CN102529404B - Pinter and printing method thereof - Google Patents
Pinter and printing method thereof Download PDFInfo
- Publication number
- CN102529404B CN102529404B CN201010601021.0A CN201010601021A CN102529404B CN 102529404 B CN102529404 B CN 102529404B CN 201010601021 A CN201010601021 A CN 201010601021A CN 102529404 B CN102529404 B CN 102529404B
- Authority
- CN
- China
- Prior art keywords
- deformation unit
- driving source
- deformation
- processor
- height
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Printing Methods (AREA)
- Control Or Security For Electrophotography (AREA)
Abstract
The embodiment of the invention provides a printer and a printing method thereof. The printer comprises a processor and a deformation processing subsystem, wherein the deformation processing subsystem is connected with the processor; the deformation processing subsystem comprises a plate making panel consisting of a plurality of deformation units which are at a first height normally, an excitation source generating unit which generates an excitation source under the control of a processor to excite the deformation units to change height and an imprinting control unit which is mechanically connected with the plate making panel to control the plate making panel in which the height of the deformation units changes to press and form three-dimensional patterns on a printing consumable; and the deformation units can restore to the first height under the action of an external force or when the excitation source disappears. The printer and the printing method can print the three-dimensional patterns.
Description
Technical field
The present invention relates to printer technology, particularly a kind of printer and print processing method.
Background technology
Printer is a kind of numeral, letter, symbol and figure etc. that the operation result of computer or intermediate object program can be identified with people, and the form according to regulation is imprinted on the equipment on paper.Press adopted technology, printer divides cylindricality, spherical, ink jet type, heat-sensitive type, laser type, electrostatic, the various forms of printer such as magnetic-type, LED-type.
But inventor finds in the process realizing the embodiment of the present invention, existing printer can only export 2D imaging substantially, and cannot export 3D rendering, and being therefore necessary provides a kind of printer that can print space pattern.
Summary of the invention
The object of the embodiment of the present invention is to provide a kind of printer and print processing method, realizes the printing of space pattern.
To achieve these goals, embodiments provide a kind of printer, comprising:
Processor;
Deformation process subsystem, is connected with described processor;
Described deformation process subsystem specifically comprises:
The plate-making panel be made up of multiple deformation unit, described deformation unit has the first height at conventional sense;
Driving source generation unit, for generating under the control of described processor for encouraging described deformation unit, makes the driving source that the height of deformation unit changes;
Impression control unit, be mechanically connected with described plate-making panel, for control deformation cell height change after plate-making panel press printing consumables, described printing consumables forms space pattern;
Described first height can be returned to when described deformation unit under external force or driving source disappears.
Above-mentioned printer, wherein, also comprises:
First communication interface, is connected with described processor, for receiving the first view data, records the color data of pixel in described first view data;
Colors countenance subsystem, is connected with described processor, under controlling at described processor, carry out coloring treatment according to described color data to printing consumables.
Above-mentioned printer, wherein, also comprises:
First communication interface, is connected with described processor, for receiving the second view data; The altitude information of pixel is recorded in described second view data;
Described processor is used for producing the first control signal according to described altitude information;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described first control signal device, makes the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
Above-mentioned printer, wherein, also comprises:
Second communication interface, is connected with described processor, for receiving the first view data; The color data of pixel is recorded in described first view data;
Described processor is used for producing the second control signal according to described color data;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described second control signal device, makes the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
Above-mentioned printer, wherein, also comprises:
Memory cell, for store configuration files;
Described processor is used for producing the 3rd control signal according to described configuration file;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described 3rd control signal device, makes the height change of described deformation unit to the 3rd driving source of predetermined altitude.
Above-mentioned printer, wherein, also comprises:
Second communication interface, is connected with described processor, for receiving the second view data; The color data of each pixel is recorded in described second view data;
Spraying subsystem, for forming a coating on the surface of described printing consumables; The color of described coating varies with temperature and different;
Temperature RACS, for controlling the temperature of described deformation unit according to described color data, when plate-making panel after making deformation cell height change presses printing consumables, by the color of coating described in temperature change, the color after coating is changed is corresponding with described color data.
