CN110916295A - Automatic gluing equipment for shoemaking - Google Patents

Automatic gluing equipment for shoemaking Download PDF

Info

Publication number
CN110916295A
CN110916295A CN201911384407.8A CN201911384407A CN110916295A CN 110916295 A CN110916295 A CN 110916295A CN 201911384407 A CN201911384407 A CN 201911384407A CN 110916295 A CN110916295 A CN 110916295A
Authority
CN
China
Prior art keywords
bottom plate
assembly
automatic
gluing
subassembly
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201911384407.8A
Other languages
Chinese (zh)
Other versions
CN110916295B (en
Inventor
齐立哲
孙云权
郭瑞
高晓飞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fudan University
Original Assignee
Fudan University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Fudan University filed Critical Fudan University
Priority to CN201911384407.8A priority Critical patent/CN110916295B/en
Publication of CN110916295A publication Critical patent/CN110916295A/en
Application granted granted Critical
Publication of CN110916295B publication Critical patent/CN110916295B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D25/00Devices for gluing shoe parts
    • A43D25/18Devices for applying adhesives to shoe parts
    • A43D25/183Devices for applying adhesives to shoe parts by nozzles

Abstract

The invention provides automatic gluing equipment for shoemaking, which belongs to the field of shoemaking equipment and comprises a tray bottom plate, and six mechanical arms, a gluing assembly, a glue dispensing assembly and a laser scanning assembly which are arranged on the tray bottom plate, wherein the six mechanical arms clamp a shoe tree to move through a clamping assembly, the gluing assembly comprises a gluing machine and a gluing nozzle which are integrally arranged, the glue dispensing assembly comprises an automatic glue dispenser and a bottom plate assembly, the bottom plate assembly is arranged on a station of the automatic glue dispenser, the number of the laser scanning assemblies is two, one laser scanning assembly is directly arranged on the tray bottom plate, and the other laser scanning assembly is arranged at one end of the automatic glue dispenser close to the side of the bottom plate assembly. The gluing device realizes the gluing and gluing requirements of different positions of the vamp and improves the gluing quality.

