USB chip package storage device
By introducing a feeding mechanism and a cleaning mechanism during the USB chip packaging process, the cleaning force is automatically detected and adjusted, solving the problems of difficulty in removing and frequent cleaning caused by residual plastic packaging material, and achieving an efficient cleaning effect.
Patent Information
- Application Number
- CN202411470753.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2044-10-21
AI Technical Summary
During the USB chip packaging process, the residual plastic packaging material and the plastic packaging box are adhered to each other, which increases the difficulty for workers to remove the plastic packaging box and the workload, and requires frequent mold cleaning.
A USB chip packaging storage device is designed, which includes a blanking mechanism and a cleaning mechanism. The blanking mechanism automatically adjusts the cleaning force of the cleaning mechanism by detecting the change in thrust when the plastic packaging box is separated from the mold, so as to clean the residual plastic packaging material on the mold surface.
It effectively prevents the plastic packaging material residue from spreading into the production environment, reduces the labor intensity of the staff, and improves production efficiency and cleaning effect.
Smart Images

Figure CN119446973B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of chip packaging, in particular to a USB chip packaging storage device. Background Art
[0002] A USB chip is a chip that communicates according to the USB bus protocol and converts USB communication content into other interfaces (such as SPI, I2C) or potential signals through an MCU (such as a 51 single-chip microcomputer) to control other devices. The USB chip production process is a complex and delicate process that involves multiple key steps to ensure the quality and performance of the final product.
[0003] Among them, the USB chip packaging process is an important link in the chip manufacturing process. It aims to wrap and protect components such as chips, metal leads and brackets, and achieve the goal of appearance molding. In the USB chip plastic packaging process, the packaging device usually includes molds, plastic packaging material injection systems, heating and cooling systems and other parts. During the molding stage, these devices control parameters such as temperature, pressure and time to make the plastic packaging material softened by heat and fill the mold, and then solidify and form it.
[0004] During the packaging process, the plastic encapsulation compound softens and flows after being heated to fill the space in the mold and cover the chip. However, due to the fluidity characteristics of the plastic encapsulation compound and the complex structure of the mold, some of the plastic encapsulation compound cannot be completely separated from the mold surface or fine structure, and thus remains in the mold after the plastic encapsulation box is removed. This residual plastic encapsulation compound will stick to the plastic encapsulation box, which not only increases the difficulty of workers removing the plastic encapsulation box, but also requires workers to clean the mold in time after each removal of the plastic encapsulation box, increasing the workload of workers. To this end, we propose a USB chip packaging storage device. Summary of the Invention
[0005] The present invention aims to provide a USB chip packaging storage device to solve the problem in the above-mentioned background art that residual plastic packaging material may stick to the plastic packaging box, which not only increases the difficulty for workers to remove the plastic packaging box, but also requires workers to clean the mold in time after each removal of the plastic packaging box, thereby increasing the workload of the workers.
[0006] To achieve the above object, the present invention provides the following technical solution: a USB chip packaging storage device, comprising a packaging machine body; and a plastic packaging box, which can be fitted with a mold in the packaging machine body;
[0007] The unloading mechanism is connected to the packaging machine body. The unloading mechanism transfers the plastic packaging box containing the chips into the mold of the packaging machine body and separates the plastic packaging box from the packaging machine body after the chips are plastic-sealed. The unloading mechanism automatically monitors the change in the thrust of the unloading mechanism on the plastic packaging box before and after the plastic packaging box is separated from the packaging machine body.
[0008] The cleaning mechanism is located outside the mold of the packaging machine body. When the blanking mechanism separates the plastic packaging box from the packaging machine body, the cleaning mechanism selects different cleaning forces when cleaning the mold of the packaging machine body according to the thrust changes monitored by the blanking mechanism.
[0009] Among them, the unloading mechanism includes a support plate, a plurality of grooves are provided on the surface of the support plate, the grooves are used to place the plastic sealing box handles, a limiter is provided on the surface of the support plate for fixing the plastic sealing box handles, a movable plate is provided at the bottom of the support plate, and an upper push piece is provided between the movable plate and the support plate to push the support plate to move, and the upper push piece detects the change in thrust on the plastic sealing box when lifting the support plate, a pneumatic telescopic rod is fixedly connected to the inner side of the movable plate, the pneumatic telescopic rod is installed on the surface of the packaging machine body, a telescopic column is fixedly connected to the side of the movable plate close to the pneumatic telescopic rod, and the telescopic column is fixedly connected to the packaging machine body at the end away from the movable plate.
