CN209735980U - Paint dipping and drying equipment - Google Patents

Paint dipping and drying equipment Download PDF

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Publication number
CN209735980U
CN209735980U CN201920273957.1U CN201920273957U CN209735980U CN 209735980 U CN209735980 U CN 209735980U CN 201920273957 U CN201920273957 U CN 201920273957U CN 209735980 U CN209735980 U CN 209735980U
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CN
China
Prior art keywords
feeding
axis
lifting
transmission
drying
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Active
Application number
CN201920273957.1U
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Chinese (zh)
Inventor
陈玉乾
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Dongguan Deya Automation Technology Co Ltd
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Dongguan Deya Automation Technology Co Ltd
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Application filed by Dongguan Deya Automation Technology Co Ltd filed Critical Dongguan Deya Automation Technology Co Ltd
Priority to CN201920273957.1U priority Critical patent/CN209735980U/en
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Publication of CN209735980U publication Critical patent/CN209735980U/en
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Abstract

The utility model provides an immersion paint drying equipment, the on-line screen storage device comprises a base, the guard shield of setting on the base, the setting is at the two segmentation stoving subassemblies that blow of guard shield, the stoving subassembly that blows includes transmission assembly and the driving belt that two sections separation set up, be provided with the feed inlet at the transmission assembly front end, the row's of setting at the feed inlet rear end material subassembly, be transmission assembly at row's material subassembly rear end, and be provided with first equipment of blowing along transmission assembly one side, on transmission assembly and be provided with the drying chamber at the rear end of first equipment of blowing, be provided with tilting mechanism at the end of transmission assembly, driving belt's front end is provided with feeding mechanism, feeding mechanism's rear end is provided with the second drying chamber. The utility model discloses a set up the drive assembly and the driving belt that two sections separation set up, all be provided with on drive assembly and driving belt and blow mechanism and drying chamber, can blow twice and dry twice according to the work piece of difference, also can once blow twice and dry, promoted the efficiency of doing admittedly.

