Vertical aluminum profile tool hanger for oxidation electrophoresis

Through the rack meshing structure of the rotating shaft, the driven shaft and the inner support plate, in conjunction with the servo motor and the adjusting screw, the problem of insufficient adaptability of existing aluminum profile tooling hangers is solved, and the position stability of the aluminum profile during the oxidation process and the improvement of the oxidation effect are achieved.

CN223445661UActive Publication Date: 2025-10-17FOSHAN HONGBANG MASCH CO LTD
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Patent Information

Application Number
CN202422754912.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-10-17
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Existing aluminum profile tooling hangers are difficult to adapt to aluminum profiles of different lengths and quantities, which leads to easy collisions between adjacent profiles during the oxidation process, affecting the oxidation effect.

Method used

The rack meshing structure of the rotating shaft, driven shaft and inner support plate is adopted. The cooperation of the servo motor and the adjusting screw is used to realize the synchronous movement of the outer support plate and the inner support plate, and the position is fixed by the locking bolt to ensure the stable position of the aluminum profile during the oxidation process.

Benefits of technology

It effectively prevents the aluminum profile from shifting during the oxidation process, ensures the stability and consistency of the oxidation effect, and adapts to the needs of aluminum profiles of different lengths and quantities.

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Abstract

The utility model discloses a vertical aluminum profile tool hanger for oxidation electrophoresis, which comprises an upper beam, a lower beam, two servo motors and two adjusting screw rods, the two servo motors are arranged at two ends in the upper beam, and the two adjusting screw rods are rotatably connected with the bottom surface of the upper beam. The output ends of the two servo motors are correspondingly connected with the two adjusting screw rods; according to the vertical aluminum profile tool hanger for oxidation electrophoresis, the rotating shaft is engaged with the driven shaft and the rack of the inner supporting plate, the driven shaft is engaged with the rack of the outer supporting plate, and the rotating shaft rotates to drive the outer supporting plate and the inner supporting plate to synchronously move towards each other or away from each other, so that the outer supporting plate and the inner supporting plate are adjusted to extend out for use; in addition, the top face of the upper beam is in threaded connection with a locking bolt, the locking bolt can be rotated to move towards the rotating shaft and fix the rotating shaft, then the positions of the outer supporting plate and the inner supporting plate are fixed, and it is avoided that after the outer supporting plate and the inner supporting plate are aligned, the positions deviate, and normal oxidation work is affected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electrophoretic oxidation equipment technical field especially relates to a vertical aluminum profile frock hanger for oxidation electrophoresis. BACKGROUND

[0002] Aluminum alloy profile is widely used in industry non-ferrous structural material, in the field of building decoration aluminum profile commonly used oxidation electrophoresis mode alignment carries out surface treatment, oxidation electrophoresis treatment among them is to place the aluminum material after forming in oxidation tank and power on, aluminum profile is oxidized as anode, and a dense oxide surface layer is formed on the surface, this protective layer has the characteristics of acid and alkali resistance, anti-pollution and durability, when putting aluminum profile into oxidation tank, the groove will be placed on the hanger, then through the hanger is hung on the translation device and immersed in the oxidation tank, the existing aluminum profile frock hanger is difficult to adapt to different length of aluminum profile, and the number of oxidized aluminum profile is limited, only one end of the aluminum profile is fixed on the hanger, and the adjacent aluminum profiles are easy to collide and affect the oxidation effect in the oxidation process.

[0003] According to the authorized announcement number CN221371324U discloses a kind of aluminum profile vertical oxidation electrophoresis frock hanger, including moving crossbeam, two moving crossbeams, the upper portion of one side of two moving crossbeams and the lower portion of the other side are all set with sliding slot, two sliding slots of one side of two moving crossbeams are all slidably connected with sliding plate one, two sliding slots of the other side of two moving crossbeams are all slidably connected with sliding plate two, and aluminum profile body is arranged between two sliding slots, between two sliding plate one and between two sliding plate two, four electric cylinders are arranged between two moving crossbeams, flexible adjustment to adapt to different length and different number of aluminum profile body use, although sliding plate one and sliding plate two can be moved along sliding slot adjustment, but there is no structure for fixing sliding plate one and sliding plate two in sliding slot, so that sliding plate one and sliding plate two are easy to move along sliding slot when moving crossbeam moves, and the position between two sliding plate one and the position between two sliding plate two are offset, two sliding plate one and two sliding plate two are not in line, in turn lead to the position of aluminum profile hung in sliding plate one and sliding plate two is offset and affect oxidation work normal. UTILITY MODEL CONTENTS

