A vertical guide rail conveying device and method based on electroplating products

By using components such as inclined feed plates, vibrating plates, and arc-shaped blow plates in the vertical guide rail conveying device, the problem of water stains and impurities on the surface of electroplated products is solved, achieving a highly efficient secondary processing effect.

CN119197075BActive Publication Date: 2025-11-25XINGDONGHUI PRECISION MANUFACTURING (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202411483008.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-11-25
Estimated Expiration
2044-10-23

AI Technical Summary

Technical Problem

During use, existing vertical guide rail conveying devices for electroplated products suffer from water stains and impurities on the surface of the electroplated products, resulting in surface defects. Existing devices cannot achieve effective secondary processing.

Method used

The vertical guide rail conveying device includes components such as an inclined feed plate, a vibrating plate, a tilting shaft, and an arc-shaped blowing plate. It removes water stains and impurities through vibration, tilting, and heating drying.

Benefits of technology

It effectively removes water stains and impurities from the surface of electroplated products, improves the usability of the conveying device, prevents surface defects, and enables secondary processing of electroplated products.

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Abstract

The application discloses a vertical guide rail conveying device and method based on electroplated products, relates to the technical field of electroplated product conveying, and comprises a vertical guide rail body, conveying sliding blocks are equidistantly and slidably connected to the vertical guide rail body, conveying frames are fixedly connected to each conveying sliding block, an internal part of a side close to the conveying frame is provided with an inlet material processing assembly, and the inlet material processing assembly comprises an inclined inlet material plate. The vertical guide rail conveying device and method based on electroplated products have the advantages that when the electroplated products are placed in the conveying frames, the electroplated products are placed on the inclined inlet material plate, the vibration plate is extruded in the falling process, the oscillation spring rod behind the vibration plate is compressed, the oscillation spring rod drives the vibration plate to be in a high-frequency oscillation state, the water stains and impurities attached to the electroplated products are preliminarily separated through the oscillation mode, and the effect that the existence of the water stains and impurities causes the surface of the electroplated products to have defects is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electroplating product conveying, and particularly relates to a vertical guide rail conveying device and method based on electroplating products. BACKGROUND

[0002] Electroplating is a process of plating a thin layer of other metal or alloy on the surface of certain metal by electrolysis, and is a process of attaching a metal film to the surface of a metal or other material part by electrolysis, so as to prevent metal oxidation, improve wear resistance, electrical conductivity, light reflectivity, corrosion resistance and aesthetics, etc. Electroplated products need to be conveyed by a conveying device during production.

[0003] In the use process of the existing vertical guide rail conveying device based on electroplated products, if the electroplated products are not handled properly or completely after electroplating operation, a small amount of water stains and impurities will be attached to the surface of the electroplated products. The existence of water stains and impurities will cause defects on the surface of the electroplated products. In order to prevent defects on the surface of the electroplated products, the electroplated products need to be handled again during conveying. The existing conveying device has a single structure and only has the effect of conveying, and cannot realize the secondary handling of the electroplated products, so that the existing conveying device lacks use value. SUMMARY

[0004] The present application discloses a vertical guide rail conveying device based on electroplated products, which aims to solve the technical problem that the existing vertical guide rail conveying device based on electroplated products has a single structure and only has the effect of conveying, and cannot realize the secondary handling of the electroplated products in the use process.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0006] The utility model provides a vertical guide rail conveying device based on electroplating product, including vertical guide rail body, equal interval sliding connection has conveying slider on the vertical guide rail body, and every conveying slider all is fixedly connected with conveying frame, the inside of conveying frame is equipped with feeding treatment subassembly close to one side, and feeding treatment subassembly includes inclined feeding plate, and the one side inner wall of conveying frame is fixedly connected with inclined feeding plate, the outside wall of inclined feeding plate is opened the mounting groove equidistance, and every mounting groove is close to the inside wall of upper portion and is connected with vibration plate through hinge, the outside of every vibration plate is opened the perforation equidistance, the bottom of inclined feeding plate is fixedly connected with rear stop plate at the upper portion, and rear stop plate side to inclined feeding plate is fixedly connected with the oscillation spring rod equidistance, and the one end of oscillation spring rod is fixedly connected with the bottom of adjacent vibration plate.

[0007] Through being provided with feeding treatment subassembly, when placing electroplating product in conveying frame, it is placed on inclined feeding plate, and it extrudes vibration plate in the process of falling, and the oscillation spring rod behind vibration plate is compressed, then the oscillation spring rod drives vibration plate to be in high frequency oscillation state, and the water mark and impurity adhered on electroplating product are preliminarily separated through oscillation mode, avoid the existence of water mark and impurity to cause the flaw on the surface of electroplating product, improve the use value of the conveying device.

[0008] In a preferred scheme, the inside wall of one side below the conveying frame is fixedly connected with two hydraulic cylinders one, and the output end of two hydraulic cylinders one is fixedly connected with the same shaft support, and the both sides of the shaft support are connected with the same hollow push rod through bearing, the hollow push rod is located below the inclined feeding plate, and the outside wall of the hollow push rod is opened the collection hole equidistance.

[0009] In a preferred scheme, the bottom inner wall between the conveying frame and two hydraulic cylinders one is fixedly connected with the collecting box, and the side of the collecting box is fixedly connected with the pump support, the pump support is fixedly connected with the collecting pump, the collecting end of the collecting pump is fixedly connected with the collecting pipe, one end of the collecting pipe is inserted into the inside of the hollow push rod, and the conveying end of the collecting pump is connected with the inside of the collecting box through pipeline.

[0010] In a preferred scheme, the other side inner wall of the conveying frame is fixedly connected with the guide piece equidistance, and the both ends of the conveying frame are fixedly connected with the slide rail, the inside of two slide rails is slidably connected with the sliding block, the top of two sliding blocks is fixedly connected with the same integrated rod, the end portion of two slide rails is fixedly connected with the end block, and the side of every end block facing the sliding block is fixedly connected with the hydraulic cylinder two, the output end of the hydraulic cylinder two is fixedly connected with the side of adjacent sliding block, and the both sides inner wall of the conveying frame below the guide piece is connected with the guide roller through bearing equidistance.

[0011] In a preferred scheme, the bottom of the integrated rod is fixedly connected with a fixing frame between every two guide vanes, and the bottom end of each fixing frame is provided with a turnover auxiliary assembly, which comprises a rotating frame, the bottom end of the fixing frame is fixedly connected with a connecting plate, one side of the connecting plate is fixedly connected with a driving motor, the output shaft of the driving motor is fixedly connected with a driving shaft through a shaft coupling, one end of the driving shaft is fixedly connected with the rotating frame, and the outer side wall of the rotating frame is annularly provided with a matching block.

[0012] By setting the turnover auxiliary assembly, when the electroplated products move to the guide rollers and the blanking processing assembly blocks the blanking end of the conveying frame, the driving motor is started, the driving motor drives each turnover shaft to rotate, and the upward direction of the electroplated products is deflected in one direction through each turnover shaft, thereby cooperating with the blanking processing assembly to efficiently separate the water stains and impurities attached to each position of the electroplated products, and improving the electroplated product processing effect.

[0013] In a preferred scheme, one side of the matching block is fixedly connected with an electric telescopic rod, and the output end of the electric telescopic rod is fixedly connected with a buffer arc plate, a buffer sliding groove is opened on the arc surface of the buffer arc plate, a buffer sliding block is slidably connected in the buffer sliding groove, a sliding frame is fixedly connected to the outer side wall of the buffer sliding block, a turnover shaft is connected to the inner walls on both sides of the sliding frame through bearings, a positioning block is fixedly connected to the outer side wall of the buffer arc plate away from the turnover shaft, a buffer spring rod is fixedly connected between the positioning block and the buffer sliding block, and the two sides of the matching block are fixedly connected with fixing blocks, and one side of each of the two fixing blocks facing the buffer arc plate is fixedly connected with a telescopic connecting rod, and one end of the telescopic connecting rod is fixedly connected to the outer side wall of the buffer arc plate.

[0014] In a preferred scheme, the conveying frame is provided with a blanking processing assembly away from the feeding processing assembly, and the blanking processing assembly comprises an arc-shaped blowing plate, the two sides of the conveying frame are fixedly connected with limiting rails, the interiors of the two limiting rails are slidably connected with limiting sliding blocks, the arc-shaped blowing plate is fixedly connected to the opposite sides of the two limiting sliding blocks, and the outer side wall of the arc-shaped blowing plate facing the guide rollers is equidistantly provided with blowing holes.

[0015] By setting the blanking processing assembly, after the electroplated products move to the lower side of each turnover auxiliary assembly through the guidance of each guide vane, the air pump is started, the air pump guides the gas heated by the electric heating pipe into the arc-shaped blowing plate, and sprays the gas to each electroplated product through the blowing holes, thereby heating and drying the electroplated products, removing the water stains attached thereto, and simultaneously, the blowing of the gas removes the impurities attached to the outer surface, thereby realizing the secondary processing of the surface of the electroplated products.

[0016] In a preferred scheme, the conveying frame is fixedly connected with a motor frame on one side close to one of the limiting rails, and a forward-reverse motor is fixedly connected on one side of the motor frame, and a rotating shaft is fixedly connected with the output shaft of the forward-reverse motor through a shaft coupling, and a rotating connecting rod is fixedly connected with the outer side wall of the rotating shaft, and one end of the rotating connecting rod is fixedly connected to one side of one of the limiting sliders, and the outer side wall of the arc-shaped blowing plate is fixedly connected with a support plate, and the top of the support plate is fixedly connected with a heating box.

[0017] In a preferred scheme, the inside of the heating box is fixedly connected with a mounting frame, and limiting plates are fixedly connected on the mounting frame at equal distances, and each two limiting plates are distributed in a spreader shape, and electric heating pipes are fixedly connected on the opposite sides of each two limiting plates at equal distances, and a pump ring frame is fixedly connected on the top of the heating box, and a gas pump is fixedly connected in the inside of the pump ring frame, and a gas delivery pipe is connected with the gas delivery end of the gas pump through a pipeline, and directional gas delivery holes are formed on the outer side wall between each two limiting plates facing the gas delivery pipe, and a gas guide hole is formed on one side of the heating plate close to the arc-shaped blowing plate, and a converging pipe is fixedly connected in the inside of the gas guide hole, and a communication pipe is fixedly connected on the top of the support plate between the heating plate and the arc-shaped blowing plate, and one end of the converging pipe is inserted into the inside of the communication pipe, and shunt holes are formed on the outer side wall of the arc-shaped blowing plate facing the communication pipe at equal distances, and a branch pipe is fixedly connected in the inside of each shunt hole, and one end of the branch pipe is inserted into the inside of the arc-shaped blowing plate.

[0018] A vertical guide rail conveying method based on electroplated products, using a vertical guide rail conveying device based on electroplated products as described above, comprising the following steps:

[0019] Step one: when conveying the electroplated products, place them on the inclined feeding plate, and press the vibration plate during falling, the vibration spring rod behind the vibration plate is compressed, then the vibration spring rod drives the vibration plate to be in a high-frequency vibration state, and the water stains and impurities attached to the electroplated products are preliminarily separated by vibration, and during the sliding of the electroplated products from the inclined feeding plate to the lower part, start the collecting pump to collect the falling water stains and impurities through the collecting hole;

[0020] Step two: when the electroplated products move to each flow guide roller and the unloading treatment assembly blocks the unloading end of the conveying frame, start the driving motor to drive each turnover shaft to rotate, and turn the upper part of the electroplated products in one direction through each turnover shaft, start the gas pump to guide the gas heated by the electric heating pipe into the arc-shaped blowing plate, and spray it to each electroplated product through the blowing hole, so as to heat and dry the electroplated products, and remove the water stains attached thereto, at the same time, the blowing of the gas carries away the impurities attached to the outer surface, so as to realize the secondary treatment of the surface of the electroplated products;

[0021] Step 3: When the electroplating product is unloaded, start the rotating motor. The rotating motor will move the arc-shaped blow plate to the top of the limit rail. Adjust the hydraulic cylinder to drive the hollow push rod to push the electroplating product, quickly pushing it down from the conveyor frame, and end the conveying process.

[0022] As can be seen from the above, the vertical guide rail conveying device based on electroplated products provided by the present invention has the technical effect of placing the electroplated product on the inclined feeding plate when it is placed in the conveying frame. During the falling process, the product squeezes the vibrating plate, and the vibration spring rod behind the vibrating plate is compressed. The vibration spring rod drives the vibrating plate to be in a high-frequency vibration state. Through the vibration, the water stains and impurities attached to the electroplated product are initially removed, so as to avoid the presence of water stains and impurities causing defects on the surface of the electroplated product. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of a vertical guide rail conveying device based on electroplating products proposed in this invention.

[0024] Figure 2 This is an enlarged view of the conveyor frame structure of a vertical guide rail conveying device for electroplating products proposed in this invention.

[0025] Figure 3 for Figure 2 A top view of the overall structure.

[0026] Figure 4 This is a schematic diagram of the feeding processing component of a vertical guide rail conveying device for electroplating products proposed in this invention.

[0027] Figure 5 for Figure 4 A side view of the plane.

[0028] Figure 6 This is a schematic diagram of the combined structure of the guide plate and the flipping auxiliary component of a vertical guide rail conveying device based on electroplated products proposed in this invention.

[0029] Figure 7 This is a schematic diagram of the flipping auxiliary component structure of a vertical guide rail conveying device based on electroplated products proposed in this invention.

[0030] Figure 8 for Figure 7 Enlarged view of the structure of part A in the middle.

[0031] Figure 9 This is a schematic diagram of the unloading process component of a vertical guide rail conveying device for electroplating products proposed in this invention.

[0032] Figure 10 for Figure 9 Side view of the planar structure.

[0033] Figure 11 A heating box structure sectional view of a vertical guide rail conveying device based on electroplated products is proposed in the present application.

[0034] In the figure: 1, vertical guide rail body; 2, conveying slider; 3, conveying frame; 4, feeding treatment assembly; 401, inclined feeding plate; 402, vibrating plate; 403, perforation; 404, hollow push rod; 405, mounting groove; 406, collection hole; 407, shaft support; 408, hydraulic cylinder I; 409, collection box; 410, pump support; 411, collection pump; 412, collection pipe; 413, rear stop plate; 414, oscillating spring rod; 5, guide fin; 6, sliding block; 7, sliding rail; 8, flow guide roller; 9, blanking treatment assembly; 901, arc-shaped blowing plate; 902, limiting rail; 903, heating box; 904, motor support; 905, blowing hole; 906, limiting sliding block; 907, rotating connecting rod; 908, rotating shaft; 909, forward and reverse motor; 910, air pump; 911, air conveying pipe; 912, support plate; 913, merging pipe; 914, communicating pipe; 915, branch pipe; 916, directional air conveying hole; 917, electric heating pipe; 918, mounting support; 919, limiting plate; 920, pump ring support; 10, integrated rod; 11, hydraulic cylinder II; 12, end block; 13, fixing support; 14, overturning auxiliary assembly; 1401, rotating support; 1402, telescopic connecting rod; 1403, electric telescopic rod; 1404, overturning shaft rod; 1405, fixed block; 1406, drive shaft; 1407, fitting block; 1408, sliding support; 1409, drive motor; 1410, connecting plate; 1411, buffer arc plate; 1412, positioning block; 1413, buffer spring rod; 1414, buffer sliding groove; 1415, buffer sliding block. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all.

[0036] The vertical guide rail conveying device based on electroplated products disclosed in the present application is mainly applied to the existing vertical guide rail conveying device based on electroplated products in use. After electroplating operation, if the electroplated products are not handled properly or completely, a small amount of water stains and impurities will adhere to the surface of the electroplated products. The existence of water stains and impurities will cause defects on the surface of the electroplated products. In order to prevent defects on the surface of the electroplated products, the electroplated products need to be treated again during conveying. The existing conveying device has a single structure and only plays a conveying effect, and cannot realize the scene of secondary treatment of the electroplated products.

[0037] REFERENCE Figures 1-11The utility model relates to a vertical guide rail conveying device based on electroplating products, including vertical guide rail body 1, vertical guide rail body 1 equal interval sliding connection has conveying slider 2, and every conveying slider 2 all is fixedly connected with conveying frame 3, and the inside of conveying frame 3 near one side is equipped with feeding treatment subassembly 4, and feeding treatment subassembly 4 includes inclined feeding plate 401, and inclined feeding plate 401 is fixedly connected in the inner wall of one side of conveying frame 3, and the outside wall of inclined feeding plate 401 is equidistantly provided with installation groove 405, and every installation groove 405 near the inside wall of upper side all are connected with vibration plate 402 through hinge, and the outside of every vibration plate 402 is equidistantly provided with perforation 403, and the bottom of inclined feeding plate 401 at upper side is fixedly connected with rear stop plate 413, and rear stop plate 413 is fixedly connected with oscillation spring rod 414 of equidistant on the side facing inclined feeding plate 401, and one end of oscillation spring rod 414 is fixedly connected with the bottom of adjacent vibration plate 402.

[0038] In the specific application scene, when the electroplating product is placed in the conveying frame 3, it is placed on the inclined feeding plate 401, and it is extruded to the vibration plate 402 in the falling process, the oscillation spring rod 414 behind the vibration plate 402 is compressed, then the oscillation spring rod 414 drives the vibration plate 402 to be in high-frequency oscillation state, the water stains and impurities attached to the electroplating product are preliminarily separated through the oscillation mode, the existence of water stains and impurities is avoided to cause the surface of the electroplating product to appear flaws, and the use value of the conveying device is improved.

[0039] Specifically, in the process that the electroplating product slides from the inclined feeding plate 401 to the lower side, the collecting pump 411 is started, and the collecting pump 411 collects the water stains and impurities through the collecting hole 406, so as to avoid secondary pollution of the water stains and impurities to the electroplating product.

[0040] It should be noted that when the electroplating product is discharged, the hollow push rod 404 is driven by the hydraulic cylinder 408 to push the electroplating product, so that the electroplating product is quickly discharged from the conveying frame 3 through the flow guide roller 8, without manual discharge, which is convenient and efficient.

[0041] Reference Figures 1-5In one preferred embodiment, two hydraulic cylinders one 408 are fixedly connected to the inner wall of one side below the inclined feeding plate 401, and the output ends of the two hydraulic cylinders one 408 are fixedly connected to the same shaft support 407, both sides of the shaft support 407 are connected to the same hollow push rod 404 through bearings, the hollow push rod 404 is located below the inclined feeding plate 401, and the outer side wall of the hollow push rod 404 is equidistantly provided with a collection hole 406, a collection box 409 is fixedly connected to the bottom inner wall between the two hydraulic cylinders one 408 of the conveying frame 3, one side of the collection box 409 is fixedly connected to a pump support 410, the pump support 410 is fixedly connected to a collection pump 411, the collection end of the collection pump 411 is fixedly connected to a collection pipe 412, one end of the collection pipe 412 is inserted into the inside of the hollow push rod 404, and the conveying end of the collection pump 411 is connected to the inside of the collection box 409 through a pipeline.

[0042] With reference to Figure 1 , Figure 2 and Figure 6 In one preferred embodiment, guide fins 5 are equidistantly fixedly connected to the inner wall of the other side of the conveying frame 3, and the two ends of the conveying frame 3 are fixedly connected to sliding rails 7, the inside of the two sliding rails 7 are slidingly connected to sliding blocks 6, the top of the two sliding blocks 6 are fixedly connected to the same integrated rod 10, the end portions of the two sliding rails 7 are fixedly connected to end blocks 12, and the side of the two end blocks 12 facing the sliding blocks 6 are fixedly connected to hydraulic cylinders two 11, the output ends of the hydraulic cylinders two 11 are fixedly connected to the side of the adjacent sliding blocks 6, and the two sides of the conveying frame 3 below the guide fins 5 are equidistantly connected to guide rollers 8 through bearings.

[0043] With reference to Figure 1 , Figure 2 , Figure 6 , Figure 7 and Figure 8In a preferred implementation, the integrated rod 10 is fixedly connected with a fixing frame 13 at the bottom between every two guide vanes, and the bottom end of each fixing frame 13 is provided with a turnover auxiliary assembly 14, which comprises a rotating frame 1401, the bottom end of the fixing frame 13 is fixedly connected with a connecting plate 1410, one side of the connecting plate 1410 is fixedly connected with a driving motor 1409, the output shaft of the driving motor 1409 is fixedly connected with a driving shaft 1406 through a shaft coupling, one end of the rotating frame 1401 is fixedly connected with the driving shaft 1406, the outer side wall of the rotating frame 1401 is annularly distributed with a matching block 1407, one side of the matching block 1407 is fixedly connected with an electric telescopic rod 1403, and the output end of the electric telescopic rod 1403 is fixedly connected with a buffer arc plate 1411, a buffer sliding groove 1414 is opened on the arc surface of the buffer arc plate 1411, the buffer sliding groove 1414 is slidably connected with a buffer sliding block 1415, the outer side wall of the buffer sliding block 1415 is fixedly connected with a sliding frame 1408, the two side inner walls of the sliding frame 1408 are connected with a turnover shaft rod 1404 through bearings, the outer side wall of the buffer arc plate 1411 away from the turnover shaft rod 1404 is fixedly connected with a positioning block 1412, the positioning block 1412 and the buffer sliding block 1415 are fixedly connected with a buffer spring rod 1413, the two sides of the matching block 1407 are fixedly connected with a fixed block 1405, and one side of the two fixed blocks 1405 facing the buffer arc plate 1411 is fixedly connected with a telescopic connecting rod 1402, one end of the telescopic connecting rod 1402 is fixedly connected with the outer side wall of the buffer arc plate 1411.

[0044] Specifically, when the electroplated products move to the guide rollers 8 and the blanking processing assembly 9 blocks the blanking end of the conveying frame 3, the driving motor 1409 is started to drive the turnover shaft rods 1404 to rotate, and the upper part of the electroplated products is turned in one direction through the turnover shaft rods 1404, so as to cooperate with the blanking processing assembly 9 to efficiently separate the water stains and impurities attached to each position of the electroplated products, thereby improving the electroplated product processing effect.

[0045] It should be noted that when the turnover shaft rod 1404 contacts the upper part of the electroplated product, the buffer sliding block 1415 slides in the buffer sliding groove 1414, and the buffer spring rod 1413 is compressed, thereby reducing the collision force between the turnover shaft rod 1404 and the electroplated product, ensuring that the electroplated product is not damaged when the turnover function is realized, and at the same time, when the electroplated product is blanked, the hollow push rod 404 pushes the electroplated product from below, and the turnover shaft rod 1404 pushes the electroplated product from above, thereby accelerating the blanking of the electroplated product.

[0046] Referring to Figure 1 , Figure 2 , Figure 9 , Figure 10 and Figure 11In a preferred implementation, the conveying frame 3 is provided with a discharging treatment assembly 9 away from the feeding treatment assembly 4, and the discharging treatment assembly 9 comprises an arc-shaped blowing plate 901, both sides of the conveying frame 3 are fixedly connected with limiting rails 902, the interiors of the two limiting rails 902 are slidably connected with limiting sliding blocks 906, the arc-shaped blowing plate 901 is fixedly connected with the opposite sides of the two limiting sliding blocks 906, the arc-shaped blowing plate 901 is equidistantly opened with blowing holes 905 on the outer side wall facing the outer side wall of the flow guide roller 8, one side of the conveying frame 3 close to one of the limiting rails 902 is fixedly connected with a motor bracket 904, one side of the motor bracket 904 is fixedly connected with a forward-reverse motor 909, the output shaft of the forward-reverse motor 909 is fixedly connected with a rotating shaft 908 through a shaft coupling, the outer side wall of the rotating shaft 908 is fixedly connected with a rotating connecting rod 907, one end of the rotating connecting rod 907 is fixedly connected with one side of one of the limiting sliding blocks 906, the outer side wall of the arc-shaped blowing plate 901 is fixedly connected with a support plate 912, the top of the support plate 912 is fixedly connected with a heating box 903, the interior of the heating box 903 is fixedly connected with a mounting bracket 918, and the mounting bracket 918 is equidistantly fixedly connected with limiting plates 919, every two limiting plates 919 are distributed in a spread-tail manner, and the opposite sides of every two limiting plates 919 are equidistantly fixedly connected with electric heating pipes 917, the top of the heating box 903 is fixedly connected with a pump ring bracket 920, the interior of the pump ring bracket 920 is fixedly connected with an air pump 910, the gas delivery end of the air pump 910 is connected with a gas delivery pipe 911 through a pipeline, the gas delivery pipe 911 is opened with directional gas delivery holes 916 on the outer side wall facing every two limiting plates 919, the heating plate is opened with a gas guide hole on the side close to the arc-shaped blowing plate 901, the interior of the gas guide hole is fixedly connected with a converging pipe 913, the top of the support plate 912 between the heating plate and the arc-shaped blowing plate 901 is fixedly connected with a communicating pipe 914, one end of the converging pipe 913 is inserted into the interior of the communicating pipe 914, and the communicating pipe 914 is equidistantly opened with shunt holes on the outer side wall facing the arc-shaped blowing plate 901, and the interior of every shunt hole is fixedly connected with a branch pipe 915, and one end of the branch pipe 915 is inserted into the interior of the arc-shaped blowing plate 901.

[0047] In a specific application scenario, after the electroplated products are guided to move below the turnover auxiliary assemblies 14 through the flow guide pieces, the air pump 910 is started, the air pump 910 guides the gas heated through the electric heating pipes 917 into the arc-shaped blowing plate 901, sprays the gas through the blowing holes 905 to the electroplated products, thereby heating and drying the electroplated products, and removing the water stains attached to the electroplated products, and meanwhile, the blowing of the gas carries away the impurities attached to the outer surfaces of the electroplated products, thereby realizing secondary treatment of the surfaces of the electroplated products.

[0048] Specifically, when the arc-shaped blowing plate 901 is located below, the arc-shaped blowing plate 901 has the effect of blocking the electroplated products, and after the hot gas is sprayed out through the arc-shaped blowing plate 901, the flowing direction of the gas is staggered with the rotating direction of the turnover shaft 1404, and the two are matched to make the turnover effect of the electroplated products better.

[0049] Need to explain, when the electroplating product unloading, start rotating motor, rotating motor will arc blowing plate 901 to limit rail 902 the most top, then the electroplating product can smoothly from the conveying frame 3, in its removal process, hot gas continues to blow from the blowhole 905, continuously to the rotating removal electroplating product processing, further improve the electroplating product surface attachment processing effect.

[0050] A kind of vertical guide rail conveying method based on electroplating product, using as described above a vertical guide rail conveying device based on electroplating product, comprising the following steps:

[0051] Step one: when the electroplating product is transported, it is placed on the inclined feed plate 401, which is extruded in the process of falling, and the shock spring rod 414 behind the shock plate 402 is compressed, so that the shock spring rod 414 drives the shock plate 402 to be in high frequency shock state, so that the water stains and impurities attached to the electroplating product are preliminarily separated by shock, and the water stains and impurities are collected by the collection pump 411 through the collection hole 406 during the sliding of the electroplating product from the inclined feed plate 401 to the lower part.

[0052] Step two: when the electroplating product moves to each guide roller 8 and the unloading treatment assembly 9 blocks the unloading end of the conveying frame 3, start the drive motor 1409, the drive motor 1409 drives each turnover shaft rod 1404 to rotate, and the electroplating product is turned in one direction by each turnover shaft rod 1404, start the air pump 910, the air pump 910 introduces the gas heated by the electric heating tube 917 into the arc blowing plate 901, and blows to each electroplating product through the blowhole 905, so as to heat and dry the electroplating product, and remove the water stains attached to the surface of the electroplating product, at the same time, the gas blowing will take away the impurities attached to the surface of the electroplating product, realizing the secondary treatment of the surface of the electroplating product.

[0053] Step three: when the electroplating product is unloading, start the rotating motor, the rotating motor moves the arc blowing plate 901 to the uppermost of the limit rail 902, and the hollow push rod 404 driven by the hydraulic cylinder one 408 pushes the electroplating product, and the electroplating product is quickly pushed out of the conveying frame 3, and the transportation is ended.

[0054] The above is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A vertical guide rail conveying device for electroplating products, comprising a vertical guide rail body (1), characterized in that, The vertical guide rail body (1) is slidably connected with conveying sliders (2) at equal intervals, and each conveying slider (2) is fixedly connected with a conveying frame (3). The conveying frame (3) is provided with a feeding processing component (4) near one side, and the feeding processing component (4) includes an inclined feeding plate (401). The inclined feeding plate (401) is fixedly connected to the inner wall of one side of the conveying frame (3). The outer wall of the inclined feeding plate (401) is provided with mounting grooves (405) at equal intervals, and each mounting groove (405) is fixedly connected to the inner wall of one side of the conveying frame (3). 405) Vibration plates (402) are connected to the inner sidewalls near the top by hinges. Perforations (403) are opened at equal intervals on the outer side of each vibration plate (402). The bottom of the inclined feed plate (401) at the top is fixedly connected to a rear abutment plate (413). On the side of the rear abutment plate (413) facing the inclined feed plate (401), vibration spring rods (414) are fixedly connected at equal intervals. One end of the vibration spring rod (414) is fixedly connected to the bottom of the adjacent vibration plate (402). Guide plates (5) are fixedly connected at equal distances on the inner wall of the other side of the conveying frame (3), and slide rails (7) are fixedly connected at both ends of the conveying frame (3). Sliding blocks (6) are slidably connected inside the two slide rails (7). The same integrated rod (10) is fixedly connected to the top of the two slide blocks (6). End blocks (12) are fixedly connected to the ends of the two slide rails (7). Hydraulic cylinders (11) are fixedly connected to the side of the two end blocks (12) facing the slide blocks (6). The output end of the hydraulic cylinders (11) is fixedly connected to the side of the adjacent slide blocks (6). Guide rollers (8) are connected at equal distances through bearings on the inner walls of the two sides of the conveying frame (3) below the guide plates (5). The conveying frame (3) is provided with a discharge processing component (9) away from the feeding processing component (4), and the discharge processing component (9) includes an arc-shaped blow plate (901). Both sides of the conveying frame (3) are fixedly connected to limit rails (902), and the interior of the two limit rails (902) is slidably connected to limit sliders (906). The arc-shaped blow plate (901) is fixedly connected to the opposite side of the two limit sliders (906), and the arc-shaped blow plate (901) has blow holes (905) at equal intervals on the outer wall of the guide roller (8).

2. The vertical guide rail conveying device for electroplating products according to claim 1, characterized in that, The conveying frame (3) has two hydraulic cylinders (408) fixedly connected to the inner wall of one side below the inclined feed plate (401), and the output ends of the two hydraulic cylinders (408) are fixedly connected to the same shaft frame (407). The two sides of the shaft frame (407) are connected to the same hollow push rod (404) through bearings. The hollow push rod (404) is located below the inclined feed plate (401), and the outer side wall of the hollow push rod (404) has collection holes (406) at equal intervals.

3. The vertical guide rail conveying device based on electroplating products according to claim 2, characterized in that, The bottom inner wall of the conveying frame (3) between the two hydraulic cylinders (408) is fixedly connected to a collection box (409), and a pump frame (410) is fixedly connected to one side of the collection box (409). A collection pump (411) is fixedly connected to the pump frame (410), and a collection pipe (412) is fixedly connected to the collection end of the collection pump (411). One end of the collection pipe (412) is inserted into the interior of the hollow push rod (404), and the conveying end of the collection pump (411) is connected to the interior of the collection box (409) through a pipe.

4. A vertical guide rail conveying device for electroplating products according to claim 3, characterized in that, The integrated rod (10) is fixedly connected to a fixed frame (13) at the bottom between each two guide vanes, and each fixed frame (13) is provided with a flipping auxiliary component (14) at the bottom. The flipping auxiliary component (14) includes a rotating frame (1401). A connecting plate (1410) is fixedly connected to the bottom of the fixed frame (13). A drive motor (1409) is fixedly connected to one side of the connecting plate (1410). The output shaft of the drive motor (1409) is fixedly connected to a drive shaft (1406) through a coupling. The rotating frame (1401) is fixedly connected to one end of the drive shaft (1406). The outer side wall of the rotating frame (1401) is circumferentially distributed with bonding blocks (1407).

5. A vertical guide rail conveying device for electroplating products according to claim 4, characterized in that, An electric telescopic rod (1403) is fixedly connected to one side of the bonding block (1407), and a buffer arc plate (1411) is fixedly connected to the output end of the electric telescopic rod (1403). A buffer groove (1414) is opened on the arc surface of the buffer arc plate (1411), and a buffer slider (1415) is slidably connected inside the buffer groove (1414). A sliding frame (1408) is fixedly connected to the outer wall of the buffer slider (1415), and a flipping shaft (1404) is connected to the inner walls of both sides of the sliding frame (1408) through bearings. A positioning block (1412) is fixedly connected to the outer wall of the arc plate (1411) away from the flipping shaft (1404). A buffer spring rod (1413) is fixedly connected between the positioning block (1412) and the buffer slider (1415). Fixing blocks (1405) are fixedly connected to both sides of the fitting block (1407). Telescopic connecting rods (1402) are fixedly connected to the side of the two fixing blocks (1405) facing the buffer arc plate (1411). One end of the telescopic connecting rod (1402) is fixedly connected to the outer wall of the buffer arc plate (1411).

6. A vertical guide rail conveying device for electroplated products according to claim 5, characterized in that, The conveying frame (3) is fixedly connected to a motor frame (904) on one side near one of the limiting rails (902), and a forward and reverse motor (909) is fixedly connected to one side of the motor frame (904). The output shaft of the forward and reverse motor (909) is fixedly connected to a rotating shaft (908) through a coupling. A rotating connecting rod (907) is fixedly connected to the outer wall of the rotating shaft (908). One end of the rotating connecting rod (907) is fixedly connected to one side of one of the limiting sliders (906). A support plate (912) is fixedly connected to the outer wall of the arc-shaped blow plate (901), and a heating box (903) is fixedly connected to the top of the support plate (912).

7. A vertical guide rail conveying device for electroplating products according to claim 6, characterized in that, The heating box (903) is internally fixedly connected to a mounting bracket (918), and limit plates (919) are fixedly connected at equal intervals on the mounting bracket (918). The limit plates (919) are arranged in a V-shape between each pair of limit plates (919). Electric heating tubes (917) are fixedly connected at equal intervals on the opposite side of each pair of limit plates (919). A pump ring frame (920) is fixedly connected to the top of the heating box (903). An air pump (910) is fixedly connected inside the pump ring frame (920). The air supply end of the air pump (910) is connected to an air supply pipe (911) through a pipeline. The air supply pipe (911) faces the space between each pair of limit plates (919). All outer walls are provided with directional air supply holes (916). The heating plate is provided with air guide holes on the side near the arc-shaped blow plate (901). An inlet pipe (913) is fixedly connected inside the air guide holes. A connecting pipe (914) is fixedly connected to the top of the support plate (912) between the heating plate and the arc-shaped blow plate (901). One end of the inlet pipe (913) is inserted into the inside of the connecting pipe (914). The connecting pipe (914) is provided with diversion holes at equal intervals on the outer wall of the arc-shaped blow plate (901). A branch pipe (915) is fixedly connected inside each diversion hole. One end of the branch pipe (915) is inserted into the inside of the arc-shaped blow plate (901).

8. A vertical guide rail conveying method for electroplated products, using the vertical guide rail conveying device for electroplated products as described in claim 7, characterized in that, Includes the following steps: Step 1: When conveying the electroplated product, place it on the inclined feed plate (401). During the falling process, it squeezes the vibrating plate (402). The vibrating spring rod (414) behind the vibrating plate (402) is compressed. The vibrating spring rod (414) drives the vibrating plate (402) to be in a high-frequency oscillation state. The water stains and impurities attached to the electroplated product are initially removed by the oscillation. During the process of the electroplated product sliding from the inclined feed plate (401) to the bottom, the collection pump (411) is started. The collection pump (411) collects the water stains and impurities that have fallen off through the collection hole (406). Step 2: When the electroplated product moves onto each guide roller (8) and the unloading processing component (9) blocks the unloading end of the conveyor frame (3), start the drive motor (1409). The drive motor (1409) drives each flipping shaft (1404) to rotate. Through each flipping shaft (1404), the upper part of the electroplated product flips in the same direction. Start the air pump (910). The air pump (910) introduces the gas heated by the electric heating tube (917) into the arc-shaped blow plate (901) and sprays it onto each electroplated product through the blow hole (905) to heat and dry it, remove the water stains attached to it. At the same time, the blowing of the gas removes the impurities attached to its outer surface, realizing the secondary treatment of the surface of the electroplated product. Step 3: When the electroplating product is unloaded, start the rotating motor. The rotating motor moves the arc-shaped blow plate (901) to the top of the limit rail (902). Adjust the hydraulic cylinder (408) to drive the hollow push rod (404) to push the electroplating product and push it quickly out of the conveying frame (3) to end the conveying.

Citation Information

Patent Citations

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    CN213084581U

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