Above-mentioned printer, wherein, when described deformation unit returns to described first height under external force, described printer also comprises:
One stiffener plate, is arranged at the below of described plate-making panel;
Whether testing agency, leave described deformation process subsystem for detecting described printing consumables;
Described impression control unit is also for after detecting that in detection architecture described printing consumables leaves described deformation process subsystem, plate-making panel after driving described deformation cell height to change presses described rigid panel, makes the deformation unit highly changed return to the first height.
To achieve these goals, the embodiment of the present invention additionally provides a kind of print processing method, and in a printer, described printer comprises: processor; And the deformation process subsystem to be connected with described processor; Described deformation process subsystem comprises the plate-making panel be made up of multiple deformation unit, and described deformation unit has the first height at conventional sense; Can return to described first height when described deformation unit is under external force or driving source disappears, described print processing method comprises:
Under the control of described processor, generate a driving source, and encourage described deformation unit by driving source, the height of deformation unit is changed;
Plate-making panel pressing printing consumables after control deformation cell height changes, described printing consumables forms space pattern.
Above-mentioned print processing method, wherein, also comprises:
Under described processor controls, according to color data, printing consumables is carried out to the step of coloring treatment;
Described color data is the color information of the pixel recorded in the first view data by the first communication interface reception.
Above-mentioned print processing method, wherein, also comprises:
Receive the step of the second view data; The altitude information of pixel is recorded in described second view data;
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the first control signal according to described altitude information;
Generate according to described first control signal device and can encourage described deformation unit, make the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
Above-mentioned print processing method, wherein, also comprises:
Receive the step of the first view data; The color data of pixel is recorded in described first view data;
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the second control signal according to described color data;
Generate according to described second control signal device and can encourage described deformation unit, make the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
Above-mentioned print processing method, wherein, also comprises:
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the 3rd control signal according to the configuration file prestored;
Generate according to described 3rd control signal device and can encourage described deformation unit, make the height change of described deformation unit to the 3rd driving source of predetermined altitude.
Above-mentioned print processing method, wherein, also comprises:
Receive the step of the second view data; The color data of each pixel is recorded in described second view data;
The step of a coating is formed on the surface of described printing consumables; The color of described coating varies with temperature and different;
And the step of temperature of described deformation unit is controlled according to described color data;
Plate-making panel pressing printing consumables after control deformation cell height changes, when described printing consumables forms space pattern, changed the color of described coating by the temperature of described deformation unit, the color after coating is changed is corresponding with described color data.
The embodiment of the present invention has following beneficial effect:
In the printer of the embodiment of the embodiment of the present invention and print processing step, by arranging a plate-making panel be made up of multiple deformation unit, the shape of plate-making panel is controlled by the height change controlling deformation unit, and then press printing consumables by this plate-making panel, form space pattern thereon, make the printing of space pattern become very simple.
And simultaneously, when the image printed has color, the colorful one stereo-picture can be formed by first painted aftershaping, first shaping after stain, the simultaneously various mode such as shaping and painted, enrich the range of application of the printer of printable space pattern further.
Accompanying drawing explanation
Fig. 1-2 is the schematic diagram of the printable space pattern of the printer of the embodiment of the present invention;
Fig. 3 is the schematic flow sheet of the method for the embodiment of the present invention;
Fig. 4 is the process schematic forming space pattern in the method for the embodiment of the present invention;
Fig. 5 is the schematic diagram of the space pattern that the printer of the embodiment of the present invention prints.
Detailed description of the invention
In the printer of the embodiment of the embodiment of the present invention and print processing step, by arranging a plate-making panel be made up of multiple deformation unit, the shape of plate-making panel is controlled by the height change controlling deformation unit, and then press printing consumables by this plate-making panel, form space pattern thereon, make the printing of space pattern become very simple.
The printer of the embodiment of the present invention, comprising:
Processor;
Deformation process subsystem, is connected with described processor;
Described deformation process subsystem specifically comprises:
The plate-making panel be made up of multiple deformation unit, described deformation unit has the first height at conventional sense;
Driving source generation unit, for generating under the control of described processor for encouraging described deformation unit, makes the driving source that the height of deformation unit changes;
Impression control unit, be mechanically connected with described plate-making panel, for control deformation cell height change after plate-making panel press printing consumables, described printing consumables forms space pattern;
Described first height can be returned to when described deformation unit under external force or driving source disappears.
