IDENTIFICATION MARKER EDUCATIONAL DEVICE AND IDENTIFICATION MARKER EDUCATIONAL PROCEDURE

The device and method form identification marks on workpieces by interacting marking means, using UV-curing inks and vibration to ensure unique expressions, addressing the need for individual recognizability and security in existing techniques.

DE102025145646A1Undetermined Publication Date: 2026-06-25LINTEC CORP
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Applications
Current Assignee / Owner
LINTEC CORP
Filing Date
2025-11-06
Publication Date
2026-06-25

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Abstract

[Task] An identification mark formation device and an identification mark formation method are provided, in which a new technique is applied with regard to the formation of an identification mark on a workpiece. [Solution] Identification mark formation device EA comprising a marking means provisioning means 10, by which a first marking means MA1 and a second marking means MA2 are provided on a workpiece WK, and by means of the provided first marking means MA1 and second marking means MA2 an identification mark DM with individual recognizability is formed, wherein at least one of the first marking means MA1 and second marking means MA2 is capable of flowing according to the provision, so that it flows according to the provision on the workpiece WK, and the marking means provisioning means 10 a first marking means provisioning means 13,comprising a first marking means MA1 on the workpiece WK, and a second marking means provision 15, by which the second marking means MA2 is provided on the workpiece WK, wherein the first marking means MA1 and the second marking means MA2 are provided on the workpiece WK such that they are in contact with each other, and by a flow according to the provision of at least one of the provided first marking means MA1 and second marking means MA2, an identification mark DM is formed, in which individual recognizability is guaranteed.
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Description

[Technical field] The present invention relates to an identification mark formation device and an identification mark formation method. [Background technology] A technique for forming an identification mark on a workpiece is known (see e.g. patent document 1). [State of the art documents] [Patent documents] [Patent Document 1] Patent Publication No. JP 2011-207107 A [Overview of the invention] [Problem to be solved by the invention] Patent document 1 discloses a technique by which an anti-counterfeiting pattern (an identification mark) is formed on a base material (workpiece) by means of a plateless printing process, although recently a new technique has been sought with regard to the formation of an identification mark on a workpiece. The present invention aims to provide an identification mark formation device and an identification mark formation method in which a new technique is applied with regard to the formation of an identification mark on a workpiece. [Means of solving the problem] The present invention uses the structures specified in the claims. [Effects of the invention] According to the invention, by providing a first marking means and a second marking means on a workpiece in such a way that they are in contact with each other, and by forming an identification mark by flowing according to the provision of at least one of the provided first marking means and second marking means, in which individual recognizability is guaranteed, an identification mark formation device and an identification mark formation method can be provided in which a new technique is applied with regard to the formation of an identification mark on a workpiece. [Brief explanation of the drawings] [Figs. 1A] to [Fig. 1G] are illustrative views of an identification mark forming device according to one embodiment of the present invention and illustrative views of the operation of this device. [Fig. 1H] are illustrative views of variations of the present invention. [Molds for carrying out the invention] In the following, an embodiment of the present invention will be explained with reference to the drawings. In the present embodiment, the X-axis, Y-axis, and Z-axis are each orthogonal to one another, with the X-axis and Y-axis lying in a specific plane, and the Z-axis being an axis orthogonal to that plane. Furthermore, in the present embodiment, when a direction is indicated without reference to a drawing based on a front view parallel to the Y-axis in Fig. 1A, "top" refers to the direction of the Z-axis arrow, "bottom" to its opposite direction, "left" to the direction of the X-axis arrow, "right" to its opposite direction, "front" to the front direction parallel to the Y-axis in Fig. 1A, and "back" to its opposite direction. An identification marking formation device EA, which carries out an identification marking formation method of the present invention, comprises a marking means provisioning means 10, which performs a marking means provisioning step in which a first marking means MA1 and a second marking means MA2 are provided on a workpiece WK, and an identification mark DM with individual recognizability (see Fig. 1D, Fig. 1E) is formed by the provided first marking means MA1 and second marking means MA2, a flow conveying means 20, which performs a flow conveying step in which a flow is conveyed according to the provision of the two first marking means MA1 and second marking means MA2 provided on the workpiece WK, an identification mark inspection means 30, which performs an identification mark inspection step in which inspection is carried out,whether individual recognition of the identification mark DM is possible or impossible, and a fastening means 40, which performs a fastening step in which UV irradiation is carried out on both of the first marking means MA1 and second marking means MA2 provided on the workpiece WK as a specific fastening process, by which both of the first marking means MA1 and second marking means MA2 are forcibly fastened to the workpiece WK, and is in the vicinity of a layering means 50, which performs a layering step in which the workpiece WK is formed by layering an adhesive film AS as a coating material onto a base material BM, an energy supply means 60, which performs an energy supply step in which heat HA as a specific energy is supplied to the adhesive film AS layered onto the base material BM, an imaging device 70, which performs an imaging step,in which an image depicting the identification mark DM is formed and the image in question is transmitted to another device TA, which performs a processing step in which a specific processing of the workpiece WK takes place, and to a movement means 80, which performs a movement step in which the workpiece WK is moved. In the case of the first marking means MA1 and the second marking means MA2 of the present embodiment, a UV-curing liquid ink is used as a means of a forced fastening, by which they are forcibly fastened to the workpiece WK by performing UV irradiation as a specific fastening process, so that flow is possible in both the first marking means MA1 and the second marking means MA2, so that they flow on the workpiece WK according to the provision. Furthermore, this is achieved bythat the adhesive film AS of the present embodiment is supplied with heat HA as a specific energy, causing a hardening as a change characteristic of the heat HA in question. The marking agent dispensing device 10 comprises two linear motors 11 as drive units, each of which moves slides 11A in the forward-backward direction; a linear motor 12, supported by the respective slides 11A, as a drive unit, by which a slide 12A can be moved in the left-right direction; a first inkjet nozzle 13, supported on the slide 12A, as a first marking agent dispensing device, which performs a first marking agent dispensing step in which the first marking agent MA1 is dispensed onto the workpiece WK; a first tank 14 as a first storage device, which transports stored first marking agent MA1 via a first hose 14A to the first inkjet nozzle 13; and a second inkjet nozzle 15 as a second marking agent dispensing device, which performs a second marking agent dispensing step in which the second marking agent MA2 is dispensed onto the workpiece WK.and a second tank 16 as a second storage device, which transports stored second marking agent MA2 via a second hose 16A to the second inkjet nozzle 15, wherein the first marking agent MA1 and second marking agent MA2 are provided on the workpiece WK in such a way that they are in contact with each other, and the identification mark DM is formed by a flow according to the provision of the two provided first marking agents MA1 and second marking agents MA2, whereby individual recognizability is guaranteed. In the present embodiment, a black UV-curing liquid ink is used as the first marking agent MA1 and a white UV-curing liquid ink is used as the second marking agent MA2. Furthermore, the first and second inkjet nozzles 13 and 15 of the present embodiment provide the first and second marking means MA1 and MA2 in a fine-grained form on the workpiece WK and, as shown in Fig. 1B and Fig. 1C, form the identification mark DM by means of a lettering consisting of the letters “ABC”. The flow conveying device 20 includes a vibrator 21 as a flow conveying