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Title:
CONVEYOR DEVICE
Document Type and Number:
WIPO Patent Application WO/1999/035063
Kind Code:
A1
Abstract:
Conveyor device comprising a support surface, a link chain pivoting parallel to the support surface, support elements arranged on the links, wherein at least in a bend of the guide, the links rest on the guide through associated rollers (14), wherein the rollers are arranged in the guide such that the flanks of the links run along the rollers, wherein as seen in the direction perpendicularly of the support surface, the flanks comprise an inward curved surface (15) and wherein the radius of the curved surface corresponds with the radius of a bend in the guide.

Inventors:
WILLEMS ERIC ARNOLDUS WILHELMU (NL)
Application Number:
PCT/NL1999/000016
Publication Date:
July 15, 1999
Filing Date:
January 12, 1999
Export Citation:
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Assignee:
ALUFLEX FLEXIBLE PROFILE SYSTE (NL)
WILLEMS ERIC ARNOLDUS WILHELMU (NL)
International Classes:
B65G17/06; B65G17/38; B65G21/22; B65G39/20; (IPC1-7): B65G17/06; B65G17/38; B65G39/20; B65G21/22
Foreign References:
US3094206A1963-06-18
DE1016633B1957-09-26
US3880276A1975-04-29
GB333707A1930-08-21
FR2252268A11975-06-20
GB730124A1955-05-18
US3094206A1963-06-18
DE1016633B1957-09-26
Attorney, Agent or Firm:
Hoorweg, Petrus Nicolaas (Arnold & Siedsma Sweelinckplein 1 GK The Hague, NL)
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Claims:
CLAIMS
1. Conveyor device comprising a support surface, a link chain pivoting parallel to the support surface, support elements arranged on the links, wherein at least in a bend of the guide the links rest on the guide through associated rollers, wherein the rollers are arranged in the guide such that the flanks of the links run along the rollers, wherein as seen in the direction perpendicularly of the support surface the flanks comprise an inward curved surface, characterized in that the radius of the curved surface corresponds with the radius of a bend in the guide.
2. Conveyor device comprising a support surface, a link chain pivoting parallel to the support surface, support elements arranged on the links, wherein at least in a bend of the guide the links rest on the guide through associated rollers, wherein the rollers are arranged in the guide such that the flanks of the links run along the rollers, wherein as seen in the direction perpendicularly of the support surface the flanks comprise an inward curved surface, characterized in that the links are mutually coupled via a link pin, which link pin extends parallel to the support surface and wherein the central plane perpendicular to the axis of the rollers passes through the pin of the link.
3. Conveyor device as claimed in claim 1 or 2, characterized in that the flanks form a full surface.
4. Conveyor device as claimed in claim 2 or 3, characterized in that the links are mutually coupled with freedom of movement.
5. Conveyor device as claimed in claim 4, characterized in that the mutually coupled links form ball hinges.
6. Conveyor device as claimed in any of the foregoing claims, characterized in that the flanks of the links have a length such that they lie against each other in the bend and form one continuous surface.
Description:
CONVEYOR DEVICE The invention relates to a conveyor device as according to the preamble of claim 1.

Such a conveyor device is known from the patent publication DE-B-1016633. The form and the radius of the curved surface is not specified herein and is therefore random.

The object of the invention is to provide a conveyor device wherein the links undergo minimum friction, particularly in the guiding through a bend.

This objective is achieved by a conveyor device as characterized in claim 1.

Another additional object according to the invention is to provide a conveyor device which, over its whole guiding and particularly in bends, allows of a parallel positioning of the support elements on the support surface. the link chains for this purpose are assembled from a number of links which are mutually coupled via pins. These pins generally extend transversely of the support surface, as shown inter alia in the patent publication US-3,094,206. These link chains are not suitable however for spanning a height difference. A height difference has for instance to be spanned when a link chain is returned on the underside of the support surface to complete the circuit of the link chain.

These known link chains are moreover subject in the bend to an unbalanced moment of forces. The support elements hereby extend in bent or oblique manner relative to the support surface. This is a drawback since in general only horizontally extending support elements ensure an appropriate transport wherein the goods for transporting remain on the support elements. A further object of the invention is moreover to provide a conveyor device with a further decrease in the friction of the link chain in the bend.

To this end the invention provides a conveyor device as according to claim 2.

This has the effect that a balanced couple of forces occurs in the bend, thus ensuring a horizontal surface for the support elements.

The friction occurring due to the tensile forces during movement of the link chain is moreover minimized, thus resulting in a longer lifespan of the links.

According to a first preferred embodiment of the invention, the rollers are arranged in the guide. The flanks herein run over the rollers in a bend. In this embodiment the flanks can further be provided with a curved surface, the radius of which corresponds with the radius of the bend and wherein the flanks lie against each other in a bend such that they form one continuous curved surface. The links hereby run from the one roller onto another roller without jolting, whereby wear of the links is further reduced.

The invention will be further elucidated hereinbelow with reference to the annexed drawings.

Figure 1 shows a top view in cross-section of a second embodiment according to the invention.

Figure 2 shows a perspective view of the second embodiment with partially cut-away parts.

Figure 3 shows a perspective view of a conveyor device according to the invention.

Figure 1 shows a first preferred embodiment according to the invention. Shown herein are links 10 comprising a spherical head portion 11 with a diabolo- shaped cavity and two legs 12 connected thereto. The link chain is guided through a guide 13 which is provided with rollers 14 in the bend with radius R1. Links 10 herein run over rollers 14, whereby only a rolling resistance has to be overcome and wear of both the guide 13 and links 10 is reduced.

In order to improve the running of links 10 along rollers 14, the flanks of links 10 comprise a curved surface 15 having a radius R2 corresponding with radius

R1 of the bend. Links 10 herein lie against each other in the bend such that they form one continuous curved surface with radius Rl, whereby links 10 can be guided through the bend without jolting.

Figure 2 shows a perspective view of the embodiment of figure 1. Support elements 16 are further arranged on links 10. These support elements have on both sides a gear wheel-like toothing 17 whereby during pivoting parallel to the support surface the elements 16 mesh as two toothed wheels. The central plane perpendicular MLV to the axis H of a roller 14 is shown clearly in figure 2. The central plane perpendicular MLV to the axis H of roller 14 passes through the link pin 18 of link 10. The support elements hereby always extend parallel to the support surface and the moments of force on the support elements are always evenly balanced.

Guide 13 consists for instance of a drawn aluminium profile which is symmetrical relative to a central plane parallel to the support surface, whereby the link chain can be returned on the underside when desired.

The flanks of the links are preferably formed by a full surface. the links are mutually coupled with freedom of movement, for instance as a ball hinge.

The flanks of the links moreover have a length such that they lie against each other in the bend and form one continuous surface.

A conveyor belt according to the invention is shown in figure 3 wherein it is apparent that the link chain is pivotable parallel to the support surface and in a plane perpendicular to the conveying direction. Return of the link chain is also shown clearly here.




 
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