CN112247950B - Marking device of disposable blood sampling capillary - Google Patents

Marking device of disposable blood sampling capillary Download PDF

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Publication number
CN112247950B
CN112247950B CN202011178287.9A CN202011178287A CN112247950B CN 112247950 B CN112247950 B CN 112247950B CN 202011178287 A CN202011178287 A CN 202011178287A CN 112247950 B CN112247950 B CN 112247950B
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China
Prior art keywords
conveying
blood sampling
marking
feeding
sampling capillary
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CN202011178287.9A
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CN112247950A (en
Inventor
周士金
于光学
翟木玉
周仕玲
周长振
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Zibo Jindong Machinery Manufacturing Co ltd
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Zibo Jindong Machinery Manufacturing Co ltd
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Priority to CN202011178287.9A priority Critical patent/CN112247950B/en
Publication of CN112247950A publication Critical patent/CN112247950A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H7/00Marking-out or setting-out work
    • B25H7/04Devices, e.g. scribers, for marking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H7/00Marking-out or setting-out work
    • B25H7/04Devices, e.g. scribers, for marking
    • B25H7/045Devices, e.g. scribers, for marking characterised by constructional details of the marking elements

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sampling And Sample Adjustment (AREA)
  • Investigating Or Analysing Biological Materials (AREA)

Abstract

A marking device of a disposable blood sampling capillary tube belongs to the technical field of marking equipment of blood sampling tubes. The method is characterized in that: the output end of the feeding device is connected with the input end of the conveying device, the marking pens (21) are arranged on the upper side of the conveying device, at least two marking pens (21) are arranged side by side along the conveying direction of the conveying device, and one side of the feeding device is provided with a positioning plate; the conveying device comprises conveying rollers and conveying motors (2), wherein the conveying rollers are at least provided with two groups, one adjacent side of each two adjacent groups of conveying rollers is overlapped in the axis direction, the side part of each conveying roller is provided with an axial conveying groove (1001), and each conveying roller is connected with the conveying motor (2). The invention realizes automatic marking of the blood sampling capillary, greatly improves the marking speed, reduces the labor cost and avoids the deterioration of the working environment caused by the dripping of the printing ink.

