Separating equipment used in blister box production process

The device addresses inefficiencies in absorbent box separation by using pneumatic extenders to blow air into gaps between boxes, ensuring immediate transfer and enhancing transport efficiency.

CN120307622AInactive Publication Date: 2025-07-15WUHAN NEW FOUNDER PLASTIC IND CO LTD

Patent Information

Application Number
CN202510620328.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the production of existing separation equipment, the blister box is closely connected to the lower box, resulting in the untimely separation of the upper box, which affects the transmission efficiency.

Method used

The first pneumatic telescopic rod connected by six groups of outer frames is adopted to eliminate negative pressure by combining the sliding sleeve, the second pneumatic telescopic rod, the telescopic frame rod, the angle frame, the adjustment base, the third pneumatic telescopic rod, the nozzle and the second air pump chamber, and the negative pressure is eliminated by blowing air to achieve rapid separation of the blister box.

Benefits of technology

Improve the transmission efficiency of the equipment, eliminate waiting time, and improve production efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120307622A_ABST
    Figure CN120307622A_ABST
Patent Text Reader

Abstract

The separation equipment used in the blister box production process comprises a material carrying and conveying component and a taking and separating mechanism, and a plane displacement lifting assembly assembled through bolts is arranged on the outer side of the periphery of the material carrying and conveying component; a power adjusting mechanism assembled through bolts is arranged on the inner bottom side of the plane displacement lifting assembly. According to the device, six sets of outer frames on a separation mechanism are mainly used for being connected with a first pneumatic telescopic rod through bolts, and a sliding sleeve frame, a second pneumatic telescopic rod, a telescopic frame rod, an angle frame, an adjusting base, a third pneumatic telescopic rod, a nozzle and a second air pump bin are jointly matched; the angle frame, the adjusting base, the third pneumatic telescopic rod, the nozzle and the second air pump bin blow air to gaps of the blister boxes, during adsorption, surrounding annular blowing openings blow air to gaps of the adjacent blister boxes, in this way, negative pressure is eliminated, waiting time is not needed when the blister boxes above are transferred, and therefore the conveying efficiency of equipment is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of blister box production, and in particular to a separation device used in the production process of blister boxes. Background Art

[0002] Blister molding is a plastic processing technology. The main principle is to heat and soften a flat plastic sheet, and then use vacuum adsorption on the surface of the mold. After cooling, it forms. It is widely used in plastic packaging, lighting, advertising, decoration and other industries. Generally speaking, blister boxes refer to all blister shells. Narrowly speaking, they are just a type of blister shell: the sheet is blister molded into a plastic box shape, and the lid is connected to the container. It is mostly made of PS, and there are also those with the lid and bottom separated. Different materials can be selected. For example, for Japanese fast food boxes, the bottom is made of black PS and the lid is made of transparent PET.

[0003] When the existing separation device is in use, for example, as disclosed in Application No. CN201220364863.3, a special blister box for injection molding and a transmission device for automatically stacking the blister boxes are disclosed. The special blister box for injection molding includes a blister box body. A plurality of receiving grooves are uniformly arranged on the upper part of the blister box body. Notches are recessed upward on both sides of the lower part of the blister box to form hanging platforms. The transmission device for automatically stacking the special blister boxes for injection molding includes a transmission device, a first lifting device, a feeding device and a second lifting device. The transmission device is used to convey the blister boxes. There are a box feeding station, a feeding station and a box receiving station on the transmission device. The first lifting device always lifts the second and above blister boxes stacked at the box feeding station from the bottom. The feeding device feeds the blister boxes. The second lifting device is used to lift the bottommost blister box stacked at the box receiving station, thereby changing the traditional manual production mode, realizing automatic transmission, box feeding and box receiving in production, shortening the product manufacturing cycle and reducing the investment in labor costs. However, in the above technology, since the blister boxes are stacked and connected to the lower blister boxes relatively tightly, it is necessary to wait for a few milliseconds. After the lower blister box is separated from the upper blister box, the suction head can transfer the upper blister box away. Therefore, we propose a separation device used in the production process of blister boxes to solve the above problems. Summary of the Invention

[0004] In view of the above problems, the present invention provides a separation device for the production process of plastic suction boxes. The separation device for the production process of plastic suction boxes mainly uses six groups of outer frames on the separation mechanism to bolt - connect and install the first pneumatic telescopic rod. Through the combined action of the sliding sleeve frame, the second pneumatic telescopic rod, the telescopic rod, the angle frame, the adjustment base, the third pneumatic telescopic rod, the nozzle and the second air pump chamber, the angle frame, the adjustment base, the third pneumatic telescopic rod, the nozzle and the second air pump chamber blow air into the gap of the plastic suction box. When adsorbing, the surrounding annular air outlets blow air into the gaps between adjacent plastic suction boxes, thus eliminating the negative pressure. Then, when the upper plastic suction box is transferred, it does not need to wait, thereby improving the transmission efficiency of the device.