[0010] Among them, the limit part includes a limit cover, a rubber plate fixedly connected to the limit cover near the support plate, the rubber plate is arc-shaped near one end of the support plate, one end of the limit cover is fixedly connected to a rotating rod, the rotating rod is rotatably connected to the inner wall of the support plate, the inner wall of the rotating rod is slidably connected to the limit rod, both sides of the limit rod pass through the inner wall of the rotating rod, the inner wall of the support plate is provided with a limit groove engaged with the limit rod, the limit groove is divided into a clamping part and a rotating part, one end of the limit rod abuts against an extrusion plate, a reset spring is fixedly connected to the outside of the extrusion plate, the reset spring is fixedly connected to the inner wall of the rotating rod, and the other end of the limit rod passes through the rotating rod and is connected to the outside.
[0011] Among them, the upper push piece includes a push rod fixedly connected to the bottom of the support plate, a fixed cylinder fixedly connected above the movable plate, a piston plate fixedly connected to one end of the push rod close to the fixed cylinder, the piston plate is slidingly connected to the inner wall of the fixed cylinder, an air transmission part is provided on the outside of the fixed cylinder, and a pressure sensor is installed on the inner wall of the fixed cylinder.
[0012] Among them, the gas delivery component includes an air inlet pipe connected to the bottom of the fixed cylinder, the air inlet pipe is connected to a three-way valve at one end away from the fixed cylinder, the three-way valve is installed on the inner wall of the packaging machine body, the inlet of the three-way valve is connected to the air delivery pipe, the air delivery pipe is connected to an air pump at one end away from the three-way valve, the air pump is connected to the pressure sensor, and the air pump is installed on the inner wall of the packaging machine body.
[0013] Among them, the cleaning mechanism includes fixed blocks located on both sides of the inner wall of the packaging machine body respectively. A Y-shaped tube is provided on the inner wall of the packaging machine body. One end of the Y-shaped tube is connected to the three-way valve, and the remaining two ends of the Y-shaped tube are respectively connected to the two fixed blocks. A connecting groove connected to the Y-shaped tube is provided on the inner wall of the fixed block. An air jet is fixedly connected to the outside of the fixed block. A plurality of corrugated parts are provided on the surface of the air jet. The air jet is connected to the connecting groove. A steering part is provided on the outside of the air jet. The steering part controls the air jet to spray toward the upper and lower mold surfaces of the packaging machine body.
[0014] Among them, the steering part includes a steering rod 1 fixedly connected to the outside of the jet pipe, the steering rod 1 is rotatably connected to the inner wall of the fixed block, the surface of the fixed block is equipped with a drive motor 1, the output end of the drive motor 1 is fixedly connected to the steering rod 1, the outside of the steering rod 1 is fixedly connected to a connecting seat, the inner wall of the connecting seat is rotatably connected to the steering rod 2, the jet pipe passes through the connecting seat and the steering rod 2, the surface of the connecting seat is equipped with a drive motor 2, the output end of the drive motor 2 is fixedly connected to the steering rod 2, and the drive motor 1 and the drive motor 2 work alternately.
[0015] There are two corrugated parts of the jet pipe, one is located between the second steering rod and the connecting seat, and the other is located between the first steering rod and the fixed block.
[0016] Among them, the inner wall of the connecting seat is provided with an adjusting part for adjusting the flow cross-section of the jet pipe when the steering rod 2 rotates. The adjusting part includes a transmission gear fixedly connected to the outer side of the steering rod 2, and two transmission tooth plates are engaged with the outer side of the transmission gear. The two transmission tooth plates are respectively located on both sides of the transmission gear. The transmission tooth plate is slidingly connected to the inner wall of the connecting seat, and an oblique end is provided at one end of the transmission tooth plate. An adjusting plate is slidingly connected to the outer side of the oblique end. The adjusting plate is slidingly connected to the inner wall of the connecting seat. The adjusting plate is located on the outside of the jet pipe. A compression spring is fixedly connected to the bottom of the adjusting plate, and one end of the compression spring is fixedly connected to the inner wall of the connecting seat.
[0017] The side of the regulating plate close to the air jet pipe is in an oblique transition.
