1. Field of the Invention
The present invention relates to a web transfer method and apparatus, and more particularly, to a web transfer method and apparatus to transfer a web (a belt-like flexible support) by using a tiered roller so that a coated film surface of the web does not contact the roller.
2. Description of the Related Art
In general, a functional film such as a photosensitive material, an optical material used for a liquid crystal display apparatus, a gas barrier and the like is manufactured by transferring sequentially the web with the steps of delivering a uncoated web from a delivering device, coating the web with a functional coating solution, drying the coated film and winding up the web with the coated film to a winder. Rollers are provided between devices for the above steps to transfer the web, so the web is sequentially transferred. There are some kinds of the functional coating solutions having problems like deteriorated or altered by binding with oxygen in the air. Therefore, there are cases that a manufacturing line of the functional film is provided in a decompression chamber, and a transferring line is formed in a tunnel state and the tunnel is depressurized.
The coating solution is not coated across the full width of the web in the width direction. It is generally coated except on margins at the both ends of the web and the margins are eventually cut off.
The functional film drops significantly its own product's value when there are folds and flaws on the surface of the film because of a product characteristic. There is a general method to prevent the folds and the flaws such that a frictional force between a surface of the roller and the web is reduced by reducing a tension of the web being transferred, changing a material of the surface of the roller to a material with a low friction coefficient such as polytetrafluoroethylene (Teflon®), and making an angle (a wrap angle) of the web wrapping the roller smaller.
However, the countermeasures like changing the tension of the web, the material of the roller and the wrap angle of the web are not fundamental solutions because the frictional force between the web and the surface of the roller is generated to a greater or lesser degree.
For this reason, a tiered roller which can transfer the web with a noncontact technique is employed in Japanese Patent Application Laid-Open No. 2001-106402. A diameter of both ends of the tiered roller is formed bigger than a diameter of a midsection of the roller. The both ends of the roller support and transfer the both ends of the web (the margins). In this way, it is possible to prevent the midsection of the web (the section except the margins) from contacting the surface of the roller and damaging the coated surface even when the web is transferred with facing the coated surface of the functional coating solution to the tiered roller.
On the other hand, the tiered roller has a defect like that the midsection of the web hangs loose in the middle of the transfer and gets folds because of the tier between the both sides of the roller and the midsection of the roller. When the degree of hanging is big, the web contacts the midsection of the roller. To solve the defect, in the tiered roller of Japanese Patent Application Laid-Open No. 2001-106402, the midsection of the roller is formed to blow out air to support the midsection of the web and prevent it from hanging loose.
However, the tiered roller of Japanese Patent Application Laid-Open No. 2001-106402 can not be used when the manufacturing line of the functional film must be provided in a decompression chamber because the tiered roller has a configuration such that air is blown out to prevent the web from hanging loose.
The present invention has been made in view of the above described circumstances. An object of the present invention is to provide a web transfer method and apparatus which is able to transfer the web not to have the folds by hanging loose the midsection of the web regardless of the ambient conditions of the web transfer such as at normal atmospheric pressure and in a vacuum state.
In order to achieve the object above, a first aspect of the present invention provides a web transfer method comprising a step of transferring a belt-like web, and a step of nipping both ends of the web by both end portions of a tiered roller and a pair of nip rollers, wherein the tiered roller is formed to have a larger diameter at the both end portions than at a central portion, and the pair of the nip rollers are arranged to incline outward in a transfer direction of the web to have an expansion angle.
According to the first aspect of the present invention, the both ends of the web which is transferred with being supported by the roller both end of which is formed to have the larger diameter than the roller midsection is nipped by the pair of the nip rollers, and the pair of the nip rollers are arranged to incline outward in the transfer direction of the web so that the web is transferred with being applied a force to expand outward in the width direction. Thus, the central portion of the web does not hang loose and get folds even when the web is transferred by the tiered roller. Also, the present invention does not have a configuration such that air is blown out to prevent the web from hanging loose, thereby the present invention can be used regardless of the ambient conditions of the web transfer such as at normal atmospheric pressure and in a vacuum state.
In addition, the present invention includes the case that the tiered roller rotates itself and makes the web transferred and the case that the tiered roller is rotated with being driven by the transfer of the web and support the web transfer. The case that the nip roller rotates itself and the case that the nip roller is rotated with being driven by the transfer of the web are included as well.
A second aspect of the present invention according to the first aspect provides the web transfer method, wherein the web has a predetermined wrapping angle relative to the tiered roller, and the pair of nip rollers nip the web at an immediately upstream position of a wrapping start position.
