CN214356864U - Adhesive tape winding device for wafer packaging box - Google Patents

Adhesive tape winding device for wafer packaging box Download PDF

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Publication number
CN214356864U
CN214356864U CN202022940739.4U CN202022940739U CN214356864U CN 214356864 U CN214356864 U CN 214356864U CN 202022940739 U CN202022940739 U CN 202022940739U CN 214356864 U CN214356864 U CN 214356864U
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China
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adhesive tape
pressing
cylinder
fixed
cantilever
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CN202022940739.4U
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王迪杏
计时鸣
王宁
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Wuxi Diyuante Technology Co ltd
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Wuxi Diyuante Technology Co ltd
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Abstract

The utility model discloses a tape winding device of a wafer packaging box, which comprises an integral frame, a workpiece supporting rotary transmission device, a tape fixing device, a tape rotary driving device, a pressing device, a movable frame, a lifting device, a cantilever device and a tape head taking and tape pasting device, wherein the lifting device is fixed on the integral frame; the workpiece supporting and rotating transmission device is used for fixedly supporting the wafer packaging box and driving the wafer packaging box to rotate, and the workpiece supporting and rotating transmission device is fixed on the integral rack; the adhesive tape fixing device, the adhesive tape rotation driving device, the pressing device and the cantilever device are all arranged on the movable rack, and the adhesive tape head taking and adhering device is arranged on the cantilever device; the utility model discloses can realize the work of the automatic winding sticky tape of wafer packaging bag, it is efficient to twine the sticky tape, and whole process full automatization goes on, has reduced the cost of labor.

