专利摘要:
An arrangement on conveyors of the type which comprises a flexible chain (1) whereupon objects, e.g. parallelepipedic packing containers (9), are conveyed. The conveyor comprises guide rails (4) located on either side of the chain (1) which steer the packing container (9). In curves the guide rails (4) are substitued on the one side by a curve disc (5) having a sloping steering surface (8) which acts upon the packing container (9) outwards against the guide rails (4) located on the opposite side of the conveyor. As a result packing containers (9) of different size can be conveyed on the conveyor without adjustment.
公开号:SU1519527A3
申请号:SU864027534
申请日:1986-05-06
公开日:1989-10-30
发明作者:Сьестранд Уно
申请人:Тетра Пак Интернэшнл Аб (Фирма);
IPC主号:
专利说明:

The invention relates to a assembly of conveyors containing a flexible conveying element guided along a certain path, directing rails along the track and driving and controlling elements, the conveying element being guided around the bend of the track through a rotating turntable. The purpose of the invention is to expand the nomenclature standard sizes of the transported products.
 0IG.1 shows the assembly of the conveyors, top view; figure 2 is the same, side view; FIG. 3 shows the suit of the straight conveyor belt, section; in fig. - the same, top view; FIG. 5 shows the assembly when the packaging container is in its normal position; FIG. figure 6 is the same, top view; 7 shows the assembly when the packaging container is held in a horizontal position; on Fig - the same, top view.
The conveyor assembly consists of a conveyor that contains a drive flexible conveyor (i.e. element 1, consisting of a series of links, the upper flat surfaces of which are articulated with each other. The conveying element 1 can slide along the supporting guide element in the form of a support bar 2 (FIG. .2), which, in turn, is supported by racks (not shown). The support bar 2 is provided with equal-and-shaped brackets 3 that are spaced apart from each other, which support guide rails k located with two The sides of the transporting element. The guide rails are arranged symmetrically on both sides of the conveyor along the straight sections of the conveyor at a certain distance from each other, so that the transported product in the form of a packing container 5 can pass unhindered between them. 1, one or several guide rails may be placed one above the other, and the interval between them and the height may be chosen depending on the types of packaging containers 5.. Weier bends, e.g., at an angle of 90 ° (Figures 1 and 2), the distance between the guide rails Yui them disposed on either side of the conveying elements
five
0
five
five
0
five
0
five
0
In the bend area, much more than the che (on the straight sections of the conveyor. The outer guide rails practically follow the bend of the transport element 1, while the inner guide rails k have a bend with a much larger curvature radius. As a result, the free space is increased between railways, ensuring that even relatively long packing containers or packing containers that, for example, have been tilted during transport, must be passing through the bend,
In the bends of the conveyor, the conveying element 1 is guided by means of a rotating disk 6, which is mounted almost horizontally on the axis of rotation and is supported by the conveyor frame with the possibility of free enemy traffic. The rotary disc 6 has a cylindrical peripheral surface 7 and an adjacent flange 8 adjacent to the latter, which serves to guide and support the conveying element 1 around the bend. Above the peripheral surface 7, the rotary disk 6 has a guide surface 9 for packaging containers 5, made in the form of a side surface of a truncated cone. The guide surface 9 is practically at the same level with the upper surface of the transport element 1 and, therefore, can engage and guide the packages passing through the bend.
Figures 3 and 3 show how a packing container 5 of a known type is transported in the form of a parallelepiped along a straight conveyor section. The support bar 2 supports the transport element 1 with the possibility of sliding of the latter, and the u-shaped brackets 3 connected by means of the support bar 2 carry guide rails on both sides of the transport element 1 and prevent the transport packaging container 5 to slide out or tilt. and 6 shows how the transported packaging container 5 approaches the place where the conveyor is bent at an angle in excess of 90 °. The distance between the guide rails
The distance in the bending zone is almost twice as much as the normal distance for the estimates considerably (the radius is the curvature of the inner direction of the rail A compared to the outer guide rail k. Consequently, in the place of the bend of the conveyor the inner rail does not perform the directional function. Instead, the guide function is performed by the inclined guide surface 9 of the rotary disk 6, which comes into contact with the lower edge of the packaging container 5. As the direction of the surface 9 is almost flush with The top surface of the transporting element and its height is 5-20 mm, the upper part of the direction of the surface 9, limited by the upper side 1P and the peripheral cylindrical surface 7 of the turntable 6, prevents the packaging containers 5 from sliding (its element 1 or rotation with a change in orientation relative to the transport element 1. The guide surface 9, which has a slope of 30-80, preferably 45, relative to the axis of rotation of the rotary disk b, pushes the packaging onteynery 5 outwards so that during the whole passage around a bend, they slide on the outer guide Yui (they rails 4.
Figures 7 and 8 show that the transported packaging container 5 is tilted at an early stage of transportation and therefore is transported in a horizontal position. This does not make any changes to the transportation of the packaging container 5 along the straight conveyor section. When the packaging container approaches the bend, its front bottom angle comes into contact with the guide surface 9 of the turntable 6, after which an ejection force acts on the front end of the packaging container 5, causing it to come into contact with the outer guide rails. When the packaging container 5 is completed turning around the bend, the face 11 of the container 5 gradually rises to the guide surface 9 until the lower surface of the packaging container 5 is supported on the upper surface 10 of the rotary disc 6
95276
or a boundary line between this surface 10 and the guiding surface 9 of the rotary disk 6. Since the upper surface 10 of the rotary disk 6 is located at a distance of 2-15 mm, preferably 8 mm, above the upper surface of the transporting element 1, the packaging toner 5 is inclined outward the direction from the vertical axis of rotation of the rotary disk b and is thus kept in contact with the external guide rails. As a result, packing containers, regardless of their orientation when approaching the bend, should be transported around it without changing the orientation and stopping the conveyor. Since in place
Since the bending distance between the rails A rails has been significantly increased, even high packaging containers can pass smoothly in a horizontal position without
5 adjustment of various parts of the conveyor.
Practical tests carried out proved the good performance of the described assembly unit. Guide
Q surface 9 operates satisfactorily with a slope of 30-80 °, preferably 45, relative to the axis of rotation of the rotary disk. For unimpeded passage around the bend with good contact with the outer guide rails C of a relatively long packaging container 5 in a horizontal position, the upper surface 10 of the rotary disc 6 should be 2-15 mm (preferably 8 mm) above the upper surface of the conveying element, and a larger size it is preferable if they are to be transported in
 large packaging containers. You- 5
honeycomb incline can
be 5–20 mm, preferably 15 mm, to allow for transportation of packing containers 5 with undetermined or deformed angles around the bends.
权利要求:
Claims (3)
[1]
1. A conveyor assembly comprising a drive flexible conveying element, guide rails and support guides and
0
mounted in the bend area on the axis of rotation a rotary disk with a guide surface for transported products and with a supporting flange adjacent to its peripheral cylindrical surface to support a flexible conveying element, characterized in that, in order to expand the range of sizes of products being transported, the turning surface of the rotary the disk is made in the form of a truncated cone and is located at the level of the upper surface of the flexible transporting element, the upper end of the guide th surface is located above the upper surface of the flexible conveying element.
[2]
2. Node pop.1, which is also distinguished by the fact that the guiding surface is located at an angle of 30-80 relative to the axis of rotation of the rotary disk.
[3]
3. Node according to claims 1 and 2, characterized in that the guide surface is bounded by the upper surface of the rotary disk and its peripheral cylindrical surface.
 i. The assembly according to claim 1, is distinguished by the fact that the height of the flexible conveying element is less than the distance between the supporting flange and the upper surface of the rotary disk.
823
2
FIG. 3
FIG. t
eight
FIG. 7
Editor I.Rybchenko
Compiled by L. Topchanov
Tehred M. Khodanich Proofreader T. Kolb
Phage. 6
FIG. eight
类似技术:
公开号 | 公开日 | 专利标题
SU1519527A3|1989-10-30|Conveyer arrangement
EP0293095B1|1994-07-13|Helical conveyor
EP0484151B1|1995-03-01|Conveyors having article diverting means
JP5260244B2|2013-08-14|Equipment for transporting and controlled unloading and containers for transport
US6945386B2|2005-09-20|Bucket elevator conveyors
EP0806384A2|1997-11-12|A conveying system
US4729466A|1988-03-08|Distribution conveyor for products
US4203512A|1980-05-20|Helical conveyor
SE9704206D0|1997-11-17|Device for handling empty beverage containers
US20010054542A1|2001-12-27|Article conveyance having mechanical drive
US3666082A|1972-05-30|Conveyor system for a container
CN102803102A|2012-11-28|Device for transporting containers
US6428436B1|2002-08-06|Drive sprocket with relief areas
EP0275564B1|1991-08-28|Conveyor assembly
NL8401329A|1984-11-16|BELT TRANSPORTER FOR THE VERTICAL OR STEEL TRANSPORTATION OF GOODS.
EP0081574A1|1983-06-22|Tilting shelf, vertical conveyor.
US5314057A|1994-05-24|Flight bar path having a large radius
JPH11286306A|1999-10-19|Conveyor mat and system for conveying product
FR2533198A1|1984-03-23|Goods handling equipment for warehousing installation
US4782939A|1988-11-08|Can unscrambler system
KR890000596B1|1989-03-21|Arrangement for orienting articles on a conveyor
AU732403B2|2001-04-26|Apparatus for sorting individual pieces
US1054305A|1913-02-25|Conveyer.
US3470999A|1969-10-07|Rotary elevator
EP0621851B1|1998-06-10|Conveyor
同族专利:
公开号 | 公开日
SE8502231D0|1985-05-07|
CA1265468A|1990-02-06|
EP0205197A1|1986-12-17|
DE3664617D1|1989-08-31|
EP0205197B2|1992-10-07|
EP0205197B1|1989-07-26|
SE8502231L|1986-11-08|
AT44931T|1989-08-15|
AU580669B2|1989-01-27|
SE456815B|1988-11-07|
JPS61254408A|1986-11-12|
US4732268A|1988-03-22|
AU5718486A|1986-11-13|
JPH0790892B2|1995-10-04|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

DE146575C|
DE222567C|
CH75515A|1917-04-23|1917-08-01|Von Maggis Nahrungsmitteln Fab|Device for conveying objects with change of direction|
US1845297A|1930-08-16|1932-02-16|Harry D Lathrop|Conveyer|
US2263499A|1940-10-01|1941-11-18|Indiana Foundry Machine & Supp|Exhaust box conveyer|
US2580054A|1950-03-31|1951-12-25|Lathrop Paulson Co|Conveyer wheel curve device|
AT222567B|1960-10-26|1962-07-25|Sig Schweiz Industrieges|Deflection device on a conveyor system|
US3666082A|1969-12-29|1972-05-30|Kaiser Aluminium Chem Corp|Conveyor system for a container|
DE2438181A1|1974-08-06|1976-02-19|Roller Fa A|Changing position of conveyed box work-pieces - using rotating table between conveyors turning boxes in horizontal plane|
US4230223A|1978-09-11|1980-10-28|The Continental Group, Inc.|Plural cable container conveyor and turn therefor|
DD146575B1|1979-10-16|1982-06-30|Erhard Kanis|DEVICE FOR TRANSPORTING AND TRANSFERRING PROFILED WORKSPIECES|
JPS5711107U|1980-06-19|1982-01-20|
US4479572A|1981-11-10|1984-10-30|Merz William J|Conveyor system|
EP0119372A1|1983-03-21|1984-09-26|Svecia Silkscreen Maskiner AB|Conveying device using a number of rollers|US5097943A|1986-02-05|1992-03-24|Nisshinbo Industries, Inc.|Bobbin transfer appartaus in spinning processes|
SE468983B|1987-01-22|1993-04-26|Profor Ab|TRANSPORT UNIT|
US4875573A|1988-07-11|1989-10-24|Simplimatic Engineering Company|Wheel turn and hanger bracket assembly therefor|
US5186306A|1989-11-23|1993-02-16|Tetra Alfa Holdings S.A.|Method and an apparatus for marshalling objects|
DE4036214C2|1990-05-14|1992-12-03|Krups Gmbh, 5450 Neuwied, De|
US5178263A|1991-11-27|1993-01-12|International Paper Company|Modular track section for an endless conveyor|
DE4433398C1|1994-09-12|1996-04-18|Mannesmann Ag|Device for transporting piece goods such as workpiece carriers, containers or transport units, especially at subsequent workplaces|
ES2138499B1|1996-09-13|2000-08-16|Arcadio Jose Antonio Martin|DEVICE FOR THE REGULATION OF THE OUTPUT FLOW IN IRREGULAR OR DISCONTINUOUS FLOW MACHINES.|
FR2758131B1|1997-01-06|1999-04-02|Gebo Production|ADJUSTABLE WIDTH GUIDES FOR CONVEYOR CONTAINERS, ESPECIALLY BOTTLES|
JP4526646B2|2000-03-24|2010-08-18|セントラル自動車株式会社|Transport device|
CN113071859B|2021-06-04|2021-09-10|江苏金安电气有限公司|Automatic change winding conveyor system|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
SE8502231A|SE456815B|1985-05-07|1985-05-07|DEVICE FOR TRANSPORT|
[返回顶部]