In the embodiment of the present invention, by arranging the deformation unit of multiple alterable height at plate-making panel, under the incentive action of driving source, the height of deformation unit changes, and highly different deformation unit combination can form different space patterns together.Finally utilize this plate-making panel to suppress printing consumables (as paper), corresponding space pattern can be formed on print paper, achieve the printing of space pattern.
Certainly, for higher required precision, it is smaller that the area of this deformation unit can be arranged, and for lower required precision, and it is smaller that the area of this deformation unit can be arranged.
In a particular embodiment of the present invention, this printer may be used for printing and does not have coloured space pattern completely, also can the coloured space pattern of type belt, and when the coloured space pattern of type belt, this printer, also comprises:
First communication interface, is connected with described processor, for receiving the first view data, records the color data of pixel in described first view data;
Colors countenance subsystem, is connected with described processor, under controlling at described processor, carry out coloring treatment according to described color data to printing consumables.
In a particular embodiment of the present invention, this deformation process subsystem and colors countenance subsystem arranged adjacent, first can press printing consumables by deformation process subsystem, described printing consumables forms space pattern, and then coloring treatment is carried out to the print paper being formed with space pattern, certainly, also first coloring treatment can be carried out to print paper, and then press painted printing consumables by deformation process subsystem, form band the colorful one space pattern.
In a particular embodiment of the present invention, driving source generation unit need generate under the control of described processor for encouraging described deformation unit, make the driving source that the height of deformation unit changes, and the height change of deformation unit and driving source closely related.
Specifically how to generate suitable driving source, can realize in several ways in the specific embodiment of the invention.
< implementation one >
In implementation one, just with elevation information in the view data that printer receives, namely indicate the height of each pixel on print paper.
For in this case, in printer, be provided with the first communication interface, be connected with described processor, for receiving the second view data; The altitude information of pixel is recorded in described second view data;
And described processor is used for producing the first control signal according to described altitude information;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described first control signal device, makes the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
In this case, the height of deformation unit is corresponding with the elevation information of pixel, described driving source generation unit can encourage described deformation unit specifically for generating according to described first control signal device, makes the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
Illustrated in greater detail is as follows.
For Fig. 1, assuming that need the space pattern shown in printed drawings 1, for centre is with the cube of circular opening, then in this case, driving source should encourage the deformation cell height corresponding with circular hole part to strengthen, protrude from the initial surface of plate-making panel, when the deformation cell height of mid portion increases, (its increase degree is relevant to the degree of depth of circular opening, it can obtain according to the pixels tall information recorded in initial data), when protruding from surface, then can suppress a hole on paper.
For Fig. 2, assuming that need the space pattern shown in printed drawings 2, for protruding from the round platform of plane, then in this case, driving source should encourage the deformation cell height corresponding with part outside round platform to strengthen, protrude from the initial surface of plate-making panel, outside round platform, the deformation cell height of part increases the (height correlation of its increase degree and round platform, it can obtain according to the pixels tall information recorded in initial data), when protruding from surface, then can suppress a round platform on paper.
Certainly, above-mentioned is for two kinds of explanations that height carries out, the height change relative complex of complicated pattern, but principle is completely the same, is not described in further detail at this.
< implementation two >
In implementation one, directly have recorded the altitude information of pixel in view data, therefore directly can produce driving source according to altitude information, under the excitation of driving source, the height change of described deformation unit is corresponding with the altitude information of described pixel.
But when there is no the altitude information of recording pixel point in view data, as common view data, when wherein only have recorded the color data of pixel.
For in this case, in printer, be provided with second communication interface, be connected with described processor, for receiving the first view data; The color data of pixel is recorded in described first view data;
And described processor is used for producing the second control signal according to described color data;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described second control signal device, makes the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
< implementation three >
Under above two kinds of modes, the generation of driving source and view data have certain relation, or directly generate according to pixels tall information, or the color data according to pixel generates, but should be understood that, the printer of the embodiment of the present invention, also can it doesn't matter completely with image to be printed, as formed lines on print paper, but the textured paper of this formation is specifically used for printing what not relation.