[0005] To achieve the above - mentioned purpose, the present invention provides the following technical solutions:

[0006] A separation device for the production process of plastic suction boxes includes a material - carrying and transporting component and a picking - up and separating mechanism. A planar displacement and lifting component assembled by bolts is arranged on the outer sides around the material - carrying and transporting component, and a power - adjusting mechanism assembled by bolts is arranged on the inner bottom side of the planar displacement and lifting component. The picking - up and separating mechanism assembled by bolts is arranged on the bottom side of the power - adjusting mechanism.

[0007] As a further technical solution, the material - carrying and transporting component includes a cushion block, a cabinet, a bolt bracket, a trough - shaped table, an end bracket, a fixed tray, a lining plate, a variable - speed machine box, a driving motor, a meshing gear set, a transmission roller rod and a conveyor belt. The cabinet is arranged above the cushion block, and the trough - shaped table is bolt - connected above the cabinet through the bolt bracket. The fixed trays are bolt - connected to both ends of the trough - shaped table through the end brackets.

[0008] As a further technical solution, a lining plate is arranged on the inner side of the trough - shaped table. A variable - speed machine box is arranged on the outer side of one end of the trough - shaped table, and a driving motor is arranged on one side of the variable - speed machine box. The output end of the driving motor is provided with a meshing gear set, and the output end of the meshing gear set is provided with a transmission roller rod. The conveyor belt is wound around the output end of the transmission roller rod.

[0009] As a further technical solution, the planar displacement lifting assembly includes a bolt support rod, a lifting frame, a top plate bin, a first lead screw motor, a first lead screw group, a top sliding seat, a slotted beam, a second lead screw motor, a second lead screw group, a sliding block seat, a bolt hanging bracket, a double-opening box, a built-in motor, a bevel gear group, a third lead screw group, a telescopic block, an upper hinge base, a hinge frame, a lower hinge base and a lifting disc. The lifting frame is bolted to the side of the trough-shaped table through the bolt support rod. A top plate bin is arranged at the top end of the lifting frame. A first lead screw motor is arranged at one end of the top plate bin. The output end of the first lead screw motor is provided with a first lead screw group, and the first lead screw group is threadedly connected with the top sliding seat. A slotted beam is arranged below the top sliding seat, and a second lead screw group connecting the output end of the second lead screw motor is arranged on the slotted beam. The second lead screw group is threadedly connected with the sliding block seat.

[0010] As a further technical solution, the sliding block seat is bolted to the double-opening box below through the bolt hanging bracket. A built-in motor is arranged inside the double-opening box. The output end of the built-in motor is provided with a bevel gear group, and the output end of the bevel gear group is provided with a third lead screw group. The third lead screw group is threadedly connected with the telescopic block. An upper hinge base is arranged below the telescopic block. The upper hinge base is hinge-connected to the lower hinge base through the hinge frame below, and a lifting disc is arranged below the lower hinge base.

[0011] As a further technical solution, the power adjustment mechanism includes an electric rotary seat, an upper triangular plate, a motor base, a servo motor, an arc-shaped bar, a hinged rod group, a lower hinge seat, a lower triangular plate, a combined hinge seat, a balance sleeve rod and a swinging base. The electric rotary seat is bolted to the lower part of the lifting disc. The output end of the electric rotary seat is provided with an upper triangular plate, and a motor base is arranged at the end of the upper triangular plate. An arc-shaped bar connecting the output end of the servo motor is arranged on one side of the motor base.

[0012] As a further technical solution, one end of the arc-shaped bar is provided with a hinged rod group, and a lower hinge seat is arranged below the hinged rod group. A lower triangular plate is arranged on the inner side of the lower hinge seat, and a combined hinge seat is arranged above the middle of the lower triangular plate. The combined hinge seat is hinge-connected to the swinging base through the balance sleeve rod above.

