CN210980676U - Drying device for heightening shoe production - Google Patents
Drying device for heightening shoe production Download PDFInfo
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- CN210980676U CN210980676U CN201922175530.0U CN201922175530U CN210980676U CN 210980676 U CN210980676 U CN 210980676U CN 201922175530 U CN201922175530 U CN 201922175530U CN 210980676 U CN210980676 U CN 210980676U
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Abstract
The utility model discloses a drying device for heightening shoe production, which comprises a drying box, wherein a rotary fixed drying structure is arranged in the drying box, and the front wall surface of the drying box is provided with an opening; the rotary fixed drying structure comprises; the device comprises a mounting block, a bearing, a connecting rod, a connecting plate, a first electric push rod, a top block, a placing table, a servo motor, a supporting plate, a pair of second electric push rods with the same structure, a pair of mounting frames with the same structure, a pair of mounting boxes with the same structure, a pair of industrial fans with the same structure and a pair of thermal resistance wires with the same structure; the installation piece is settled and is gone up the wall in the stoving incasement, the utility model relates to a increase shoes production and use stoving technical field, the device is realized through rotating fixed stoving structure, rotates to dry, carries out drying process alone, guarantees every shoes off-the-shelf quality, reduces economic loss, and cold and hot wind interconversion improves drying efficiency.
Description
Technical Field
The utility model relates to a increase shoes production with stoving technical field, specifically be a increase shoes production with drying device.
Background
Nowadays, with the continuous development of society, the living standard of people is continuously improved, the quality requirements of people for life are increased, heightening shoes are one of the essential resources in life of people, heightening shoes can help people with low quality to increase confidence, with the continuous increase of the requirements of people for heightening shoes, enterprises begin to research, develop and manufacture heightening shoes to meet the requirements of people, when heightening shoes are produced, due to the characteristic of soles, the heightening shoes are bonded for many times, after bonding, the heightening shoes are placed aside for natural drying, the natural drying speed is slow, time and labor are wasted, the working efficiency is influenced, and some drying devices can dry in large quantities, but because the drying speed of each shoe is different, the condition of incomplete drying can also occur, when finished products are packed into boxes, quality problems can be generated in later selling, the economic loss is increased, and the brand quality is influenced, in view of the above, the present invention has been made in view of the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model is not enough to prior art, the utility model provides a increase shoes production and use drying device, solved current when increasing shoes in production, because the characteristic of sole needs to adhere many times, the bonding finishes the back, place one side and dry naturally, it is slow to dry naturally, waste time and energy, influence work efficiency, and some drying device, though can dry in a large number, but because every shoes drying speed is different, the not thorough condition of drying also can appear, during the finished product vanning, the later sale can produce quality problems, economic loss is increased, the technical problem of brand quality is influenced.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: a drying device for producing height-increasing shoes comprises a drying box, wherein a rotary fixed drying structure is installed in the drying box, and an opening is formed in the front wall surface of the drying box;
the rotary fixed drying structure comprises; the device comprises a mounting block, a bearing, a connecting rod, a connecting plate, a first electric push rod, a top block, a placing table, a servo motor, a supporting plate, a pair of second electric push rods with the same structure, a pair of mounting frames with the same structure, a pair of mounting boxes with the same structure, a pair of industrial fans with the same structure and a pair of thermal resistance wires with the same structure;
the mounting block is arranged on the upper wall surface in the drying box, the bearing is embedded in the lower wall surface of the mounting block, the connecting rod is embedded in the bearing, the connecting plate is arranged on the lower end surface of the connecting rod, the first electric push rod is arranged on the lower wall surface of the connecting plate, the ejector rod is arranged on the telescopic end of the first electric push rod, the ejector block is arranged on the lower end surface of the ejector rod, the placing table is arranged on the lower wall surface in the drying box and is positioned below the ejector block, the servo motor is embedded in the upper wall surface of the placing table, the supporting plate is arranged on the driving end of the servo motor, a pair of second electric push rods is arranged on the two side wall surfaces in the drying box and is positioned on the two sides of the supporting plate, a pair of the mounting frames is arranged on the telescopic end of the second electric push rod, a pair of the mounting boxes is arranged, a pair of the industrial fans are disposed in a mounting box, and a pair of the hot wires are disposed in the mounting box and located on one side of the pair of the industrial fans.
