Link chain
专利摘要:
A universal joint-link chain comprising a plurality of chain links, one end of each chain link being provided with a hinge body and the opposite end with a hinge socket, the hinge socket of one chain link receiving the hinge body of the neighboring chain link. Each hinge socket and each hinge body is formed as an equatorial spherical segment, and a respective shaft mounts each hinge body. Travelling wheels are provided at opposed ends of the shaft. There is also provided a substantially C-shaped guide channel which is downwardly open, has spaced apart confronting flanges and a rear channel wall oppositely spaced from said flanges. A guide wheel is arranged at the region of the travelling wheels, said guide wheel having an axis extending essentially perpendicular to a related connection element and through the center of the associated spherical segment. The confronting flanges both guide thereon the travelling wheels and therebetween the guide wheels. Support means carried by each chain link include means for the attachment of a conveyed material, and said attachment means of the support means comprise a lateral offloading attachment element. The offloading attachment element extends substantially parallel to and in vertically spaced relationship from the axis of the shaft. The lateral offloading attachment element, when loaded by said conveyed material, exerting a moment upon the travelling wheels such that one travelling wheel at an end of the shaft bears against its related flange while the other travelling wheel at the other end of the shaft bears against the rear channel wall to provide a stable position for the universal joint-link chain. 公开号:SU1077580A3 申请号:SU762384248 申请日:1976-07-19 公开日:1984-02-29 发明作者:Эберле Юрг;Штаубер Ханс-Ульрих 申请人:Фераг Аг (Фирма); IPC主号:
专利说明:
The invention relates to mechanical engineering, in particular to devices for transportation, and can be used in chain conveyors. Known link chain containing pivotally interconnected by means of the axes of fork sections with rollers, a guide roller for lateral movement, the axis of which is perpendicular to the axis of the rollers, and a load-carrying element, the base of the fork of each link located in the fork of the adjacent link, and The rollers are mounted on the ends of the axles on either side of the fork 1. I However, the known chain is not sufficiently reliable to operate, since the application of a cantilever load does not ensure the smooth operation of the chain when the link is moved from a place on a curved moving section. The purpose of the invention is to increase the reliability of the link chain by ensuring smooth operation. When the link is moved off on curved sections of the movement when a cantilever load is applied. The goal is achieved by the fact that in a link chain containing hingedly interconnected via axes, fork-like links with running rollers, a guide roller for lateral movement, the axis of which is perpendicular to the axis of the running rollers, and a load-carrying element, the fork of the next link and the running rollers are mounted on the ends of the axes on both sides of the fork, each joint is made in the form of a ball element mounted on the middle part of the axis with a flat element and with faces parallel to the cheeks of the fork, fork-shaped links are made in the form of two curved plates fastened to each other by one ends, at the junction of which a spherical socket is made under the specified ball element, while the total thickness of the plates forming the spherical socket is smaller than the distance with the cheeks of the fork, the plates, with their second ends, are mounted on OQH on both sides of the spherical element, with a bracket fixed between the plates, on which a guide roller for lateral movement and g a bolting element, imprinted in the form of a cantilever mounted on a finger bracket, whose axis is preferably parallel with respect to the axis of the rollers. FIG. 1 shows a chain link; in fig. 2 is a view along arrow A in FIG. 1} in FIG. 3 shows a section BB in FIG. 2, The chain link contains fork 1 section 1, made in the form of two curved plates fastened together by one ends of plates 2 and 3 and pivotally interconnected by means of axes 4, with the base of the fork of each link located in the fork of the adjacent one. Each hinge is made in the form of an axis 4 mounted on the middle part of the axis 4 with flat parallel cheeks 5 6 forks of link 1 with facets 7. At the ends of plates 2 and 3, in the place of their connection, there is a spherical nest 8 under the ball element 5, and the total thickness of the plates forming the indicated spherical nest 8 is less than the distance between the cheeks of the fork link 1 . Plates 2 and 3 with their second ends mounted on axis 4 on both sides of the ball r of element 5. Rollers 9 are mounted on the ends of axles 4, a bracket 10 is fixed between plates 2 and 3, on which a guide roller 11 is mounted for lateral movement, the axis of which is located perpendicularly relative to the axis of rollers 9. On the bracket 10 a load carrier an element in the form of a cantilever pin 