CN209407685U - A kind of full-automatic silica crucible laser mark printing device - Google Patents

A kind of full-automatic silica crucible laser mark printing device Download PDF

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Publication number
CN209407685U
CN209407685U CN201822232826.7U CN201822232826U CN209407685U CN 209407685 U CN209407685 U CN 209407685U CN 201822232826 U CN201822232826 U CN 201822232826U CN 209407685 U CN209407685 U CN 209407685U
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China
Prior art keywords
crucible
laser
full
rack
printing device
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CN201822232826.7U
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Chinese (zh)
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杜兴林
于宏宇
王建龙
章北铭
温存元
于学敏
祝立君
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Inner Mongolia Ojing Quartz Co Ltd
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Inner Mongolia Ojing Quartz Co Ltd
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Abstract

The utility model discloses a kind of full-automatic silica crucible laser mark printing devices, including rack, transmission mechanism, elevating mechanism, the mechanism that reforms and laser module and controller in the rack;The mechanism that reforms includes the holding claw of reforming moved synchronously along the setting of transmission direction two sides;Laser module includes dress lead screw mould group driven by stepper motors on the rack, the ultrasonic sensor being used for the laser of crucible mark and for measuring laser to crucible distance in lead screw mould group;Controller is electrically connected with transmission mechanism, elevating mechanism, the mechanism that reforms and laser module respectively.The utility model, which solves, to carry out crucible label with card in the prior art and is easy to fill and present mistake or mixes up, lose, and the problem of being difficult to realize full-automatic laser marking, the utility model is able to achieve full-automatic laser marking, it is high to position operating accuracy, high production efficiency has a safety feature, and rejection rate is low, production cost can be reduced, convenient for effectively control quality.

Description

A kind of full-automatic silica crucible laser mark printing device
Technical field
The utility model relates to crucible marking device technical field, specifically a kind of full-automatic silica crucible laser marking dress It sets.
Background technique
At present in silica crucible manufacturing process, the tracking of product is still by the way of card, and working efficiency is low, Er Qiesui The increase of yield, it is easy to be in the presence of filling and presenting mistake or mix up, lose, cause postorder tracking difficult.Quartzy earthenware After the completion of crucible manufacture, client using when be also easy to occur crucible different model or different supplier misplaces the feelings mixed up Condition, once going wrong needs reversely tracing in client's use process, the root for the generation that searches problem is inconvenient.With intelligence Change the starting successively of manufacture, card in terms of automatic identification there are certain deficiency, accurately and conveniently not as good as laser marking identification, The existing mode using card indicia cannot effectively improve the qualitative control of crucible, not be suitable for high-volume high efficiency production earthenware Crucible.Due to being constantly progressive for technology, the range of crucible application is more and more wider, and the size of crucible is increasing, in the market very Multiple enterprises have done various trials, but since the degree of automation is low, it is difficult to realize full-automatic laser marking, and we utilize itself Advantage realize the technology that laser marking automatically tracks by test of many times, the quality of crucible will be increased substantially.
Utility model content
The purpose of the utility model is to provide a kind of high degree of automations, and positioning accuracy is high, high production efficiency, rejection rate It is low, crucible production cost can be reduced, convenient for effectively managing the full-automatic silica crucible laser mark printing device of quality.
To achieve the goals above, a kind of full-automatic silica crucible laser mark printing device provided by the utility model, it is special Sign is, including rack, transmission mechanism, elevating mechanism, the mechanism that reforms and laser module in the rack, and control Device;The mechanism that reforms includes the holding claw of reforming moved synchronously along the setting of transmission direction two sides;The laser module includes dress The lead screw mould group driven by stepper motors in the rack is used in the lead screw mould group to the laser of crucible mark Device and ultrasonic sensor for measuring the laser to crucible distance;The controller respectively with the transmission mechanism, The elevating mechanism, reform mechanism and the laser module electrical connection.
Preferably, the transmission mechanism is the conveyer mechanism being horizontally set in the rack, the conveyer mechanism Including several synchronous drivings and spaced conveyer belt.
Preferably, the feed end of the transmission mechanism and discharge end are respectively arranged with the induction being electrically connected with the controller Device.
Preferably, the sensing device is correlation type photoelectric sensor.
Preferably, it further includes air-drying spray that the laser module, which is arranged on the transmission mechanism side, the laser module, Head.
Preferably, the flue dust collecting of cleaning is collected when being additionally provided with mark on the laser module to slag and flue dust Device.
Preferably, the elevating mechanism is located in the transmission mechanism bottom interval, and can hold up crucible.
Preferably, the elevating mechanism includes the carrying roller on the roller rack and the linear bearing for guiding, described Roller rack and carrying roller are driven by the cylinder.
Preferably, the mechanism that reforms further includes above crucible mark location along the synchronization of vertical transfer direction arrangement Band, synchronous pulley, and the gear with synchronous pulley coaxial arrangement thereunder, the synchronous belt drive the synchronous belt Wheel and gear rotation, the gear drive the rack movement being connected with the holding claw of reforming, holding claw of reforming described in drive clamping with It opens, realization is reformed.
Preferably, the synchronous belt is driven by reform cylinder, and holding claw of reforming described in the rack drives is described along being mounted on Sliding rail in rack is mobile.
The full-automatic silica crucible laser mark printing device provided by the utility model, has the following beneficial effects:
1. full-automatic silica crucible laser mark printing device described in the utility model solve in the prior art using card into Row crucible label, working efficiency is low, is easy to appear the situation for filling and presenting mistake or mixing up, losing, and causes postorder tracking difficult, And since the degree of automation is low, it is difficult to which the problem of realizing full-automatic laser marking, the utility model is compact-sized, saves empty Between, high degree of automation is able to achieve full-automatic laser marking, is convenient for tracking crucible situation during manufacture crucible, not need It is especially tailored positioning device for the silica crucible of every kind of specification, and positions operating accuracy height, low energy consumption, high production efficiency, peace Full performance is good, and rejection rate is low, can reduce the production cost of crucible, and manipulates simply, convenient for effectively control quality.
2. the cleannes of crucible can be effectively ensured, crucible and working environment are avoided pollution.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the full-automatic silica crucible laser mark printing device provided by the utility model;
Fig. 2 is the structural schematic diagram of the laser module;
Fig. 3 is the structural schematic diagram of the mechanism that reforms;
Fig. 4 is the structural schematic diagram of the elevating mechanism;
In figure:
31. synchronous pulley of mechanism 1. 2. laser module 3. of rack is reformed
32. 33. reform cylinder of synchronous belt, 34. rack gear, 35. gear
36. 4. elevating mechanism of holding claw of reforming, 41. cylinder, 42. linear bearing
43. 44. carrying roller of roller rack, 5. transmission mechanism, 6. lead screw mould group
7. air-dried 8. flue dust collecting device of spray head, 9. ultrasonic sensor
10. 11. stepper motor of laser.
Specific embodiment
As illustrated in fig. 1 and 2, a kind of full-automatic silica crucible laser mark printing device, which is characterized in that including rack 1, be mounted in Transmission mechanism 5, elevating mechanism 4, the mechanism that reforms 3 and laser module 2 and controller in the rack 1;The mechanism that reforms 3 include the holding claw 36 of reforming moved synchronously along the setting of transmission direction two sides;The laser module 2 includes being mounted in the rack 1 On the lead screw mould group 6 that is driven by stepper motor 11, in the lead screw mould group 6 for crucible mark laser 10, With the ultrasonic sensor 9 for arriving crucible distance for measuring the laser 10;The controller respectively with the transmission mechanism 5, the elevating mechanism 4, reform mechanism 3 and the electrical connection of the laser module 2.The transmission mechanism 5 is to be horizontally set on Conveyer mechanism in the rack 1, the conveyer mechanism include several synchronous drivings and spaced conveyer belt.Institute The feed end and discharge end of stating transmission mechanism 5 are respectively arranged with the sensing device being electrically connected with the controller, are carrying out laser For realizing 5 transportation crucible of transmission mechanism described in Automatic Control during mark, it is not required to manual operation.The sensing device is Correlation type photoelectric sensor will not cause to damage, it can be achieved that non-contacting detection to crucible and sensor, and the response time is short, point Resolution is high, and detection accuracy is high, long service life.
As illustrated in fig. 1 and 2, the side of the transmission mechanism 5 is arranged in the laser module 2, goes back on the laser module 2 Including air-drying spray head 7, can choose whether to need to air-dry according to crucible surface humidity condition.It is also set up on the laser module 2 There is the flue dust collecting device 8 for being collected cleaning when mark to slag and flue dust, is negative pressure suspended hood, crucible can be effectively ensured Cleannes avoid pollution crucible and working environment.
As shown in figs. 1 and 4, the elevating mechanism 4 is located in 5 bottom interval of transmission mechanism, and can hold up crucible To setting height, reforms convenient for postorder and position the mark location of crucible.The elevating mechanism 4 includes on roller rack 43 Carrying roller 44 and linear bearing 42 for guiding, the roller rack 43 and carrying roller 44 make oscilaltion by the driving of cylinder 41.
As shown in figure 3, the mechanism 3 that reforms further includes being located above crucible mark location along the horizontal cloth in vertical transfer direction The synchronous belt 32 set, synchronous pulley 31, and the gear 35 with the synchronous pulley 31 coaxial arrangement thereunder, the synchronization Band 32 drives the synchronous pulley 31 and gear 35 to rotate, and the gear 35 drives the rack gear 34 being connected with the holding claw 36 of reforming Movement, holding claw 36 of reforming described in drive are clamped and are opened, and realization is reformed, the movement of the mechanism 3 that reforms by the controller from Dynamic control, positioning accuracy of reforming height.The synchronous belt 32 is driven by the opposite reform cylinder 33 of two directions of motion, the institute of two sides Rack gear 34 is stated to drive the holding claw 36 of reforming opposite along the sliding rail (not shown) level being mounted in the rack 1 or deviate from It moves back and forth and realizes clamping or open, it is ensured that crucible is reformed in place along parallel and vertical transfer (i.e. all around) direction.Institute The carrying roller 44 and crucible stated on elevating mechanism 4 are rolling friction, if the holding claw 36 of reforming is provided with crucible contact position Dry milling wheel is also rolling friction, so that the locating effect of reforming of the mechanism 3 that reforms is more preferable.
The working principle of full-automatic silica crucible laser mark printing device described in the utility model: in use, crucible is placed In the feed end (left end in Fig. 1) of the transmission mechanism 5, the transmission mechanism 5 forwards crucible after starting motor, when When crucible is by between the correlation type photoelectric sensor, the correlation type photoelectric sensor have be transferred to after signal intensity it is described Controller automatically controls after crucible is transmitted to 4 top of elevating mechanism by the transmission mechanism 5 and stops.The elevating mechanism 4 On the cylinder 41 that is distributed in 43 bottom four corners of roller rack by four of the carrying roller 44 jack up, the carrying roller 44 It stretches out the transmission mechanism 5 and jacks up crucible, then the holding claw 36 of reforming of 3 two sides of mechanism of reforming clamps crucible, by earthenware Crucible, which is reformed, is placed on the mark location of setting.After crucible is reformed, start the laser module 2, utilizes the ultrasonic sensor 9 It measures the laser 10 and arrives the distance of crucible, and the range data measured is transferred to the controller, the then control Device controls the stepper motor 11 and the lead screw mould group 6 is driven to move, and the laser 10 is driven to move to setting apart from crucible Positioning set place, crucible can be carried out using the air-dried spray head 7 according to crucible surface humidity condition before mark it is air-dried, described in starting The number being previously set can be printed in crucible surface after laser 10, can also be fought each other by the flue dust collecting device 8 The slag and flue dust generated during mark is cleared up, and crucible and working environment are avoided pollution.After the completion of mark, the laser group Part 2 returns to position of readiness.Then crucible moves forward, until by the described of 5 discharge end of transmission mechanism setting Correlation type photoelectric sensor, the correlation type photoelectric sensor have signal intensity, and the controller controls the transmission mechanism 5 and stops Only work.
Full-automatic silica crucible laser mark printing device described in the utility model solves to be carried out using card in the prior art Crucible label, working efficiency is low, is easy to appear the situation for filling and presenting mistake or mixing up, losing, and causes postorder tracking difficult, and And since the degree of automation is low, it is difficult to which the problem of realizing full-automatic laser marking, the utility model is compact-sized, saves empty Between, high degree of automation is able to achieve full-automatic laser marking, is convenient for tracking crucible situation during manufacture crucible, not need It is especially tailored positioning device for the silica crucible of every kind of specification, and positions operating accuracy height, low energy consumption, high production efficiency, peace Full performance is good, and rejection rate is low, can reduce the production cost of crucible, and manipulates simply, convenient for effectively control quality.
Specific case used herein elaborates utility model design, and the explanation of above embodiments is It is used to help understand the core concept of the utility model.It should be pointed out that for those skilled in the art, Under the premise of not departing from utility model design, any obvious modification, equivalent replacement or the other improvements made should all It is included within the scope of protection of this utility model.

Claims (10)

1. a kind of full-automatic silica crucible laser mark printing device, which is characterized in that the transmission including rack, in the rack Mechanism, elevating mechanism, the mechanism that reforms and laser module and controller;The mechanism that reforms includes setting along transmission direction two sides The holding claw of reforming moved synchronously set;The laser module includes mounted in lead screw mould driven by stepper motors in the rack Group is used in the lead screw mould group to the laser of crucible mark and for measuring the laser to crucible distance Ultrasonic sensor;The controller respectively with the transmission mechanism, the elevating mechanism, it is described reform mechanism and it is described swash Optical assembly electrical connection.
2. full-automatic silica crucible laser mark printing device according to claim 1, which is characterized in that the transmission mechanism is The conveyer mechanism being horizontally set in the rack, the conveyer mechanism include several synchronous drivings and spaced Conveyer belt.
3. full-automatic silica crucible laser mark printing device according to claim 2, which is characterized in that the transmission mechanism Feed end and discharge end are respectively arranged with the sensing device being electrically connected with the controller.
4. full-automatic silica crucible laser mark printing device according to claim 3, which is characterized in that the sensing device is Correlation type photoelectric sensor.
5. full-automatic silica crucible laser mark printing device according to claim 1, which is characterized in that the laser module is set Set on the transmission mechanism side, the laser module further includes air-drying spray head.
6. full-automatic silica crucible laser mark printing device according to claim 1, which is characterized in that on the laser module The flue dust collecting device of cleaning is collected when being additionally provided with mark to slag and flue dust.
7. full-automatic silica crucible laser mark printing device according to claim 1, which is characterized in that the elevating mechanism is set In the transmission mechanism bottom interval, and crucible can be held up.
8. full-automatic silica crucible laser mark printing device according to claim 7, which is characterized in that the elevating mechanism packet The carrying roller on roller rack and the linear bearing for guiding are included, the roller rack and carrying roller are driven by the cylinder.
9. full-automatic silica crucible laser mark printing device according to claim 1, which is characterized in that described to reform mechanism also Including be located at crucible mark location above along vertical transfer direction arrangement synchronous belt, synchronous pulley, and with the synchronous belt Wheel coaxial arrangement gear thereunder, the synchronous belt drive the synchronous pulley and gear rotation, the gear driving with The connected rack movement of holding claw of reforming, holding claw of reforming described in drive are clamped and are opened, and realization is reformed.
10. full-automatic silica crucible laser mark printing device according to claim 9, which is characterized in that the synchronous belt by Reform cylinder drives, and holding claw of reforming described in the rack drives is moved along the sliding rail being mounted on the rack.
CN201822232826.7U 2018-11-16 2018-12-28 A kind of full-automatic silica crucible laser mark printing device Active CN209407685U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201821889646X 2018-11-16
CN201821889646 2018-11-16

Publications (1)

Publication Number Publication Date
CN209407685U true CN209407685U (en) 2019-09-20

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Application Number Title Priority Date Filing Date
CN201822232826.7U Active CN209407685U (en) 2018-11-16 2018-12-28 A kind of full-automatic silica crucible laser mark printing device

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113275756A (en) * 2021-06-18 2021-08-20 张怡 L-shaped optical path device and using method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113275756A (en) * 2021-06-18 2021-08-20 张怡 L-shaped optical path device and using method

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