EP0935574A1 - A method and an apparatus for regulating the width between two support railings along a curved conveyor - Google Patents

A method and an apparatus for regulating the width between two support railings along a curved conveyor

Info

Publication number
EP0935574A1
EP0935574A1 EP97911552A EP97911552A EP0935574A1 EP 0935574 A1 EP0935574 A1 EP 0935574A1 EP 97911552 A EP97911552 A EP 97911552A EP 97911552 A EP97911552 A EP 97911552A EP 0935574 A1 EP0935574 A1 EP 0935574A1
Authority
EP
European Patent Office
Prior art keywords
support
locking
plate
railings
railing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP97911552A
Other languages
German (de)
French (fr)
Inventor
Kent Hammar
Anders Jansson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tetra Laval Holdings and Finance SA
Original Assignee
Tetra Laval Holdings and Finance SA
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 Tetra Laval Holdings and Finance SA filed Critical Tetra Laval Holdings and Finance SA
Publication of EP0935574A1 publication Critical patent/EP0935574A1/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G21/00Supporting or protective framework or housings for endless load-carriers or traction elements of belt or chain conveyors
    • B65G21/20Means incorporated in, or attached to, framework or housings for guiding load-carriers, traction elements or loads supported on moving surfaces
    • B65G21/2045Mechanical means for guiding or retaining the load on the load-carrying surface
    • B65G21/2063Mechanical means for guiding or retaining the load on the load-carrying surface comprising elements not movable in the direction of load-transport
    • B65G21/2072Laterial guidance means