[0013] As a further technical solution, the picking and separating mechanism includes a transmission cabin, a direction - dividing disk, a four - lead screw group, four pairs of sliders, bolt - sleeve seats, a base disk, suction nozzles, flexible tubes, sleeve tubes, connecting boxes, a first air - pump cabin, air inlet and outlet ports, six groups of outer frames, a first pneumatic telescopic rod, a sliding sleeve frame, a second pneumatic telescopic rod, a telescopic frame rod, an angle frame, an adjusting base, a third pneumatic telescopic rod, nozzles and a second air - pump cabin. The transmission cabin is bolt - connected to the bottom side of the lower triangular plate. A direction - dividing disk is arranged below the transmission cabin, and a four - lead screw group that is thread - connected to four pairs of sliders is arranged at the output end of the direction - dividing disk. The lower sides of the four pairs of sliders are bolt - connected with a base disk for installing suction nozzles through bolt - sleeve seats. The side of the bolt - sleeve seat is sleeved and connected with a sleeve tube through a flexible tube, and a connecting box is arranged at the output end of the sleeve tube. An air inlet and outlet port is installed at the output end of the connecting box in the first air - pump cabin.

[0014] As a further technical solution, six groups of outer frames assembled by bolts are arranged on the outer side of the direction - dividing disk. A first pneumatic telescopic rod is arranged on one side of the six groups of outer frames. A sliding sleeve frame is arranged at the output end of the first pneumatic telescopic rod. Second pneumatic telescopic rods are arranged on the inner sides of both ends of the sliding sleeve frame. A telescopic frame rod is arranged at the output end of the second pneumatic telescopic rod. An angle frame connected by a hinge is arranged on the inner side below the telescopic frame rod. A third pneumatic telescopic rod is hinge - connected to the upper part of the middle of the angle frame through an adjusting base. A nozzle connecting to the output end of the second air - pump cabin is arranged at the inner end of the angle frame.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] The device of this invention mainly uses the first pneumatic telescopic rods bolt - connected to the six groups of outer frames on the separating mechanism. Through the combined action of the sliding sleeve frame, the second pneumatic telescopic rod, the telescopic frame rod, the angle frame, the adjusting base, the third pneumatic telescopic rod, the nozzles and the second air - pump cabin, the angle frame, the adjusting base, the third pneumatic telescopic rod, the nozzles and the second air - pump cabin blow air into the gap of the plastic - suction box. During adsorption, the surrounding annular blow ports blow air into the gaps between adjacent plastic - suction boxes, thus eliminating negative pressure. In this way, the upper plastic - suction box does not need to wait when being transferred, thereby improving the transmission efficiency of the equipment. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of a separating device used in the production process of plastic - suction boxes;

[0018] Figure 2 It is a schematic bottom - view structural diagram of the present invention;

[0019] Figure 3 It is a schematic structural diagram of the material - carrying and transmitting component of the present invention;

[0020] Figure 4 It is a schematic structural diagram of the planar displacement lifting assembly in the present invention;

[0021] Figure 5 It is a schematic structural diagram of the hinge frame and the lower hinge base in the present invention;

[0022] Figure 6 It is a schematic structural diagram of the power adjustment mechanism in the present invention;

[0023] Figure 7 It is a schematic structural diagram of the picking and separating mechanism in the present invention;

[0024] Figure 8 It is a schematic structural diagram of the base plate and the suction nozzle in the present invention.

