WO2016155654A1 - 一种防伪打标系统 - Google Patents

一种防伪打标系统 Download PDF

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Publication number
WO2016155654A1
WO2016155654A1 PCT/CN2016/078243 CN2016078243W WO2016155654A1 WO 2016155654 A1 WO2016155654 A1 WO 2016155654A1 CN 2016078243 W CN2016078243 W CN 2016078243W WO 2016155654 A1 WO2016155654 A1 WO 2016155654A1
Authority
WO
WIPO (PCT)
Prior art keywords
ink
marking
inner core
swaying
counterfeiting
Prior art date
Application number
PCT/CN2016/078243
Other languages
English (en)
French (fr)
Inventor
石立公
Original Assignee
石立公
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from CN201510156211.9A external-priority patent/CN106142858B/zh
Priority claimed from CN201510155589.7A external-priority patent/CN106142860B/zh
Priority claimed from CN201510157423.9A external-priority patent/CN106142835B/zh
Application filed by 石立公 filed Critical 石立公
Publication of WO2016155654A1 publication Critical patent/WO2016155654A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/005Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
    • B41J2/01Ink jet
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed

Definitions

  • the utility model relates to the field of mechanical equipment, in particular to a swaying component, an anti-counterfeiting marking device and an anti-counterfeiting marking system.
  • the existing various anti-counterfeiting technologies are produced by printing, coding, etc.
  • the anti-counterfeiting marks manufactured are not limited by randomness and other factors, so that the marks are easily produced in the same manner.
  • the anti-counterfeit mark made by the manufacturer is easily copied or forged by other manufacturers or individuals, and such mark is not unforgeable and non-repudiation.
  • the existing anti-counterfeiting technology also has an anti-counterfeiting method for scanning paper texture, which uses the scanned image of the paper texture as an anti-counterfeiting mark, and uses the anti-counterfeiting mark to identify the related product, but the anti-counterfeiting method is applied in a narrow range, only It is suitable for papers with obvious texture differences such as rice paper, and has the disadvantages of complicated operation process and high running cost.
  • there is also an anti-counterfeiting method that uses an isotope-irradiated article to leave an anti-counterfeit mark after being irradiated on the article. This anti-counterfeiting method is costly and can also be forged.
  • the utility model provides an anti-counterfeiting marking system, which can make the produced anti-counterfeiting mark unique, and can prevent other manufacturers or individuals from copying or forging, has high work efficiency, and is convenient for the enterprise assembly line. application.
  • the present invention provides an anti-counterfeiting marking system, including a marking system, a sampling system, and a control device; the marking system includes an anti-counterfeiting marking device; the sampling system includes a sampling device and an information storage device; The sampling device and information storage device The marking system and the sampling system are both connected to the control device; the control device comprises a main controller, a sensor and an execution controller, and the control device is used to control the coordination work of the marking system and the sampling system.
  • the anti-counterfeiting marking device includes a swaying device including a swaying member, a fixing member, a rotating bracket, a rotating shaft, a cam device, a spring, a base, and an ink supply device; the swaying member is matched by a fixing member Mounted on the rotating bracket; one end of the rotating bracket is mounted on the base by a rotating shaft; the cam device is cooperatively mounted on the base; and the spring is respectively installed with the base and the rotating bracket;
  • the ink supply device can hold the ink and cooperate with the swaying member; the ink supply device cooperates with the swaying member and/or the base and/or the swaying device.
  • the swaying member includes an outer protective sleeve, an ink outlet, and an ink storage mechanism; the ink outlet is located on the outer protective sleeve; the ink outlet is in communication with the ink storage mechanism; the ink storage mechanism is capable of storing a liquid; When the part moves and/or changes from the moving state to the stopped state, the liquid stored inside can fly out through the ink outlet:
  • the swaying member includes a front end device and an ink sac;
  • the front end device includes a front end protection sleeve, an inner core that is disposed in the front end protection sleeve; and a gap between the outer wall of the inner core and the front end protection sleeve is disposed at a certain distance;
  • the front end protective sleeve is fixedly connected with the inner core;
  • the ink bag has a hollow bag shape, and the open end thereof is sealingly connected with the tail portion of the inner core;
  • the rear end of the inner core is matched with the channel 2 for communicating with the inside of the ink bag.
  • the end of the channel is in communication with the interior of the ink bag, and the other end is in communication with the gap; the front side portion and/or the front portion of the front end protective cover is provided with one or more ink outlets, and the ink outlet is connected to the gap .
  • the swaying component further includes a venting duct, a passage 1; the venting duct is matched and installed in the ink sac; the inner core is provided with a passage 1 matched with the venting duct; and the passage 1 and the inner core are connected to the front and rear ends .
  • the rear end of the inner core is provided with a protrusion of a tubular structure, and the protrusion is fitted with the ink bag.
  • One end of the passage 2 communicates with the inside of the protrusion, and the other end communicates with the gap; the number of the two channels is one or more, and the matching is disposed on the inner core.
  • the swaying component further includes a back end protective sleeve, the back end protective sleeve and the inner core or the front end
  • the protective sleeve is matched with a fixed connection.
  • the inner core is a truncated cone or a cylinder, and the protrusion is disposed at the rear end of the inner core.
  • the size of the gap is 0.001 to 2 mm.
  • the outer edge shape of the ink outlet is circular, semi-circular, elliptical, semi-elliptical, in-line, oblong or a combination of the above.
  • the swaying member may further include an outer protective sleeve, an inner core, a passage, an ink inlet, an ink outlet and a gap; and a front end and/or a front portion of the swaying member is provided with one or more ink outlets; Outside the inner core; the gap is between the inner core and the outer protective sleeve; the ink inlet is disposed at the rear end of the inner core; the ink outlet is disposed at the front end of the inner core; and the passage is located at the rear of the inner core One end of the channel is in communication with the ink inlet and the other end is in communication with the gap.
  • the swaying device further includes a limiting component, the limiting component is fixedly mounted on the base; the limiting component may include one component, and may also include an upper component and a lower component; the upper component and the lower component pass Tighten the bolts to match.
  • the swaying device further includes a position adjusting device and a chassis; the base is mounted on the position adjusting device, and the position can be adjusted by the position adjusting device; the position adjusting device is fixedly mounted on the chassis.
  • the ink supply device comprises a continuous ink supply device; the continuous ink supply device comprises an ink tank and a pipe 2. The two ends of the pipe are coupled with the ink tank, and the other end is coupled with the rocking member, and the ink tank is A container for containing ink, the ink reservoir including an upper ink reservoir inlet and a lower ink cartridge outlet.
  • the continuous ink supply device further includes an ink storage tank, a pipe connected to the ink storage tank, and a liquid level sensor disposed in the ink tank, the other end of the pipe is coupled with the ink tank, and a pump or/and a one-way is arranged on the pipe. valve.
  • the position adjusting device includes a position adjusting mechanism or/and a rotating mechanism; the rotating mechanism includes a horizontal rotating member or/and a vertical rotating member; the rotating mechanism is cooperatively mounted above or below the position adjusting mechanism; the position adjusting mechanism is Three-dimensional position adjustment machine Structure, two-dimensional position adjustment mechanism or one-dimensional position adjustment mechanism.
  • the marking system also includes a conventional marking device that includes a printer or printer; the printer or printer is coupled to a control device.
  • the sampling device includes a picture information collecting device; the picture information collecting device is connected to the control device; the picture information collecting device collects the tagged picture information produced by the anti-counterfeiting marking device, and transmits the picture information to the control device and/or the remote server;
  • the control device is connected to the remote server, and the control device corresponds the picture information of the mark made by the anti-counterfeiting marking device to other related information of the mark, and then transmits the data to the remote server in real time or in batch.