device, which sets the workpiece WK into vibration. The identification marking inspection device 30 comprises a CCD camera 31 as an imaging device, an image matching device 32 as an inspection device and a RAM 33 as a storage device, and inspects whether the identification marking DM is individually recognizable. The CCD camera 31 produces an image in which the identification mark DM formed on the workpiece WK is magnified to a specific level. The image comparison device 32 inspects the image produced by the CCD camera 31 by comparing it with images stored in RAM 33. If there is no matching image (or if there is no image stored in RAM 33), it is determined that the identification mark DM representing the object being imaged by the CCD camera 31 is individually identifiable. Conversely, if there is a matching image, it is determined that the identification mark DM representing the object being imaged by the CCD camera 31 is not individually identifiable. Images for which the image comparison device 32 has determined that individual identification is possible are stored in RAM 33. The fastening device 40 includes a UV light device 41 as a fastening device that can emit UV rays. The layering device 50 comprises a base plate 51, which directly or indirectly supports the components of which the layering device 50 consists; a carrier roller 52, which supports a raw film RS in which the adhesive film AS has been temporarily adhered to a strip-shaped release film RL; a guide roller 53, which guides the raw film RS; a release plate 54, which serves as a release means by which the release film RL is folded over at a release edge 54A and the adhesive film AS is peeled from the release film RL; a pressure roller 55, which serves as a pressure means by which the adhesive film AS is layered onto the workpiece WK by pressing it; a drive roller 56, which is mounted on an output shaft (not shown) of a rotary motor 56A as a drive device and clamps the release film RL by means of a clamping roller 56B; and a collection roller 57, which serves as a collection means.which is carried on the output shaft of a drive unit not shown and, during the execution of an automatic operation of the identification marking forming device EA, always imparts a certain tension to the peelable film RL located between the clamping roller 56B and collects the peelable film RL. The energy supply unit 60 includes a heating coil 61 as an energy supply device that can supply the heat HA. The imaging device 70 comprises a CCD camera 71 as an imaging device equivalent to the CCD camera 31, forms an image by imaging the identification marking DM provided on the workpiece WK with a certain magnification and transmits the formed image to the other device TA. The motion means 80 comprises a linear motor 81 as a drive device, and a support table 82 carried via the flow conveying means 20 on a slide 81A of the linear motor 81, which has a support surface 82A in which suction and holding is possible by means of a pressure reducing means (holding means) not shown, such as a pressure reducing pump or a vacuum ejector. The operation of the aforementioned identification mark forming device EA is explained. First, after an operator of the identification marking forming device EA (hereinafter referred to simply as "operator") has inserted the raw film RS as shown in Fig. 1A, a signal to start automatic operation is input via an operating device (not shown), such as a control panel or a personal computer, to the identification marking forming device EA, whose respective components are arranged at an initial position shown in Fig. 1A. Then, the rotary motor 56A of the layering device 50 is driven and the raw film RS is unwound. The drive of the rotary motor 56A is interrupted when, as shown in Fig. 1A, a leading end section of the adhesive film AS at the tip has been peeled from the peeling film RL to a certain length in the unwinding direction by means of a folded section of the peeling film RL by means of a peeling edge 54A of the peeling plate 54.When an operator or a transport means not shown, such as a multi-jointed robot or a conveyor belt as shown in Fig. 1A, places the base material BM at a specific location on the carrier table 82, the pressure reducing means not shown is operated by the movement means 80, and after the suction and holding by the carrier surface 82A has begun, the linear motor 81 is operated so that the carrier table 82 moves to the left. Subsequently, when the base material BM has reached a specific position relative to the layering device 50, the rotary motor 56A is operated by the layering device 50, and the raw film RS is unwound at a speed adapted to the movement speed of the base material BM. This causes the adhesive film AS to be peeled from the release film RL by means of the fold section of the release film RL, and, as shown in Fig. 1A by a dashed-dotted line, pressed down by the pressure roller 55 and layered onto the base material BM, thus forming the workpiece WK.Next, after the entire adhesive film AS of the tip has been layered onto the base material BM and the workpiece WK has been formed, a further front end section of the adhesive film AS adjoining the adhesive film AS of the tip is peeled off from the peeling film RL to a certain length in the unwinding direction by means of the folding section of the peeling film RL, and the drive of the rotary motor 56A is interrupted by the layering means 50. When the workpiece WK reaches an energy supply position EP of the energy supply device 60, which is represented by a dashed-dotted line in Fig. 1A, the drive of the linear motor 81 is interrupted by the motion device 80. Next, the energy supply device 60 operates the heating coil 61, so that heat HA is supplied to the adhesive film AS and the adhesive film AS is cured. Once the adhesive film AS is cured, the drive of the heating coil 61 is then interrupted by the energy supply device 60, and the linear motor 81 is operated by the motion device 80, moving the carrier table 82 to the left. Next, when the workpiece WK reaches a marking-forming position MP of the marking agent device 10, which is represented by a dash-dotted line in Fig. 1A, the drive of the linear motor 81 is interrupted by the movement device 80. Then, the linear motors 11, 12 and the first inkjet nozzle 13 are operated by the marking agent device 10, as shown in Fig. 1B and Fig. 1C, the granulated first marking agent MA1 is applied to the workpiece WK, and the base of the identification mark DM is formed. Once the application of the first marking agent MA1 is complete, the drive of the first inkjet nozzle 13 is interrupted by the marking agent device 10, and the linear motors 11, 12 and the second inkjet nozzle 15 are operated, as shown in Fig. 1D and Fig. 1C.As shown in Figure 1E, the identification mark DM is formed by positioning the granulated second marking agent MA2 so that it makes contact with the first marking agent MA1 applied to the workpiece. Subsequently, when the application of the second marking agent MA2 is complete, the marking agent positioning device 10 interrupts the drive of the second inkjet nozzle 15. Then, the linear motors 11 and 12 are operated, and the slide 12A is returned to its initial position. When the operation of the inkjet nozzle 13 is interrupted by the marking agent positioning device 10, the vibrator 21 is operated by the flow conveying device 20, causing the first marking agent MA1 and the second marking agent MA2 to vibrate. The linear motor 81 is then operated by the movement device 80, and the carrier table 82 is moved to the left. Since the first marking agent MA1 and the second marking agent MA2 are provided in such a way that flow according to the plan is possible, the first marking agent MA1 and the second marking agent MA2 can, by being in contact with each other, flow individually and deform themselves in different ways, as shown, for example, in Fig. 1F, or they can, by being in contact with each other, flow into one another so that their individual boundary sections intertwine, they deform themselves in different ways, and random changes in expression occur through changes in their patterns, colors, and shapes, as shown in Fig. 1G.Since the first marking agent MA1 and the second marking agent MA2 cause random changes in expression, no identification markings DM with the same expression are formed, or only in extremely rare cases are identification markings DM with the same expression formed, so that individual recognizability of the relevant identification marking DM can be guaranteed. In the present embodiment, the vibration by the vibrator 21 promotes a flow according to the provision of the first marking means MA1 and the second marking means MA2, whereas, in comparison, when these vibrations are not present, the random expression changes of the first marking means MA1 and the second marking means MA2 increase considerably, and the individual recognizability is further improved. When the workpiece WK reaches a UV irradiation position UP of the fastening device 40, as shown in Fig. 1A with a dashed-dotted line, the drive of the linear motor 81 is interrupted by the movement device 80. Then, when the drive of the vibrator 21 is interrupted by the flow conveyor 20, the UV light device 41 is operated by the fastening device 40. By irradiating the