Description

Adhesive tape winding device for wafer packaging box
Technical Field
The utility model relates to a wafer packaging box packing field, more specifically the theory especially relates to a wafer packaging box twine sealing-tape device.
Background
The wafer refers to a silicon chip made of silicon semiconductor integrated circuits, and is called a wafer because the shape of the wafer is circular, the wafer is a carrier used for producing the integrated circuits, the wafer in general meaning is basically a monocrystalline silicon wafer, the monocrystalline silicon wafer is manufactured and extracted by common silicon sand, a monocrystalline silicon rod is supported after a plurality of series of errors are dissolved, purified and distilled, and the monocrystalline silicon rod becomes the wafer after being polished and sliced. With the continuous development of the integrated circuit manufacturing technology, the characteristic size of a chip is smaller and smaller, the number of interconnection layers is larger and larger, the diameter of a wafer is also increased, the surface of the wafer must have extremely high flatness, smoothness and cleanliness to realize multilayer wiring, and the wafer cannot be randomly packaged like common equipment in the transportation process in order to realize the flatness, smoothness and cleanliness of the surface of the wafer, so that a special wafer packaging box is particularly necessary.
The wafer packaging box, also called a front Opening Shipping box, is called a front Opening wafer packaging box, and can protect, transport and store wafers, prevent the wafers from friction or collision in the transportation process, and provide safety protection for the wafers during transportation, transportation and storage. The wafer packaging box has good air tightness and can effectively prevent the generation of substances.
The existing wafer packaging box needs to be packaged before storage and transportation, the existing wafer packaging box basically adopts manual packaging, the whole packaging process comprises five steps of shaping the packaging bag and placing the packaging bag into the wafer packaging box, carrying out hot vacuum heat sealing on the packaging bag, reshaping the packaging bag again, winding an adhesive tape on the surface of the packaging bag and labeling, if the steps are manual packaging efficiency, the packaging precision is different, wherein the winding of the adhesive tape on the surface of the packaging bag is one of the steps which is particularly time-consuming, and the operation of winding the adhesive tape is difficult to package in an automatic mode due to the fact that the shape of the side surface of the wafer packaging box is complex, the step is basically completed manually at the present stage, the production efficiency is low, the automation degree is low, and the requirements of the automatic production at present can not be met.
The main reason that the automation degree of the process of winding the adhesive tape on the surface of the packaging bag of the wafer packaging box is not high is that the adhesive tape head of the adhesive tape is difficult to find, the adhesive tape often only has one adhesive tape head when the packaging bag is opened, and after the packaging bag is used for a period of time, the adhesive tape head needs to be manually found, the process is very difficult and difficult to realize through automatic equipment, if the process is realized through manpower, the time is consumed, the adhesive tape head needs to be found again when the packaging bag is packaged every time, and great trouble is brought to automatic packaging.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an it is not high to solve the wrapping bag surface winding sticky tape process degree of automation of current wafer packing carton, and the difficult problem of looking for of sticky tape head has provided a wafer packing carton twines the sticky tape device, can realize the sticky tape winding work on the wrapping bag surface of wafer packing carton automatically, and work efficiency is high, and can look for the sticky tape head automatically, makes things convenient for going on of whole sticky tape winding work.
The utility model discloses a following technical scheme realizes above-mentioned purpose: a tape winding device of a wafer packaging box comprises an integral frame, a workpiece supporting and rotating transmission device, a tape fixing device, a tape rotating driving device, a pressing device, a movable frame, a lifting device, a cantilever device and a tape head taking and tape pasting device, wherein the lifting device is fixed on the integral frame; the workpiece supporting rotary transmission device is used for fixing and supporting the wafer packaging box subjected to bagging and shaping and driving the wafer packaging box to rotate, and the workpiece supporting rotary transmission device is fixed on the integral rack beside the movable rack; the adhesive tape fixing device, the adhesive tape rotation driving device, the pressing device and the cantilever device are all arranged on the movable rack, and the adhesive tape head taking and adhering device is arranged on the cantilever device;
the cantilever device comprises a cantilever beam base, cantilever beam bearing seats, a cantilever beam rotating shaft, a cantilever linear module, a cantilever rotating cylinder and a cantilever cylinder seat, wherein the cantilever beam rotating shaft is vertically arranged, the lower end of the cantilever beam rotating shaft is arranged on the movable rack through the cantilever beam bearing seats, the upper end of the cantilever beam rotating shaft is arranged at one end of the cantilever beam base through another cantilever beam bearing seat, and the cantilever linear module is horizontally arranged on the cantilever beam base; the cantilever rotating cylinder is horizontally arranged, the fixed end of the cantilever rotating cylinder is fixed on the movable rack through a cantilever cylinder seat, the fixed end of the cantilever rotating cylinder is hinged on the cantilever cylinder seat, and the movable end of the cantilever rotating cylinder is hinged in the middle of the cantilever beam base; when the cantilever rotating cylinder works, the cantilever beam base and the cantilever beam bearing seat are driven to integrally rotate around the cantilever beam rotating shaft in the horizontal direction;
the adhesive tape head taking and adhering device is arranged on a sliding block of a cantilever linear module of the cantilever device; the adhesive tape head taking and adhering device comprises a rotary base, a base rotary driving motor, a semicircular guide side plate, a bottom supporting plate, a pressing block air cylinder, an adhesive tape pressing block, an adhesive tape head taking air cylinder, a first adhesive head connecting block, a second adhesive head connecting block, an adhesive head pushing plate, a blade air cylinder, a scissor blade, a photoelectric sensor and an adhesive tape limiting idler wheel, wherein the base rotary driving motor is vertically arranged, the base rotary driving motor is fixed on a sliding block of a cantilever linear module of a cantilever device, the rotary base is arranged right above the base rotary driving motor, the bottom of the rotary base is fixedly connected with an output shaft of the base rotary driving motor, and the rotary base is driven to rotate when the base rotary driving motor rotates; a semicircular guide side plate which is integrally and semicircular in circumference is fixed on one side of the upper surface of the rotary base, a bottom supporting plate is fixed on the other side of the upper surface of the rotary base, the blade cylinder, the rubber taking head cylinder and the pressing block cylinder are installed on the bottom supporting plate in parallel, the rubber taking head cylinder and the semicircular guide side plate are respectively arranged on the left side and the right side of the pressing block cylinder, the scissor blade is connected to the output end of the blade cylinder, the adhesive tape pressing block is connected to the output end of the pressing block cylinder, and the rubber head pushing plate is arranged at the output end of the rubber taking head cylinder; the adhesive tape limiting roller and the first adhesive head connecting block are fixed on the bottom supporting plate, and the adhesive tape limiting roller and the first adhesive head connecting block are respectively positioned on two sides of the scissor blade when the blade cylinder pushes the scissor blade to extend out; the first rubber head connecting block is arranged right in front of the rubber head pushing plate, the second rubber head connecting block comprises a connecting back plate, two rubber belt baffle plates and two connecting side plates, the connecting back plate and the two rubber belt baffle plates are arranged in parallel, and the two rubber belt baffle plates are fixed on the connecting back plate through the two connecting side plates; the connecting back plate of the second rubber head connecting block is fixed on the first rubber head connecting block, transverse through holes for the rubber head pushing plate to pass through are formed in the connecting back plates of the first rubber head connecting block and the second rubber head connecting block, and a rubber belt passing channel for accommodating a rubber belt to pass through is formed between the connecting back plate of the second rubber head connecting block and the rubber belt baffle; the middle parts of the two adhesive tape baffle plates are provided with a crack with a narrow middle part and wide two ends, the maximum width of the crack is larger than the width of the adhesive tape, the minimum width of the crack is smaller than the width of the adhesive tape, and after the adhesive tape enters the adhesive tape passing channel of the second adhesive tape head connecting block, the adhesive tape head taking cylinder pushes the adhesive tape head push plate to pass through the transverse through holes on the first adhesive tape head connecting block and the second adhesive tape head connecting block and tightly press the adhesive tape on the inner side of the adhesive tape baffle plate of the second adhesive tape head connecting block; the photoelectric sensor is arranged between the blade cylinder and the rubber taking head cylinder, and the direction opposite to the photoelectric sensor is the extending direction of the piston rods of the blade cylinder and the rubber taking head cylinder;