Definitions

  • the present invention relates to a method of regulating the width between two support railings along a curved conveyor path.
  • the present invention also relates to an apparatus for reducing the method into practice.
  • conveyors or systems of conveyors In almost all manufacture of various types of products, it is desirable to move the product to a site for packaging or for further processing.
  • the commonest method of moving products is to employ conveyors or systems of conveyors. These conveyors normally feature support railings along both sides and throughout their entire length, in order to give effective support to the product which is being carried on the conveyor, so that the product does not topple over during transport. Curved sections of the conveyor are also surrounded on both sides by support railings.
  • Conveyors are employed in such a manner also for packages of the single-use disposable type for liquid foods, and these packages, after filling and sealing in a filling machine, are on occasion to be transported to different ancillary machines, which, for example, provide them with a drinking straw or combine them into transport units.
  • the packages often are parallelepipedic in shape and they may be relatively tall in relation to their bottom surface area, for which reason they must be supported throughout their entire journey along a conveyor. Packages which topple over can cause operational down-time, and may also involve damage to the packages. Above all at the curved sections of a conveyor (which may vary from 45° to 180°) it is necessary to provide efficient support.
  • the conveyors are normally designed to correspond to a filling machine as a fixed installation, where the support railings are welded in place and no adjustment or regulation of them is possible.
  • a need has also arisen in the art to be able to regulate or adjust the width between two support railings along the conveyors which are employed in connection with such a filling machine, so that the railings constitute an efficient support, irrespective of the volume of the package. It must be possible to adjust or regulate the width between two support railings relatively rapidly and the time consumed should not exceed the time it takes to switch the filling machine from one desired volume to another.
  • One object of the present invention is to realise a method of regulating the width between two support railings along a curved conveyor path, which may be put into effect rapidly and without the need for tools.
  • the method according to the present invention must also be capable of compensating for the differences in distance which occur in both the outer and the inner support railing, when the width between the support railings is changed.
  • the method of the type described by way of introduction has been given the characterizing features that the outer support railing is flexible and that, on adjustment or regulation of the width, it is removed from adjacent connected straight railings by a locking device and is pulled outwards or alternatively pushed inwards to the desired position, where it is once again locked, and that the inner support railing consists of a plate curved along the conveyor path, the plate being capable, by means of a locking screw, of being released and displaced forwards or backwards, and that the support railing plate may be regulated to the desired width by means of wings which are secured to the plate and which are released by means of at least one locking screw.
  • Preferred embodiments of the present invention have further been given the characterizing features as set forth in the appended subclaims.
  • FIG. 1 is a plan view of the apparatus for a 180° curve in its widest position between the support railings;
  • Fig. 2 is a side elevation of the apparatus of Fig. 1;
  • Fig. 3 is another side elevation of the apparatus of Fig. 1;
  • Fig. 4 is a plan view of the apparatus for a 180° curve in its narrowest position between the support railings;
  • Fig. 5 is a side elevation of the apparatus of Fig.4;
  • Fig. 6 is another side elevation of the apparatus of Fig. 4;
  • Fig. 7 is a plan view of the apparatus for a 90° curve in its widest position between the support railings
  • Fig. 8 is a plan view of the apparatus for a 90° curve in its narrowest position between the support railings
  • Fig. 9 is a plan view of the apparatus for a 45° curve in its widest position between the support railings;
  • Fig. 10 is a plan view of the apparatus for a 45° curve in its narrowest position between the support railings.
  • Fig. 11 is a side elevation of a part of a locking device.
  • Figs. 1-6 show an apparatus according to the present invention for a 180° curve.
  • the apparatus comprises an outer support railing 1 which is flexible so that it may be bent along the curved section of a conveyor path.
  • the outer support railing 1 is a direct continuation of the support railings 3 which are disposed along the straight sections 4 of the conveyor path. These support railings 3 along the straight sections 4 of the conveyor are often manufactured from some plastic material with cast profiles in aluminium to give more permanent stability.
  • the outer, flexible support railing 1 has no such aluminium profiles and is, therefore, flexible.
  • the outer support railing 1 is secured in a locking device 5, in which locking device 5 the straight support railings 3 are also secured, but the two parts of the support railing 1, 3 are discrete and separate from one another.
  • a locking device 5 is placed at each end of the curved conveyor section 2, i.e. the curve proper, so that the curved portion of the outer railing 1 is wholly separate from the straight sections of the support railing 3 on both sides of the curve.
  • the locking device 5 consists of a unifying plate 6 with a locking screw which is provided with a wheel 7.
  • a locking member 8 is disposed at each end of the plate 6.
  • a locking member (which is shown in detail in Fig. 11) consists of a first locking portion 9 which, with a common shaft 10, is interconnected with a second locking portion 11. On the upper side of the first locking portion 9, there is provided a raised portion 12. The underside of the second locking portion 11 is formed as a curve so that, at two points, it has a lowest position 13 and, at two points, a highest position 14. In the left-hand section of Fig. 11, the second locking portion 11 is shown with its highest position 14 in register with the raised portion 12 on the first locking portion 9. This implies that the two locking portions 9, 11 are open in relation to one another. In the right- hand section of Fig. 11, the second locking portion 11 is shown with its lowest position 13 in register with the raised portion 12 on the first locking portion 9, and it will be apparent that the two locking portions 9, 11 are thus locked to one another in this position.
  • the underside of the first locking portion 9 displays serrations, with crests 15 and troughs 16.
