The present invention relates to book printing and assembly and, in particular, it concerns printing on pre-bound pages and attaching a pre-fabricated book-cover.
The state of the art of book printing and assembly, while having seen much in improved mechanization that is addressed to the speed and quality of the printing and binding processes, has seen little change in the basic steps of book printing and assembly.
Generally speaking, the process is as follows. First, the pages are printed. Next, the pages are cut in order to be collated or assembled into signatures. Then, the text block is formed by connecting the signatures, either by sewing or gluing. Finally, the cover is attached. Therefore, the process of forming the text block is performed only on the number of pages in the book and the process is repeated for each book being produced.
This process is well suited for mass production, but leaves little room for affordable production of a small number of books, and is totally unsuited for production of a single book.
U.S. Pat. No. 4,776,711 discloses a printing apparatus for printing on the pages of a pre-bound bank passbook. This apparatus employs two printing devices, one associated with each of the exposed pages. The two printing devices are used to compensate for the different heights of each of the pages.
There is therefore a need for a system for producing a book by printing directly on the pages of a pre-bound page block, separating the printed pages from the page block and attaching a cover to the resultant text block. It would be beneficial if the system employed a single printing device.
The present invention is a system for producing a book by printing directly on the pages of a pre-bound page block, separating the printed pages from the page block and attaching a cover to the resultant text block.
According to the teachings of the present invention there is provided, a method for producing printed material, the method comprising: a) providing a block configured from a plurality of blank pages that are pre-bound by a binding along a binding-edge of each page; b) arranging the block so as to form two adjacent stacks interconnected by the binding, such that at least one of a plurality of the printable pages is deployed in a first stack and a remainder of the plurality of the printable pages are deployed in a second stack, and printable top surfaces of the first stack and the second stack are co-planar; c) generating relative movement between a printing device and the printable top surfaces so as to print on the top surface of at least one of the first stack and the second stack; d) redeploying a top page of the second stack to the first stack so as to produce new the printable top surfaces; and e) repeating steps (c) and (d) as required to print a number of pages required.
According to a further teaching of the present invention, there is also provided, separating printed pages of the printed material from the block.
According to a further teaching of the present invention, the separating printed pages is accomplished using a cutting element associated with the printing device, the cutting element configured to separate the first stack from the second stack.
According to a further teaching of the present invention, there is also provided, attaching the printed pages of the printed material to a book-cover that includes an attachment configuration for interconnection with the printed pages of the printed material.
According to a further teaching of the present invention, the book-cover is implemented as a pre-fabricated adjustable book-cover with an adhesive spine area shielded by at least one peal-off cover-sections configured to reveal a predetermined adhesive area when removed, such that an area of the adhesive spine corresponding to a size of a binding area of the printed pages of the printed material is revealed for the attaching.
According to a further teaching of the present invention, there is also provided, providing two block support tables each associated with a corresponding one of the first stack and the second stack, a relative height of the block support tables being adjustable so as to maintain the co-planar printable top surfaces of the first stack and the second stack.
According to a further teaching of the present invention, there is also provided, adjusting a height of each of the first stack and the second stack subsequent to each the redeploying the top page of the second stack to the first stack so as to deploy the new the printable top surfaces at a predetermined printing height.
According to a further teaching of the present invention, there is also provided, determining the number of pages redeployed during the redeploying the top page of the second stack to the first stack using a sensor configured determine the thickness of material redeployed.
There is also provided according to the teachings of the present invention, an apparatus for printing on the pages of a block of printable pages that are pre-bound by a binding along a binding-edge of each page, the apparatus comprising: a) an apparatus frame; b) a block support structure configured to allow deployment of the block in the frame so as to form two adjacent stacks interconnected by the binding, such that at least one of a plurality of the printable pages is deployed in a first stack and a remainder of the plurality of the printable pages are deployed in a second stack, and printable top surfaces of the first stack and the second stack are co-planar; c) a printing device associated with the frame; d) a displacement mechanism configured to generate relative movement between the printing device and the printable top surfaces so as to print on the top surface of at least one of the first stack and the second stack; and e) a page turning mechanism associated with the frame, the page turning mechanism configured for redeploying a bound top page of the second stack to the first stack so as to produce a new the printable top surface.
According to a further teaching of the present invention, the binding is a flexible adhesive binding.
According to a further teaching of the present invention, the block support structure includes with two block support tables each associated with a corresponding one of the first stack and the second stack, the two block support tables configured such that a relative height of the block support tables is adjustable so as to maintain the co-planar printable top surfaces of the first stack and the second stack.
According to a further teaching of the present invention, there is also provided, at least one top surface positioning element configured to control a height of the printable top surface during printing.
According to a further teaching of the present invention, the displacement mechanism is configured to move the printing device about an X and Y axes of the printable top surface.
According to a further teaching of the present invention, the page turning mechanism is associated with the displacement mechanism such that return of the printing device to a home position affects the redeploying the top page of the second stack to the first stack.
According to a further teaching of the present invention, the page turning mechanism includes at least one page turning arm displaceable between a page printing position and a page turning position.
