CN211794648U - Sole gluing device for shoe factory - Google Patents

Sole gluing device for shoe factory Download PDF

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Publication number
CN211794648U
CN211794648U CN201922339603.5U CN201922339603U CN211794648U CN 211794648 U CN211794648 U CN 211794648U CN 201922339603 U CN201922339603 U CN 201922339603U CN 211794648 U CN211794648 U CN 211794648U
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China
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input
electric telescopic
telescopic handle
shoe
open source
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Expired - Fee Related
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CN201922339603.5U
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Chinese (zh)
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不公告发明人
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Jiangsu Best Technology Co ltd
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Jiangsu Best Technology Co ltd
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Abstract

The utility model discloses a sole rubberizing device for shoes factory, which comprises a frame, install belt conveyor, open source singlechip, slewing mechanism and vertical adjustment mechanism in the frame respectively, install the telescopic machanism on the slewing mechanism, and telescopic machanism's tip installs the opening mechanism, vertical adjustment mechanism's side-mounting has horizontal adjustment mechanism, installs on the horizontal adjustment mechanism and spouts gluey equipment, and install agitating unit and metering device on spouting gluey equipment respectively, this rotation type drying device for shoemaking has following benefit: through the work of the second electric telescopic handle of open source single chip microcomputer control, the flexible end of second electric telescopic handle drives the second kicker block and carries out concertina movement to tensioning shoes inside, it possesses the regulating power, is convenient for strut not unidimensional shoes, has improved this rubberizing device's adaptability greatly.