first marking device MA1 and the second marking device MA2 with the UV rays UV, the first marking device MA1 and the second marking device MA2 are forcibly attached to the workpiece WK, and after the attachment is complete, the operation of the UV light device 41 is interrupted.Next, after the identification mark inspection device 30 operates the CCD camera 31 and an image is formed by imaging the identification mark DM, the image comparison device 32 and the RAM 33 are operated. An inspection is performed by comparing the image produced by the CCD camera 31 with the images stored in the RAM 33. If, as a result of this inspection, the image comparison device 32 determines that the identification mark DM, which became the image object of the CCD camera 31, is individually identifiable, the identification mark inspection device 30 operates the RAM 33, stores the image produced by the CCD camera 31, and includes it in the comparison from the next time. The linear motor 81 is then operated by the movement device 80, and the carrier table 82 is moved to the left. If, as a result of this inspection, the image comparison device 32 determines that the identification mark DM, which has become the image object of the CCD camera 31, is not individually recognizable, a drive start signal, such as an electrical signal or a radio signal, can be output to a warning device not shown, such as a light device or a sound generator, and the operator can be informed by means of light or sound that individual recognition is not possible; or a drive start signal can be output to a removal device not shown, such as a rejection device or a drive device, and care can be taken to ensure that the workpiece WK, which has become the image object of the CCD camera 31, is removed from the identification mark formation device EA. Subsequently, when the workpiece WK reaches an imaging position RP of the imaging device 70, as shown in Fig. 1A with a dash-dotted line, the drive of the linear motor 81 is interrupted by the movement device 80. The CCD camera 71 is then operated by the imaging device 70, the identification mark DM provided on the workpiece WK is imaged, and the resulting image is transmitted to the other device TA. The other device TA, which has received the image transmitted by the imaging device 70, stores the image in a storage device T3.Then, after the drive of the pressure reducing device (not shown) has been interrupted by the moving means 80 and the suction and holding by the support surface 82A has been lifted, the workpiece WK is transported by the operator or a transport means (not shown), the linear motor 81 is driven by the moving means 80, the support table 82 is returned to the initial position, and from then on the above operation is repeated. In the other device TA, during the course of a machining operation, e.g. before the execution of a specific machining operation on the workpiece WK or during a specific machining operation, the identification mark DM provided on the workpiece WK can be imaged by an imaging device T1 and an inspection can be carried out by comparing the imaged image with images stored in the storage device T3 by an inspection device T2.If the inspection by inspection device T2 shows a match, the other device TA performs or continues the specified machining operation on the workpiece WK, which has become the target of imaging device T1. Conversely, if there is no match, the other device TA does not perform the specified machining operation on the workpiece WK, which has become the target of imaging device T1, or interrupts the operation. This prevents the other device TA from performing a specific machining operation on a counterfeit or unsuitable workpiece WK. Since, according to the foregoing embodiment, the first marking means MA1 and the second marking means MA2 are provided on the workpiece WK in such a way that they are in contact with each other, and the provided marking means MA1 and marking means MA2 form the identification mark DM by flowing according to their provision, in which individual recognizability is guaranteed, an identification mark formation device EA and an identification mark formation method can be provided in which a new technique is used with regard to forming the identification mark DM. The means and steps of the present invention are not subject to any limitations as long as the operation, functions, or steps described with respect to these means and steps can be achieved, and even less so is there any limitation to the structures or steps of the single embodiment described above. For example, the flow conveying means can be any means as long as the conveyance of a flow is possible according to the provision of at least one of the first marking means and second marking means provided on the workpiece, and there is no limitation in this respect as long as, in comparison with the general technical knowledge at the time of this application, it is within this technical field (this also applies to other means and steps). The marking agent provision 10 can form the identification mark DM by providing the first marking agent MA1 and the second marking agent MA2 on at least one of the base material BM and the coating material; it can form the identification mark DM by providing the first marking agent MA1 and the second marking agent MA2 in such a way that any inscription results, such as characters like "ABCDEF", “”, “ “, digits including kanji digits such as “12345”, “ ", „ “, symbols such as “! # % &”, “+ - × ÷”, “ • / ”, patterns such as “•■▲”, “⊚∇◇”, it can form the identification mark DM through the provision of the first marking means MA1 and the second marking means MA2 in such a way that a single label such as only “A”, only “1”, only “#” or only “•” results, it can form the identification mark DM through the provision of the first marking means MA1 and the second marking means MA2 in such a way that a label combined from several elements of the same format results, such as “ “, “AAA”, “56298”, “#$%!?”, “•∇◇▲”, it can form the identification mark DM through the provision of the first marking means MA1 and the second marking means MA2 such that a label is created that is combined from one or more elements of a different format, such as “ A1•#“, „K C3•▲!&“ or % 38 AA▲□+ / “, it can form the identification mark DM by providing the first marking means MA1 and the second marking means MA2 in such a way that a different inscription results for each workpiece WK; it can form the identification mark DM by providing the first marking means MA1 and the second marking means MA2 in such a way that a completely or partially identical inscription results for all workpieces WK or a plurality of workpieces WK; it can use as first marking means provision means and second marking means such that the first marking means MA1 is provided on the workpiece WK in a misty, cube-shaped, cylindrical, prism-shaped, spherical or ellipsoidal spherical shape; it can use as first marking means provision means and second marking means apart from, for example, a relief printing press, an intaglio printing press,a planographic printing machine, a silk screen printing machine or a screen printing machine, an inkjet printer, a dot matrix printer, a thermal printer, a thermal transfer printer or a laser printer, wherein any means may be used as long as, taking into account the characteristics, properties, quality, material quality, composition and structure of the first marking means MA1 and the second marking means MA2, the provision of the first marking means MA1 and the second marking means MA2 on the workpiece WK is possible, wherein the first marking means provisioning means and the second marking means provisioning means may consist of similar devices, and e.g. the first marking means provisioning means and the second marking means provisioning means may both consist of a relief printing machine, or both of a thermal printer,or the first marking means and the second marking means may consist of different devices, and, for example, the first marking means may consist of a relief printing machine and the second marking means of a dot matrix printer, or the first marking means of a dot matrix printer and the second marking means of a screen printing machine, wherein the second marking means MA2 may be provided in such a way that it is in contact with part of the first marking means MA1, the first marking means MA1 may be provided in such a way that it is in contact with part of the second marking means MA2, the second marking means MA2 may be provided in such a way that it is in contact with the entire surroundings of the first marking means MA1, the first marking means MA1 may be provided in such a way thatthat it is in contact with the entire surroundings of the second marking means MA2, the second marking means MA2 can be provided such that it is in contact with the upper section of the first marking means MA1, or the first marking means MA1 can be provided such that it is in contact with the upper section of the second marking means MA2, wherein, for example, as in a single linear motor with a first slide and a second slide, the first marking means provision is carried by a first output section and the second marking means provision is carried by a second output section of a single drive unit with the first output section