Description

Automatic gluing equipment for shoemaking
Technical Field
The invention belongs to the field of shoemaking equipment, and relates to automatic gluing equipment for shoemaking.
Background
The shoes are a tool for protecting feet from being injured, and the fur shoes are invented for overcoming special conditions and preventing the feet from being difficult to suffer or injured at the earliest, and the shoes are developed to the present, so that the existing shoes with various styles and functions can be formed everywhere.
The shoe shape is mostly determined by a shoe tree, the shoe tree takes a human foot as a prototype, a piece of wood is carved by hand to make a plastic or metal model, the shape of the arch of the foot and how the weight of a human body is distributed on the sole are two things which need to be considered when the shoe tree is made, after the shoe tree is made, in the conventional shoe making process, a vamp is sleeved on the shoe tree, nails are nailed by sharp-nose pliers (called net tongs) to fix the vamp on the shoe tree, then the vamp is pasted and pasted, after the vamp is pasted, small nails are pulled out, then the sole is pasted on the vamp, finally a jacking machine is used for reinforcing and jacking, although the economic development and the operation level are more and more intelligent, the shoe making is also provided with manual operation stations and then is connected into a production line to operate, the production line type of the division work cooperation is adopted, the work efficiency is improved to a certain extent, the operation of skilled work also has certain guarantee to the quality, but workman's intensity of labour is very high, and the linking between each work still is smooth and easy inadequately on the assembly line, mostly depends on the conveyer belt to transmit, and the concrete execution of work still is artifical, and intensity is high, has also restricted work efficiency's further promotion to a certain extent.
In the process of manufacturing shoes, the gluing quality is important, the gluing degree of the vamp and the sole is directly influenced, if the gluing is not uniform, the shoes are easy to glue, the gluing is too much, the attractiveness of the shoes is influenced, the enterprise cost is increased through retreatment, and therefore the gluing quality is a key step of the shoe quality.
Disclosure of Invention
The invention aims to solve the problem of providing automatic gluing equipment for shoemaking, so that the requirements of gluing and gluing at different positions of a vamp are met, and the gluing quality is improved.
In order to solve the technical problems, the invention adopts the technical scheme that: automatic rubber coating equipment for shoemaking, include the tray bottom plate and establish six manipulators, rubber coating subassembly, point glue subassembly and laser scanning subassembly on the tray bottom plate, six manipulators pass through the tight shoe tree motion of centre gripping subassembly clamp, and the rubber coating subassembly includes spreading machine and the rubber coating shower nozzle that the integral type set up, and the subassembly is glued including automatic point gum machine and bottom plate subassembly to the point, and the bottom plate subassembly sets up on the station of automatic point gum machine, and the quantity of laser scanning subassembly is two, and a direct setting is in on the tray bottom plate, another sets up the one end that is close to the bottom plate subassembly side at automatic point gum machine.
Further, one side of spreading machine is equipped with fixed square pipe, and one side of fixed square pipe is equipped with the fixed column, the vertical setting of fixed column, and the rubber coating shower nozzle is established in the one end of an organic whole pole, and an organic whole pole level sets up, and the other end of an organic whole pole is equipped with hollow cylinder, and hollow cylinder overlaps and establishes the outer lane at the fixed column, and hollow cylinder and fixed column are fixed through two at least stop screws.
Further, automatic point gum machine Y axle horizontal direction removes, and the bottom plate subassembly includes lower plate, upper plate and the outsole that from the bottom up set up, and lower plate and automatic point gum machine fixed connection, upper plate set up on the lower plate, and the position that upper plate and outsole correspond is equipped with the constant head tank.
Furthermore, the laser scanning assembly is a three-dimensional laser scanning assembly, a transparent or semitransparent protective cover is arranged on the tray bottom plate, and the six-axis mechanical arm, the gluing assembly, the dispensing assembly and the laser scanning assembly are all arranged inside the protective cover.
Further, the centre gripping subassembly is fixed on the executive spindle of six manipulators, and the centre gripping subassembly includes connecting seat and actuating cylinder, the executive spindle fixed connection of connecting seat and six manipulators, the actuating cylinder sets firmly on the connecting seat, and the both sides of actuating cylinder axis are symmetrical structure, and wherein the structure of one side includes actuating lever, first connecting rod, second connecting rod and clamp rod, and the one end of actuating lever is articulated with the output shaft of actuating cylinder, and the other end is articulated with the one end of first connecting rod, and the other end of first connecting rod is articulated with the one end of second connecting rod, and the other end of second connecting rod is articulated with the one end of clamp rod, and the one end and the upper fixed plate that clamp rod was kept away from to the second connecting rod are articulated to be set up with lower fixed plate.
Furthermore, the clamping assembly further comprises a third connecting rod, one end of the third connecting rod is hinged to the inner side of the middle of the clamping rod, and the other end of the third connecting rod is hinged to the upper fixing plate and the lower fixing plate.
Furthermore, the inner side of the clamping rod is provided with a positioning bulge corresponding to the positioning pin hole on the side surface of the shoe tree.
Furthermore, one side of the clamping assembly, which is close to the six-axis manipulator, is provided with a door-shaped fork, and when the six-axis manipulator corresponds to the automatic dispenser, the fork is attached to the end face of the workbench of the automatic dispenser.
Compared with the prior art, the invention has the following advantages and positive effects.
1. The six-axis manipulator is provided with the clamping assembly, the clamping assembly is of a symmetrical structure, the clamping force of the two clamping assemblies is consistent, the stability of semi-finished shoes is easy to guarantee, the semi-finished shoes are not prone to stress deformation, the positioning protrusions are arranged on the inner sides of the clamping rods, the repeated positioning precision of each time is guaranteed, the six-axis manipulator is adopted, the direction diversity of change is achieved, and the structure is simplified;
2. the protective cover is arranged to prevent external dust from entering, so that the tidiness of the processing environment is guaranteed, the gluing effect is favorably improved, dust or impurities and the like in the protective cover are adhered to the glue, the subsequent adhesion is more favorably realized, in addition, the protective cover is provided with an automatic door, and the protective cover can be opened only when the six-axis manipulator enters and exits, so that the cleanliness of the internal environment is further guaranteed;
3. the laser scanning assembly is arranged, so that the gluing quality can be integrally detected, the gluing quality is ensured, the subsequent processes are convenient to carry out, and the qualification rate of products is ensured;
4. the glue spreader and the glue spreading nozzle which are of an integrated structure occupy smaller space, and in the structure of the application, the glue spreading nozzle can move up and down relative to the glue spreader, so that the adjustment and the installation are more convenient, the adjustment and the application to different specifications are facilitated, and the application range is wider;
5. set up the bottom plate subassembly, can satisfy the demand that different specifications and different kind shoes were glued through changing the upper plate, application scope is wider.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate an embodiment of the invention and, together with the description, serve to explain the invention and not to limit the invention. In the drawings:
FIG. 1 is a layout view of the automatic gluing device for shoemaking according to the present invention applied in a production line;
FIG. 2 is a schematic view of a grinding station of the present invention without a protective cover;
FIG. 3 is a detail view of section F of FIG. 2 of the present invention;
FIG. 4 is a schematic view of the clamping assembly of the present invention without the upper retaining plate;
FIG. 5 is a schematic bottom view of the clamp assembly of the present invention;
FIG. 6 is a schematic view of the construction of the sole sanding assembly of the present invention;
FIG. 7 is a schematic structural view of the flexible hinge assembly of the present invention;
figure 8 is a schematic diagram of the construction of the heel sanding assembly of the present invention;
FIG. 9 is a detail view of section A of FIG. 8 of the present invention;
figure 10 is a schematic diagram of the heel sharpening assembly of the present invention after opening a portion of the grinding housing;
FIG. 11 is a schematic view of the automatic gluing device for shoemaking of the present invention without a protective cover;
FIG. 12 is a schematic view of the construction of the glue assembly of the present invention;
FIG. 13 is a detail view of section E of FIG. 12 of the present invention;
FIG. 14 is a schematic structural view of the floor assembly of the present invention;
fig. 15 is a structural view of the footwear last according to the present invention.
Reference numerals:
20. polishing a station; 21. a tray floor; 211. a protective cover; 22. a six-axis manipulator; 221. a clamping assembly; 2211. a connecting seat; 2212. a drive cylinder; 22121. a lower fixing plate; 22122. an upper fixing plate; 2213. a drive rod; 2214. a first link; 2215. a second link; 2216. a third link; 2217. a clamping lever; 2218. positioning the projection; 23. a hand-reversing table bracket; 231. a support pillar; 232. a positioning column; 24. polishing the side surface of the shoe; 241. a first grinding wheel; 241. a first motorized spindle; 25. a sole buffing assembly; 251. a second grinding wheel; 252. a second motorized spindle; 253. a motor plate; 2531. a hinged column; 254. a second cylinder; 255. a flexible hinge assembly; 2551. a horizontal housing; 2552. a vertical housing; 2553. a centering post; 2554. a flexible body; 2555. a steel column; 256. a hollow frame; 2561. a first air suction port; 2562. a first suction opening; 26. a heel grinding assembly; 261. grinding the base; 262. grinding the shell; 2621. a driving wheel; 2622. a deviation adjusting wheel; 2623. a tension wheel; 2624. adjusting a rod; 2625. a second suction opening; 2626. a drive motor; 2627. a third cylinder; 263. a rotating cylinder; 264. a connecting shaft; 27. a laser scanning assembly; 28. a vacuum cleaner; 30. a gluing station; 31. a fork tool; 32. an automatic dispenser; 33. a base plate assembly; 331. a lower base plate; 332. an upper base plate; 3321. positioning a groove; 333. a outsole; 34. a gluing component; 341. a glue spreader; 342. fixing the square tube; 343. fixing a column; 344. an integral rod; 3441. a hollow cylinder; 3442. a set screw; 345. supporting the rollers; 346. a foundation screw; 348. a glue injection nozzle; 10. a lasting station; 40. a baking station; 50. a bottom loading station; 60. a bottom pressing station; 70. a rear hammer massage station; 80. checking a station; 90. a freezing station; 100. a last removal station; 101. a finished product inventory area; 102. a shoe last; 1021. a positioning pin hole.
Detailed Description
It should be noted that the embodiments and features of the embodiments may be combined with each other without conflict.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art through specific situations.
The following detailed description of specific embodiments of the invention refers to the accompanying drawings.
As shown in fig. 1 to 15, the automatic gluing device for shoemaking is applied to a shoemaking assembly line, the assembly line comprises a plurality of stations, the automatic gluing device for shoemaking is arranged corresponding to the gluing station 30, the number of each station is at least one, and the stations are arranged independently, and the arrangement sequence of the stations is, a lasting station 10, a polishing station 20, the gluing station 30, a baking station 40, a bottom loading station 50, a bottom pressing station 60, a freezing station 90 and a last releasing station 100;
a lasting station 10 for placing the shoe upper over a last 102;
a polishing station 20 for increasing the roughness of the matching part of the outer part of the vamp and the sole and facilitating the gluing, and the detailed structural description is shown in the following specific description;
a gluing station 30 for applying glue to the area where the upper and the sole are engaged, the detailed structural description being given in the following detailed description;
a baking station 40 for drying the glue; the structure of the baking station 40 can refer to the following patent "CN 201910351737.0 vamp detection and drying system", and can also use the existing baking equipment in the market, all can realize the baking action in the present application, and no specific limitation is made in the application
A sole-loading station 50 for applying the sole to the upper; reference can be made to the combination of the following two patents, "CN 201910351034.8 a sole positioning device", "CN 201811575261.0 a sole processing line intelligent transfer device", and the actions in the present application can be implemented in the existing upper-bottom structure in the market or the upper-bottom structure disclosed in other patents, and the work station is not specifically limited in the present application;
a sole pressing station 60, which presses the shoe upper and the shoe sole together, wherein the structure of the pressing station can refer to the following patent "cn201910351087. x, which is an upper and sole pressing device", and can also use the existing pressing devices in the market, so that sole pressing actions in the application can be realized;
freezing station 90, be used for the sizing of shoes and vamp sticky and after, freezing work is promptly in certain closed box, the flow through gas realizes the quick condensation of gluing, increase gluey refrigerated speed, promote work efficiency, gaseous flow is realized through the fan, blow from the upper end, air-out from the lower extreme, shoes get into from one side of box, derive from the opposite side, in the driven process, through gaseous blowing realize the quick blowing of gluing, reach the frozen effect of cooling, raise the efficiency, this structure is common structure, industry commonly used drying cabinet mechanism can realize, according to different shoes structures, realize the control of different temperatures, do not do specific structure and limit in this application, the structure that realizes the cooling can all realize the cooling function of this application;
a delasting station 100 for separating the upper from the last 102;
in the above stations, the delasting and the lasting can refer to the following patent "CN 201811575252.1 cam-driven delasting and delasting integrated machine", the delasting mechanism can also refer to the following patent "CN 201811575250.2 an automatic delasting machine", and the existing structures of delasting and delasting on the market can also be adopted in the present application, as long as the functions of delasting and delasting are satisfied, and the present application is not specifically limited, and the feeding and discharging of each station are completed by the six-axis manipulator 22 in a matching manner, and the setting is performed by a program, so that manual participation and operation are not needed, manpower is saved, and the work efficiency is improved.
More preferably, the tail end of the material transferring assembly is provided with a finished product stock area 101, so that qualified products can be placed in a concentrated mode, and subsequent uniform packaging and processing are facilitated.