Description

Sole gluing device for shoe factory
Technical Field
The utility model relates to a shoemaking equipment technical field specifically is a sole mucilage binding is used to shoes factory.
Background
In the prior art: the patent of grant publication No. CN 206744718U discloses a sole gluing device for shoe factory, which comprises a base, wherein a liquid storage box is arranged on the base, a rotating shaft is horizontally arranged in the liquid storage box, one end of the rotating shaft is inserted on the side wall of the liquid storage box, the other end of the rotating shaft penetrates through another side wall of the liquid storage box and is connected with an output shaft of a motor, a bearing is arranged at the joint of the rotating shaft and the liquid storage box, a rotating cylinder is fixedly sleeved outside the rotating shaft, a plurality of groove strips are arranged on the outer surface of the rotating cylinder at intervals along the axial direction, a mounting strip is inserted in each groove strip, the bottom of the mounting strip is connected with the groove strips through a connecting strip, a plurality of brushes and baffles are respectively connected at the tops of the mounting strips, and the plurality of brushes and the plurality of baffles are arranged in a staggered manner in sequence, are glued through the brushes, the uniformity is poor, the work quality is poor, and need change after the brush sclerosis, and is very troublesome, and simultaneously, its rubberizing position is limited only to the touching position of brush and sole, and the working capability is poor, and its brace rod does not possess the regulating power, and adaptability is poor, can not satisfy the user demand.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a sole rubberizing device for shoes factory, the rubberizing homogeneity is good, and work quality is good, and the working capability is strong, and adaptability is strong, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a sole rubberizing device for shoe factory, includes the frame, install belt conveyor, open source singlechip, slewing mechanism and vertical adjustment mechanism in the frame respectively, install telescopic machanism on the slewing mechanism, and telescopic machanism's tip installs and struts the mechanism, vertical adjustment mechanism's side-mounting has horizontal adjustment mechanism, installs on the horizontal adjustment mechanism and spouts gluey equipment, and installs agitating unit and metering device on spouting gluey equipment respectively, the output of external power supply is connected to the input electricity of open source singlechip, and the input of belt conveyor is connected to the output electricity of open source singlechip.
As a preferred technical scheme of the utility model, slewing mechanism includes step motor, and step motor installs the side in the frame, be fixed with the carousel on step motor's the output shaft, step motor's input is connected to the output electricity of open source singlechip.
As a preferred technical scheme of the utility model, telescopic machanism includes first electric telescopic handle, and first electric telescopic handle installs the side at the carousel, first electric telescopic handle installs first rotatory electric connector with the junction of carousel, and first electric telescopic handle's flexible end is fixed with first kicking block, the input of first rotatory electric connector is connected to the output electricity of open source singlechip, and first electric telescopic handle's input is connected to first rotatory electric connector's output electricity.
As an optimized technical scheme of the utility model, the distraction mechanism has four groups, and four groups distraction mechanism rotation array settings.
As the utility model discloses a preferred technical scheme, strutting the mechanism and including second electric telescopic handle, second electric telescopic handle installs the side at first bracer, the rotatory electric connector of second is installed with the junction of first bracer to second electric telescopic handle, and second electric telescopic handle's flexible end is fixed with the second bracer, the input of the rotatory electric connector of second is connected to the output electricity of open source singlechip, and the input of second electric telescopic handle is connected to the output electricity of the rotatory electric connector of second.
As a preferred technical scheme of the utility model, vertical adjustment mechanism includes first guide rail, and first guide rail is vertical to be fixed in the inboard of frame, first guide rail has a linear electric motor through first slider swing joint, first linear electric motor's input is connected to the output electricity of open source singlechip.
As a preferred technical scheme of the utility model, horizontal adjustment mechanism includes the second guide rail, and the second guide rail is fixed in first linear electric motor's side, the second guide rail has second linear electric motor through second slider swing joint, second linear electric motor's input is connected to the output electricity of open source singlechip.
As a preferred technical scheme of the utility model, spout gluey equipment and include the liquid reserve tank and spout gluey head, spout gluey head and install on second linear electric motor, the liquid reserve tank is fixed in the frame, and the liquid reserve tank passes through flexible pipe of screw thread and spouts gluey head intercommunication, the booster pump is installed with the junction of liquid reserve tank to the flexible pipe of screw thread, and the booster pump is located the inboard of liquid reserve tank, the input of booster pump is connected to the output electricity of open source singlechip.