[0004] In order to solve the above technical problems, the utility model provides a kind of vertical aluminum profile tooling hanger for oxidation electrophoresis, and the rack of inner support plate is engaged with the rotation shaft and driven shaft respectively, and the rack of outer support plate is engaged with driven shaft, and the rotation of rotation shaft can drive outer support plate and inner support plate to move synchronously towards or away from each other, so as to adjust the extension of outer support plate and inner support plate for use, additionally, locking bolt is threadedly connected to the top surface of upper beam, and rotating locking bolt can move locking bolt to rotation shaft and fix rotation shaft, and then fix the position of outer support plate and inner support plate, so as to prevent the position of outer support plate and inner support plate from deviating after alignment and affecting the normal operation of oxidation work.

[0005] A kind of vertical aluminum profile tooling hanger for oxidation electrophoresis, including upper beam, lower beam, servo motor and adjusting screw, two the servo motor is arranged in the both ends position in the upper beam, two the adjusting screw is rotatably connected with the bottom surface of the upper beam, and the output end of two the servo motor is connected with two the adjusting screw, two the adjusting screw is threadedly connected with threaded seat, and two the threaded seat is connected with the top surface of the lower beam, the front side of the upper beam and lower beam is provided with inner sliding groove, the rear side of the upper beam and lower beam is provided with outer sliding groove, and the upper beam and lower beam are rotatably connected with the rotation shaft passing through the outer sliding groove and inner sliding groove, the driven shaft is rotatably connected in the outer sliding groove, and the driven shaft is engaged with the rotation shaft by gear set, the outer support plate is slidably connected in the outer sliding groove, the inner support plate is slidably connected in the inner sliding groove, and the outer support plate and inner support plate are engaged with the rotation shaft by rack respectively, the top surface of the upper beam and the bottom surface of the lower beam are threadedly connected with locking bolt for fixing rotation shaft.

[0006] Preferably, the top surface of the upper beam is provided with a plurality of hanging rings, and the side of the upper beam and the lower beam facing each other is provided with a hanging plate.

[0007] Preferably, the both ends position in the upper beam is provided with a receiving cavity, and the servo motor is fixed in the receiving cavity.

[0008] Preferably, the left and right side positions of the bottom surface of the upper beam are provided with support barrels, the adjusting screws are rotatably connected in the support barrels, and the bottom surface of the support barrel is slidably connected with a plurality of support rods, one end of the plurality of support rods is connected with the threaded seat, and the other end of the plurality of support rods is connected with the top surface of the lower beam.

[0009] Preferably, the gear set comprises a meshed outer driving gear and a driven gear, the outer driving gear is arranged on the part of the rotating shaft located in the outer sliding groove, the driven gear is arranged on the driven shaft, and the outer driving gear is meshed with the rack of the outer support plate, the part of the rotating shaft located in the inner sliding groove is provided with an inner driving gear, and the inner driving gear is meshed with the rack of the inner support plate.

[0010] Preferably, the two rotating shafts correspond to the top surface of the upper beam and the bottom surface of the lower beam, and the parts of the two rotating shafts extending out are provided with handles, the top surface of the upper beam and the bottom surface of the lower beam are each provided with two supports, the two locking bolts are correspondingly threadedly connected with the two supports, and the two locking bolts are oppositely arranged.

[0011] The utility model discloses a vertical aluminum profile tool hanger for oxidation electrophoresis, which is characterized by the cooperation of an upper beam, a lower beam, a servo motor and an adjusting screw, so that the rotating shaft is meshed with the rack of the driven shaft and the inner support plate, the driven shaft is meshed with the rack of the outer support plate, and the rotation of the rotating shaft can drive the outer support plate and the inner support plate to move synchronously towards or away from each other, so as to adjust the extension of the outer support plate and the inner support plate. In addition, the upper beam is threadedly connected with a locking bolt, and the rotation of the locking bolt can move the locking bolt to the rotating shaft and fix the rotating shaft, so as to fix the positions of the outer support plate and the inner support plate, and prevent the positions of the outer support plate and the inner support plate from deviating after alignment, which affects the normal operation of the oxidation work. BRIEF DESCRIPTION OF DRAWINGS

[0012] ATTACHED Figure 1 It is a structural schematic diagram of the utility model;

[0013] ATTACHED Figure 2 It is a top view of the utility model;

[0014] ATTACHED Figure 3 It is a Figure 1 A-A sectional view;

[0015] ATTACHED Figure 4 It is a Figure 3 B, a local enlarged view.

[0016] In the figure: 1 upper beam, 2 lower beam, 3 servo motor, 4 adjusting screw, 5 threaded seat, 6 inner sliding groove, 7 outer sliding groove, 8 rotating shaft, 9 driven shaft, 10 outer support plate, 11 inner support plate, 12 rack, 13 locking bolt, 14 hanging plate, 15 accommodating cavity, 16 support cylinder, 17 support rod, 18 outer driving gear, 19 driven gear, 20 inner driving gear, 21 handle. DETAILED DESCRIPTION

[0017] The utility model will be described further in combination with the drawings and specific embodiments, so as to understand the technical thought of the utility model claimed to be protected more clearly.

[0018] As Figure 1 The utility model discloses a vertical aluminum profile frock hanger for oxidation electrophoresis, including upper beam 1, lower beam 2, servo motor 3 and adjusting screw 4, two servo motor 3 sets up in two end positions in upper beam 1, two adjusting screw 4 is rotatively connected with the bottom surface of upper beam 1, and the output of two servo motor 3 corresponds with two adjusting screw 4 connection, two adjusting screw 4 screw thread connection has screw seat 5, and two screw seat 5 is connected with the top surface of lower beam 2, the front side of both upper beam 1 and lower beam 2 is provided with inner slide groove 6, the rear side of both upper beam 1 and lower beam 2 is provided with outer slide groove 7, and upper beam 1 and lower beam 2 are rotatively connected with the rotation axis 8 passing through outer slide groove 7 and inner slide groove 6, outer slide groove 7 rotatively connects with driven shaft 9, and driven shaft 9 is engaged with rotation axis 8 through gear set, outer support plate 10 is slidably connected in outer slide groove 7, inner support plate 11 is slidably connected in inner slide groove 6, and outer support plate 10 and inner support plate 11 are engaged with rotation axis 8 through rack 12 respectively, the top surface of upper beam 1 and the bottom surface of lower beam 2 are all screw thread connection has the locking bolt 13 for fixing rotation axis 8.

[0019] The utility model discloses a vertical aluminum profile frock hanger for oxidation electrophoresis, including upper beam 1, lower beam 2, servo motor 3 and adjusting screw 4, two servo motor 3 sets up in two end positions in upper beam 1, two adjusting screw 4 is rotatively connected with the bottom surface of upper beam 1, and the output of two servo motor 3 corresponds with two adjusting screw 4 connection, two adjusting screw 4 screw thread connection has screw seat 5, and two screw seat 5 is connected with the top surface of lower beam 2, the front side of both upper beam 1 and lower beam 2 is provided with inner slide groove 6, the rear side of both upper beam 1 and lower beam 2 is provided with outer slide groove 7, and upper beam 1 and lower beam 2 are rotatively connected with the rotation axis 8 passing through outer slide groove 7 and inner slide groove 6, outer slide groove 7 rotatively connects with driven shaft 9, and driven shaft 9 is engaged with rotation axis 8 through gear set, outer support plate 10 is slidably connected in outer slide groove 7, inner support plate 11 is slidably connected in inner slide groove 6, and outer support plate 10 and inner support plate 11 are engaged with rotation axis 8 through rack 12 respectively, the top surface of upper beam 1 and the bottom surface of lower beam 2 are all screw thread connection has the locking bolt 13 for fixing rotation axis 8. Figure 1 The utility model discloses a vertical aluminum profile frock hanger for oxidation electrophoresis, including upper beam 1, lower beam 2, servo motor 3 and adjusting screw 4, two servo motor 3 sets up in two end positions in upper beam 1, two adjusting screw 4 is rotatively connected with the bottom surface of upper beam 1, and the output of two servo motor 3 corresponds with two adjusting screw 4 connection, two adjusting screw 4 screw thread connection has screw seat 5, and two screw seat 5 is connected with the top surface of lower beam 2, the front side of both upper beam 1 and lower beam 2 is provided with inner slide groove 6, the rear side of both upper beam 1 and lower beam 2 is provided with outer slide groove 7, and upper beam 1 and lower beam 2 are rotatively connected with the rotation axis 8 passing through outer slide groove 7 and inner slide groove 6, outer slide groove 7 rotatively connects with driven shaft 9, and driven shaft 9 is engaged with rotation axis 8 through gear set, outer support plate 10 is slidably connected in outer slide groove 7, inner support plate 11 is slidably connected in inner slide groove 6, and outer support plate 10 and inner support plate 11 are engaged with rotation axis 8 through rack 12 respectively, the top surface of upper beam 1 and the bottom surface of lower beam 2 are all screw thread connection has the locking bolt 13 for fixing rotation axis 8.

[0020] Specifically, the top surface of the upper beam 1 is provided with a plurality of hanging rings, the side of the upper beam 1 and the lower beam 2 is provided with a hanging plate 14, the outer support plate 10, the inner support plate 11 and the hanging plate 14 are all provided with a plurality of hanging holes, wherein the two end positions in the upper beam 1 are provided with a receiving cavity 15, the servo motor 3 is fixed in the receiving cavity 15, wherein the left and right sides of the bottom surface of the upper beam 1 are provided with a support cylinder 16, the adjusting screw 4 is rotatably connected in the support cylinder 16, and the bottom surface of the support cylinder 16 is slidably connected with a plurality of supporting rods 17, one end of the plurality of supporting rods 17 is connected with the threaded seat 5, and the other end of the plurality of supporting rods is connected with the top surface of the lower beam 2, as shown in Figures 1 to 4 The aluminum profile can be installed by being hung on the hanging holes of the outer support plate 10, the inner support plate 11 and the hanging plate 14 through the hook, the servo motor 3 is installed in the receiving cavity 15 of the upper beam 1, and the adjusting screw 4 is arranged in the support cylinder 16, which can avoid the servo motor 3 and the adjusting screw 4 from being eroded by contacting with the liquid of the oxidation tank, and can improve the service life of the servo motor 3 and the adjusting screw 4, the servo motor 3 drives the adjusting screw 4 to rotate, the adjusting screw 4 drives the threaded seat 5 to move, the threaded seat 5 drives the lower beam 2 to move through the supporting rods 17, and then the distance between the upper beam 1 and the lower beam 2 is adjusted to adapt to the use of aluminum profiles of different length specifications.

[0021] Further, the gear set includes an outer driving gear 18 and a driven gear 19 engaged with each other, the outer driving gear 18 is arranged on the part of the rotating shaft 8 located in the outer sliding groove 7, the driven gear 19 is arranged on the driven shaft 9, and the outer driving gear 18 is engaged with the rack 12 of the outer support plate 10, the part of the rotating shaft 8 located in the inner sliding groove 6 is provided with an inner driving gear 20, and the inner driving gear 20 is engaged with the rack 12 of the inner support plate 11, as shown in Figure 1 As shown in the adjusting screw 4, the rotating shaft 8 drives the outer driving gear 18 and the inner driving gear 20 to rotate, the inner driving gear 20 drives the rack 12 of the inner support plate 11 to move, the outer driving gear 18 drives the driven gear 19 to rotate, and it should be noted that the diameter of the driven gear 19 is greater than that of the outer driving gear 18, so that the driven gear 19 is engaged with the rack 12 of the outer support plate 10, so that when the outer driving gear 18 drives the driven gear 19 and the driven shaft 9 to rotate, the rotation direction of the driven gear 19 is opposite to that of the outer driving gear 18, the driven gear 19 drives the rack 12 of the outer support plate 10 to move, and the moving direction of the outer support plate 10 is opposite to that of the inner support plate 11, the rotating shaft 8 can control the synchronous movement of the outer support plate 10 and the inner support plate 11 towards or away from each other, which is convenient for control.

[0022] Further, two of the rotating shafts 8 correspond to the top surface of the upper beam 1 and the bottom surface of the lower beam 2, and the parts of the two rotating shafts 8 extending out are provided with handles 21, the top surface of the upper beam 1 and the bottom surface of the lower beam 2 are both provided with two supports, two of the locking bolts 13 correspondingly threadedly connect with the two supports, and the two locking bolts 13 are oppositely arranged, as shown in Figure 1 As shown in the adjusting screw rod 4, the bottom surface of the lower beam 2 can be provided with a protrusion, so that when the bottom surface of the lower beam 2 is placed, a gap from the ground is left, thereby avoiding crushing the handle 21 on the rotating shaft 8, the locking bolt 13 moves along the support and can abut against the handle 21, and the two locking bolts 13 abutting against the handle 21 can limit the rotation of the handle 21, so that after the outer support plate 10 and the inner support plate 11 are adjusted and aligned, the staff can fix the position of the handle 21 through the locking bolt 13, so as to avoid the position of the outer support plate 10 and the inner support plate 11 from being deviated.

[0023] The above is only a specific embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, is also included in the patent protection range of the present application.

Claims

1. A vertical aluminum profile tooling hanger for oxidation electrophoresis, characterized by: The axle up and down groove at two ends embeds respectively in two guide rails up and down of being made up of the groove on the attachment piece, and the tooth on the attachment piece is meshed with tooth on upper sprocket wheel, the lower sprocket.

2. The vertical aluminum profile tooling hanger for oxidation electrophoresis according to claim 1, characterized in that: The top surface of the upper beam is provided with a plurality of hanging rings, a hanging plate is provided on the side of the upper beam and the lower beam facing each other, and a plurality of hanging holes are provided on the outer support plate, the inner support plate and the hanging plate.

3. The vertical aluminum profile tooling hanger for oxidation electrophoresis according to claim 2, characterized in that: Accommodation cavities are provided at both ends of the upper beam, and the servo motor is fixed in the accommodating cavities.

4. The vertical aluminum profile tooling hanger for oxidation electrophoresis according to claim 3, characterized in that: Support tubes are provided on the left and right sides of the bottom surface of the upper beam, the adjusting screw is rotatably connected in the support tube, and the bottom surface of the support tube is slidably connected to multiple support rods, one end of the multiple support rods is connected to the threaded seat, and the other end of the multiple support rods is connected to the top surface of the lower beam.

5. The vertical aluminum profile tooling hanger for oxidation electrophoresis according to claim 4, characterized in that: The gear set includes an outer driving gear and a driven gear that are meshed with each other. The outer driving gear is arranged on the portion of the rotating shaft located in the outer slide groove, and the driven gear is arranged on the driven shaft, and the outer driving gear is meshed with the rack of the outer support plate. The portion of the rotating shaft located in the inner slide groove is provided with an inner driving gear, and the inner driving gear is meshed with the rack of the inner support plate.

6. The vertical aluminum profile tooling hanger for oxidation electrophoresis according to claim 5, characterized in that: The two rotating shafts extend from the top surface of the upper beam and the bottom surface of the lower beam respectively, and the protruding parts of the two rotating shafts are provided with handles. The top surface of the upper beam and the bottom surface of the lower beam are each provided with two supports, and the two locking bolts are correspondingly threadedly connected to the two supports, and the two locking bolts are arranged facing each other.

Citation Information

Patent Citations

  • Aluminum profile vertical oxidation electrophoresis tool hanger

    CN221371324U