the pressing device comprises a pressing base, a pressing guide rail, a pressing sliding plate, a pressing cylinder, a pressing upper cover plate, a pressing wheel, a pressing limiting block and a pressing positioning sheet, wherein the pressing base is fixed on the movable rack, and the pressing upper cover plate is fixed on the pressing base; the pressing guide rail is fixed on the pressing base, the axis of the pressing guide rail is perpendicular to the front face of the wafer packaging box, the bottom of the pressing sliding plate is provided with a guide groove matched with the pressing guide rail, and the pressing sliding plate is sleeved on the pressing guide rail through the guide groove at the bottom; the axis of the pressing wheel is vertically arranged, the pressing wheel is fixed at one end of the pressing sliding plate close to the wafer packaging box, the pressing positioning piece is fixed on the pressing sliding plate close to the pressing wheel, and a slotted hole for a piston rod of the pressing cylinder to penetrate through is formed in the pressing positioning piece; the pressing cylinder is arranged in parallel to the pressing guide rail and is fixed on the pressing upper cover plate, a pressing limiting block is arranged on a piston rod of the pressing cylinder, and the piston rod of the pressing cylinder penetrates through a slotted hole in the pressing positioning sheet and then pushes the pressing positioning sheet to move through the pressing limiting block so as to drive the whole body formed by the pressing sliding plate and the pressing wheel to move towards the direction of the wafer packaging box;
the adhesive tape fixing device comprises a pneumatic three-jaw chuck, a chuck driving cylinder, a rotary air inlet shaft, an adhesive tape rotary driven wheel, a driven wheel mounting seat and an air collecting ring, wherein the pneumatic three-jaw chuck is fixed at the output end of the chuck driving cylinder; the driven wheel mounting seat is fixed on the movable rack, the gas collecting ring is fixed at the bottom of the driven wheel mounting seat, a gas transmission port at the upper end of the gas collecting ring is connected with a gas inlet at the lower end of a rotary gas inlet shaft, and a gas outlet at the upper end of the rotary gas inlet shaft is connected with a gas inlet of a chuck driving cylinder; the adhesive tape rotating driven wheel is connected with the adhesive tape rotating driving wheel through a synchronous belt; when the pneumatic three-jaw chuck fixes the adhesive tape, the height of the adhesive tape is equal to that of the adhesive tape threading channel, and the adhesive head of the adhesive tape can just penetrate into the adhesive tape threading channel of the first adhesive head connecting block;
the adhesive tape rotary driving device is connected with the adhesive tape rotary driving wheel of the adhesive tape fixing device through the synchronous belt, and the adhesive tape rotary driving device drives the adhesive tape rotary driving wheel to rotate through the synchronous belt during working so as to drive the pneumatic three-jaw chuck and the adhesive tape to integrally rotate.
Further, sticky tape rotary driving device includes sticky tape rotary driving motor, sticky tape rotary motor cabinet, sticky tape rotary shaft coupling and sticky tape rotary driving wheel, sticky tape rotary motor cabinet is fixed on movable rack, and sticky tape rotary driving motor is vertical to be fixed on sticky tape rotary motor cabinet, and sticky tape rotary driving wheel is connected through sticky tape rotary shaft coupling to sticky tape rotary driving wheel to sticky tape rotary driving motor's output shaft.
Furthermore, the lifting device comprises lifting slide blocks, lifting guide rails and a lifting cylinder, the lifting guide rails are provided with two lifting guide rails, the two lifting guide rails are vertically fixed on the integral rack, each lifting guide rail is sleeved with one lifting slide block, and the two lifting slide blocks are fixedly connected with the movable rack; the bottom of the lifting cylinder is fixed on the integral rack, and the movable end of the lifting cylinder is fixed on the movable rack; when the lifting cylinder works, the whole body formed by the movable rack and the lifting sliding block is driven to move up and down along the lifting guide rail. Because the operation of wrapping the adhesive tape after the packaging and shaping of the wafer packaging box needs to be carried out twice, the lifting mechanism is arranged to lift or lower the adhesive tape wrapping part of the whole adhesive tape wrapping device, and the operation of wrapping the adhesive tape for the second time after the adhesive tape is wrapped for one time is convenient.
Furthermore, the gas collecting ring is fixed on the driven wheel mounting seat through a gas collecting ring fixing seat, the gas collecting ring is a gas supply device with the lower end fixed and the upper end capable of rotating, the lower end of the gas collecting ring is fixed on the gas collecting ring fixing seat, and the upper end of the gas collecting ring rotates along with the rotating gas inlet shaft during gas supply.
Furthermore, the front end of the compression sliding plate is bent towards one side of the cantilever device, the compression wheel is fixed at the bent end part of the compression sliding plate, and the diameter of the compression wheel is larger than the width of the bent end of the compression sliding plate. The edge of the pressing wheel extends out of the outer side of the bending end of the pressing sliding plate, so that the pressing device is guaranteed to be only acted by the pressing wheel when the adhesive tape is pressed, and the pressing sliding plate cannot be in contact with the adhesive tape.
Furthermore, the minimum width of a gap between the two adhesive tape baffle plates is half of the width of the adhesive tape.
Furthermore, the second rubber head connecting block is fixed on the first rubber head connecting block through a bolt. The second rubber head connecting block is detachable, and the rubber belt winding operation of rubber belts with different widths can be realized by only replacing the second rubber head connecting block with different crack widths when the rubber belts with different widths are replaced.
Furthermore, the crack opening direction on the second rubber head connecting block is the horizontal direction. After one end of the adhesive tape is fixed, the base rotary driving motor drives the second adhesive head connecting block to rotate, so that the adhesive tape can enter the adhesive tape passing channel from the crack.
Further, the workpiece supporting and rotating transmission device comprises a clamping device, a conveying belt device and a conveying belt rotating driving device, the wafer packaging box is placed on the conveying belt device, the conveying belt device is used for conveying the wafer packaging box between the front station and the rear station, the clamping device is fixed on the conveying belt device and clamps the wafer packaging box at a specified position of the conveying belt device, and the rotating driving device is connected with the conveying belt device and drives the conveying belt device, the clamping device and the wafer packaging box to integrally rotate. Because the adhesive tape can not rotate around the wafer packaging box during the operation of winding the adhesive tape, the wafer packaging box is rotated, and the workpiece supports the rotary transmission device to drive the wafer packaging box with a fixed position to rotate, so that the operation of winding the adhesive tape on the wafer packaging box after packaging and shaping is realized. The conveying belt device is used for conveying the wafer packaging boxes in a mode that a conveying chain wheel, a conveying driving motor and a chain conveying belt are matched, the chain conveying belt is provided with two bilaterally symmetrical belts, and the two ends of the wafer packaging boxes are supported and drive the wafer packaging boxes to move between a front station and a rear station; a clamping device is arranged on a fixed supporting plate of the conveying belt device, and the clamping device fixes the wafer packaging box at the designated position of the conveying belt device through two clamping blocks and a positioning column matched with the bottom of the wafer packaging box on the fixed supporting plate; the conveying belt rotary driving device adopts a mode that a conveying belt rotary driving motor is directly connected with the conveying belt device, and the rotation of the wafer packaging box is realized by driving the conveying belt device and the clamping device to integrally rotate.