[0025] In the figure: 1. Material carrying and conveying component; 101. Spacer block; 102. Cabinet; 103. Bolt support; 104. Grooved table; 105. End bracket; 106. Fixed tray; 107. Lining plate; 108. Variable speed gearbox; 109. Driving motor; 1010. Meshing gear set; 1011. Transmission roller rod; 1012. Conveyor belt; 2. Planar displacement lifting assembly; 201. Bolt support rod; 202. Lifting frame; 203. Top plate bin; 204. First lead screw motor; 205. First lead screw group; 206. Top sliding seat; 207. Slotted beam; 208. Second lead screw motor; 209. Second lead screw group; 2010. Slide block seat; 2011. Bolt hanging bracket; 2012. Double-opening box; 2013. Built-in motor; 2014. Helical gear set; 2015. Third lead screw group; 2016. Expansion and contraction block; 2017. Upper hinge base; 2018. Hinge frame; 2019. Lower hinge base; 2020. Lifting plate; 3. Power adjustment mechanism; 301. Electric rotating seat; 302. Upper triangular plate; 303. Motor base; 304. Servo motor; 305. Arc bar; 306. Hinge rod group; 307. Lower hinge seat; 308. Lower triangular plate; 309. Combined hinge seat; 3010. Balanced sleeve rod; 3011. Swing base; 4. Picking and separating mechanism; 401. Transmission hanging bin; 402. Diverting plate; 403. Four lead screw groups; 404. Four pairs of sliders; 405. Bolt sleeve seat; 406. Base plate; 407. Suction nozzle; 408. Flexible tube; 409. Sleeve tube; 4010. Connecting box; 4011. First air pump bin; 4012. Air inlet and outlet; 4013. Six groups of outer frames; 4014. First pneumatic telescopic rod; 4015. Sliding sleeve frame; 4016. Second pneumatic telescopic rod; 4017. Telescopic frame rod; 4018. Angle frame; 4019. Adjusting base; 4020. Third pneumatic telescopic rod; 4021. Nozzle; 4022. Second air pump bin. Detailed implementation mode

[0026] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "up", "down", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention. In addition, the terms "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.

[0027] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific situations.

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0029] Please refer to Figure 1-8 , in the embodiment of the present invention, a separation device for the production process of blister boxes includes a material carrying and transmitting component 1 and a picking and separating mechanism 4. A planar displacement and lifting component 2 assembled by bolts is arranged on the outer sides around the material carrying and transmitting component 1, and a power adjusting mechanism 3 assembled by bolts is arranged on the inner bottom side of the planar displacement and lifting component 2. A picking and separating mechanism 4 assembled by bolts is arranged on the bottom side of the power adjusting mechanism 3.

[0030] The material loading and transporting component 1 includes a cushion block 101, a cabinet 102, a bolt support 103, a trough-shaped platform 104, an end bracket 105, a fixed tray 106, a lining plate 107, a speed change gearbox 108, a driving motor 109, a meshing gear set 1010, a transmission roller rod 1011, and a conveyor belt 1012. Above the cushion block 101 is provided the cabinet 102, and above the cabinet 102 is bolted to the trough-shaped platform 104 through the bolt support 103. Both ends of the trough-shaped platform 104 are bolted to the fixed tray 106 through the end bracket 105.

[0031] In the embodiment of the present invention, during use, after being placed at the processing location through the cushion block 101 and the cabinet 102, the bolt support 103 supports the trough-shaped platform 104, and the fixed trays 106 above both ends of the end bracket 105 are used to carry and place the materials in advance.

[0032] On the inner side of the trough-shaped platform 104 is provided the lining plate 107. On the outer side of one end of the trough-shaped platform 104 is provided the speed change gearbox 108, and on one side of the speed change gearbox 108 is provided the driving motor 109. At the output end of the driving motor 109 is provided the meshing gear set 1010, and at the output end of the meshing gear set 1010 is provided the transmission roller rod 1011. The output end of the transmission roller rod 1011 is wound with the conveyor belt 1012.

[0033] In the embodiment of the present invention, then, after the driving motor 109 outputs power to drive the output end to operate, the meshing gear set 1010 on the speed change gearbox 108 meshes and drives to operate, so that after the transmission roller rod 1011 outputs and operates, it drives the conveyor belt 1012 to output and operate.

[0034] The planar displacement and lifting assembly 2 includes a bolt support rod 201, a lifting frame 202, a top plate bin 203, a first screw motor 204, a first screw group 205, a top sliding seat 206, a slotted beam 207, a second screw motor 208, a second screw group 209, a sliding block seat 2010, a bolt hanger 2011, a double-opening box 2012, a built-in motor 2013, a helical gear set 2014, a third screw group 2015, a telescopic block 2016, an upper hinge base 2017, a hinge frame 2018, a lower hinge base 2019, and a lifting disc 2020. The lifting frame 202 is bolted to the side of the trough-shaped platform 104 through the bolt support rod 201. At the top of the lifting frame 202 is provided the top plate bin 203, and at one end of the top plate bin 203 is provided the first screw motor 204. At the output end of the first screw motor 204 is provided the first screw group 205, and the first screw group 205 is threadedly connected to the top sliding seat 206. Below the top sliding seat 206 is provided the slotted beam 207, and on the slotted beam 207 is provided the second screw group 209 connecting to the output end of the second screw motor 208. The second screw group 209 is threadedly connected to the sliding block seat 2010.

