This invention relates generally to transport assemblies, namely, assemblies for transporting paper and other web media. More specifically, the present invention relates to a new and novel transport assembly that includes split nip rollers that are driven to provide a split nip gap with adjustable gap across the width of the web.
This invention relates to the control of a web, such as paper other web media, through a folding machine or printing apparatus. It should be understood that the present invention relates to transport of any type of media but paper, in particular, will be discussed in detail. This in no way limits the scope of the present invention to paper transport and it is intended that the present invention can be employed for transport of any type of web.
In prior paper transport assemblies, it is common to provide a drive roller and associated nip or pinch rollers, which are spring biased against the drive roller, for effecting a resultant frictional force for transporting a sheet of paper or paper web that is fed between the drive roller and the nip or pinch rollers. Typically, the drive roller and the nip rollers span across the entire width of traveling paper web with a uniform nip gap thereacross because typically the paper traveling between the drive roller and the nip rollers is of equal thickness across its width.
It is sometimes desirable for the thickness of a traveling web to be thicker at one point across the width of the web than at another point. For example, the web may have multiple layers, such as due to folding, at one running portion of the web. In such a folder, multiple webs may enter the machine to adjust the gaps between the driven rollers in the paper feed section of the machine. In the final stages of the paper feed, it is important to drive both sides of the nips for consistent feed of the web or webs to avoid undesirable skewing.
The multiple webs may be distributed in one or more streams entering the folder. For example, there are double width folders where two streams of ribbons enter the folder side by side. In this case, the number of ribbons on each side will result in different thicknesses across the width of the web. Thus, the resultant nip gap is different at different locations across the width of the traveling web where the thickness of the web is different.
In the prior art, there is difficulty in spacing the nip rollers to accommodate different thicknesses of the web, particularly where on only drive roller and only one nip roller is provided across the entire width of the traveling web. More specifically, rollers that span across the entire width of a web that has different thickness will wear unevenly causing the roller to fail more quickly. This can cause paper skewing resulting in jams and other problems.
There have been attempts in the prior art to addresses the problem associated with accommodating webs that have different thicknesses across their width. For example, as shown in prior art
For example, in the prior art
Therefore, there is a need to provide more than two adjustable nip rollers to provide more than two adjustable nip gaps for accommodating a web with more than two thicknesses across its width.
To further address the need for more than two adjustable nip gap zones across the width of the web, adjustable trolleys 52, as shown in prior art
In view of the foregoing, the transport assemblies of the prior art suffer from various disadvantages that make them difficult and awkward to use with unexpected results. Therefore, there is a need for a transport assembly that can provide multiple nip rollers across the width of a traveling paper web. There is a further need for a transport assembly that provides multiple nip rollers that are each driven rollers rather than mere idling rollers. There is yet a further need in for a transport assembly that can provide more than two split nip rollers across the width of a web. There is a need for a transport assembly to provide a split nip rollers that can be individually adjusted to provide different nip gap across the width of a traveling web to accommodate different thicknesses thereof.
The present invention preserves the advantages of prior art paper web transport assemblies. In addition, it provides new advantages not found in currently available assemblies and overcomes many disadvantages of such currently available assemblies.
The invention is generally directed to a novel and unique paper web transport assembly that can accommodate a paper web with different thicknesses across the width of the traveling web.
The present invention uniquely provides the capability of more than two individually adjustable trolley-mounted nip rollers that are also driven to provide better web control. A first driven roller is provided on one side of the paper web. Adjustable trolleys rollers are provided in contact with the opposing side of the web and are adjusted to provide the desired nip gap across the width of the web where each trolley can provide a different nip gap corresponding to a given nip gap zones. A second driven roller frictionally interfaces with the rollers of trolleys to drive them. The geometry and the positioning of the trolleys relative to driven roller enable roller to frictionally drive all of the trolleys even though they are positioned at different distances from the drive roller to provide different nip gaps. The ability to adjust the nip rollers and still be in frictional communication with the drive roller is well within the acceptable tolerance or error to maintain the needed friction to drive the individual nip rollers even though they are adjusted to different distances to providing different nip gaps in their respective nip gap zones.
It is therefore an object of the present invention to provide a paper web transport assembly that is capable of providing more than two nip rollers across the width of a web.
It is a further object of the invention to provide a paper web transport assembly where two or more nip rollers are each actively driven rather than passively as in the prior art.
It is further an object of the present invention to provide a paper web transport assembly that can individually adjusted to provide different nip gaps to accommodate a traveling web with different thicknesses across its width.
Another object of the present invention is to provide a paper web transport assembly that includes a nip roller drive assembly that can be easily modified to accommodate additional individually adjustable nip roller assemblies yet still be actively driven.
The novel features which are characteristic of the present invention are set forth in the appended claims. However, the invention's preferred embodiments, together with further objects and attendant advantages, will be best understood by reference to the following detailed description taken in connection with the accompanying drawings in which:
Referring first to
As can be seen in
Turning now to
The second drive roller 110 is also mounted to the support structure 114 and is rotatably driven by belts 118, or the like. The belts 118 for the second drive roller 110 is preferably linked by pulleys 120 to the first drive roller 102 or it may be independently driven. The second drive roller 110 powers a number of nip rollers 106a-d across the width of the assembly 100.
It can be seen in
Turning now to
Preferably, the second drive roller 110 is connected by a pivot mount 122 to a support structure, such as the frame 114 illustrated in
The configuration shown in
More specifically, each of the nip rollers 106a-d across the width of the assembly are adjusted and set in place to provide the desired nip gap 112a-d with the first drive roller 102. Thus, the nip rollers 106a-d may not be all co-axial with one another. The second drive roller 110 is then positioned to frictionally communicate with each of the nip rollers 106a-d even though they are not necessarily co-axially with one another. Thus, some of the rollers 106a-d, for example those adjusted to provide a larger nip gap, will have a tighter frictional communication with the second drive roller 110 than those rollers adjusted to provide small nip gap. The resiliency of the rollers 106a-d, which can be made of rubber, or the like, enables the aforesaid “error” in positioning of differently adjusted nip rollers to have no affect on the consistent friction driving of the nip rollers 106a-d.
It should be understood that the use of the adjustable pivot structure of
The assembly of the present invention can accommodate any type of rollers, support structures and adjustment configurations. The dimensions shown in the
In summary, a new and novel paper web transport assembly 100 is provides that includes more than two actively driven nip rollers, such as 106a-d. Each of the nip rollers 106a-d can be adjusted to provide a desired nip gap between it and an opposing driven roller 102. The nip gaps 112a-d can be adjusted and set across the width of the paper web 104 to accommodate different thicknesses of the paper web 104 to ensure smooth transport therethrough.
It would be appreciated by those skilled in the art that various changes and modifications can be made to the illustrated embodiments without departing from the spirit of the present invention. All such modifications and changes are intended to be covered by the appended claims.
This application claims priority from prior U.S. Provisional Application Ser. No. 60/577,718 filed on Jun. 7, 2004.
Number | Date | Country | |
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60577718 | Jun 2004 | US |