The present invention is in the field of mechanisms for tracking moving webs. More specifically this invention relates to the tracking method of the film on the film handling system, and a means for adjusting the film tracking, in electrophotographic printers and copiers.
In high speed electrostatographic reproduction apparatus, it is a common practice to employ an elongated photoconductive belt or web adapted to record transferable images while the web is moving in a path in operative relation with various process stations. Typically the web is supported by, and driven about, at least one roller. With a roller support, there is a tendency for the moving web to shift laterally, or cross-track, with respect to such a roller. This tendency can be due to manufacturing tolerances, such as the inability to manufacture perfectly cylindrical rollers, or to exactly mount the rollers in a web supporting system. Various apparatus for correcting such lateral shifting of roller-supported webs are known, such as crowned rollers, flanged rollers, servo-actuated steering rollers, or self-actuating steering rollers. Crowned rollers generally are not suitable for use with a web in an electrostatographic reproduction apparatus, because they force the web toward the apex of such rollers, cause distortion of the web, and produce local stresses in the web at the crown which can damage the web. Flanged rollers generally are also not suitable because they produce a concentrated loading at the edges of the web, resulting in edge buckling, seam splitting, or excessive edge wear.
Electrostatographic reproduction apparatus therefore typically utilize servo-actuated or self-actuated steering rollers. While such steering rollers generally correct in a gross manner the cross-track shifting of the web, they tend to produce significant lateral movement of the web at an uneven rate as it is re-aligned. This can adversely effect the resulting image quality.
Another method for web tracking is disclosed in U.S. Pat. No. 4,901,903 by Blanding, which describes a steering roller mounted on a pivoted yoke, wherein the roller has an edge guide, and an edge guide adjustment mechanism. In this method, a light tension spring applies a force to the yoke to rotate the roller about a caster axis to impede aberrant lateral movement, and provide corrective action should it occur. This method, though useful, takes a fair amount of very limited space. It is also difficult to make fine adjustments to the tracking using the apparatus disclosed in Blanding.
A method and apparatus for web tracking, and web tracking adjustment is desired which is simple, cost effective, can more effectively use the limited space, and which can make fine adjustments.
A method and apparatus for web tracking adjustment for a web handling system is disclosed, comprising biasing a steering roller in a gimbal direction, and adjusting the bias to achieve the desired tracking.
The method and apparatus of the preferred embodiment will be described in accordance with an electrostatographic recording medium. The invention, however, is not limited to methods and apparatus for tracking such a medium, as tracking, and adjustment of the tracking for any web/roller system is within the spirit of the invention.
Various aspects of the invention are presented in
According to an aspect of the invention, a method of web tracking adjustment for guiding a moving web 2 in a predetermined path of travel relative to a stationary frame 4 comprises biasing a steering roller 10 in a gimbal direction, and adjusting the bias to achieve desired tracking. By biasing the steering roller 10 in a gimbal direction it is meant that the steering roller is pivoted about the gimbal axis 6 such that the web 2 on the downstream side of the steering roller 10 is not perpendicular to the longitudinal axis 9 of the steering roller 10. This can be seen in
According to a further embodiment of this invention, the steering roller 10 has a lateral constraint 12, and the bias allows the web 2 to ride against the lateral constraint 12 without damaging the web 2. In a preferred embodiment, the steering roller 10 is mounted on a roller shaft 14, and the lateral constraint 12 comprises an edge guide which is rotatably mounted on the roller shaft 14 and is axially slidable relative thereto.
In a further preferred embodiment, the steering roller 10 is biased by a spring 20 having an end one 22 and an end two 24 mounted between the frame 4 and one end of the steering roller 10 such that the spring end one 22 is mounted to the frame 4, and the spring end two 24 is mounted to the steering roller 10, such that the spring 20 applies a rotational force on the steering roller 10 about a gimbal axis 6. This is just one means of biasing the steering roller in the gimbal direction, any suitable means is within the purview of this invention.
According to an aspect of the invention, a means for adjustment is accomplished by applying a pre-load to the spring 20 to achieve the desired tracking. One method for applying this pre-load is by attaching a mounting nut 26 to the spring end one 22, and threading a mounting screw 28 through the frame 4, such that the mounting nut 26 is threaded onto the mounting screw 28 to apply the desired pre-load on said spring. There are many ways to apply pre-loading on a spring, and many means for adjusting the pre-load on a spring other than the method disclosed, all such suitable methods are within the purview of this invention.
According to a further preferred embodiment of the invention, the web tracking apparatus further comprises a housing 5 and spring flexures 30. The housing 5 is pivotally mounted to the frame 4 such that the housing 5 pivots about the gimbal axis 6. The steering roller 10 is mounted on a roller shaft 14, which roller shaft 14 is in turn mounted to the housing 5 by the spring flexures 30, such that the spring flexures 30 allow the steering roller 10 to pivot about the caster axis 7, while the housing 5 allows the steering roller 10 to pivot about the gimbal axis 6.
According to a further aspect of the invention, a stop 40 is used for preventing the steering roller 10 from rotating too far in the gimbal direction.
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