It is easier to expand the web in the width direction by the nip roller because the force of the roller both end to grip the web is weak at the immediately upstream position of a wrapping start position.
A third aspect of the present invention according to the second aspect provides the web transfer method, further comprising a step of nipping the web by another nip roller which is arranged at any position between the wrapping start position and a wrapping end position.
An expansion effect gets smaller at an immediately upstream position of the wrapping end position even when the web is expanded in the width direction at the adjacent position of the wrapping start position. Therefore, it is preferable to expand the web once again by another nip roller which is arranged at any position between the wrapping start position and the wrapping end position.
A fourth aspect of the present invention according to any one of the first to third aspects provides the web transfer method, when a transfer tension of the web is 100N or less, the expansion angle of the pair of nip rollers is set to 1.0° or more and 3.0° or less with a nip pressure of 10 Pa or more and 30 Pa or less, and when the transfer tension is more than 100N and equal to 150 or less, the expansion angle of the pair of nip rollers is set to more than 3° and less than 30° with the nip pressure of more than 30 Pa and equal to 60 Pa or less.
The preferable expansion angle to expand the web outward in the width direction tends to differ on reaching the transfer tension of the web of 100N. The expansion effect of the web outward in the width direction becomes better with the case that the transfer tension of the web is 100N or less, the preferable expansion angle is set to 1.0° or more and 3.0° or less, and the nip pressure is set to 10 Pa or more and 30 Pa or less at that time.
The expansion effect of the web outward in the width direction becomes better when the transfer tension of the web 14 is more than 100N and 150 or less, the expansion angle of the nip roller 16 is set to more than 3.0° and less than 30°. At the time, the nip pressure is set to more than 30 Pa and 60 Pa or less.
A fifth aspect of the present invention according to any one of the first to fourth aspects provides the web transfer method, wherein the web is an optical film and the optical film has a functional surface having an optical characteristic which faces to the tiered roller.
The present invention is especially effective for an optical film which has optical function characteristics adversely affected by a fine flaw and fold. Therefore, the web transfer must be performed in a decompression chamber of a low oxygen level because of the particularity of a coating solution.
A sixth aspect of the present invention provides a web transfer apparatus which transfers a belt-like web comprising: a tiered roller which supports both ends of the web with both end portions of the roller formed to have a larger diameter than a central portion of the roller; and a pair of nip rollers which nip the both ends of the web with the both end portions of the tiered roller and are arranged to incline outward in a transfer direction of the web to have an expansion angle.
The sixth aspect is a configuration of the present invention as an apparatus. The web transfer apparatus includes a tiered roller which supports both ends of the web with both end portions of the roller formed to have a larger diameter than a central portion of the roller; and a pair of nip rollers which nip the both ends of the web with the both end portions of the tiered roller and are arranged to incline outward in a transfer direction of the web to have an expansion angle. Thus, it is possible to transfer the web not to have the folds by hanging loose the midsection of the web regardless of the ambient conditions of the web transfer such as at normal atmospheric pressure and in the vacuum state.
A seventh aspect of the present invention provides the web transfer apparatus according to the sixth aspect, wherein the web has a predetermined wrapping angle relative to the tiered roller, and the pair of the nip rollers are arranged at an immediately upstream position of a wrapping start position.
In this way, the web can be smoothly expanded outward in the width direction.
An eighth aspect of the present invention provides the web transfer apparatus according to any one of the sixth to seventh aspects, wherein the pair of nip rollers include a nip pressure adjusting device and a expansion angle adjusting device.
In the present invention, the expansion angle and the nip pressure of the nip roller can be set to one value, but it is possible to set to the preferable expansion angle and nip pressure according to various properties of the web (a rupture strength, a degree of elasticity, thickness, a slipperiness against the nip roller and like) by providing the pressure adjusting device and the expansion angle adjusting device.
A ninth aspect of the present invention provides the web transfer apparatus according to any one of the sixth to eighth aspects, wherein the pair of nip rollers include a plurality of rollers arranged parallel to each other.
An expansion performance to expand the web outward in the width direction can be improved by providing the plurality of the nip rollers arranged parallel to each other.
A tenth aspect of the present invention provides the web transfer apparatus according to the ninth aspect, wherein an expansion angle of the plurality of the rollers is larger at the roller arranged outside than at the roller arranged inside.