  • the underside of the first locking portion 9 is turned to face towards a counter portion 17 which, on its upper side, displays corresponding serrations with crests 15 and troughs 16 as displayed by the underside of the first locking portion 9.
  • the first locking portion 9 and the counter portion 17 are disposed to enter into engagement with one another so that one crest 15 of the serrations on a portion 9 or 17 is located in register with a trough 16 of the serrations on the other portion 9 or 17.
  • the first locking portion 9 is also designed such that it constitutes a part of a bracket 18 for the support railings 1, 3.
  • Figs. 1 and 2 show a further locking member 8 placed centrally on the curved surface of the outer support railing 1.
  • the locking member 8 may be needed to bolster up the outer support railing 1 which is flexible and which, particularly in a 180° curve, may give way if a queue pressure were to occur in the curve, because of the tail-back of a large number of packages in the curve. This situation may arise in the event of sudden stoppage further downstream on the conveyor path 2, 4.
  • the inner support railing of the apparatus consists of a support plate 19 which has a rounded end 20 facing towards the curve, such that the rounded end 20 follows the curved section 2 of the conveyor path.
  • the support plate 19 consists, int. al. of an upper plate 21. Beneath the upper plate 21, there are disposed movable wings 22.
  • the wings 22 are preferably two in number and may thus at most have a geometric extent which corresponds to half of the surface of the upper plate 21.
  • the wings 22 are each journalled with a pin 23 in a groove 24.
  • the wings 22 are released by means of at least one locking screw which is provided with a wheel 25.
  • the wings 22 may be displaced steplessly along the groove 24 and may thereafter once again be locked in the desired position.
  • the wings 22 are provided with a heel 26.
  • the heel 26 has its counterpart in a similar heel 28 on the lower region 27 of the support plate 19.
  • the wings 22 When the heels 26, 28 engage with one another, the wings 22 have reached their one end position. In the other end position, the two wings 22 are wholly retracted under the upper plate 21 of the support plate 19.
  • the support plate 19 is also disposed to reciprocate back and forth towards the centre point of the curved conveyor section 2.
  • a slot 29 is provided right through the support plate 19.
  • the support plate 19 has a through-going surface 30 which is serrated such that the surface 30 has crests 31 and troughs 32.
  • the serration is parallel with the direction of movement of the support plate 19.
  • the serrated surface 30 is turned to face towards a similarly serrated surface 33 on a bracket 34.
  • the bracket 34 is secured in the frame 35 of the conveyor 2.
  • the screw 36 has a wheel 37 so as readily to be able to displace the surfaces towards one another.
  • the support plate is displaced along a horizontal slot 38.
  • the support plate 19 may also be displaced along a vertical slot 39.
  • This displacement makes for a displacement of the support plate 19 in the vertical plane. This displacement is used when the intention is to adapt the free height beneath the support plate 19 so that any packages which may have toppled over and are being advanced on the conveyor 2, 4 will be able to pass under the support plate 19, irrespective of the size of the package.
  • Figs. 7 and 8 show a corresponding support plate 19 for a curve of 90°, and Figs. 9 and 10 for a curve of 45°.
  • the wings 22 of the support plate 19 here each have a locking screw with a wheel 25, since both of the wings 22 are placed relatively far from one another, for which reason a common locking screw would entail more complex mechanical linkages for a common locking screw.
  • Figs. 1-3 show the apparatus for a 180° curve in its one outer position where the distance between the outer support railing 1 and the support plate 19 is at its greatest. These Drawings also show the outer position where the support plate 19 is located highest up in its displacement in the vertical plane and the distance between the lower region 27 of the support plate 19 and the conveyor 2 is at its greatest.
  • Figs. 4-6 show the apparatus for a 180° curve in its other outer position, where the distance between the outer support railing 1 and the support plate 19 is at its least, the support plate 19 having its wings 22 protracted to their outer position.
  • These Drawings also show the second outer position of displacement of the support plate 19 in the vertical direction and the distance between the lower region 27 of the support plate 19 and the conveyor 2 is at is least.
  • the adjustment or regulation of the distance between two support railings along a curved conveyor 2, i.e. between the outer support railing 1 and the support plate 19, may be put into effect rapidly and entirely without the need for tools.
  • an appropriate method is to use as dimensional gauge a package of the volume and size for which the curved conveyor section 2 is to be adapted.
  • the outer support railings 1 are regulated or adjusted to the desired position by the wheel 7 on the locking device 5 being turned so that the locking screw is backed-off and the locking members 8 involved are opened.
  • the locking members 8 are opened in that the second locking portion 11 is turned to its open position.
  • the second locking portion 11 may be provided with some form of gripping device 40, such as a lug or a lever.
  • the gripping device 40 is turned through a quarter of a revolution and the first locking portion 9 is thereby released from the counter portion 17.
  • the first locking portion 9 with its bracket for the support railing 1 can now be displaced along the counter portion 17.
  • the counter portion 17 may be provided with suitable calibration 41, as illustrated in Fig. 11.
  • the wheel 7 is once again turned, locking the locking screw. All gripping devices 40 on the relevant locking members 8 are reversed through a quarter of a revolution and the outer support railing is now fixed in its new position.
  • the wheel 37 is turned so that the locking screw 36 is opened and so that the support plate 19, on the one hand, may be moved horizontally along the slot 38 and, on the other hand, vertically along the slot 39.
  • the support plate 19 has assumed its desired position, it is locked in this position by means of the wheel 37.
  • the wheel or wheels 25 which lock the wings 22 by means of locking screws are rotated.
  • the present invention realises a method and an apparatus for regulating or adjusting the width between two support railings 1, 19 along a curved conveyor section 2 in a simple and rapid manner and without the need of tools.
  • the present invention also compensates for the differences in distance which are obtained when the width between the two support railings 1, 19 along curves and curved conveyor sections 2 is changed.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Escalators And Moving Walkways (AREA)
  • Framework For Endless Conveyors (AREA)
  • Chain Conveyers (AREA)