[0035] In an embodiment of the present invention, when mobile operation is required, the first lead screw motor 204 at one end of the top plate bin 203 outputs power to drive the output end to operate, so that after the first lead screw group 205 outputs operation, the top sliding seat 206 moves the slotted beam 207 to a suitable position, and the second lead screw motor 208 outputs power to drive the output end to operate, so that the second lead screw group 209 outputs operation to make the sliding block seat 2010 drive the bolt hanging bracket 2011 to run to a suitable location.

[0036] The double-opening box 2012 is bolted to the lower part of the sliding block seat 2010 through the bolt hanging bracket 2011, and an internal motor 2013 is arranged inside the double-opening box 2012. An inclined gear group 2014 is arranged at the output end of the internal motor 2013, and a third lead screw group 2015 is arranged at the output end of the inclined gear group 2014. The third lead screw group 2015 is threadedly connected with a telescopic block 2016, and an upper hinge base 2017 is arranged below the telescopic block 2016. The lower part of the upper hinge base 2017 is hinge-connected with a lower hinge base 2019 through a hinge frame 2018, and a lifting disc 2020 is arranged below the lower hinge base 2019.

[0037] In an embodiment of the present invention, then the internal motor 2013 on the double-opening box 2012 outputs power to drive the output end to operate, so that after the internal motor 2013 outputs operation, it drives the inclined gear group 2014 to perform meshing transmission operation, so that after the third lead screw group 2015 outputs operation, it drives the telescopic block 2016, the upper hinge base 2017, the hinge frame 2018, and the lower hinge base 2019 to perform hinge transmission, and then the lifting disc 2020 is lifted to a suitable height.

[0038] The power adjustment mechanism 3 includes an electric rotating seat 301, an upper triangular plate 302, a motor base 303, a servo motor 304, an arc-shaped bar 305, a hinge rod group 306, a lower hinge seat 307, a lower triangular plate 308, a combined hinge seat 309, a balance sleeve rod 3010, and a swing base 3011. The electric rotating seat 301 is bolted to the lower part of the lifting disc 2020. The output end of the electric rotating seat 301 is provided with the upper triangular plate 302, and a motor base 303 is arranged at the end of the upper triangular plate 302. An arc-shaped bar 305 connecting the output end of the servo motor 304 is arranged on one side of the motor base 303.

[0039] In an embodiment of the present invention, then the electric rotating seat 301 outputs power to drive the output end to operate, so that the upper triangular plate 302 rotates to a suitable target location, and then the servo motor 304 outputs power to drive the arc-shaped bar 305 to perform adaptive swinging.

[0040] One end of the arc-shaped strip 305 is provided with a hinge rod group 306, and a lower hinge seat 307 is arranged below the hinge rod group 306. A lower triangular plate 308 is arranged on the inner side of the lower hinge seat 307, and a combined hinge seat 309 is arranged above the middle of the lower triangular plate 308. A swing base 3011 is hinge-connected above the combined hinge seat 309 through a balance sleeve rod 3010.

[0041] In the embodiment of the present invention, after the arc-shaped strip 305 swings adaptively, the hinge rod group 306 and the lower hinge seat 307 cooperate with the combined hinge seat 309, the balance sleeve rod 3010 and the swing base 3011 to perform hinge transmission, so that the lower triangular plate 308 runs to a suitable position.

[0042] The picking and separating mechanism 4 includes a transmission bin 401, a direction dividing disc 402, a four-screw rod group 403, four pairs of sliders 404, a bolt sleeve seat 405, a base disc 406, a suction nozzle 407, a flexible tube 408, a sleeve tube 409, a connecting box 4010, a first air pump bin 4011, an air inlet and outlet 4012, six groups of outer frames 4013, a first pneumatic telescopic rod 4014, a sliding sleeve frame 4015, a second pneumatic telescopic rod 4016, a telescopic frame rod 4017, an angle frame 4018, an adjusting base 4019, a third pneumatic telescopic rod 4020, a nozzle 4021 and a second air pump bin 4022. The transmission bin 401 is bolted to the bottom side of the lower triangular plate 308. A direction dividing disc 402 is arranged below the transmission bin 401, and a four-screw rod group 403 whose output end is threadedly connected to four pairs of sliders 404 is arranged at the output end of the direction dividing disc 402. A base disc 406 for installing the suction nozzle 407 is bolted below the four pairs of sliders 404 through a bolt sleeve seat 405. The side of the bolt sleeve seat 405 is sleeved and connected to a sleeve tube 409 through a flexible tube 408, and a connecting box 4010 is arranged at the output end of the sleeve tube 409. A first air pump bin 4011 for installing the air inlet and outlet 4012 is arranged at the output end of the connecting box 4010.

[0043] In the embodiment of the present invention, then the four-screw rod group 403 on the direction dividing disc 402 outputs and runs so that the four pairs of sliders 404 fit the bolt sleeve seat 405, the base disc 406 and the suction nozzle 407 above the plastic suction box, and the flexible tube 408, the sleeve tube 409, the connecting box 4010, the first air pump bin 4011 and the air inlet and outlet 4012 output and run to generate negative pressure to adsorb the product, thereby facilitating the transmission of materials.

[0044] Six groups of outer frames 4013 assembled with bolts are provided on the outer side of the steering wheel 402. One side of the six groups of outer frames 4013 is provided with a first pneumatic telescopic rod 4014. The output end of the first pneumatic telescopic rod 4014 is provided with a sliding sleeve frame 4015. The inner sides of both ends of the sliding sleeve frame 4015 are provided with second pneumatic telescopic rods 4016. The output end of the second pneumatic telescopic rod 4016 is provided with a telescopic frame rod 4017. The inner side below the telescopic frame rod 4017 is provided with an angle frame 4018 connected by a hinge. Above the middle of the angle frame 4018, a third pneumatic telescopic rod 4020 is connected by a hinge through an adjustment base 4019. The inner end of the angle frame 4018 is provided with a nozzle 4021 connected to the output end of the second air pump chamber 4022.

[0045] In the embodiment of the present invention, when separation is required, the first pneumatic telescopic rod 4014 is used to output power to operate so that the sliding sleeve frame 4015 runs to a suitable position. Then, the second pneumatic telescopic rod 4016 is used to output power to operate so that the telescopic frame rod 4017 is adjusted to a suitable position. Then, the third pneumatic telescopic rod 4020 is used to output power to operate so that the angle frame 4018 is adjusted to a suitable position. After the second air pump chamber 4022 outputs power to operate, the nozzle 4021 fills the blister box with intermittent inflation.

[0046] The working principle of the present invention is as follows: When in use, after being placed at the processing site through the cushion block 101 and the cabinet 102, the bolt support 103 supports the trough-shaped table 104, and the fixed trays 106 above both ends of the end bracket 105 are used to pre-carry and place the materials. Then, the driving motor 109 outputs power to drive the output end to operate, causing the meshing gear set 1010 on the speed change gearbox 108 to perform meshing transmission operation, so that the transmission roller rod 1011 outputs operation to drive the conveyor belt 1012 to output operation. When it is necessary to move, the first lead screw motor 204 at one end of the top plate bin 203 outputs power to drive the output end to operate, so that the first lead screw group 205 outputs operation to move the top sliding seat 206 to move the slotted beam 207 to a suitable position, and the second lead screw motor 208 outputs power to drive the output end to operate, so that the second lead screw group 209 outputs operation to make the sliding block seat 2010 drive the bolt hanger 2011 to run to a suitable location. Then, the built-in motor 2013 on the double-opening box 2012 outputs power to drive the output end to operate, so that after the built-in motor 2013 outputs operation, it drives the helical gear set 2014 to perform meshing transmission operation, so that the third lead screw group 2015 outputs operation to drive the expansion and contraction block 2016, the upper hinge base 2017, the hinge frame 2018, and the lower hinge base 2019 to perform hinge transmission, and the lifting plate 2020 is lifted to a suitable height. Then, the electric rotating seat 301 outputs power to drive the output end to operate, so that the upper triangular plate 302 rotates to a suitable target location. Then, the servo motor 304 outputs power to drive the arc-shaped bar 305 to perform adaptive swinging. After the arc-shaped bar 305 performs adaptive swinging, the hinge rod group 306 and the lower hinge seat 307 cooperate with the combined hinge seat 309, the balance sleeve rod 3010, and the swinging base 3011 to perform hinge transmission, and the lower triangular plate 308 runs to a suitable position. Then, the four lead screw group 403 on the dividing plate 402 outputs operation to make the four pairs of sliders 404 fit the bolt sleeve seat 405, the base plate 406, and the suction nozzle 407 above the plastic suction box, and the flexible tube 408, the sleeve tube 409, the connecting box 4010, the first air pump chamber 4011, and the air inlet and outlet 4012 output operation to generate negative pressure to adsorb the product, thus facilitating the transmission of materials. When it is necessary to separate, the first pneumatic telescopic rod 4014 outputs power to operate to make the sliding sleeve frame 4015 run to a suitable position. Then, the second pneumatic telescopic rod 4016 outputs power to operate to make the telescopic frame rod 4017 adjust to a suitable position. Then, the third pneumatic telescopic rod 4020 outputs power to operate to make the angle frame 4018 adjust to a suitable position, and the second air pump chamber 4022 outputs power to operate to make the nozzle 4021 fill the plastic suction box with intermittent air inflation.