Furthermore, the opening of the adhesive tape passing channel on the second adhesive head connecting block is in a gradual change type with a large side and a small side, the opening of the adhesive tape passing channel on the side close to the adhesive tape is large, and the opening of the adhesive tape passing channel on the side close to the photoelectric sensor is small.
The beneficial effects of the utility model reside in that:
1. the utility model discloses can realize the work of the automatic winding sticky tape of wafer packaging bag, it is efficient to twine the sticky tape, and whole process full automatization goes on, has reduced the cost of labor.
2. The utility model discloses can realize looking for the work of adhesive tape head automatically, avoid all needing the manual trouble of looking for the adhesive tape head after trading the sticky tape at every turn, twine sticky tape at every turn simultaneously and accomplish the back sticky tape all have a segment to be detained on sticky tape take-off rubberizing device as the adhesive tape head, the convenient going on of next sticky tape winding work has improved holistic work efficiency.
3. The utility model discloses utilize the elevating gear drive to twine the holistic lift of sticky tape process, the convenience carries out the winding of one sticky tape down after the winding of accomplishing one sticky tape, because putting of wafer packing carton supports rotatory transmission device for openly putting at the work piece, twice sticky tape about need twining during the packing of wafer packing box, the assurance that elevating gear's existence can be perfect one sticky tape winding finishes the winding of getting into one sticky tape down at once, make the winding work of twice sticky tape can utilize same equipment to accomplish in proper order, whole design cost has been reduced.
4. The utility model discloses utilize the sticky tape on the sticky tape rotary driving device drive sticky tape fixing device to rotate, sticky tape rotary driving device adopts sticky tape rotary driving motor to drive, can guarantee the stable rotation of sticky tape, has guaranteed that the sticky tape head is better to find.
5. The utility model discloses a rotation of sticky tape rotary driving device drive sticky tape cooperatees with the rotation of base rotary driving motor on the sticky tape take out head rubberizing device, utilizes the two to be close to tangent mode and sends into the sticky tape passageway of wearing of second sticky tape head connecting block with the sticky tape head of sticky tape, and the mode of looking for the sticky tape head is swift stable, improves the efficiency of looking for the sticky tape head.
6. The utility model discloses utilize cantilever straight line module drive sticky tape take-off rubberizing device linear motion, utilize the cantilever to rotate the rotation of cylinder drive cantilever beam base to make sticky tape take-off rubberizing device be close to the sticky tape or be close to wafer packing carton surface, make the part of taking the sticky tape head and twine sticky tape part and concentrate on same mechanism, reduce whole area and design cost, make whole device more be applicable to the nitrogen-filled packaging production line of wafer packing carton.
Drawings
Fig. 1 is a schematic view of the overall structure of a tape winding device for a wafer packaging box according to the present invention.
Fig. 2 is a schematic view of another angle of the tape winding device for wafer packaging box according to the present invention.
Fig. 3 is a front view of the tape winding device of the wafer packing box of the present invention.
Fig. 4 is a top view of the tape winding device of the wafer packaging box of the present invention.
Fig. 5 is a schematic view of the overall structure of the adhesive tape winding station of the present invention.
Fig. 6 is a right side view of the tape winding station of the present invention.
Fig. 7 is a top view of the adhesive tape winding station of the present invention.
Fig. 8 is a schematic view of the connection between the cantilever rotating cylinder and the cantilever cylinder block according to the present invention.
Fig. 9 is a schematic structural view of the adhesive tape fixing device of the present invention.
Fig. 10 is a front view of the adhesive tape fixing device of the present invention.
Fig. 11 is a schematic structural view of the tape rotation driving device of the present invention.
Fig. 12 is a front view of the tape rotation driving device of the present invention.
Fig. 13 is a schematic structural view of the adhesive tape head-taking and adhesive-applying device of the present invention.
In the figure, 1-wafer packaging box, 2-integral frame, 3-workpiece supporting rotary transmission device, 4-adhesive tape fixing device, 5-adhesive tape rotary driving device, 6-pressing device, 7-movable frame, 8-lifting device, 9-cantilever device, 10-adhesive tape head-taking and adhesive-pasting device, 41-pneumatic three-jaw chuck, 42-chuck driving cylinder, 43-rotary air inlet shaft, 44-adhesive tape rotary driven wheel, 45-driven wheel mounting seat, 46-air collecting ring fixing seat, 47-air collecting ring, 51-adhesive tape rotary driving motor, 52-adhesive tape rotary motor seat, 53-adhesive tape rotary coupling, 54-adhesive tape rotary driving wheel, 61-pressing base, 62-pressing guide rail, 63-pressing sliding plate, etc, 64-pressing cylinder, 65-pressing upper cover plate, 66-pressing wheel, 67-pressing limiting block, 68-pressing positioning sheet, 81-lifting slide block, 82-lifting guide rail, 83-lifting cylinder, 91-cantilever beam base, 92-cantilever beam bearing seat, 93-cantilever beam rotating shaft, 94-cantilever beam linear module, 95-cantilever beam rotating cylinder, 96-cantilever beam cylinder seat, 101-rotating base, 102-base rotating driving motor, 103-semicircular guiding side plate, 104-bottom supporting plate, 105-briquetting cylinder, 106-adhesive tape briquetting, 107-adhesive tape taking head cylinder, 108-first adhesive tape head connecting block, 109-second adhesive tape head connecting block, 110-adhesive tape head push plate, 111-blade cylinder, 112-scissor blade, 67-pressing limiting block, 113-adhesive tape limit roller, 114-photoelectric sensor.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings:
as shown in fig. 1 to 13, an adhesive tape winding device for a wafer packaging box includes an integral frame 2, a workpiece supporting and rotating transmission device 3, an adhesive tape fixing device 4, an adhesive tape rotating driving device 5, a pressing device 6, a movable frame 7, a lifting device 8, a cantilever device 9 and an adhesive tape head-taking and adhesive-applying device 10, wherein the lifting device 8 is fixed on the integral frame 2, the movable frame 7 is installed at a movable end of the lifting device 8, and the lifting device 8 drives the movable frame 7 to make a linear motion in a vertical direction; the workpiece supporting rotary transmission device 3 is used for fixing and supporting the wafer packaging box 1 subjected to bagging and shaping and driving the wafer packaging box 1 to rotate, and the workpiece supporting rotary transmission device 3 is fixed on the integral rack 2 beside the movable rack 7; the adhesive tape fixing device 4, the adhesive tape rotation driving device 5, the pressing device 6 and the cantilever device 9 are all installed on the movable rack 7, and the adhesive tape head taking and adhesive tape pasting device 10 is installed on the cantilever device 9.
The workpiece supporting and rotating transmission device 3 comprises a clamping device, a conveying belt device and a conveying belt rotating driving device, the wafer packaging box 1 is placed on the conveying belt device, the conveying belt device is used for realizing the transportation of the wafer packaging box 1 between the front station and the rear station, the clamping device is fixed on the conveying belt device and clamps the wafer packaging box 1 at the designated position of the conveying belt device, and the rotating driving device is connected with the conveying belt device and drives the whole body formed by the conveying belt device, the clamping device and the wafer packaging box 1 to rotate. The workpiece supporting and rotating transmission device 3 constitutes the entire workpiece holding and rotating station. The adhesive tape fixing device 4, the adhesive tape rotation driving device 5, the pressing device 6, the movable rack 7, the lifting device 8, the cantilever device 9 and the adhesive tape head taking and adhering device 10 jointly form an adhesive tape winding station.
The cantilever device 9 comprises a cantilever beam base 91, cantilever beam bearing blocks 92, a cantilever beam rotating shaft 93, a cantilever beam linear module 94, a cantilever beam rotating cylinder 95 and a cantilever beam cylinder block 96, wherein the cantilever beam rotating shaft 93 is vertically arranged, the lower end of the cantilever beam rotating shaft 93 is installed on the movable rack 7 through the cantilever beam bearing block 92, the upper end of the cantilever beam rotating shaft 93 is installed at one end of the cantilever beam base 91 through another cantilever beam bearing block 92, and the cantilever beam linear module 94 is horizontally installed on the cantilever beam base 91; the cantilever rotating cylinder 95 is horizontally arranged, the fixed end of the cantilever rotating cylinder 95 is fixed on the movable rack 7 through a cantilever cylinder seat 96, the fixed end of the cantilever rotating cylinder 95 is hinged on the cantilever cylinder seat 96, and the movable end of the cantilever rotating cylinder 95 is hinged in the middle of the cantilever beam base 91; when the cantilever rotating cylinder 95 works, the cantilever base 91 and the cantilever bearing seat 92 are driven to rotate integrally around the cantilever rotating shaft 93 in the horizontal direction.