Preferably, a pair of the installation frames are n-shaped, and a protection net is installed in each of the pair of the through holes.
Preferably, the front wall surface of the drying box is movably provided with a stop door on the opening, the stop door is provided with a mounting opening, and the mounting opening is provided with glass.
Preferably, a pair of vent holes are formed in the upper wall surface of the drying box and positioned on two sides of the mounting block.
Preferably, the rear wall surfaces of the pair of mounting boxes are provided with air inlets.
Preferably, a temperature sensor is arranged on the rear wall surface in the drying box.
Advantageous effects
The utility model provides a increase shoes production and use drying device, possess following beneficial effect, this device is realized through rotating fixed drying structure, rotate the stoving, carry out drying process alone, guarantee every shoes off-the-shelf quality, reduce economic loss, cold and hot wind interconversion, improve drying efficiency, thereby solved when increasing shoes in production, because the characteristic of sole needs to adhere many times, after the adhesion finishes, place and carry out the nature on one side and dry, it is slow to dry naturally, waste time and energy, influence work efficiency, and some drying device, though can dry in a large number, but because every shoes drying rate is different, the condition that the drying is incomplete can also appear, when the finished product vanning, the selling in later stage can produce the quality problem, increase economic loss, influence the problem of brand quality.
Drawings
Fig. 1 is the utility model, which is a schematic structural diagram of a drying device for heightening shoe production.
Fig. 2 is the utility model relates to a increase shoes production with drying device's profile structure schematic diagram that looks sideways at.
Fig. 3 is the utility model relates to a section structure schematic diagram overlookes of drying device for heightening shoe production.
Fig. 4 is the utility model, which is a schematic view of the structure of the elevated-height drying device for shoe production.
Fig. 5 is a schematic view of a partially enlarged structure of the drying device for producing height-increasing shoes of the utility model shown in fig. 1.
In the figure: 1-drying box; 2-mounting the block; 3-a bearing; 4-a connecting rod; 5-connecting plates; 6-a first electric push rod; 7-a mandril; 8-a top block; 9-placing the table; 10-a servo motor; 11-a pallet; 12-a second electric push rod; 13-a mounting frame; 14-mounting a box; 15-industrial fans; 16-thermal resistance wire; 17-a protective net; 18-a shutter; 19-glass; 20-temperature sensor.
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. 1-5, the present invention provides a technical solution: a drying device for producing height-increasing shoes comprises a drying box 1, wherein a rotary fixed drying structure is installed in the drying box 1, and an opening is formed in the front wall of the drying box 1; the rotary fixed drying structure comprises; the device comprises a mounting block 2, a bearing 3, a connecting rod 4, a connecting plate 5, a first electric push rod 6, a push rod 7, a top block 8, a placing table 9, a servo motor 10, a supporting plate 11, a pair of second electric push rods 12 with the same structure, a pair of mounting frames 13 with the same structure, a pair of mounting boxes 14 with the same structure, a pair of industrial fans 15 with the same structure and a pair of thermal resistance wires 16 with the same structure; the mounting block 2 is arranged on the upper wall surface in the drying box 1, the bearing 3 is embedded in the lower wall surface of the mounting block 2, the connecting rod 4 is embedded in the bearing 3, the connecting plate 5 is arranged on the lower end surface of the connecting rod 4, the first electric push rod 6 is arranged on the lower wall surface of the connecting plate 5, the ejector rod 7 is arranged on the telescopic end of the first electric push rod 6, the ejector block 8 is arranged on the lower end surface of the ejector rod 7, the placing table 9 is arranged on the lower wall surface in the drying box 1 and is positioned below the ejector block 8, the servo motor 10 is embedded in the upper wall surface of the placing table 9, the supporting plate 11 is arranged on the driving end of the servo motor 10, a pair of the second electric push rods 12 is arranged on the two side wall surfaces in the drying box 1 and is positioned on the two sides of the supporting plate 11, a pair of the mounting brackets 13 is arranged on the telescopic ends of the pair of the second, the opposite wall surfaces of the pair of mounting boxes 14 are provided with through holes, the pair of industrial fans 15 are arranged in the mounting boxes 14, and the pair of thermal resistance wires 16 are arranged in the pair of mounting boxes 14 and located on one side of the pair of industrial fans 15; a protective net 17 is arranged in each of the pair of through holes, and the mounting frames 13 are n-shaped; a shutter 18 is movably mounted on the front wall surface of the drying box 1 and positioned on the opening, a mounting opening is formed in the shutter 18, and glass 19 is mounted on the mounting opening; a pair of vent holes are formed in the upper wall surface of the drying box 1 and positioned on two sides of the mounting block 2; the rear wall surfaces of the pair of mounting boxes 14 are provided with air inlets; and a temperature sensor 20 is arranged on the inner rear wall surface of the drying box 1.
The following are the types and functions adopted by the electrical component in the present case:
a motor driver: the S700 series driver referred to as a "servo controller" or a "servo amplifier" is a controller for controlling a servo motor, and functions like a frequency converter acting on a common ac motor, belonging to a part of a servo system and mainly applied to a high-precision positioning system. The servo motor is generally controlled by three modes of position, speed and moment, so that the high-precision positioning of a transmission system is realized, and the servo motor is a high-end product of a transmission technology at present.
All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.
Example (b): when the device is powered on by switching on an external power supply, a worker opens the shutter 18 to place shoes on the supporting plate 11, the welt is positioned below the top block 8, then the shutter 18 is closed to observe the internal situation through the glass 19, and simultaneously the programmable controller which is matched with the shutter and is edited with a control program is controlled, after the first electric push rod 6 which is arranged on the connecting plate 5 receives a signal sent by the motor driver, the first electric push rod starts to operate to drive the top rod 7 which is arranged on the telescopic end of the first electric push rod to descend, the top block 8 which is arranged on the top rod 7 descends along with the first electric push rod, so that the top block 8 enters the welt and props against the sole to be fixed, after the fixation is finished, the servo motor 10 which is arranged in the placing table 9 receives the signal sent by the motor driver to drive the supporting plate 11 which is arranged on the driving end of the supporting plate to rotate, and simultaneously, a connecting rod 4 connected with a connecting plate 5 rotates in a bearing 3 arranged in a mounting block 2 to release torque received by a first electric push rod 6 and simultaneously rotates along with the first electric push rod to enable the drying to be more comprehensive, a second electric push rod 12 arranged in a drying box 1 drives a mounting frame 13 arranged on a telescopic end of the second electric push rod to horizontally move after receiving a signal sent by a motor driver, the mounting frame stops moving to a set length, after the mounting frame stops moving, a programmable controller controls an industrial fan 15 to rotate to generate wind power according to a control program, and simultaneously controls a thermal resistance wire 16 to be electrically heated, so that wind generated when the industrial fan 15 rotates is changed into hot wind through the thermal resistance wire 16 and is blown to the drying of gluing moisture and the drying of shoes, moisture on the shoes is removed, the quality of the shoes is ensured, and when a temperature sensor 20 arranged in the drying box 1 senses that the temperature in the box reaches a set warning value after the drying is carried out for a certain time, give programmable controller with the signal feedback, controller signaling makes thermal resistance wire 16 stop heating, and the wind that industrial fan 15 rotated the production becomes cold wind and cools down the stoving, prevents that long-time shoes from being heated for a long time and leading to the condition of deformation, and the back that finishes of stoving, first electric putter 6 rises, and the staff opens shutter 18 and takes out shoes, when secondary drying process, it can to repeat above-mentioned step. The control program in the programmable controller in the present application can be derived from the high-end work sequence in the present application.
Preferably, a protective net 17 is attached to each of the pair of through holes, and the protective net 17 protects the heating wire 16 in the mounting box 14 and the pair of mounting brackets 13 in an n-shape.
Preferably, in a further step, a shutter 18 is movably installed on the opening of the front wall surface of the drying box 1, an installation opening is opened on the shutter 18, and a glass 19 is assembled on the installation opening, so that the glass 19 is convenient for the pipe observation of the staff.