Description

Marking device of disposable blood sampling capillary
Technical Field
A marking device of a disposable blood sampling capillary tube belongs to the technical field of marking equipment of blood sampling tubes.
Background
Can set up the marking usually on the disposable blood sampling capillary to guarantee that the blood sampling is sufficient, present general way is that the workman directly prints out the marking with printing ink on the blood sampling capillary through the mode of printing, and need wait for printing ink to dry the back, will mark off the good heparin tube of line again and place the packing carton, and the speed of marking off is very slow, and printing ink can drip subaerially, leads to operational environment dirty in disorder, leads to operational environment relatively poor.
Disclosure of Invention
The technical problem to be solved by the invention is as follows: the defects of the prior art are overcome, and the disposable blood sampling capillary scribing device can automatically complete the feeding of the capillary and the scribing of the blood sampling capillary.
The technical scheme adopted by the invention for solving the technical problems is as follows: the marking device of the disposable blood sampling capillary tube is characterized in that: the marking device comprises a feeding device, a conveying device and marking pens, wherein the output end of the feeding device is connected with the input end of the conveying device, the marking pens are arranged on the upper side of the conveying device, at least two marking pens are arranged side by side along the conveying direction of the conveying device, and a positioning plate is arranged on one side of the feeding device;
the conveying device comprises conveying rollers and conveying motors, the conveying rollers are at least provided with two groups, one adjacent side of each two adjacent groups of conveying rollers is overlapped in the axis direction, the side part of each conveying roller is provided with an axial conveying groove, and each conveying roller is connected with the conveying motor.
Preferably, each conveying roller comprises two circular conveying plates which are coaxial and arranged at intervals, a conveying groove is formed in each conveying plate, and the conveying grooves in the two conveying plates are arranged oppositely. Two ends of the blood sampling capillary tube are respectively supported on the two conveying plates, so that the problem that the blood sampling capillary tube cannot smoothly complete conveying is solved.
Preferably, each group of conveying rollers is provided with a plurality of conveying grooves, and the arc length between every two adjacent conveying grooves is equal to or larger than the perimeter of the blood sampling capillary. The arc length between every two adjacent conveying grooves is equal to or larger than the perimeter of the blood sampling capillary, so that the marked lines can be arranged around the blood sampling capillary, and the blood sampling capillary is convenient to observe during use.
Preferably, the marker includes a marker body and a soft hair provided at an end of the marker body. The drawing pen main body is provided with the soft hair, so that the blood sampling capillary can be prevented from being damaged due to rigid contact between the drawing pen main body and the blood sampling capillary.
Preferably, loading attachment includes loading wheel and feed bin, and the lower part setting of loading wheel is in the feed bin, and conveyor sets up in loading wheel one side, and the loading wheel is connected with and drives its pivoted power device, and the lateral part of loading wheel is provided with a plurality of material loading grooves, and the blood sampling capillary is carried to conveyor along with the rotation of material loading groove on. The feeding wheel conveys the blood sampling capillary tubes to the conveying roller one by one through the feeding groove, so that automatic feeding one by one is realized, and mutual interference between adjacent blood sampling capillary tubes during scribing is avoided.
Preferably, at least one side of the feeding wheel is provided with a deflector rod, and the top of the deflector rod bends towards the direction of the conveying device to form a material pushing part for pushing the blood sampling capillary away from the feeding groove. The material pushing part can push the blood sampling capillary in the feeding groove to the conveying roller, and the blood sampling capillary is prevented from being stuck in the feeding groove and being broken.
Preferably, each marking pen is connected with a translation device for driving the marking pen to translate, and the moving direction of the marking pen is perpendicular to the conveying direction of the conveying device. The translation device drives the marking pen to translate, and the position of the marking pen can be adjusted as required.
Preferably, the translation device comprises a translation motor, a translation sliding block and a screw rod, the screw rod is perpendicular to the conveying direction of the conveying device, the translation sliding block is in threaded connection with the screw rod, and the translation motor is connected with the screw rod. The translation motor drives the marking pen to translate through the screw rod, and the position of the marking pen can be accurately controlled.
Preferably, the translational sliding block is provided with an installation cylinder, the upper part of the marking pen extends into the installation cylinder in a sliding manner, and the installation cylinder is provided with a locking bolt for locking the marking pen. The marking pen is conveniently locked and unlocked through the locking bolt, and the marking pen is convenient to replace.
Compared with the prior art, the invention has the beneficial effects that:
this disposable blood sampling capillary's marking device's loading attachment can realize the automatic feeding of blood sampling capillary, conveying motor drives the conveying roller and rotates, the blood sampling capillary moves to the coincidence portion upside of two adjacent conveying rollers along with the conveyer trough, the conveying roller passes through the friction drive blood sampling capillary rotation between lateral part and the blood sampling capillary, make the marking line stroke go out the marking line that encircles the blood sampling capillary, when the blood sampling capillary gets into next conveyer trough once more, can continue to carry forward along with next conveying roller, automatic marking off to the blood sampling capillary has been realized, marking off speed improves greatly, the cost of labor is reduced, and the operational environment that the printing ink drippage caused has been avoided worsening.
Drawings
Fig. 1 is a perspective view of a disposable blood collection capillary streaking device.
Fig. 2 is a partially enlarged view of a portion a in fig. 1.
Fig. 3 is a partially enlarged view of B in fig. 1.
Fig. 4 is a schematic structural diagram of the marking pen.
Fig. 5 is a front view of the output belt.
In the figure: 1. the device comprises a frame 2, a conveying motor 3, an input shaft 4, a worm wheel 5, a worm 6, a bin 7, a feeding wheel 701, a feeding groove 8, a conveying shaft 9, a poking rod 901, a material pushing part 10, a conveying plate 1001, a conveying groove 11, an output belt 1101, an output groove 12, an output shaft 13, a tensioning wheel 14, a driving wheel 15, a driven wheel 16, a translation motor 17, a translation slider 18, a screw rod 19, a mounting cylinder 20, a locking bolt 21, a marking pen 22, a conveying pipe 23, an ink box 24 and a conveying pump.
Detailed Description
Fig. 1 to 5 are preferred embodiments of the present invention, and the present invention will be further described with reference to fig. 1 to 5.