The adhesive tape head taking and adhering device 10 is arranged on a sliding block of a cantilever linear module 94 of the cantilever device 9; the adhesive tape head taking and adhering device 10 comprises a rotary base 101, a base rotary driving motor 102, a semicircular guide side plate 103, a bottom support plate 104, a pressing block cylinder 105, an adhesive tape pressing block 106, an adhesive tape head taking cylinder 107, a first adhesive head connecting block 108, a second adhesive head connecting block 109, an adhesive head pushing plate 110, a blade cylinder 111, a scissor blade 112, a photoelectric sensor 114 and an adhesive tape limiting roller 113, wherein the base rotary driving motor 102 is vertically arranged, the base rotary driving motor 102 is fixed on a sliding block of a cantilever linear module 94 of a cantilever device 9, the rotary base 101 is arranged right above the base rotary driving motor 102, the bottom of the rotary base 101 is fixedly connected with an output shaft of the base rotary driving motor 102, and the rotary base 101 is driven to rotate when the base rotary driving motor 102 rotates; a semicircular guide side plate 103 which is integrally and semicircular in shape is fixed on one side of the upper surface of the rotary base 101, a bottom support plate 104 is fixed on the other side of the upper surface of the rotary base 101, the blade cylinder 111, the rubber taking head cylinder 107 and the briquetting cylinder 105 are installed on the bottom support plate 104 in parallel, the rubber taking head cylinder 107 and the semicircular guide side plate 103 are respectively arranged on the left side and the right side of the briquetting cylinder 105, the scissor blade 112 is connected to the output end of the blade cylinder 111, the adhesive tape briquetting 106 is connected to the output end of the briquetting cylinder 105, and the rubber head push plate 110 is arranged at the output end of the rubber taking head cylinder 107; the adhesive tape limiting roller 113 and the first adhesive head connecting block 108 are fixed on the bottom supporting plate 104, and the adhesive tape limiting roller 113 and the first adhesive head connecting block 108 are respectively positioned at two sides of the scissor blade 112 when the blade cylinder 111 pushes the scissor blade 112 to extend; the first rubber head connecting block 108 is arranged right in front of the rubber head pushing plate 110, the second rubber head connecting block 109 comprises a connecting back plate, two rubber belt baffle plates and two connecting side plates, the connecting back plate and the two rubber belt baffle plates are arranged in parallel, and the two rubber belt baffle plates are fixed on the connecting back plate through the two connecting side plates; a connecting back plate of the second rubber head connecting block 109 is fixed on the first rubber head connecting block 108, transverse through holes for the rubber head push plate 110 to pass through are formed in the connecting back plates of the first rubber head connecting block 108 and the second rubber head connecting block 109, and a rubber belt passing channel for accommodating a rubber belt to pass through is formed between the connecting back plate of the second rubber head connecting block 109 and the rubber belt baffle; the middle parts of the two adhesive tape baffle plates are provided with a crack with a narrow middle part and wide two ends, the maximum width of the crack is larger than the width of the adhesive tape, the minimum width of the crack is smaller than the width of the adhesive tape, after the adhesive tape enters the tape passing channel of the second adhesive tape head connecting block 109, the adhesive tape head taking cylinder 107 pushes the adhesive tape head push plate 110 to pass through the transverse through holes on the first adhesive tape head connecting block 108 and the second adhesive tape head connecting block 109 and tightly press the adhesive tape on the inner side of the adhesive tape baffle plate of the second adhesive tape head connecting block 109; the photoelectric sensor 114 is installed between the blade cylinder 111 and the glue taking head cylinder 107, and the direction opposite to the photoelectric sensor 114 is the extending direction of the piston rods of the blade cylinder 111 and the glue taking head cylinder 107.
The pressing device 6 comprises a pressing base 61, a pressing guide rail 62, a pressing sliding plate 63, a pressing cylinder 64, a pressing upper cover plate 65, a pressing wheel 66, a pressing limiting block 67 and a pressing positioning sheet 68, the pressing base 61 is fixed on the movable rack 7, and the pressing upper cover plate 65 is fixed on the pressing base 61; the pressing guide rail 62 is fixed on the pressing base 61, the axis of the pressing guide rail 62 is perpendicular to the front surface of the wafer packaging box 1, the bottom of the pressing sliding plate 63 is provided with a guide groove matched with the pressing guide rail 62, and the pressing sliding plate 63 is sleeved on the pressing guide rail 62 through the guide groove at the bottom; the axis of the pressing wheel 66 is vertically arranged, the pressing wheel 66 is fixed at one end of the pressing sliding plate 63 close to the wafer packaging box 1, the pressing positioning sheet 68 is fixed on the pressing sliding plate 63 close to the pressing wheel 66, and a slotted hole for a piston rod of the pressing air cylinder 64 to pass through is formed in the pressing positioning sheet 68; the pressing cylinder 64 is arranged parallel to the pressing guide rail 62 and the pressing cylinder 64 is fixed on the pressing upper cover plate 65, a pressing limiting block 67 is arranged on a piston rod of the pressing cylinder 64, and the piston rod of the pressing cylinder 64 penetrates through a slotted hole in the pressing positioning piece 68 and then pushes the pressing positioning piece 68 to move through the pressing limiting block 67 so as to drive the whole body formed by the pressing sliding plate 63 and the pressing wheel 66 to move towards the direction of the wafer packaging box 1.
The adhesive tape fixing device 4 comprises a pneumatic three-jaw chuck 41, a chuck driving cylinder 42, a rotary air inlet shaft 43, an adhesive tape rotary driven wheel 44, a driven wheel mounting seat 45 and an air collecting ring 47, wherein the pneumatic three-jaw chuck is fixed at the output end of the chuck driving cylinder 42, the bottom of the chuck driving cylinder 42 is fixed at the top end of the vertically arranged rotary air inlet shaft 43, the rotary air inlet shaft 43 is mounted on the driven wheel mounting seat 45 through two bearing seats, the adhesive tape rotary driven wheel 44 is fixed on the rotary air inlet shaft 43, and the adhesive tape rotary driven wheel 44 is arranged between the two bearing seats supporting the rotary air inlet shaft 43; the driven wheel mounting seat 45 is fixed on the movable rack 7, the gas collecting ring 47 is fixed at the bottom of the driven wheel mounting seat 45, a gas transmission port at the upper end of the gas collecting ring 47 is connected with a gas inlet at the lower end of the rotary gas inlet shaft 43, and a gas outlet at the upper end of the rotary gas inlet shaft 43 is connected with a gas inlet of the chuck driving cylinder 42; the adhesive tape rotary driven wheel 44 is connected with the adhesive tape rotary driving wheel through a synchronous belt; when the pneumatic three-jaw chuck 41 fixes the adhesive tape, the height of the adhesive tape is equal to the height of the adhesive tape passing channel, and the adhesive head of the adhesive tape can just penetrate into the adhesive tape passing channel of the first adhesive head connecting block 108.
The adhesive tape rotary driving device 5 is connected with the adhesive tape rotary driving wheel 54 of the adhesive tape fixing device 4 through a synchronous belt, and the adhesive tape rotary driving device 5 drives the adhesive tape rotary driving wheel 54 to rotate through the synchronous belt during working so as to drive the whole body formed by the pneumatic three-jaw chuck 41 and the adhesive tape to rotate.
The adhesive tape rotation driving device 5 comprises an adhesive tape rotation driving motor 51, an adhesive tape rotation motor base 52, an adhesive tape rotation coupling 53 and an adhesive tape rotation driving wheel 54, the adhesive tape rotation motor base 52 is fixed on the movable rack 7, the adhesive tape rotation driving motor 51 is vertically fixed on the adhesive tape rotation motor base 52, and an output shaft of the adhesive tape rotation driving motor 51 is connected with the adhesive tape rotation driving wheel 54 through the adhesive tape rotation coupling 53.
The lifting device 8 comprises lifting slide blocks 81, lifting guide rails 82 and lifting cylinders 83, the lifting guide rails 82 are provided with two lifting guide rails 82, the two lifting guide rails 82 are vertically fixed on the integral rack 2, each lifting guide rail 82 is sleeved with one lifting slide block 81, and the two lifting slide blocks 81 are fixedly connected with the movable rack 7; the bottom of the lifting cylinder 83 is fixed on the integral frame 2, and the movable end of the lifting cylinder 83 is fixed on the movable frame 7; the lifting cylinder 83 drives the movable frame 7 and the lifting slider 81 to move up and down along the lifting guide rail 82 when working.