Abstract

The invention relates to a method and an apparatus for regulating the width between two support railings (1, 19) along a curved conveyor path (2). The outer support railing (1) is flexible and, on adjustment or regulation, is released from connecting straight support railings (3) in that a locking device (5) is opened and the outer support railing may now be pulled outwards or alternatively pushed inwards to the desired position where it is locked in place by means of the locking device (5). The inner support railing (19) consists of a support plate (19) with an end (20) curved along the curved conveyor section (2). The support plate (19) may be reciprocated towards the centre of the conveyor section (2) and its width may be regulated with the aid of wings (22) secured beneath the plate (19). The position of the support railings (1, 19) may be regulated rapidly and entirely without the use of tools .

Description

A METHOD AND AN APPARATUS FOR REGULATING THE WIDTH BETWEEN TWO SUPPORT RAILINGS ALONG A CURVED CONVEYOR
TECHNICAL FIELD
The present invention relates to a method of regulating the width between two support railings along a curved conveyor path. The present invention also relates to an apparatus for reducing the method into practice.
BACKGROUND ART
In almost all manufacture of various types of products, it is desirable to move the product to a site for packaging or for further processing. The commonest method of moving products is to employ conveyors or systems of conveyors. These conveyors normally feature support railings along both sides and throughout their entire length, in order to give effective support to the product which is being carried on the conveyor, so that the product does not topple over during transport. Curved sections of the conveyor are also surrounded on both sides by support railings.
Conveyors are employed in such a manner also for packages of the single-use disposable type for liquid foods, and these packages, after filling and sealing in a filling machine, are on occasion to be transported to different ancillary machines, which, for example, provide them with a drinking straw or combine them into transport units. The packages often are parallelepipedic in shape and they may be relatively tall in relation to their bottom surface area, for which reason they must be supported throughout their entire journey along a conveyor. Packages which topple over can cause operational down-time, and may also involve damage to the packages. Above all at the curved sections of a conveyor (which may vary from 45° to 180°) it is necessary to provide efficient support. The conveyors are normally designed to correspond to a filling machine as a fixed installation, where the support railings are welded in place and no adjustment or regulation of them is possible. With growing interest in the market for filling machines which are switchable for the manufacture of packages of different volumes, a need has also arisen in the art to be able to regulate or adjust the width between two support railings along the conveyors which are employed in connection with such a filling machine, so that the railings constitute an efficient support, irrespective of the volume of the package. It must be possible to adjust or regulate the width between two support railings relatively rapidly and the time consumed should not exceed the time it takes to switch the filling machine from one desired volume to another.
It is described in the patent literature how to regulate the width of a straight conveyor, but these solutions entail that tools must be used and these methods are relatively circumstantial. Regulating the width between the support railings of a curved section of a conveyor presents further problems since there are then differences in the distance covered, for both the outer support railing and the inner support railing in a curve.
OBJECTS OF THE INVENTION
One object of the present invention is to realise a method of regulating the width between two support railings along a curved conveyor path, which may be put into effect rapidly and without the need for tools. The method according to the present invention must also be capable of compensating for the differences in distance which occur in both the outer and the inner support railing, when the width between the support railings is changed.
SOLUTION
These and other objects have been attained according to the present invention in that the method of the type described by way of introduction has been given the characterizing features that the outer support railing is flexible and that, on adjustment or regulation of the width, it is removed from adjacent connected straight railings by a locking device and is pulled outwards or alternatively pushed inwards to the desired position, where it is once again locked, and that the inner support railing consists of a plate curved along the conveyor path, the plate being capable, by means of a locking screw, of being released and displaced forwards or backwards, and that the support railing plate may be regulated to the desired width by means of wings which are secured to the plate and which are released by means of at least one locking screw. Preferred embodiments of the present invention have further been given the characterizing features as set forth in the appended subclaims. BRIEF DESCRIPTION OF THE ACCOMPANYING DRAWINGS
Preferred embodiments of the present invention will now be described in greater detail hereinbelow, with reference to the accompanying Drawings, in which: Fig. 1 is a plan view of the apparatus for a 180° curve in its widest position between the support railings;