The material transfer component is matched with the assembly line to realize the transfer and transmission of materials between adjacent stations, the material transfer component is preferably an AGV navigation trolley and can also be realized by adopting a common conveyor belt structure, the corresponding station processing time is kept at each station, after the processing is finished, shoes in the processing process are placed into the material transfer component again, the next station is conveyed to carry out the next process, because the processing time of each station is different, the time of the conveyor belt staying at each station is different, different parameters are required to be set by the conveyor belt, the continuous processing requirement of each station is met, the program control is complex, the cost is low, if the structure of the production line is adjusted, the structure of the material transfer component needs to be adjusted accordingly, the AGV navigation trolley structure is adopted, each station is matched with and provided with an AGV navigation trolley, the upper end face of each AGV navigation trolley is provided with a fixing plate matched with the shoe tree 102, the upper end surface of the shoe tree 102 is provided with a positioning plate, the upper end surface of the positioning plate is provided with positioning pin holes 1021, the fixing plate is provided with a conical positioning column 232, the positioning column 232 and the positioning pin holes 1021 are correspondingly arranged, the positioning of the shoe tree 102 on the AGV navigation trolleys is completed, each AGV navigation trolley is used for feeding materials to the corresponding station and receiving and processing the shoes of the station to be transferred to the next process, a plurality of AGV navigation trolleys can be mutually and independently controlled, the structure adjustment is convenient to carry out, the processing time of some stations is longer, the stations can be continuously arranged into two stations, such as the gluing station 30, the corresponding gluing process occupies longer time, in order to avoid the process waiting for the completion of the next process, the two gluing stations 30 can be continuously arranged, the continuous operation of the subsequent stations is ensured, in the application, because each station is mutually independent, so the structure sets up more swiftly, and the quantity of station is also conveniently adjusted, satisfy the demand of every station continuous production, guarantee the utilization ratio of equipment, promote the beat of work, and then promote work efficiency, and can adjust at any time according to the place space, AGV navigation dolly's route is adjusted and is adjusted also production line structure's setting, structure adjustment is convenient, swiftly, move the position of every station through fork truck can, traditional structure has been broken through, the overall arrangement of whole integral type, it is more convenient to dismouting and adjustment, the structure is nimble more diversified.
Preferably, the assembly line is arranged in a U shape, an annular shape or an S shape, the arrangement is set according to the site layout, a traditional linear assembly line structure can be adopted, the structure is not limited by a specific shape, and the arrangement can also be in an irregular shape as long as the space meets the layout of the material transfer assembly and the conversion among a plurality of stations.
Preferably, a rear hammer massage station 70 and an inspection station 80 are sequentially arranged between the sole pressing station 60 and the freezing station 90, the rear hammer massage station 70 is used for increasing the bonding strength between the heel of the vamp and the sole, the inspection station 80 is used for detecting the bonding strength between the vamp and the sole, the structure of the inspection station 80 can refer to the following patent "CN 201910351737.0 vamp detection and drying system", the specific structure is not described in the application, and can also refer to the existing inclined plane detection structure in the market, the difference of the structure of the rear hammer massage station 70 in the grinding work is that only the six-axis manipulator 22, the heel grinding component 26 and the laser scanning component 27 are set, and replace the dull polish area among the heel subassembly 26 of polishing with the belt, one side that the belt is close to the vamp sets up rubber layer or silica gel layer, avoids causing wearing and tearing to the heel of shoes, only plays further fixed effect.
Preferably, the polishing station 20 comprises a tray bottom plate 21 and six manipulators 22 arranged on the tray bottom plate 21, a hand reversing table support 23, a shoe side polishing assembly 24, a sole polishing assembly 25, a heel polishing assembly 26 and a laser scanning assembly 27, wherein semi-finished shoes are clamped by the six mechanical shafts through the hand reversing table support 23, the direction of the shoes is adjusted, then the shoes are clamped by the six manipulators 22 again, the shoes sequentially pass through the shoe side polishing assembly 24, the sole polishing assembly 25 and the heel polishing assembly 26, polishing of the shoe uppers, the shoe soles, the toe parts and the heel parts of the shoes is completed, a certain rough surface is polished at the positions of adhesive corresponding to the shoe uppers, the friction coefficient between the shoe uppers and the adhesive is increased, the adhesive is firmer, after polishing is completed, the shoes are inspected through the laser scanning assembly 27, the polishing quality is checked, if the polishing is qualified, the shoes can be placed on the material transfer assembly through the six manipulators 22, if the shoes are unqualified to polish, the waste material district can be placed to six manipulators 22, and the waste material district can set up on the subassembly is transported to the material, also can set up the one side at the station 20 of polishing.
The tray bottom plate 21 is a carrier of the whole polishing station 20 and is a basis for mounting all other parts of the polishing work station, the tray bottom plate 21 is made of sheet metal or wood and is preferably made of metal, forklift holes for inserting of a forklift are formed in the tray bottom plate 21, the whole polishing station 20 is convenient to carry and transfer integrally, more preferably, a protective cover 211 is arranged at the upper end of the tray bottom plate 21, the protective cover 211 is of a transparent box structure with an automatic door, the protective cover 211 covers all the parts on the tray bottom plate 21 in the tray bottom plate to prevent external dust from entering, the tidiness of a processing environment is ensured, the polishing precision and the polishing effect are favorably improved, the protective cover 211 is provided with the automatic door, the six-axis mechanical arm 22 can be operated at multiple angles through the automatic door when entering and exiting, the six-axis mechanical arm 22 can be operated at multiple angles and is more flexible, the six-axis, also can adopt the six-axis manipulator 22 of other brands, do not injecing in this application, as long as can realize six motions all can realize in this application, six-axis manipulator 22's control box also sets up the up end at tray bottom plate 21, whole tray bottom plate 21 forms the structure of sled dress formula, it is more convenient and reliable to transport, more preferably, six-axis manipulator 22 specifications on every station are unanimous, make things convenient for the installation or the replacement of a plurality of work piece six-axis manipulator 22, promote the commonality before the part, six-axis manipulator 22's lower terminal surface passes through keysets and tray bottom plate 21 fixed connection.