According to the tenth aspect, the expansion angle of the plurality of the rollers is larger at the roller arranged outside than at the roller arranged inside so that the expansion force to expand the web outward in the width direction is gradually headed to the outside
An eleventh aspect of the present invention provides the web transfer apparatus according to any one of the sixth to tenth aspects, wherein the pair of nip rollers are rubber rollers.
A grip force of the rubber roller to grip the web is larger than a roller such as a metal roller and like formed by a hard material, so the performance to expand the web outward in the width direction gets better.
A twelfth aspect of the present invention provides the web transfer apparatus according to any one of the sixth to eleventh aspects, wherein the web transfer apparatus is provided in a decompression chamber.
That is because the web transfer apparatus of the present invention is especially effective when the apparatus is provided in the decompression chamber.
The degree of decompression in the decompression chamber is the degree of decompression not to occur the oxidation or the alteration of the coating solution and includes complete vacuum.
It is possible to transfer the web not to have the folds by hanging loose the midsection of the web regardless of the ambient conditions of the web transfer such as at normal atmospheric pressure and in a vacuum state according to the web transfer method and apparatus of the present invention.
Also, the present invention is easier and more reasonable than the configuration such that air is blown out to prevent the web from hanging loose.
In the following, a preferred embodiment of a web transfer method and apparatus according to the present invention will be described with reference to the accompanying drawings.
As shown in
The expansion angle adjusting device 18 can be any devices as long as it is able to adjust the direction of the pair of nip rollers 16, 16 relative to the web transfer direction. For example, a steering mechanism which is used in a car and like can be preferably used. The nip pressure adjusting device 20 can be any devices as long as it is able to adjust the pressure of the nip roller 16 pressing the roller end portions 12A of the tiered roller 12 through the web 14. For example, an air cylinder can be preferably used.
As shown in
The tiered roller 12 of
A preferred material of the tiered roller 12 is a hard material such as a metal and like. The reason for this is that there is a possibility for the web 14 to get the folds when the tiered roller 12 is deflected with the transfer tension of the web 14, since the both ends of the web 14 are supported and transferred by the roller end portions 12A of the tiered roller 12.
As shown in
The direction of the pair of nip rollers 16, 16 have an expansion angle which becomes larger in the transfer direction of the web 14. In other words, the nip roller 16 is provided so that the pair of nip rollers 16, 16 have the predetermined expansion angle θ relative to the transfer direction of the web 14.
The expansion angle θ of the nip roller 16 is explained here with reference to
Also, the preferable expansion angle θ to expand the web 14 outward in the width direction differs on reaching the transfer tension of the web 14 of 100N.
As a result, the expansion angle θ of 1.0° to 3.0° has the evaluation G when the transfer tension of the web 14 is 100N or less, and the evaluation is OK when the expansion angle θ is 3.5° and 4.0°. On the other hand, the expansion angle θ of 1.0° to 3.0° has the evaluation F when the transfer tension of the web 14 is more than 100N and equal to 150 or less. The evaluation is OK when the expansion angle θ is 3.0°, and the evaluation is G when the expansion angle θ is 3.5° and 4.0°. Then, the expansion angle θ is enlarged more and the evaluation stays G until the expansion angle θ of 30° (not shown in Figs).
From the test result of
Moreover, in
The web 14 is preferably wrapped around the tiered roller 12 with a wrap angle of 10° to less than 180°, more preferably 15° to 90° and transferred. At the same time, it is preferable that the nip roller 16 nips the web 14 at the adjacent position of the wrap start position.
A preferable position to provide the nip roller 16 which is located at the immediately upstream position of the wrapping start position is described here with reference to
Accordingly, when δ is −1 mm, 0 mm and 3 mm, the evaluation is OK. When δ is 1 mm to 2 mm, the evaluation is G. Thus, it is more preferable that δ is set to 1 to 2 mm from the wrapping start position.
Moreover, when only one nip roller is used, it is preferable that the nip position B is located at the immediately upstream position of the wrapping start position. However, as the more preferable embodiment, an another nip roller 32 may be provided at any position between the wrapping start position A and the wrapping end position C as shown in
The uncoated web 14 fed from a feeding apparatus 38 is transferred to a coating apparatus 42 through a first EPC apparatus 40 in the manufacturing line 34 of the optical film in
The web transfer apparatus 10 of the present invention is able to perform a noncontact transfer in that the web surface to be coated with the coating solution before coating and the coated surface after the coating do not contact the roller. Furthermore, with the web transfer apparatus 10, the midsection of the web 14 does not hang loose and get the folds on the web 14 during the transfer.
Number | Date | Country | Kind |
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2008-218225 | Aug 2008 | JP | national |