[0018] The present invention has at least the following beneficial effects:
[0019] When the present application is in use, the plastic packaging box containing the chip is transferred to the mold surface of the packaging machine body through the provided unloading mechanism, and after the chip packaging is completed, the unloading mechanism automatically separates the plastic packaging box from the mold surface of the packaging machine body, and the unloading mechanism detects the thrust change before and after the separation of the plastic packaging box from the mold surface, thereby judging the residual amount of plastic packaging material stuck to the plastic packaging box in the mold. According to the thrust change detected by the unloading mechanism, the cleaning mechanism selects different cleaning forces when cleaning the mold of the packaging machine body, so as to clean up the residual plastic packaging material on the mold surface and avoid excessive cleaning force on the plastic packaging material, which may cause the residual plastic packaging material to be dispersed to other locations in the production environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is an overall schematic diagram of the present invention;
[0021] Figure 2 Schematic diagram of the internal structure of the present invention;
[0022] Figure 3 for Figure 2 Enlarged schematic diagram of area A in the middle;
[0023] Figure 4 for Figure 2 Enlarged schematic diagram of area B in the middle;
[0024] Figure 5 It is a partial cross-sectional schematic diagram of the support plate of the present invention;
[0025] Figure 6 for Figure 5 The middle C area amplifies the intention;
[0026] Figure 7 This is a side view of the gas transmission component;
[0027] Figure 8 This is a schematic diagram of the cleaning mechanism structure of the present invention;
[0028] Figure 9 It is a side cross-sectional schematic diagram of the fixing block of the present invention;
[0029] Figure 10 It is a schematic diagram of the structure of the adjusting member of the present invention.
[0030] Figure: 1. Packaging machine body; 2. Plastic packaging box; 3. Unloading mechanism; 30. Support plate; 31. Groove; 32. Limiting member; 33. Moving plate; 34. Ejector; 35. Pneumatic telescopic rod; 36. Telescopic column; 37. Limiting cover; 38. Rubber plate; 39. Rotating rod; 310. Limiting rod; 311. Limiting groove; 312. Clamping part; 313. Rotating part; 314. Extrusion plate; 315. Return spring; 316. Ejector rod; 317. Fixed cylinder; 318. Piston plate; 319 , gas transmission parts; 320, pressure sensor; 321, air inlet pipe; 322, three-way valve; 323, gas transmission pipe; 324, air pump; 4, cleaning mechanism; 40, fixing block; 41, Y-type tube; 42, connecting groove; 43, jet pipe; 44, steering parts; 45, steering rod one; 46, drive motor one; 47, connecting seat; 48, steering rod two; 49, drive motor two; 5, adjusting part; 50, transmission gear; 51, transmission gear plate; 52, oblique end; 53, adjusting plate; 54, compression spring. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] Example 1
[0033] See also Figures 1 to 10 The present invention provides a technical solution: a USB chip packaging storage device, comprising a packaging machine main body 1; also comprising a plastic packaging box 2, which can be fitted with a mold in the packaging machine main body 1; a blanking mechanism 3, which is connected to the packaging machine main body 1, and transfers the plastic packaging box 2 containing the chip into the mold of the packaging machine main body 1, and separates the plastic packaging box 2 from the packaging machine main body 1 after the chip is plastic-sealed, and the blanking mechanism 3 automatically monitors the thrust change of the blanking mechanism 3 on the plastic packaging box 2 before and after the plastic packaging box 2 is separated from the packaging machine main body 1; a cleaning mechanism 4, which is located outside the mold of the packaging machine main body 1, and when the blanking mechanism 3 separates the plastic packaging box 2 from the packaging machine main body 1, the cleaning mechanism 4 selects different cleaning forces when cleaning the mold of the packaging machine main body 1 according to the thrust change monitored by the blanking mechanism 3.
[0034] During use, the unloading robot of the production line transfers the unpackaged chip into the plastic packaging box 2, and the plastic packaging box 2 with the chip is transferred to the mold surface of the packaging machine body 1 through the unloading mechanism 3. The mold of the packaging machine body 1 is closed to cooperate with the sealing of the plastic packaging box 2. The packaging machine body 1 heats the plastic packaging material so that the heated plastic packaging material flows into the plastic packaging box 2 to package the chip. After the packaging machine body 1 cools down, the mold of the packaging machine body 1 is opened, and the unloading mechanism 3 automatically separates the plastic packaging box 2 from the mold surface of the packaging machine body 1. The unloading mechanism 3 detects the thrust change before and after the separation of the plastic packaging box 2 from the mold surface, thereby judging the residual amount of plastic packaging material stuck to the plastic packaging box 2 in the mold.
[0035] If there is a lot of residual plastic sealing material in the mold, the adhesion between the residual plastic sealing material and the plastic sealing box 2 will cause the thrust of the unloading mechanism 3 to increase. When the plastic sealing box 2 is completely separated from the mold of the packaging machine main body 1, the thrust of the unloading mechanism 3 on the plastic sealing box 2 is equal to the sum of the weight of the plastic sealing box 2 and the packaged chip. Therefore, the amount of residual plastic sealing material in the mold of the packaging machine main body 1 can be judged by the change in the thrust on the plastic sealing box 2.
[0036] By detecting the thrust change through the unloading mechanism 3, the cleaning mechanism 4 selects different cleaning forces when cleaning the mold of the packaging machine body 1, so as to clean the residual plastic encapsulation material on the surface of the mold, and avoid excessive cleaning force on the plastic encapsulation material causing the residual plastic encapsulation material to be dispersed to other locations in the production environment.