Fig. 2 is a side elevation of the apparatus of Fig. 1;
Fig. 3 is another side elevation of the apparatus of Fig. 1;
Fig. 4 is a plan view of the apparatus for a 180° curve in its narrowest position between the support railings;
Fig. 5 is a side elevation of the apparatus of Fig.4;
Fig. 6 is another side elevation of the apparatus of Fig. 4;
Fig. 7 is a plan view of the apparatus for a 90° curve in its widest position between the support railings; Fig. 8 is a plan view of the apparatus for a 90° curve in its narrowest position between the support railings;
Fig. 9 is a plan view of the apparatus for a 45° curve in its widest position between the support railings;
Fig. 10 is a plan view of the apparatus for a 45° curve in its narrowest position between the support railings; and
Fig. 11 is a side elevation of a part of a locking device.
DESCRIPTION OF PREFERRED EMBODIMENTS
Figs. 1-6 show an apparatus according to the present invention for a 180° curve. The apparatus comprises an outer support railing 1 which is flexible so that it may be bent along the curved section of a conveyor path.
The outer support railing 1 is a direct continuation of the support railings 3 which are disposed along the straight sections 4 of the conveyor path. These support railings 3 along the straight sections 4 of the conveyor are often manufactured from some plastic material with cast profiles in aluminium to give more permanent stability. The outer, flexible support railing 1 has no such aluminium profiles and is, therefore, flexible.
The outer support railing 1 is secured in a locking device 5, in which locking device 5 the straight support railings 3 are also secured, but the two parts of the support railing 1, 3 are discrete and separate from one another. A locking device 5 is placed at each end of the curved conveyor section 2, i.e. the curve proper, so that the curved portion of the outer railing 1 is wholly separate from the straight sections of the support railing 3 on both sides of the curve. The locking device 5 consists of a unifying plate 6 with a locking screw which is provided with a wheel 7. A locking member 8 is disposed at each end of the plate 6.
A locking member (which is shown in detail in Fig. 11) consists of a first locking portion 9 which, with a common shaft 10, is interconnected with a second locking portion 11. On the upper side of the first locking portion 9, there is provided a raised portion 12. The underside of the second locking portion 11 is formed as a curve so that, at two points, it has a lowest position 13 and, at two points, a highest position 14. In the left-hand section of Fig. 11, the second locking portion 11 is shown with its highest position 14 in register with the raised portion 12 on the first locking portion 9. This implies that the two locking portions 9, 11 are open in relation to one another. In the right- hand section of Fig. 11, the second locking portion 11 is shown with its lowest position 13 in register with the raised portion 12 on the first locking portion 9, and it will be apparent that the two locking portions 9, 11 are thus locked to one another in this position.
The underside of the first locking portion 9 displays serrations, with crests 15 and troughs 16. The underside of the first locking portion 9 is turned to face towards a counter portion 17 which, on its upper side, displays corresponding serrations with crests 15 and troughs 16 as displayed by the underside of the first locking portion 9. The first locking portion 9 and the counter portion 17 are disposed to enter into engagement with one another so that one crest 15 of the serrations on a portion 9 or 17 is located in register with a trough 16 of the serrations on the other portion 9 or 17.
In the preferred embodiment, the first locking portion 9 is also designed such that it constitutes a part of a bracket 18 for the support railings 1, 3. Figs. 1 and 2 show a further locking member 8 placed centrally on the curved surface of the outer support railing 1. The locking member 8 may be needed to bolster up the outer support railing 1 which is flexible and which, particularly in a 180° curve, may give way if a queue pressure were to occur in the curve, because of the tail-back of a large number of packages in the curve. This situation may arise in the event of sudden stoppage further downstream on the conveyor path 2, 4. The inner support railing of the apparatus consists of a support plate 19 which has a rounded end 20 facing towards the curve, such that the rounded end 20 follows the curved section 2 of the conveyor path. The support plate 19 consists, int. al. of an upper plate 21. Beneath the upper plate 21, there are disposed movable wings 22. The wings 22 are preferably two in number and may thus at most have a geometric extent which corresponds to half of the surface of the upper plate 21. The wings 22 are each journalled with a pin 23 in a groove 24. The wings 22 are released by means of at least one locking screw which is provided with a wheel 25. The wings 22 may be displaced steplessly along the groove 24 and may thereafter once again be locked in the desired position. In their inner region, the wings 22 are provided with a heel 26. The heel 26 has its counterpart in a similar heel 28 on the lower region 27 of the support plate 19. When the heels 26, 28 engage with one another, the wings 22 have reached their one end position. In the other end position, the two wings 22 are wholly retracted under the upper plate 21 of the support plate 19.