Description

Paint dipping and drying equipment
Technical Field
The utility model belongs to a blow and stoving technique especially relates to an equipment of drying is carried out after dip coating.
Background
In the field of workpiece processing, after a workpiece is manufactured and formed, the surface of the workpiece needs to be subjected to paint dipping treatment so as to meet functional requirements or aesthetic requirements in use. The common paint dipping process cannot carry out effective paint dipping on each surface of a workpiece, dead angles always appear, the paint dipping effect of the workpiece is influenced, and the workpiece needs to be naturally dried or baked after paint dipping is finished, so that the paint on the workpiece is dried for a long time.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides an immersion paint drying equipment.
The utility model adopts the technical proposal that:
The utility model provides a dip coating drying equipment, include
A base, a shield arranged on the base, a two-section type blowing and drying component arranged in the shield,
the blowing and drying component comprises two sections of transmission components and a transmission belt which are separately arranged, a feed inlet is arranged at the front end of the transmission component, a discharge component is arranged at the rear end of the feed inlet, the transmission component is arranged at the rear end of the discharge component, a group of first lifting devices are arranged on the transmission component, a plurality of first cross rods are arranged at the lower ends of the first lifting devices, first blowing equipment is arranged along one side of the transmission component, a drying chamber is arranged on the transmission component and at the rear end of the first blowing equipment, and a turnover mechanism is arranged at the tail end of the transmission component,
The front end of the transmission belt is provided with a feeding mechanism, the rear end of the feeding mechanism is provided with a group of second lifting devices, the lower ends of the second lifting devices are provided with a plurality of second cross rods, a second blowing device is arranged along one side of each second lifting device, and the rear end of each second lifting device is provided with a second drying chamber.
Preferably, the material discharging assembly is a plurality of U-shaped grooves, each U-shaped groove is clamped between two first cross rods, and limiting rods are arranged at the upper ends of the first cross rods.
Preferably, the transmission assembly comprises a plurality of groups of supporting roller supports which are arranged uniformly on the base, supporting rollers are arranged on the supporting roller supports, supporting roller supports are arranged at the front ends of the discharging assembly and the material turning mechanism at least, circular belts are arranged along the supporting rollers, and the circular belts penetrate through the U-shaped grooves.
preferably, the first air blowing equipment and the second air blowing equipment are identical in structure and respectively comprise a group of stand columns, X-axis beams arranged at the upper ends of the stand columns, X-axis slide rails arranged on the X-axis beams, X-axis driving screw rod mechanisms arranged at the X-axis slide rails, sliding frames arranged on the X-axis slide rails, Y-axis beams arranged on the sliding frames, Y-axis slide rails arranged on the Y-axis beams, Y-axis slide blocks arranged on the Y-axis slide rails and a plurality of air blowing heads arranged on the Y-axis slide blocks.
Preferably, the turnover mechanism comprises bearing supports arranged on two sides of the riding wheel support, a turnover support is arranged on one side of one of the bearing supports, a turnover motor is arranged on the turnover support, a motor shaft of the turnover motor is connected with a bearing arranged on the bearing support, a rotating shaft is arranged between the bearing supports, two ends of the rotating shaft are respectively in butt joint with the bearing on the bearing support, a turnover frame is arranged on the rotating shaft, and a plurality of turnover suction nozzles are arranged at the front end of the turnover frame.
preferably, the feeding mechanism comprises feeding supports arranged on two sides of the transmission belt, an X-axis feeding track arranged on the feeding supports, and a feeding support plate arranged at the upper end of the X-axis feeding track, wherein an X-axis moving cylinder is arranged at the front end of the feeding support plate, a Y-axis cylinder is arranged on the feeding support plate, a feeding frame is arranged at the bottom of the Y-axis cylinder, and a plurality of feeding suction nozzles are arranged at the front end of the feeding frame.
Preferably, the bottom of the feeding supporting plate is provided with a feeding sliding block, the feeding sliding block is arranged on an X-axis feeding track, and the tail end of the X-axis feeding track is provided with a feeding limiting plate.
Preferably, first hoisting device and second hoisting device's structure is the same, all includes the promotion base, sets up the fixed plate on promoting the base, sets up the sleeve in the fixed plate both sides to and set up the promotion lead screw in the middle of the fixed plate, the upper end of sleeve and promotion lead screw is provided with the lift plate, be provided with the location knob that corresponds the promotion lead screw in the middle of the lift plate, this location knob is connected with the promotion lead screw.
Preferably, a Y-direction transmission rod is arranged at the supporting wheel arranged at the discharging component or the material turning mechanism, and the Y-direction transmission rod is connected with a Y-direction transmission motor.
The utility model has the advantages that:
The utility model discloses a carry out the surface at the dip coating and blow for the surperficial rapid hardening has set up the drying chamber after blowing, and has set up the drive assembly and the driving belt that two sections separations set up, all is provided with on drive assembly and driving belt and blows mechanism and drying chamber, can blow twice and twice stoving according to the work piece of difference, also can once blow twice stoving, has promoted the efficiency of doing admittedly.
Drawings
In order to more clearly illustrate the embodiments of the present 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, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
fig. 1 is a schematic view of the appearance structure of the present invention;
FIG. 2 is a schematic view of the internal structure of the present invention;
fig. 3 is a schematic structural view of the turnover mechanism of the present invention;
fig. 4 is a schematic structural view of the feeding mechanism of the present invention;
FIG. 5 is a schematic structural view of a first blowing device according to the present invention;
Fig. 6 is a schematic structural view of the middle lifting device of the present invention.
Detailed Description
The invention will be described in detail with reference to the drawings and specific embodiments, wherein the exemplary embodiments and descriptions are provided to explain the invention, but not to limit the invention.
Referring to fig. 1 to 6, the utility model provides a dip coating drying equipment, include
a base 1, a shield 2 arranged on the base 1, a two-section type blowing and drying component arranged in the shield 2,
The blowing and drying assembly comprises two sections of transmission assemblies 3 and transmission belts which are separately arranged, a feeding hole 30 is arranged at the front end of each transmission assembly, a discharging assembly 31 is arranged at the rear end of the feeding hole 30, the transmission assembly 3 is arranged at the rear end of the discharging assembly 31, a group of first lifting devices 6A are arranged on the transmission assemblies 3, a plurality of first cross rods 8 are arranged at the lower ends of the first lifting devices 6A, the discharging assembly 31 is a plurality of U-shaped grooves, each U-shaped groove 31 is clamped between the two first cross rods 8, each first lifting device 6A comprises a lifting base 70, a fixing plate 71 arranged on the lifting base 70, sleeves 73 arranged at two sides of the fixing plate 71, the bottoms of the sleeves 73 are fixed with the lifting bases 70, and lifting screw rods 75 arranged in the middle of the fixing plates 71, lifting plates 73 are arranged at the upper ends of the sleeves 73 and the lifting screw rods 75, positioning knobs 74 corresponding to the lifting screw rods 75 are arranged in, the positioning knob 74 is connected to the lifting screw 75, and by rotating the positioning knob 74, the lifting screw 75 moves up or down, and drives the sleeve 73 to move up or down, thereby driving the first cross bar 8 to move up or down, and the upper end of the first cross bar 8 is provided with the limit rod 46, and the limit rod 46 limits the lifting height of the first lifting device 6A.
A first air blowing device 4A is arranged along one side of the transmission component 3, a drying chamber 5A is arranged on the transmission component 3 and at the rear end of the first air blowing device 4A, a turnover mechanism 9 is arranged at the tail end of the transmission component 3,
The front end of the transmission belt is provided with a feeding mechanism 10, the rear end of the feeding mechanism 10 is provided with a group of second lifting devices 6B, the lower ends of the second lifting devices 6B are provided with a plurality of second cross rods, a second blowing device 4B is arranged along one side of each second lifting device 6B, and the rear end of each second lifting device 4B is provided with a second drying chamber 5B.
The transmission component 3 comprises a plurality of groups of supporting roller supports 47 which are arranged uniformly on the base 1, supporting rollers 48 are arranged on the supporting roller supports 47, wherein the supporting roller supports 47 are arranged at the front ends of the discharging component 31 and the material turning mechanism 9, circular belts 7 are arranged along the supporting rollers 48, and the circular belts 48 penetrate through the U-shaped grooves. A Y-direction transmission rod is arranged at the supporting wheel 48 arranged at the discharging component 31 or the material turning mechanism 9 and connected with a Y-direction transmission motor, and the Y-direction transmission rod is driven to rotate by the Y-direction transmission motor, so that the circular belt 7 is driven to rotate on the supporting wheel 48, and feeding is realized.
The first air blowing equipment 4A and the second air blowing equipment 4B are identical in structure and respectively comprise a group of stand columns 40, X-axis beams arranged at the upper ends of the stand columns 40, X-axis slide rails 41 arranged on the X-axis beams, X-axis driving screw rod mechanisms 45 arranged at the X-axis slide rails 41, sliding frames 42 arranged on the X-axis slide rails 41, Y-axis beams arranged on the sliding frames 42, Y-axis slide rails arranged on the Y-axis beams, Y-axis slide blocks arranged on the Y-axis slide rails and a plurality of air blowing heads 44 arranged on the Y-axis slide blocks, wherein the Y-axis slide blocks drive the Y-axis slide blocks to move on the Y-axis slide rails through chain dragging mechanisms 43 arranged on the Y-axis beams. During operation, the carriage 42 can move on the X-axis slide rail 41 for adjustment, and the blowhead 44 is adjusted in the Y-axis direction by the movement of the Y-axis slider.
tilting mechanism 9 is including setting up the bearing bracket 91 in riding wheel support both sides, be provided with upset support 90 in one side of one of them bearing bracket 91, upset motor 90 sets up on upset support 91, the motor shaft 92 of upset motor 91 is connected with the bearing 93 that sets up on bearing bracket 91, be provided with pivot 94 between the bearing bracket, the pivot 94 both ends dock with bearing 93 on the bearing bracket respectively, be provided with roll-over stand 95 in pivot 94, be provided with a plurality of upset suction nozzles 96 at the front end of roll-over stand 95, rotate through upset motor 90, it rotates to drive pivot 94 on bearing bracket 91, it overturns around driving roll-over stand 95, absorb the work piece through upset suction nozzle 96, realize the removal from transmission assembly 3 and driving belt.
The feeding mechanism 10 comprises feeding supports 100 arranged on two sides of a transmission belt, an X-axis feeding track 106 arranged on the feeding supports, and a feeding support plate 105 arranged at the upper end of the X-axis feeding track 106, wherein an X-axis moving cylinder 103 is arranged at the front end of the feeding support plate 105, a Y-axis cylinder 104 is arranged on the feeding support plate 105, a feeding rack 101 is arranged at the bottom of the Y-axis cylinder 104, a plurality of feeding suction nozzles 102 are arranged at the front end of the feeding rack 101, a feeding slide block 107 is arranged at the bottom of the feeding support plate 101, the feeding slide block 107 is arranged on the X-axis feeding track 106, and a feeding limit plate 108 is arranged at the tail end of the X-axis feeding track 106. During operation, the turnover suction nozzle 96 sucks a workpiece, the workpiece is turned 180 degrees by the rotation of the turnover motor 90 and is placed on the transmission belt, the Y-axis cylinder 104 acts at the moment to drive the feeding frame 101 to move downwards, the workpiece is sucked by the feeding suction nozzle 102 and then moves upwards through the Y-axis cylinder 104, the X-axis moving cylinder 103 acts simultaneously in the upward moving process, and the feeding frame 101 is pushed to move backwards until the second air blowing device 4B is located.
The utility model discloses in, the drying chamber can adopt prior art's tunnel type drying-furnace and infrared drying room etc. as for choose which kind of mode for use, the utility model discloses do not restrict, according to specific implementation situation and cost restriction, as long as can reach the effect of drying can.
The utility model discloses a paint repair is being carried out after the dip coating to set up the drying chamber after blowing, and set up the drive assembly and the driving belt that two sections separation set up, all be provided with on drive assembly and driving belt and blow mechanism and drying chamber, can blow twice and dry twice according to the work piece of difference, also can once blow twice and dry, promoted the efficiency of doing admittedly.
the technical solutions disclosed in the embodiments of the present invention are described in detail above, and the principles and embodiments of the present invention are explained herein by using specific embodiments, and the descriptions of the above embodiments are only applicable to help understand the principles of the embodiments of the present invention; meanwhile, for a person skilled in the art, according to the embodiments of the present invention, there may be variations in the specific implementation manners and application ranges, and in summary, the content of the description should not be construed as a limitation to the present invention.

Claims (9)

1. Paint dipping and drying equipment, which is characterized by comprising
A base, a shield arranged on the base, a two-section type blowing and drying component arranged in the shield,
The blowing and drying component comprises two sections of transmission components and a transmission belt which are separately arranged, a feed inlet is arranged at the front end of the transmission component, a discharge component is arranged at the rear end of the feed inlet, the transmission component is arranged at the rear end of the discharge component, a group of first lifting devices are arranged on the transmission component, a plurality of first cross rods are arranged at the lower ends of the first lifting devices, first blowing equipment is arranged along one side of the transmission component, a drying chamber is arranged on the transmission component and at the rear end of the first blowing equipment, and a turnover mechanism is arranged at the tail end of the transmission component,
The front end of the transmission belt is provided with a feeding mechanism, the rear end of the feeding mechanism is provided with a group of second lifting devices, the lower ends of the second lifting devices are provided with a plurality of second cross rods, a second blowing device is arranged along one side of each second lifting device, and the rear end of each second lifting device is provided with a second drying chamber.
2. The paint dipping and drying equipment according to claim 1, wherein the discharge assembly is a plurality of U-shaped grooves, each U-shaped groove is clamped between two first cross bars, and a limiting rod is arranged at the upper end of each first cross bar.
3. The paint dipping and drying equipment as claimed in claim 1, wherein the transmission assembly comprises a plurality of groups of uniformly arranged riding wheel supports arranged on the base, riding wheels are arranged on the riding wheel supports, wherein the riding wheel supports are arranged at least at the front end of the discharging assembly and the front end of the material turning mechanism, circular belts are arranged along the riding wheels, and the circular belts pass through the U-shaped grooves.
4. the paint dipping and drying device as claimed in claim 1, wherein the first air blowing device and the second air blowing device are identical in structure and each comprise a set of columns, X-axis beams arranged at the upper ends of the columns, X-axis slide rails arranged on the X-axis beams, X-axis driving screw rod mechanisms arranged at the X-axis slide rails, sliding frames arranged on the X-axis slide rails, Y-axis beams arranged on the sliding frames, Y-axis slide rails arranged on the Y-axis beams, Y-axis slide blocks arranged on the Y-axis slide rails, and a plurality of air blowing heads arranged on the Y-axis slide blocks.
5. The paint dipping and drying equipment as claimed in claim 1, wherein the turnover mechanism comprises bearing supports arranged at two sides of the riding wheel support, a turnover support is arranged at one side of one of the bearing supports, a turnover motor is arranged on the turnover support, a motor shaft of the turnover motor is connected with a bearing arranged on the bearing support, a rotating shaft is arranged between the bearing supports, two ends of the rotating shaft are respectively butted with the bearing on the bearing support, a turnover frame is arranged on the rotating shaft, and a plurality of turnover suction nozzles are arranged at the front end of the turnover frame.
6. the paint dipping and drying equipment according to claim 1, wherein the feeding mechanism comprises feeding brackets arranged at two sides of the transmission belt, an X-axis feeding track arranged on the feeding brackets, and a feeding support plate arranged at the upper end of the X-axis feeding track, wherein an X-axis moving cylinder is arranged at the front end of the feeding support plate, a Y-axis cylinder is arranged on the feeding support plate, a feeding rack is arranged at the bottom of the Y-axis cylinder, and a plurality of feeding suction nozzles are arranged at the front end of the feeding rack.
7. The paint dipping and drying equipment according to claim 6, wherein a feeding slide block is arranged at the bottom of the feeding supporting plate, the feeding slide block is arranged on an X-axis feeding track, and a feeding limit plate is arranged at the tail end of the X-axis feeding track.
8. the paint dipping and drying equipment as claimed in claim 1, wherein the first lifting device and the second lifting device are identical in structure and each comprise a lifting base, a fixing plate arranged on the lifting base, sleeves arranged on two sides of the fixing plate and a lifting screw rod arranged in the middle of the fixing plate, lifting plates are arranged at the upper ends of the sleeves and the lifting screw rod, and a positioning knob corresponding to the lifting screw rod is arranged in the middle of the lifting plates and connected with the lifting screw rod.
9. The paint dipping and drying device as claimed in claim 3, wherein a Y-direction transmission rod is arranged at the idler wheel arranged at the discharging component or the material overturning mechanism, and the Y-direction transmission rod is connected with a Y-direction transmission motor.
CN201920273957.1U 2019-03-05 2019-03-05 Paint dipping and drying equipment Active CN209735980U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920273957.1U CN209735980U (en) 2019-03-05 2019-03-05 Paint dipping and drying equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920273957.1U CN209735980U (en) 2019-03-05 2019-03-05 Paint dipping and drying equipment

Publications (1)

Publication Number Publication Date
CN209735980U true CN209735980U (en) 2019-12-06

Family

ID=68708900

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920273957.1U Active CN209735980U (en) 2019-03-05 2019-03-05 Paint dipping and drying equipment

Country Status (1)

Country Link
CN (1) CN209735980U (en)

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