A marking device of a disposable blood sampling capillary comprises a feeding device, a conveying device and marking pens 21, wherein the output end of the feeding device is connected with the input end of the conveying device, the marking pens 21 are arranged on the upper side of the conveying device, at least two marking pens 21 are arranged side by side along the conveying direction of the conveying device, and one side of the feeding device is provided with a positioning plate; the conveying device comprises conveying rollers and a conveying motor 2, the conveying rollers are at least provided with two groups, one adjacent side of each two adjacent groups of conveying rollers is overlapped in the axis direction, the side part of each conveying roller is provided with an axial conveying groove 1001, and each conveying roller is connected with the conveying motor 2. This disposable blood sampling capillary's marking device's loading attachment can realize the automatic feeding of blood sampling capillary, conveying motor 2 drives the conveying roller and rotates, the blood sampling capillary moves to the coincidence portion upside of two adjacent conveying rollers along with conveyer trough 1001, the conveying roller passes through the friction drive blood sampling capillary rotation between lateral part and the blood sampling capillary, make the marking line stroke go out the marking line that encircles the blood sampling capillary, when the blood sampling capillary gets into next conveyer trough once more, can continue to carry forward along with next conveying roller, automatic marking off the blood sampling capillary has been realized, marking off speed improves greatly, the cost of labor is reduced, and the operational environment that the printing ink drippage caused worsens has been avoided.
The present invention is further described with reference to the following detailed description, however, it should be understood by those skilled in the art that the detailed description given herein with respect to the accompanying drawings is for better explanation and that the present invention is not necessarily limited to the specific embodiments, but rather, for equivalent alternatives or common approaches, may be omitted from the detailed description, while still remaining within the scope of the present application.
Specifically, the method comprises the following steps: as shown in FIGS. 1 to 3: the marking device of the disposable blood sampling capillary tube further comprises a rack 1, an output device and a drying device, wherein the feeding device, the conveying device and the output device are sequentially arranged from left to right, the output end of the feeding device is connected with the input end of the conveying device, the output end of the conveying device is connected with the input end of the output device, and the feeding device, the conveying device and the output device are all installed on the rack 1. The marking pen 21 is installed on the rack 1 through a translation device, the marking pens 21 can be arranged at intervals along the conveying direction of the conveying device as required, in the embodiment, two marking pens 21 are arranged at intervals along the conveying direction of the conveying device, the translation device is in one-to-one correspondence with the marking pens 21, and drives the corresponding marking pens 21 to reciprocate along the conveying direction perpendicular to the conveying device so as to adjust the positions of the marking pens 21.
Conveyor is including carrying axle 8, conveyor motor 2 and conveying roller, every group conveying roller all includes two circular shape delivery board 10 that coaxial and interval set up, carry 8 levels of axle to set up, carry the both ends of axle 8 and all rotate and install in frame 1, every is carried on 8 equal coaxial arrangement of axle to have two delivery board 10, form the conveying roller, two delivery board 10 all with carry the coaxial setting of axle 8, and two delivery board 10 all rotate along with the rotation of carrying axle 8 in step. The lateral part of every conveying board 10 all is provided with conveyer trough 1001, and conveyer trough 1001 encircles the lateral part interval equipartition of conveying board 10 and has a plurality of, and the conveyer trough 1001 one-to-one of two conveying boards 10 on the same transport axle 8 just sets up. The arc length between two adjacent conveying grooves 1001 on each conveying plate 10 is greater than or equal to the circumference of the blood collection capillary, in the embodiment, the arc length between two adjacent conveying grooves 1001 is three times of the circumference of the blood collection capillary, so that the mark marked by the marking pen 21 is arranged around the blood collection capillary, and the mark of the blood collection capillary can be conveniently observed when the blood collection capillary is used.
The number of the transport shafts 8 is at least one more than the number of the scribing pens 21, and the transport plates 10 corresponding to each two adjacent transport shafts 8 are overlapped in the axial direction to form an overlapped portion, so that the blood collecting capillary is stopped at the upper side of the overlapped portion between the transport plates 10 on the two adjacent transport shafts 8, and scribing is completed. In the present embodiment, six conveying shafts 8 are provided.
Conveying motor 2 installs in frame 1, rotate in frame 1 and install input shaft 3, 3 level settings of input shaft, and input shaft 3 perpendicular to carries axle 8, every carries and all coaxial arrangement to drive its pivoted worm wheel 4 on the axle 8, input shaft 3 sets up the downside at worm wheel 4, be provided with a plurality of worms 5 on the input shaft 3, worm 5 and worm wheel 4 one-to-one, and mesh with corresponding worm wheel 4 mutually, thereby realized carrying the rotation of axle 8, and make each carry axle 8 to keep synchronous rotation, and rotational speed and direction all the same.
The feeding device comprises a bin 6 and a feeding wheel 7, a feeding shaft is installed on the left side of the rack 1 in a rotating mode and is parallel to the conveying shaft 8, the feeding wheel 7 is coaxially installed on the feeding shaft and rotates synchronously with the feeding shaft, and the feeding shaft is connected with the conveying shaft 8 on the left side through a synchronous belt and rotates synchronously with the conveying shaft. The left side of feed bin 6 is upwards buckled, forms "L" shape, and material loading wheel 7 sets up on the right side of feed bin 6 to enclose into opening cell type up with feed bin 6, the bottom of material loading wheel 7 is less than the horizontal part setting of feed bin 6, and the lateral part of material loading wheel 7 is provided with material loading groove 701, and material loading groove 701 sets up along material loading wheel 7's axial, and material loading groove 701 encircles material loading wheel 7 interval equipartition and has a plurality ofly. The rear side of the frame 1 is a guide plate which can play a role in guiding when the blood sampling capillary is placed in the bin 6. The feeding wheel 7 is located between the two conveying plates 10 on the left side, and the feeding wheel 7 and the conveying plates 10 are overlapped in the axial direction.
The two sides of the feeding wheel 7 are provided with the deflector rod 9, the deflector rod 9 is vertically arranged on the left side of the conveying plate 10, the deflector rod 9 is installed on the bin 6, the upper end of the deflector rod 9 is bent rightwards, the inclined pushing portion 901 which gradually faces rightwards from top to bottom is formed, and along with the rotation of the feeding wheel 7, the pushing portion 901 pushes out the blood sampling capillary in the feeding groove 701, so that the blood sampling capillary is prevented from being stuck in the feeding groove 701.