The support plate 19 is also disposed to reciprocate back and forth towards the centre point of the curved conveyor section 2. In order to make this displacement possible, a slot 29 is provided right through the support plate 19. In the slot 29, the support plate 19 has a through-going surface 30 which is serrated such that the surface 30 has crests 31 and troughs 32. The serration is parallel with the direction of movement of the support plate 19. The serrated surface 30 is turned to face towards a similarly serrated surface 33 on a bracket 34. The bracket 34 is secured in the frame 35 of the conveyor 2. Thus, the two surfaces 30 and 33 engage in form-locked fashion in one another and they are locked to one another by means of a screw 36. The screw 36 has a wheel 37 so as readily to be able to displace the surfaces towards one another. The support plate is displaced along a horizontal slot 38. The support plate 19 may also be displaced along a vertical slot 39.
This displacement makes for a displacement of the support plate 19 in the vertical plane. This displacement is used when the intention is to adapt the free height beneath the support plate 19 so that any packages which may have toppled over and are being advanced on the conveyor 2, 4 will be able to pass under the support plate 19, irrespective of the size of the package.
Figs. 7 and 8 show a corresponding support plate 19 for a curve of 90°, and Figs. 9 and 10 for a curve of 45°. The wings 22 of the support plate 19 here each have a locking screw with a wheel 25, since both of the wings 22 are placed relatively far from one another, for which reason a common locking screw would entail more complex mechanical linkages for a common locking screw.
Figs. 1-3 show the apparatus for a 180° curve in its one outer position where the distance between the outer support railing 1 and the support plate 19 is at its greatest. These Drawings also show the outer position where the support plate 19 is located highest up in its displacement in the vertical plane and the distance between the lower region 27 of the support plate 19 and the conveyor 2 is at its greatest.
Figs. 4-6 show the apparatus for a 180° curve in its other outer position, where the distance between the outer support railing 1 and the support plate 19 is at its least, the support plate 19 having its wings 22 protracted to their outer position. These Drawings also show the second outer position of displacement of the support plate 19 in the vertical direction and the distance between the lower region 27 of the support plate 19 and the conveyor 2 is at is least.
The adjustment or regulation of the distance between two support railings along a curved conveyor 2, i.e. between the outer support railing 1 and the support plate 19, may be put into effect rapidly and entirely without the need for tools. In order to obtain the correct width, an appropriate method is to use as dimensional gauge a package of the volume and size for which the curved conveyor section 2 is to be adapted. The outer support railings 1 are regulated or adjusted to the desired position by the wheel 7 on the locking device 5 being turned so that the locking screw is backed-off and the locking members 8 involved are opened. The locking members 8 are opened in that the second locking portion 11 is turned to its open position. In order to facilitate this turning operation, the second locking portion 11 may be provided with some form of gripping device 40, such as a lug or a lever. The gripping device 40 is turned through a quarter of a revolution and the first locking portion 9 is thereby released from the counter portion 17. The first locking portion 9 with its bracket for the support railing 1 can now be displaced along the counter portion 17. In order to facilitate obtaining uniform displacement on all locking members 8 in the installation, the counter portion 17 may be provided with suitable calibration 41, as illustrated in Fig. 11. By the wheel 7 having been turned so that the locking screw is open, the flexible, outer support railing 1 can now be pulled outwards or alternatively pushed inwards in relation to the conveyor section 2. Once the outer support railing 1 has been placed in the desired position, the wheel 7 is once again turned, locking the locking screw. All gripping devices 40 on the relevant locking members 8 are reversed through a quarter of a revolution and the outer support railing is now fixed in its new position. In order to adjust or regulate the inner support plate 19, the wheel 37 is turned so that the locking screw 36 is opened and so that the support plate 19, on the one hand, may be moved horizontally along the slot 38 and, on the other hand, vertically along the slot 39. When the support plate 19 has assumed its desired position, it is locked in this position by means of the wheel 37. In order to give the support plate 19 the desired width, the wheel or wheels 25 which lock the wings 22 by means of locking screws are rotated. The wings 22 are moved along their grooves 24 until the support plate 19 is of the desired width and are locked in their new position by means of the wheel 25. As will have been apparent from the foregoing description, the present invention realises a method and an apparatus for regulating or adjusting the width between two support railings 1, 19 along a curved conveyor section 2 in a simple and rapid manner and without the need of tools. The present invention also compensates for the differences in distance which are obtained when the width between the two support railings 1, 19 along curves and curved conveyor sections 2 is changed.
The present invention should not be considered as restricted to that described above and shown on the Drawings, many modifications being conceivable without departing from the scope of the appended Claims.