and second output section, and these can be moved, or a drive unit by which the first marking means provision is moved, and a drive unit by which the second marking means provision is moved,are provided separately, and move the first marking means provision and the second marking means provision, wherein, while the first marking means provision is provided to the workpiece WK by the first marking means provision, the second marking means provision may be provided to the workpiece WK by the second marking means provision, or, if the first marking means provision is provided to the workpiece WK by the first marking means provision, the second marking means provision may be provided to the workpiece WK simultaneously by the second marking means provision, wherein the ratio of the quantity of the first marking means MA1 and the quantity of the second marking means MA2 provided to the workpiece WK may be 1:1, or the ratio may also be 1:9, 3:7, 6:4 or 9.5:0.5, wherein, while the workpiece WK is being moved, or in a state in which movement of the workpiece WK is suppressed,The identification mark DM can be formed by moving the first marking means and the second marking means, or while the workpiece WK is being moved, or in a state where movement of the workpiece WK is suppressed, the identification mark DM can be formed by suppressing the movement of the first marking means and the second marking means. The marking means 10 can be formed by providing the first marking means MA1 and the second marking means MA2 on the workpiece WK in such a way that they are in contact with each other, and by flowing according to the provision of only the provided first marking means MA1, forming an identification mark DM in which individual recognizability is guaranteed; it can be formed by this.that the first marking means MA1 and the second marking means MA2 are provided on the workpiece WK in such a way that they are in contact with each other, and form an identification mark DM by means of a flow according to the provision of exclusively the provided second marking means MA2, whereby individual recognizability is guaranteed, wherein a first marking means MA1, in which a flow according to the provision is possible or a flow according to the provision is impossible, can be provided on the workpiece WK by the first marking means provision means, and a second marking means MA2, in which a flow according to the provision is possible or a flow according to the provision is impossible, can be provided on the workpiece WK by the second marking means provision means. The flow conveying device 20 can only convey a flow according to the provision at the first marking device MA1 provided on the workpiece WK, or only a flow according to the provision at the second marking device MA2 provided on the workpiece WK, wherein an eccentric motor, a piston vibrator or an electrodynamic vibrator can be used as the flow conveying device, and also a flow conveying device can be used that sets into vibrations in any direction, such as vibrations in the up-down direction, left-right direction, front-back direction, circumferential direction or a direction that includes at least one directional element of these, or vibrations in a direction combining these directions, wherein there is no restriction to a flow conveying device which sets the workpiece WK, the first marking device MA1 or the second marking device MA2 into vibration via the support table 82.and any flow conveying device can be used, e.g., a flow conveying device that vibrates the workpiece WK, the first marking means MA1, or the second marking means MA2 via the linear motor 81, or a flow conveying device that does not vibrate the workpiece WK, the first marking means MA1, or the second marking means MK2 directly or indirectly via a component of the means of motion 80, wherein a flow conveying device can also be used that sprays a gaseous matter such as air or gas onto the workpiece WK, the first marking means MA1, or the second marking means MA2 and promotes a flow according to the design of the first marking means MA1 or the second marking means MA2, or a flow conveying device can be used that promotes a flow according to the design of the first marking means MA1 or the second marking means MA2 by tilting the workpiece WK,or a flow conveying device can be used which brings the first marking agent MA1 or the second marking agent MA2 provided on the workpiece WK into contact by means of a contact component such as a plate-shaped component, a rod-shaped component or a brush-shaped component and promotes the flow according to the provision of the first marking agent MA1 and the second marking agent MA2, or a flow conveying device can be used which promotes the flow of the first marking agent MA1 and the second marking agent MA2 provided on the workpiece WK by supplying energy, e.g., electromagnetic waves such as UV rays, infrared rays, visible light, sound waves, X-rays or gamma rays, by heating, e.g., by hot water or hot air, or by cooling, e.g., by cold water or cold air,wherein any flow conveying device may be used as long as, taking into account the characteristics, properties, quality, material quality, composition and structure of the first marking agent MA1 and the second marking agent MA2, a flow according to the provision of the first marking agent MA1 and the second marking agent MA2 can be promoted, wherein the flow according to the provision of the first marking agent MA1 and the second marking agent MA2 can be promoted by moving the flow conveying device while the workpiece WK is moved, or in a state in which movement of the workpiece WK is suppressed, or the flow according to the provision of the first marking agent MA1 and the second marking agent MA2 can be promoted by suppressing the movement of the flow conveying device while the workpiece WK is moved, or in a state in which movement of the workpiece WK is suppressed,and it may or may not be included by the identification mark forming device EA of the present invention. The identification mark inspection device 30 can use any imaging device such as an infrared camera, UV camera, ultrasonic camera, X-ray camera, an optical sensor, ultrasonic sensor, area sensor, line sensor, image sensor, a digital camera, microscope camera or film camera, whereby it can use an imaging device that magnifies the identification mark DM, e.g. 2x or 1000x, reduces it to 1 / 2 or 1 / 15 or images it at the same magnification, or it can use an imaging device that images the identification mark DM provided on the workpiece WK completely or partially, or it can use an imaging device that images the identification mark DM by penetrating the workpiece WK from the side of the workpiece WK and shining a light through the identification mark DM, it can use any inspection device such as an image comparison tool or an AI tool.It can also use an inspection device capable of inspecting an identification mark DM formed by means of a label consisting of numbers, symbols, or patterns; it can use any storage device such as flash memory, a CD-ROM, or a DVD-ROM, wherein at least two of the imaging device, inspection device, and storage device can be formed in one piece, wherein in addition to one function of the imaging device, inspection device, or storage device, it can also include at least one of the other two functions, wherein it is constructed in such a way that transmitting an image identical to an image stored in the storage device can also serve the function of the imaging means 70, and wherein the identification mark DM can be imaged by moving the imaging device while the workpiece WK is being moved, or in a state where movement of the workpiece WK is suppressed.or by suppressing the movement of the imaging means while the workpiece WK is moved, or in a state in which movement of the workpiece WK is suppressed, the identification mark DM can be imaged, and it may or may not be included by the identification mark forming device EA of the present invention. The fastening device 40 can, in the case that the first marking device MA1 and the second marking device MA2 are means of a forced fastening that are forcibly fastened by means of irradiation processing with electromagnetic waves in which electromagnetic waves such as UV rays, infrared rays, visible light, sound waves, X-rays or gamma rays are emitted, also use as a fastening device an electromagnetic wave emitting device such as an infrared irradiation device or an X-ray irradiation device, or, in the case that the first marking device MA1 and the second marking device MA2 are means of a forced fastening that are forcibly fastened by means of heat treatment in which a heating medium such as hot air or hot water is provided,a heating device such as a heating coil or an infrared irradiation device may also be used as a fastening means; or, if the first marking means MA1 and the second marking means MA2 are means of a forced fastening that are forcibly fastened by means of a cold treatment in which a cooling medium such as cold air or cold water is provided, a cooling device such as a fan or a Peltier element may also be used as a fastening means; or, if the first marking means MA1 and the second marking means MA2 are means of a forced fastening that are forcibly fastened by means of drying by ventilation or heating, a drying device