The gas collecting ring 47 is fixed on the driven wheel mounting seat 45 through a gas collecting ring fixing seat 46, the gas collecting ring 47 is a gas supply device with the lower end fixed and the upper end capable of rotating, the lower end of the gas collecting ring 47 is fixed on the gas collecting ring fixing seat 46, and the upper end of the gas collecting ring 47 rotates along with the rotating gas inlet shaft 43 during gas supply.
The front end of the pressing sliding plate 63 is bent towards one side of the cantilever device 9, the pressing wheel 66 is fixed at the bent end of the pressing sliding plate 63, and the diameter of the pressing wheel 66 is larger than the width of the bent end of the pressing sliding plate 63.
The minimum width of a gap between the two adhesive tape baffle plates is half of the width of the adhesive tape.
The second rubber head connecting block 109 is fixed on the first rubber head connecting block 108 through a bolt.
The crack opening direction on the second rubber head connecting block 109 is the horizontal direction.
The opening of the adhesive tape passing channel on the second adhesive head connecting block 109 is in a gradual change type with a large side and a small side, the opening of the adhesive tape passing channel on the side close to the adhesive tape is large, and the opening of the adhesive tape passing channel on the side close to the photoelectric sensor is small.
The utility model discloses a concrete work flow as follows:
in an initial state, an adhesive tape is required to be arranged on an adhesive tape fixing device 4, a wafer packaging box is arranged on a workpiece supporting and rotating transmission device 3, a pneumatic three-jaw chuck 41 at the upper end of the adhesive tape fixing device 4 clamps the adhesive tape to prevent the adhesive tape from being horizontal, the adhesive tape is provided with an adhesive tape head, the adhesive tape head is a square block with one side adhered to the adhesive tape and the other side not adhered to the adhesive tape, when the adhesive tape is arranged on the pneumatic three-jaw chuck 41, a chuck driving cylinder 42 is used for driving the pneumatic three-jaw chuck 41 to open and grasp the inner wall of the adhesive tape, and meanwhile, an adhesive tape rotating driving device 5 is used for driving the whole body formed by the pneumatic three-jaw chuck 41 and the adhesive tape to rotate;
the fixing operation of the adhesive tape head is required to be performed during the initial work, because the adhesive tape has an extended adhesive tape head in the initial state, the cantilever beam base 91 of the cantilever device 9 moves to a proper position, and simultaneously the cantilever linear module 94 is driven to enable the adhesive tape head taking and pasting device 10 to integrally move to the vicinity of the adhesive tape, the base rotary driving motor 102 on the adhesive tape head taking and pasting device 10 drives the whole upper part to integrally rotate, and the adhesive tape head of the adhesive tape can enter the adhesive tape threading channel of the adhesive tape head taking and pasting device 10 during the rotation by matching with the rotation of the adhesive tape, when the photoelectric sensor 114 detects the adhesive tape head of the adhesive tape, the adhesive tape head is represented to enter the adhesive tape threading channel, at this moment, the adhesive tape head taking cylinder 107 pushes the adhesive tape head push plate 110 to move forward, and the adhesive tape head is pressed between the adhesive tape head push plate 110 and the inner side of the adhesive tape baffle of the second adhesive head connecting block 109, so as to realize the fixing operation of the adhesive tape head.
After the adhesive tape head is fixed, the adhesive tape winding operation needs to be carried out, firstly, the cantilever rotating cylinder 95 of the cantilever device 9 works to push the cantilever beam base 91 to rotate, and meanwhile, the cantilever linear module 94 is driven to work, so that the adhesive tape head taking and adhering device 10 moves to a position right facing the wafer packaging box, and the output ends of the pressing block cylinder 105, the adhesive tape head taking cylinder 107 and the blade cylinder 111 are all perpendicular to the front surface of the wafer packaging box; the pressing block cylinder 105 is used for pushing the adhesive tape pressing block 106 to move forwards, the adhesive tape pressing block 106 pushes the adhesive tape beside the adhesive tape head forwards until the adhesive tape is adhered to the front surface of the wafer packaging box, the adhesive tape head taking cylinder 107 returns to the initial position at the moment, the adhesive tape head is loosened, and meanwhile, the workpiece supporting and rotating transmission device 3 drives the wafer packaging box to rotate, so that the adhesive tape winds the wafer packaging box for one circle after the semicircular guide side plate 103 until the whole adhesive tape winding operation is completed; in the process of winding the adhesive tape, the pressing device 6 keeps passing through the adhesive tape winding process at the same time, the pressing cylinder 64 of the pressing device pushes the pressing sliding plate 63 to move forwards to enable the pressing wheel 66 to press the surface of the wafer packaging box, the pressing device keeps a certain pressing force when pressing the wafer packaging box, when the pressing force exceeds a certain pressing force range, the pressing device is required to actively slightly move the pressing position by a rear leg until the pressing position bypasses the clamping point, and then the pressing wheel 66 is pushed to move forwards to continue pressing the wafer packaging box.
After the adhesive tape winding process is finished, when the wafer packaging box returns to the initial position, the workpiece supporting rotary transmission device 3 stops rotating, the pressing device 6 resets at the same time, a section of straight adhesive tape section is arranged between the adhesive tape wound on the wafer packaging box and the adhesive tape arranged on the adhesive tape rotary driving device 5, and the adhesive tape section bypasses the semicircular guide side plate 103; at this time, the base of the rotary adhesive tape head-taking and adhesive-pasting device 10 rotates to drive the motor 102 to rotate so that the whole body above the rotary adhesive tape head-taking and adhesive-pasting device 10 starts to rotate until the output ends of the pressing block cylinder 105, the adhesive tape head-taking cylinder 107 and the blade cylinder 111 are perpendicular to the section of the adhesive tape section, the adhesive tape section is extruded towards the contact position of the adhesive tape head and the rotary adhesive tape head-taking and adhesive-pasting device 10, the contact position of the rotary adhesive tape head-taking and adhesive tape section comprises a semicircular guide side plate 103, an adhesive tape baffle of the second adhesive tape head connecting block 109 and an adhesive tape limiting roller 113, the adhesive tape section is finally extruded into an adhesive tape penetrating channel of the second adhesive tape head connecting block 109 from a gap between the two adhesive tape baffles, at this time, the adhesive tape head-taking cylinder 107 pushes the adhesive head push plate 110 to move forwards, and part of the adhesive tape section is pressed between the adhesive head push plate 110 and the inner side of the adhesive tape baffle of the second adhesive head connecting block 109, so as to fix the adhesive tape section.
After the adhesive tape section in the middle of the wound adhesive tape is fixed, the blade cylinder 111 drives the scissor blade 112 to move forward until the adhesive tape section is cut off, the tail end cutting work of the adhesive tape of the whole wafer packaging box and the front adhesive tape taking head work of the next wafer packaging box are completed, the workpiece supporting rotary transmission device 3 transports the wound wafer packaging box to the next station, and meanwhile, the wafer packaging box needing to be wound with the adhesive tape is continuously conveyed into the workpiece supporting rotary transmission device 3 through the transmission device of the previous station to prepare for the next adhesive tape winding operation.
When the blade cylinder 111 drives the scissor blade 112 to cut the adhesive tape, the pressing device 6 can continue to work for a period of time, the short section of the adhesive tape extending out after being cut can be smoothly pressed on the surface of the wafer packaging box, the whole adhesive tape cutting process can be directly carried out near the front surface of the wafer packaging box, only a small section of the adhesive tape is left when being cut, and the adhesive tape can be directly pushed onto the wafer packaging box when the scissor blade cuts the adhesive tape.
Because whole wafer packing carton need carry out twice and twine the sticky tape operation, after once twining the sticky tape operation and accomplish, elevating gear (8) drive activity frame 7 jacket for whole twine sticky tape station and move up a section distance, thereby carry out the second of wafer packing carton and twine the sticky tape process, whole twine sticky tape process look for the sticky tape head work only need carry out once can, follow-up can utilize the sticky tape head of finding directly to twine the sticky tape operation always.
The above-mentioned embodiment is only the preferred embodiment of the present invention, and is not to the limitation of the technical solution of the present invention, as long as the technical solution can be realized on the basis of the above-mentioned embodiment without creative work, all should be regarded as falling into the protection scope of the right of the present invention.

