CN212538516U - Electrophoresis drying chamber for metal automobile parts - Google Patents
Electrophoresis drying chamber for metal automobile parts Download PDFInfo
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- CN212538516U CN212538516U CN202020918260.8U CN202020918260U CN212538516U CN 212538516 U CN212538516 U CN 212538516U CN 202020918260 U CN202020918260 U CN 202020918260U CN 212538516 U CN212538516 U CN 212538516U
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Abstract
The utility model discloses an electrophoresis drying chamber of metal automobile parts, which comprises an electrophoresis tank, wherein the upper left corner of the inner wall of the electrophoresis tank is provided with an anti-dripping device and an oil removing device; the anti-dripping device comprises a rotating brush, the top of the rotating brush is close to the top of the rotating brush, the rotating brush is connected with a motor, and the middle of the rotating brush is meshed and connected by a bevel gear device; the brush contains the brush-holder stud, brush-holder stud up end rigid coupling thin slice, and inside parallel run through the square groove of horizontal direction, it has the through-hole to run through in the middle of the square groove, the inside trachea that is equipped with of through-hole, perpendicular square groove and trachea run through there is the aspirating hole, the brush-holder stud is kept away from motor upper wall rigid coupling slider, inside the slider sliding chute, brush-holder stud rigid coupling brush-holder stud upper wall rigid coupling bracing piece, bracing piece upper wall rigid coupling mirror surface piece, bracing piece rigid coupling waist piece I, I upper end activity switching brush yoke upper portion of waist piece, II upper end right sides of I lower extreme activity switching waist piece of waist piece, II lower extreme left sides of waist piece are pegged graft by the round pin piece back activity switching in III left sides upper end of waist piece, III right side lower extreme rigid coupling pivots.
Description
Technical Field
The utility model relates to an electrophoresis drying technology field specifically is a metal automobile parts's electrophoresis stoving cavity.
Background
The electrophoresis drying chamber has no great difference with the common drying chamber for coating in structure, can generally directly enter high-temperature drying only because the moisture content in a wet coating film is small, and does not need to be pre-dried at low temperature and then enter high-temperature curing in other water-based coatings.
However, if the coating film of the cathodic electrophoretic paint generates oil smoke (the weight of the coating film is about 10% in the case of a large amount of decomposed products) during the drying process, the oil smoke may condense above the drying chamber and drip on the coated object, which may cause the defect of paint film.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a metal automobile parts's electrophoresis stoving cavity to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: an electrophoresis drying chamber of a metal automobile part comprises an electrophoresis box, wherein an anti-dripping device and a deoiling device are arranged at the upper left corner of the inner wall of the electrophoresis box; the anti-dripping device comprises two rotating brushes, a bevel gear device and a motor, the tops of the two rotating brushes are close to the top and are vertically placed at the upper left corner of the inner wall of the electrophoresis tank, one of the rotating brushes is connected with the motor, and the middles of the two rotating brushes are meshed and connected by the bevel gear device; the rotating brush comprises a brush rod, a sliding block, square grooves, an air exhaust hole, a supporting rod, a mirror block, a waist block I, a brush holder, a waist block II, a waist block III, a pin block and an air pipe, wherein the upper end surface of the brush rod is fixedly connected with a sheet, the interior of the sheet parallelly penetrates through the two square grooves in the horizontal direction, a through hole penetrates through the middle of the two square grooves, the air pipe is arranged in the through hole, the air pipe is perpendicular to the square grooves and penetrates through the air exhaust hole, the upper wall of the brush rod, which is far away from a motor, is fixedly connected with the sliding block, the sliding block slides in a sliding groove, the other end of the brush rod is fixedly connected with one end of the supporting rod fixedly connected with the upper wall of the brush rod, the upper wall of the supporting rod is fixedly connected with the mirror block I, the upper end of the waist block I is movably connected with the inner end of the upper end of the brush holder, the lower end, the lower end of the right side of the waist block III is fixedly connected with a rotating shaft, and the rotating shaft penetrates through the brush holder and is movably connected inside the lower end of the brush holder in a rotating mode.
Preferably, the brush-holder stud is the cuboid structure, aspirating hole perpendicular to square groove, and evenly distributed is in square groove medial surface bottom, the mirror surface piece is glossy mirror surface structure, length width and bracing piece) unanimous.
Preferably, the slider is of a cylindrical structure, a T-shaped fixture block is arranged at the upper end of the slider, the T-shaped fixture block is arranged at the opening end of the sliding groove which is of an arc-shaped groove structure, the slider is connected inside the sliding groove in a sliding mode, and the sliding contact of the sheet on the side wall of the electrophoresis tank is kept.