of a heating coil or a fan may be used as a fastening means; or, ifthat the first marking means MA1 and the second marking means MA2 are means of a forced fastening, which are forcibly fastened by means of a fastening provision process in which a different fastening means such as oxygen or a hardening agent is provided, a fastening provision device such as an oxygen spray device or a hardening agent provision device is used as the fastening means, wherein any fastening device can be used as long as, taking into account the characteristics, properties, quality, material quality, composition and structure of the means of a forced fastening, a forced fastening of the means of a forced fastening to the workpiece WK is possible, wherein provision at a location other than that shown in this embodiment is possible, and any provision is possible.as long as a forced fastening of the means of a forced fastening to the workpiece WK is possible, wherein, according to the provision of the means of a forced fastening to the workpiece WK, a specific fastening operation can be carried out on the means of a forced fastening immediately or after the expiry of a certain time, wherein by moving the fastening device while the workpiece WK is moved, or in a state in which a movement of the workpiece WK is suppressed, the first marking means MA1 and the second marking means MA2 can be forcibly fastened to the workpiece WK, or by suppressing the movement of the fastening device while the workpiece WK is moved, or in a state in which a movement of the workpiece WK is suppressed, the first marking means MA1 and the second marking means MA2 can be forcibly fastened to the workpiece WK,and it may or may not be included by the identification marking-forming device EA of the present invention. The fastening means 40 can perform a specific fastening operation only on the first marking means MA1 provided on the workpiece WK, by which only the marking means MA1 is forcibly attached to the workpiece WK, or it can perform a specific fastening operation only on the second marking means MA2 provided on the workpiece WK, by which only the second marking means MA2 is forcibly attached to the workpiece WK. The layering agent 50 can also be produced by making a cut in the form of a closed circle or along the entire short-width direction in a tape-shaped adhesive film base material that has been temporarily adhered to a tape-shaped release film RL, peeling off the adhesive film AS from the raw film RS, in which a specific area subdivided by this cut has become the adhesive film AS, and layering it onto the base material BM. Alternatively, it can be produced by using a tape-shaped adhesive film raw film in which a tape-shaped adhesive film base material has been temporarily adhered to a tape-shaped release film RL, and by making a cut in the form of a closed circle or along the entire short-width direction in the adhesive film base material amidst the unwinding of the tape-shaped adhesive film raw film by a cutting blade as a cutting agent, and by peeling off the adhesive film AS from the raw film RS.where a specific area subdivided by this incision has become the adhesive film AS, the adhesive film AS can be peeled off and layered onto the base material BM; it can be peeled off from a raw film RS, where a band-shaped adhesive film AS has been temporarily adhered to a band-shaped release film RL, and layered onto the base material BM; a specific tension can be applied to the adhesive film AS during layering onto the base material BM by controlling the speed and tension of the unwinding raw film RS, or layering tension control can be implemented so that no tension is applied; an adhesive film AS, which is not wound but, for example, zigzag folded, can be peeled off the raw film RS and layered onto the base material BM; a pressure-applying device constructed in this way can also be used.that the adhesive film AS is held by means of a holding component mounted on the output shaft of a DC motor as a drive device, in which suction and holding are possible by means of a pressure reducing device (not shown), such as a pressure reducing pump or a vacuum ejector, and the adhesive layer AS held by the holding device is pressed onto the base material BM and layered on; it can also use a collecting device in which the release film RL is collected not by winding it up, but, for example, by folding it in a zigzag pattern or cutting it into small pieces by a shredder and simply piling it up; it can use no collecting device; or it can use an adhesive film AS that is not temporarily adhered to a release film RL. The layering device 50 can layer a coating material on only one surface or only on the other surface of the base material BM.However, a coating material can also be applied to both surfaces, as shown in Fig. 1B. A coating material can be applied partially to one surface of the base material BM, a coating material can be applied completely to one surface of the base material BM, or a coating material can be applied partially or completely to all surfaces of the base material BM. The coating material can be applied to the base material BM by spraying or applying it, the method of application being arbitrary as long as the coating material is applied to the base material BM and the workpiece WK is formed. The coating material can also be applied to the base material BM by moving the base plate 51 while the base material BM is being moved, or in a state where movement of the base material BM is suppressed.or the coating material can also be applied to the base material BM by suppressing the movement of the base plate 51 while the base material BM is moved, or in a state in which movement of the base material BM is suppressed, and it may or may not be included by the identification mark forming device EA of the present invention. The energy delivery device 60 can supply a specific energy to the entire coating material or a part of the coating material. It can use as an energy delivery device any type of energy, such as an electromagnetic wave delivery device that supplies UV rays, infrared rays, visible light, sound waves, X-rays, or gamma rays; a heating device that supplies a heating medium such as hot air or hot water; or a cooling device that supplies a cooling medium such as cold air or cold water. Any device can be used as long as, taking into account the parameters, properties, quality, material quality, composition, and structure of the coating material, a change characteristic of that energy is effected in the coating material in question. For example, it can be, as shown in Fig.1A, represented by a dash-dotted line, uses a heating coil 62, located inside the support table 82 and on the support surface 82A, as an energy supply device that can supply heat as a specific energy; it can use both the heating device 61 and the heating coil 62, or it can use only one of either the heating device 61 or the heating coil 62; it can supply a specific energy to the coating material by moving the energy supply device while the workpiece WK is moved, or in a state where movement of the workpiece WK is suppressed; it can also supply a specific energy to the coating material by suppressing movement of the energy supply device while the workpiece WK is moved, or in a state where movement of the workpiece WK is suppressed; and it may or may not be included by the identification marking forming device EA of the present invention. The imaging device 70 can consist of an imaging device that is equivalent or not equivalent to the imaging device of the identification marking inspection device 30, and can image the identification mark DM by means of a method that is equivalent or not equivalent to that of the imaging device of the identification marking inspection device 30; it can form a plurality of images by repeatedly imaging a single workpiece WK, transmit one image, a plurality of but not all images, or all images to the other device TA; it can image the identification mark DM by moving the imaging device while the workpiece WK is being moved, or in a state in which movement of the workpiece WK is suppressed; it can suppress movement of the imaging device while the workpiece WK is being moved, or in a state in which movement of the workpiece WK is suppressed.in which movement of the workpiece WK is suppressed, the identification mark DM is formed, and it may or may not be included by the identification mark forming device EA of the present invention. The moving means 80 can use a carrier table 82 in which suction and holding by means of the carrier surface 82A is not possible, the carrier table 82 can also not be carried via the flow conveying means 20 on the slide 81A, and it may or may not be included by the identification marking forming device EA of the present invention. The identification marking forming device EA can be directly or indirectly connected to the flow conveying means 20, the identification marking inspection means 30, the fastening means 40, the layering means 50, the energy supply means 60, the imaging means 70, the moving means 80, or the other device TA, or it may not be directly or indirectly connected to them. The marking means provisioning means 10, the flow conveying means 20, the identification marking inspection means 30, the fastening means 40, the layering means 50, the