Claims

WHAT IS CLAIMED IS:
1. A method of regulating the width between two support railings (1, 19) along a curved conveyor path (2), characterized in that the outer support railing (1) is flexible and that, on adjustment or regulation, it is released from connecting straight railings (3) by means of a locking device (5) and is pulled outwards, or alternatively pushed inwards to the desired position where it is once again locked, and that the inner support railing consists of a plate (19) which is curved along the conveyor path (2) and which, by means of a locking screw (36) may be released and displaced back or forth, and that the support railing plate (19) may be adjusted or regulated to the desired width by means of wings (22) secured at the plate (19) and released by means of at least one locking screw.
2. An apparatus for regulating the width between two support railings (1, 19) along a curved conveyor path (2), characterized in that the apparatus includes locking devices (5) placed one on either side of the curved conveyor section (2) and in which an outer, flexible support railing (1) and connecting straight support railings (3) are secured, and an inner support railing which consists of a support plate (19) disposed to be moved back or forth in relation to the centre point of the curve; and that the support plate (19) is provided with wings (22) disposed to regulate the width of the support plate (19).
3. The apparatus as claimed in Claim 2, characterized in that the locking device (5) includes a plate (6) in which the support railings (1, 3) are secured; and that the plate (6) is surrounded on either side by a locking member (8).
4. The apparatus as claimed in Claim 3, characterized in that the locking member (8) includes a first locking portion (9) which engages in a counter portion (17), is disposed to be opened or locked in relation to the counter portion (17) by means of a second locking portion (11).
5. The apparatus as claimed in Claim 4, characterized in that the first locking portion (9) displays a raised portion (12) on its upper surface; and that the second locking portion (11) has a curved underside with a lowest position (13) and a highest position (14) which are disposed such that, when the highest position (14) is located in register with the raised portion (12), the locking member (8) is open, and when the lowest position (13) is located in register with the raised portion (12), the locking member (8) is locked.
6. The apparatus as claimed in Claim 2, characterized in that the wings (22) are each provided with a pin (23); and that the wings (22) are disposed to move such that the pin (23) follows a groove (24).
7. The apparatus as claimed in Claim 2, characterized in that the support plate (19) has a through-going slot (29) in which is placed a serrated surface (30) which engages in form-locked fashion with a serrated surface (33) on a bracket (34); and that the support plate (19) is disposed to be reciprocated in a slot (38) provided in the surfaces (30, 33).
EP97911552A 1996-10-29 1997-10-28 A method and an apparatus for regulating the width between two support railings along a curved conveyor Withdrawn EP0935574A1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
SE9603945 1996-10-29
SE9603945A SE507540C2 (en) 1996-10-29 1996-10-29 Method and apparatus for regulating the width between two support rails along a curved transport path
PCT/SE1997/001792 WO1998018698A1 (en) 1996-10-29 1997-10-28 A method and an apparatus for regulating the width between two support railings along a curved conveyor

Publications (1)