[0037] The unloading mechanism 3 includes a support plate 30, and a plurality of grooves 31 are provided on the surface of the support plate 30. The grooves 31 are used to place the handles of the plastic packaging box 2. A limit piece 32 for fixing the handles of the plastic packaging box 2 is provided on the surface of the support plate 30. A movable plate 33 is provided at the bottom of the support plate 30. An upper push piece 34 for pushing the support plate 30 to move is provided between the movable plate 33 and the support plate 30. The upper push piece 34 detects the thrust change when lifting the support plate 30. A pneumatic telescopic rod 35 is fixedly connected to the inner side of the movable plate 33. The pneumatic telescopic rod 35 is installed on the surface of the packaging machine body 1. A telescopic column 36 is fixedly connected to the side of the movable plate 33 close to the pneumatic telescopic rod 35. The telescopic column 36 is fixedly connected to the packaging machine body 1 at the end away from the movable plate 33.
[0038] After the chip is placed in the plastic packaging box 2, the handle of the plastic packaging box 2 is fitted into the groove 31 on the surface of the support plate 30, and the handle of the plastic packaging box 2 is fixed with the limit piece 32. After the plastic packaging box 2 is fixed, the pneumatic telescopic rod 35 contracts to drive the movable plate 33 to move, and the movable plate 33 drives the telescopic column 36 to contract, and the movement of the movable plate 33 drives the upper push piece 34 to move, and the upper push piece 34 drives the support plate 30 to move, so that the support plate 30 moves the plastic packaging box 2 to the top of the mold of the packaging machine body 1, and the upper push piece 34 contracts to drive the plastic packaging box 2 downward. The packaging machine body 1 moves so as to stick to the mold surface, and the mold of the packaging machine body 1 is closed to cooperate with the sealing of the plastic packaging box 2. The packaging machine body 1 heats the plastic packaging material so that the heated plastic packaging material flows into the plastic packaging box 2 to package the chip. After the packaging machine body 1 cools down, the mold of the packaging machine body 1 is opened, and the support plate 30 is lifted by the upper ejector 34. The support plate 30 drives the plastic packaging box 2 to separate from the mold surface of the packaging machine body 1. When the upper ejector 34 lifts the support plate 30, the thrust change is detected, and the cleaning force of the cleaning mechanism 4 is adjusted according to the thrust change.
[0039] The limiting member 32 includes a limiting cover 37, and a rubber plate 38 is fixedly connected to the side of the limiting cover 37 near the support plate 30. The rubber plate 38 is arc-shaped at one end near the support plate 30. One end of the limiting cover 37 is fixedly connected to a rotating rod 39, and the rotating rod 39 is rotatably connected to the inner wall of the support plate 30. The inner wall of the rotating rod 39 is slidably connected to the limiting rod 310. Both sides of the limiting rod 310 pass through the inner wall of the rotating rod 39, and the inner wall of the support plate 30 is provided with a limiting groove 311 that is engaged with the limiting rod 310. The limiting groove 311 is divided into a clamping part 312 and a rotating part 313. One end of the limiting rod 310 abuts against an extrusion plate 314, and a return spring 315 is fixedly connected to the outside of the extrusion plate 314. The return spring 315 is fixedly connected to the inner wall of the rotating rod 39, and the other end of the limiting rod 310 passes through the rotating rod 39 and communicates with the outside.
[0040] When the handle of the plastic sealing box 2 is released, the staff pushes the limit rod 310, and the limit rod 310 slides along the inner wall of the rotating rod 39. The limit rod 310 pushes the extrusion plate 314 so that the extrusion plate 314 squeezes the return spring 315, and the limit rod 310 slides on the inner wall of the supporting plate 30 when the inner wall of the rotating rod 39 slides, and the clamping part 312 of the limit groove 311 slides to the rotating part 313. At this time, the limit of the rotating rod 39 is released, and the staff rotates the limit cover 37 to separate the rubber plate 38 from the supporting plate 30, thereby releasing the clamping fixation of the handle of the plastic sealing box 2; similarly, the staff can rotate the limit cover 37 to make the limit cover 37 close to the supporting plate 30, and clamp the handle of the plastic sealing box 2 by cooperating with the rubber plate 38 and the groove 31 on the surface of the support plate 30.
[0041] The upper push piece 34 includes a push rod 316 fixedly connected to the bottom of the support plate 30, a fixed cylinder 317 fixedly connected above the movable plate 33, and a piston plate 318 fixedly connected to one end of the push rod 316 close to the fixed cylinder 317. The piston plate 318 is slidably connected to the inner wall of the fixed cylinder 317. An air delivery part 319 is provided on the outside of the fixed cylinder 317, and a pressure sensor 320 is installed on the inner wall of the fixed cylinder 317.