In this manner, the printer of the embodiment of the present invention, also comprises:
Memory cell, for store configuration files;
Described processor is used for producing the 3rd control signal according to described configuration file;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described 3rd control signal device, makes the height change of described deformation unit to the 3rd driving source of predetermined altitude.
Illustrate as follows.
As prestored multiple configuration file, wherein each configuration file corresponds to a kind of plate-making panel (being controlled by the height of deformation unit) of given shape.
After user selects specific configuration file, processor can produce the 3rd control signal according to described configuration file, and described deformation unit can be encouraged by driving source generation unit specifically for generating according to described 3rd control signal device, make the height change of described deformation unit to the 3rd driving source of predetermined altitude.When deformation unit is for predetermined altitude, the shape of the plate-making panel that the shape of this plate-making panel is corresponding with configuration file is identical.
Mention, in image the colorful one situation, the embodiment of the present invention can be first painted, and rear impression also can first impress, after stain, but the two also can carry out simultaneously, to being in this case described in detail as follows before.
In this case printer also comprises:
Second communication interface, is connected with described processor, for receiving the second view data; The color data of each pixel is recorded in described second view data;
Spraying subsystem, for forming a coating on the surface of described printing consumables; The color of described coating varies with temperature and different;
Temperature RACS, for controlling the temperature of described deformation unit according to described color data, when plate-making panel after making deformation cell height change presses printing consumables, by the color of coating described in temperature change, the color after coating is changed is corresponding with described color data.
Relative to formation space pattern and the painted printing type separately carried out for, synchronously carry out print and painted can make output image more accurate.
In a particular embodiment of the present invention, a heater element can be implanted by micro electromechanical structure in each deformation unit, be controlled the temperature of deformation unit by this heater element.
MEMS is the english abbreviation of MEMS (Micro-Electro-Mechanical Systems).It refers to can batch making, integrates micro mechanism, microsensor, micro actuator and signal transacting with control circuit until interface, to communicate and the microdevice of power supply etc. or system.MEMS is along with the development of semiconductor integrated circuit Micrometer-Nanometer Processing Technology and ultraprecise Machining Technology gets up, and the microsensor, microactrator, micro parts, Micromechanical Optics device, vacuum microelectronic device, power electronic devices etc. that adopt MEMS technology to make have very wide application prospect in Aeronautics and Astronautics, automobile, biomedicine, environmental monitoring, military affairs and all spectra that almost people touch.
Relative to traditional machinery, MEMS's is small-sized, can reach the rank of tens microns, even less.Therefore, the embodiment of the present invention deformation unit and need the heater element being placed in deformation unit can be realized by MEMS.
With the image of 1024X768, when landscape orientation is to A4 paper, the longer sides of A4 is 29.7cm, and now each pixel is of a size of 29.7cm/1024=290 micron, and MEMS element can reach the rank of tens microns, can find to utilize MEMS more than sufficient to realize deformation unit.
Mentioning at the very start in specific embodiments of the invention, can return to described first height when described deformation unit under external force or driving source disappears.
When utilizing external force to make deformation unit restore to the original state, following structure can be adopted.
The below being arranged at described plate-making panel arranges a stiffener plate;
Arrange a testing agency, whether this testing agency leaves described deformation process subsystem for detecting described printing consumables;
After printing consumables leaves described deformation process subsystem, namely by impression control unit drive described deformation cell height to change after plate-making panel press described rigid panel, make the deformation unit highly changed return to first height.
When plate-making panel after deformation cell height changes presses described rigid panel, because panel is rigidity, now panel can produce pressure to outstanding deformation unit, impels deformation unit to restore to the original state.
In a particular embodiment of the present invention, described multiple deformation unit is evenly arranged.
Below the realization of various deformation unit is described as follows.
< implementation one >
In implementation one, this deformation unit is the deformation unit that ER fluid is formed, and the driving source changing the generation of driving source generation unit is electric current or electric field, is described later for electric current.