According to a further teaching of the present invention, there is also provided, a page lifting mechanism configured to lift the top page of the second stack for engagement with the page turning arm and redeployment to the first stack.
According to a further teaching of the present invention, the page lifting mechanism includes an electrostatic element.
According to a further teaching of the present invention, there is also provided, a sensor configured to determine is a single page was turned by the page turning mechanism.
According to a further teaching of the present invention, there is also provided, a cutting element configured to separate the first stack from the second stack.
There is also provided according to the teachings of the present invention, a kit for preparation of bound printed material, the kit comprising; a) a block of printable pages that are pre-bound by a binding; b) an apparatus for printing on pages of the block of printable pages; and c) a book-cover that includes an attachment configuration for interconnection with pre-bound printed pages of the printed material.
The invention is herein described, by way of example only, with reference to the accompanying drawings, wherein:
The present invention is a system for producing a book by printing directly on the pages of a pre-bound page block, separating the printed pages from the page block and attaching a cover to the resultant text block.
The principles and operation of a system for producing a book according to the present invention may be better understood with reference to the drawings and the accompanying description.
By way of introduction, the present invention includes a printing apparatus, a method for producing a book using such an apparatus, and a kit for the preparation of pre-bound printed material, which includes the printing apparatus, block of pre-bound printable pages and bookcover. The printing apparatus is configured to print on the pages of a block of printable pages that are pre-bound by a binding along a binding-edge of each page. Since the pages are bound together before printing, it is necessary to arrange the block in two interconnected stacks that are joined by the flexible binding. Printing is performed on the top surfaces of each of the stacks, and then a page is redeployed from one stack to the other. During the redeployment process, the page is turned, thereby revealing an un-printed side of the page. Since the height of each of the stacks changes each time a page is redeployed, the printing apparatus includes two height-adjustable stack support tables each associated with a corresponding one of the two stacks.
As used herein, the phrase “printable pages” refers to pages that may be printed using the printing apparatus of the present invention. It is within the scope of the present invention that such pages may be pre-printed with, but not limited to, watermarks, background designs, illustration, and pictures. The term “pre-bound” as used herein refers to the interconnection of a number of individual pages along one edge of each page by any binding method known in the art. The use of the phrase “bound printed material” herein refers to substantially any print medium in which pages are bound together such as, but not limited to, books, booklets, notebooks, pamphlets, brochures, and catalogs.
Referring now to the drawings,
In order to provide a substantially planar printing surface consisting of the printable top surfaces 44a and 44b of the two stacks 4a and 4b, the printing apparatus 2 includes substantially parallel paper limit guides 12a and 12b, which are displaceable between a printing position (
The printing device 20 is preferably driven so as to traverse the Y-axis rail 22, as Y-axis rail 22 is driven along the parallel X-axis rails 24a and 24b.
As illustrated in
Preferably, the page turning process includes verifying that only one page has been redeployed. This may be accomplished with the use of any of a number of sensing devices known in the art, or by determining the change in the height of each of the stacks 4a and 4b. Preferably, however, the thickness of the material redeployed to the top of stack 4a is measured by gauge 70, which is best illustrated in
After redeploying top page 38 to the top of stack 4a, the paper limit guides 12a and 12b are lowered to the printing position and the height-adjustable stack support tables 6a and 6b are raised so as to press the printable top surfaces 44a and 44b against the paper limit guides 12a and 12b, thereby providing the substantially planar printing surface required for the printing process. In some embodiments, optic sensors 60 may be employed to assist in the alignment of the top surfaces 44a and 44b. It will be readily appreciated that substantially any suitable device and method for aligning the printable top surfaces 44a and 44b so as to be co-planar and provide a substantially planar printing surface is within the scope of the present invention.
As illustrated in
To complete the book, a book-cover 100 is attached to the stack 4a of now printed pages once the stack 4a is removed from the printing apparatus 2. The process of attaching the book-cover 100 is illustrated in
Since the width of the binding area 106 will vary for one book to another, the front 110 and back 112 cover portions of the book-cover are preferably over-sized. Therefore, the front 110 and back 112 cover portions may need to be adjusted to the size of the stack 4a inserted into the book-cover. This may be accomplished by simply folding the front 110 and back 112 cover portions over to size. Alternatively, or additionally, the extreme edges of the front 110 and back 112 cover portions may each be configured with an adhesive portion (not shown) shielded by a peel-off cover-section configured to reveal an adhesive area when removed. It should be noted that substantially any method for attaching a book-cover to the pre-bound pages is within the scope of the present invention.
Therefore, the steps for producing a book according to the teachings of the present invention are as follows:
It should be noted that additionally the printing apparatus 2 of the present invention may be configured to check that the block 4 includes the number of pages required for the current printing job before printing begins. This may be accomplished by substantially any method known in the art such as, but not limited to, optical sensors, IR detectors, mechanical measuring mechanisms, and other electronic measures. Alternatively, or additionally, the block 4 itself may include an assignment of the number of pages such as but not limited to, numerals, patterns, and other graphic representations, printed on one or more of the sides of the block 4.
It will be appreciated that the above descriptions are intended only to serve as examples and that many other embodiments are possible within the spirit and the scope of the present invention.