[0042] When the upper push piece 34 pushes the support plate 30 upward, air is injected into the inner wall of the fixed cylinder 317 through the air supply piece 319, so that the air pressure between the piston plate 318 and the bottom of the fixed cylinder 317 increases. The change of the air pressure at the bottom of the fixed cylinder 317 is detected by the pressure sensor 320, and the gas at the bottom of the fixed cylinder 317 generates an upward thrust on the piston plate 318. When the thrust of the air pressure on the piston plate 318 is sufficient to move the support plate 30 upward, the upward thrust of the air pressure between the piston plate 318 and the bottom of the fixed cylinder 317 on the piston plate 318 is equal to the sum of the weight of the plastic packaging box 2 and the packaged chips. The pressure when the support plate 30 is pushed is detected by the pressure sensor 320 and compared with the pressure when the support plate 30 is steadily rising. The greater the pressure change, the more residual plastic packaging material is in the mold of the packaging machine main body 1, and the greater the cleaning force of the cleaning mechanism 4 is controlled.
[0043] The air delivery component 319 includes an air inlet pipe 321 connected to the bottom of the fixed cylinder 317. The air inlet pipe 321 is connected to a three-way valve 322 at one end away from the fixed cylinder 317. The three-way valve 322 is installed on the inner wall of the packaging machine body 1. The inlet of the three-way valve 322 is connected to an air delivery pipe 323. The air delivery pipe 323 is connected to an air pump 324 at one end away from the three-way valve 322. The air pump 324 is connected to the pressure sensor 320. The air pump 324 is installed on the inner wall of the packaging machine body 1.
[0044] The air delivery member 319 operates in two stages. In the first stage, the support plate 30 is lifted upward. At this time, the three-way valve 322 controls the air delivery pipe 323 to communicate with the air inlet pipe 321. The output power of the air pump 324 is fixed. When the air pump 324 is in operation, it delivers air to the bottom of the fixed cylinder 317 through the air delivery pipe 323, the three-way valve 322, and the air inlet pipe 321. This increases the air pressure between the piston plate 318 and the bottom of the fixed cylinder 317, thereby pushing the piston plate 318 to slide on the inner wall of the fixed cylinder 317.
[0045] The second stage is the cleaning stage. When the air pressure at the bottom of the fixed cylinder 317 increases, causing the push rod 316 to separate the plastic packaging box 2 from the mold of the packaging machine body 1, the pneumatic telescopic rod 35 extends to drive the movable plate 33 to move, and the movable plate 33 drives the fixed cylinder 317 to move, so that the plastic packaging box 2 leaves between the upper and lower molds of the packaging machine body 1. The three-way valve 322 allows the gas pipe 323 to transport gas to the cleaning mechanism 4, and the output power of the air pump 324 is related to the pressure change detected by the pressure sensor 320. The greater the pressure change detected by the pressure sensor 320, the greater the resistance generated by the residual plastic packaging material when the plastic packaging box 2 is separated from the packaging machine body 1, that is, the more plastic packaging material remains on the surface of the mold of the packaging machine body 1, and the greater the output power of the air pump 324, so that the cleaning mechanism 4 will produce a greater cleaning force.
[0046] The cleaning mechanism 4 includes fixed blocks 40 respectively located on both sides of the inner wall of the packaging machine body 1. The inner wall of the packaging machine body 1 is provided with a Y-shaped tube 41. One end of the Y-shaped tube 41 is connected to the three-way valve 322, and the remaining two ends of the Y-shaped tube 41 are respectively connected to the two fixed blocks 40. The inner wall of the fixed block 40 is provided with a connecting groove 42 connected to the Y-shaped tube 41. The outer side of the fixed block 40 is fixedly connected to an air jet 43. The surface of the air jet 43 is provided with multiple corrugated parts. There are two corrugated parts of the air jet 43, one is located between the steering rod 2 48 and the connecting seat 47, and the other is located between the steering rod 1 45 and the fixed block 40. The air jet 43 is connected to the connecting groove 42. A steering member 44 is provided on the outside of the air jet 43. The steering member 44 controls the air jet 43 to spray toward the upper and lower mold surfaces of the packaging machine body 1.