As the utility model discloses an optimized technical scheme, agitating unit includes agitator motor, and agitator motor installs the side at the liquid reserve tank, be fixed with stirring vane on agitator motor's the output shaft, agitator motor's input is connected to the output electricity of open source singlechip.
As the utility model discloses an optimized technical scheme, metering device includes flow control valve and electron flowmeter, and flow control valve and electron flowmeter all install on the flexible pipe of screw thread, the input of open source singlechip is connected to electron flowmeter's output electricity, and flow control valve's input is connected to the output electricity of open source singlechip.
Compared with the prior art, the beneficial effects of the utility model are that: this rotation type drying device for shoemaking has following benefit:
1. through the work of the second electric telescopic handle of open source single chip microcomputer control, the flexible end of second electric telescopic handle drives the second kicker block and carries out concertina movement to tensioning shoes inside, it possesses the regulating power, is convenient for strut not unidimensional shoes, has improved this rubberizing device's adaptability greatly.
2. The longitudinal working position of the glue spraying equipment is adjusted through the longitudinal adjusting mechanism, the transverse working position of the glue spraying equipment is adjusted through the transverse adjusting mechanism, the mechanical degree is high, the adjusting capacity is strong, gluing is convenient to different parts of the sole, and the working capacity of the gluing device is greatly improved.
3. The booster pump is controlled to work by the open-source single chip microcomputer, the booster pump boosts the pressure in the liquid storage tank, the glue solution is conveyed to the glue spraying head through the threaded telescopic pipe under the action of pressure and is sprayed on the sole through the glue spraying head, so that the gluing work is finished, the gluing uniformity is good, the trouble of replacing a brush is avoided, and the working quality is good.
4. The conveying capacity of the threaded telescopic pipe is monitored through the electronic flowmeter, monitored information is transmitted to the open-source single-chip microcomputer, the open-source single-chip microcomputer analyzes and processes the information, the flow regulating valve is controlled to regulate the conveying capacity of the threaded telescopic pipe according to preset parameters, the metering is accurate, and the uniformity of gluing is guaranteed.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic side view of the present invention;
fig. 3 is a sectional view of the structure of the present invention.
In the figure: 1 frame, 2 open source single-chip microcomputers, 3 step motors, 4 turntables, 5 first rotary electric connectors, 6 first electric telescopic rods, 7 first supporting blocks, 8 second supporting blocks, 9 second electric telescopic rods, 10 second rotary electric connectors, 11 second linear motors, 12 second guide rails, 13 first guide rails, 14 first linear motors, 15 liquid storage tanks, 16 stirring motors, 17 belt conveyors, 18 rotating mechanisms, 19 telescopic mechanisms, 20 expanding mechanisms, 21 transverse adjusting mechanisms, 22 longitudinal adjusting mechanisms, 23 threaded telescopic pipes, 24 glue spraying heads, 25 stirring devices, 26 stirring blades, 27 flow adjusting valves, 28 electronic flow meters, 29 booster pumps, 30 metering devices and 31 glue spraying equipment.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: the utility model provides a sole rubberizing device for shoe factory, which comprises a frame 1, install belt conveyor 17 on the frame 1 respectively, open source singlechip 2, slewing mechanism 18 and vertical adjustment mechanism 22, slewing mechanism 18 is last to install telescopic machanism 19, and telescopic machanism 19's tip is installed and is propped opening mechanism 20, vertical adjustment mechanism 22's side-mounting has horizontal adjustment mechanism 21, install on the horizontal adjustment mechanism 21 and spout gluey equipment 31, and install agitating unit 25 and metering device 30 on spouting gluey equipment 31 respectively, open source singlechip 2's input electricity is connected external power supply's output, open source singlechip 2's output electricity is connected belt conveyor 17's input, through open source singlechip 2 control belt conveyor 17 work, belt conveyor 17 carries the shoes of treating the rubberizing to propping opening mechanism 20 under.
The rotating mechanism 18 comprises a stepping motor 3, the stepping motor 3 is installed on the side face of the rack 1, a turntable 4 is fixed on an output shaft of the stepping motor 3, an output end of the open-source single chip microcomputer 2 is electrically connected with an input end of the stepping motor 3, the stepping motor 3 is controlled to work through the open-source single chip microcomputer 2, an output shaft of the stepping motor 3 drives the turntable 4 to rotate, the turntable 4 drives the opening mechanism 20 to rotate, and therefore shoes are turned to a gluing position, and design reasonability is guaranteed.
