Plate placing device and VCP electroplating production line

By designing the frame, board feeding mechanism, board discharging mechanism, and lifting mechanism in the board feeding device, the turning and transportation of the boards was realized, solving the problem of the large space occupied by the VCP electroplating production line and realizing the rational use of factory space.

CN223751843UActive Publication Date: 2026-01-02UNIVERSAL CIRCUIT BOARD EQUIP CO LTD
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Patent Information

Application Number
CN202423321592.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing VCP electroplating production line has an additional plate feeding device that occupies a large space, resulting in a large footprint for the production line.

Method used

Design a board feeding device, including a frame, a board feeding mechanism, a board discharging mechanism and a lifting mechanism. The board feeding mechanism moves in a first direction, the board discharging mechanism moves in a second direction, and the lifting mechanism causes the board to turn in the board feeding device, thereby reducing the straight transport length of the production line.

Benefits of technology

By making reasonable use of factory space and reducing the space occupied by the VCP electroplating production line, a compact layout of the production line has been achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a board placing device and a VCP electroplating production line, and relates to the technical field of electroplating equipment, the board placing device comprises a rack, and a board feeding mechanism, a board discharging mechanism and a lifting mechanism which are arranged on the rack; the plate feeding mechanism can drive a plate to move in the first direction. The plate discharging mechanism is arranged on one side of the plate feeding mechanism in the first direction and can drive the plate to move in the second direction, and the first direction and the second direction intersect; according to the technical scheme provided by the utility model, the plate is conveyed to the position above the plate discharging mechanism along the first direction through the plate feeding mechanism and the lifting mechanism, and then the plate is conveyed out of the plate placing device through the plate discharging mechanism so as to enter a subsequent electroplating station; the first direction and the second direction intersect, so that the plate placing device can be placed at the corner of the plant, the electroplating production line of the VCP does not need to be placed along a straight line, the space of the plant can be reasonably utilized, and the occupied space of the electroplating production line of the VCP is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electroplating equipment technical field, especially in a kind of plate device and VCP electroplating production line. BACKGROUND

[0002] VCP electroplating, i.e. vertical continuous electroplating, is a kind of efficient, automated electroplating process. During electroplating, VCP electroplating suspends the piece to be plated in electrolyte, and moves the plated piece vertically in electrolyte through special equipment, so as to realize the deposition of the metal on the surface of the plated piece. In the process of VCP electroplating, an auxiliary material, i.e. a plated plate, is usually used as an auxiliary material to obtain qualified electroplated products. Therefore, a plate device needs to be additionally provided at the front end of the work station of the electroplating device in the production line of the VCP electroplating equipment to put the plated plate into the production line, so as to ensure the smooth progress of VCP electroplating. In the prior art, the additional provision of the plate device in the VCP electroplating production line occupies a large space, so that the VCP electroplating production line needs to occupy a large space. SUMMARY

[0003] The main purpose of the utility model is to provide a plate device and electroplating equipment, which aims to reduce the space occupied by the VCP electroplating production line.

[0004] To achieve the above-mentioned purpose, the plate device provided by the utility model comprises a rack, a plate inlet mechanism, a plate outlet mechanism and a lifting mechanism. The plate inlet mechanism is installed on the rack, and the plate inlet mechanism can drive the plate to move in a first direction. The plate outlet mechanism is installed on the rack, and the installation height of the plate outlet mechanism is lower than that of the plate inlet mechanism. The plate outlet mechanism is arranged on one side of the plate inlet mechanism in the first direction, and the plate outlet mechanism can drive the plate to move in a second direction. The first direction and the second direction are arranged intersectingly, and the plate outlet mechanism has a lifting space. The lifting mechanism is installed on the rack in a lifting manner, and is located in the lifting space. When the lifting mechanism is lifted to a position higher than the plate outlet mechanism, the lifting mechanism can drive the plate to move in the first direction.

[0005] In an embodiment, the plate inlet mechanism comprises a plurality of first roller assemblies, which are arranged on the rack in the first direction at intervals. The first roller assembly comprises a first rotating shaft and a plurality of first rollers sleeved on the first rotating shaft. The first rotating shaft is arranged in extension in a second direction, and a plurality of the first rollers are arranged at intervals on the first rotating shaft in the second direction and rotate in the same direction around the first rotating shaft.

[0006] In an embodiment, the plate-in mechanism comprises a plurality of second roller assemblies, which are arranged along a second direction at intervals on the frame, each of the second roller assemblies comprises a second rotating shaft and a plurality of second rollers sleeved on the second rotating shaft, the second rotating shaft extends along a first direction, and the plurality of second rollers are arranged along the first direction at intervals on the second rotating shaft and rotate in the same direction around the second rotating shaft.

[0007] When the plurality of second roller assemblies are installed on the frame, the plurality of second rollers form a plurality of rows of roller groups arranged along the first direction at intervals, the interval between any two adjacent rows of roller groups forms a first lifting space, and the interval between any two adjacent columns of second roller assemblies forms a second lifting space, and the first lifting space and the second lifting space constitute the lifting space.

[0008] In an embodiment, the lifting mechanism comprises:

[0009] a support member;

[0010] a conveying assembly installed on the support member, the conveying assembly comprises a plurality of third roller assemblies arranged along the first direction at intervals, each of the third roller assemblies is arranged in a corresponding first lifting space, each of the third roller assemblies comprises a third rotating shaft and a plurality of third rollers sleeved on the third rotating shaft, the third rotating shaft extends along a second direction, and the plurality of third rollers are arranged along the second direction at intervals on the third rotating shaft and rotate in the same direction around the third rotating shaft; and a power member installed on the frame, the power member is drivingly connected to the support member.

[0011] In an embodiment, the support member comprises:

[0012] a first cross beam, the power member is drivingly connected to the first cross beam, the first cross beam is arranged along the first direction at intervals, and each of the first cross beams extends along a second direction; and

[0013] a second cross beam installed on one side of the first cross beam close to the third roller assemblies, the third roller assemblies are installed on the second cross beam, the second cross beam is arranged along the second direction at intervals, and each of the second cross beams extends along the second direction, and each of the second cross beams is arranged in a corresponding second lifting space.

[0014] In an embodiment, the lifting mechanism further comprises a guide assembly, the guide assembly is installed on the support member, and the guide assembly is arranged between the plate-in mechanism and the conveying assembly to guide the plate member from the plate-in mechanism to the conveying assembly.

[0015] In an embodiment, the plate placing device further comprises a baffle plate, which is installed at an end of the plate outlet mechanism away from the plate inlet mechanism.

[0016] In an embodiment, the plate placing device further comprises an adsorption device, which is installed on the frame in a liftable manner and is movable along a first direction on the frame.

[0017] In an embodiment, a housing is further included, which is sleeved on the periphery of the frame, and the housing comprises a first side wall and a second side wall which are spaced apart along a first direction, and a third side wall and a fourth side wall which are spaced apart along a second direction; the first side wall is provided with an inlet opening for the plate to pass through at a position corresponding to the plate inlet mechanism, and the fourth side wall is provided with an outlet opening for the plate to pass through at a position corresponding to the plate outlet mechanism.

[0018] The utility model also provides a VCP electroplating production line, including conveying line, electroplating line and above any one plate placing device of the plate placing device, the conveying line is along first direction extension setting, and is connected the plate inlet mechanism, the electroplating line is along second direction extension setting, and is connected the plate outlet mechanism.

[0019] The utility model discloses a technical scheme, which is characterized in that a frame, a plate inlet mechanism, a plate outlet mechanism and a lifting mechanism are arranged in the plate placing device, the plate inlet mechanism is used to drive the plate to move along a first direction, so that the plate is conveyed to above the plate outlet mechanism along the first direction, the plate outlet mechanism has a lifting space for installing the lifting mechanism, the lifting mechanism is installed in the lifting space in a liftable manner, the lifting mechanism can drive the plate to move along the first direction and can lift the plate above the plate outlet mechanism through the lifting action of the lifting mechanism, so that the plate is lowered to the upper surface of the plate outlet mechanism after moving to a preset position along the first direction through the plate inlet mechanism and the lifting mechanism, and then the plate is conveyed out of the plate placing device along a second direction through the plate outlet mechanism, and then enters a subsequent electroplating station for electroplating. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained from the structure shown in the drawings without creative labor.

[0021] Figure 1A structure schematic view of one embodiment of the plate placing device provided by the utility model;

[0022] Figure 2 A structure schematic view of another embodiment of the plate placing device provided by the utility model;

[0023] Figure 3 A structure schematic view of the inside of the shell in one embodiment of the plate placing device provided by the utility model;

[0024] Figure 4 A structure schematic view of the inside of the shell in one embodiment of the plate placing device provided by the utility model; Figure 3 A local enlarged view of A in the middle;

[0025] Figure 5 A structure schematic view of the lifting mechanism in one embodiment of the plate placing device provided by the utility model;

[0026] Figure 6 A structure schematic view of one embodiment of the VCP electroplating production line provided by the utility model.

[0027] Explanation of reference numerals:

[0028] 100, plate placing device; 1, rack; 2, plate entering mechanism; 21, first roller assembly; 3, plate exiting mechanism; 31, second roller assembly; 4, lifting mechanism; 41, supporting piece; 411, first cross beam; 412, second cross beam; 42, conveying assembly; 421, third roller assembly; 43, power piece; 44, guiding assembly; 5, baffle; 6, adsorption device; 7, shell; 71, second side wall; 72, third side wall; 73, fourth side wall; 731, discharge port; 8, plate piece; 200, VCP electroplating production line; 20, conveying line; 30, electroplating line.

[0029] The realization, functional features and advantages of the utility model will be further described in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0031] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0032] In addition, if the description of "first", "second" and the like is involved in the embodiments of the present application, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes include "A and / or B", including A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor in the protection scope required by the present application.

[0033] The utility model provides a kind of plate placing device 100.

[0034] Please refer to Figures 1-6 In an embodiment of the present application, the plate placing device 100 includes a rack 1, a plate entering mechanism 2, a plate exiting mechanism 3, and a lifting mechanism 4. The plate entering mechanism 2 is installed on the rack 1 and can drive the plate 8 to move in the first direction. The plate exiting mechanism 3 is installed on the rack 1, and the installation height of the plate exiting mechanism 3 is lower than that of the plate entering mechanism 2. The plate exiting mechanism 3 is arranged on one side of the plate entering mechanism 2 in the first direction and can drive the plate 8 to move in the second direction. The first direction and the second direction are arranged intersectingly, and the plate exiting mechanism 3 has a lifting space. The lifting mechanism 4 is installed on the rack 1 in a lifting manner and is located in the lifting space. When the lifting mechanism 4 is lifted to a position higher than the plate exiting mechanism 3, the lifting mechanism 4 can drive the plate 8 to move in the first direction.

[0035] In the embodiment, the rack 1 has a platform installed at a certain height in the rack 1, the plate feeding mechanism 2, the plate discharging mechanism 3 and the lifting mechanism 4 are all installed on the platform, and the space below the platform is used to accommodate the remaining parts of the device. The inlet of the plate feeding mechanism 2 is connected to the conveying line 20, used to receive the plate 8 sent from the conveying line 20, which can be a plating auxiliary plate, so as to send the plating auxiliary plate into the production line to be plated with the plated part and enter the electroplating station for electroplating; the plate 8 can also be a plated part, so as to send the plated part to the production line when needed to supplement the plated part. The plate discharging mechanism 3 is used to send the plate 8 out of the outlet of the device, and the outlet of the device is connected to the electroplating station of the production line, so that the plate 8 can enter the electroplating station after being transported out of the outlet to be electroplated. The lifting mechanism 4 is used to cooperate with the plate discharging mechanism 3 to turn the plate 8 originally moving into the device along the first direction, so that the plate 8 moves out along the second direction to enter the electroplating station; the horizontal installation positions of the lifting mechanism 4 and the plate discharging mechanism 3 on the rack 1 have a partial overlap, and the lifting space in the plate discharging mechanism 3 can enable the lifting mechanism 4 to normally move in the plate discharging mechanism 3 along the height direction without being affected.

[0036] In the embodiment, the plate 8 device has an inlet, which moves along the first direction under the drive of the plate feeding mechanism 2, the lifting mechanism 4 and the plate discharging mechanism 3 are arranged on the moving line of the plate 8, and the height of the plate discharging mechanism 3 is lower than that of the plate feeding mechanism 2, so as to avoid affecting the movement of the plate 8 above the plate discharging mechanism 3, and the plate 8 can move towards the lifting mechanism 4 and the plate discharging mechanism 3 under the drive of the plate feeding mechanism 2. Initially, the lifting mechanism 4 is lifted to the same height as the plate feeding mechanism 2, when the plate 8 moves to the end of the plate feeding mechanism 2, the lifting mechanism 4 at the same height can receive the plate 8 from the plate feeding mechanism 2, so that the plate 8 can continue to move along the first direction after being separated from the plate feeding mechanism 2, until the plate 8 moves above the plate discharging mechanism 3. After the plate 8 reaches the preset position above the plate discharging mechanism 3, the lifting mechanism 4 lowers the plate 8 until the lifting mechanism 4 is lowered to a position below the upper surface of the plate discharging mechanism 3, at this time the plate 8 will stay on the upper surface of the plate discharging mechanism 3 due to the blockage of the plate discharging mechanism 3 and will not continue to descend, thereby separating from the lifting mechanism 4, the lifting mechanism 4 cannot drive the plate 8 to move along the first direction, and the plate 8 moves along the second direction under the action of the plate discharging mechanism 3, thereby moving out of the device to enter the electroplating station of the production line. In the conventional VCP electroplating production line 200, the plate 8 can only be transported along a straight line, and the multiple stations of the production line are arranged in sequence along the transportation direction of the plate 8, so that the conventional electroplating production line needs to be set very long, and the corresponding factory building needs to occupy a large horizontal space. In the embodiment, since the plate placing device 100 can turn the plate 8 for transportation, the plate placing device 100 can be arranged at the corner along the edge of the side wall of the factory building, and the electroplating production line does not need to be set very long, thereby reducing the horizontal space occupied by the site.

[0037] The utility model discloses a technical scheme through the adoption in the setting frame 1, the plate mechanism 2, the plate mechanism 3 and the lifting mechanism 4 of putting board device 100, the plate mechanism 2 is used to drive the board piece 8 along the first direction movement, to with the board piece 8 along the first direction delivery to the plate mechanism 3 above, the plate mechanism 3 has the lifting space for installing the lifting mechanism 4, the lifting mechanism 4 can be lifted and arranged in the lifting space, the lifting mechanism 4 can drive the board piece 8 along the first direction movement, and can drive the board piece 8 to lift above the plate mechanism 3 through the lifting action of itself, so that the board piece 8 passes through the plate mechanism 2 and the lifting mechanism 4 and moves to the preset orientation along the first direction and then falls to the upper surface of the plate mechanism 3, and then is transported out of the putting board device 100 by the plate mechanism 3 and enters the subsequent electroplating station for electroplating, through the first direction and the second direction intersection setting, so that the putting board device 100 can be placed at the corner of factory building, and the board piece 8 can complete the turning in the putting board device 100, and the electroplating production line of VCP does not need to be arranged along the straight line, can utilize the factory building space reasonably, and reduces the occupied space of VCP electroplating production line 200.

[0038] In an embodiment, the plate mechanism 2 comprises a plurality of first roller assemblies 21, the plurality of first roller assemblies 21 are arranged in the frame 1 along the first direction, the first roller assembly 21 comprises a first rotating shaft and a plurality of first rollers sleeved on the first rotating shaft, the first rotating shaft is arranged along the second direction, the plurality of first rollers are arranged in the first rotating shaft along the second direction and rotate in the same direction around the first rotating shaft. In this embodiment, the first rotating shaft is used to coaxially arrange the plurality of first rollers, and the plurality of first rollers sleeved on the same first rotating shaft can rotate in the same direction at the same speed, the first rollers adopt rollers with the same diameter, so that the upper surfaces of the plurality of first rollers can be kept in the same plane, to smoothly transport the board piece 8 in the preset direction. When transporting, the board piece 8 abuts against the outer surfaces of the plurality of first rollers, so that the rollers drive the board piece 8 to move through friction.

[0039] In an embodiment, the plate mechanism 3 comprises a plurality of second roller assemblies 31, the plurality of second roller assemblies 31 are arranged in the frame 1 along the second direction, the second roller assembly 31 comprises a second rotating shaft and a plurality of second rollers sleeved on the second rotating shaft, the second rotating shaft is arranged along the first direction, the plurality of second rollers are arranged in the second rotating shaft along the first direction and rotate in the same direction around the second rotating shaft; when the plurality of second roller assemblies 31 are installed in the frame 1, the plurality of second rollers form a plurality of rows of roller row groups arranged along the first direction, and the interval between any two adjacent rows of roller row groups forms a first lifting space; the interval between any two adjacent columns of second roller assemblies 31 forms a second lifting space; the first lifting space and the second lifting space constitute the lifting space.

[0040] In the embodiment, the second rotating shaft is used to coaxially arrange the plurality of second rollers, and can simultaneously rotate the plurality of second rollers coaxially arranged on the same second rotating shaft at the same speed in the same direction. The second rollers have the same diameter, so that the upper surfaces of the plurality of second rollers can be kept in the same plane, thereby stably transporting the plate 8 in the preset direction. The plurality of spacing spaces are formed between each adjacent second roller assembly 31, and the spacing spaces can be used to accommodate the support 41 of the lifting mechanism 4. The support 41 can be lifted in the height direction in the spacing spaces without being affected, and the spacing spaces are the first lifting spaces.

[0041] Further, the spacing between the adjacent second rollers of the second roller assembly 31 has a width greater than the width (i.e. the diameter of the third roller) of the third roller assembly 421. When the plurality of second roller assemblies 31 are arranged in the second direction on the rack 1, the plurality of second rollers at the same position on different shafts are arranged in the second direction to form a roller row group. The plurality of second rollers arranged in the first direction on the second rotating shaft, so that when the plurality of second roller assemblies 31 are arranged in the second direction on the rack 1, the plate ejection mechanism 3 forms a plurality of roller row groups arranged in the first direction with a spacing. The spacing between each two adjacent roller row groups forms a second lifting space. Since the spacing between the adjacent second rollers of the second roller assembly 31 has a width greater than the width of the third roller assembly 421, the width of the second lifting space is greater than the width of the third roller assembly 421, so that the third roller assembly 421 is not affected by the second rollers on both sides when being lifted in the second lifting space.

[0042] It can be understood that the radius of the second roller is greater than the diameter of the third roller, so that the plate ejection mechanism 3 can have sufficient height space to accommodate the third roller assembly 421 when the third roller is lowered in the second space, so that the third roller assembly 421 can be completely below the upper surface of the plate ejection mechanism 3 without protruding from the upper surface of the plate ejection mechanism 3, thereby not affecting the movement of the plate ejection mechanism 3 to move the plate 8, and not touching the second rotating shaft. The lifting space can realize that the second roller assembly 31 and the third roller assembly 421 are not affected by each other when being lifted or rotated.

[0043] In an embodiment, the lifting mechanism 4 comprises a support 41, a conveying assembly 42 and a power component 43. The conveying assembly 42 is mounted on the support 41, and the conveying assembly 42 comprises a plurality of third roller assemblies 421 arranged along a first direction. Each third roller assembly 421 is arranged in a first lifting space. The third roller assembly 421 comprises a third rotating shaft and a plurality of third rollers sleeved on the third rotating shaft. The third rotating shaft extends along a second direction. The plurality of third rollers are arranged along the second direction on the third rotating shaft and rotate in the same direction around the third rotating shaft. The power component 43 is mounted on the rack 1 and is drivingly connected to the support 41.

[0044] In the embodiment, the power component 43 is arranged at the bottom of the lifting device and is connected to the machine table on the rack 1. The support 41 is mounted above the power component 43. The power component 43 can be a screw lifting machine or the like mounted below the support 41 to drive the support 41 to lift by the power component 43. The conveying device is mounted on the top of the support 41. In other embodiments, the power component 43 can be a rodless cylinder or the like driving component connected to the two sides of the support 41 to lift the support 41 by the two sides. The third rotating shaft is used to coaxially arrange the plurality of third rollers and enable the plurality of third rollers sleeved on the same third rotating shaft to rotate in the same direction at the same speed. The third rollers have the same diameter, so that the upper surfaces of the plurality of third rollers can be kept in the same plane to smoothly transport the board 8 in the preset direction. During transportation, the board 8 abuts against the outer surfaces of the plurality of third rollers, so that the third rollers drive the board 8 to move by friction.

[0045] In an embodiment, the support 41 comprises a first cross beam 411 and a second cross beam 412. The power component 43 is drivingly connected to the first cross beam 411. The first cross beam 411 is arranged along the first direction and has at least two first cross beams 411 arranged along the second direction. The second cross beam 412 is mounted on the first cross beam 411 near the third roller assembly 421. The third roller assembly 421 is mounted on the second cross beam 412. The second cross beam 412 has at least two second cross beams 412 arranged along the second direction. Each second cross beam 412 is arranged in a second lifting space and extends along the second direction.

[0046] In the embodiment, two first beams 411 are arranged along the first direction, the number of first beams 411 can be increased or decreased according to the weight required to be borne. A connecting plate is arranged above the power member 43, and the connecting plate is connected with a plurality of first beams 411, so that the plurality of first beams 411 can be driven by the power member 43. In other embodiments, the plurality of power members 43 can be connected below the plurality of first beams 411 to increase the stability of the lifting mechanism 4. Two second beams 412 are respectively arranged at the two ends of the first beam 411 by means of threaded fasteners. Each second beam 412 is fixedly connected with one end of the plurality of first beams 411, so that the second beam 412 and the first beam 411 move synchronously. The second beam 412 is provided with a plurality of mounting holes for mounting the third roller assembly 421 along the length direction. The third roller assembly 421 is arranged in the corresponding mounting hole of the two second beams 412, and is connected by means of fasteners, so that the third roller assembly 421 is rotatably arranged on the support 41.

[0047] In an embodiment, the lifting mechanism 4 further comprises a guide assembly 44 arranged on the support 41. The guide assembly 44 is arranged between the plate feeding mechanism 2 and the conveying assembly 42, and is used to guide the plate 8 from the plate feeding mechanism 2 to the conveying assembly 42. The guide assembly 44 is provided with a plurality of guide roller assemblies, which have the same size and specifications as the third roller assembly 421. The guide roller assemblies are arranged on the third support 41 close to the end of the plate feeding mechanism 2. The guide assembly 44 is connected with the plate feeding mechanism 2 and the conveying assembly 42, and can fill the gap between the plate feeding mechanism 2 and the conveying assembly 42, so that the plate 8 can be smoothly transported.

[0048] In an embodiment, the plate feeding device 100 further comprises a baffle 5 arranged on the end of the plate discharging mechanism 3 away from the plate feeding mechanism 2. The baffle 5 is used to limit the position of the plate 8. When the plate 8 moves along the first direction to the baffle 5 on the lifting mechanism 4, the plate 8 is no longer moved under the action of the baffle 5. At this time, the plate 8 is aligned with the outlet on the rack 1. The lifting mechanism 4 is lowered, and the plate 8 is transported out through the plate discharging mechanism 3.

[0049] In an embodiment, the plate placing device 100 further comprises an adsorption device 6, which is installed on the frame 1 in a liftable manner and is movable along the first direction on the frame 1. The plate 8 can be suspended above the plate feeding mechanism 2 and the plate publishing mechanism by the adsorption device 6 and moved back and forth. When it is necessary to replenish the to-be-plated pieces in the electroplating station, the plate placing device 100 can replenish the plate by the adsorption mechanism. At this time, the to-be-plated pieces are needed in the electroplating station instead of the accompanying plated plates. The to-be-plated pieces can be adsorbed by the adsorption device 6 at a preset position, then slid to above the plate publishing mechanism 3 by a sliding rail or the like, and then placed on the lifting mechanism 4 and moved to the baffle 5, and then the lifting mechanism 4 is lowered, and the to-be-plated pieces are moved out of the plate placing device 100 by the plate publishing mechanism 3 and into the production line.

[0050] In an embodiment, a housing 7 is further included, which is sleeved on the periphery of the frame 1. The housing 7 comprises a first side wall and a second side wall 71 which are arranged at intervals along the first direction, and a third side wall 72 and a fourth side wall 73 which are arranged at intervals along the second direction. The first side wall is provided with an inlet opening corresponding to the position of the plate feeding mechanism 2 for the plate 8 to pass through. The fourth side wall 73 is provided with an outlet opening 731 corresponding to the position of the plate publishing mechanism 3 for the plate 8 to pass through. The to-be-plated pieces enter the plate placing device 100 through the inlet opening and are moved out of the plate placing device 100 through the outlet opening 731. The inlet opening is communicated with the inlet conveying device to continuously feed the plate 8 into the plate placing device. The outlet opening 731 is communicated with the electroplating station to continuously feed the plate 8 into the electroplating station. The inlet opening is arranged at a position corresponding to the inlet mechanism on the first side wall, and the height and width thereof are adapted to the plate 8. The outlet opening 731 is arranged at a position corresponding to the outlet device on the fourth side wall 73, and the height and width thereof are adapted to the plate 8 to be transported. In other embodiments, the inlet opening and the outlet opening 731 can be arranged on different sides of the housing 7 according to the actual structure of the site.

[0051] The utility model further provides a kind of VCP electroplating production line 200, the VCP electroplating production line 200 includes conveying line 20, electroplating line 30 and plate placing device 100, the specific structure of this plate placing device 100 refers to above-mentioned embodiment, since the VCP electroplating production line 200 of the present application adopts all technical solutions of above-mentioned all embodiments, at least has all beneficial effects brought by the technical solutions of above-mentioned embodiments, here no longer one by one elaboration. Among them, conveying line 20 is communicated with inlet opening, for accompanying plated plate is transported to inlet mechanism by inlet opening, can be moved along horizontal direction using conveyor belt or roller mechanism etc. Electroplating line 30 is connected with electroplating station and plate placing device 100, and plate placing device 100 is transported to electroplating line 30 by outlet opening 731, and accompanying plated plate is moved to electroplating station by electroplating line 30 to assist to-be-plated piece to carry out electroplating.

[0052] The above merely illustrates the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields under the technical concept of the present application and by using the content of the present application specification and drawings are included in the patent protection scope of the present application.

Claims

1. A plate-laying device, characterized in that, include: frame; A plate feeding mechanism is installed on the frame, and the plate feeding mechanism can drive the plate to move along a first direction; A plate ejection mechanism is installed on the frame. The installation height of the plate ejection mechanism is lower than that of the plate infeed mechanism. The plate ejection mechanism is located on one side of the plate infeed mechanism along a first direction. The plate ejection mechanism can drive the plate to move along a second direction. The first direction and the second direction are intersecting. The plate ejection mechanism has lifting space. as well as The lifting mechanism is mounted on the frame and located in the lifting space. When the lifting mechanism rises to a position higher than the plate ejection mechanism, the lifting mechanism can drive the plate to move in a first direction.

2. The plate-dispensing device as described in claim 1, characterized in that, The feeding mechanism includes a plurality of first roller assemblies, which are spaced apart on the frame along a first direction. Each first roller assembly includes a first rotating shaft and a plurality of first rollers sleeved on the first rotating shaft. The first rotating shaft extends along a second direction, and the plurality of first rollers are spaced apart on the first rotating shaft along the second direction and rotate around the first rotating shaft in the same direction.

3. The plate-dispensing device as described in claim 1, characterized in that, The plate ejection mechanism includes a plurality of second roller assemblies, which are spaced apart on the frame along a second direction. Each second roller assembly includes a second rotating shaft and a plurality of second rollers sleeved on the second rotating shaft. The second rotating shaft extends along a first direction, and the plurality of second rollers are spaced apart on the second rotating shaft along the first direction and rotate around the second rotating shaft in the same direction. When multiple second roller assemblies are installed on the frame, the multiple second rollers form multiple rows of roller rows spaced apart along the first direction, and the interval between any two adjacent rows of roller rows forms a first lifting space; the interval between any two adjacent columns of second roller assemblies forms a second lifting space; the first lifting space and the second lifting space constitute the lifting space.

4. The plate-dispensing device as described in claim 3, characterized in that, The lifting mechanism includes: Support components; A conveying assembly, mounted on the support member, includes a plurality of third roller assemblies spaced apart along a first direction. Each third roller assembly is correspondingly disposed in a first lifting space. Each third roller assembly includes a third rotating shaft and a plurality of third rollers sleeved on the third rotating shaft. The third rotating shaft extends along a second direction, and the plurality of third rollers are spaced apart along the second direction on the third rotating shaft and rotate around the third rotating shaft in the same direction. A power unit is mounted on the frame and drives the support member.

5. The plate-dispensing device as described in claim 4, characterized in that, The support member includes: A first crossbeam, the power component drivingly connecting the first crossbeam, at least two first crossbeams spaced apart along a first direction, each first crossbeam extending along a second direction; and The second crossbeam is installed on the side of the first crossbeam near the third roller assembly. The third roller assembly is installed on the second crossbeam. At least two second crossbeams are spaced apart along the second direction. Each second crossbeam extends along the second direction and is correspondingly located in a second lifting space.

6. The plate-dispensing device as described in claim 4, characterized in that, The lifting mechanism further includes a guide component, which is installed on the support member and located between the plate-in mechanism and the conveying component to guide the plate from the plate-in mechanism to the conveying component.

7. The plate-dispensing device as described in claim 1, characterized in that, The plate feeding device further includes a baffle plate, which is installed at the end of the plate feeding mechanism away from the plate feeding mechanism.

8. The plate-dispensing device as described in claim 1, characterized in that, The plate-dispensing device also includes an adsorption device, which is vertically mounted on the frame and can move along a first direction on the frame.

9. The plate-dispensing device as described in any one of claims 1 to 8, characterized in that, It also includes a housing, which is sleeved around the frame. The housing includes a first sidewall and a second sidewall spaced apart along a first direction, and a third sidewall and a fourth sidewall spaced apart along a second direction. The first sidewall has an inlet for the plate to pass through at the position of the plate feeding mechanism, and the fourth sidewall has an outlet for the plate to pass through at the position of the plate discharging mechanism.

10. A VCP electroplating production line, characterized in that, It includes a conveyor line, an electroplating line, and a plate feeding device as described in any one of claims 1 to 9; the conveyor line extends along a first direction and is connected to the plate feeding mechanism; the electroplating line extends along a second direction and is connected to the plate discharging mechanism.