energy supply means 60, the imaging means 70, the moving means 80, and the other device TA can also be arranged at a suitable location such that the marking means provisioning step, the flow conveying step, the identification marking inspection step, the fastening step, the layering step, the energy supply step, the imaging step,The movement step and the processing step can be carried out in a suitable sequence, whereby, for example, with the same arrangement structure as in the preceding embodiment, a change in operation can be made, and after the first marking means MA1 and the second marking means MA2 have been provided on the workpiece WK by the marking means provisioning means 10, the workpiece WK can be transported in the opposite direction, i.e., to the right, by the movement means 80, and a certain energy can be supplied to the adhesive film AS by the energy supply means 60, so that after the marking means provisioning step, the energy supply step takes place, or a change in the arrangement can be made in the preceding embodiment, and the energy supply means 60 can be arranged between the marking means provisioning means 10 and the fastening means 40, or between the fastening means 40 and the imaging means 70.or, for example, a change in operation and a change in arrangement may occur such that the flow conveying step takes place between the first marking material provisioning step and the second marking material provisioning step, or a change in operation and a change in arrangement may occur such that the fastening step takes place between the first marking material provisioning step and the second marking material provisioning step, or a change in operation and a change in arrangement may occur such that the fastening step is performed between the first marking material provisioning step and the second marking material provisioning step, and another fastening step is performed after the second marking material provisioning step. In the identification marking forming device EA, the identification marking inspection step is designed to take place before the execution of the fastening step.where, in the event that the identification mark inspection step in question determines that the identification mark DM is not individually identifiable after the flow conveying step has been carried out for a certain period of time, or after a certain period of time has elapsed without the flow conveying step being carried out, a repeat operation in which a further identification mark inspection step is carried out may be carried out repeatedly until the identification mark inspection step determines that the identification mark DM is individually identifiable; and in the event that, even after several repetitions of the repeat operation, the identification mark inspection step determines that the identification mark DM is not individually identifiable,a drive start signal is issued to a warning device and a removal device, and the workpiece WK, which had become the imaging object of the CCD camera 31, can be removed from the identification marking-forming device EA. The other device TA can be any device, such as a cleaning device, etching device, immersion device, cutting device, oxidation film forming device, nitriding device, grinding device, sandblasting device, polishing device, painting device, laminating device, foil gluing device, surface treatment device, drilling device, bending device, testing device, inspection device, lighting device, coating device, or counterfeit detection device; it can be directly or indirectly connected to the identification mark forming device EA, or it can be located anywhere, for example, without being directly or indirectly connected to the identification mark forming device EA.The identification mark forming device EA may be located in the same building or on the same premises, in a different building or on a different premises than the identification mark forming device EA, or in the building or on the premises of the delivery address to which the workpiece WK is delivered, and it may or may not be included by the identification mark forming device EA of the present invention. The other device TA consists of the imaging device T1, the inspection device T2, or the storage device T3, which may be equivalent or non-equivalent to the imaging device, inspection device, and storage device of the identification mark inspection device 30, wherein, by means of an imaging device,Inspection device and storage device of the identification mark inspection device 30 equivalent or non-equivalent method, the identification mark DM can be imaged, inspected or stored, wherein the imaging device T1 can be any device as long as it can form an image which can be compared by the inspection device T2, the inspection device T2 can be any device as long as it can inspect an image formed by the imaging device T1 and an image transmitted by the imaging device 70, and the storage device T3 can be any device as long as it can store an image formed by the imaging device T1 and an image transmitted by the imaging device 70. Of the first marking agent MA1 and second marking agent MA2, only the first MA1 may be such that flow is possible according to the provided instructions, or only the second MA2 may be such that flow is possible according to the provided instructions. The first MA1 and second MA2 marking agents, which are designed to flow according to the provided instructions, may be any agent as long as it flows according to the provided instructions on the workpiece WK. This could include, for example, oil-based or water-soluble ink, paint, varnish, lacquer, or adhesive; molten metal, molten solder, molten resin, or molten rubber in the stage prior to fixing; or a resin or adhesive of a thermosetting mold, an energy beam-curing mold, a dry-curing mold, or a mixed-curing mold.which do not harden in the stage before fastening, which may be one in which, in the state according to the provision on the workpiece WK, flow according to the provision occurs without the addition of a load, one in which, in the state according to the provision on the workpiece WK, flow according to the provision occurs with the addition of a load, or one in which, in the state according to the provision on the workpiece WK, flow according to the provision occurs by the supply of energy from electromagnetic waves such as UV rays, infrared rays, visible light, sound waves, X-rays or gamma rays, by heating by hot air or hot water, or by cooling by cold water or cold air. The first marking agent MA1 and the second marking agent MA2, which are designed so that flow is not possible according to the instructions, can be any agent as long as it does not flow on the workpiece WK according to the instructions, except for e.g.A label adhesive film can be cited as an example of a marking medium used for a dot matrix printer, thermal printer, thermal transfer printer or laser printer, wherein a marking medium in which flow according to the plan is possible, compared to such a marking medium in which flow according to the plan is not possible, causes various shape changes by flowing along the edge section of the marking medium in which flow according to the plan is not possible, or by flowing in the form of seepage into the marking medium in which flow according to the plan is not possible, by which the print changes, so that individual recognizability of the identification mark DM in question can be guaranteed. The first marking agent MA1 and the second marking agent MA2 can be an agent that promotes a flow according to providence by any process such as spraying with a gaseous matter, an inclination, or contact with a contact component, or one that does not promote a flow according to providence. In the event that the first marking agent MA1 and the second marking agent MA2 are both promoted by the same flow conveying device, the flow conveying device 20 can promote a flow according to the providence for both the first marking agent MA1 and the second marking agent MA2 with a single flow conveying device, wherein a first flow conveying device promoting a flow according to the providence of the first marking agent MA1 and a second flow conveying device promoting a flow according to the providence of the second marking agent MA2 may also include a first flow conveying device promoting a flow according to the providence of the first marking agent MA1.and may include a second flow conveying device that promotes flow according to the provision of the second marking agent MA2, wherein the flow conveying device 20 may, in the case that flow according to the provision is promoted only in the case of the first marking agent MA1 by the flow conveying device, comprise a flow conveying device that promotes only flow according to the provision of the first marking agent MA1, and the flow conveying device 20 may, in the case that flow according to the provision is promoted only in the case of the second marking agent MA2 by the flow conveying device, comprise a flow conveying device that promotes only flow according to the provision of the second marking agent MA2. Only the first marking device MA1 can be a means of a forced fastening, only the second marking device MA2 can be a means of a forced fastening, or both the first marking device MA1 and the second marking device