bar-shaped guider. With this device it is for example possible to cut-off angularly an a I-beam. Moreover it is possible to apply for example polygonal holes in the I-beam. In doing so it is preferred to use a protractor and according to the invention this can be attained in that the bar-shaped guider is secured to a plate which is secured to the upper side of the sliding block and which is provided with a protractor.
In the following the invention will be explained further with reference to the drawings which show by way of example some embodiments of the device according to the invention as well as some examples of the way in which can be worked with these devices.
Fig. 1 shows a perspective elevation of an embodiment according to the invention, placed on a I-beam to be marked out.
Fig. 2 shows a perspective elevation of an alternate embodiment of the device according to the invention placed on a I-beam to be marked out.
Fig. 3 shows in outline a top view of an I-beam in which are indicated holes to be applied in the beam and marked out with the device according to the Invention.
Fig.4 shows in outline a top view of a I-beam in which are indicated lines for cutting off the I-beam which are marked out with the device according to the invention. In Fig. 1 an I-beam 1 is shown with a web 2 and the flanges 3 and 4. On the flange 3 the sliding block of the device according to the invention is placed, which sliding block has a vertical wall 6 resting against the flange 3 and a flanged edge 7 lying upon the edge of the flange 3. Further the sliding block 5 is provided with an out- wardly projecting horizontal plate 8 provided with a protractor 9 with a graduation from 0° up to 180°. A bar-shaped guider 10 is secured to the upper side of the plate 9 which guider is provided with a graduation 11 in centimeters and millimeters. For securing the bar 10 to the plate 9 said bar 10 is provided at one end with an in- tegrated plate shaped portion 12, of which a portion of the circumference is half-circular which half-circular portion in the center thereof is provided with a recess 13 provided with a mark line 14 cooperating with the protractor 9. Plate 12 is secured to the plate 8 by a screw 15, the plate 12 may articulate about said screw if the screw is loosened. The articulating shaft is applied at such a way that the axis thereof is lying in the plane of the inner surface of the vertical wall 6, said axis also lying in the cross sectional plane of the block 5 extending through the center thereof. The bar- shaped guider 10 is provided with a carriage 16, which is mounted to three vertical shafts 17, 18 and 19, said shafts being provided at the lower end thereof with three rotatable guiding wheels, of which one, 20, is visible. The guiding wheels engage grooves applied at both sides of the guiding bar and extending longitudinal thereof, one of said grooves being visible and indicated with the reference number 21 in the drawings. The carriage 16 is provided at one side edge with a body 22 of resilient plastic material which body is provided with a vertical bore 23 in which bore is received a pin 25 provided with a hardened point 24, said pin can be a drawing point or a center point or a combination thereof. The inner diameter of the bore is such that the pin 25 is fitting in a clamping way therein. The vertical bore 23 has been applied in Such a way that in the position in which the side 26 of the carriage 16, cooperating with the graduation, is in the zero position of the graduation 11, the axis of the bore coincides with the axis of the screw 15 and thus of the articulating shaft of the guider.
In Fig. 3 is schematically shown in which way the marking out device shown in Fig. 1 can be used for marking out holes in a I-beam. In Fig. 3 a top view of the I-beam is shown. The point B-B indicates locations where holes in the web of the I-beam have to be applied. The desired distance 1 on the web of the I-beam is measured by means of a measuring tape and at this distance the point A is for example indicated. After measuring out of the point A the marking out device according to Fig. 1 is used for marking out and centering of the point B, B. For this purpose the bar 10 is locked by means of the screw 15 under an angle of 90° with respect to the block 5. The drawing point 25 is placed in the bore 23 and the point of this drawing point is placed in the point A after which the sliding block 5 is placed on the flange 3. By shifting the carriage 16 along the guiding bar a line passing through the point B,B is scratched, after which the carriage 16 is placed at the desired distance on the graduation of the bar and a center point is applied in the bore, which center point is driven home by means of the hammer 26 (Fig.1), after which the holder is shifted on the desired place along the guider to the other of said points B and the center point also is driven home at that point.
In Fig. 3 there are also indicated four points E,E,F,F, the istance between the points E,F being equal to the length of the liding block 5 of the device accrding to the invention. A length of requent employment is a length of 200 mm, corresponding with the measure of frequent occurrence of a sketching plate, to be connected to the I-beam of 200 x 200 mm. In Fig. 3 the dimension lines c and d are indicated on the edge of the flange 3. The distance c-d is the length (200 mm) of a block of the marking out device. For the marking out of point E—E the line c is marked out on the flange 3 at a distance from the left end of the I-beam corresponding to the distance of this end from the points E-E decreased with 100 mm, i.e. the half of the length of the block 5. The block 5 of the marking out device is then applied with its left end (seen in top view) against the line c, after which the points E can be marked out and centered accurately in the way as declared above. For marking out of the points F, F, lying at a distance equal to the length of block 5 the line d can be marked out on the flange 3 at the right end (in top view) of the block 5, after which the block 5 with its left end is shifted from a position at the line c until this end is lying against the line d, after which points F, F can be marked out accurately and can be centered in the way as indicated above.
In Fig. 4 a top view of an I-beam is diagrammically indicated, which view is interrupted in the middle thereof. In the left part is indicated the way in which the beam can be cut off rectangularly. For that purpose use is made of the marking out device according to Fig. 1 with the guiding bar placed under an angle of 90° with respect to the block 5. The location where the beam must be cut off is measured out across the web of the bean and the location measured out is indicated by point G. Pin 25 Is placed in point G after which the sliding block is placed against flange 3, after which the location where the beam must be cut off is scratched in the web by means of the carriage 16. It is also possible to place the block with one of its ends on the flange of the beam at measured out places H or I as indicated in the figure, which location H or I is the measured out distance plus or minus 100 mm, after which the desired line can be scratched in the way as indicated here above.
In the right part of Fig. 4 is indicated in which way an I-beam can be cut off angularly. For this purpose the screw 15 of the marking out device is loosened by means of a screw driver and the bar-shaped is guider adjusted to the number of required grades on the protractor 9. Thereafter the screw is firmly tightened. Thereafter the block can be placed with its end on one of the measured out points J, K, L or M and the desired line can be scratched with the drawing point. Points J,K,L or M for may also be obtained for example by transmiting a point N which already is marked out in the middle of the beam to the flanges and to mark out point L or II starting from that point, after which can be operated as indicated here above.
In Fig. 2 an alternate embodiment of the marking out device according to the invention is shown. The marking out device according to this embodiment comprises a sliding block 27 consisting of a half circular horizontal plate 28 at the bottom side of which a vertical plate 29 is mounted, resting against the flange 3. Plate 28 further rests on the edge of the flange 3. At the upper side plate 28 is provided with a protractor 30 of 0 to 180°. On plate 28 a graduated guiding bar 31 is attached, which guiding bar is articulating about the shaft 32. Further the device comprises a second guiding bar 33, also graduated, said bar 33 being secured perpendicularly with respect to bar 31 through a sliding block 34. A sliding block 35 is mounted on bar 33, which sliding block is provided with a vertical tube 36 in which a drawing point or center point 37 is received. The bar 33 is displaceable along bar 31 through the sliding block 34 from a zero-position on the graduation of bar 31. The tube 36 of the sliding block 35 is applied in such a way that the axis thereof is lying in the plane of the inner surface of the vertical wall 29 of the sliding block 27 when the guiding bar 33 is in said zero-position of the graduation of bar 31. Moreover the zero-position of the graduation of bar 33 is applied in such a way that, when the sliding block 35 has been brought in this zero position, the axis of the tube 36 is lying in the cross section plane through the center of the sliding block 27. By means of the guiding bar 33 it is possible, when the sliding block is placed in one determined measured out position on flange 3, to mark out holes from this position by shifting the guider 33 with respect to the guider 31 and by shifting the block 35 along the guider 33. The bars 33 and 31 have exactly the same dimensions so that the block 35 can also be applied directly on the guider 31, by which a device is obtained equal to the device of Fig. 1, such as indicated in the right part of Fig.2. The carriage 16 and the sliding blocks 34 and 35 can be provided with locking devices to lock said components in a desired position. Further the carriage and the sliding blocks 34 and 35 can be provided at the side with which they cooperate with the graduations of the guiding bars, with a nonius, by which a very accurate positioning can be obtained.
Further the marking out device can be carried out in various dimensions.
Further the marking out device can be provided with electronic driving which can be controlled by means of a computer or not.Further the sliding block can be provided with a permanent, non-permanent or electric magnet to maintain said sliding block in proper position on the workingpiece.

Claims

CLAIMS .
1. Device for marking out work pieces, characterized in that the device comprises a sliding block provided with means for guiding thereof along the outer edge of the work piece to be marked out and provided with a vertical wall adapted torest against the outer edge of the workpiece, a graduated horizontal bar shaped guider being secured with one end to the sliding block at the upper side thereof extending laterally therefrom, the device further comprising a holder for a pin-shaped marking out member which is displaceable longitud- inally of the bar-shaped guider from a starting position near the sliding block, corresponding to the zero-position of the graduation, the holder being provided with a vertical through bore for receiving in a clamping way of a pin-shaped marking out member so that in said starting position the axis of the bore is lying in the plane of the inner surface of the vertical wall of the sliding block.
2. Device according to claim 1, characterized in that the holder of the pin-shaped organ is applied directly to the bar-shaped guider which is mounted to the sliding block..
3. Device according to claim 1, characterized in that in the starting position of the holder the axis of the vertical bore is lying in the cross section plane through the center of the sliding block.
4. Device according to claim 1 characterized in that the holder for the pin-shaped member is mounted to a second graduated horizontal bar-shaped guider and is displaceable in longitudinal direction, said second bar-shaped guider being applied perpendicular to the first guider and being extending at both sides thereof, said second guider being displaceable in longitudinal direction of the first guider from a starting position, in which position the axis of the vertical bore of the holder is lying in the plane of the inner surface of the vertical side wall of the sliding block.
5. Device according to claim 4, characterized in that the graduation of the second bar-shaped guider comprises a zero-position between the end of this guider in such a way that, when the holder is in this position, the axis of the vertical bore thereof is lying in the cross section plane through the center of the slidingh block.
6. Device according to one of the preceding claims, characterized in that the bar-shaped guider mounted to the sliding block is articulating about a vertical shaft in such a way that the axis of the shaft is coinciding with the axis of the vertical bore of the holder if the latter is in the zero-position along the bar-shaped guider.
7. Device according to claim 6, characterized in that the barshaped guider is mounted to a plate which is secured at the upper side of the sliding block, which plate is provided with a protractor.
8. Device according to one of the preceding claims, characterized in that the holder for the pin-shaped member consists of a carriage which is displaceable along the upper side of the bar shaped guider, said carriage being provided with a part projecting beyond the bar-shaped guider of a vertical bore, of which at least the Inner walls consist of elastic material and of which the inner diameter is somewhat smaller than the diameter of the pin-shaped marking out member to be received therein.
9. Device according to claim 8 chartacterized in that the vertical bore is applied in a body of elastic plastic material secured to a side of the carriage.
10. Device according to one of the preceding claims, characterized in that the holder of the pin-shaped marking out element is mounted to vertical shafts extending at both sides of the holder, said shafts being provided at the lower end with free rotatable horizontal guiding wheels engaging longitudinal grooves in the side edges of the bar-shaped guider.
11. Device according to one of the preceding claims, characterized in that the side of the holder of the pin-shaped element which is facing the sliding block, is provided with a nonius cooperating with the graduation of the bar-shaped guider.
PCT/NL1982/000019 1981-06-02 1982-06-02 Device for marking out workpieces WO1982004217A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
AT82901794T ATE15778T1 (en) 1981-06-02 1982-06-02 DEVICE FOR MARKING WORKPIECES.
DE8282901794T DE3266509D1 (en) 1981-06-02 1982-06-02 Device for marking out workpieces

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL8102674810602 1981-06-02
NL8102674A NL8102674A (en) 1981-06-02 1981-06-02 Device for writing off a workpiece.

Publications (1)

Publication Number Publication Date
WO1982004217A1 true WO1982004217A1 (en) 1982-12-09

Family

ID=19837595

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/NL1982/000019 WO1982004217A1 (en) 1981-06-02 1982-06-02 Device for marking out workpieces

Country Status (5)

Country Link
US (1) US4531296A (en)
EP (1) EP0079929B1 (en)
DE (1) DE3266509D1 (en)
NL (1) NL8102674A (en)
WO (1) WO1982004217A1 (en)

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GB2210458A (en) * 1987-09-30 1989-06-07 Ballaconley Engineering Limite Tariffing device
GB2305883A (en) * 1995-10-09 1997-04-23 Phillip Francis Lacey Marking tool
CN106272321A (en) * 2016-08-31 2017-01-04 中船黄埔文冲船舶有限公司 Setting-out frock, line-plotting device and line drawing method

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FI904746A (en) * 1990-09-27 1992-03-28 Kaarlo Valo Hirvijaervi FOERFARANDE FOER ATT FOERSE MAETDON MED MAERKNINGSANORDNING OCH MAERKNINGSANORDNING.
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FR2809807A1 (en) * 2000-06-05 2001-12-07 Luc Pezet Reading cursor for instruments measuring length, comprises a rail with cover which is glued to the instrument body and houses a cursor which is turned by a right angle across the scale at one end
US20020157269A1 (en) * 2001-04-26 2002-10-31 Caudle James T. Measuring instrument
US7818888B2 (en) * 2007-11-27 2010-10-26 Toolbro Innovators Llc Tracer
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US8997364B2 (en) * 2012-03-29 2015-04-07 H. L. Fuller Tool Design, LLC Marking saw guide
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GB2210458A (en) * 1987-09-30 1989-06-07 Ballaconley Engineering Limite Tariffing device
GB2210458B (en) * 1987-09-30 1991-05-29 Ballaconley Engineering Limite Tariffing device
GB2305883A (en) * 1995-10-09 1997-04-23 Phillip Francis Lacey Marking tool
GB2305883B (en) * 1995-10-09 2000-03-29 Phillip Francis Lacey Marking tools
CN106272321A (en) * 2016-08-31 2017-01-04 中船黄埔文冲船舶有限公司 Setting-out frock, line-plotting device and line drawing method

Also Published As

Publication number Publication date
EP0079929B1 (en) 1985-09-25
EP0079929A1 (en) 1983-06-01
DE3266509D1 (en) 1985-10-31
US4531296A (en) 1985-07-30
NL8102674A (en) 1983-01-03

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