This application is based upon and claims the benefit of priority under 35 USC 119 of Japanese Patent Application No. 2015-153975 filed on Aug. 4, 2015, the entire disclosure of which, including the description, claims, drawings and abstract, is incorporated herein by reference in its entirety.
1. Field of the Invention
The present invention relates to a page-lifting reduction device, a page-turning apparatus, and a method of turning pages.
2. Description of the Related Art
A typical page-turning apparatus includes a sucking mechanism which sucks each page of stacked pages of, for example, a book, to lift and turn the pages one by one (see, for example, Japanese Unexamined Patent Application Publication No. H06-48067).
Such a page-turning apparatus may fail to turn the pages of a book one by one because a plurality of pages are lifted in an overlapped state due to attachment between pages or the presence of burrs formed during page cutting.
According to a first aspect of the present invention, there is provided a page-lifting reduction device for reducing lifting of each of pages of an opened book, the page-lifting reduction device including: a page fixing unit that pushes the pages; and an adjusting unit that adjusts a position of the page fixing unit in a thickness direction of the book depending on a thickness of the book, wherein the page fixing unit comprises a page handling portion to handle the pages while the pages are being pushed.
According to a second aspect of the present invention, there is provided a page-lifting reduction device including: a contact member that includes a first region which comes into contact with a page of an opened book and a second region which comes into contact with a side of the opened book; and a pressing unit that causes the contact member to press the page and subsequent pages in a thickness direction of the opened book, wherein the second region has a shape such that an edge of an upper page of the opened book is more displaced compared to a lower page toward a seam of the book, provided that an opened page is defined as an uppermost page.
According to a third aspect of the present invention, there is provided a page-turning apparatus for turning each of pages of an opened book, the page-turning apparatus causing a predetermined unit to be brought into contact with a page of the opened book at an original position and to release the page from the predetermined unit at a turned position, the page following the predetermined unit to the turned position, the page-turning apparatus including: a support base that supports the opened book; and the page-lifting reduction device according to the first aspect.
According to a fourth aspect of the present invention, there is provided a method of turning each of pages of an opened book, including: handling the pages while pushing the pages with a page fixing unit which includes a curved or inclined page handling surface at an original position; causing a predetermined unit to be brought into contact with an upper page of the opened book at the original position; and releasing the page from the predetermined unit at a turned position, the page following the predetermined unit to the turned position due to the contact.
The present invention will become more fully understood from the detailed description given hereinafter and the appended drawings, which are given by way of illustration only and thus are not intended as a definition of the limit of the present invention, wherein:
An embodiment of the present invention will now be described with reference to the accompanying drawings. Although the embodiment will be described with various technically preferred limitations, the scope of the present invention should not be limited to the embodiments and the drawings.
As shown in
The turner body 10 includes a substantially rectangular parallelepiped casing 11; a drive 12 (e.g., a motor) having a drive shaft (not shown); an arm 13 which swings about the drive shaft; an attaching unit 14 which is disposed at the tip of the arm 13 and sucks pages P of the book B; a mount (not shown) which supports the drive 12, the arm 13, and the attaching unit 14; a blower 15 which blows air through a region above the pages P at the original position onto the pages P at the turned position; and a controller (not shown) which controls these components.
The drive shaft of the turner body 10 is inclined toward the book B. The rotation of the drive shaft causes the reciprocal swinging of the arm 13 about the drive shaft between the original and turned positions of the pages P such that the arm 13 draws a circular arc around the drive shaft.
The support base 20 includes a first support plate 21 and a second support plate 22. The angle of inclination of the second support plate 22 can be adjusted with a hinge 23 (see
Thus, the support base 20 supports the book B such that the pages P at the turned position are raised and inclined about a seam b2 of the book B from the pages P at the original position. The pages P at the turned position are preferably inclined at 30 to 45° from the horizontal plane.
The page-lifting reduction device 30 will now be described.
As shown in
The frame 31, which has a rectangular parallelepiped shape, accommodates the page fixing unit 32, the shafts 33, the coil springs 34, and the attachment member 35, and is open on the rear side.
The frame 31 has a vertically elongated left rectangular opening 311 on the front face of the frame 31. A left segment 323 (described below) in a state of protruding from the front face to the rear face of the frame 31 can move vertically through the left rectangular opening 311. The frame 31 also has a vertically elongated right rectangular opening 312 on the front face of the frame 31. A right segment 324 (described below) in a state of protruding from the front face to the rear face of the frame 31 can move vertically through the right rectangular opening 312. The left rectangular opening 311 and the right rectangular opening 312 respectively have cutouts 313 and 314 at the upper edges of the openings 311 and 312. As shown in
In the front side of the frame 31, side fixing portions 315 and 316 protruding from the front face of the frame 31 extend vertically at the left of the left rectangular opening 311 and at the right of the right rectangular opening 312, respectively. The side fixing portions 315 and 316 perform function of pushing the side, on the fore edge side, of the book placed at the original position to effectively prevent the misalignment of the book B at the original position.
For example, as shown in
As shown in
The left segment 323 has a disk-shaped rib 326 on the top face of the segment 323, and the left segment 323 and the rib 326 have a through hole 323a in which the left shaft 33 of the two shafts 33, 33 disposed on the frame 31 can be inserted.
The right segment 324 has a disk-shaped rib 327 on the top face of the segment 324, and the right segment 324 and the rib 327 have a through hole 324a in which the right shaft 33 of the two shafts 33, 33 disposed on the frame 31 can be inserted.
With reference to
As shown in
The page handling portion 328 is provided with a friction member (e.g., a cork sheet, a urethane rubber sheet, or a synthetic leather sheet) 329 on the page handling surface for preventing slip of the pages P.
As shown in
The shafts (adjusting units, guide members, or pressing units) 33, each of which has a cylindrical shape, are supported between the top and bottom of the frame 31 so as to be in parallel with each other.
The left shaft 33 is inserted in the coil spring 34, the rib 326, and the left segment 323 in sequence and is supported between the top and bottom of the frame 31.
The right shaft 33 is inserted in the coil spring 34, the rib 327, and the right segment 324 in sequence and is supported between the top and bottom of the frame 31.
The coil springs (adjusting units, biasing members, or pressing units) 34 bias the page fixing unit 32 in the direction of pushing of pages P at the original position. As shown in
The attachment member 35 is a magnetic sheet for detachably fixing the page-lifting reduction device 30 to the first support plate 21 and the second support plate 22 and is disposed on the undersurface (bottom) of the page-lifting reduction device 30.
Now will be described a process of setting the page-lifting reduction device 30 on pages of an opened book B at the original position with reference to
As shown in
As shown in
As described above, the page-turning apparatus 1 according to the present embodiment includes the page-lifting reduction device 30 which reduces lifting or warping of pages P at the original position, and the page fixing unit 32 of the page-lifting reduction device 30 has the page handling portion 328 which handles a plurality of pages P in an overlapped state. The page-turning apparatus 1 can prevent lifting or warping of the pages P at the original position and, while the pages P are being pushed, the page-turning apparatus 1 can prevent attachment between the pages P and adhesion between the ends of the pages P caused by burrs formed during page cutting. Thus, the pages P are prevented from being turned in an overlapped state at once.
The page handling portion 328 has a curved page handling surface which comes into contact with the edges of the stacked pages P. Thus, the stacked pages P are displaced along the page handling surface while the pages P are being pushed at the original position. This curved page handling surface can reduce attachment between the pages P or prevent adhesion between the ends of the pages P caused by burrs formed during page cutting.
The page handling surface of the page handling portion 328 has the friction member 329 for preventing slip of the pages P. Even in the case of attachment between the pages P or adhesion between the ends of the pages P caused by burrs formed during page cutting, the friction member 329 allows only the first page P to be turned; i.e., the frictional force generated by the friction member 329 prevents turning of the second and subsequent pages P together with the first page P. Thus, the friction member 329 can separate the first page P from the second and subsequent pages P during contact of the pages P with the page handling surface, and can prevent turning of the pages P in an overlapped state at once.
The page-lifting reduction device 30 also has the side fixing portions 315 and 316 for pushing the side of the opened book B at the original position. These side fixing portions reduce the misalignment of the book B and ensure a stable page-turning operation of the page-turning apparatus 1.
The page-lifting reduction device 30 includes the shafts 33 which guide the page fixing unit 32 in the direction of pushing the pages P at the original position and in the direction of releasing the pushing of the pages P, and the coil springs 34 which bias the page fixing unit 32 in the direction of pushing the pages P at the original position. Thus, the pages P at the original position can be readily pushed by the page fixing unit 32 through lifting and release of the page fixing unit 32.
The page-lifting reduction device 30 has the attachment (magnetic sheet) for detachably fixing the page-lifting reduction device 30 to the support base 20 (the first support plate 21). This configuration can fix the page-lifting reduction device 30 at a desired position of the support base 20 and can improve the usability of the page-lifting reduction device 30.
The present invention is not be limited to the aforementioned embodiment and may be appropriately modified.
In the above-described embodiment, the page fixing unit 32 of the page-lifting reduction device 30 pushes the fore edge side of the page P at the original position and handle the page and lower subsequent pages P. As shown in
In detail, the page fixing unit 132 has a right triangular shape in plan view and an L-shape in cross-sectional view. The page fixing unit 132 has an L-shaped bent portion having a curved (concave) surface (i.e., a page handling surface) which comes into contact with the edges of the stacked pages P at the original position. The page fixing unit 132 is slidably supported by a support 131 having an L-shape in plan view through sliding grooves 131a and 131b which are provided in the direction for pushing or releasing the pushing of the pages P at the original position. The pages P at the original position may be pushed by the weight of the page fixing unit 132 itself or the biasing force of a spring (not shown).
The page fixing unit 132 enables the stacked pages P to be handled along the page handling surface in cooperation with pushing of the pages P at the original position. The page fixing unit 132 can reduce attachment between the pages P or prevent adhesion between the ends of the pages P caused by burrs formed during page cutting, and thus can prevent turning of the pages in an overlapped state P at once.
In the above-described embodiment, the positioning of the page-lifting reduction device 30 fixed on the first support plate 21 requires temporary removal of the reducer 30 from the first support plate 21 and then relocation of the reducer 30 at a predetermined position, or requires manual sliding of the reducer 30 fixed on the first support plate 21 to a predetermined position. The first support plate 21, for example, may be provided with a base portion and a slide portion which can slide with respect to the base portion such which the page-lifting reduction device 30 can be detachably fixed to the slide portion. This configuration of the first support plate 21 facilitates the positioning of the page-lifting reduction device 30 and further improves the usability of the page-lifting reduction device 30.
The above-described embodiment should not be construed to limit the invention. The scope of the invention is defined by the following claims and equivalents thereof.
Number | Date | Country | Kind |
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2015-153975 | Aug 2015 | JP | national |