MA2 can be means of a forced fastening. At least one of the first marking means MA1 and second marking means MA2 can be a means of forced attachment, which is forcibly attached to the workpiece WK by any processing method such as electromagnetic irradiation, heat treatment, cold treatment, drying, or other specific fastening processes. Examples of a means of forced attachment where forced attachment to the workpiece WK is achieved by electromagnetic irradiation include UV-curing ink or UV-curing varnish, infrared-curing resin, or infrared-curing adhesive. Examples of a means of forced attachment where forced attachment to the workpiece WK is achieved by heat treatment include a thermosetting resin.Examples of a means of forced attachment, where forced attachment to the workpiece WK is achieved by means of cold treatment, include a thermosetting adhesive or toner; examples of a means of forced attachment, where forced attachment to the workpiece WK is achieved by means of drying, include paint, varnish, lacquer, or adhesive; and examples of a means of forced attachment, where forced attachment to the workpiece WK is achieved by means of premeditation, include an oxygen-binding ink or an oxygen-binding resin, a two-component ink, or a two-component resin. At least one of the first marking means MA1 and the second marking means MA2 can be a means ofthat adheres to the workpiece WK even without the execution of a specific fastening process, e.g., by natural cooling, natural drying, or natural oxidation. Examples of substances adhered to the workpiece WK by natural cooling include molten metal, molten solder, molten resin, and molten rubber. Furthermore, examples of substances adhered to the workpiece WK by natural drying include paint, varnish, lacquer, or adhesive. Additionally, examples of substances adhered to the workpiece WK by natural oxidation include resins or adhesives that harden by bonding with an oxide occurring in the atmosphere. At least one of the first marking means MA1 and the second marking means MA2 can be a means of forced attachment, which is attached to the workpiece WK without the execution of a specific fastening process, e.g., by natural cooling, natural drying, or natural oxidation, and which is forcibly attached to the workpiece WK by the execution of a specific fastening process, wherein examples of a means of forced attachment that is attached to the workpiece WK by natural cooling and which is forcibly attached to the workpiece WK by the execution of a specific fastening process include molten metal, molten solder, molten resin, and molten rubber, wherein in this case the fastening means 40 can use a blower or a Peltier element as a fastening device.Furthermore, examples of a means of forced fastening that adheres to the workpiece WK by natural drying and is forcibly attached to the workpiece WK by performing a specific fastening process include paint, varnish, lacquer, or adhesive, in which case the fastening means 40 may use a heating coil or a blower as a fastening device. Additionally, examples of a means of forced fastening that adheres to the workpiece WK by natural oxidation and is forcibly attached to the workpiece WK by performing a specific fastening process include a resin or adhesive that hardens by bonding with an oxide occurring in the atmosphere, in which case the fastening means 40 may use an oxygen sprayer or blower as a fastening device. If the first marking means MA1 and the second marking means MA2 are means of a forced fastening that are forcibly attached to the workpiece WK by the same specific fastening process, the fastening means 40 can forcibly attach both the first marking means MA1 and the second marking means MA2 to the workpiece WK by means of a single fastening device; however, it can also comprise a first fastening device by which the first marking means MA1 is forcibly attached to the workpiece WK, and a second fastening device by which the second marking means MA2 is forcibly attached to the workpiece WK; if the first marking means MA1 and the second marking means MA2 are means of a forced fastening that are forcibly attached to the workpiece WK by different specific fastening processes,The fastening device 40 can comprise a first fastening device by which the first marking device MA1 is forcibly attached to the workpiece WK, and a second fastening device by which the second marking device MA2 is forcibly attached to the workpiece WK. If only the first marking device MA1 is a means of forcibly possible fastening, which is attached to the workpiece WK by a specific fastening process, the fastening device 40 can comprise a fastening device by which only the first marking device MA1 is forcibly attached to the workpiece WK. If only the second marking device MA2 is a means of forcibly possible fastening, which is attached to the workpiece WK by a specific fastening process, the fastening device 40 can comprise a fastening device by which only the second marking device MA2 is forcibly attached to the workpiece WK.The first marking means MA1 and the second marking means MA2, which are forcibly attached by a specific fastening process, can be means of a forcibly possible fastening, where, by design, no fastening will ever occur on the workpiece WK, and a fastening on the workpiece WK occurs through the execution of a specific fastening process; however, they can also be means of a forcibly possible fastening, where, by design, a fastening on the workpiece WK will eventually occur, and the fastening time on the workpiece WK is accelerated by the execution of a specific fastening process.The first marking agent MA1 and the second marking agent MA2 can have the same or different composition, they can have the same or different viscosity, and they are not limited to black and white, but can be any color combinations such as red and light blue, grey and green or black and yellow. The identification mark DM can be a label modeled by grouping the first marking element MA1, which is provided at multiple locations, and the second marking element MA2, which is provided at multiple locations; it can also be a label modeled by grouping the first marking element MA1, which is provided at multiple locations, and the second marking element MA2, which is provided at only one location; it can also be a label modeled by grouping the first marking element MA1, which is provided at only one location, and the second marking element MA2, which is provided at multiple locations; or it can be a label modeled in a specific form only by the first marking element MA1.and the second marking means MA2 is provided at multiple locations or only at one location such that it makes contact with the first marking means MA1, and it can be, as shown in Fig. 1H, a marking of a specific shape that is not only modeled by the provision of the first marking means MA1, but the marking is also modeled by the fact that the second marking means MA2 is provided in such a way that it makes contact with the first marking means MA1. The identification mark DM can be used for any purpose, e.g., for a determination such as a determination of forgery, a determination of authenticity, a determination of tampering, or a pass / fail quality control of the workpiece WK, for a confirmation such as an individual confirmation or a pass / fail confirmation of the workpiece WK, or for an acknowledgment such as a statement of fact or approval. In the case of workpiece WK, a coating material can be applied to both surfaces of the base material BM, it can also consist only of the base material BM, it can also have no coating material applied, it can also be supported by an adhesive film other than the adhesive film AS, or it can be supported by another adhesive film and the other adhesive film in question can be supported by a carrier material such as a ring-shaped component or a rod-shaped component. It can be any coating material, as long as the base material BM can be coated with it, such as an adhesive film, adhesive strip, tape, glue, bonding agent, resin, rubber, metal, solder, wax or varnish, wherein it can be a solid-like substance, a liquid substance or a gel-like substance, wherein it can be larger or smaller than the workpiece WK, or can be of the same size, wherein it can be such that it is subjected to any energy, such as heating energy from electromagnetic radiation, e.g.UV rays, infrared rays, visible light, sound waves, X-rays or gamma rays, or heat from hot water or hot air, or cooling energy such as from cold water or cold air, as a specific energy, cause a change characteristic of this energy, whereby the characteristic change caused by the supply of the specific energy can be any change such as hardening, softening, contraction, expansion, evaporation, liquefaction, solidification, a change in color, oxidation, infiltration, fixation or a decrease or increase in the adhesive force, it can be such that no change characteristic of the specific energy is caused by the supply of the specific energy, and it can also not be layered onto the workpiece WK. The material quality, type, and shape of the workpiece WK, the base material BM, the first marking agent MA1, the second marking agent MA2, and the coating material are not subject to any particular restrictions. For example, the workpiece WK, the base material BM, and the coating