  • the marking system further includes a baffle plate 1 and a baffle plate 2; the baffle plate 1 and the baffle plate 2 control the material to be stopped one by one, and are arranged on the material conveying passage according to the length of the single material.
  • the sampling system further includes a baffle plate 3 and a baffle plate 4.
  • the baffle plate 3 and the baffle plate 4 control the material to be stopped one by one, and are arranged on the material conveying passage according to the length of the single material.
  • the device adopts the marking system and the sampling system, so that the post-production anti-counterfeiting mark is not completed by the existing printing or coding, etc.; due to the randomness of the swaying action during the manufacturing process, the mark made by the device is made.
  • the pattern is random; even if it is made in the same way, the same mark cannot be made.
  • the printed or printed mark is a figure composed of an array of a plurality of tiny dots of equal size, after zooming in, the inside of the dot is a mixture of a plurality of color points, the edges are not continuously smooth, and the fallen ink
  • the traces formed by the dots are significantly different; the replicas produced by scanning or photographic printing can be clearly seen as prints under a magnifying glass of 50 times; the edges of the ink dots produced by the device are naturally infiltrated. State, the natural color of the ink dot is naturally smooth transition.
  • the distribution trend and distribution range of the anti-counterfeit mark produced by the device are small. Not only technically guarantees that the created mark is unique, it is not reproducible, and the collected mark information is transmitted to the remote service in real time or in batches.
  • the server can be used as a standard sample when identifying marks and is suitable for continuous production on industrial lines.
  • FIG. 1 is a schematic structural view of an embodiment of the present invention:
  • FIG. 2 is a schematic structural view of an embodiment of the anti-counterfeiting marking device of the present invention:
  • FIG. 3 is a schematic structural view of an embodiment of the swaying member of the present invention:
  • Outer protective cover 112. inner core, 113. channel, 114. pipe two, 115. ink inlet, 116. gap, 117. ink outlet.
  • FIG. 4 is a schematic structural view of an embodiment of the continuous ink supply device of the present invention:
  • Figure 5 is a schematic structural view of Embodiment 2 of the swaying member of the present invention:
  • Front end protective sleeve 32. Channel one, 33. Inner core, 34. Ventilation duct, 35. Channel two, 36. Raised, 37. Ink pouch, 38. Rear end protective sleeve, 39. Clearance, 40. Ink hole.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the utility model provides an anti-counterfeiting marking system, including a marking system.
  • the conventional marking device is a prior art device, and the conventional marking device includes a printer or a printer; the printer or printer is connected to the control device 3.
  • the conventional marking device can produce a two-dimensional code, a one-dimensional code, a character code, and the like under the control of the control device 3.
  • the control device 3 is a prior art device.
  • the main controller is connected to a sensor and an execution controller for sensing the working state of the marking system 1, the sampling system 4, the drying system 2, and the materials.
  • the execution controller controls the operation of various devices under the control of the main controller.
  • the material is conveyed on the material transport path 7, which may be realized by a prior art transfer belt or other device.
  • the anti-counterfeiting marking device includes a swaying device, and the swaying device includes a swaying member 11, a fixing member 12, a rotating bracket 13, a cam device 15, a spring 17, a limiting member 16, and a base 18.
  • the continuous ink supply device the swaying member 11 is fitted on the rotating bracket 13 by the fixing member 12, and the fixing member 12 is disposed at the middle front portion of the rotating bracket 13;
  • the fixing member 12 may be a component of the conventional ferrule type
  • the rotating component is used for rotating the swaying component 11 by a certain angle to adapt to different production needs.
  • the locking component is used to snap or secure the rotating component so that it does not accidentally rotate itself during operation.
  • the swaying member 11 and the rotating bracket 13 may be disposed in parallel or at a certain angle.
  • One end of the rotating bracket 13 is mounted on the base 18 via a rotating shaft 14.
  • the swaying member 11 includes an outer protective sleeve 111, an inner core 112, a channel 113, an ink inlet 115, an ink outlet 117, and a gap 116;
  • the outer protective sleeve 111 is disposed outside the inner core 112,
  • the ink inlet 115 is disposed at the rear end of the inner core 112
  • the ink outlet 117 is disposed at the front end of the inner core 112, and one or more ink outlets may be disposed, preferably two are disposed;
  • the gap 116 is located at the inner core 112 and Outer protective cover Between the 111, the ink outlet 117 and the ink inlet 115 are connected; one end of the passage 113 communicates with the inside of the pipe 2114, and the other end communicates with the gap 116.
  • the rear end of the inner core 112 is provided with a protrusion of a tubular structure, and the protrusion is fitted with the pipe 2114.
  • One end of the passage 113 communicates with the inside of the protrusion, and the other end communicates with the gap 116; the number of the passages 113 is one or more, and is matched to the inner core 112.
  • the inner core 112 is a truncated cone or a cylinder, and the protrusion is disposed at the rear end of the inner core 112.
  • the outer edge shape of the ink outlet is circular, semi-circular, elliptical, semi-elliptical, inline, oblong or a combination of the above, preferably elliptical.
  • the continuous ink supply device scheme 1 includes an ink storage tank 10, an ink tank 27, a pipe two 114, a pipe 24 connected to the ink storage tank 10, and a liquid level sensor 25 disposed in the ink tank 27, and the liquid level
  • the sensor 25 is a prior art device, and may be an ultrasonic level gauge, a laser level gauge, a liquid level switch, etc., one end of the pipe 24 is cooperatively connected with the ink storage tank 10, and the other end of the pipe 24 is coupled with the ink tank 27, One end of the pipe 2114 is mated with the ink tank 27, and the other end is cooperatively connected with the rocking member 11, the pipe 2114 may be a hose, the ink tank 27 is a container for containing ink, and the ink tank 27 includes an upper portion.
  • the ink tank inlet and the lower ink tank outlet; or the continuous ink supply device scheme 2 including the ink tank 27 and the pipe two 114, one end of the pipe two 114 is coupled with the ink tank 27, and the other end is connected with the rocking member 11
  • the conduit two 114 can be a hose
  • the ink reservoir 27 is a container for containing ink
  • the ink reservoir 27 includes an upper ink reservoir inlet and a lower ink cartridge outlet.
  • the continuous ink supply device scheme 1 is adopted to obtain a better marking effect.
  • the ink can fly out from the ink outlet 117 and splash on the area to be marked to form a marking pattern;
  • the cam device 15 is fitted on the base 18;
  • the spring 17 is fixedly mounted at one end On the base 18, the other end is fitted on the rotating bracket 13;
  • the limiting member 16 is fixedly mounted on the base 18;
  • the tilting device further includes a cam device 15;
  • the cam device 15 includes a cam and is coupled with the cam
  • the driving device further includes a motor fixedly coupled to the cam device 15, the motor is coupled to the driving wheel, and the motor is fixedly mounted on the base 18;
  • the tilting device further includes a position adjusting device and a chassis 21;
  • the position adjusting device is fixedly mounted on the chassis 21;
  • the base 18 is mounted on the position adjusting device;
  • the position adjusting device includes a position adjusting mechanism 20 and a rotating mechanism
  • the rotating mechanism 19 includes a horizontal rotating member or/and a vertical rotating member.
  • the rotating mechanism 19 is fitted on the position adjusting mechanism 20, and the rotating mechanism 19 can also be fitted under the position adjusting mechanism 20.
  • the position adjustment mechanism 20 is a prior art device capable of driving the device to move within a certain spatial range; the position adjustment mechanism may be a three-dimensional position adjustment mechanism, a two-dimensional position adjustment mechanism or a one-dimensional position adjustment mechanism.