[0047] When the cleaning mechanism 4 is working, the air pump 324 outputs gas to the air pipe 323. At this time, the three-way valve 322 connects the air pipe 323 with the Y-shaped tube 41. The gas in the air pipe 323 enters the connecting groove 42 of the fixed block 40 through the Y-shaped tube 41. The gas enters the jet pipe 43 through the connecting groove 42 and is ejected from the outlet of the jet pipe 43. The steering member 44 controls the jet pipe 43 to spray toward the upper and lower mold surfaces of the packaging machine body 1. The greater the output power of the air pump 324, the greater the cleaning force of the gas ejected by the jet pipe 43, so as to cooperate with the cleaning of the mold surface residues on the upper and lower sides of the packaging machine body 1.
[0048] The steering member 44 includes a steering rod 1 45 fixedly connected to the outer side of the air jet 43, and the steering rod 1 45 is rotatably connected to the inner wall of the fixed block 40. A drive motor 1 46 is installed on the surface of the fixed block 40, and the output end of the drive motor 1 46 is fixedly connected to the steering rod 1 45. A connecting seat 47 is fixedly connected to the outer side of the steering rod 1 45, and a steering rod 2 48 is rotatably connected to the inner wall of the connecting seat 47. The air jet 43 passes through the connecting seat 47 and the steering rod 2 48. A drive motor 2 49 is installed on the surface of the connecting seat 47, and the output end of the drive motor 2 49 is fixedly connected to the steering rod 2 48. The drive motor 1 46 and the drive motor 2 49 work alternately.
[0049] When the steering member 44 is working, the driving motor 1 46 drives the steering rod 1 45 to rotate back and forth, and the steering rod 1 45 causes the connecting seat 47 to swing up and down in the vertical direction, so that the air outlet position of the air injection pipe 43 swings up and down in the vertical direction to cooperate with the cleaning of the upper and lower mold surfaces of the packaging machine body 1; and the driving motor 2 49 is installed on the surface of the connecting seat 47. When the driving motor 2 49 is working, it drives the steering rod 2 48 to swing back and forth, and the steering rod 2 48 drives the nozzle of the air injection pipe 43 to swing left and right to cooperate with the cleaning of the left and right sides of the mold of the packaging machine body 1, and the driving motor 1 46 drives the steering rod 1 45 to rotate fixedly. It will stop working after a fixed angle. At this time, the driving motor 2 49 drives the steering rod 2 48 to swing left and right for multiple cycles to cooperate with the cleaning of the left and right sides of the mold of the packaging machine main body 1. After the driving motor 2 49 completes its work, the driving motor 1 46 drives the steering rod 1 45 to rotate a fixed angle, and then repeats the above actions, thereby automatically cleaning the mold surface of the packaging machine main body 1, and controlling the flow rate of the gas ejected from the jet pipe 43 according to the change in force when the plastic box 2 is removed, so as to cooperate with the amount of plastic packaging material remaining on the mold surface of the packaging machine main body 1. When there is a lot of plastic packaging material, the gas flow rate can also be adaptively increased to more thoroughly clean the plastic packaging material residue.
[0050] Example 2
[0051] In the second embodiment, other structures remain unchanged. The difference from the first embodiment is that the inner wall of the connecting seat 47 is provided with an adjusting member 5 for adjusting the flow cross-section of the air jet pipe 43 when the steering rod 48 rotates. The adjusting member 5 includes a transmission gear 50 fixedly connected to the outer side of the steering rod 48. Two transmission tooth plates 51 are engaged with the outer side of the transmission gear 50. The two transmission tooth plates 51 are respectively located on both sides of the transmission gear 50. The transmission tooth plates 51 are slidingly connected to the inner wall of the connecting seat 47. An oblique end 52 is provided at one end of the transmission tooth plate 51. An adjusting plate 53 is slidingly connected to the outer side of the oblique end 52. The adjusting plate 53 is slidingly connected to the inner wall of the connecting seat 47. The adjusting plate 53 is located on the outside of the air jet 43. The adjusting plate 53 has an oblique transition close to the side of the air jet 43. A compression spring 54 is fixedly connected to the bottom of the adjusting plate 53, and one end of the compression spring 54 is fixedly connected to the inner wall of the connecting seat 47.
[0052] When the driving motor 2 49 drives the steering rod 2 48 to rotate back and forth, the steering rod 2 48 drives the adjusting part 5 to work, so that the steering rod 2 48 drives the nozzle of the jet tube 43 toward the edge of the mold of the packaging machine body 1, and gradually reduces the gas flow cross-section of the jet tube 43, so that when the nozzle of the jet tube 43 gradually approaches the edge of the mold, the flow rate of the airflow ejected by the jet tube 43 gradually increases, so as to avoid incomplete cleaning of the residual plastic packaging material at the edge due to the distance between the edge of the mold and the jet tube 43.