Publication Number Publication Date
EP0935574A1 true EP0935574A1 (en) 1999-08-18

Family

ID=20404407

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97911552A Withdrawn EP0935574A1 (en) 1996-10-29 1997-10-28 A method and an apparatus for regulating the width between two support railings along a curved conveyor

Country Status (9)

Country Link
EP (1) EP0935574A1 (en)
CN (1) CN1097006C (en)
AU (1) AU4889297A (en)
BR (1) BR9712396A (en)
HU (1) HUP9904673A3 (en)
PL (1) PL184266B1 (en)
RU (1) RU2191733C2 (en)
SE (1) SE507540C2 (en)
WO (1) WO1998018698A1 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SE517189C2 (en) 2000-01-21 2002-05-07 Tetra Laval Holdings & Finance Support rail for a curved transport path
DE102004056858A1 (en) * 2004-11-25 2006-06-01 Krones Ag Conveyor

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3581877A (en) * 1969-04-03 1971-06-01 Nathaniel D Goldberg Conveyor guide structure
FR2631006B1 (en) * 1988-05-06 1993-02-12 Gross Maurice GUIDE RAIL FOR CONVEYOR CHAIN AND MANUFACTURING METHOD THEREOF
US4932517A (en) * 1989-03-17 1990-06-12 Pobco Inc. Guide rail system
DE4330702A1 (en) * 1993-09-10 1995-03-16 Khs Masch & Anlagenbau Ag Adjustable railing support and conveying stage with an adjustable railing

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO9818698A1 *

Also Published As

Publication number Publication date
HUP9904673A2 (en) 2000-05-28
AU4889297A (en) 1998-05-22
SE9603945L (en) 1998-04-30
PL333015A1 (en) 1999-11-08
SE9603945D0 (en) 1996-10-29
CN1241980A (en) 2000-01-19
HUP9904673A3 (en) 2001-06-28
RU2191733C2 (en) 2002-10-27
PL184266B1 (en) 2002-09-30
BR9712396A (en) 1999-08-31
CN1097006C (en) 2002-12-25
WO1998018698A1 (en) 1998-05-07
SE507540C2 (en) 1998-06-15

Similar Documents

Publication Publication Date Title
US5546734A (en) Packaging machine and method of packaging articles
EP2465783B1 (en) Machine for packaging articles
US5661949A (en) Automatic packing device for the filling of containers with superimposed layers of products
EP0935574A1 (en) A method and an apparatus for regulating the width between two support railings along a curved conveyor
US6627241B1 (en) Apparatus and method for processing viscous food products
US7073308B2 (en) Universal automated plastic container closing system
CN208648067U (en) A kind of feeding device of cylindrical blank
EP0935573A1 (en) A method and an apparatus for regulating the width between two support railings along a straight conveyor
US8082831B2 (en) Method and apparatus for auto-centering and cutting cheese loaves
US4836100A (en) Apparatus for regulating feed thickness in a belt press
EP2276668B1 (en) Device for packaging products in a foil package
CN101746076B (en) Sealing and cutting device and method for manufacturing small-opening clip chain bag with same
US5107978A (en) Article distributing apparatus
KR200493835Y1 (en) Packing apparatus with a hybrid former
US20020000361A1 (en) Line pressure control device for packaging line
CN209023215U (en) Product separating transport mechanism and packaging facilities
CN209023584U (en) Carton separating transport mechanism and packaging facilities
US7033632B2 (en) Casting food products to controlled dimensions
KR20200001985U (en) adjustment apparatus of wrapping film width
US5596867A (en) Cutoff assembly for a form fill and seal packaging machine
CN114728708A (en) Method and system for arranging items
EP1378451A1 (en) Locating device for cartoning machines and similar
CN219258754U (en) Bottle separating mechanism
CN220130472U (en) Push bag posture switching device
AU682402B2 (en) A plant for continuously processing cheese mass

Legal Events

Date Code Title Description
PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

17P Request for examination filed

Effective date: 19990531

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AT BE CH DE DK ES FI FR GB GR IE IT LI LU NL PT SE

17Q First examination report despatched

Effective date: 20020410

GRAH Despatch of communication of intention to grant a patent

Free format text: ORIGINAL CODE: EPIDOS IGRA

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION HAS BEEN WITHDRAWN

18W Application withdrawn

Effective date: 20030117