  • the three-dimensional position adjustment mechanism is a prior art device capable of driving the device to perform three-dimensional movement within a certain spatial range; the rotation mechanism 19 includes a horizontal rotation member or/and a vertical rotation member.
  • the rotating mechanism 19 is a prior art device capable of driving the device to perform horizontal rotational motion and/or vertical rotational motion within a certain spatial range.
  • the swaying member 11 is fixedly mounted on the rotating bracket 13, and the swaying member 11 is fitted to the rotating bracket 13 by the fixing member 12, and the fixing member 12 is disposed at the center front portion of the rotating bracket 13.
  • the fixing member 12 may be a member of the conventional art, which is used to fix the swaying member 11 to the rotating bracket 13, or may be a rotating member with a locking function in the conventional art, and the rotating member is used for swaying
  • the components are rotated at an angle to accommodate different production needs, and the locking components are used to snap the stationary rotating components so that they do not accidentally rotate themselves during operation.
  • the tilting member 11 and the rotating bracket 13 may be parallel or at an angle.
  • One end of the rotating bracket 13 is mounted on the base 18 via a rotating shaft 14; in the direction of the rotating bracket 13, the end of the rotating shaft 14 is a rear end, and the other end of the rotating bracket 13 is a front end.
  • the cam device 15 is fitted on the base 18; when the cam of the cam device 15 rotates under the action of an external force, the tilting member 11 is driven upward by the jacking of the rotating bracket 13, and at the same time, the spring 17 is gradually stretched as a cam After reaching the drop point, the rotating bracket 13 falls rapidly under the action of the spring 17, and when the limiting member 16 is reached, the rotating bracket 13 stops falling; under the action of inertia, the ink in the moving member 11 flies out through the ink outlet 117. .
  • the cam device 15 can move back and forth along the direction of the rotating bracket 13 on the base 18, The closer the cam device 15 is to the rotating shaft 14 of the rotating bracket 13, the higher the height at which the rotating bracket 13 is lifted when the cam is moved to the highest point, and the greater the pulling force of the spring 17, the faster the falling speed of the rotating bracket 13 is made, The ink flying out of the swaying member 11 moves faster, and the amount of ink that is blown out in a single operation is more.
  • the cam device 15 includes a cam and a cam-connected transmission wheel; the cam device is coupled to the motor, and the motor is fixedly mounted on the base 18. The motor is coupled with the transmission wheel. When the motor moves, the transmission wheel is driven, and the transmission wheel drives the cam to rotate.
  • the limiting member 16 may include one member, and may also include an upper member and a lower member; preferably including an upper member and a lower member; the upper member and the lower member are coupled by a fastening bolt; the upper member and the lower portion are made by the prior art
  • the components can be fitted to each other to realize a structure capable of adjusting the height of the stopper member 16, and the height of the rotation bracket 13 can be changed by the height adjustment to adjust the swaying speed of the swaying member 11.
  • long holes that are matched with each other on the upper part and the lower part can be used, and the long holes are matched with the fastening bolts to realize the height adjustment of the limiting part 16.
  • the spring 17 When the spring 17 is in the tension spring structure, one end of the spring 17 is fixedly mounted on the base 18, and the other end is fitted on the rotating bracket 13.
  • the spring 17 can also adopt a structure of a compression spring.
  • One end of the spring 17 is coupled with the rotating bracket 13 and the other end is coupled with a fixing member mounted on the base 18.
  • the fixing member can be connected with the rotating shaft and the base.
  • the supporting member for supporting the function may also be a fitting member for fixing the fixing spring 17 separately provided on the base 18.
  • the springs 17 can be of different types of springs in the prior art. When different types of springs are used, a corresponding mating mounting method is used, which is a prior art.
  • the limiting member 16 is fixedly mounted on the base 18, and the height of the limiting member 16 is such that when the rotating bracket 13 falls onto the limiting member 16, it does not contact with the cam, so that the rotating bracket 13 first touches when falling rapidly.
  • the stop member 16 is provided to protect the cam from severe impact.
  • the stop member 16 can be mounted in front of or behind the cam gear 15.
  • a position adjustment device and a chassis 21 Also included is a position adjustment device and a chassis 21; the position adjustment device is fixedly mounted on the chassis 21; the base 18 is mounted on the position adjustment device; the position adjustment device includes a position adjustment mechanism 20 and a rotation mechanism 19; The rotating mechanism 19 is fitted and mounted Above the position adjustment mechanism 20, the rotation mechanism 19 can also be fitted to the underside of the position adjustment mechanism 20.
  • the position adjustment mechanism 20 is a prior art device that is capable of driving the device to move within a certain spatial range.
  • the rotating mechanism 19 includes a horizontal rotating member or/and a vertical rotating member.
  • the rotating mechanism 19 is a prior art device capable of driving the device to perform horizontal rotational motion and/or vertical rotational motion within a certain spatial range.
  • the ink tank 27 is a container for containing ink; a film vent 26 is disposed above the ink tank 27; the film vent 26 is used for air to enter and exit the ink tank 27, and the ink is volatilized into the air in the liquid surface of the ink tank 27 It cannot escape through the membrane vent 26.
  • the ink tank 27 is used to store a small amount of ink.
  • the ink tank 27 is disposed at a height higher than the ink outlet 117 of the swaying member 11, and preferably, the height is 20 cm.
  • the ink tank 27 includes an upper ink tank inlet and a lower ink tank outlet; the ink tank outlet is connected to the pipe two 114; the ink tank inlet is connected to the pipe 24; and the continuous ink supply device further includes a matching arrangement Pump 22 or/and check valve 23 on line 24.
  • the pump 22 can be an existing device such as a plunger pump, a metering pump, a centrifugal pump, or the like.
  • a drying system 2 includes a drying device; the drying device includes a fan or a hot air blower, an air duct; an inlet of the air duct is connected to an outlet of a fan or a hot air blower, and an outlet and material transfer of the air duct
  • the marking area of the material on the channel 7 is coordinated so that the air outlet can be purged to the marked area of the material on the material transport channel 7.
  • the drying system 2 is used to speed up the drying of the mark.
  • the sampling system 4 also includes a lighting device; the lighting device employs a corresponding device depending on the ink used, which device is a prior art device.
  • the violet ink is illuminated by a violet light
  • the infrared ink is illuminated by an infrared light
  • the ordinary ink is illuminated by a fluorescent light.
  • the picture information collecting device in the sampling device may use a camera, or a device having a digital camera to collect and collect data for external transmission, preferably using a camera; the picture information collecting device is fixed by using a bracket;
  • the information storage device includes a remote server; the camera is connected to the control device 3 and operates under the control of the control device; the camera transmits the tag information created by the anti-counterfeiting marking device to the control device 3 in real time; the control device 3 and the remote server After the connection, the control device 3 combines the tag information created by the anti-counterfeiting marking device with the tag information produced by the conventional marking device to form corresponding information. Transmit to the remote server in real time.
  • the conventional marking device is a prior art device, and may be a device capable of producing any one of a character code, a one-dimensional code, and a two-dimensional code, such as a printer or a printer.
  • the marking system 1 further includes a baffle plate 9 and a baffle plate 8; the baffle plate 9 and the baffle plate 8 are disposed on the material conveying passage 7 in accordance with the length of the single material.
  • the baffle plate 9 and the baffle plate 8 8 work in pairs under the control of the control device 3.
  • the baffle plate 9 and the baffle plate 8 are prior art devices, which are applied to the assembly line, and are used for the material to stay in the marking position one by one, and cooperate with the marking system 1.
  • the sampling system 4 further includes a baffle plate 3 6 and a baffle plate 4 5; the baffle plate 3 6 and the baffle plate 4 5 are disposed on the material conveying passage 7 in accordance with the length of the single material.
  • the baffle plate 3 6 and the baffle plate 4 5 work in pairs under the control of the control device 3.
  • the baffle three 6 and the baffle four 5 are prior art devices, which are applied to the pipeline during the working process, and are used for materials to stay at the sampling position one by one, and cooperate with the sampling system 4 to work.
  • This unit is powered by an external power source.
  • the difference between the second embodiment and the first embodiment lies in the swaying component.
  • the swaying member 11 includes a rear end device and a front end device; the rear end device is fixedly connected with the front end device; the rear end device includes a rear end protective cover 38, and is disposed in the rear end protective cover.
  • the ink bag 37 is used for holding ink for anti-counterfeiting marking.
  • the ink may be various colors such as black and red.
  • the ink may also be fluorescent ink, ultraviolet ink, infrared ink or the like;
  • the shape of the ink bag 37 is a hollow bag shape.
  • the rear end protective sleeve 38 is matched and mounted on the outside of the ink bag 37; the rear end protective sleeve 38 is fixedly coupled with the inner core 33 or the front end protective sleeve 31; the shape of the rear end protective sleeve 38 may be cylindrical, prismatic or cylindrical.
  • Various shapes, such as a combined shape of a prism and a prism, are preferably cylindrical, so as to be hand-held.
  • One end of the ventilation duct 34 extends into the ink bag 37, and the other end is fitted into the channel 32 on the inner core 33; in use, the ink hole 40 of the device is submerged in the ink, and the ink bag 37 is squeezed.
  • the air in the ink bag 37 is discharged through the air passage 34 and the passage 32, and the ink bag 37 is gradually restored to its original state after the hand is released, and at the same time, the ink enters the ink bag 37 under the action of the external atmospheric pressure.
  • one end of the ventilation duct 34 extends into the rear of the ink bag 37, and the other end of the ventilation duct 34 projects into the middle rear portion of the passageway 32.
  • the ventilation duct 34 may be a circular tube.
  • the inner diameter of the ventilation duct 34 is a circular tube of 0.6-1.0 mm.
  • the ventilation duct 34 is used to balance the air pressure inside and outside the ink bag 37 during normal use to facilitate the ink in the ink bag 37. Smooth out.
  • the front end device includes a front end protection sleeve 31 and an inner core 33 disposed in the front end protection sleeve 31.
  • the inner core 33 has a circular shape and a cylindrical shape, and the inner core 33 has an outer shape. They are a combination of a circular table body and a cylinder body.
  • the rear end of the inner core 33 is provided with a tubular structure protrusion 36.
  • the protrusion 36 is used for fitting with the ink bag 37, and the ink bag 37 can use the outer wall of the glue and the protrusion 36.
  • a channel 32 is provided in the inner core 33 to cooperate with the ventilation duct 4; preferably, the axis of the rear portion of the channel 32 coincides with the axis of the inner core 33; preferably, the front portion of the passage 32 and the ink
  • the hole 40 is in communication; the front portion of the passage 32 may also communicate only with the gap 39; the cross-sectional area of the passage 32 may be less than or equal to 1 square millimeter.
  • a gap 39 is provided between the outer wall of the inner core 33, that is, the outer surface and the front end protective sleeve 31; the distance is 0.001 to 2 mm, and preferably, the distance is 0.3 mm.
  • One or more ink holes 40 are provided in the front portion of the front end protective cover 31, preferably two, and the ink holes 40 are in communication with the gap 39. When the device is tilted, the ink is ejected from the gap 39 through the ink holes 40. Sometimes, a small amount of ink will also be drawn from the channel 32 through the ink port 40.
  • the ink holes 40 are provided at the front side portion and/or the front portion of the front end protective cover 31, and the number of the ink holes 40 may be one or more; preferably, the ink holes 40 are provided at the front side portion of the front end protective cover 31.
  • the outer edge shape of the ink hole 40 is circular, semi-circular, elliptical, semi-elliptical, in-line or oblong, and may also be a combination of the above shapes; preferably, the outer edge shape of the ink hole 40 is half Oval.
  • One end of the channel two 35 communicates with the inside of the ink bag 37, and the ink bag 37 is set outside the protrusion 36, that is, one end of the channel two 35 communicates with the protrusion 36, and the other end communicates with the gap 39, and the outer wall of the channel two 35 and the inner core 33 are fixed.
  • the angle is inclined; the number of the channels two 35 is one or more, and the matching is set on the inner core 33.
  • the channel two 35 is set to three, and the inner core 33 Evenly spaced.
  • the cross-sectional area of the channel two 35 is less than or equal to 2 square millimeters.
  • the back end protective sleeve 38 can be coupled to the inner core 33 through a threaded joint, or can be coupled to the front end protective sleeve by a threaded joint.
  • the front end protective sleeve 31 can be coupled to the inner core 33 through a threaded fastener, or can be connected to the rear end protective sleeve 38 by a threaded fit.
  • the swaying member shown in Fig. 5 can also be used as a portable marking device; when it is used as a portable marking device, it is operated by a hand-held operation.
  • the device adopts the marking system and the sampling system, so that the post-production anti-counterfeiting mark is not completed by existing printing or coding, and the pattern of the mark is random due to the randomness of the marking process; It's hard to make the same markup.
  • the printed or printed mark is a pattern consisting of an array of several tiny dots of equal size. After zooming in, the edges are not continuously smooth, and the interior is a mixture of multiple color points; the security mark made using the device The edges are naturally infiltrated and the inner color is even and natural and smooth. A replica made using scanning printing technology can be clearly seen as a printed matter under a magnifying glass of 50 times. Moreover, the distribution trend and distribution range of the anti-counterfeit mark produced by the device are small. Not only technically guarantees that the produced mark is unique, can not be copied, and the collected mark information is transmitted to the remote server in real time, which can be used as a standard sample when identifying the mark; the marking efficiency is high, and Suitable for continuous production on industrial production lines.

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Abstract

一种防伪打标系统,包括打标系统(1)、采样系统(4)和控制设备(3);所述打标系统(1)包括防伪打标装置和常规打标装置;所述防伪打标装置包括甩动装置;所述甩动装置包括甩动部件;所述采样系统(4)包括采样设备和信息存储设备;所述采样设备与信息存储设备连接;所述打标系统(1)和采样系统(4)均与控制设备(3)连接;所述控制设备(3)包括主控制器、传感器和执行控制器,控制设备(3)用以控制打标系统(1)和采样系统(4)的协调工作,并将采集的数据实时或批量传输给远端服务器。本系统从技术上保证了制作出的标记具有唯一性、无法复制性,而且将采集到的标记信息实时或事后传输到远端服务器,在鉴定标记时做为标准样品使用,工作效率高,适用于工业流水线上连续生产的需要。

Description

一种防伪打标系统 技术领域
本实用新型涉及机械设备领域,尤其是甩动部件、防伪打标装置及防伪打标系统。
背景技术
现有的多种防伪技术是通过印刷、喷码等方式制作,在制作防伪标记的过程中,制造出的防伪标记不具有随机性及其他因素的限制,使得标记容易以同样的方式制作出,使得生产厂家制作的该防伪标记容易被其他厂家或个人仿制或伪造,此类标记不具有不可伪造性和不可抵赖性。
现有的防伪技术中还有采用扫描纸张纹理的防伪方式,该方式将纸张纹理的扫描图像做为防伪标记,使用该防伪标记进行相关产品的鉴别,但该防伪方式应用的范围较窄,只适用于如宣纸等纹理差异明显的纸张上,且存在操作过程复杂、运行成本高等不足。现有的防伪技术中还有使用同位素照射物品,在物品上照射后留下防伪标记的防伪方式,此防伪方式成本高,而且也可以被伪造。现有的防伪技术中还有使用紫外油墨印刷的二维码做为防伪标记的防伪方式,此防伪方式虽然成本低,但是其仍然存在容易被伪造的不足。
发明内容
针对现有技术存在的缺陷,本实用新型提出一种防伪打标系统,能够使得制作出的防伪标记具有唯一性,并能够防止其他厂家或个人进行仿制或伪造,工作效率高,便于企业流水线配套应用。
为实现上述目的,本实用新型提出一种防伪打标系统,包括打标系统、采样系统和控制设备;所述打标系统包括防伪打标装置;所述采样系统包括采样设备和信息存储设备;所述采样设备与信息存储设 备连接;所述打标系统和采样系统均与控制设备连接;所述控制设备包括主控制器、传感器和执行控制器,控制设备用以控制打标系统和采样系统的协调工作。
所述防伪打标装置包括甩动装置,所述甩动装置包括甩动部件、固定部件、旋转支架、旋转轴、凸轮装置、弹簧、底座和供墨装置;所述甩动部件通过固定部件配合安装在旋转支架上;旋转支架的一端通过旋转轴安装在底座上;所述凸轮装置配合安装在底座上;所述弹簧分别与底座和旋转支架配合安装;
所述供墨装置能够盛装油墨,且配合与甩动部件连接;所述供墨装置配合与甩动部件和/或底座和/或甩动装置配合设置。
所述甩动部件包括外保护套、油墨出口以及油墨存储机构;所述油墨出口位于外保护套上;所述油墨出口与油墨存储机构连通;所述油墨存储机构能够存储液体;所述甩动部件运动时和/或由运动状态变为停止状态时,其内部存储的液体能够经过油墨出口飞出:
所述甩动部件包括前端装置、油墨囊;所述前端装置包括前端保护套、配合设置在前端保护套内的内芯;所述内芯的外壁与前端保护套之间设置一定距离的间隙;所述前端保护套与内芯配合固定连接;所述油墨囊呈中空的袋状,其开口端与内芯的尾部配合密封连接;所述内芯后端配合设置与油墨囊内部连通的通道二,所述通道二一端与油墨囊内部连通,另一端与所述间隙连通;所述前端保护套的前侧部和/或前部设置一个或一个以上油墨出口,所述油墨出口与间隙连通。
所述甩动部件还包括通气导管、通道一;所述通气导管匹配安装在油墨囊内;所述内芯内设置一个与通气导管配合的通道一;所述通道一与内芯前后两端贯通。
所述内芯的后端设置一管状结构的凸起,所述凸起与油墨囊配合安装。
所述通道二的一端与凸起内部连通,另一端与间隙连通;所述通道二的数量是一个或一个以上,且匹配设置在内芯上。
所述甩动部件还包括后端保护套,所述后端保护套与内芯或前端 保护套配合固定连接。
所述内芯是圆台体或圆柱体,凸起设置在内芯的后端。
所述间隙的尺寸是0.001~2mm。
所述油墨出口的外边缘形状是圆形、半圆形、椭圆形、半椭圆形、一字型、长圆形或者以上形状的组合。
所述甩动部件还可以包括外保护套、内芯、通道、油墨进口、油墨出口和间隙;甩动部件的前端和/或前部设置一个或一个以上油墨出口;所述外保护套配合设置在内芯外部;所述间隙位于内芯与外保护套之间;所述油墨进口设置在内芯的后端;所述油墨出口设置在内芯的前端;所述通道位于内芯的后部,所述通道的一端与油墨进口连通,另一端与所述间隙连通。
所述甩动装置还包括限位部件,所述限位部件配合固定安装在底座上;所述限位部件可以包括一个部件,也可以包括上部件和下部件;所述上部件和下部件通过紧固螺栓配合连接。
所述甩动装置还包括位置调节装置和底架;所述底座安装在位置调节装置上,在位置调节装置的带动下可以调节位置;所述位置调节装置固定安装在底架上。
所述供墨装置包括连续供墨装置;所述连续供墨装置包括墨仓、管道二,所述管道二一端与墨仓配合连接,另一端与甩动部件配合连接,所述墨仓是盛装油墨的容器,所述墨仓包括上部的墨仓进口和下部的墨仓出口。
所述连续供墨装置还包括储墨仓、与储墨仓连接的管道和配合设置在墨仓内的液位传感器,所述管道的另一端与墨仓配合连接,在管道上配合设置泵或/和单向阀。
所述位置调节装置包括位置调节机构或/和旋转机构;所述旋转机构包括水平旋转部件或/和垂直旋转部件;所述旋转机构配合安装在位置调节机构上面或下面;所述位置调节机构是三维位置调节机 构、二维位置调节机构或一维位置调节机构。
所述打标系统还包括常规打标装置,所述常规打标装置包括喷码机或印码机;所述喷码机或印码机与控制设备连接。
所述采样设备包括图片信息采集装置;所述图片信息采集装置与控制设备连接;图片信息采集装置采集防伪打标装置制作的标记的图片信息,并传输给控制设备和/或远端服务器;
所述控制设备与远端服务器连接,控制设备将防伪打标装置制作的标记的图片信息和标记的其他相关信息对应后,实时或批量传输给远端服务器。
所述打标系统还包括挡板一和挡板二;所述挡板一和挡板二控制物料一个/一批一停,其依照单个物料的长度依次间隔配合设置在物料传输通道上。
所述采样系统还包括挡板三和挡板四;所述挡板三和挡板四控制物料一个/一批一停,其依照单个物料的长度依次间隔配合设置在物料传输通道上。
有益效果
本装置通过设置的打标系统和采样系统,使得制作后的防伪标记不是通过现有的印刷或喷码等方式完成;由于制作过程中,甩动动作的随机性,使得本装置制作出的标记的图案具有随机性;即使使用同样的方式制作,也无法制作出同样的标记。
由于打印或印刷出来的标记点是由多个相等大小的微小墨点的阵列组成的图形,放大后查看,墨点内部是多种色点的混合,边缘不会连续平滑,与甩落的墨点形成的痕迹差异明显;使用扫描或照相后印刷制作的复制品,在50倍的放大镜下,能够很明显地看出是印刷品;使用该装置制作出的防伪标记的墨点的边缘呈现自然浸润状态,墨点内部颜色自然平滑过渡。而且本装置制作的防伪标记的分布趋势和分布范围差异性小。不但从技术上保证了制作出的标记具有唯一性、无法复制性,而且将采集到的标记信息实时或批量传输到远端服 务器,能够便于在鉴定标记时做为标准样品使用,并适用于工业流水线上连续生产的需要。
附图说明
图1是本实用新型的实施例的结构示意图:
1.打标系统,2.干燥系统,3.控制设备,4.采样系统,5.挡板四,6.挡板三,7.物料传输通道,8.挡板二,9.挡板一。
图2是本实用新型的防伪打标装置的实施例的结构示意图:
11.甩动部件,12.固定部件,13.旋转支架,14.旋转轴,15.凸轮装置,16.限位部件,17.弹簧,18.底座,19.旋转机构,20.位置调节机构,21.底架。
图3是本实用新型的甩动部件的实施例的结构示意图:
111.外保护套,112.内芯,113.通道,114.管道二,115.油墨进口,116.间隙,117.油墨出口。
图4是本实用新型的连续供墨装置的实施例的结构示意图:
10.储墨仓,22.泵,23.单向阀,24.管道,25.液位传感器,26.薄膜通气孔,27.墨仓,114.管道二。
图5是本实用新型的甩动部件的实施例2的结构示意图:
31.前端保护套,32.通道一,33.内芯,34.通气导管,35.通道二,36.凸起,37.油墨囊,38.后端保护套,39.间隙,40.油墨孔。
具体实施方式
为了使本实用新型的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本实用新型进行进一步的详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本实用新型,并不用于限定本实用新型。
实施方案一:
如图1所示,本实用新型提出一种防伪打标系统,包括打标系统 1、采样系统4和控制设备3;所述打标系统1包括防伪打标装置和常规打标装置;所述采样系统4包括采样设备和信息存储设备;所述采样设备与信息存储设备连接;所述打标系统1和采样系统4均与控制设备3连接;所述控制设备3包括主控制器、传感器和执行控制器,控制设备3用以控制打标系统1和采样系统4的协调工作。常规打标装置是现有技术设备,常规打标装置包括喷码机或印码机;所述喷码机或印码机与控制设备3连接。常规打标装置能够在控制设备3的控制下制作出二维码、一维码、字符码等标记。所述控制设备3是现有技术设备,主控制器连接传感器和执行控制器,传感器用以感知打标系统1、采样系统4、干燥系统2以及物料的工作状态。执行控制器在主控制器的控制下控制各种设备的运行。物料在物料传输通道7上输送,物料传输通道7可以是现有技术中的传输皮带或其他装置实现。
如图2所示,所述防伪打标装置包括甩动装置,所述甩动装置包括甩动部件11、固定部件12、旋转支架13、凸轮装置15、弹簧17、限位部件16、底座18和连续供墨装置;所述甩动部件11通过固定部件12配合安装在旋转支架13上,固定部件12设置在旋转支架13的中前部;固定部件12可以是常规技术中管箍类的部件,用以将甩动部件11固定在旋转支架13上,也可以是常规技术中带有锁死功能的旋转部件,旋转部件用于将甩动部件11旋转一定的角度以适应不同的生产需要,锁死部件用于卡死或固定旋转部件,使其在工作过程中自身不再发生意外旋转。甩动部件11与旋转支架13可以平行设置,也可以呈一定的角度设置。
所述旋转支架13的一端通过旋转轴14安装在底座18上。
如图3所示,所述甩动部件11包括外保护套111、内芯112、通道113、油墨进口115、油墨出口117和间隙116;所述外保护套111配合设置在内芯112外部,所述油墨进口115设置在内芯112的后端,油墨出口117设置在内芯112的前端,油墨出口的可以设置一个或一个以上,优选的设置2个;所述间隙116位于内芯112与外保护套 111之间,并连通油墨出口117和油墨进口115;所述通道113的一端与管道二114内部连通,另一端与所述间隙116连通。
所述内芯112的后端设置一管状结构的凸起,所述凸起与管道二114配合安装。
所述通道113的一端与凸起内部连通,另一端与间隙116连通;所述通道113的数量是一个或一个以上,且匹配设置在内芯112上。
所述内芯112是圆台体或圆柱体,凸起设置在内芯112的后端。
所述油墨出口的外边缘形状是圆形、半圆形、椭圆形、半椭圆形、一字型、长圆形或者以上形状的组合,优选的设计为椭圆形。
如图4所示,所述连续供墨装置方案一:包括储墨仓10、墨仓27、管道二114、与储墨仓10连接的管道24和配合设置在墨仓27内的液位传感器25,液位传感器25是现有技术设备,可以是超声波液位计、激光液位计、液位开关等,所述管道24的一端与储墨仓10配合连接,管道24的另一端与墨仓27配合连接,所述管道二114一端与墨仓27配合连接,另一端与甩动部件11配合连接,该管道二114可以是软管,所述墨仓27是盛装油墨的容器,所述墨仓27包括上部的墨仓进口和下部的墨仓出口;或者,所述连续供墨装置方案二:包括墨仓27、管道二114,所述管道二114一端与墨仓27配合连接,另一端与甩动部件11配合连接,该管道二114可以是软管,所述墨仓27是盛装油墨的容器,所述墨仓27包括上部的墨仓进口和下部的墨仓出口。优选的,采用连续供墨装置方案一,以获得更好的打标效果。
当甩动部件11被甩动时,油墨能够从油墨出口117飞出,并溅落在待标记区域,形成标记图案;所述凸轮装置15配合安装在底座18上;所述弹簧17一端配合固定安装在底座18上,另一端配合安装在旋转支架13上;所述限位部件16配合固定安装在底座18上;所述甩动装置还包括凸轮装置15;凸轮装置15包括凸轮和与凸轮配合连接的传动轮;所述甩动装置还包括与凸轮装置15固定连接的电机,所述电机与传动轮配合连接,电机固定安装在底座18上;所述 甩动装置还包括位置调节装置和底架21;所述位置调节装置固定安装在底架21上;所述底座18安装在位置调节装置上;所述位置调节装置包括位置调节机构20和旋转机构19;所述旋转机构19包括水平旋转部件或/和垂直旋转部件。所述旋转机构19配合安装在位置调节机构20上面,旋转机构19也可以配合安装在位置调节机构20的下面。位置调节机构20是现有技术设备,能够带动设备在一定的空间范围内运动;位置调节机构可以是三维位置调节机构、二维位置调节机构或一维位置调节机构。三维位置调节机构是现有技术设备,能够带动设备在一定的空间范围内进行三维运动;旋转机构19包括水平旋转部件或/和垂直旋转部件。旋转机构19是现有技术设备,能够带动设备在一定的空间范围内进行水平旋转运动或/和垂直旋转运动。
所述甩动部件11固定安装在旋转支架13上,所述甩动部件11通过固定部件12配合安装在旋转支架13上,固定部件12设置在旋转支架13的中前部。固定部件12可以是常规技术中管箍类的部件,用以将甩动部件11固定在旋转支架13上,也可以是常规技术中带有锁死功能的旋转部件,旋转部件用于将甩动部件旋转一定的角度以适应不同的生产需要,锁死部件用于卡死固定旋转部件,使其在工作过程中自身不再发生意外旋转。甩动部件11与旋转支架13可以平行也可以呈一定的角度。
旋转支架13的一端通过旋转轴14安装在底座18上;在旋转支架13的方向上,旋转轴14端为后端,旋转支架13的另一端是前端。所述凸轮装置15配合安装在底座18上;凸轮装置15的凸轮在外力的作用下转动时,通过顶起旋转支架13带动甩动部件11向上运动,同时,弹簧17逐渐被拉伸,当凸轮到达下落点后,旋转支架13在弹簧17的作用下,快速下落,到达限位部件16时,旋转支架13停止下落;在惯性的作用下使得甩动部件11内的油墨通过油墨出口117飞出。
凸轮装置15可以在底座18上沿着旋转支架13的方向前后移动, 凸轮装置15距离旋转支架13的旋转轴14距离越近,在凸轮运动到最高点时,旋转支架13抬起的高度越高,弹簧17的拉力越大,旋转支架13的下落速度越快,使得甩动部件11内飞出的油墨运动速度更快,单次操作飞出的油墨量更多。凸轮装置15包括凸轮和凸轮连接的传动轮;凸轮装置与电机配合连接,电机固定安装在底座18上。电机与传动轮配合连接,电机运动时带动传动轮,传动轮带动凸轮旋转。
限位部件16可以包括一个部件,也可以包括上部件和下部件;优选的包括上部件和下部件;所述上部件和下部件通过紧固螺栓配合连接;通过现有技术使得上部件与下部件能够相互配合,实现能够调整限位部件16高度的结构,通过高度的调整,改变旋转支架13下落行程的大小,从而调整甩动部件11的甩动速度。现有技术中可以采用在上部件和下部件上均设置相互配合的长孔,且长孔与紧固螺栓相匹配,实现限位部件16高度的调节。
弹簧17采用拉簧结构时,弹簧17的一端配合固定安装在底座18上,另一端配合安装在旋转支架13上。弹簧17还可以采用压簧的结构,使用现有技术,弹簧17的一端与与旋转支架13配合连接,另一端与安装在底座18上的固定件配合连接,固定件可以是连接旋转轴与底座的起支撑作用的配合件,也可以是单独固定设置在底座18上的固定弹簧17的配合件。弹簧17可以采用现有技术中不同类型的弹簧,使用不同类型的弹簧时,使用相应的配合安装方式,其配合安装方式是现有技术。所述限位部件16配合固定安装在底座18上,限位部件16的高度应满足当旋转支架13下落到限位部件16上时,不与凸轮接触,使得旋转支架13快速下落时首先触碰到的是限位部件16,以保护凸轮免受剧烈撞击。限位部件16可以安装在凸轮装置15的前方或后方。
还包括位置调节装置和底架21;所述位置调节装置固定安装在底架21上;所述底座18安装在位置调节装置上;所述位置调节装置包括位置调节机构20和旋转机构19;所述旋转机构19配合安装在 位置调节机构20上面,旋转机构19也可以配合安装在位置调节机构20的下面。位置调节机构20是现有技术设备,能够带动设备在一定的空间范围内运动。旋转机构19包括水平旋转部件或/和垂直旋转部件。旋转机构19是现有技术设备,能够带动设备在一定的空间范围内进行水平旋转运动或/和垂直旋转运动。
所述墨仓27是盛装油墨的容器;墨仓27上方设置一个薄膜通气孔26;薄膜通气孔26用于空气进出墨仓27,而油墨挥发到墨仓27内部液面上的空气中的成分不能通过薄膜通气孔26外逸。墨仓27用于储存少量的油墨。墨仓27设置在高于甩动部件11的油墨出口117一定高度处,优选的,该高度是20cm。所述墨仓27包括上部的墨仓进口和下部的墨仓出口;所述墨仓出口与管道二114连接;所述墨仓进口与管道24连接;所述连续供墨装置还包括配合设置在管道24上的泵22或/和单向阀23。泵22可以是柱塞泵、计量泵、离心泵等现有设备。
还包括干燥系统2;所述干燥系统2包括干燥设备;所述干燥设备包括风机或热风机,风道;所述风道的进口与风机或热风机的出口连接,风道的出口与物料传输通道7上的物料的标记区域配合设置,使风道出风能够吹扫到物料传输通道7上的物料的标记区域。干燥系统2用于加快标记的干燥速度。
所述采样系统4还包括照明设备;照明设备根据使用油墨的不同采用相应的设备,该设备是现有技术设备。紫光油墨使用紫光灯照明,红外油墨使用红外灯照明,普通油墨使用日光灯照明。
所述采样设备中的图片信息采集装置可以使用摄像机,也可以使用数码相机等具有数字图片采集、采集的数据向外传输功能的装置,优选的使用摄像机;图片信息采集装置使用支架固定;所述信息存储设备包括远端服务器;所述摄像机与控制设备3连接,在控制设备控制下工作;摄像机将防伪打标装置制作的标记信息实时传输给控制设备3;所述控制设备3与远端服务器连接,控制设备3将防伪打标装置制作的标记信息和常规打标装置制作的标记信息组成对应信息后, 实时传输给远端服务器。常规打标装置是现有技术设备,可以是喷码机或印码机等能够制作字符码、一维码和二维码等任意一种标记的设备。
所述打标系统1还包括挡板一9和挡板二8;所述挡板一9和挡板二8依照单个物料的长度依次间隔配合设置在物料传输通道7上。挡板一9和挡板二8在控制设备3的控制下成对配合工作。挡板一9和挡板二8是现有技术设备,应用到流水线的工作过程中,用于物料逐个停留在打标位置后,配合打标系统1工作。
所述采样系统4还包括挡板三6和挡板四5;所述挡板三6和挡板四5依照单个物料的长度依次间隔配合设置在物料传输通道7上。挡板三6和挡板四5在控制设备3的控制下成对配合工作。挡板三6和挡板四5是现有技术设备,应用到流水线的工作过程中,用于物料逐个停留在采样位置,配合采样系统4工作。
本装置通过外接电源供电。
实施方案二:
实施方案二与实施方案一的区别在于甩动部件。
如图5所示,所述甩动部件11包括后端装置和前端装置;所述后端装置与前端装置固定连接;所述后端装置包括后端保护套38、配合设置在后端保护套38内的油墨囊37、以及匹配安装在油墨囊37内的通气导管34。
油墨囊37用于盛装防伪打标用的油墨,油墨可以是黑色、红色等各种颜色,油墨也可以选用荧光油墨、紫外油墨、红外油墨等;油墨囊37的形状是中空的袋状。后端保护套38匹配安装在油墨囊37的外部;后端保护套38与内芯33或前端保护套31配合固定连接;后端保护套38的外形可以是圆筒状、棱状或者圆筒状与棱状的组合形状等各种不同形状,优选的是圆筒状,以便于手持使用。通气导管34一端伸入到油墨囊37中,另一端配合安装在内芯33上的通道一32中;使用时,将该装置的油墨孔40淹没在油墨中,挤压油墨囊37 通过通气导管34和通道一32将油墨囊37中的空气排出,松开手后油墨囊37逐渐恢复原状,同时,在外部大气压的作用下,使得油墨进入到油墨囊37中。优选的,通气导管34的一端伸入到油墨囊37的后部,通气导管34的另一端伸入到通道一32的中后部。通气导管34可以是圆管,优选的,通气导管34的内径是0.6-1.0mm的圆管,通气导管34在正常使用时,用于平衡油墨囊37内外的气压,便于油墨囊37内的油墨顺畅流出。
所述前端装置包括前端保护套31、配合设置在前端保护套31内的内芯33;优选的,内芯33的外形是圆台体,还可以是圆柱体,内芯33的外形也可以两端分别是圆台体、圆柱体的组合体,内芯33的后端设置一管状结构的凸起36,凸起36用以与油墨囊37配合安装,油墨囊37可以使用胶与凸起36的外壁粘接在一起,内芯33内设置一个与通气导管4配合的通道一32;优选的,通道一32后部的轴线与内芯33的轴线重合;优选的,通道一32的前部与油墨孔40处连通;通道一32的前部也可以只与间隙39连通;通道一32的横截面积小于等于1平方毫米。内芯33的外壁即外表面与前端保护套31之间设置一定距离的间隙39;该距离是0.001~2mm,优选的,该距离是0.3mm。前端保护套31的前部设置一个或一个以上油墨孔40,优选的设置2个,油墨孔40与间隙39连通。当甩动本装置时,油墨从间隙39中通过油墨孔40甩出。有时,少量的油墨也会从通道一32中通过油墨孔40甩出。油墨孔40设置在前端保护套31的前侧部和/或前部,油墨孔40的数量可以是一个或者多个;优选的,油墨孔40设置在前端保护套31的前侧部。油墨孔40的外边缘形状是圆形、半圆形、椭圆形、半椭圆形、一字型或长圆形,也可以是以上形状的组合;优选的,油墨孔40的外边缘形状是半椭圆形。通道二35的一端与油墨囊37内部连通,油墨囊37套装在凸起36外部,即通道二35的一端连通凸起36,另一端与间隙39连通,通道二35与内芯33外壁呈一定角度倾斜设置;所述通道二35的数量是一个或一个以上,匹配设置在内芯33上。优选的,通道二35设置3个,且在内芯33 上均匀间隔排列。通道二35的横截面积小于等于2平方毫米。后端保护套38可以通过丝扣与内芯33配合连接,也可以与前端保护套通过丝扣配合连接。前端保护套31可以通过丝扣与内芯33配合连接,也可以与后端保护套38通过丝扣配合连接。
图5所示的甩动部件,还可以作为便携式打标装置使用;其作为便携式打标装置使用时,手持甩动操作。
本装置通过设置的打标系统和采样系统,使得制作后的防伪标记不是通过现有的印刷或喷码等方式完成的,由于制作标记过程的随机性,使得标记的图案具有随机性;同样方式制作,很难制作出同样的标记。打印或印刷出来的标记点是由多个相等大小的微小墨点的阵列组成的图形,放大后查看,边缘不会连续平滑,内部是多种色点的混合;使用该装置制作出的防伪标记边缘呈现自然浸润状态,内部颜色均匀自然平滑过渡。使用扫描印刷技术制作的复制品,在50倍的放大镜下,能够很明显地看出是印刷品。而且本装置制作的防伪标记的分布趋势和分布范围差异性小。不但从技术上保证了制作出的标记具有唯一性、无法复制性,而且将采集到的标记信息实时传输到远端服务器,能够便于在鉴定标记时做为标准样品使用;打标效率高,能够适用于工业流水线上连续生产的需要。
以上所述仅为本实用新型的较佳实施例而已,并不用以限制本实用新型,凡在本实用新型的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本实用新型的保护范围之内。

Claims (12)

  1. 甩动部件,其特征在于:包括外保护套、油墨出口以及油墨存储机构;所述油墨出口位于外保护套上;所述油墨出口与油墨存储机构连通;所述油墨存储机构能够存储液体;所述甩动部件运动时和/或由运动状态变为停止状态时,其内部存储的液体能够经过油墨出口飞出。
  2. 根据权利要求1所述的甩动部件,其特征在于:包括前端装置、油墨囊;所述前端装置包括前端保护套、配合设置在前端保护套内的内芯;所述内芯的外壁与前端保护套之间设置一定距离的间隙;所述前端保护套与内芯配合固定连接;所述油墨囊呈中空的袋状,其开口端与内芯的尾部配合密封连接;所述内芯后端配合设置与油墨囊内部连通的通道二,所述通道二一端与油墨囊内部连通,另一端与所述间隙连通;所述前端保护套的前侧部和/或前部设置一个或一个以上油墨出口,所述油墨出口与间隙连通。
  3. 根据权利要求1所述的甩动部件,其特征在于:包括外保护套、内芯、通道、油墨进口、油墨出口和间隙;甩动部件的前端或者前部设置一个或一个以上油墨出口;所述外保护套配合设置在内芯外部;所述间隙位于内芯与外保护套之间;所述油墨进口设置在内芯的后端;所述油墨出口设置在内芯的前端;所述通道位于内芯的后部,所述通道的一端与油墨进口连通,另一端与所述间隙连通。
  4. 根据权利要求2或3所述的甩动部件,其特征在于:所述油墨出口的外边缘形状是圆形、半圆形、椭圆形、半椭圆形、一字型、长圆形或者以上形状的组合。
  5. 防伪打标装置,其特征在于:包括甩动装置,所述甩动装置包括甩动部件、旋转支架、旋转轴、底座和供墨装置;所述甩动部件是权利要求1或2或3或4所述的甩动部件;所述甩动部件配合安装在旋转支架上;旋转支架通过旋转轴安装在底座上;所述供墨装置是能够盛装油墨的容器,且配合与甩动部件连接。
  6. 根据权利要求5所述的防伪打标装置,其特征在于:所述甩动装置还包括弹簧;所述弹簧分别与底座和旋转支架配合安装。
  7. 根据权利要求5或6所述的防伪打标装置,其特征在于:所述甩动装置还包括凸轮装置;所述凸轮装置配合安装在底座上。
  8. 根据权利要求5或6或7所述的防伪打标装置,其特征在于:所述甩动装置还包括限位部件,所述限位部件配合固定安装在底座上;所述限位部件可以包括一个部件,也可以包括上部件和下部件;所述上部件和下部件通过紧固螺栓配合连接。
  9. 根据权利要求5或6或7或8所述的防伪打标装置,其特征在于:所述甩动装置还包括位置调节装置和底架;所述底座安装在位置调节装置上,在位置调节装置的带动下可以调节位置;所述位置调节装置固定安装在底架上;
    所述位置调节装置包括位置调节机构或/和旋转机构;所述旋转机构包括水平旋转部件或/和垂直旋转部件;所述旋转机构配合安装在位置调节机构上面或下面;所述位置调节机构是三维位置调节机构、二维位置调节机构或一维位置调节机构。
  10. 一种防伪打标系统,其特征在于:包括打标系统、采样系统和控制设备;
    所述打标系统包括防伪打标装置;所述防伪打标装置是权利要求5或6或7或8或9所述的防伪打标装置;
    所述采样系统包括采样设备和信息存储设备;所述采样设备与信息存储设备连接;
    所述打标系统和采样系统均与控制设备连接;
    所述控制设备包括主控制器、传感器和执行控制器,控制设备用以控制打标系统和采样系统的协调工作。
  11. 根据权利要求10所述的防伪打标系统,其特征在于:所述打标系统还包括常规打标装置,所述常规打标装置包括喷码机或印码机;所述喷码机或印码机与控制设备连接。
  12. 根据权利要求10或11所述的防伪打标系统,其特征在于:所述采样设备包括图片信息采集装置;所述图片信息采集装置与控制设备连接;图片信息采集装置采集防伪打标装置制作的标记的图片信 息,并传输给控制设备和/或远端服务器;所述控制设备与远端服务器连接;控制设备将防伪打标装置制作的标记的图片信息和标记的其他相关信息对应后,实时或批量地传输给远端服务器。
PCT/CN2016/078243 2015-04-03 2016-04-01 一种防伪打标系统 WO2016155654A1 (zh)

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CN201510156211.9A CN106142858B (zh) 2015-04-03 2015-04-03 一种防伪打标装置
CN201510155589.7A CN106142860B (zh) 2015-04-03 2015-04-03 一种便携式防伪打标装置
CN201510155589.7 2015-04-03
CN201510156211.9 2015-04-03
CN201510157423.9 2015-04-03
CN201510157423.9A CN106142835B (zh) 2015-04-03 2015-04-03 一种防伪打标系统

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1238189A (zh) * 1967-07-08 1971-07-07
SU440247A1 (ru) * 1972-10-02 1974-08-25 Предприятие П/Я Р-6702 Устройство дл маркировки
CN1974227A (zh) * 2006-09-30 2007-06-06 电子科技大学 一种基于蓝牙通讯技术的喷码打标机
JP2013116587A (ja) * 2011-12-02 2013-06-13 Toppan Printing Co Ltd コピー牽制印刷物
CN204566937U (zh) * 2015-04-03 2015-08-19 石立公 一种防伪打标装置
CN204566925U (zh) * 2015-04-03 2015-08-19 石立公 一种防伪打标系统

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1238189A (zh) * 1967-07-08 1971-07-07
SU440247A1 (ru) * 1972-10-02 1974-08-25 Предприятие П/Я Р-6702 Устройство дл маркировки
CN1974227A (zh) * 2006-09-30 2007-06-06 电子科技大学 一种基于蓝牙通讯技术的喷码打标机
JP2013116587A (ja) * 2011-12-02 2013-06-13 Toppan Printing Co Ltd コピー牽制印刷物
CN204566937U (zh) * 2015-04-03 2015-08-19 石立公 一种防伪打标装置
CN204566925U (zh) * 2015-04-03 2015-08-19 石立公 一种防伪打标系统

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