[0053] The specific working principle of the adjusting member 5 is as follows: when the steering rod 48 drives the nozzle of the injection pipe 43 to rotate toward the edge position of one end of the mold, the steering rod 48 rotates to drive the transmission gear 50 to rotate, and the transmission gear 50 drives the transmission gear plate 51 to slide on the inner wall of the connecting seat 47, so that one of the two transmission gear plates 51 is close to the adjustment plate 53, and the other transmission gear plate 51 is away from the adjustment plate 53. The oblique end 52 of the transmission gear plate 51 approaching the adjustment plate 53 squeezes the oblique edge of the adjustment plate 53, and the squeezed adjustment plate 53 slides on the inner wall of the connecting seat 47 and squeezes the compression spring 54. When the adjustment plate 53 slides downward, the oblique transition side of the adjustment plate 53 will gradually squeeze the injection pipe 43, thereby reducing the gas flow cross-section of the injection pipe 43, so that the gas flow rate of the gas ejected from the injection pipe 43 increases.
[0054] When the steering rod 48 drives the nozzle of the injection pipe 43 to rotate toward the edge of the other end of the mold, the steering rod 48 rotates to drive the transmission gear 50 to rotate in the opposite direction. The transmission gear 50 drives the transmission tooth plate 51 to slide on the inner wall of the connecting seat 47, so that one of the two transmission tooth plates 51 moves away from the adjustment plate 53, and the other transmission tooth plate 51 approaches the adjustment plate 53. The oblique end 52 of the transmission tooth plate 51 approaching the adjustment plate 53 squeezes the oblique edge of the adjustment plate 53. The squeezed adjustment plate 53 slides on the inner wall of the connecting seat 47 and squeezes the compression spring 54, while the adjustment plate 53 that does not squeeze the compression spring 54 will move upward under the elastic force of the compression spring 54, so that the other side of the injection pipe 43 is gradually squeezed, thereby continuing to change the flow rate of the gas ejected from the injection pipe 43.
[0055] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0056] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A USB chip package storage device, comprising: Packaging machine body (1); The invention is characterized in that: it further comprises a plastic sealing box (2), and the plastic sealing box (2) can be fitted with a mold in the packaging machine body (1); A blanking mechanism (3), the blanking mechanism (3) is connected to the packaging machine main body (1), the blanking mechanism (3) transfers the plastic packaging box (2) containing the chip into the mold of the packaging machine main body (1), and separates the plastic packaging box (2) from the packaging machine main body (1) after the chip is plastic-sealed, and the blanking mechanism (3) automatically monitors the change in the thrust of the blanking mechanism (3) on the plastic packaging box (2) before and after the plastic packaging box (2) is separated from the packaging machine main body (1); A cleaning mechanism (4), the cleaning mechanism (4) being located outside the mold of the packaging machine main body (1); when the blanking mechanism (3) separates the plastic packaging box (2) from the packaging machine main body (1), the cleaning mechanism (4) selects different cleaning forces when cleaning the mold of the packaging machine main body (1) according to the thrust change monitored by the blanking mechanism (3); The unloading mechanism (3) includes a support plate (30), a surface of the support plate (30) is provided with a plurality of grooves (31), the grooves (31) are used to place the handle of the plastic packaging box (2), the surface of the support plate (30) is provided with a limiter (32) for fixing the handle of the plastic packaging box (2), a bottom of the support plate (30) is provided with a movable plate (33), an upper pusher (34) for pushing the support plate (30) to move is provided between the movable plate (33) and the support plate (30), and the upper pusher (34) detects the change of the thrust on the plastic packaging box (2) when the support plate (30) is lifted up by the upper pusher (34), the inner side of the movable plate (33) is fixedly connected to a pneumatic telescopic rod (35), the pneumatic telescopic rod (35) is installed on the surface of the packaging machine body (1), the movable plate (33) is fixedly connected to a telescopic column (36) on the side close to the pneumatic telescopic rod (35), and the telescopic column (36) is fixedly connected to the packaging machine body (1) at one end away from the movable plate (33).
2. The USB chip package storage device according to claim 1, wherein: The limiting member (32) includes a limiting cover (37), a rubber plate (38) fixedly connected to one side of the limiting cover (37) close to the support plate (30), an end of the rubber plate (38) close to the support plate (30) is arc-shaped, and one end of the limiting cover (37) is fixedly connected to a rotating rod (39), the rotating rod (39) is rotatably connected to the inner wall of the support plate (30), the inner wall of the rotating rod (39) is slidably connected to the limiting rod (310), and both sides of the limiting rod (310) pass through the inner wall of the rotating rod (39). The inner wall of the support plate (30) is provided with a limiting groove (311) engaged with the limiting rod (310), and the limiting groove (311) is divided into a clamping part (312) and a rotating part (313). One end of the limiting rod (310) is in contact with an extrusion plate (314), and a return spring (315) is fixedly connected to the outer side of the extrusion plate (314). The return spring (315) is fixedly connected to the inner wall of the rotating rod (39), and the other end of the limiting rod (310) passes through the rotating rod (39) and is connected to the outside.