The reverse hand table support 23 comprises a support column 231, a positioning column 232 consistent with that on the fixing plate is arranged on the support column 231, the positioning column 232 is used for being matched with the shoe tree 102 to fix the shoe tree 102, the six-axis manipulator 22 firstly places the shoe tree 102 downwards on the positioning column 232, then the six-axis manipulator 22 clamps the shoe tree 102 again to enable the shoe tree 102 to be placed towards the positive direction, polishing of each subsequent end face is facilitated, the reverse hand table support 23 achieves changing of the direction of the shoe tree 102, the six-axis manipulator 22 is matched with a shoe through a clamping assembly 221 at the front end, the clamping assembly 221 is fixed on an execution shaft of the six-axis manipulator 22, the clamping assembly 221 comprises a connecting seat 2211 and a driving cylinder 2212, the connecting seat 2211 is fixedly connected with the execution shaft of the six-axis manipulator 22, the driving cylinder 2212 is fixedly arranged on the connecting seat 2211, two sides of the axis of the driving cylinder 221, A first link 2214, a second link 2215, a third link 2216 and a clamping rod 2217, one end of the driving rod 2213 is hinged with the output shaft of the driving cylinder 2212, the other end is hinged with one end of the first link 2214, the other end of the first link 2214 is hinged with one end of the second link 2215, the other end of the second link 2215 is hinged with one end of the clamping rod 2217, one end of the third link 2216 is hinged with the inner side of the middle of the clamping rod 2217, the other end is hinged with the upper fixing plate 22122 and the lower fixing plate 22121, one end of the second link 2215 far away from the clamping rod 2217 is also hinged with the upper fixing plate 22122 and the lower fixing plate 22121, a positioning bulge 2218 corresponding to a positioning pin hole on the side of the shoe tree 102 is arranged on the inner side of the clamping rod 2217, the vertical clamping precision of the shoe tree 102 is ensured, the precision of each action is further ensured, the clamping assembly adopts a symmetrical structure, the clamping force of two sides is, the deformation under stress is not easy to occur; the lower end of the lower fixing plate 22121 is provided with a limit switch for sensing the position of the rear end of a shoe, the shoe touches the limit switch after being in place, the limit switch sends a signal to a control center to indicate that the shoe is accurately positioned, the control center adopts a PLC program, the program setting is simple, the training cost of workers is reduced, the control center is also arranged on the tray bottom plate 21, and the control center controls the on-off of all electrical elements on the polishing station 20 and receives signals of the electrical elements.
The laser scanning assembly 27 can be a commercially available product, preferably, the laser scanning assembly 27 is a three-dimensional laser scanner, the geometric information in the scenery is extracted by the aid of the geometric information in the illumination light source, the light plane is used for irradiating the surface of the object to generate light stripes, the stripes are detected in the shot image, the shapes and the discontinuity of the stripes form the relative measurement between the visible surfaces of the object and the camera, and the structured light has a plurality of shapes such as point, strip and net from the geometric shape of the light source.
Shoe side face group 24 spare of polishing includes first emery wheel 241, the vertical setting of first emery wheel 241, convenient side contact with shoes is polished, first emery wheel 241 is fixed on first electricity main shaft 241's output shaft, first electricity main shaft 241 passes through support column 231 and tray bottom plate 21 fixed connection, adopt first electricity main shaft 241, the rotational speed is faster, the situation of light load in more being fit for this application, promote the efficiency of polishing, polish the polishing of 24 completion uppers of group spare at the shoe side face, guarantee the side of vamp and the better cooperation of sole.
The sole polishing component 25 comprises a hollow frame 256, a second electric spindle 252, a motor plate 253 and a second air cylinder 254, wherein the hollow frame 256 is made of a hollow square tube, the upper end of the hollow frame 256 is welded by metal plates, the lower end of the motor plate 253 is provided with a hinge column 2531, one end of the second air cylinder 254 is hinged to one side of the hollow frame 256, the other end of the second air cylinder 254 is hinged to the lower end of the hinge column 2531, the second electric spindle 252 is vertically arranged on the motor plate 253, the motor plate 253 is hinged to the hollow frame 256 in the vertical direction through a flexible hinge component 255, the upper end of a force output shaft of the second electric spindle 252 is provided with a second polishing wheel 251, the end face of the second polishing wheel 251 is horizontally arranged, the six-axis manipulator 22 clamps the shoe and places the shoe above the second polishing wheel 251, according to a set program, the second air cylinder 254 can drive the second polishing wheel 251 to repeatedly move up and down and contact with the bottom surface of the shoe, and polish the position of, the glue is convenient to fix; more preferably, the flexible hinge assembly 255 includes a vertical housing 2552 and a horizontal housing 2551, the vertical housing 2552 and the horizontal housing 2551 have the same structure and are vertically disposed, the motor plate 253 is fixedly connected to two ends of the vertical housing 2552, two ends of the horizontal housing 2551 are fixedly connected to the hollow frame 256, the cross sections of the horizontal housing 2551 and the vertical housing 2552 are both of a regular quadrilateral structure, the horizontal housing 2551 is internally provided with a centering column 2553, an axis of the centering column 2553 is overlapped with an axis of the horizontal housing 2551, a diagonal of the centering column 2553 is vertically disposed with a diagonal of the horizontal housing 2551, an elastic body is disposed between the centering column 2553 and four sides of the horizontal housing 2551, the elastic body is made of rubber, polyethylene, silica gel or other elastic material, two steel columns 2555 are embedded inside the centering column 2553, an axis connecting line of the steel column 2555 is overlapped with the diagonal of the centering column 2553, two ends of the steel column 2555 are provided with threads, the shoe is convenient to be connected with other parts, the length of the elastic body is consistent with that of the horizontal shell 2551, the length of the centering column 2553 is greater than that of the horizontal shell 2551, two ends of the centering column 2551 slightly protrude out of the horizontal shell 2551, after the elastic hinge assembly is arranged, the second air cylinder 254 drives the second electric spindle 252 to ascend, the bottom surface of the shoe is polished, after the output shaft of the second air cylinder 254 retracts, under the action of the flexible hinge assembly, a certain buffering effect is achieved on the second electric spindle 252, the vibration to the electric spindle is reduced, the service life of the electric spindle is prolonged, the precision of the electric spindle is guaranteed, the cost of the electric spindle is high, the maintenance cost of the electric spindle can be reduced through the structure, and the production cost of the whole device is reduced; more preferably, the upper end of the hollow frame 256 is provided with a first air suction opening 2561, one side of the hollow frame 256, which is provided with the second electric spindle 252, is provided with a first air suction hole, the first air suction opening 2562 is connected with the dust collector 28 on the tray bottom plate 21, and dust or hair generated in the polishing process enters the hollow frame 256 through the first air suction opening 2561 and then is absorbed by the dust collector 28, so that the cleanliness in the polishing process is ensured.
The heel grinding component 26 comprises a grinding base 261, a grinding shell and a rotating cylinder 263, wherein the grinding base 261 is fixedly arranged on the tray bottom plate 21, one end of the grinding shell is hinged to the grinding base 261, the other end of the grinding shell is hinged to an output shaft of the rotating cylinder 263 through a connecting shaft 264, the rotating cylinder 263 is fixedly arranged on one side of the grinding base 261, the output shaft of the rotating cylinder 263 is hinged to one end of the connecting shaft 264, the other end of the connecting shaft 264 is fixedly connected with the grinding shell, and the rotating cylinder 263 acts to drive the grinding shell to rotate within a certain angle range;
a driving wheel 2621 and a deflection adjusting wheel 2622 are arranged in the grinding housing 262, the tension wheel 2623 extends out of the grinding housing 262, the abrasive belt is wound around the driving wheel 2621, the deflection adjusting wheel 2622 and the tension wheel 2623 and is driven by the driving wheel 2621 to rotate, the driving wheel 2621 is rotated by a driving motor 2626 arranged outside the grinding housing, the deflection adjusting wheel 2622 adjusts the abrasive belt by the extension and retraction of a third cylinder 2627, the tension wheel 2623 is arranged at one end far away from the rotating cylinder 263, the axis of the tension wheel 2623 is horizontally arranged, the tension wheel 2623 is rotatably connected to an adjusting rod 2624, the adjusting rod 2624 is provided with a long hole, so as to conveniently adjust the front and rear positions of the tension wheel 2623 relative to the grinding housing 262, ensure the tightness of the abrasive belt, and compensate for a certain processing error, in the actual working process, the output shaft of the rotating cylinder 263 extends out or retracts to drive the grinding housing 262 to swing up and down in a certain angle range relative to the grinding, the tensioning wheel 2623 swings up and down and back and forth within a small range, and the polishing belts on the outer side of the tensioning wheel 2623 polish the shoe heel and the front shoe toe so as to be conveniently adhered to the shoe sole;