[0047] It will be apparent to those skilled in the art that the present invention is not limited to the details of the above-described exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics thereof. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Accordingly, all changes that fall within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0048] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in the various embodiments can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A separation device used in the production process of plastic suction boxes, comprising a material carrying and transporting component (1) and a picking and separating mechanism (4), characterized in that: A planar displacement lifting assembly (2) assembled by bolts is provided on the outer sides around the material carrying and transporting component (1), and a power adjustment mechanism (3) assembled by bolts is provided on the inner bottom side of the planar displacement lifting assembly (2). A picking and separating mechanism (4) assembled by bolts is provided on the bottom side of the power adjustment mechanism (3).

2. The separating device for the production process of plastic blister boxes according to claim 1, wherein: The material carrying and transporting component (1) includes a cushion block (101), a cabinet (102), a bolt support (103), a trough-shaped platform (104), an end bracket (105), a fixed tray (106), a lining plate (107), a speed change machine box (108), a driving motor (109), a meshing gear set (1010), a transmission roller rod (1011), and a conveyor belt (1012). The cabinet (102) is provided above the cushion block (101), and the trough-shaped platform (104) is bolted to the cabinet (102) through the bolt support (103) above it. The fixed trays (106) are bolted to both ends of the trough-shaped platform (104) through the end brackets (105).

3. A separating device for the production process of plastic blister boxes according to claim 2, characterized in that: The lining plate (107) is provided on the inner side of the trough-shaped platform (104). The speed change machine box (108) is provided on the outer side of one end of the trough-shaped platform (104), and the driving motor (109) is provided on one side of the speed change machine box (108). The output end of the driving motor (109) is provided with the meshing gear set (1010), and the output end of the meshing gear set (1010) is provided with the transmission roller rod (1011). The conveyor belt (1012) is wound around the output end of the transmission roller rod (1011).

4. A separating device for the production process of blister boxes according to claim 2, characterized in that: The planar displacement lifting assembly (2) includes a bolt support rod (201), a lifting frame (202), a top plate bin (203), a first lead screw motor (204), a first lead screw set (205), a top sliding seat (206), a slotted beam (207), a second lead screw motor (208), a second lead screw set (209), a sliding block seat (2010), a bolt hanger (2011), a double-opening box (2012), a built-in motor (2013), a helical gear set (2014), a third lead screw set (2015), a telescopic block (2016), an upper hinge base (2017), a hinge frame (2018), a lower hinge base (2019), and a lifting disc (2020). The lifting frame (202) is bolted to the side of the trough-shaped platform (104) through the bolt support rod (201). The top plate bin (203) is provided at the top end of the lifting frame (202), and the first lead screw motor (204) is provided at one end of the top plate bin (203). The output end of the first lead screw motor (204) is provided with the first lead screw set (205), and the first lead screw set (205) is threadedly connected to the top sliding seat (206). The slotted beam (207) is provided below the top sliding seat (206), and the second lead screw set (209) connecting to the output end of the second lead screw motor (208) is provided on the slotted beam (207). The second lead screw set (209) is threadedly connected to the sliding block seat (2010).