The developing history of ER fluid (Electrorheological Fluids) has had nearly 50 years, and it has the quality that change in shape occurs by Current Control.
For 60 pixel × 60 pixels, the deformation unit that these 3600 ER fluids are formed defines plate-making panel.
Now, have between the deformation unit that driving source generation unit and each ER fluid are formed and be electrically connected, and the deformation unit that generation current signal sends to 3600 ER fluids to form.Under the control of driving source (electric current), there is the change of shape in the deformation unit that this ER fluid is formed, under certain restriction (as utilized elastic film restrained deformation direction) protrude from original shape and become the surface that unit forms.
< implementation two >
In implementation two, this deformation unit is the deformation unit that magnetic flow liquid is formed, and the driving source changing the generation of driving source generation unit is magnetic field.
For 60 pixel × 60 pixels, the deformation unit that these 3600 magnetic flow liquids are formed defines plate-making panel.
< implementation three >
In implementation three, this deformation unit is the deformation unit that high-molecular gel is formed, and the driving source changing the generation of driving source generation unit is electric field, temperature, light etc.
Gel state is the physical form between liquid and solid.High-molecular gel refers to by the three-dimensional crosslinked network formed between molecule, its network by macromolecular main chain and side chain having hydrophilic (polarity) group and hydrophobic group, or (with) by dissociating, group forms, solvent is fixed in molecular network
Typically can produce to high-molecular gel the driving source stimulated and have temperature, pH value, solvent, salinity, optical, electrical field, chemical substance etc., when high-molecular gel is subject to these environmental stimulis, there is discontinuous change in its volume.
When other chemical substances contained in the pH value of external environment condition, ionic strength, temperature, electric field and environment change, state that namely high-molecular gel presents " stimulating-response ".Such as in high-molecular gel, there is phase in version, show as network mesh increases, network follows the string, the volume of network sharply changes (more than alterable hundred times).And these changes are reversible with discontinuous.
Certainly, dissimilar energy can be used as driving source, as light, this driving source generation unit produces the light of varying strength, is sent to the deformation unit of high-molecular gel formation, protrudes from surface to make its shape by optical fiber or light pipe.
< implementation four >
Above-mentioned implementation one, in implementation three, utilizes different materials, because this material, under outside energy (electricity, magnetic, light etc.) effect, deformation occurs, protrudes from surface, and in implementation four, adopts micromechanics mechanism to realize.
In implementation four, this deformation unit is transparent elastic cavity, and its mode by inflation or topping up expands, and this driving source generation unit comprises:
Store the storage chamber of gas or liquid, be connected with described transparent elastic cavity by hollow pipeline;
The micro motor that arrange corresponding to transparent elastic cavity, for extracting described gas or liquid, and by extract gas or Liquid transfer to described transparent elastic cavity;
Driving source generation unit, specifically for controlling the work of described micro motor, produces corresponding driving force as driving source.
Now, the storage chamber storing gas or liquid is connected by hollow pipeline with the deformation unit that transparent elastic cavity is formed, micro motor under the control of the control unit, extract described gas or liquid, and by extract gas or Liquid transfer to described transparent elastic cavity, this cavity is expanded, protrudes from the surface that former transparent elastic cavity is formed.
In above-mentioned four kinds of implementations, by controlling distribution time and the region of driving source accurately, deformation unit can obtain accurate fractions distribution or time shaft distribution.
< implementation five >
In implementation five, this driving source generation unit comprises:
Multiple driver, is arranged at the below of an elastic linear, and this driver comprises a catch bar, and when driver activates, catch bar, by the below being pressed in elastic linear, makes the point of elastic linear be formed projection by after jack-up.
By controlling the moving displacement of the catch bar of this driver, elastic linear can be controlled by the height of jack-up, reaching and the identical effect of above several mode.
In above-mentioned description, be that the explanation carried out evenly is set with deformation unit, but this deformation unit also can be arrange as required, not necessarily have to evenly arrange.
Certainly, deformation unit also can be under the excitation of driving source, shrink lower than flat surfaces, and the difference of this mode only material or stimulation, is therefore not described in detail.