Claims (10)

1. The utility model provides a wafer packaging box twines tape unit which characterized in that: the automatic adhesive tape taking and sticking device comprises an integral rack (2), a workpiece supporting and rotating transmission device (3), an adhesive tape fixing device (4), an adhesive tape rotating driving device (5), a pressing device (6), a movable rack (7), a lifting device (8), a cantilever device (9) and an adhesive tape head taking and sticking device (10), wherein the lifting device (8) is fixed on the integral rack (2), the movable rack (7) is installed at the movable end of the lifting device (8), and the lifting device (8) drives the movable rack (7) to do linear motion in the vertical direction; the workpiece supporting rotary transmission device (3) is used for fixing and supporting the wafer packaging box (1) subjected to bagging and shaping and driving the wafer packaging box (1) to rotate, and the workpiece supporting rotary transmission device (3) is fixed on the integral rack (2) beside the movable rack (7); the adhesive tape fixing device (4), the adhesive tape rotation driving device (5), the pressing device (6) and the cantilever device (9) are all arranged on the movable rack (7), and the adhesive tape head taking and adhering device (10) is arranged on the cantilever device (9);
the cantilever device (9) comprises a cantilever beam base (91), cantilever beam bearing seats (92), a cantilever beam rotating shaft (93), a cantilever linear module (94), a cantilever rotating cylinder (95) and a cantilever cylinder seat (96), wherein the cantilever beam rotating shaft (93) is vertically arranged, the lower end of the cantilever beam rotating shaft (93) is installed on the movable rack (7) through the cantilever beam bearing seat (92), the upper end of the cantilever beam rotating shaft (93) is installed at one end of the cantilever beam base (91) through another cantilever beam bearing seat (92), and the cantilever linear module (94) is horizontally installed on the cantilever beam base (91); the cantilever rotating cylinder (95) is horizontally arranged, the fixed end of the cantilever rotating cylinder (95) is fixed on the movable rack (7) through a cantilever cylinder seat (96), the fixed end of the cantilever rotating cylinder (95) is hinged on the cantilever cylinder seat (96), and the movable end of the cantilever rotating cylinder (95) is hinged in the middle of the cantilever beam base (91); when the cantilever rotating cylinder (95) works, the cantilever base (91) and the cantilever bearing seat (92) are driven to integrally rotate around the cantilever rotating shaft (93) in the horizontal direction;
the adhesive tape head taking and adhering device (10) is arranged on a sliding block of a cantilever linear module (94) of the cantilever device (9); the adhesive tape head taking and adhering device (10) comprises a rotary base (101), a base rotary driving motor (102), a semicircular guide side plate (103), a bottom supporting plate (104), a pressing block cylinder (105), an adhesive tape pressing block (106), an adhesive tape head taking cylinder (107), a first adhesive tape head connecting block (108), a second adhesive tape head connecting block (109), an adhesive tape head push plate (110), a blade cylinder (111), a scissor blade (112), a photoelectric sensor (114) and an adhesive tape limiting roller (113), the base rotary driving motor (102) is vertically arranged, the base rotary driving motor (102) is fixed on a sliding block of a cantilever linear module (94) of the cantilever device (9), the rotary base (101) is arranged right above the base rotary driving motor (102), the bottom of the rotary base (101) is fixedly connected with an output shaft of the base rotary driving motor (102), and the rotary base (101) is driven to rotate when the base rotary driving motor (102) rotates; a semicircular guide side plate (103) which is integrally and semi-circularly surrounded is fixed on one side of the upper surface of the rotary base (101), a bottom supporting plate (104) is fixed on the other side of the upper surface of the rotary base (101), the blade cylinder (111), the rubber head taking cylinder (107) and the pressing block cylinder (105) are mounted on the bottom supporting plate (104) in parallel, the rubber head taking cylinder (107) and the semicircular guide side plate (103) are respectively arranged on the left side and the right side of the pressing block cylinder (105), the scissor blade (112) is connected to the output end of the blade cylinder (111), the adhesive tape pressing block (106) is connected to the output end of the pressing block cylinder (105), and the rubber head pushing plate (110) is arranged at the output end of the rubber head taking cylinder (107); the adhesive tape limiting roller (113) and the first adhesive head connecting block (108) are fixed on the bottom supporting plate (104), and the adhesive tape limiting roller (113) and the first adhesive head connecting block (108) are respectively positioned at two sides of the scissor blade (112) when the blade cylinder (111) pushes the scissor blade (112) to extend out; the first rubber head connecting block (108) is arranged right in front of the rubber head pushing plate (110), the second rubber head connecting block (109) comprises a connecting back plate, two rubber belt baffle plates and two connecting side plates, the connecting back plate and the two rubber belt baffle plates are arranged in parallel, and the two rubber belt baffle plates are fixed on the connecting back plate through the two connecting side plates; a connecting back plate of the second rubber head connecting block (109) is fixed on the first rubber head connecting block (108), transverse through holes for the rubber head push plate (110) to pass through are formed in the connecting back plates of the first rubber head connecting block (108) and the second rubber head connecting block (109), and a rubber belt passing channel for accommodating a rubber belt to pass through is formed between the connecting back plate of the second rubber head connecting block (109) and the rubber belt baffle; the middle parts of the two adhesive tape baffle plates are provided with a crack with a narrow middle part and wide two ends, the maximum width of the crack is larger than the width of the adhesive tape, the minimum width of the crack is smaller than the width of the adhesive tape, after the adhesive tape enters a tape passing channel of the second adhesive tape head connecting block (109), the adhesive tape head taking cylinder (107) pushes the adhesive tape head push plate (110) to pass through the transverse through holes on the first adhesive tape head connecting block (108) and the second adhesive tape head connecting block (109) and tightly presses the adhesive tape on the inner side of the adhesive tape baffle plate of the second adhesive tape head connecting block (109); the photoelectric sensor (114) is arranged between the blade cylinder (111) and the rubber head taking cylinder (107), and the direction opposite to the photoelectric sensor (114) is the extending direction of piston rods of the blade cylinder (111) and the rubber head taking cylinder (107);