5. The separating device for the production process of plastic suction boxes according to claim 4, characterized in that: Below the sliding block seat (2010), there is a double-opening box (2012) bolted through a bolt hanger (2011). Inside the double-opening box (2012), there is a built-in motor (2013). At the output end of the built-in motor (2013), there is a helical gear set (2014). At the output end of the helical gear set (2014), there is a third lead screw set (2015). The third lead screw set (2015) is threadedly connected to a telescopic block (2016). Below the telescopic block (2016), there is an upper hinge base (2017). Below the upper hinge base (2017), there is a lower hinge base (2019) hinge-connected through a hinge frame (2018). Below the lower hinge base (2019), there is a lifting plate (2020).

6. The separation device for the production process of plastic suction boxes according to claim 4, wherein: The power adjustment mechanism (3) includes an electric rotating seat (301), an upper triangular plate (302), a motor base (303), a servo motor (304), an arc-shaped bar (305), a hinge rod group (306), a lower hinge seat (307), a lower triangular plate (308), a combined hinge seat (309), a balance sleeve rod (3010), and a swing base (3011). The electric rotating seat (301) is bolted below the lifting plate (2020). At the output end of the electric rotating seat (301), there is an upper triangular plate (302). At the end of the upper triangular plate (302), there is a motor base (303). On one side of the motor base (303), there is an arc-shaped bar (305) connected to the output end of the servo motor (304).

7. A separating device used in the production process of plastic suction boxes according to claim 6, characterized in that: At one end of the arc-shaped bar (305), there is a hinge rod group (306). Below the hinge rod group (306), there is a lower hinge seat (307). On the inner side of the lower hinge seat (307), there is a lower triangular plate (308). Above the middle of the lower triangular plate (308), there is a combined hinge seat (309). Above the combined hinge seat (309), there is a swing base (3011) hinge-connected through a balance sleeve rod (3010).

8. A separating device for the production process of plastic suction boxes according to claim 6, characterized in that: The material taking and separating mechanism (4) includes a transmission gondola (401), a direction dividing plate (402), a four-screw rod group (403), four pairs of sliders (404), a bolt sleeve seat (405), a base plate (406), a suction nozzle (407), a flexible tube (408), a sleeve tube (409), a connecting box (4010), a first air pump chamber (4011), an air inlet and outlet (4012), six groups of outer frames (4013), a first pneumatic telescopic rod (4014), a sliding sleeve frame (4015), a second pneumatic telescopic rod (4016), a telescopic frame rod (4017), an angle frame (4018), an adjusting base (4019), a third pneumatic telescopic rod (4020), a nozzle (4021) and a second air pump chamber (4022). The transmission gondola (401) is bolted to the bottom side of the lower triangular plate (308). A direction dividing plate (402) is arranged below the transmission gondola (401), and the output end of the direction dividing plate (402) is provided with a four-screw rod group (403) that is threadedly connected to four pairs of sliders (404). The lower sides of the four pairs of sliders (404) are bolted to a base plate (406) for installing a suction nozzle (407) through a bolt sleeve seat (405). The side of the bolt sleeve seat (405) is sleeved and connected to a sleeve tube (409) through a flexible tube (408), and the output end of the sleeve tube (409) is provided with a connecting box (4010). The output end of the connecting box (4010) is provided with a first air pump chamber (4011) for installing an air inlet and outlet (4012).

9. A separating device for the production process of blister boxes according to claim 8, characterized in that: Six groups of outer frames (4013) assembled by bolts are arranged on the outer side of the direction dividing plate (402), and a first pneumatic telescopic rod (4014) is arranged on one side of the six groups of outer frames (4013). The output end of the first pneumatic telescopic rod (4014) is provided with a sliding sleeve frame (4015), and second pneumatic telescopic rods (4016) are arranged on the inner sides of both ends of the sliding sleeve frame (4015). The output end of the second pneumatic telescopic rod (4016) is provided with a telescopic frame rod (4017), and an angle frame (4018) connected by a hinge is arranged on the inner side below the telescopic frame rod (4017). The middle upper part of the angle frame (4018) is hinge-connected to a third pneumatic telescopic rod (4020) through an adjusting base (4019). The inner end of the angle frame (4018) is provided with a nozzle (4021) connected to the output end of the second air pump chamber (4022).

Citation Information

Patent Citations

  • Special blister box for injection molding and conveying equipment with the blister box automatically overlaid

    CN202717174U

Cited By

  • Visual inspection device and method based on vehicle-mounted screen production and processing

    CN122193249A