Circuit board ultrasonic cleaning's frame of keeping in
Technical Field
The utility model relates to a temporary storage rack, in particular to a temporary storage rack for ultrasonic cleaning of a circuit board.
Background
The ultrasonic cleaning technology is an efficient and accurate cleaning method suitable for the circuit board, in the ultrasonic cleaning process of the circuit board, a cleaning machine is generally used for cleaning the circuit board in batches, a plurality of circuit boards are intensively placed in a special board placing frame/frame for cleaning, after the cleaning is finished, the board placing frame/frame for placing the circuit board is taken away and transported to the next process through a mechanical arm or manually, when the connection is unsmooth during transportation, when the board placing frame/frame after the cleaning cannot be transported away in time, the circuit board remained in a cleaning station can influence the normal operation of the subsequent cleaning, the shutdown is possibly caused seriously, and the processing efficiency of equipment is greatly influenced.
Disclosure of utility model
In order to overcome the defects that connection is not smooth during transfer, when a cleaned circuit board placing frame/frame cannot be timely carried away, the circuit board retained in a cleaning station can influence the normal operation of subsequent cleaning work, downtime is seriously possibly caused, and the processing efficiency of equipment is greatly influenced, the utility model aims to provide the circuit board ultrasonic cleaning temporary storage frame for the circuit board which cannot be timely transferred.
The technical scheme is that the temporary storage rack for ultrasonic cleaning of the circuit board comprises a storage rack, a storage board, a fixing seat, a rotating shaft, a motor, a conveying piece and pushing pieces, wherein the storage board is fixedly arranged on the storage rack, the fixing seat is arranged on the upper right side of the storage rack, the rotating shaft is rotatably arranged on the left side of the storage board, the motor is installed on the lower portion of the fixing seat, the conveying piece is arranged between the rotating shaft and an output shaft of the motor, a plurality of pushing pieces are uniformly arranged on the conveying piece at intervals, and a material opening is formed in the front side of the right portion of the storage rack.
As the improvement of above-mentioned scheme, still including electronic slide rail one, lifter plate and leading truck, storage rack front portion right side is provided with electronic slide rail one, fixedly connected with lifter plate on the slider of electronic slide rail one, and storage rack front portion is close to the fixed leading truck that is equipped with in material mouth left side department, lifter plate and leading truck sliding contact.
As the improvement of above-mentioned scheme, still including electronic slide rail two and kicking block, storage rack upper portion right side is provided with electronic slide rail two, fixedly connected with kicking block on the slider of electronic slide rail two.
As an improvement of the scheme, the device further comprises sensors, and the pushing blocks are provided with the sensors.
As an improvement of the scheme, the storage rack further comprises a rolling shaft, and a plurality of rolling shafts are uniformly arranged around the right part of the storage rack.
As an improvement of the scheme, the storage plate is provided with a water draining tank.
The circuit board storage rack has the advantages that 1, the circuit boards which are not transferred in time after being cleaned are stored by arranging the storage rack capable of storing a plurality of circuit board storage frames, so that the risk that the processing is affected due to the fact that materials cannot be transferred in time is avoided.
2. According to the utility model, the arranged conveying parts and pushing blocks are used for carrying out ordered storage on the circuit board containing placing frames in the storage rack, manual placement is not needed, when the circuit board is required to be taken away, the circuit board can be quickly moved to the discharge port, and the circuit board containing frame is convenient to take and place.
3. When the circuit board in the storage rack is taken out, the circuit board placing frame at the discharge hole is pushed out to the lifting plate through the electric sliding rail I, and the lifting plate is controlled to move to a height suitable for carrying through the electric sliding rail I, so that the circuit board storage rack is convenient to use.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic perspective view of the storage rack, the fixing seat, the rolling shaft and other parts.
FIG. 3 is a schematic perspective view of the storage plate and the conveying member
The reference number of the drawing is 1-storage rack, 2-storage plate, 21-fixing seat, 3-rotating shaft, 4-motor, 5-conveying piece, 6-pushing block, 7-electric first sliding rail, 8-lifting plate, 81-guide frame, 9-electric second sliding rail, 10-pushing block, 11-sensor, 12-draining tank and 13-rolling shaft.
Detailed Description
The technical solution is further described below with reference to specific embodiments, and it should be noted that words indicating orientations, such as up, down, left, right, etc., are used herein only for positions of the illustrated structure in the corresponding drawings. The reference numerals used for the components, such as first, second, etc., are used herein only to distinguish the described objects and do not have any sequential or technical meaning. The application includes both direct and indirect connections (couplings), unless specifically indicated.
Embodiment 1A circuit board ultrasonic cleaning's temporary storage rack, as shown in figure 1-2, including storage rack 1, storage board 2, fixing base 21, pivot 3, motor 4, conveyer 5 and pusher 6, storage rack 1 is last to be fixed to be equipped with can deposit a plurality of boards/frame's storage board 2, storage rack 1 right side upper portion is equipped with the fixing base 21 of installation drive unit, storage board 2 left side rotation is equipped with the pivot 3 of installation transmission, the motor 4 of drive transmission is installed to the fixing base 21 lower part, conveyer 5 that is equipped with between the output shaft of pivot 3 and motor 4, the interval evenly is equipped with a plurality of drives boards/frame and deposits the pusher 6 of storage board 2 on the conveyer 5, the reservation material mouth that is used for putting boards/frame entering is opened to storage rack 1 right part front side.
When the board placing frames/frames with a plurality of circuit boards are required to be temporarily stored, the board placing frames/frames are pushed into the storage board 2 from the material opening, the board placing frames/frames are required to be placed between the two pushing blocks 6, the motor 4 is started, the pushing blocks 6 are driven by the conveying piece 5 to move the board placing frames/frames placed at the material opening of the storage rack 1 into the storage board 2, the board placing frames are quickly moved into the vacant positions in the storage rack 1 to be orderly stored, manual placement is not required, when the board is required to be taken away, the pushing blocks 6 on the conveying piece 5 can quickly move the circuit boards to the material opening, the taking and the placing are convenient, and compared with a conventional layered goods shelf, the temporary storage rack is low in height, convenient to carry and store objects, labor-saving in operation, time consumption of manual storage and manual storage is reduced, and work efficiency is improved.
Embodiment 2 based on embodiment 1, as shown in fig. 1-2, the device further comprises an electric slide rail I7, a lifting plate 8 and a guide frame 81, wherein the electric slide rail I7 is arranged on the right side of the front part of the storage rack 1, the lifting plate 8 with controllable height is fixedly connected to a sliding block of the electric slide rail I7, the guide frame 81 which is used for preventing the lifting plate 8 from inclining when moving is fixedly arranged at the left side of the front part of the storage rack 1 close to a material port, the lifting plate 8 is in sliding contact with the guide frame 81, when a board placing frame/frame for storing a circuit board is required to be stored in the board placing frame 2, the lifting plate 7 is controlled to move to a height suitable for placing materials into the lifting plate, then the lifting plate 8 is controlled to be lifted to a position consistent with the height of the storage plate 2, the material frame is pushed into the storage plate 2, the material frame is not required to be directly conveyed into the storage rack 1 with high height by manpower, labor is saved, and the device is convenient to use.
As shown in fig. 1-2, the storage rack further comprises a second electric sliding rail 9 and a top block 10, wherein the second electric sliding rail 9 for providing power for pushing the discharging frame outwards is arranged on the right side of the upper part of the storage rack 1, and the top block 10 for pushing the material frame outwards from the storage plate 2 is fixedly connected to the sliding block of the second electric sliding rail 9.
When the board placing frames/frames for storing the circuit boards need to be taken out, one board placing frame/frame in the storage rack 2 is moved to the material opening on the storage rack 1 by conveying 5 pieces, the circuit board placing frame at the material outlet is pushed out to the lifting plate 8 by the electric sliding rail II 9, and the lifting plate 7 is controlled to be moved to a height suitable for carrying by the electric sliding rail I7, so that the use is more convenient.
In a specific embodiment, as shown in fig. 1 and 3, the device further comprises a sensor 11, the pushing blocks 6 are respectively provided with a sensor 11 for detecting whether materials are stored in the storage position, information detected by the sensors 11 is fed back into the motor 4, and the running direction of the motor is accurately controlled, namely when a material frame for storing a circuit board is put into the storage rack 1, the pushing blocks 6 without the material frame between the two pushing blocks are accurately moved to the material hole of the storage rack 1, and when the circuit board is required to be taken away, the material discharging frame/frame on the storage board 2 is moved to the material hole, so that manual intervention is reduced, and the device is convenient to use.
In a specific embodiment, as shown in fig. 1-2, the storage rack further comprises a roller 13, wherein a plurality of rollers 13 are uniformly arranged around the right part of the storage rack 1, and the purpose of the roller 13 is to reduce friction contact between the discharging rack/frame and the storage rack 1 when moving on the storage board 2, and reduce the work load of the driving motor 4 of the conveying member 5 and the friction loss of the storage rack 1.
In a specific embodiment, the storage plate 2 is provided with the draining groove 12, so that residual liquid on the circuit board is prevented from dripping onto the storage plate 2 in the storage rack 1, the frequency of manual cleaning is reduced, and the cleaning and drying of the storage area are maintained.
The foregoing is merely exemplary of the present utility model and is not intended to limit the present utility model. All equivalents and alternatives falling within the spirit of the utility model are intended to be included within the scope of the utility model. What is not elaborated on the utility model belongs to the prior art which is known to the person skilled in the art.