Preferably, waist piece I is the cuboid structure, and the left end connects the semicircle piece admittedly, and the upper and lower end connects the protruding piece of T shape admittedly, the brush yoke is C shape supporting structure, and the inside T shape recess of being connected with I rotations of waist piece that is equipped with of upper end support, and the upper end support runs through have with pivot complex round hole, and two junctions all are equipped with the bearing.
Preferably, the waist block II and the waist block III are both waist-shaped structures, and are connected in a sliding contact manner after being inserted by the pin blocks.
Preferably, the deoiling device includes inlet port, negative pressure pump, filter screen and oil groove, the inlet port has a plurality of to run through on the electrophoresis tank upper left side lateral wall, inside cavity on the electrophoresis tank upper left side lateral wall, and the filter screen is placed to inside slant, the oil feed port end rigid coupling negative pressure pump is kept away from to the filter screen, and it has the oil groove to run through below the filter screen other end.
Preferably, one end of the air pipe is fixedly connected to the inner wall of the brush rod, the other end of the air pipe penetrates through the side wall of the upper left side of the electrophoresis tank, and the air pipe is fixedly connected to the filter screen.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses carry out normal stoving at the during operation, open the negative pressure pump, make the air current in the electrophoresis tank flow, and inhale gas, after the oil smoke that the work piece produced entered the inlet port along with gas, the filter screen blocked oil droplet, oil droplet condenses the back and flows into the oil groove along the filter screen, carries out preliminary deoiling cigarette effect, but still part probably condenses above the drying chamber, opens the motor, makes the bevel gear device drive two upper and lower commentaries on classics brush and carry out reciprocating motion;
the specific movement mode is that the motor rotates to drive the rotating shaft to rotate, so that the waist block III fixedly connected to the rotating shaft rotates, the left end of the waist block III is connected to the waist block II in a switching mode, so that the waist block II is driven to rotate, the lower end of the waist block II is connected to the lower end of the waist block III in a switching mode, so that the waist block III rotates, and the rotation on the waist block III is connected to the lower end of the brush holder, so that the rotation is limited, the waist block II and the waist block III slide to the leftmost side when rotating to the vertical direction, and the waist block II and the waist block III slide to the leftmost side and reversely rotate to the middle when rotating to the horizontal direction, so that the back-and-forth movement is realized;
and because the thin slice returns along with the waist block III, and the sliding block at the other end of the brush rod is matched with the sliding groove, the thin slice is repeatedly scraped on the inner wall and the upper wall of the electrophoresis tank, and the scraped oil fume condensate enters the square groove and is pumped to be dry through the air pipe led into the negative pressure pump.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the anti-dripping device of the present invention;
FIG. 3 is an enlarged schematic view of the anti-dripping device of the present invention
FIG. 4 is a schematic view of a rotary brush according to the present invention;
FIG. 5 is an enlarged left side view of the rotary brush of the present invention
FIG. 6 is a left side sectional view of the rotary brush of the present invention;
fig. 7 is a right side sectional view of the transfer brush of the present invention;
FIG. 8 is a cross-sectional view of the chute and the slide block of the present invention;
in the figure: electrophoresis tank 1, anti-dripping device 2, deoiling device 3, rotary brush 21, bevel gear 22, motor 23, brush rod 210, slide block 211, square groove 212, suction hole 213, support rod 214, mirror block 215, waist block I216, brush holder 217, waist block II 218, waist block III 219, pin block 220, sheet 221, rotating shaft 222, 223 air pipe 2110 slide groove 31, oil inlet hole 32, negative pressure pump 33, filter screen 34.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-8, the present invention provides a technical solution: the utility model provides a metal automobile parts's electrophoresis stoving cavity, includes electrophoresis case 1, its characterized in that: an anti-dripping device 2 and an oil removing device 3 are arranged at the upper left corner of the inner wall of the electrophoresis tank 1; the anti-dripping device 2 comprises two rotating brushes 21, a bevel gear device 22 and a motor 23, the tops of the two rotating brushes 21 are close to the top and are mutually and vertically arranged at the upper left corner of the inner wall of the electrophoresis tank 1, one rotating brush 21 is connected with the motor 23, and the middle parts of the two rotating brushes 21 are meshed and connected by the bevel gear device 22; the rotating brush 21 comprises a brush rod 210, a sliding block 211, square grooves 212, an air suction hole 213, a support rod 214, a mirror surface block 215, a waist block I216, a brush holder 217, a waist block II 218, a waist block III 219, a pin block 220 and an air pipe 223, wherein the upper end surface of the brush rod 210 is fixedly connected with a sheet 221, the interior of the sheet penetrates through the two square grooves 212 in the horizontal direction in parallel, a through hole penetrates through the middle of the two square grooves 212, the air pipe 223 is arranged in the through hole, the air suction hole 213 penetrates through the vertical square groove 212 and the air pipe 223, the upper wall of the end, far away from the motor 23, of the brush rod 210 is fixedly connected with the sliding block 211, the sliding chute 2110 of the sliding block 211 is formed, the other end of the brush rod 210 is fixedly connected with one end of the support rod 214, the upper wall of the support rod 214 is fixedly connected with the mirror surface block 215, the other end of the support rod 214 is fixedly connected with the waist block 216I, the upper end of the waist block I216 is movably connected with the upper, the lower end of the right side of the waist block III 219 is fixedly connected with a rotating shaft 222, and the rotating shaft 222 penetrates through the brush holder 217 and is movably and rotatably connected inside the lower end of the brush holder 217.
The brush rod 210 is a cuboid structure, the air exhaust holes 213 are perpendicular to the square groove 212 and are evenly distributed at the bottom of the inner side surface of the square groove 212, the mirror surface block 215 is a smooth mirror surface structure, and the length and the width of the mirror surface block are consistent with those of the support rod 214.
Waist piece I216 is the cuboid structure, and the left end rigid coupling semicircle piece, and the upper and lower end rigid coupling T shape protruding piece, brush yoke 217 be C shape supporting structure, the inside T shape recess of being connected with I216 rotation of waist piece that is equipped with of upper end support, the upper end support run through have with pivot 222 complex round hole, and two junctions all are equipped with the bearing.
The waist block II 218 and the waist block III 219 are both waist-shaped structures, and are connected in a sliding contact manner after being plugged by the pin block 220.
The deoiling device includes inlet port 31, negative pressure pump 32, filter screen 33 and oil groove 34, and on inlet port 31 had a plurality of to run through 1 upper left side lateral wall of electrophoresis tank, inside cavity on the 1 upper left side lateral wall of electrophoresis tank, and inside slant place filter screen 33, and filter screen 33 keeps away from inlet port 31 end rigid coupling negative pressure pump 32, and it has oil groove 34 to run through below the other end of filter screen 33, carries out preliminary oily cigarette effect of deoiling.
One end of the air pipe 223 is fixedly connected to the inner wall of the brush rod 210, and the other end thereof penetrates through the upper left side wall of the electrophoresis chamber 1 and is fixedly connected to the filter screen 33.
The working principle is as follows: the utility model discloses normally dry when the during operation, open negative pressure pump 32, make the air current in electrophoresis tank 1 flow, and inhale gas, after the oil smoke that the work piece produced along with gas entering inlet port 31, filter screen 33 blocks the oil droplet, the oil droplet condenses the back and flows into oil groove 34 along filter screen 33, carries out preliminary deoiling cigarette effect, but also partial probably condenses above the drying chamber, opens motor 23, makes bevel gear device 22 drive two from top to bottom rotary brushes 21 and carry out reciprocating motion;
the specific movement mode is as follows, the motor 23 rotates to drive the rotating shaft 222 to rotate, so that the waist block III 219 fixedly connected to the rotating shaft 222 rotates, the left end of the waist block III 219 is connected to the waist block II 218 in a switching mode, so that the waist block II 218 is driven to rotate, the lower end of the waist block II 218 is connected to the lower end of the waist block III 216, so that the waist block III 216 rotates, and the rotation of the waist block III 216 is connected to the lower end of the brush holder 217, so that 360-degree rotation is limited, the waist block II 218 and the waist block III 219 slide to the leftmost side on the waist block III 216 when rotating to the vertical direction, and the waist block II 218 and the waist block III 219 slide to the leftmost side and reversely rotate to the middle on the waist block III 216 when rotating to the horizontal direction, so that the reciprocating motion is realized;
and because the thin sheet 221 reciprocates along with the waist block III 216, and the slide block 211 at the other end of the brush rod 210 is matched with the slide groove 2110, the thin sheet 221 repeatedly scrapes the inner wall and the upper wall of the electrophoresis tank 1, and the scraped oil smoke condensate enters the square groove 212 and is pumped to be dry through the air pipe 223 led into the negative pressure pump 32.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The utility model provides a metal automobile parts's electrophoresis stoving cavity, includes electrophoresis case (1), its characterized in that: an anti-dripping device (2) and an oil removing device (3) are arranged at the upper left corner of the inner wall of the electrophoresis tank (1);
the anti-dripping device (2) comprises two rotating brushes (21), a bevel gear device (22) and a motor (23), the tops of the two rotating brushes (21) are close to the top and are vertically placed at the upper left corner of the inner wall of the electrophoresis tank (1), one rotating brush (21) is connected with the motor (23), and the two rotating brushes (21) are meshed and connected through the bevel gear device (22);
the rotary brush (21) comprises a brush rod (210), a sliding block (211), square grooves (212), an air suction hole (213), a support rod (214), a mirror surface block (215), a waist block I (216), a brush holder (217), a waist block II (218), a waist block III (219), a pin block (220) and an air pipe (223), wherein the upper end face of the brush rod (210) is fixedly connected with a sheet (221), the interior of the rotary brush rod penetrates through the two square grooves (212) in the horizontal direction in parallel, a through hole penetrates through the middle of the two square grooves (212), the air pipe (223) is arranged in the through hole, the air suction hole (213) penetrates through the vertical square groove (212) and the air pipe (223), the upper wall of the end, far away from the motor (23), of the brush rod (210) is fixedly connected with the sliding block (211), the sliding chute (2110) of the sliding block (211) is fixedly connected with the other end of the upper wall of the brush rod (210), one end of the support rod (214) is fixedly connected with, bracing piece (214) other end rigid coupling waist piece I (216), waist piece I (216) upper end activity switching brush yoke (217) upper portion is inner, waist piece I (216) lower extreme activity switching waist piece II (218) upper end right side, waist piece II (218) lower extreme left side is pegged graft by round pin piece (220) back activity switching in waist piece III (219) left side upper end, waist piece III (219) right side lower extreme rigid coupling pivot (222), pivot (222) run through brush yoke (217) and the activity is changeed and is knotted inside brush yoke (217) lower extreme.
2. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: brush-holder stud (210) are the cuboid structure, aspirating hole (213) perpendicular to square groove (212), and evenly distributed is in square groove (212) medial surface bottom, mirror surface piece (215) are glossy mirror surface structure, and length and width are unanimous with bracing piece (214).
3. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: slider (211) are the cylinder structure, and the upper end is equipped with T shape fixture block, spout (2110) are equipped with T shape fixture block for arc groove structure open end, slider (211) sliding connection is inside spout (2110), and keeps thin slice (221) sliding contact on electrophoresis tank (1) lateral wall.
4. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: waist piece I (216) are the cuboid structure, and the left end connects the semicircle piece admittedly, and the upper and lower end connects the protruding piece of T shape admittedly, brush yoke (217) are C shape supporting structure, and upper end support inside is equipped with rotates the T shape recess of being connected with waist piece I (216), and the upper end support runs through have with pivot (222) complex round hole, and two junctions all are equipped with the bearing.
5. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: waist piece II (218) and waist piece III (219) are waist shape structure, rely on the sliding contact connection after round pin piece (220) grafting in the middle.
6. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: deoiling device includes inlet port (31), negative pressure pump (32), filter screen (33) and oil groove (34), inlet port (31) have a plurality of to run through on electrophoresis case (1) upper left side lateral wall, inside cavity on electrophoresis case (1) upper left side lateral wall, and inside slant place filter screen (33), inlet port (31) end rigid coupling negative pressure pump (32) is kept away from in filter screen (33), and filter screen (33) other end below runs through there is oil groove (34).
7. The metal automotive part electrophoretic drying chamber as claimed in claim 1, wherein: one end rigid coupling of trachea (223) is in brush-holder stud (210) inner wall, and the other end runs through electrophoresis tank (1) upper left side lateral wall, and the rigid coupling is on filter screen (33).
Priority Applications (1)
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CN202020918260.8U CN212538516U (en) | 2020-05-27 | 2020-05-27 | Electrophoresis drying chamber for metal automobile parts |
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CN202020918260.8U CN212538516U (en) | 2020-05-27 | 2020-05-27 | Electrophoresis drying chamber for metal automobile parts |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113388878A (en) * | 2021-06-23 | 2021-09-14 | 舒城广源表面处理有限公司 | Barrel plating device for barrel plating process of neodymium iron boron magnet |
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2020
- 2020-05-27 CN CN202020918260.8U patent/CN212538516U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113388878A (en) * | 2021-06-23 | 2021-09-14 | 舒城广源表面处理有限公司 | Barrel plating device for barrel plating process of neodymium iron boron magnet |
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