The output device comprises an output belt 11, an output shaft 12 is rotatably installed at the right end of the rack 1, the output shaft 12 is arranged in parallel to the conveying shaft 8, and the output shaft 12 is connected with the conveying shaft 8 on the right side through a synchronous belt and synchronously rotates along with the rotation of the conveying shaft 8. The output shaft 12 is provided with a driving wheel 14, the right conveying shaft 8 is provided with a driven wheel 15, the driven wheel 15 and the conveying shaft 8 rotate relatively, the driving wheel 14 and the driven wheel 15 are synchronous belt wheels, the output belt 11 is a synchronous belt, two ends of the output belt 11 are respectively meshed with the driving wheel 14 and the driven wheel 15, the upper side of the output belt 11 is lower than the top of the conveying plate 10 and is used for bearing blood sampling capillary tubes conveyed on the conveying plate 10, and the blood sampling capillary tubes fall into a packing box.
A tensioning shaft is rotatably mounted at the lower part of the right end of the rack 1, a tensioning wheel 13 is mounted on the tensioning shaft, the tensioning wheel 13 is also a synchronous belt wheel, the lower part of the output belt 11 is meshed with the tensioning wheel 13, and the conveying belt 11 is tensioned through the tensioning wheel 13. Both ends of the tensioning shaft are arranged on the frame 1 through bearing seats, and the bearing seats 11 are detachably connected with the frame 1, so that the height of the tensioning wheel 13 is conveniently adjusted, and the tightness of the tensioning wheel is further conveniently adjusted.
Drying device sets up in the downside of output conveyer belt 11, and drying device is the heating fluorescent tube, heats the stoving through the heating fluorescent tube to blood sampling capillary, avoids influencing the transport of blood sampling capillary.
The translation device comprises a translation motor 16, a screw rod 18, a translation sliding block 17 and an installation barrel 19, wherein the screw rod 18 is parallel to the conveying shaft 8, the screw rod 18 is rotatably installed on the rack 1, the translation sliding block 17 is slidably installed on the rack 1, the translation sliding block 17 is in threaded connection with the screw rod 18, the translation motor 16 drives the translation sliding block 17 to reciprocate through the screw rod 18, and the installation barrel 19 is vertically arranged on the translation sliding block 17 and moves synchronously with the translation sliding block. The axis of the mounting cylinder 19 is located in the middle of two adjacent conveying plates 10.
As shown in fig. 4: the length of the mounting barrel 19 is less than the length of the marker 21 and the tip of the marker 21 projects upwardly after sliding through the mounting barrel 19. The side of the installation barrel 19 is provided with a locking bolt 20, the locking bolt 20 is arranged along the radial direction of the installation barrel 19, the locking bolt 20 is in threaded connection with the installation barrel 19, and the end part of the locking bolt 20 extends into the installation barrel 19 and locks the marking pen 21.
The marking pen 21 comprises a marking pen main body and a soft hair arranged at the lower end of the marking pen main body, so that the blood sampling capillary tube is marked by the soft hair, and the blood sampling capillary tube is prevented from being in rigid contact with the blood sampling capillary tube and damaged.
The marking pen 21 is further connected with an ink supplementing device, the ink supplementing device comprises an ink box 23 and a conveying pipe 22, one end of the conveying pipe 22 is communicated with the ink box 23, the other end of the conveying pipe 22 is communicated with the marking pen 21, a conveying pump 24 is arranged on the conveying pipe 22, and the conveying pump 24 is a micro pump or a metering pump, so that ink can be supplemented to the marking pen 21 in real time.
As shown in fig. 5: the outside of output belt 11 is provided with output groove 1101, and output groove 1101 has a plurality ofly along output belt 11 interval equipartition to can accept the blood sampling capillary that transports on the delivery board 10 and come, and will take a blood sampling capillary and send out, and accomplish the stoving to the sign in the transportation process, guarantee to blood sampling capillary's transport more reliable.
A disposable blood sampling capillary scribing method comprises the following steps:
step 1), conveying the blood sampling capillary tubes into a conveying groove 1001 of a conveying roller one by a feeding device;
the blood sampling capillary is placed in the storage bin 6, the end part of the blood sampling capillary is positioned on the positioning plate, the blood sampling capillary can be extruded on the front side of the feeding wheel 7, the feeding wheel 7 rotates, the blood sampling capillary is driven to move one by one through the feeding groove 701, the pushing part 901 of the shifting lever 9 pushes out the blood sampling capillary in the feeding groove 701 and pushes the blood sampling capillary to the two conveying plates 10 on the left conveying shaft 8, two ends of the blood sampling capillary respectively enter the conveying grooves 1001 of the conveying plates 10 on the corresponding sides, and the one-by-one conveying of the blood sampling capillary is realized.
Step 2) the blood sampling capillary moves to the upper side of the superposition part of the two conveying rollers along with the conveying rollers, the blood sampling capillary rotates synchronously along with the rotation of the next conveying roller, and the blood sampling capillary is matched with the marking pen 21 to complete marking;
the blood sampling capillary moves to a position between the conveying plate 10 and the next conveying plate 10 along with the conveying plate 10 on the left side, and is just positioned at the front side of the conveying groove 1001 of the next conveying plate 10, namely the capillary blood sampling tube is positioned at the upper side of the overlapped part of the conveying plates 10 of the two adjacent conveying shafts 8, and at the moment, along with the rotation of the next conveying plate 10, the blood sampling capillary synchronously rotates and is matched with the scribing pen 21 to complete scribing. The blood sampling capillary tube rotates three circles along with the next conveying plate 10, and the reliable scribing is guaranteed. The transfer pump 24 pumps the ink in the ink tank 23 into the marker 21 in real time, thereby preventing the marker 21 from running out of ink.
And 3) continuing rotating the next conveying roller until the blood sampling capillary is clamped into the conveying groove 1001 of the conveying roller and rotates along with the conveying roller, and sending out the scribed blood sampling capillary.
The next conveying plate 10 continues to rotate and is matched with the conveying plate 10 adjacent to the rear side in sequence to finish the conveying of the blood sampling capillary, and simultaneously, the scribing of another mark is finished. The conveying plate 10 conveys the blood sampling capillary tube which is subjected to scribing to the output belt 11, the blood sampling capillary tube is located in an output groove 1101 of the output belt 11, the blood sampling capillary tube synchronously moves along with the output belt, is dried through the heating lamp tube, and is then sent out to a packaging box, and the scribing of the blood sampling capillary tube is completed.
The foregoing is directed to preferred embodiments of the present invention, other and further embodiments of the invention may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow. However, any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present invention are within the protection scope of the technical solution of the present invention.

Claims (4)

1. The utility model provides a disposable blood sampling capillary's marking device which characterized in that: the automatic marking device comprises a feeding device, a conveying device and marking pens (21), wherein the output end of the feeding device is connected with the input end of the conveying device, the marking pens (21) are arranged on the upper side of the conveying device, at least two marking pens (21) are arranged side by side along the conveying direction of the conveying device, and one side of the feeding device is provided with a positioning plate; each conveying roller is provided with a plurality of conveying grooves (1001), the conveying grooves (1001) are axially arranged on the side portions of the conveying rollers, and the arc length between every two adjacent conveying grooves (1001) is equal to or larger than the circumference of the blood sampling capillary; each marking pen (21) is connected with a translation device for driving the marking pen to translate, and the moving direction of the marking pen (21) is vertical to the conveying direction of the conveying device;
the conveying device comprises conveying rollers and a conveying motor (2), at least two groups of conveying rollers are arranged, one adjacent side of each two adjacent groups of conveying rollers is overlapped in the axis direction, and each conveying roller is connected with the conveying motor (2);
the blood sampling capillary tube conveying device comprises a feeding wheel (7) and a storage bin (6), the lower portion of the feeding wheel (7) is arranged in the storage bin (6), a conveying device is arranged on one side of the feeding wheel (7), the feeding wheel (7) is connected with a power device for driving the feeding wheel to rotate, a plurality of feeding grooves (701) are formed in the side portion of the feeding wheel (7), and a blood sampling capillary tube is conveyed to the conveying device along with the rotation of the feeding grooves (701); at least one side of the feeding wheel (7) is provided with a deflector rod (9), the top of the deflector rod (9) bends towards the direction of the conveying device to form a material pushing part (901) for pushing the blood sampling capillary away from the feeding groove (701), each group of conveying rollers comprises two circular conveying plates (10) which are coaxial and arranged at intervals, the conveying grooves (1001) are arranged on the conveying plates (10), and the conveying grooves (1001) on the two conveying plates (10) are arranged right opposite to each other.
2. The disposable blood collection capillary scoring device of claim 1, wherein: the marking pen (21) comprises a marking pen main body and a soft hair arranged at the end part of the marking pen main body.
3. The disposable blood collection capillary scoring device of claim 1, wherein: the translation device comprises a translation motor (16), a translation sliding block (17) and a screw (18), the screw (18) is perpendicular to the conveying direction of the conveying device, the translation sliding block (17) is in threaded connection with the screw (18), and the translation motor (16) is connected with the screw (18).
4. The disposable blood collection capillary scoring device of claim 3, wherein: the drawing pen is characterized in that an installation barrel (19) is arranged on the translation sliding block (17), the upper portion of the drawing pen (21) extends into the installation barrel (19) in a sliding mode, and a locking bolt (20) for locking the drawing pen (21) is arranged on the installation barrel (19).
CN202011178287.9A 2020-10-29 2020-10-29 Marking device of disposable blood sampling capillary Active CN112247950B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011178287.9A CN112247950B (en) 2020-10-29 2020-10-29 Marking device of disposable blood sampling capillary

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011178287.9A CN112247950B (en) 2020-10-29 2020-10-29 Marking device of disposable blood sampling capillary

Publications (2)

Publication Number Publication Date
CN112247950A CN112247950A (en) 2021-01-22
CN112247950B true CN112247950B (en) 2022-04-22

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Application Number Title Priority Date Filing Date
CN202011178287.9A Active CN112247950B (en) 2020-10-29 2020-10-29 Marking device of disposable blood sampling capillary

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5651184A (en) * 1995-05-03 1997-07-29 Tutty; Larry Circumscribing apparatus
CN109183376A (en) * 2018-10-12 2019-01-11 苏州华策纺织科技有限公司 A kind of fixed liner agency of cloth
CN208377233U (en) * 2018-06-25 2019-01-15 成都市金鼓药用包装有限公司 A kind of body mark structure
CN210589243U (en) * 2019-08-05 2020-05-22 陕西德仕金迪工贸有限公司 Rubber tube scribing device

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5651184A (en) * 1995-05-03 1997-07-29 Tutty; Larry Circumscribing apparatus
CN208377233U (en) * 2018-06-25 2019-01-15 成都市金鼓药用包装有限公司 A kind of body mark structure
CN109183376A (en) * 2018-10-12 2019-01-11 苏州华策纺织科技有限公司 A kind of fixed liner agency of cloth
CN210589243U (en) * 2019-08-05 2020-05-22 陕西德仕金迪工贸有限公司 Rubber tube scribing device

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Denomination of invention: A scoring device for disposable blood capillary tubes

Effective date of registration: 20230908

Granted publication date: 20220422

Pledgee: Yiyuan sub branch of industrial and Commercial Bank of China Ltd.

Pledgor: ZIBO JINDONG MACHINERY MANUFACTURING Co.,Ltd.

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