Telescopic machanism 19 includes first electric telescopic handle 6, first electric telescopic handle 6 is installed in the side of carousel 4, first electric telescopic handle 6 is installed with the junction of carousel 4 first rotatory electric connector 5, first electric telescopic handle 6's telescopic end is fixed with first kicker 7, the input of first rotatory electric connector 5 is connected to the output electricity of open source singlechip 2, first electric telescopic handle 6's input is connected to the output electricity of first rotatory electric connector 5, through the work of open source singlechip 2 control first electric telescopic handle 6, first electric telescopic handle 6's telescopic end drives first kicker 7 and carries out elevating movement, thereby make inside first kicker 7 gets into shoes, be convenient for prop open mechanism 20 and prop open shoes.
The opening mechanisms 20 are provided with four groups, the four groups of opening mechanisms 20 are arranged in a rotating array, and continuous operation is facilitated through the multiple groups of the opening mechanisms.
Prop opening mechanism 20 and include second electric telescopic handle 9, second electric telescopic handle 9 installs the side at first bracer 7, second electric telescopic handle 9 installs the rotatory electric connector 10 of second with the junction of first bracer 7, the flexible end of second electric telescopic handle 9 is fixed with second bracer 8, the input of the rotatory electric connector 10 of second is connected to the output electricity of open source singlechip 2, the input of second electric telescopic handle 9 is connected to the output electricity of the rotatory electric connector 10 of second, through the work of open source singlechip 2 control second electric telescopic handle 9, the flexible end of second electric telescopic handle 9 drives second bracer 8 and carries out concertina movement, thereby carry out the tensioning to shoes inside, it possesses the regulating power, be convenient for prop open not unidimensional shoes, the adaptability of this rubberizing device has been improved greatly.
Vertical adjustment mechanism 22 includes first guide rail 13, and first guide rail 13 is vertical to be fixed in the inboard of frame 1, and first guide rail 13 has first linear electric motor 14 through first slider swing joint, and the input of first linear electric motor 14 is connected to the output electricity of open source singlechip 2, controls first linear electric motor 14 work through open source singlechip 2, and first linear electric motor 14 is the linear motion through first slider on first guide rail 13 to adjust the vertical operating position of spouting gluey equipment 31.
Horizontal adjustment mechanism 21 includes second guide rail 12, second guide rail 12 is fixed in the side of first linear electric motor 14, second guide rail 12 has second linear electric motor 11 through second slider swing joint, the input of second linear electric motor 11 is connected to open source singlechip 2's output electricity, through the work of open source singlechip 2 control second linear electric motor 11, second linear electric motor 11 is through the second slider linear motion on second guide rail 12 to adjust the horizontal operating position of spouting gluey equipment 31.
Adjust the vertical operating position who spouts gluey equipment 31 through vertical adjustment mechanism 22, adjust the horizontal operating position who spouts gluey equipment 31 through horizontal adjustment mechanism 21, its degree of mechanization is high, and the regulating power is strong, is convenient for carry out the rubberizing to the different positions of sole, has improved this rubberizing device's operational capability greatly.
Spout gluey equipment 31 including liquid reserve tank 15 and spout gluey head 24, spout gluey head 24 and install on second linear electric motor 11, liquid reserve tank 15 is fixed in frame 1, liquid reserve tank 15 communicates with spout gluey head 24 through flexible pipe 23 of screw thread, booster pump 29 is installed with the junction of liquid reserve tank 15 to flexible pipe 23 of screw thread, booster pump 29 is located the inboard of liquid reserve tank 15, open source singlechip 2's the input of output electricity booster pump 29, through the work of open source singlechip 2 control booster pump 29, booster pump 29 is to the pressure boost in the liquid reserve tank 15, the glue solution is carried to spouting gluey head 24 in through flexible pipe 23 of screw thread under the pressure effect, spray on the sole through spout gluey head 24, thereby accomplish rubberizing work, it glues the homogeneity well on it, the trouble of not changing the brush, the operating quality is good.
Agitating unit 25 includes agitator motor 16, agitator motor 16 installs the side at liquid reserve tank 15, is fixed with stirring vane 26 on agitator motor 16's the output shaft, and agitator motor 16's input is connected to open source singlechip 2's output electricity, and through the work of open source singlechip 2 control agitator motor 16, agitator motor 16's output shaft drives stirring vane 26 and rotates to with the liquid stirring in the liquid reserve tank 15, guarantee can smoothly carry the glue solution.
Metering device 30 includes flow control valve 27 and electron flowmeter 28, flow control valve 27 and electron flowmeter 28 are all installed on flexible pipe 23 of screw thread, the input of open source singlechip 2 is connected to electron flowmeter 28's output electricity, open source singlechip 2's output electricity is connected flow control valve 27's input, monitor the conveying capacity of flexible pipe 23 of screw thread through electron flowmeter 28, the information transfer of monitoring is for open source singlechip 2, open source singlechip 2 carries out analysis processes to the information, and adjust the conveying capacity of flexible pipe 23 of screw thread according to predetermineeing parameter control flow control valve 27, its measurement is accurate, the homogeneity of rubberizing has been guaranteed.
The belt conveyor 17, the stepping motor 3, the first electric telescopic rod 6, the second electric telescopic rod 9, the first linear motor 14, the second linear motor 11, the booster pump 29, the stirring motor 16, the flow regulating valve 27 and the electronic flowmeter 28 controlled by the open-source singlechip 2 are all common methods in the prior art, and the open-source singlechip 2 is a PIC series singlechip.
When in use: the belt conveyor 17 is controlled by the open-source single chip microcomputer 2 to work, and the belt conveyor 17 conveys the shoes to be glued to the position right below the spreading mechanism 20.
The first electric telescopic rod 6 is controlled to work through the open-source single chip microcomputer 2, and the telescopic end of the first electric telescopic rod 6 drives the first supporting block 7 to move up and down, so that the first supporting block 7 enters the inside of the shoe.
The second electric telescopic rod 9 is controlled to work through the open-source single chip microcomputer 2, and the telescopic end of the second electric telescopic rod 9 drives the second supporting block 8 to perform telescopic motion, so that the interior of the shoe is tensioned.
The work of the stepping motor 3 is controlled by the open-source singlechip 2, the output shaft of the stepping motor 3 drives the turntable 4 to rotate, and the turntable 4 drives the spreading mechanism 20 to rotate, so that the shoes are turned to the gluing position.
The first linear motor 14 is controlled to work by the open-source single chip microcomputer 2, and the first linear motor 14 makes linear motion on the first guide rail 13 through the first sliding block, so that the longitudinal working position of the glue spraying equipment 31 is adjusted.
The second linear motor 11 is controlled to work by the open-source single chip microcomputer 2, and the second linear motor 11 makes linear motion on the second guide rail 12 through the second sliding block, so that the transverse working position of the glue spraying equipment 31 is adjusted.
The open-source single chip microcomputer 2 controls the booster pump 29 to work, the booster pump 29 boosts the pressure in the liquid storage tank 15, the glue solution is conveyed into the glue spraying head 24 through the threaded telescopic pipe 23 under the action of pressure and is sprayed on the sole through the glue spraying head 24, and therefore the gluing work is finished.
The stirring motor 16 is controlled to work by the open-source single chip microcomputer 2, and an output shaft of the stirring motor 16 drives the stirring blade 26 to rotate, so that the liquid in the liquid storage tank 15 is uniformly stirred.
The conveying capacity of the threaded telescopic pipe 23 is monitored through the electronic flowmeter 28, monitored information is transmitted to the open-source single-chip microcomputer 2, the open-source single-chip microcomputer 2 analyzes and processes the information, and the conveying capacity of the threaded telescopic pipe 23 is adjusted through the flow adjusting valve 27 according to preset parameters.
The utility model discloses a 9 works of open source singlechip 2 control second electric telescopic handle, and the flexible end of second electric telescopic handle 9 drives second kicker 8 and carries out concertina movement to carrying out the tensioning to shoes inside, it possesses the regulating power, is convenient for strut not unidimensional shoes, has improved this rubberizing device's adaptability greatly.
Adjust the vertical operating position who spouts gluey equipment 31 through vertical adjustment mechanism 22, adjust the horizontal operating position who spouts gluey equipment 31 through horizontal adjustment mechanism 21, its degree of mechanization is high, and the regulating power is strong, is convenient for carry out the rubberizing to the different positions of sole, has improved this rubberizing device's operational capability greatly.
The booster pump 29 is controlled to work through the open-source single chip microcomputer 2, the booster pump 29 boosts the pressure in the liquid storage tank 15, the glue solution is conveyed into the glue spraying head 24 through the threaded telescopic pipe 23 under the action of pressure and is sprayed on the sole through the glue spraying head 24, so that the gluing work is completed, the gluing uniformity is good, the trouble of replacing a brush is avoided, and the working quality is good.
The conveying capacity of the threaded telescopic pipe 23 is monitored through the electronic flowmeter 28, monitored information is transmitted to the open-source single-chip microcomputer 2, the open-source single-chip microcomputer 2 analyzes and processes the information, the flow regulating valve 27 is controlled to regulate the conveying capacity of the threaded telescopic pipe 23 according to preset parameters, the metering is accurate, and the uniformity of gluing is guaranteed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a shoe sole mucilage binding is used to shoe factory, includes frame (1), its characterized in that: install belt conveyor (17), open source singlechip (2), slewing mechanism (18) and vertical adjustment mechanism (22) on frame (1) respectively, install telescopic machanism (19) on slewing mechanism (18), and the tip of telescopic machanism (19) installs distraction mechanism (20), the side-mounting of vertical adjustment mechanism (22) has horizontal adjustment mechanism (21), installs on horizontal adjustment mechanism (21) and spouts gluey equipment (31), and spouts and install agitating unit (25) and metering device (30) on gluey equipment (31) respectively, the output of external power source is connected to the input electricity of open source singlechip (2), and the input of belt conveyor (17) is connected to the output electricity of open source singlechip (2).
2. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: the rotating mechanism (18) comprises a stepping motor (3), the stepping motor (3) is installed on the side face of the rack (1), a rotating disc (4) is fixed on an output shaft of the stepping motor (3), and the output end of the open-source single chip microcomputer (2) is electrically connected with the input end of the stepping motor (3).
3. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: telescopic machanism (19) include first electric telescopic handle (6), and the side in carousel (4) is installed in first electric telescopic handle (6), first electric telescopic handle (6) are installed first rotatory electric connector (5) with the junction of carousel (4), and the flexible end of first electric telescopic handle (6) is fixed with first kicker block (7), the input of first rotatory electric connector (5) is connected to the output electricity of open source singlechip (2), and the input of first electric telescopic handle (6) is connected to the output electricity of first rotatory electric connector (5).
4. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: the four groups of the opening mechanisms (20) are arranged in a rotating array mode.
5. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: strutting mechanism (20) and including second electric telescopic handle (9), the side at first bracer (7) is installed in second electric telescopic handle (9), second electric telescopic handle (9) and the junction of first bracer (7) install second rotary electric connector (10), and the flexible end of second electric telescopic handle (9) is fixed with second bracer (8), the input of second rotary electric connector (10) is connected to the output electricity of open source singlechip (2), and the input of second electric telescopic handle (9) is connected to the output electricity of second rotary electric connector (10).
6. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: the longitudinal adjusting mechanism (22) comprises a first guide rail (13), the first guide rail (13) is vertically fixed on the inner side of the rack (1), the first guide rail (13) is movably connected with a first linear motor (14) through a first sliding block, and the output end of the open-source single chip microcomputer (2) is electrically connected with the input end of the first linear motor (14).
7. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: the transverse adjusting mechanism (21) comprises a second guide rail (12), the second guide rail (12) is fixed on the side face of the first linear motor (14), the second guide rail (12) is movably connected with a second linear motor (11) through a second sliding block, and the output end of the open-source single chip microcomputer (2) is electrically connected with the input end of the second linear motor (11).
8. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: spout gluey equipment (31) and include liquid reserve tank (15) and spout gluey head (24), spout gluey head (24) and install on second linear electric motor (11), liquid reserve tank (15) are fixed in frame (1), and liquid reserve tank (15) are through flexible pipe (23) of screw and spout gluey head (24) intercommunication, booster pump (29) are installed with the junction of liquid reserve tank (15) in flexible pipe (23) of screw, and booster pump (29) are located the inboard of liquid reserve tank (15), open source singlechip (2)'s output electricity is connected the input of booster pump (29).
9. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: the stirring device (25) comprises a stirring motor (16), the stirring motor (16) is installed on the side face of the liquid storage tank (15), a stirring blade (26) is fixed on an output shaft of the stirring motor (16), and the output end of the open-source single chip microcomputer (2) is electrically connected with the input end of the stirring motor (16).
10. The shoe sole gluing device for shoe factories according to claim 1, characterized in that: metering device (30) include flow control valve (27) and electron flowmeter (28), and flow control valve (27) and electron flowmeter (28) are all installed on screw flexible pipe (23), the input of open source singlechip (2) is connected to the output electricity of electron flowmeter (28), and the input of flow control valve (27) is connected to the output electricity of open source singlechip (2).
CN201922339603.5U 2019-12-24 2019-12-24 Sole gluing device for shoe factory Expired - Fee Related CN211794648U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922339603.5U CN211794648U (en) 2019-12-24 2019-12-24 Sole gluing device for shoe factory

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Application Number Priority Date Filing Date Title
CN201922339603.5U CN211794648U (en) 2019-12-24 2019-12-24 Sole gluing device for shoe factory

Publications (1)

Publication Number Publication Date
CN211794648U true CN211794648U (en) 2020-10-30

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Application Number Title Priority Date Filing Date
CN201922339603.5U Expired - Fee Related CN211794648U (en) 2019-12-24 2019-12-24 Sole gluing device for shoe factory

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112806674A (en) * 2021-02-20 2021-05-18 杨迪 Efficient drying system for shoe processing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112806674A (en) * 2021-02-20 2021-05-18 杨迪 Efficient drying system for shoe processing

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