The embodiment of the present invention also provides a kind of print processing method, in a printer, it is characterized in that, described printer comprises: processor; And the deformation process subsystem to be connected with described processor; Described deformation process subsystem comprises the plate-making panel be made up of multiple deformation unit, and described deformation unit has the first height at conventional sense; Can return to described first height when described deformation unit is under external force or driving source disappears, as shown in Figure 3, described print processing method comprises:
Under the control of described processor, generate a driving source, and encourage described deformation unit by driving source, the height of deformation unit is changed;
Plate-making panel pressing printing consumables after control deformation cell height changes, described printing consumables forms space pattern.
Certainly, above-mentioned print processing method can be applied to and print colorful figure, and now, the method also comprises:
Under described processor controls, according to color data, printing consumables is carried out to the step of coloring treatment;
Described color data is the color information of the pixel recorded in the first view data by the first communication interface reception.
In above-mentioned print processing method, the height change of this deformation unit is corresponding with the altitude information of the pixel recorded in view data, and now print processing method also comprises:
Receive the step of the second view data; The altitude information of pixel is recorded in described second view data;
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the first control signal according to described altitude information;
Generate according to described first control signal device and can encourage described deformation unit, make the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
And the height change of deformation unit also can be corresponding with the color data of the pixel recorded in view data, now print processing method also comprises:
Receive the step of the first view data; The color data of pixel is recorded in described first view data;
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the second control signal according to described color data;
Generate according to described second control signal device and can encourage described deformation unit, make the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
And the height change of deformation unit also can be defined by the configuration file pre-set, now print processing method also comprises:
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the 3rd control signal according to the configuration file prestored;
Generate according to described 3rd control signal device and can encourage described deformation unit, make the height change of described deformation unit to the 3rd driving source of predetermined altitude.
The step and the painted step that form space pattern can be carried out simultaneously, and now described method also comprises:
Receive the step of the second view data; The color data of each pixel is recorded in described second view data;
The step of a coating is formed on the surface of described printing consumables; The color of described coating varies with temperature and different;
And the step of temperature of described deformation unit is controlled according to described color data;
Plate-making panel pressing printing consumables after control deformation cell height changes, when described printing consumables forms space pattern, changed the color of described coating by the temperature of described deformation unit, the color after coating is changed is corresponding with described color data.
As shown in Figure 4, illustrate how the printer of the embodiment of the present invention realizes the formation of space pattern for wherein a part of deformation unit.As shown in Figure 4, some sections there is A1-An have n deformation unit altogether, in the normal state, it forms an even curface, after excitation generates, excitation can stimulate each deformation unit, the height of the deformation unit made changes, have uprise less, as A2, some height improve more, as An+1, after highly changing, it is utilized to go to impress paper, then outstanding part can compress paper, make it to form pit, as shown in Figure 4, A2 and An+1 can form two pits on paper, space pattern can be formed on paper by these different pits.
As shown in Figure 5, be the schematic diagram of the space pattern that utilizes printer of the present invention to be formed.
The above is only the preferred embodiment of the present invention; it should be pointed out that for those skilled in the art, under the premise without departing from the principles of the invention; can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.
Claims (14)
1. a printer, is characterized in that, comprising:
Processor;
Deformation process subsystem, is connected with described processor;
Described deformation process subsystem specifically comprises:
The plate-making panel be made up of multiple deformation unit, described deformation unit has the first height at conventional sense;
Driving source generation unit, for generating under the control of described processor for encouraging described deformation unit, makes the driving source that the height of deformation unit changes;
Impression control unit, be mechanically connected with described plate-making panel, for control deformation cell height change after plate-making panel press printing consumables, described printing consumables forms space pattern;
Described first height can be returned to when described deformation unit under external force or driving source disappears;
Described printer also comprises:
First communication interface, is connected with described processor, for receiving the second view data; The altitude information of pixel is recorded in described second view data;
Described processor is used for producing the first control signal according to described altitude information;
Described driving source generation unit can encourage described deformation unit specifically for generating according to described first control signal, makes the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
2. printer according to claim 1, is characterized in that, also comprises:
First communication interface, is connected with described processor, for receiving the first view data, records the color data of pixel in described first view data;
Colors countenance subsystem, is connected with described processor, under controlling at described processor, carry out coloring treatment according to described color data to printing consumables.
