CN111389656B - Dacromet equipment for reinforcing metal plate corners - Google Patents

Dacromet equipment for reinforcing metal plate corners Download PDF

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Publication number
CN111389656B
CN111389656B CN202010421775.1A CN202010421775A CN111389656B CN 111389656 B CN111389656 B CN 111389656B CN 202010421775 A CN202010421775 A CN 202010421775A CN 111389656 B CN111389656 B CN 111389656B
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rod
shaft
installation cavity
output
transmission
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CN111389656A (en
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李伟
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Dai Lin
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戴林
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C3/00Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material
    • B05C3/02Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material
    • B05C3/09Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material for treating separate articles
    • B05C3/10Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material for treating separate articles the articles being moved through the liquid or other fluent material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C11/00Component parts, details or accessories not specifically provided for in groups B05C1/00 - B05C9/00
    • B05C11/10Storage, supply or control of liquid or other fluent material; Recovery of excess liquid or other fluent material
    • B05C11/1039Recovery of excess liquid or other fluent material; Controlling means therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C13/00Means for manipulating or holding work, e.g. for separate articles
    • B05C13/02Means for manipulating or holding work, e.g. for separate articles for particular articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C9/00Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important
    • B05C9/08Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important for applying liquid or other fluent material and performing an auxiliary operation
    • B05C9/14Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important for applying liquid or other fluent material and performing an auxiliary operation the auxiliary operation involving heating or cooling

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Abstract

The utility model provides a metal sheet corner reinforcement processing's dyclon equipment, includes the work box, be equipped with the installation cavity in the work box, be equipped with pan feeding mechanism in the installation cavity, soak mechanism, vibrations mechanism, evaporation to dryness mechanism, stoving mechanism, reinforcing mechanism installs the metal sheet in this equipment, this equipment can reach the dyclon solution with the metal sheet and soak automatically, vibrations are got rid of unnecessary solution, unnecessary solution is retrieved, preliminary evaporation to dryness surface moisture, stoving metal sheet, metal sheet corner department coating reinforcement processing, stoving reinforcement portion's work has solved the metal sheet in the transportation, because vibration and friction, the dyclon coating destroyed problem of sharp corner department, the life of metal sheet has been improved.

Description

Dacromet equipment for reinforcing metal plate corners
Technical Field
The invention relates to the technical field of metal surface treatment, in particular to Dacromet equipment for reinforcing corners of a metal plate.
Background
There are many methods and kinds of surface treatment of metal fittings according to the requirements of products thereof. At present, common surface treatment methods comprise electroplating, hot galvanizing, mechanical plating and dacromet, the corrosion resistance of a workpiece coated with the dacromet coating is theoretically better than that of electroplated zinc, but in practical application, pitting corrosion is discovered to occur in a part of fasteners soon after the fasteners are used, the manufacturing process of the workpiece is carefully analyzed, obvious defects are not discovered, and statistical analysis on a large number of workpieces with problems shows that most of positions where the rust spots occur are at sharp corners of the workpiece, but not all the sharp corners can generate the rust spots. The present invention improves upon the above-mentioned problems by concluding that the coating at the sharp corners is most easily damaged by vibration and friction during transportation of the workpiece.
Disclosure of Invention
The invention aims to provide a Dacromet device for reinforcing the corners of a metal plate, which overcomes the problems.
The invention is realized by the following technical scheme.
The dacromet equipment for reinforcing the corners of the metal plate comprises a working box, wherein an installation cavity is arranged in the working box, a feeding mechanism, a soaking mechanism, a vibrating mechanism, a drying mechanism and a reinforcing mechanism are arranged in the installation cavity, the soaking mechanism is positioned below the feeding mechanism, the vibrating mechanism is positioned at the right end of the soaking mechanism, the drying mechanism is positioned at the lower end of the drying mechanism, the reinforcing mechanism is positioned at the left end of the drying mechanism, the reinforcing mechanism comprises a reinforcing chute arranged at the bottom of the installation cavity, a reinforcing sliding block is arranged in the reinforcing chute, a reinforcing support rod is arranged on the reinforcing sliding block, a solution pool is arranged in the installation cavity, a pressure telescopic rod is arranged at the bottom of the solution pool, a lower reinforcing base and a reinforcing telescopic rod are respectively arranged on the reinforcing support rod and the pressure telescopic rod, The lower reinforcing base and the upper reinforcing base are internally provided with a connecting block, the upper end of the connecting block is hinged with a contact plate, the lower reinforcing base is internally provided with an upper pressing telescopic rod positioned at the upper end of a reinforcing support rod, the upper end of the upper pressing telescopic rod is fixedly connected with the connecting block, the lower end of the pressure telescopic rod is connected with the connecting block in the upper reinforcing base by a spring, the lower reinforcing base and the upper reinforcing base are internally provided with coating cavities symmetrically and symmetrically all around, the coating cavities are close to the central parts of the lower reinforcing base and the upper reinforcing base and are provided with coating ports, a coating push plate is arranged in each coating cavity, the bottom of each coating push plate is fixedly provided with a deformation rod, the lower end of each deformation rod bends leftwards and extends to the outer part of the lower reinforcing base, and the deformation rod can change shape due to the track of through holes in the lower reinforcing base and the upper reinforcing base, a hard rod is fixedly arranged at the left end of the deformation rod, a transmission rod is hinged between the hard rod and the connecting block, a transfer telescopic motor is arranged on the reinforcing support rod, a transfer telescopic rod is arranged at the upper end of the transfer telescopic motor, and the transfer telescopic rod is hinged with the contact plate;
the utility model discloses a solution pool, including installation cavity, output motor, output shaft, setting up the installation cavity, the installation cavity bottom is equipped with the output motor, the output motor front end is equipped with the output pivot, run through the rotation in the wall around the installation cavity and be equipped with the output shaft, the output pivot with all be equipped with the output dish on the output shaft, connect through cross drive's ejection of compact belt pulley between two output dishes, be equipped with in the installation cavity and be located respectively the installation cavity bottom with the lower roaster, the last roaster of solution pool bottom, be equipped with on the wall of work box.
Further, a solution cavity is arranged in the solution pool, two placing plates which are symmetrical in the front and the back are arranged in the solution pool, a main motor is arranged in the solution cavity, a driving shaft is arranged in front of the main motor, a feeding shaft, a first transmission shaft, a second transmission shaft and a discharging shaft which are positioned on the rear wall of the solution pool are rotatably arranged in the solution pool and are in transmission connection through a feeding synchronous belt, transmission mechanisms are arranged on the driving shaft, the first transmission shaft and the second transmission shaft and comprise a driven rod and a moving rod which are hinged, the driven rod is respectively positioned on the driving shaft, the first transmission shaft and the second transmission shaft, a moving plate is fixedly arranged at the upper end of the moving rod, five pushing plates are arranged on the moving plate, a material cavity which is positioned at the top of the installation cavity and is opened upwards is arranged in the installation cavity, a metal plate is arranged in the material cavity, a first rotating shaft which penetrates through the installation cavity from front to back is arranged in the installation cavity, the first rotating shaft is in transmission connection with the feeding shaft through a feeding belt pulley, a limiting rod is arranged in the installation cavity, a feeding rod which penetrates through the limiting rod from left to right and extends to the material cavity from the right end is arranged in the limiting rod, a first pushing rod is fixedly connected to the first rotating shaft, and a first transmission rod is hinged between the first pushing rod and the feeding rod;
a first output rod is fixedly arranged on the discharging shaft, a top groove is formed in the right wall of the solution pool, a material pushing top block is arranged in the solution pool, the right end of the material pushing top block extends into the top groove and can slide up and down, and a second output rod is hinged between the material pushing top block and the first output rod;
the fixed support that is equipped with on the installation cavity roof, be equipped with the output rotation axis on the support, the output rotation axis with first transmission axle passes through output belt pulley transmission and connects, the fixed second push rod that is equipped with on the output rotation axis, be equipped with the output support frame on the installation cavity roof, run through about being equipped with in the output support frame in the ejection of compact push rod of output support frame, ejection of compact push rod with the articulated second transfer line that is equipped with between the second push rod.
Further, run through around in the installation cavity and be equipped with first vibrations axle, second vibrations axle, four camshafts, first vibrations axle, second vibrations axle are connected through vibrations belt pulley transmission, vibrations belt pulley is elasticity latticed, makes the unnecessary Kr solution that reaches in metal sheet surface shake through vibrations and falls, be equipped with the cam on the camshaft, the solution pond right-hand member is equipped with retrieves the pond, retrieve the pond with the connection is equipped with one-way transmission valve between the solution pond.
Further, run through around in the evaporation to dryness mechanism first evaporation to dryness axle, the second evaporation to dryness axle of installation cavity, first evaporation to dryness axle with second vibrations axle is connected through transmission belt pulley transmission, first evaporation to dryness axle is connected through evaporation to dryness belt pulley transmission with the second evaporation to dryness axle, be equipped with the evaporation to dryness ware in the evaporation to dryness belt pulley, be equipped with the fixture block on the evaporation to dryness belt pulley, the recovery pond right-hand member is equipped with the transportation baffle.
Furthermore, the drying mechanism comprises a first drying shaft and a second drying shaft which penetrate through the front and back of the drying mechanism and are rotationally arranged in the mounting cavity, the first drying shaft and the second drying shaft are in transmission connection through a drying belt pulley, the second drying shaft is in transmission connection with the second drying shaft through a transmission belt pulley, a moving baffle is arranged on the drying belt pulley and comprises a baffle groove arranged on the drying belt pulley, a long strip plate extending upwards to the outer portion of the upper end of the baffle groove is arranged in the baffle groove, a baffle spring is arranged between the bottom of the long strip plate and the bottom of the baffle groove in a connected mode, and a dryer is arranged at the bottom of the solution pool.
Further, the drying belt pulley left end is equipped with the transfer bracing piece, it shifts the groove to shift the fixed slope that is equipped with in bracing piece upper end to shift.
The invention has the beneficial effects that: install the metal sheet in this equipment, this equipment can be automatic with the metal sheet reach the Crow solution and soak, the unnecessary solution is got rid of in vibrations, unnecessary solution is retrieved, preliminary evaporation to dryness surface moisture, the metal sheet of drying, the metal sheet edge department coating reinforcement processing, the work of reinforcing part is dried in the stoving, has solved the metal sheet in the transportation, because vibration and friction, the problem that the coating of reaching the Crow of sharp angle department is destroyed has improved the life of metal sheet.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the structure at A-A in FIG. 1;
FIG. 3 is a schematic view of the structure at B in FIG. 1;
FIG. 4 is a schematic view of the structure of FIG. 1 at C;
fig. 5 is a schematic diagram of the structure at D in fig. 1.
Detailed Description
The invention will now be described in detail with reference to fig. 1-5, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The dacromet device for reinforcing the metal plate corners comprises a working box 10, wherein a mounting cavity 11 is arranged in the working box 10, a feeding mechanism 150, a soaking mechanism 151, a vibrating mechanism 152, a drying mechanism 153, a drying mechanism 154 and a reinforcing mechanism 155 are arranged in the mounting cavity 11, the soaking mechanism 151 is located below the feeding mechanism, the vibrating mechanism 152 is located at the right end of the soaking mechanism 151, the drying mechanism 153 is located at the right end of the vibrating mechanism 152, the drying mechanism 154 is located at the lower end of the drying mechanism 153, the reinforcing mechanism 155 is located at the left end of the drying mechanism 154, the reinforcing mechanism 155 comprises a reinforcing chute 83 arranged at the bottom of the mounting cavity 11, a reinforcing slide block 82 is arranged in the reinforcing chute 83, a reinforcing support rod 84 is arranged on the reinforcing slide block 82, a solution pool 14 is arranged in the mounting cavity 11, the bottom of the solution pool 14 is provided with a pressure telescopic rod 112, the reinforcing support rod 84 and the lower end of the pressure telescopic rod 112 are respectively provided with a lower reinforcing base 85 and an upper reinforcing base 42, the central positions of the lower reinforcing base 85 and the upper reinforcing base 42 are provided with a connecting block 107, the upper end of the connecting block 107 is hinged with a contact plate 104, the lower reinforcing base 85 is internally provided with an upper pressing telescopic rod 101 positioned at the upper end of the reinforcing support rod 84, the upper end of the upper pressing telescopic rod 101 is fixedly connected with the connecting block 107, a spring 111 is connected between the lower end of the pressure telescopic rod 112 and the connecting block 107 in the upper reinforcing base 42, the lower reinforcing base 85 and the upper reinforcing base 42 are internally provided with coating cavities 96 in a front-back and left-right symmetrical manner, the coating cavities 96 are close to the central parts of the lower reinforcing base 85 and the upper reinforcing base 42 and are provided with coating ports 106, a deformation rod 97 is fixedly arranged at the bottom of the coating push plate 95, the lower end of the deformation rod 97 bends leftwards and extends to the outside of the lower reinforcing base 85, the shape of the deformation rod 97 can be changed due to the track of through holes in the lower reinforcing base 85 and the upper reinforcing base 42 in the movement process, a hard rod 99 is fixedly arranged at the left end of the deformation rod 97, a transmission rod 100 is hinged between the hard rod 99 and the connecting block 107, a transfer telescopic motor 103 is arranged on the reinforcing support rod 84, a transfer telescopic rod 102 is arranged at the upper end of the transfer telescopic motor 103, and the transfer telescopic rod 102 is hinged with the contact plate 104;
11 bottoms of installation cavity are equipped with output motor 87, output motor 87 front end is equipped with output pivot 88, it is equipped with output shaft 89 to run through the rotation in the wall around 11 to install cavity, output pivot 88 with all be equipped with output disc 90 on the output shaft 89, connect through cross drive's ejection of compact belt pulley 91 between two output discs, be equipped with in the installation cavity 11 and be located respectively 11 bottoms of installation cavity with the lower roaster 92, the last roaster 93 of solution pond 14 bottom, be equipped with on the wall of work box 10 the output groove 94 that runs through about.
Beneficially, a solution cavity 15 is arranged in the solution pool 14, two placement plates 23 are arranged in the solution pool 14 in a front-back symmetrical manner, a main motor 36 is arranged in the solution cavity 15, a driving shaft 37 is arranged in front of the main motor 36, a feeding shaft 16, a first transmission shaft 48, a second transmission shaft 49 and a discharging shaft 50 are rotatably arranged in the solution pool 14 and located on the rear wall of the solution pool 14, the feeding shaft 16, the first transmission shaft 48, the second transmission shaft 49 and the discharging shaft 50 are in transmission connection through a feeding synchronous belt 41, transmission mechanisms 47 are arranged on the driving shaft 37, the first transmission shaft 48 and the second transmission shaft 49, the transmission mechanisms 47 comprise a driven rod 38 and a moving rod 40 which are hinged, the driven rod 38 is respectively located on the driving shaft 37, the first transmission shaft 48 and the second transmission shaft 49, a moving plate 24 is fixedly arranged at the upper end of the moving rod 40, five pushing plates 25 are arranged on the moving plate 24, a material cavity 21 which is located at the top of the installation cavity 11 and is provided with an upward opening is formed in the installation cavity 11, a metal plate 22 is arranged in the material cavity 21, a first rotating shaft 12 which penetrates through the installation cavity 11 from front to back is arranged in the installation cavity 11, the first rotating shaft 11 is in transmission connection with the feeding shaft 16 through a feeding belt pulley 13, a limiting rod 20 is arranged in the installation cavity 11, a feeding rod 19 which penetrates through the limiting rod 20 from left to right and extends to the material cavity 21 from the right end is arranged in the limiting rod 20, a first pushing rod 17 is fixedly connected to the first rotating shaft 12, and a first transmission rod 18 is hinged between the first pushing rod 17 and the feeding rod 19;
a first output rod 51 is fixedly arranged on the discharging shaft 50, a top groove 54 is arranged on the right wall of the solution pool 14, a material pushing top block 53 with the right end extending into the top groove 54 and capable of sliding up and down is arranged in the solution pool 14, and a second output rod 52 is hinged between the material pushing top block 53 and the first output rod 51;
the fixed support 160 that is equipped with on the 11 roof of installation cavity, be equipped with output rotation axis 56 on the support 160, output rotation axis 56 with first transmission shaft 48 passes through output belt pulley 43 transmission and is connected, the fixed second push rod 57 that is equipped with on the output rotation axis 56, be equipped with output support frame 60 on the 11 roof of installation cavity, be equipped with in the output support frame 60 about run through in the ejection of compact push rod 59 of output support frame 60, ejection of compact push rod 59 with it is equipped with second transfer line 58 to articulate between second push rod 57.
Beneficially, a first vibration shaft 61, a second vibration shaft 66 and four cam shafts 62 are arranged in the installation cavity 11 in a front-back penetrating manner, the first vibration shaft 61 and the second vibration shaft 66 are in transmission connection through a vibration belt pulley 65, the vibration belt pulley 65 is in an elastic grid shape, the redundant dacromet solution on the surface of the metal plate 22 is vibrated down through vibration, a cam 63 is arranged on the cam shaft 62, a recovery pool 161 is arranged at the right end of the solution pool 14, and a one-way transmission valve 55 is arranged between the recovery pool 161 and the solution pool 14 in a connecting manner.
Beneficially, the evaporating mechanism 153 includes a first evaporating shaft 68 and a second evaporating shaft 73 penetrating the installation cavity 11 from front to back, the first evaporating shaft 68 and the second vibration shaft 66 are in transmission connection through a transmission belt pulley 67, the first evaporating shaft 68 and the second evaporating shaft 73 are in transmission connection through an evaporating belt pulley 70, an evaporating device 72 is disposed in the evaporating belt pulley 70, a fixture block 71 is disposed on the evaporating belt pulley 70, and a transportation baffle 69 is disposed at the right end of the recovery tank 161.
Advantageously, the drying mechanism 154 includes a first drying shaft 79 and a second drying shaft 75 which are arranged in the installation cavity 11 in a front-rear penetrating and rotating manner, the first drying shaft 79 and the second drying shaft 75 are in transmission connection through a drying pulley 76, the second drying shaft 75 is in transmission connection with the second drying shaft 73 through a conduction pulley 74, a moving baffle 77 is arranged on the drying pulley 76, the moving baffle 77 includes a baffle slot 108 arranged on the drying pulley 76, an elongated plate 110 extending upwards to the outside of the upper end of the baffle slot 108 is arranged in the baffle slot 108, a baffle spring 109 is arranged between the bottom of the elongated plate 110 and the bottom of the baffle slot 108, and the dryer 78 is arranged at the bottom of the solution pool 14.
Advantageously, a transfer support bar 80 is provided at the left end of the drying belt pulley 76, and an inclined transfer groove 81 is fixedly provided at the upper end of the transfer support bar 80.
The working steps are as follows: placing the metal plate 22 in the material cavity 21, starting the main motor 36, extending the feeding rod 19 into the material cavity 21 from the left end to push the bottommost metal plate 22 out of the material cavity 21, enabling the pushed metal plate 21 to fall onto the placing plate 23 in the solution pool 14, soaking the metal plate 22 in the Dacromet solution, driving the metal plate 22 on the placing plate 23 to move rightwards through the moving plate 24 and the pushing plate 25, when the metal plate moves to the rightmost end of the placing plate 23, jacking the metal plate 22 by the material returning jacking block 53, pushing the metal plate 22 onto the vibrating belt pulley 65 by the material discharging push rod 59, continuously vibrating the metal plate 22 through the cam 63 to enable the redundant Dacromet solution on the surface of the metal plate 22 to be vibrated and fall into the recovery pool 161, and recovering the Dacromet solution in the recovery pool 161 into the solution pool 14 through the one-way transmission valve 55;
the metal plate 22 leaves the vibrating belt pulley 65, the right end of the metal plate 22 falls into a fixture block 71 on the drying belt pulley 70, the left end of the metal plate 22 leans against the conveying baffle plate 69, and the drying device 72 is set at a proper temperature to dry the water in the solution on the surface of the metal plate 22 to dryness without generating bubbles due to overhigh temperature;
the metal plate 22 falls on the drying belt pulley 76, the metal plate 22 is corrected through the movement baffle 77 and pushed leftwards, drying work is carried out, the metal plate moves into the lower reinforcing base 85 through the inclined transfer groove 81, the reinforcing slide block 82 moves leftwards to be under the upper reinforcing base 42, the pressure telescopic rod 112 is started, the upper reinforcing base 42 and the lower reinforcing base 85 clamp the metal plate 22 tightly, the paint push plate 95 pushes paint to be discharged through the paint opening 106 to cover the edge of the metal plate 22, the pressure telescopic rod 112 drives the upper reinforcing base 42 to ascend, the reinforcing slide block 82 moves leftwards, the transfer telescopic motor 103 is started, meanwhile, the upper pressing telescopic rod 101 jacks up the metal plate 22, the transfer telescopic rod 102 jacks up the right end of the contact plate 104, the contact plate 104 is in a left-low-right-high state, the metal plate 22 slides into the output disc 90 to be transported leftwards, and finally is output to the work.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides a metal sheet corner reinforcement processing's dyclon equipment, includes the work box, be equipped with the installation cavity in the work box, be equipped with pan feeding mechanism, soaking mechanism, vibrations mechanism, evaporation to dryness mechanism, stoving mechanism in the installation cavity, strengthening mechanism, soaking mechanism is located pan feeding mechanism below, vibrations mechanism is located soak the mechanism right-hand member, evaporation to dryness mechanism is located the vibrations mechanism right-hand member, stoving mechanism is located evaporation to dryness mechanism lower extreme, strengthening mechanism is located stoving mechanism left end, strengthening mechanism including set up in the reinforcement spout of installation cavity bottom, be equipped with the reinforcement slider in the reinforcement spout, be equipped with the reinforcement bracing piece on the reinforcement slider, be equipped with the solution pond in the installation cavity, its characterized in that: the bottom of the solution pool is provided with a pressure telescopic rod, a lower reinforcing base and an upper reinforcing base are respectively arranged on the reinforcing support rod and the lower end of the pressure telescopic rod, the central positions of the lower reinforcing base and the upper reinforcing base are provided with connecting blocks, the upper end of each connecting block is hinged with a contact plate, an upper pressure telescopic rod positioned at the upper end of the reinforcing support rod is arranged in the lower reinforcing base, the upper end of the upper pressure telescopic rod is fixedly connected with the connecting blocks, springs are connected between the lower end of the pressure telescopic rod and the connecting blocks in the upper reinforcing base, coating cavities are symmetrically arranged in the lower reinforcing base and the upper reinforcing base from front to back and from left to right, the coating cavities are provided with coating ports close to the central parts of the lower reinforcing base and the upper reinforcing base, a coating push plate is arranged in the coating cavities, a deformation rod is fixedly arranged at the bottom of the coating push plate, and the, the shape of the deformation rod can be changed due to the tracks of the through holes in the lower reinforcing base and the upper reinforcing base in the movement process, a hard rod is fixed at the left end of the deformation rod, a transmission rod is hinged between the hard rod and the connecting block, a transfer telescopic motor is arranged on the reinforcing support rod, a transfer telescopic rod is arranged at the upper end of the transfer telescopic motor, and the transfer telescopic rod is hinged with the contact plate; the utility model discloses a solution pool, including installation cavity, output motor, output shaft, setting up the installation cavity, the installation cavity bottom is equipped with the output motor, the output motor front end is equipped with the output pivot, run through the rotation in the wall around the installation cavity and be equipped with the output shaft, the output pivot with all be equipped with the output dish on the output shaft, connect through cross drive's ejection of compact belt pulley between two output dishes, be equipped with in the installation cavity and be located respectively the installation cavity bottom with the lower roaster, the last roaster of solution pool bottom, be equipped with on the wall of work box.
2. The dacromet device of claim 1, wherein: the solution tank is internally provided with a solution cavity, the solution tank is internally provided with two placing plates which are symmetrical front and back, the solution cavity is internally provided with a main motor, a driving shaft is arranged in front of the main motor, the solution tank is internally rotatably provided with a feeding shaft, a first transmission shaft, a second transmission shaft and a discharging shaft which are positioned on the rear wall of the solution tank, the feeding shaft, the first transmission shaft, the second transmission shaft and the discharging shaft are in transmission connection through a feeding synchronous belt, the driving shaft, the first transmission shaft and the second transmission shaft are provided with transmission mechanisms, each transmission mechanism comprises a driven rod and a moving rod which are hinged, the driven rods are respectively positioned on the driving shaft, the first transmission shaft and the second transmission shaft, the upper end of the moving rod is fixedly provided with a moving plate, the moving plate is provided with five pushing plates, and the installation cavity is internally provided with a material cavity which is positioned at the top of the installation cavity and is, a metal plate is arranged in the material cavity, a first rotating shaft which penetrates through the installation cavity from front to back is arranged in the installation cavity, the first rotating shaft is in transmission connection with the feeding shaft through a feeding belt pulley, a limiting rod is arranged in the installation cavity, a feeding rod which penetrates through the limiting rod from left to right and extends to the material cavity from the right end is arranged in the limiting rod, a first pushing rod is fixedly connected to the first rotating shaft, and a first transmission rod is hinged between the first pushing rod and the feeding rod; a first output rod is fixedly arranged on the discharging shaft, a top groove is formed in the right wall of the solution pool, a material pushing top block is arranged in the solution pool, the right end of the material pushing top block extends into the top groove and can slide up and down, and a second output rod is hinged between the material pushing top block and the first output rod; the fixed support that is equipped with on the installation cavity roof, be equipped with the output rotation axis on the support, the output rotation axis with first transmission axle passes through output belt pulley transmission and connects, the fixed second push rod that is equipped with on the output rotation axis, be equipped with the output support frame on the installation cavity roof, run through about being equipped with in the output support frame in the ejection of compact push rod of output support frame, ejection of compact push rod with the articulated second transfer line that is equipped with between the second push rod.
3. The dacromet device of claim 2, wherein: run through around being equipped with first vibrations axle, second vibrations axle, four camshafts in the installation cavity, first vibrations axle, second vibrations axle are connected through vibrations belt pulley transmission, vibrations belt pulley is elasticity latticed, makes the unnecessary Kraft solution that reaches in metal sheet surface shake through vibrations and falls, be equipped with the cam on the camshaft, the solution pond right-hand member is equipped with retrieves the pond, retrieve the pond with it is equipped with one-way transmission valve to connect between the solution pond.
4. The dacromet device of claim 3, wherein: run through in the first evaporation to dryness axle, the second evaporation to dryness axle of installation cavity including the front and back in evaporation to dryness mechanism, first evaporation to dryness axle with second vibrations axle passes through driving pulley transmission and is connected, first evaporation to dryness axle passes through evaporation to dryness belt pulley transmission with the second evaporation to dryness axle and is connected, be equipped with the evaporation to dryness ware in the evaporation to dryness belt pulley, be equipped with the fixture block on the evaporation to dryness belt pulley, the recovery pond right-hand member is equipped with transportation baffle.
5. The Dacromet device for metal plate corner reinforcement treatment according to claim 4, wherein: the drying mechanism comprises a first drying shaft and a second drying shaft which penetrate through the front and back of the drying mechanism and are rotationally arranged in the mounting cavity, the first drying shaft and the second drying shaft are in transmission connection through a drying belt pulley, the second drying shaft is in transmission connection with the second drying shaft through a transmission belt pulley, a motion baffle is arranged on the drying belt pulley, the motion baffle comprises a baffle groove arranged on the drying belt pulley, a long strip plate extending upwards to the outer part of the upper end of the baffle groove is arranged in the baffle groove, a baffle spring is arranged between the bottom of the long strip plate and the bottom of the baffle groove in a connecting mode, and a dryer is arranged at the bottom of the solution pool.
6. The Dacromet device for corner reinforcement of metal sheets according to claim 5, wherein: the drying belt pulley left end is equipped with the transfer bracing piece, it shifts the groove to shift the fixed slope that is equipped with in bracing piece upper end to shift.
CN202010421775.1A 2020-05-18 2020-05-18 Dacromet equipment for reinforcing metal plate corners Active CN111389656B (en)

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