Preferably, a pair of vent holes are formed in the upper wall surface of the drying box 1 and positioned on two sides of the mounting block 2, and the vent holes are convenient for ventilation.
Preferably, further, the rear wall surfaces of the pair of mounting boxes 14 are both provided with air inlets.
Preferably, a temperature sensor 20 is mounted on a rear wall surface in the drying box 1.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation. The use of the phrase "comprising one of the elements does not exclude the presence of other like elements in the process, method, article, or apparatus that comprises the element.
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 (6)
1. A drying device for heightening shoe production comprises a drying box (1), and is characterized in that a rotary fixed drying structure is installed in the drying box (1), and an opening is formed in the front wall of the drying box (1);
the rotary fixed drying structure comprises; the device comprises a mounting block (2), a bearing (3), a connecting rod (4), a connecting plate (5), a first electric push rod (6), a push rod (7), a top block (8), a placing table (9), a servo motor (10), a supporting plate (11), a pair of second electric push rods (12) with the same structure, a pair of mounting frames (13) with the same structure, a pair of mounting boxes (14) with the same structure, a pair of industrial fans (15) with the same structure and a pair of thermal resistance wires (16) with the same structure;
the installation block (2) is arranged on the inner upper wall surface of the drying box (1), the bearing (3) is embedded in the lower wall surface of the installation block (2), the connecting rod (4) is embedded in the bearing (3), the connecting plate (5) is arranged on the lower end surface of the connecting rod (4), the first electric push rod (6) is arranged on the lower wall surface of the connecting plate (5), the ejector rod (7) is arranged on the telescopic end of the first electric push rod (6), the ejector block (8) is arranged on the lower end surface of the ejector rod (7), the placing table (9) is arranged on the inner lower wall surface of the drying box (1) and is positioned below the ejector block (8), the servo motor (10) is embedded in the upper wall surface of the placing table (9), the supporting plate (11) is arranged on the driving end of the servo motor (10), the pair of second electric push rods (12) is arranged on the two side walls in the drying box (1), and the pair of mounting frames (13) are arranged on the telescopic ends of the pair of second electric push rods (12), the pair of mounting boxes (14) are arranged between the two supporting legs of the pair of mounting frames (13), through holes are formed in the opposite wall surfaces of the pair of mounting boxes (14), the pair of industrial fans (15) are arranged in the mounting boxes (14), and the pair of thermal resistance wires (16) are arranged in the pair of mounting boxes (14) and located on one side of the pair of industrial fans (15).
2. The drying device for producing the heightening shoes according to claim 1, wherein a pair of said through holes are each provided with a protective net (17), and a pair of said mounting frames (13) are n-shaped.
3. The drying device for producing the heightening shoes according to claim 1, characterized in that a shutter (18) is movably mounted on the front wall of the drying box (1) and on the opening, the shutter (18) is provided with a mounting opening, and the mounting opening is provided with glass (19).
4. The drying device for producing the heightening shoes according to claim 1, wherein a pair of vent holes are formed in the upper wall surface of the drying box (1) and positioned at two sides of the mounting block (2).
5. The drying device for producing the heightening shoes according to claim 1, wherein air inlets are formed on the rear wall surfaces of the pair of mounting boxes (14).
6. The drying device for producing the heightening shoes according to claim 1, wherein a temperature sensor (20) is installed on the inner rear wall surface of the drying box (1).
Priority Applications (1)
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CN201922175530.0U CN210980676U (en) | 2019-12-08 | 2019-12-08 | Drying device for heightening shoe production |
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CN201922175530.0U CN210980676U (en) | 2019-12-08 | 2019-12-08 | Drying device for heightening shoe production |
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CN210980676U true CN210980676U (en) | 2020-07-10 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112212661A (en) * | 2020-10-29 | 2021-01-12 | 爱可道生物科技有限公司 | Automatic artichoke stalk drying device of upset |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112212661A (en) * | 2020-10-29 | 2021-01-12 | 爱可道生物科技有限公司 | Automatic artichoke stalk drying device of upset |
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