material can be circular, oval, polygonal (such as a triangle or square), or have any other shape. The coating material can have an adhesive type such as pressure-sensitive or heat-sensitive adhesion. When using an adhesive film AS with heat-sensitive adhesion, the application can be carried out by a suitable method, such as providing a heating element suitable for heating the adhesive film AS, like the heating element of a heating coil or a heating tube.Furthermore, it can be any adhesive film AS, such as a single-layer adhesive film consisting of only one adhesive layer, a two-layer adhesive film consisting of a base material and an adhesive layer, a three-layer or more than three-layer adhesive film in which one or more intermediate layers are layered between the base material and the adhesive layer, a three-layer or more than three-layer adhesive film in which one or more cover layers are layered on the top of the base material, an adhesive film in which the base material, an intermediate layer or a cover layer is provided to be removable, a single-layer double-sided adhesive film consisting of only one adhesive layer or a double-sided adhesive film in which an adhesive layer is layered on both outermost surfaces of one or more intermediate layers.Furthermore, the base material BM or the workpiece WK can be, apart from a semiconductor wafer (e.g., a silicone semiconductor wafer, a compound semiconductor wafer, or a diamond semiconductor wafer), a food product, a plastic container, a data storage substrate such as a printed circuit board or an optical storage disk, a single body made of a glass plate, a sheet of steel, a ceramic, a wooden board, or a resin, or a composite body made of two or more than two of these, and can also be a component or an article of any shape. The adhesive film AS can optionally also be a film, a foil, or a tape such as a data carrier label, a decorative label, a protective film, a dicing tape, a die-attach film, a die-bonding tape, or a resin film forming a recording layer. In the present embodiment, individual electrical devices such as a rotary motor, a DC motor, a linear motor, a single-axis robot or a so-called multi-jointed robot comprising two, three or more than three joints, an actuator of an air cylinder, hydraulic cylinder, rodless cylinder or rotary cylinder can be used as drive devices, whereby one in which these electrical devices and actuators are directly or indirectly combined can also be used, and one in which torque control and speed control of the output section of these electrical devices and actuators is possible or not. In the present embodiment, given a certain object (hereinafter referred to as "object A") and an object moving towards object A (hereinafter referred to as "object B"), i.e., an object A and an object B moving relative to each other, object B can move towards the stationary object A, object A can move towards the stationary object B, both object A and object B can move, or one of object A and object B can move, as long as the result achieved by the movement is the same. In the case that a rotating component such as a roller is used, a drive device may be included by which the rotating component is driven. The surface of the rotating component and the rotating component itself may be made of a deformable material such as rubber or resin.or the surface of the rotating component and the rotating component itself may be made of a non-deformable material, wherein instead of the roller another component such as a shaft or a vane may be used, wherein in the case that a component is used through which an object to be pressed, such as a pressure means or a pressure component, such as a pressure roller or a print head, is pressed, instead of or together with the foregoing examples, apart from a roller, a round bar, a sheet material and a brush-shaped component, a component based on spraying with air or gas may also be used, wherein the pressing component may be made of a deformable material such as rubber, resin or foam, or of a non-deformable material such as metal or glass, wherein in the case that,that a peeling means or peeling component such as a peeling plate or peeling roller is used as a component for peeling off an object to be peeled off; instead of or in combination with the above examples, a component such as a plate-shaped component, a round rod, or a roller may also be used, wherein the peeling component may consist of a deformable material such as rubber or resin, or of a non-deformable material; wherein, in the case that a component is used for supporting (holding) a component to be supported (component to be held) such as a support means (holding means) or a support component (holding component), a gripping means such as a mechanical chuck or a chuck cylinder, or a structure for supporting (holding) a component to be supported by Coulomb force, adhesive (adhesive film, adhesive tape), adhesive (adhesive film, adhesive tape), magnetic force, Bernoulli adsorption,Suction-tight suction or a drive device can be used, wherein, in the event that a component such as a cutting means or a cutting component is used for cutting a component to be cut or for forming a cut or a dividing line in a component to be cut, instead of or together with the foregoing examples, a component for cutting by means of a cutting blade, a laser cutting device, an ion beam, thermal force, heat, water pressure, a heating wire, spraying with a liquid or gas can be used, wherein, in combination with a suitable drive device, cutting can also be carried out by moving the cutting component. [Explanation of reference symbols] EA Identification Mark Forming Device 10 Marking Agent Provisioning Device 13 First Inkjet Nozzle (First Marking Agent Provisioning Device) 15 Second Inkjet Nozzle (Second Marking Agent Provisioning Device) 20 Flow Conveyor 40 Fastening Device DM Identification Mark MA1 First Marking Agent MA2 Second Marking Agent WK Workpiece QUOTES INCLUDED IN THE DESCRIPTION This list of documents cited by the applicant was automatically generated and is included solely for the reader's convenience. The list is not part of the German patent or utility model application. The DPMA accepts no liability for any errors or omissions. Cited patent literature JP 2011-207107 A

[0003]

Claims

An identification marking forming device comprising a marking means-provisioning means by which a first marking means and a second marking means are provided on a workpiece, and by means of the provided first marking means and second marking means an identification mark with individual recognizability is formed, wherein at least one of the first marking means and the second marking means is capable of flowing according to the provision, so that it flows according to the provision on the workpiece, characterized in that the marking means-provisioning means comprises a first marking means-provisioning means by which the first marking means is provided on the workpiece, and a second marking means-provisioning means by which the second marking means is provided on the workpiece, wherein the first marking means and the second marking means are provided on the workpiece in such a way thatthat they come into contact with each other, and through a flow according to the provision of at least one of the intended first marking means and second marking means, the identification mark is formed, in which individual recognizability is guaranteed. Identification marking formation device according to claim 1, characterized in that a flow conveying means is included, by which a flow is conveyed according to the provision of at least one of the first marking means or second marking means provided on the workpiece. Identification marking formation device according to claim 1 or 2, characterized in that at least one of the first marking means or second marking means is a means of a forced fastening which is forcibly fastened to the workpiece by the execution of a specific processing, and a fastening means is included by which a specific fastening processing is carried out on the means of a forced fastening provided on the workpiece, by which the means of a forced fastening is forcibly fastened to the workpiece. An identification marking formation method, in which a marking means provisioning step is carried out in which a first marking means and a second marking means are provided on a workpiece, and an identification mark is formed by means of the provided first marking means and second marking means, which has individual recognizability, characterized in that at least in the case of the first marking means and second marking means, flow according to provision is possible, so that it flows according to provision on the workpiece, in the marking means provisioning step a first marking means provisioning step in which the first marking means is provided on the workpiece, and a second marking step in which the second marking means is provided on the workpiece are carried out, wherein the first marking means and the second marking means are provided on the workpiece in such a way thatthat they come into contact with each other, and through a flow according to the provision of at least one of the intended first marking means and second marking means, the identification mark is formed, in which individual recognizability is guaranteed.