3. printer according to claim 1, is characterized in that, also comprises:
Second communication interface, is connected with described processor, for receiving the first view data; The color data of pixel is recorded in described first view data;
Described processor is also for producing the second control signal according to described color data;
Described driving source generation unit also can encourage described deformation unit specifically for generating according to described second control signal, makes the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
4. printer according to claim 1, is characterized in that, also comprises:
Memory cell, for store configuration files;
Described processor is also for producing the 3rd control signal according to described configuration file;
Described driving source generation unit also can encourage described deformation unit specifically for generating according to described 3rd control signal, makes the height change of described deformation unit to the 3rd driving source of predetermined altitude.
5. printer according to claim 1, is characterized in that, also comprises:
Second communication interface, is connected with described processor, for receiving the second view data; The color data of each pixel is recorded in described second view data;
Spraying subsystem, for forming a coating on the surface of described printing consumables; The color of described coating varies with temperature and different;
Temperature RACS, for controlling the temperature of described deformation unit according to described color data, when plate-making panel after making deformation cell height change presses printing consumables, by the color of coating described in temperature change, the color after coating is changed is corresponding with described color data.
6. printer according to claim 1, is characterized in that, when described deformation unit returns to described first height under external force, described printer also comprises:
One stiffener plate, is arranged at the below of described plate-making panel;
Whether testing agency, leave described deformation process subsystem for detecting described printing consumables;
Described impression control unit is also for after detecting that in detection architecture described printing consumables leaves described deformation process subsystem, plate-making panel after driving described deformation cell height to change presses described stiffener plate, makes the deformation unit highly changed return to the first height.
7. according to the printer in claim 1-6 described in any one, it is characterized in that, described multiple deformation unit is evenly arranged.
8. printer according to claim 7, is characterized in that, each described deformation unit is the deformation unit that ER fluid, magnetic flow liquid or high-molecular gel are formed, and described driving source is can produce to the constituent material of deformation unit the driving source stimulated.
9. printer according to claim 7, is characterized in that:
Described each deformation unit is transparent elastic cavity;
Described driving source generation unit specifically comprises:
Store the storage chamber of gas or liquid, be connected with described flexible cavity by hollow pipeline;
The micro motor that arrange corresponding to described flexible cavity, for extracting gases or liquid from described storage chamber, and by the gas that is drawn into or Liquid transfer to described flexible cavity;
Driving source generation unit, specifically for controlling the work of described micro motor, produces corresponding driving force as driving source.
10. a print processing method, in a printer, is characterized in that, described printer comprises: processor; And the deformation process subsystem to be connected with described processor; Described deformation process subsystem comprises the plate-making panel be made up of multiple deformation unit, and described deformation unit has the first height at conventional sense; Can return to described first height when described deformation unit is under external force or driving source disappears, described print processing method comprises:
Under the control of described processor, generate a driving source, and encourage described deformation unit by driving source, the height of deformation unit is changed;
Plate-making panel pressing printing consumables after control deformation cell height changes, described printing consumables forms space pattern;
Described print processing method also comprises:
Receive the step of the second view data; The altitude information of pixel is recorded in described second view data;
Under the control of described processor, generate a driving source specifically comprise:
Described processor produces the first control signal according to described altitude information;
Generate according to described first control signal and can encourage described deformation unit, make the first driving source that the height change of described deformation unit is corresponding with the altitude information of described pixel.
11. print processing methods according to claim 10, is characterized in that, also comprise:
Under described processor controls, according to color data, printing consumables is carried out to the step of coloring treatment;
Described color data is the color information of the pixel recorded in the first view data by the first communication interface reception.
12. print processing methods according to claim 10, is characterized in that, also comprise:
Receive the step of the first view data; The color data of pixel is recorded in described first view data;
Under the control of described processor, generate a driving source specifically also comprise:
Described processor produces the second control signal according to described color data;
Generate according to described second control signal and can encourage described deformation unit, make the second driving source that the height change of described deformation unit is corresponding with the color data of described pixel.