more preferentially, a second air suction opening 2625 is arranged below one end, close to the rotating cylinder 263, of the grinding shell 262, the second air suction opening 2625 is also connected with the dust collector 28, the machining tidiness of the grinding position is guaranteed, the grinding precision is prompted, and in addition, because impurities do not enter the machine, the service life of the machine is prolonged, and the failure rate is reduced.
In whole polishing work position, all cylinder structures all can adopt hydro-cylinder or electric putter and other equivalent structures to replace, set for and adjust according to the difference of load and in-service use condition, as long as can be accurate execution predetermine the action can, still be equipped with dust catcher 28 on the tray bottom plate 21, guarantee the clean and tidy degree of processing environment, avoid the course of working, cause the influence to the vamp, be favorable to guaranteeing the machining precision of each part simultaneously, in polishing station 20, the polishing of each angle of vamp has been realized, the side, the bottom surface, the polishing of heel and tip, the preparation of viscose is done for back rubber coating station 30, promote the fastness of viscose.
As shown in fig. 11 to 14, the gluing station 30 includes a tray bottom plate 21 and a protective cover 211 with the same specification as the polishing station 20, which improves the commonality between parts, is mass-produced, and reduces the processing cost, and the six-axis manipulator 22 on the tray bottom plate 21 of the gluing station 30 is different from the six-axis manipulator 22 on the polishing station 20 in that a fork 31 is arranged on a clamping component 221 at the front end of the six-axis manipulator 22 on the gluing station 30, and the fork 31 is a vertically downward door-shaped structure and is used for realizing the limit in the gluing state of the shoe tree 102 and improving the positioning accuracy in the shoe gluing process; more preferably, the lower end of the tray bottom plate 21 of the gluing station 30 is provided with a support roller 345 and a ground screw 346, the support roller 345 facilitates the movement of the gluing station 30, and the ground screw 346 facilitates the adjustment of the levelness of the tray bottom plate 21, so as to prevent glue from flowing, and to facilitate the improvement of gluing precision and gluing quality.
The upper end of the tray bottom plate 21 of the gluing station 30 is provided with a gluing component 34, a glue dispensing component and a laser scanning component 27 which is the same as that of the polishing station 20, the principle of the laser scanning component 27 is the same as that described above, repeated description is not provided here, the glue used in the gluing process is different for different positions of shoes, the glue used in different positions is different, the glue consumption for gluing the sole is larger, the gluing component 34 is adopted to complete the gluing of the heel, the side surface of the shoe and the toe tip, the glue consumption is less, the glue consumption and the coating area are controlled to be excessively large, the glue overflow site is generated, the qualified rate of the shoes is reduced, the glue overflow part needs to be treated, the process is increased, the time is wasted, the unqualified product is directly caused by the serious part, and the gluing process is completed by a glue dispenser, the precision of the dispenser is higher, and the speed is easier to control.
The glue dispensing assembly comprises an automatic glue dispenser 32 and a bottom plate assembly 33, the bottom plate assembly 33 is arranged on a station of the automatic glue dispenser 32, the automatic glue dispenser 32 can directly adopt a glue dispenser purchased in the market, the horizontal movement of a Y axis can be realized, and the glue dispensing requirements of a plurality of shoes can be met, for example, the automatic glue dispenser 32 can realize the function by filling a glue, other brands can be used, the application is not limited, and one side of the automatic glue dispenser 32 close to the bottom plate assembly 33 is provided with a laser scanning assembly 27 for detecting the glue dispensing quality; more preferably, the bottom plate assembly 33 includes a lower bottom plate 331, an upper bottom plate 332 and an outsole 333, which are arranged from bottom to top, the lower bottom plate 331 is fixedly connected to the automatic dispenser 32, the upper bottom plate 332 is arranged on the lower bottom plate 331, a positioning slot 3321 is arranged at a position of the upper bottom plate 332 corresponding to the outsole 333, the outsole 333 is in accordance with the specification of the shoe sole, the specification of the upper bottom plate 332 is changed, dispensing requirements of shoes of different specifications can be met, specification change is more convenient and rapid, the laser scanning assembly 27 is arranged on the dispensing assembly, the dispensing position can be detected, the dispensing quality is ensured, and the stability of the subsequent process is ensured.
The gluing component 34 comprises a gluing machine 341 and a gluing nozzle which are arranged integrally, one side of the gluing machine 341 is provided with a fixed square tube 342, one side of the fixed square tube 342 is provided with a fixed column 343, the fixed column 343 is vertically arranged, the gluing nozzle is arranged at one end of an integrated rod 344, the integrated rod 344 is horizontally arranged, the other end of the integrated rod 344 is provided with a hollow cylinder 3441, the hollow cylinder 3441 is sleeved on the outer ring of the fixed column 343, the hollow cylinder 3441 and the fixed column 343 are fixed through at least two stop screws 3442, the up-and-down position adjustment of the gluing nozzle relative to the gluing machine 341 is conveniently realized, the gluing machine 341 and the gluing nozzle can adopt the existing arrangement on the market, the gluing machine is mature equipment, a direct hundred-degree or online shopping platform can be searched for related manufacturers, and the gluing machine 341 is not specifically limited in.
In the actual use process, the shoe tree 102 passes through the following station, namely a shoe tree sleeving station 10 in sequence under the navigation of the AGV navigation trolley, and is used for sleeving the shoe upper on the shoe tree 102; a polishing station 20 for increasing the roughness of the matching part of the outer part of the vamp and the sole and facilitating the gluing; a gluing station 30 for applying glue to the matching area of the vamp and the sole; a baking station 40 for drying the glue; a sole-loading station 50 for applying the sole to the upper; a sole pressing station 60 for pressing the upper and sole together; a rear hammer massage station 70 and a checking station 80, wherein the rear hammer massage station 70 is used for increasing the bonding strength of the heel of the vamp and the sole, the checking station 80 is used for detecting the bonding strength of the vamp and the sole, and the freezing station 90 is used for gluing and shaping the shoe and the vamp; the delasting station 100 is used for separating the shoe upper from the shoe tree 102, the whole process from the lasting covering to the delasting is completed automatically, the feeding and the discharging of each station are completed through the six-axis manipulator 22, the inspection station 80 is arranged, the automatic detection of the shoe is realized, the whole production line does not need manual operation, the labor cost of the whole production line is saved by about 70%, the influence of human factors is reduced, the work efficiency is greatly improved, and the shoe making precision is improved.
While one embodiment of the present invention has been described in detail, the description is only a preferred embodiment of the present invention and should not be taken as limiting the scope of the invention. All equivalent changes and modifications made within the scope of the present invention shall fall within the scope of the present invention.

Claims (8)

1. Automatic rubber coating equipment for shoemaking, its characterized in that: including the tray bottom plate with establish six manipulators, rubber coating subassembly, point on the tray bottom plate are glued subassembly and laser scanning subassembly, six manipulators pass through the tight shoe tree motion of centre gripping subassembly clamp, and the rubber coating subassembly includes spreading machine and the rubber coating shower nozzle that the integral type set up, and the point is glued the subassembly and is included automatic point gum machine and bottom plate subassembly, and the bottom plate subassembly sets up on the station of automatic point gum machine, and the quantity of laser scanning subassembly is two, and a direct setting is in on the tray bottom plate, another setting is close to the one end of bottom plate subassembly side at automatic point gum machine.
2. The automatic gluing device for shoemaking according to claim 1, characterized in that: one side of spreading machine is equipped with fixed square pipe, and one side of fixed square pipe is equipped with the fixed column, the vertical setting of fixed column, and the rubber coating shower nozzle is established in the one end of an organic whole pole, and an organic whole pole level sets up, and the other end of an organic whole pole is equipped with hollow cylinder, and hollow cylinder cover is established in the outer lane of fixed column, and hollow cylinder and fixed column are fixed through two at least payment screws.
3. The automatic gluing device for shoemaking according to claim 1, characterized in that: the Y-axis horizontal direction of the automatic dispenser moves, the bottom plate assembly comprises a lower bottom plate, an upper bottom plate and a outsole which are arranged from bottom to top, the lower bottom plate is fixedly connected with the automatic dispenser, the upper bottom plate is arranged on the lower bottom plate, and a positioning groove is formed in the position, corresponding to the outsole, of the upper bottom plate.
4. The automatic gluing device for shoemaking according to claim 1, characterized in that: the laser scanning assembly is a three-dimensional laser scanning assembly, a transparent or semitransparent protective cover is arranged on the tray bottom plate, and the six-axis manipulator, the gluing assembly, the dispensing assembly and the laser scanning assembly are all arranged inside the protective cover.
5. The automatic gluing device for shoemaking according to claim 1, characterized in that: the centre gripping subassembly is fixed on the executive spindle of six manipulators, and the centre gripping subassembly includes connecting seat and actuating cylinder, the executive spindle fixed connection of connecting seat and six manipulators, the actuating cylinder sets firmly on the connecting seat, and the both sides of actuating cylinder axis are symmetrical structure, and wherein the structure of one side includes actuating lever, first connecting rod, second connecting rod and clamping bar, and the one end of actuating lever is articulated with the output shaft of actuating cylinder, and the other end is articulated with the one end of first connecting rod, and the other end of first connecting rod is articulated with the one end of second connecting rod, and the other end of second connecting rod is articulated with the one end of clamping bar, and the one end and the upper fixed plate that clamping bar was kept away from to the second connecting rod are articulated to be set up with lower fixed plate.
6. The automatic gluing device for shoemaking according to claim 5, characterized in that: the clamping assembly further comprises a third connecting rod, one end of the third connecting rod is hinged to the inner side of the middle of the clamping rod, and the other end of the third connecting rod is hinged to the upper fixing plate and the lower fixing plate.
7. The automatic gluing device for shoemaking according to claim 5, characterized in that: the inner side of the clamping rod is provided with a positioning bulge corresponding to the positioning pin hole on the side surface of the shoe tree.
8. The automatic gluing device for shoemaking according to claim 1, characterized in that: one side that the centre gripping subassembly is close to six manipulators is equipped with the fork utensil of door shape, and six manipulators correspond with automatic point gum machine, the end face laminating setting of fork utensil and automatic point gum machine workstation.
CN201911384407.8A 2019-12-28 2019-12-28 Automatic gluing equipment for shoemaking Active CN110916295B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911384407.8A CN110916295B (en) 2019-12-28 2019-12-28 Automatic gluing equipment for shoemaking

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201911384407.8A CN110916295B (en) 2019-12-28 2019-12-28 Automatic gluing equipment for shoemaking

Publications (2)

Publication Number Publication Date
CN110916295A true CN110916295A (en) 2020-03-27
CN110916295B CN110916295B (en) 2022-03-15

Family

ID=69861211

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201911384407.8A Active CN110916295B (en) 2019-12-28 2019-12-28 Automatic gluing equipment for shoemaking

Country Status (1)

Country Link
CN (1) CN110916295B (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111436698A (en) * 2020-05-22 2020-07-24 南京熙岳智能科技有限公司 Automatic mask opening device and method thereof
CN113598491A (en) * 2021-08-09 2021-11-05 江苏伊贝实业股份有限公司 Automatic gluing and edge rolling machine
CN114287710A (en) * 2021-12-09 2022-04-08 威海赛踏鞋业有限公司 Cold-bonded shoe production line and technological process thereof
CN114788602A (en) * 2022-05-07 2022-07-26 东华大学 Method for adjusting shoe upper gluing track, storage device and shoe sole gluing robot
CN115474743A (en) * 2021-05-31 2022-12-16 阿迪达斯股份公司 Method for applying a material to a shoe

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4829932A (en) * 1986-12-22 1989-05-16 International Shoe Machine Corporation Toe and ball laster and the like
CN206150602U (en) * 2016-11-09 2017-05-10 宁波慈星机器人技术有限公司 Gluey intelligent production line is spouted in shoemaking
CN206254189U (en) * 2016-12-19 2017-06-16 温州大学 Gripper clamp system
CN107183840A (en) * 2017-06-29 2017-09-22 福建省华宝智能科技有限公司 One kind vulcanization shoes product line
CN207493960U (en) * 2017-11-16 2018-06-15 苏州威创达智能设备有限公司 A kind of online six axis robot dispenser
CN208894530U (en) * 2018-10-09 2019-05-24 苏州工业园区多司电子科技有限公司 A kind of automatic double surface gluer with vision-based detection function

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4829932A (en) * 1986-12-22 1989-05-16 International Shoe Machine Corporation Toe and ball laster and the like
CN206150602U (en) * 2016-11-09 2017-05-10 宁波慈星机器人技术有限公司 Gluey intelligent production line is spouted in shoemaking
CN206254189U (en) * 2016-12-19 2017-06-16 温州大学 Gripper clamp system
CN107183840A (en) * 2017-06-29 2017-09-22 福建省华宝智能科技有限公司 One kind vulcanization shoes product line
CN207493960U (en) * 2017-11-16 2018-06-15 苏州威创达智能设备有限公司 A kind of online six axis robot dispenser
CN208894530U (en) * 2018-10-09 2019-05-24 苏州工业园区多司电子科技有限公司 A kind of automatic double surface gluer with vision-based detection function

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
福建省炎黄文化研究会、福建省作家协会: "《走进洛江 智造之城 大美之邑》", 31 July 2019, 海峡书局 *
黄越平、徐进进: "《自动化机构设计构思实用图例》", 31 December 1993, 中国铁道出版社 *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111436698A (en) * 2020-05-22 2020-07-24 南京熙岳智能科技有限公司 Automatic mask opening device and method thereof
CN115474743A (en) * 2021-05-31 2022-12-16 阿迪达斯股份公司 Method for applying a material to a shoe
CN113598491A (en) * 2021-08-09 2021-11-05 江苏伊贝实业股份有限公司 Automatic gluing and edge rolling machine
CN114287710A (en) * 2021-12-09 2022-04-08 威海赛踏鞋业有限公司 Cold-bonded shoe production line and technological process thereof
CN114788602A (en) * 2022-05-07 2022-07-26 东华大学 Method for adjusting shoe upper gluing track, storage device and shoe sole gluing robot
CN114788602B (en) * 2022-05-07 2023-10-20 东华大学 Method for adjusting shoe upper gluing track, storage device and shoe sole gluing robot

Also Published As

Publication number Publication date
CN110916295B (en) 2022-03-15

Similar Documents

Publication Publication Date Title
CN110916295B (en) Automatic gluing equipment for shoemaking
CN110959959A (en) Modular reconfigurable flexible shoemaking production line
CN107183840B (en) Vulcanized shoe production line
CN111011995B (en) Vamp grinding device for shoemaking production line
CN207084298U (en) One kind vulcanization shoes product line
CN108820408B (en) Film tearing machine
CN108783759B (en) Sole pressing machine with manipulator
CN211672695U (en) Modular reconfigurable flexible shoemaking production line
CN108032184A (en) The robot sanding and polishing system of medical prosthesis
CN103434328A (en) Full-automatic framed picture cutting-assembling integrated production line
CN111390715A (en) Thermos cup production line of polishing
CN105965879A (en) Elastic abrasive block assembly line
CN111921798A (en) Full-automatic brush glue line for shoemaking
CN111166011A (en) Glue spraying system and method for sole processing
CN205321425U (en) Polisher for shoemaking
CN205321428U (en) Conveyor of cladding polisher for shoemaking
CN205831236U (en) A kind of shoemaking device
CN219299707U (en) Column nail roller sleeve nailing machine
CN103332054B (en) Rhinestone automatic assembling machine
CN207104586U (en) Sole/vamp grinding machine hand of polishing dynamics and angle can be automatically adjusted
CN113524703B (en) Gluing and bonding method for inner and outer plates of plastic front hatch cover
CN111940221B (en) Shoemaking is with brush mucilage binding and is put
CN109263063A (en) A kind of window sealing strip pastes production line and method of attaching
CN214230135U (en) Novel rubber coating device for shoemaking
CN212767027U (en) Automatic balance device

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant