CN204359641U - Ink jet numbering machine ink viscosity automatic detection device - Google Patents

Ink jet numbering machine ink viscosity automatic detection device Download PDF

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Publication number
CN204359641U
CN204359641U CN201520051608.7U CN201520051608U CN204359641U CN 204359641 U CN204359641 U CN 204359641U CN 201520051608 U CN201520051608 U CN 201520051608U CN 204359641 U CN204359641 U CN 204359641U
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CN
China
Prior art keywords
viscosity
ink
mixing drum
cylinder
pipeline
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Withdrawn - After Issue
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CN201520051608.7U
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Chinese (zh)
Inventor
杜春卯
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SHANGHAI METRONIC ROTTWEIL ELECTRONIC MACHINERY TECHNOLOGY Co.,Ltd.
Shanghai Yufeng Electronic Technology Co., Ltd
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杜春卯
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Priority to CN201520051608.7U priority Critical patent/CN204359641U/en
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Abstract

The utility model relates to a kind of ink jet numbering machine ink viscosity automatic detection device, comprise mixing drum (1), be provided with viscosity in mixing drum (1) and detect cylinder (2) and constant voltage cylinder (5), viscosity detects cylinder (2), the bottom of constant voltage cylinder (5) is connected by choker-line one (4), viscosity detects cylinder (2) top and is provided with U trap (3), viscosity measurements low level sample probe (13), the high-order sample probe (14) of viscosity measurements and 0 probe (15), mixing drum (1) upper end is provided with viscosity measurements ink filling port (7), mixing drum (1) lower end has ink export, ink export connects pump one (9) by pipeline, the other end of pump one (9) connects choker-line two (8) by pipeline, the other end of choker-line two (8) connects viscosity measurements ink filling port (7), the utility model utilizes siphonic effect, achieves the automatic detection of ink viscosity, and decreases the use that viscosity detects solenoid valve, simplifies system architecture.

Description

Ink jet numbering machine ink viscosity automatic detection device
[technical field]
The utility model relates to pick-up unit technical field, specifically a kind of ink jet numbering machine ink viscosity automatic detection device.
[background technology]
Ink has very important effect in ink jet numbering machine application, print out the measured printing of matter, and the viscosity of ink controls then very important.Because ink viscosity value is more stable, printing performance is then better, and the quality of printing is also naturally more stable.Therefore, the viscosity number of ink being remained on suitable scope, is the basis ensureing that printing process normally carries out.At present, existing ink viscosity pick-up unit is use solenoid control ink viscosity to detect mostly, it mainly has the following disadvantages: on the one hand, the problem of solenoid valve blocking is easily occurred by the ink viscosity detection system of solenoid control, and solenoid valve frequent operation easily damages; On the other hand, viscosity detection solenoid valve is had to add the complexity of pipeline.
[utility model content]
The purpose of this utility model is exactly will solve above-mentioned deficiency and provide a kind of ink jet numbering machine ink viscosity automatic detection device, utilizes siphonic effect, achieves the automatic detection of ink viscosity, and decreases the use that viscosity detects solenoid valve, simplifies system architecture.
Design a kind of ink jet numbering machine ink viscosity automatic detection device for achieving the above object, comprise mixing drum 1, be provided with viscosity in described mixing drum 1 and detect cylinder 2 and constant voltage cylinder 5, described viscosity detects cylinder 2, the bottom of constant voltage cylinder 5 is equipped with opening and is connected by choker-line 1, the top that described viscosity detects cylinder 2 is provided with U trap 3, described viscosity detects U trap 3 place in cylinder 2 and is provided with viscosity measurements low level sample probe 13, the high-order sample probe 14 of viscosity measurements and 0 probe 15, the bottom of described viscosity measurements low level sample probe 13 is higher than 0 probe 15 bottom, the bottom of the high-order sample probe 14 of described viscosity measurements is higher than 0 probe 15 and viscosity measurements low level sample probe 13 bottom, described mixing drum 1 upper end is provided with viscosity measurements ink filling port 7, described mixing drum 1 lower end has ink export, described ink export connects pump 1 by pipeline, the other end of described pump 1 connects choker-line 28 by pipeline, the other end of described choker-line 28 connects viscosity measurements ink filling port 7.
Described mixing drum 1 upper end is provided with mixing drum ink filling port 12, and described mixing drum ink filling port 12 connects pump 2 11 by pipeline, and the other end of described pump 2 11 connects ink bottle 16 and adjuvant bottle 17 by pipeline.
The other end of described pump 2 11 connects shower nozzle 10 by pipeline, and the other end of described shower nozzle 10 is connected on the pipeline between pump 1 and choker-line 28 by pipeline.
Described mixing drum 1 upper end is provided with exhausr port 6.
The utility model compared with the existing technology, novel structure, simply, reasonable in design, cylinder and constant voltage cylinder is detected by being provided with viscosity in the mixing drum depositing ink, cylinder is detected at viscosity, the bottom of constant voltage cylinder is equipped with opening, be connected by choker-line one between two openings, and be provided with U trap and viscosity measurements low level sample probe on the top of viscosity detection cylinder, the high-order sample probe of viscosity measurements, 0 probe, thus detect cylinder when ink arrives viscosity through choker-line one, because constant voltage cylinder liquid level detects cylinder higher than viscosity always, thus ink can arrive rapidly the position of viscosity measurements low level sample probe and the high-order sample probe of viscosity measurements, by judging that viscosity measurements low level sample probe has the time of signal to the high-order sample probe position of viscosity measurements, and itself and the time set are contrasted, what be less than setting-up time is that viscosity is low, what be greater than setting-up time is then that viscosity is high, thus achieve the automatic detection of ink viscosity, the utility model utilizes siphonic effect, makes ink automatically complete viscosity measurements, decreases the use that viscosity detects solenoid valve, simplifies system architecture, be worthy of popularization.
[accompanying drawing explanation]
Fig. 1 is structural representation of the present utility model;
In figure: 1, mixing drum 2, viscosity detect cylinder 3, U trap 4, choker-line 1, constant voltage cylinder 6, exhausr port 7, viscosity measurements ink filling port 8, choker-line 29, pump 1, shower nozzle 11, pump 2 12, mixing drum ink filling port 13, viscosity measurements low level sample probe 14, the high-order sample probe of viscosity measurements 15,0 probe 16, ink bottle 17, adjuvant bottle.
[embodiment]
Below in conjunction with accompanying drawing, following further illustrating is done to the utility model:
As shown in Figure 1, the utility model comprises: mixing drum 1, be provided with viscosity in mixing drum 1 and detect cylinder 2 and constant voltage cylinder 5, viscosity detects cylinder 2, the bottom of constant voltage cylinder 5 is equipped with opening and is connected by choker-line 1, the top that viscosity detects cylinder 2 is provided with U trap 3, viscosity detects U trap 3 place in cylinder 2 and is provided with viscosity measurements low level sample probe 13, the high-order sample probe 14 of viscosity measurements and 0 probe 15, the bottom of viscosity measurements low level sample probe 13 is higher than 0 probe 15 bottom, the bottom of the high-order sample probe 14 of viscosity measurements is higher than 0 probe 15 and viscosity measurements low level sample probe 13 bottom, mixing drum 1 upper end is provided with exhausr port 6 and viscosity measurements ink filling port 7, mixing drum 1 lower end has ink export, ink export connects pump 1 by pipeline, the other end of pump 1 connects choker-line 28 by pipeline, the other end of choker-line 28 connects viscosity measurements ink filling port 7.
In the utility model, mixing drum 1 upper end is provided with mixing drum ink filling port 12, and mixing drum ink filling port 12 connects pump 2 11 by pipeline, and the other end of pump 2 11 connects ink bottle 16 and adjuvant bottle 17 by pipeline; The other end of pump 2 11 connects shower nozzle 10 by pipeline, and the other end of shower nozzle 10 is connected on the pipeline between pump 1 and choker-line 28 by pipeline.
Principle of work of the present utility model is: after opening of device, pump works at the beginning, extracting ink in mixing drum injects in constant voltage cylinder through choker-line two, viscosity measurements ink filling port, because the flow of choker-line two is greater than choker-line one, ink can be filled rapidly in constant voltage cylinder, unnecessary ink overflows from constant voltage cylinder top, thus ensures pressure constant in constant voltage cylinder.At this moment ink arrives viscosity through choker-line one and detects cylinder, because constant voltage cylinder liquid level detects cylinder higher than viscosity always, thus ink can arrive rapidly viscosity measurements low level sample probe, the high-order sample probe position of viscosity measurements, by judging that viscosity measurements low level sample probe has the time of signal to the high-order sample probe position of viscosity measurements, and itself and the time set are contrasted, what be less than setting-up time is then that viscosity is low, and what be greater than setting-up time is then that viscosity is high.
When in viscosity detection cylinder, ink liquid level is higher than U trap the top, because pressure differential, the ink that viscosity detects in cylinder discharges viscosity measurements cylinder, until when ink liquid level is lower than syphon mouth in viscosity measurements cylinder, venting stops automatically through syphon mouth.Because constantly there is ink to inject in viscosity measurements cylinder in the lump through choker-line, when liquid level reaches U trap upper end again, siphonic effect produces again, and viscosity detects and enters automatic cycle state.When viscosity detects higher than setting-up time, solvent adds valve and opens, and adds in solvent to mixing drum and carries out viscosity adjustment.
The utility model is not by the restriction of above-mentioned embodiment; change, the modification done under other any does not deviate from Spirit Essence of the present utility model and principle, substitute, combine, simplify; all should be the substitute mode of equivalence, be included within protection domain of the present utility model.

Claims (4)

1. an ink jet numbering machine ink viscosity automatic detection device, it is characterized in that: comprise mixing drum (1), be provided with viscosity in described mixing drum (1) and detect cylinder (2) and constant voltage cylinder (5), described viscosity detects cylinder (2), the bottom of constant voltage cylinder (5) is equipped with opening and is connected by choker-line one (4), the top that described viscosity detects cylinder (2) is provided with U trap (3), described viscosity detects cylinder (2) interior U trap (3) place and is provided with viscosity measurements low level sample probe (13), the high-order sample probe (14) of viscosity measurements and 0 probe (15), the bottom of described viscosity measurements low level sample probe (13) is higher than 0 probe (15) bottom, the bottom of the high-order sample probe (14) of described viscosity measurements is higher than 0 probe (15) and viscosity measurements low level sample probe (13) bottom, described mixing drum (1) upper end is provided with viscosity measurements ink filling port (7), described mixing drum (1) lower end has ink export, described ink export connects pump one (9) by pipeline, the other end of described pump one (9) connects choker-line two (8) by pipeline, the other end of described choker-line two (8) connects viscosity measurements ink filling port (7).
2. ink jet numbering machine ink viscosity automatic detection device as claimed in claim 1, it is characterized in that: described mixing drum (1) upper end is provided with mixing drum ink filling port (12), described mixing drum ink filling port (12) connects pump two (11) by pipeline, and the other end of described pump two (11) connects ink bottle (16) and adjuvant bottle (17) by pipeline.
3. ink jet numbering machine ink viscosity automatic detection device as claimed in claim 2, it is characterized in that: the other end of described pump two (11) connects shower nozzle (10) by pipeline, the other end of described shower nozzle (10) is connected on the pipeline between pump one (9) and choker-line two (8) by pipeline.
4. ink jet numbering machine ink viscosity automatic detection device as claimed in claim 2 or claim 3, is characterized in that: described mixing drum (1) upper end is provided with exhausr port (6).
CN201520051608.7U 2015-01-26 2015-01-26 Ink jet numbering machine ink viscosity automatic detection device Withdrawn - After Issue CN204359641U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520051608.7U CN204359641U (en) 2015-01-26 2015-01-26 Ink jet numbering machine ink viscosity automatic detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520051608.7U CN204359641U (en) 2015-01-26 2015-01-26 Ink jet numbering machine ink viscosity automatic detection device

Publications (1)

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CN204359641U true CN204359641U (en) 2015-05-27

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105346285A (en) * 2015-10-28 2016-02-24 重庆宏劲印务有限责任公司 Intaglio printing process for preventing sawtooth opening from being formed in image-text edge of printing material
CN106313896A (en) * 2016-08-23 2017-01-11 厦门英杰华机电科技有限公司 Viscosity detection method for ink-jet printer
CN109900595A (en) * 2019-03-07 2019-06-18 谢坚 A kind of ink jet numbering machine viscosity measurement device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105346285A (en) * 2015-10-28 2016-02-24 重庆宏劲印务有限责任公司 Intaglio printing process for preventing sawtooth opening from being formed in image-text edge of printing material
CN106313896A (en) * 2016-08-23 2017-01-11 厦门英杰华机电科技有限公司 Viscosity detection method for ink-jet printer
CN106313896B (en) * 2016-08-23 2017-11-17 厦门英杰华机电科技有限公司 Ink jet numbering machine method for detecting viscosity
CN109900595A (en) * 2019-03-07 2019-06-18 谢坚 A kind of ink jet numbering machine viscosity measurement device
CN109900595B (en) * 2019-03-07 2021-11-19 安徽华普检测技术有限公司 Device for measuring viscosity of ink jet printer

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150527

Effective date of abandoning: 20181108

AV01 Patent right actively abandoned

Granted publication date: 20150527

Effective date of abandoning: 20181108

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned
TR01 Transfer of patent right

Effective date of registration: 20201026

Address after: 200000 West, 4th floor, No. 999 (t15-1), ningqiao Road, China (Shanghai) pilot Free Trade Zone, Pudong New Area, Shanghai

Patentee after: SHANGHAI METRONIC ROTTWEIL ELECTRONIC MACHINERY TECHNOLOGY Co.,Ltd.

Patentee after: Shanghai Yufeng Electronic Technology Co., Ltd

Address before: 461223, No. 79 Xiao Tian Village, Malan Town, Yanling County, Xuchang, Henan, Henan

Patentee before: Du Chunmao

TR01 Transfer of patent right
CU01 Correction of utility model

Correction item: abandonment of patent right

Correct: Voluntary surrender of patent rights

False: The initiative to abandon the patent

Number: 48-01

Volume: 34

CU01 Correction of utility model