13. print processing methods according to claim 10, is characterized in that,
Under the control of described processor, generate a driving source specifically also comprise:
Described processor produces the 3rd control signal according to the configuration file prestored;
Generate according to described 3rd control signal and can encourage described deformation unit, make the height change of described deformation unit to the 3rd driving source of predetermined altitude.
14. print processing methods according to claim 10, is characterized in that, also comprise:
Receive the step of the second view data; The color data of each pixel is recorded in described second view data;
The step of a coating is formed on the surface of described printing consumables; The color of described coating varies with temperature and different;
And the step of temperature of described deformation unit is controlled according to described color data;
Plate-making panel pressing printing consumables after control deformation cell height changes, when described printing consumables forms space pattern, changed the color of described coating by the temperature of described deformation unit, the color after coating is changed is corresponding with described color data.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201010601021.0A CN102529404B (en) | 2010-12-13 | 2010-12-13 | Pinter and printing method thereof |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201010601021.0A CN102529404B (en) | 2010-12-13 | 2010-12-13 | Pinter and printing method thereof |
Publications (2)
Publication Number | Publication Date |
---|---|
CN102529404A CN102529404A (en) | 2012-07-04 |
CN102529404B true CN102529404B (en) | 2014-12-31 |
Family
ID=46337943
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201010601021.0A Active CN102529404B (en) | 2010-12-13 | 2010-12-13 | Pinter and printing method thereof |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN102529404B (en) |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6234079B1 (en) * | 1998-12-07 | 2001-05-22 | Roberto Igal Chertkow | Reusable digital printing plate |
CN2608274Y (en) * | 2003-03-31 | 2004-03-31 | 谢勇 | Flat straightened paper holographic printing machine |
US7987784B2 (en) * | 2006-12-19 | 2011-08-02 | Palo Alto Research Center Incorporated | Printing system employing deformable polymer printing plates |
US7677176B2 (en) * | 2006-12-22 | 2010-03-16 | Palo Alto Research Center Incorporated | Method of forming a reconfigurable relief surface using an electrorheological fluid |
-
2010
- 2010-12-13 CN CN201010601021.0A patent/CN102529404B/en active Active
Also Published As
Publication number | Publication date |
---|---|
CN102529404A (en) | 2012-07-04 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US20150343762A1 (en) | Formation of a Crease and an Image on Media | |
Su et al. | 4D printing of a self-morphing polymer driven by a swellable guest medium | |
US6164850A (en) | 3D printing and forming of structures | |
Smith et al. | Inkjet-based micromanufacturing | |
CN103380006B (en) | For making the method for the secure file with the security feature relevant to viewing angle | |
US6234079B1 (en) | Reusable digital printing plate | |
CN101958066B (en) | Protrusion pattern forming device with display function | |
CN102037331A (en) | Methods for measurement and characterization of interferometric modulators | |
EP1613476A2 (en) | Direct remote analog/digit printing devices, processes and mediums | |
CA2847721A1 (en) | Security display devices, their production and use | |
Cho et al. | Molecular‐Printed Thermochromic with Fast Color Switching | |
CN102529404B (en) | Pinter and printing method thereof | |
JP5469304B2 (en) | Printing method | |
Olivieri et al. | Fabrication of polymer lenses and microlens array for lab-on-a-chip devices | |
Fu | Design of a Hybrid Magnetic and Piezoelectric Polymer Microactuator | |
Wang et al. | Passively addressed robotic morphing surface (PARMS) based on machine learning | |
US20120183702A1 (en) | Fabrication of 3-dimensional micro-assemblies | |
CN208890682U (en) | Collect the friction nanometer power generator of acoustic wave energy | |
CN109245598A (en) | Collect the friction nanometer power generator of acoustic wave energy | |
KR100938352B1 (en) | Hard copy system including rewritable media | |
US10192471B2 (en) | Dynamical display based on chemical release from printed porous voxels | |
CN101300642A (en) | Electromechanical storage device | |
Hodgson | The role of paper in the future of printed electronics | |
Willert et al. | Printing techniques for batteries | |
CN1303405C (en) | Ink inventory detecting device |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant |