Quantitative packaging equipment
By designing a quantitative packaging device, which utilizes a vibrating plate and a flipping component to achieve automated quantitative packaging of crystal heads, the problem of cumbersome packaging processes in existing technologies is solved, and production efficiency is improved.
Patent Information
- Application Number
- CN202422977593.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In the existing technology, the packaging process after the crystal head is assembled is cumbersome, requires a lot of manpower, and has low packaging efficiency.
Design a quantitative packaging device, including a vibrating plate, a quantitative feeding mechanism and a receiving plate, to realize the quantitative conveying and automatic packaging of crystal heads through a blocking mechanism and a flipping component, and to use a receiving cylinder and a receiving bag for automated collection.
It enables automated quantitative packaging of crystal heads, reduces manual intervention, improves production efficiency, and saves packaging time.
Smart Images

Figure CN223467380U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packing device technical field, concretely is a kind of ration packing equipment. BACKGROUND
[0002] Crystal head and network interface connection to carry out network communication, it is very important network interface connecting component, currently crystal head is carried out when assembling production, after assembling is completed, when discharging packing, most are directly utilized collection box to collect the crystal head of assembling completion, then again another packing, need a large amount of manual packing auxiliary, working procedure is more cumbersome, and packaging efficiency is lower. CONTENT OF UTILITY MODEL
[0003] The utility model aims at providing a kind of ration packing equipment to solve the technical problem in the background art.
[0004] To achieve the foregoing object, the utility model provides the following technical scheme:
[0005] A kind of ration packing equipment, including rack and control panel being located on the rack, the rack top is equipped with vibration disc, ration feeding mechanism and receiving tray, the vibration disc is communicated with ration feeding mechanism by feeding track, the ration feeding mechanism is fixedly installed with rack by first mounting seat, the ration feeding mechanism is slidably connected above first mounting seat, the first mounting seat is fixedly connected with rack, the ration feeding mechanism is above receiving tray, the receiving tray is rotatably installed on rack for receiving the crystal head conveyed by ration feeding mechanism.
[0006] Feeding track and ration feeding mechanism between being equipped with material blocking mechanism for the crystal head in the feeding track is intercepted, the material blocking mechanism includes first cylinder and first baffle, the first cylinder is fixed above first mounting seat by first support block, the first cylinder is driven installation with first baffle, the first baffle straddles the conveying channel in the feeding track, for the crystal head in the conveying channel is intercepted.
[0007] The quantitative feeding mechanism comprises a second cylinder and a sliding plate, the second cylinder is fixed on the first mounting seat and is drivingly connected with the sliding plate, the second cylinder drives the sliding plate to move to the feeding track direction, a first blanking through hole is arranged above the first mounting seat, a second blanking through hole corresponding to the first blanking through hole is arranged on the sliding plate, first and second fixed blocks are respectively arranged on the left and right sides of the second blanking through hole, the spacing between the first and second fixed blocks forms a feeding channel, the feeding channel is communicated with the discharge port of the feeding track, a third fixed block is arranged on the side of the first and second fixed blocks away from the feeding track, the third fixed block spans the feeding channel, a turnover assembly is arranged on one side of the first or second fixed block, and the turnover assembly is used for uniformly blanking and conveying the crystal head in the feeding channel to the material collecting disc.
[0008] The turnover assembly is arranged in the first fixed block, the turnover assembly comprises a third cylinder and a rotating plate, a rotating shaft is arranged on the rotating plate, the two ends of the rotating shaft are fixedly arranged with the first support block and the first fixed block, and the rotating plate is supported in the feeding channel; the second cylinder is fixed on the sliding plate, the third cylinder is drivingly arranged with the rotating plate through a driving arm, one end of the driving arm is hinged with the driving shaft of the third cylinder, and the other end of the driving arm is hinged with the upper side of the rotating plate, and the third cylinder drives the rotating plate to be turned up and down in the feeding channel along the axis of the rotating shaft.
[0009] A limiting hole is arranged on the third fixed block, a limiting plate is arranged in the limiting hole, one end of the limiting plate is inserted into the feeding channel, a fixing hole is arranged on the limiting hole, the fixing hole is communicated with the limiting hole, and a positioning screw is threadedly connected with the limiting plate and abuts against the limiting plate to be locked.
[0010] The material collecting disc comprises a material collecting turntable and a first driving member for driving the turntable to rotate, the first driving member is arranged in the rack, the material collecting turntable comprises a first support disc and a second support disc, the first support disc and the second support disc are coaxially arranged in disc structures, a plurality of support columns are arranged between the first support disc and the second support disc, and the two ends of the support columns are fixedly arranged with the first support disc and the second support disc.
[0011] A plurality of mounting through holes are arranged on the first support disc and correspond to the positions of the material collecting barrels, and the material collecting barrels are correspondingly inserted into the mounting through holes.
[0012] An inlet through hole is arranged in the middle of the material collecting barrel, the inlet through hole penetrates the upper and lower ends of the material collecting barrel, the upper end of the material collecting barrel is an inlet part, the lower end of the material collecting barrel is an outlet part, the inlet part is above the first support disc, and the outlet part is below the first support disc.
[0013] The inlet part is a trumpet-shaped opening structure, and the diameter of the top surface of the inlet part is greater than the diameter of the mounting through hole.
[0014] Compared with the prior art, the quantitative packaging equipment provided by the utility model is convenient to use, the crystal heads are fed one by one into the quantitative feeding mechanism through the vibrating disc, the crystal heads are intercepted and conveyed by the material blocking mechanism after reaching the set quantity, and then fall into the material collecting disc through the rotating plate, the material collecting bag is sleeved on the discharging part of the material collecting cylinder, the crystal heads fall into the material collecting bag from the upper part of the material collecting cylinder for collection, and the disc rotates to send the next material collecting cylinder for collection after the collection is completed, the equipment can directly package on the production line, the quantitative packaging setting is achieved, the packaging time of the crystal heads is saved, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The utility model discloses a three-dimensional structure schematic diagram of the application;
[0016] Figure 2 The utility model discloses a material blocking mechanism three-dimensional structure drawing;
[0017] Figure 3 The utility model discloses a material collecting disc front view;
[0018] Figure 4 The utility model discloses a quantitative feeding mechanism three-dimensional structure drawing;
[0019] Figure 5 The utility model discloses a quantitative feeding mechanism internal structure schematic diagram;
[0020] Figure 6 The utility model discloses a turnover assembly and sliding plate mounting structure schematic diagram;
[0021] Figure 7 The utility model discloses a turnover assembly three-dimensional structure drawing. DETAILED DESCRIPTION
[0022] The technical scheme in the utility model embodiment will be clearly and completely described below with reference to the drawings in the utility model embodiment.
[0023] Specific embodiment 1: please refer to Figures 1 to 7 In the utility model embodiment, a quantitative packaging equipment includes frame 1 and control panel 2 arranged on frame 1, vibrating disc 7, quantitative feeding mechanism 12 and material collecting disc 3 are arranged above frame 1, vibrating disc 7 is connected with quantitative feeding mechanism 12 through feeding track 8, quantitative feeding mechanism 12 is fixedly installed with frame 1 through first mounting seat 11, quantitative feeding mechanism 12 is slidably connected above first mounting seat 11, first mounting seat 11 is fixedly connected with frame 1, quantitative feeding mechanism 12 is above material collecting disc 3, and material collecting disc 3 is rotatably installed on frame 1 and used for receiving the crystal head conveyed by quantitative feeding mechanism 12.
[0024] A material blocking mechanism 9 is arranged between the feeding track 8 and the quantitative feeding mechanism 12 for intercepting the crystal head in the feeding track 8. The material blocking mechanism 9 comprises a first cylinder 901 and a first blocking strip 902. The first cylinder 901 is fixed above the first mounting base 11 through a first supporting block 10. The first cylinder 901 is drivingly connected with the first blocking strip 902. The first blocking strip 902 spans the conveying channel in the feeding track 8 for intercepting the crystal head in the conveying channel. A first sensor is arranged above the first blocking strip 902 for detecting the crystal head in the conveying channel.
[0025] The quantitative feeding mechanism 12 comprises a second cylinder 14 and a sliding plate 13. The second cylinder 14 is fixed on the first mounting base 11 and drivingly connected with the sliding plate 13. The second cylinder 14 drives the sliding plate 13 to move towards the feeding track 8. A first material dropping through hole is arranged above the first mounting base 11. A second material dropping through hole 1301 is arranged on the sliding plate 13 corresponding to the first material dropping through hole. The second material dropping through hole 1301 is in communication with the first material dropping through hole. First and second fixed blocks 15 and 16 are respectively arranged on the left and right sides of the second material dropping through hole 1301. The spacing between the first and second fixed blocks 15 and 16 forms a feeding channel. The feeding channel is in communication with the discharge port of the feeding track 8. A third fixed block 17 is arranged on the side of the first and second fixed blocks 15 and 16 away from the feeding track 8. The third fixed block 17 spans the feeding channel. A turnover assembly 18 is arranged on one side of the first or second fixed block 15 or 16. The turnover assembly 18 is used for uniformly dropping and conveying the crystal head in the feeding channel to the material collecting disc 3. A funnel 22 is arranged on the sliding plate 13 and penetrates through the first and second material dropping through holes for guiding the material. The crystal head is conveyed from the feeding channel to the material collecting disc 3.
[0026] The turnover assembly 18 is arranged in the first fixed block 15. The turnover assembly 18 comprises a third cylinder 1801 and a rotating plate 1803. A rotating shaft 1804 is arranged on the rotating plate 1803. The two ends of the rotating shaft 1804 are respectively fixedly arranged with the first supporting block 10 and the first fixed block 15. The rotating plate 1803 is supported in the feeding channel. The second cylinder 14 is fixed on the sliding plate 13. The third cylinder 1801 is drivingly connected with the rotating plate 1803 through a driving arm 1802. One end of the driving arm 1802 is hingedly connected with the driving shaft of the third cylinder 1801. The other end of the driving arm 1802 is hingedly connected with the upper side of the rotating plate 1803. The third cylinder 1801 drives the rotating plate 1803 to rotate up and down along the axis of the rotating shaft 1804 in the feeding channel for feeding. A plurality of second sensors 21 are arranged above the rotating plate 1803 for detecting the number of input crystal heads. The corresponding number of second sensors can be arranged according to the production quantity.
[0027] The third fixed block 17 is provided with a limiting hole 1702, a limiting plate 20 is installed in the limiting hole 1702, one end of the limiting plate 20 is inserted into the feeding channel, the limiting hole 1702 is provided with a fixing hole 1701, the fixing hole is communicated with the limiting hole 1702, the fixing hole 1701 is screwed with a positioning screw abutting against and locking the limiting plate 20, the number of crystal heads placed on the rotating plate 1803 can be adjusted by adjusting the depth of the limiting plate 20 inserted into the feeding channel, and the quantitative conveying of different numbers of crystal heads is realized.
[0028] The material receiving disc 3 comprises a material receiving turntable 4 and a first driving member 5 for driving the turntable to rotate, the first driving member 5 is installed in the rack 1, the material receiving turntable 4 comprises a first support disc 401 and a second support disc 402, both of which are disc structures and are coaxially installed, a plurality of support columns 403 are installed between the first support disc 401 and the second support disc 402, the two ends of the support column 403 are fixedly installed with the first support disc 401 and the second support disc 402 respectively, a plurality of material receiving barrels 6 are uniformly distributed on the first support disc 401 along the axis thereof, and the material receiving barrels 6 are below the quantitative feeding mechanism 12.
[0029] A plurality of installation through holes corresponding to the positions of the material receiving barrels 6 are arranged on the first support disc 401, the material receiving barrels 6 are correspondingly inserted into the installation through holes, a corresponding number of material receiving barrels 6 can be placed according to production needs, a material inlet through hole 603 is arranged in the middle of a single material receiving barrel 6, the material inlet through hole 603 penetrates through the upper and lower ends of the material receiving barrel 6, the upper end of the material receiving barrel 6 is a material inlet portion 601, and the lower end of the material receiving barrel 6 is a material outlet portion 602, the material inlet portion 601 is above the first support disc 401, the material outlet portion 602 is below the first support disc 401, the material inlet portion 601 is a trumpet-shaped opening structure, and the diameter of the top surface of the material inlet portion 601 is greater than the diameter of the installation through hole.
[0030] Working principle: the crystal head is placed into the vibrating disc 7 for single conveying, the crystal head is conveyed along the feeding track 8 to the quantitative feeding mechanism 12, the crystal head is placed side by side above the rotating plate 1803, until the set number is reached, the first blocking strip 902 on the blocking mechanism 9 isolates the crystal head in the feeding track 8 from the quantitative feeding mechanism 12, at the same time, the second cylinder 14 drives the sliding plate 13 to slide to the side away from the feeding track 8, the rotating plate 1803 is turned down under the driving of the third cylinder 1801, the crystal head is quantitatively put into the corresponding material receiving barrel 6, a material receiving bag is sleeved outside the material outlet portion 602 of the material receiving barrel 6 to collect the crystal head, after a set number of crystal heads are collected, the material receiving disc 3 is rotated to place another material receiving barrel 6 below the first material inlet through hole, and waits for the next collection, the operating personnel take down the material receiving bag full of crystal heads on one side of the equipment, replace a new collecting bag to the material receiving disc at the same time, and the sliding plate 13 is also reset for the next round of crystal head conveying, and the operation is repeated in this way.
[0031] Compared with the prior art, the quantitative packing equipment provided by the utility model is convenient to use, the crystal head is fed one by one into the quantitative feeding mechanism through the vibrating disc, the blocking mechanism intercepts the crystal head for conveying after reaching the set quantity, and then the crystal head is turned over and falls into the material collecting disc through the rotating plate, the material collecting bag is sleeved on the discharging part of the material collecting cylinder, the crystal head falls into the material collecting bag from the upper part of the material collecting cylinder for collection, and the turntable rotates to send the next material collecting cylinder for collection after the collection is completed, the equipment can directly pack on the production line, the quantitative packing setting is achieved, the time for packing the crystal head is saved, and the production efficiency is improved.
[0032] It is apparent for those skilled in the art that the utility model is not limited to the details of the foregoing exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the utility model. Therefore, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the foregoing description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.
[0033] Furthermore, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, and those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be combined appropriately to form other embodiments that those skilled in the art can understand.
Claims
1. A dosing and packaging apparatus, characterized in that: The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism.
2. A dosing and packaging apparatus according to claim 1, characterized in that The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism.
3. A dosing and packaging apparatus according to claim 1, characterized in that: The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism.
4. A dosing and packaging apparatus according to claim 3, characterized in that: The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism.
5. A dosing and packaging apparatus according to claim 4, characterized in that: The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism. The utility model provides a kind of automatic crystal tip feeding machine, including rack and control panel arranged on rack, and rack is provided with vibration disc, ration feeding mechanism and receiving disc above, and vibration disc is communicated with ration feeding mechanism by feeding track, and ration feeding mechanism is fixedly installed with rack by first mounting base, and ration feeding mechanism is slidably connected above first mounting base, and first mounting base is fixedly connected with rack, and ration feeding mechanism is above receiving disc, and receiving disc is rotatably installed on rack for receiving the crystal tip transported by ration feeding mechanism.
6. A dosing and packaging apparatus according to any one of claims 1-5, characterized in that: The collecting disc comprises a collecting turntable and a first driving member for driving the rotation of the turntable, the first driving member is installed in the frame, the collecting turntable comprises a first supporting disc and a second supporting disc, the first supporting disc and the second supporting disc are coaxially installed in disc structure, a plurality of supporting columns are installed between the first supporting disc and the second supporting disc, the two ends of the supporting column are fixedly installed with the first supporting disc and the second supporting disc respectively, a plurality of collecting barrels are uniformly distributed on the first supporting disc along the axis, and the collecting barrels are below the quantitative feeding mechanism.
7. A dosing and packaging apparatus according to claim 6, characterized in that: A plurality of installation through holes corresponding to the positions of the collecting barrels are arranged on the first supporting disc, and the collecting barrels are inserted into the installation through holes correspondingly.
8. A dosing and packaging apparatus according to claim 7, characterized in that: A feeding through hole is arranged in the middle of the collecting barrel, the feeding through hole penetrates the upper and lower ends of the collecting barrel, the upper end of the collecting barrel is a feeding part, the lower end of the collecting barrel is a discharging part, the feeding part is above the first supporting disc, and the discharging part is below the first supporting disc.
9. A dosing and packaging apparatus according to claim 8, characterized in that: The feeding part is a horn-shaped opening structure, and the diameter of the top surface of the feeding part is greater than the diameter of the installation through hole.