3. The USB chip package storage device according to claim 1, wherein: The upper ejector (34) includes an ejector rod (316) fixedly connected to the bottom of the support plate (30); a fixed cylinder (317) is fixedly connected to the top of the movable plate (33); a piston plate (318) is fixedly connected to one end of the ejector rod (316) close to the fixed cylinder (317); the piston plate (318) is slidably connected to the inner wall of the fixed cylinder (317); a gas delivery member (319) is provided on the outer side of the fixed cylinder (317); and a pressure sensor (320) is installed on the inner wall of the fixed cylinder (317).
4. The USB chip package storage device according to claim 3, wherein: The air delivery member (319) comprises an air inlet pipe (321) connected to the bottom of the fixed cylinder (317); one end of the air inlet pipe (321) away from the fixed cylinder (317) is connected to a three-way valve (322); the three-way valve (322) is mounted on the inner wall of the packaging machine body (1); the inlet of the three-way valve (322) is connected to an air delivery pipe (323); one end of the air delivery pipe (323) away from the three-way valve (322) is connected to an air pump (324); the air pump (324) is connected to a pressure sensor (320); and the air pump (324) is mounted on the inner wall of the packaging machine body (1).
5. The USB chip package storage device according to claim 4, wherein: The cleaning mechanism (4) includes fixed blocks (40) respectively located on both sides of the inner wall of the packaging machine body (1), the inner wall of the packaging machine body (1) is provided with a Y-shaped tube (41), one end of the Y-shaped tube (41) is connected to the three-way valve (322), and the remaining two ends of the Y-shaped tube (41) are respectively connected to two fixed blocks (40), the inner wall of the fixed block (40) is provided with a connecting groove (42) connected to the Y-shaped tube (41), the outer side of the fixed block (40) is fixedly connected with an air jet (43), the surface of the air jet (43) is provided with a plurality of corrugated parts, the air jet (43) is connected to the connecting groove (42), the outer side of the air jet (43) is provided with a steering member (44), and the steering member (44) controls the air jet (43) to spray toward the upper and lower mold surfaces of the packaging machine body (1).
6. The USB chip package storage device according to claim 5, wherein: The steering member (44) includes a steering rod 1 (45) fixedly connected to the outer side of the jet tube (43), the steering rod 1 (45) is rotatably connected to the inner wall of the fixed block (40), a driving motor 1 (46) is mounted on the surface of the fixed block (40), the output end of the driving motor 1 (46) is fixedly connected to the steering rod 1 (45), the outer side of the steering rod 1 (45) is fixedly connected to a connecting seat (47), the inner wall of the connecting seat (47) is rotatably connected to a steering rod 2 (48), the jet tube (43) passes through the connecting seat (47) and the steering rod 2 (48), the surface of the connecting seat (47) is mounted with a driving motor 2 (49), the output end of the driving motor 2 (49) is fixedly connected to the steering rod 2 (48), and the driving motor 1 (46) and the driving motor 2 (49) work alternately.
7. The USB chip package storage device according to claim 6, wherein: The air jet pipe (43) is provided with two corrugated parts, one of which is located between the second steering rod (48) and the connecting seat (47), and the other is located between the first steering rod (45) and the fixed block (40).
8. The USB chip package storage device according to claim 6, wherein: The inner wall of the connecting seat (47) is provided with an adjusting member (5) for adjusting the flow cross section of the jet pipe (43) when the second steering rod (48) rotates. The adjusting member (5) includes a transmission gear (50) fixedly connected to the outer side of the second steering rod (48). Two transmission tooth plates (51) are meshed on the outer side of the transmission gear (50). The two transmission tooth plates (51) are respectively located on both sides of the transmission gear (50). The transmission tooth plates (51) are slidably connected to the inner wall of the connecting seat (47). One end of the transmission tooth plate (51) is provided with an oblique end (52). The outer side of the oblique end (52) is slidably connected to an adjusting plate (53). The adjusting plate (53) is slidably connected to the inner wall of the connecting seat (47). The adjusting plate (53) is located on the outer side of the jet pipe (43). A compression spring (54) is fixedly connected to the bottom of the adjusting plate (53). One end of the compression spring (54) is fixedly connected to the inner wall of the connecting seat (47).
9. The USB chip package storage device according to claim 8, wherein: The adjustment plate (53) has an oblique transition on the side close to the air injection pipe (43).
Citation Information
Patent Citations
PET plastic particle transfer device for plastic processing
CN118494581A
LED lens mold
KR100901435B1