the pressing device (6) comprises a pressing base (61), a pressing guide rail (62), a pressing sliding plate (63), a pressing cylinder (64), a pressing upper cover plate (65), a pressing wheel (66), a pressing limiting block (67) and a pressing positioning sheet (68), the pressing base (61) is fixed on the movable rack (7), and the pressing upper cover plate (65) is fixed on the pressing base (61); the pressing guide rail (62) is fixed on the pressing base (61), the axis of the pressing guide rail (62) is perpendicular to the front surface of the wafer packaging box (1), a guide groove matched with the pressing guide rail (62) is formed in the bottom of the pressing sliding plate (63), and the pressing sliding plate (63) is sleeved on the pressing guide rail (62) through the guide groove in the bottom; the axis of the pressing wheel (66) is vertically arranged, the pressing wheel (66) is fixed at one end, close to the wafer packaging box (1), of the pressing sliding plate (63), the pressing positioning piece (68) is fixed on the pressing sliding plate (63) close to the pressing wheel (66), and a groove hole for a piston rod of the pressing air cylinder (64) to penetrate through is formed in the pressing positioning piece (68); the pressing cylinder (64) is arranged in parallel to the pressing guide rail (62), the pressing cylinder (64) is fixed on the pressing upper cover plate (65), a pressing limiting block (67) is arranged on a piston rod of the pressing cylinder (64), and the piston rod of the pressing cylinder (64) penetrates through a slotted hole in the pressing positioning piece (68) and then pushes the pressing positioning piece (68) to move through the pressing limiting block (67) so as to drive the whole body formed by the pressing sliding plate (63) and the pressing wheel (66) to move towards the direction of the wafer packaging box (1);
the adhesive tape fixing device (4) comprises a pneumatic three-jaw chuck (41), a chuck driving cylinder (42), a rotary air inlet shaft (43), an adhesive tape rotary driven wheel (44), a driven wheel mounting seat (45) and an air collecting ring (47), wherein the pneumatic three-jaw chuck is fixed at the output end of the chuck driving cylinder (42), the bottom of the chuck driving cylinder (42) is fixed at the top end of the vertically arranged rotary air inlet shaft (43), the rotary air inlet shaft (43) is mounted on the driven wheel mounting seat (45) through two bearing seats, the adhesive tape rotary driven wheel (44) is fixed on the rotary air inlet shaft (43), and the adhesive tape rotary driven wheel (44) is arranged between the two bearing seats supporting the rotary air inlet shaft (43); the driven wheel mounting seat (45) is fixed on the movable rack (7), the gas collecting ring (47) is fixed at the bottom of the driven wheel mounting seat (45), a gas transmission port at the upper end of the gas collecting ring (47) is connected with a gas inlet at the lower end of the rotary gas inlet shaft (43), and a gas outlet at the upper end of the rotary gas inlet shaft (43) is connected with a gas inlet of the chuck driving cylinder (42); the adhesive tape rotary driven wheel (44) is connected with the adhesive tape rotary driving wheel through a synchronous belt; when the pneumatic three-jaw chuck (41) fixes the adhesive tape, the height of the adhesive tape is equal to that of the adhesive tape threading channel, and the adhesive head of the adhesive tape can just penetrate into the adhesive tape threading channel of the first adhesive head connecting block (108);
the adhesive tape rotary driving device (5) is connected with an adhesive tape rotary driving wheel (54) of the adhesive tape fixing device (4) through a synchronous belt, and the adhesive tape rotary driving device (5) drives the adhesive tape rotary driving wheel (54) to rotate through the synchronous belt during working so as to drive the pneumatic three-jaw chuck (41) and an integral adhesive tape to rotate.
2. The wafer packaging cassette taping device of claim 1, wherein: the adhesive tape rotation driving device (5) comprises an adhesive tape rotation driving motor (51), an adhesive tape rotation motor base (52), an adhesive tape rotation coupling (53) and an adhesive tape rotation driving wheel (54), the adhesive tape rotation motor base (52) is fixed on the movable rack (7), the adhesive tape rotation driving motor (51) is vertically fixed on the adhesive tape rotation motor base (52), and an output shaft of the adhesive tape rotation driving motor (51) is connected with the adhesive tape rotation driving wheel (54) through the adhesive tape rotation coupling (53).
3. The wafer packaging cassette taping device of claim 1, wherein: the lifting device (8) comprises lifting slide blocks (81), lifting guide rails (82) and a lifting cylinder (83), the lifting guide rails (82) are provided with two lifting guide rails (82), the two lifting guide rails (82) are vertically fixed on the integral rack (2), each lifting guide rail (82) is sleeved with one lifting slide block (81), and the two lifting slide blocks (81) are fixedly connected with the movable rack (7); the bottom of the lifting cylinder (83) is fixed on the integral frame (2), and the movable end of the lifting cylinder (83) is fixed on the movable frame (7); when the lifting cylinder (83) works, the whole body formed by the movable frame (7) and the lifting slide block (81) is driven to move up and down along the lifting guide rail (82).
4. The wafer packaging cassette taping device of claim 1, wherein: the gas collecting ring (47) is fixed on a driven wheel mounting seat (45) through a gas collecting ring fixing seat (46), the gas collecting ring (47) is a gas supply device with the lower end fixed and the upper end capable of rotating, the lower end of the gas collecting ring (47) is fixed on the gas collecting ring fixing seat (46), and the upper end of the gas collecting ring (47) rotates along with a rotary gas inlet shaft (43) during gas supply.
5. The wafer packaging cassette taping device of claim 1, wherein: the front end of the pressing sliding plate (63) is bent towards one side of the cantilever device (9), the pressing wheel (66) is fixed at the bent end part of the pressing sliding plate (63), and the diameter of the pressing wheel (66) is larger than the width of the bent end of the pressing sliding plate (63).
6. The wafer packaging cassette taping device of claim 1, wherein: the minimum width of a gap between the two adhesive tape baffle plates is half of the width of the adhesive tape.
7. The wafer packaging cassette taping device of claim 1, wherein: and the second rubber head connecting block (109) is fixed on the first rubber head connecting block (108) through a bolt.
8. The wafer packaging cassette taping device of claim 1, wherein: the crack opening direction on the second rubber head connecting block (109) is the horizontal direction.
9. The wafer packaging cassette taping device of claim 1, wherein: the workpiece supporting and rotating transmission device (3) comprises a clamping device, a conveying belt device and a conveying belt rotating driving device, the wafer packaging box (1) is placed on the conveying belt device, the conveying belt device is used for realizing the transportation of the wafer packaging box (1) between the front station and the rear station, the clamping device is fixed on the conveying belt device and clamps the wafer packaging box (1) at the designated position of the conveying belt device, and the rotating driving device is connected with the conveying belt device and drives the whole body formed by the conveying belt device, the clamping device and the wafer packaging box (1) to rotate.
10. The wafer packaging cassette taping device of claim 1, wherein: the opening of the adhesive tape passing channel on the second adhesive head connecting block (109) is in a gradual change type with one large side and one small side, the opening of the adhesive tape passing channel on one side close to the adhesive tape is large, and the opening of the adhesive tape passing channel on one side close to the photoelectric sensor is small.
CN202022940739.4U 2020-12-10 2020-12-10 Adhesive tape winding device for wafer packaging box Active CN214356864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022940739.4U CN214356864U (en) 2020-12-10 2020-12-10 Adhesive tape winding device for wafer packaging box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022940739.4U CN214356864U (en) 2020-12-10 2020-12-10 Adhesive tape winding device for wafer packaging box

Publications (1)

Publication Number Publication Date
CN214356864U true CN214356864U (en) 2021-10-08

Family

ID=77982270

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022940739.4U Active CN214356864U (en) 2020-12-10 2020-12-10 Adhesive tape winding device for wafer packaging box

Country Status (1)

Country Link
CN (1) CN214356864U (en)

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