12, whose axis 5 is preferably located parallel to the axis of the rollers 9. The chain is moved in the direction of the pin of channel 13, which has a C-shaped cross section. Chain link works as follows. The transported load, for example, 5 printed products coming in a cascade flow, is fixed on the fingers 12. The chain links are moved along the guide channel 13, transversely, cross-section C-o "different shape, with the help of rollers 9. Guides 11 for lateral movement, it is moved between the shelves of the guide channel 13, which has straight and curved sections in space. The chain under the weight of the load is twisted in the direction of the cadmium channel 13 thus that the rollers 9, located on the same axis, roll over the opposite shelves of the guide channel 13. Because of this, vibrations are excluded when using the chain at significant distances in space S curvilinear sections. As a result There is no need to use a tension device. The execution of chain hinges in the form of ball elements 5 with flat parallel cheeks b forks of links 1 with faces 7 located in spherical sockets of links 1, eliminates the shock effect of ball elements on spherical sockets, which increases the durability of the chain. The proposed link chain is characterized by increased reliability due to smooth operation when starting off on curvilinear sections, as the cantilever load is applied. (/ Hhh " / K. 2 8
权利要求:
Claims (1) [1] (54) (57) A LINK CHAIN comprising fork-shaped links pivotally connected to each other by means of axles with guide rollers, a guide roller for lateral movement, the axis of which is perpendicular to the axis of the drive rollers, and a load-bearing element, the base of the fork of each link being located in the fork of an adjacent link , and the rollers are mounted on the ends of the axles on both sides of the raz-. forks, characterized in that, in order to increase reliability by ensuring smooth operation when moving the link on curved sections of movement when applying a cantilever load, each hinge is made in the form of a spherical element mounted on the middle part of the axis of the ball with flat parallel to the fork cheeks, fork-shaped links are made in in the form of two curved plates fastened together by one end, at the junction of which a spherical socket is made for the specified ball element, with the total thickness of the layer n, forming a spherical nest, less than the distance between the cheeks of the fork, the plates with their second ends are mounted on the axis along both sides of the spherical element, and an arm is mounted between the plates on which a guide roller for lateral movement and a geo-bearing element are mounted, made in the form of a console mounted on the specified finger bracket, the axis of which is located mainly parallel to the axis of the running rollers.
类似技术:
公开号 | 公开日 | 专利标题 SU1077580A3|1984-02-29|Link chain US6401914B1|2002-06-11|Curved path multiple chain link conveyor modules and belts JP2574039Y2|1998-06-11|Slat conveyor US4951457A|1990-08-28|Narrow pitch articulated chain and links therefor US2768733A|1956-10-30|Hollow tract conveyer US2526563A|1950-10-17|Conveyer chain US3948114A|1976-04-06|Drive chain with slack take-up springs US5595278A|1997-01-21|Pallet for a conveyor US2595689A|1952-05-06|Endless bucket conveyer US2789685A|1957-04-23|Flexible chain conveyor US3530799A|1970-09-29|Guiding arrangement for platform carriages for passenger conveyor installations US4440294A|1984-04-03|Conveyor US1810416A|1931-06-16|Trolley conveyer SU846423A1|1981-07-15|Horizontally closed conveyer US4177635A|1979-12-11|Swivel link for a dual chain conveyor JPH0741688Y2|1995-09-27|Slat conveyor SU1102721A1|1984-07-15|Steeply inclined belt conveyor SU781123A1|1980-11-23|Conveyer for vertical moving of loads US3097736A|1963-07-16|Link conveyor with article supported hook SU1294720A1|1987-03-07|Belt conveyer cargo-carrying member SU1765073A2|1992-09-30|Planar conveyor chain SU1008536A1|1983-03-30|Three-dimension conveyer carrying member CA1042826A|1978-11-21|Universal joint-link chain RU1787878C|1993-01-15|Overhead pushing conveyer car RU2184064C1|2002-06-27|Inclined overhead belt conveyor
同族专利:
公开号 | 公开日 NL184640C|1989-09-18| DK337476A|1977-01-29| FI762147A|1977-01-29| FR2319818B1|1981-12-04| FI65314C|1984-04-10| NL7607979A|1977-02-01| DE2629528C2|1987-12-23| NO762512L|1977-01-31| ATA555976A|1978-07-15| BE844519A|1976-11-16| SE7607387L|1977-01-29| BR7604880A|1977-08-09| AR211545A1|1978-01-30| GB1549383A|1979-08-08| DK154702B|1988-12-12| CS205036B2|1981-04-30| JPS5948204B2|1984-11-24| NO150675C|1984-11-28| FR2319818A1|1977-02-25| SE428462B|1983-07-04| PL111744B1|1980-09-30| US4294345A|1981-10-13| AU1569276A|1978-01-12| IT1062470B|1984-10-10| NO150675B|1984-08-20| AU498396B2|1979-03-08| FI65314B|1983-12-30| DE2629528A1|1977-02-10| CH588647A5|1977-06-15| DK154702C|1989-05-16| HU173446B|1979-05-28| JPS5217152A|1977-02-08| AT348919B|1979-03-12| DD125015A5|1977-03-23|
引用文献:
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申请号 | 申请日 | 专利标题 CH981075A|CH588647A5|1975-07-28|1975-07-28| 相关专利
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