The present disclosure is a continuation-in-part of International Patent Application No. PCT/CN2021/092572, filed on May 10, 2021, which claims priority to Chinese Patent Application Nos. 202020940240.0, 202020940145.0, 202020945702.8 and 202010467057.8, filed on May 28, 2020. All of the aforementioned patent applications are hereby incorporated by reference in their entireties.
The present disclosure relates to the technical field of electrode sheet installation equipment, in particular to an automatic sheet inserting machine and a sheet inserting method.
The aerosol generating device includes an atomizer and a power supply device, the atomizer is provided with a liquid storage chamber therein, the atomizer is provided with an atomizing base mounted with electrode sheets, and the atomizer is electrically connected to the power supply device through the electrode sheets. Under the electric drive of the power supply device, the atomizer heats the aerosol-forming substrate in the liquid storage chamber to form smoke for the user to inhale. However, in the assembly process of the atomizer, the atomizing base is generally taken manually, an entire roll of electrode sheet is manually cut into small pieces, then the small pieces of electrode sheet are manually inserted into the atomizing base; finally, the electrode sheet is manually bent to form a contact surface with the power supply device. Due to the small size of the electrode sheet, it is difficult to hold it manually, the working efficiency of manually taking the atomizing base is also low, and it is difficult to control the alignment of the atomizing base and the electrode sheet; and in the assembly process of the atomizer, the atomizing base is generally taken manually and transported to the next working stage. As a result, the assembly efficiency of the atomizing base and the electrode sheet is low, and the labor cost is high.
In view of above, the present disclosure provides an automatic sheet inserting machine with high working efficiency for conveying the atomizing bases and automatically inserting the electrode sheets.
The technical solution adopted by the present disclosure to solve the problem is as follows: an automatic sheet inserting machine configured to insert an electrode sheet into an atomizing base is provided, the atomizing base includes a first end and an opposite second end, the automatic sheet inserting machine includes a feeding mechanism, a conveying mechanism arranged at one side of the feeding mechanism, and a sheet inserting mechanism and a bending mechanism arranged at one side of the conveying mechanism, the sheet inserting mechanism and the bending mechanism are arranged at opposite sides of the conveying mechanism, the feeding mechanism is configured to arrange a plurality of the atomizing bases into a state in which the first ends of the atomizing bases face the same direction and transport the atomizing bases to the conveying mechanism, the conveying mechanism is configured to transport the atomizing base to the sheet inserting mechanism and the bending mechanism in sequence, the sheet inserting mechanism is configured to insert the electrode sheet into the atomizing base from the first end, the bending mechanism configured to act on the second end of the atomizing base to bend the electrode sheet located at the second end of the atomizing base to form a contact surface.
Further, the feeding mechanism includes a circular vibrator, a linear vibrator located at one end of the circular vibrator, and a first sensor located at one side of the linear vibrator, one end of the linear vibrator is connected to the circular vibrator, the other end of the linear vibrator is connected to the conveying mechanism, the first sensor is configured for sensing the atomizing base in the linear vibrator.
Further, the conveying mechanism includes a conveying track, a movable member arranged at one side of the conveying track, a fixture arranged on the movable member, and a first driving assembly and a second driving assembly that drive the movable member to move, the atomizing base is slidably arranged on the conveying track, the fixture corresponds to the atomizing base, the second driving assembly is enabled to drive the movable member to move towards the conveying track so that the fixture clamps the atomizing base, the first driving assembly is enabled to drive the movable member so as to drive the atomizing base to slide on the conveying track.
Further, a guiding groove is provided in the conveying track, the atomizing base is slidably arranged in the guiding groove, a groove wall of the guiding groove is provided with an opening, when the movable member is located close to the conveying track, the fixture passes through the opening to clamp the atomizing base.
Further, the second driving assembly includes a second fixing member, a second cylinder arranged on the second fixing member, and a second sliding block connected to a protruding end of the second cylinder, the second sliding block is provided with a sliding groove, the movable member is slidably arranged in the sliding groove, the first driving assembly is arranged at one end of the movable member.
Further, the sheet inserting mechanism includes a frame, a sliding seat slidably arranged on the frame, a clamping cylinder arranged on the sliding seat, and a clamping block connected to a protruding end of the clamping cylinder, the clamping block is arranged corresponding to the sliding seat; when the clamping cylinder is activated, the clamping block is driven to move toward the sliding seat and clamps the electrode sheet, or when the clamping cylinder is activated, the clamping block is driven to move away from the sliding seat and releases the electrode sheet.
Further, the bending mechanism includes a bending fixing seat arranged at one side of the conveying track, a bending cylinder arranged on the bending fixing seat, and a bending block connected to a protruding end of the bending cylinder, a running direction of the bending cylinder is perpendicular to an axial direction of the electrode sheet on the atomizing base.
Further, the automatic sheet inserting machine further includes a shaping mechanism, the shaping mechanism is configured to act on the electrode sheet located at the second end of the atomizing base, so that the contact surface is closely attached to the atomizing base, the shaping mechanism includes a shaping fixing seat arranged at one side of the conveying track, a shaping cylinder arranged at the shaping fixing seat, and a shaping block connected to a protruding end of the shaping cylinder, a running direction of the shaping cylinder is perpendicular to the contact surface of the electrode sheet.
Further, the automatic sheet inserting machine further includes a delivery mechanism arranged between the feeding mechanism and the conveying mechanism, the delivery mechanism is configured for transporting the atomizing base on the feeding mechanism to the conveying mechanism.
Further, the automatic sheet inserting machine further includes a waste removal mechanism connected to the conveying mechanism, the waste removal mechanism includes a waste removal seat, a rotating block rotatably arranged on the waste removal seat, a waste removal rail arranged on one side of the rotating block, a pushing assembly arranged at one side of the waste removal rail, and a waste removal sliding block slidably arranged at one side of the waste removal rail, the rotating block is provided with a receiving groove for transporting the electrode sheet, the rotating block rotates to cause the receiving groove to align with the waste removal rail, the pushing assembly pushes the atomizing base in the receiving groove to slide to the waste removal rail, the waste removal sliding block slides relative to the waste removal rail and removes waste material of the electrode sheet protruding from the first end of the atomizing base.
A sheet inserting method for inserting an electrode sheet into an atomizing base is provided, the sheet inserting method includes the following steps:
Further, in step 1), the atomizing base is firstly transported by the feeding mechanism to a delivery mechanism, and then the atomizing base is transported by the delivery mechanism to the conveying mechanism.
Further, the sheet inserting method includes the following step:
4) the conveying mechanism transports the atomizing base with the electrode sheet being bent in step 3) to a shaping mechanism, and the shaping mechanism acts on the contact surface to make the contact surface being closely attached to the atomizing base;
Further, the sheet inserting method includes the following step:
5) the conveying mechanism transports the atomizing base with the electrode sheet being shaped in step 4) to a waste removal mechanism, and the waste removal mechanism acts on the electrode sheet at a first end of the atomizing base to remove waste material on the electrode sheet.
The beneficial effects of the present disclosure are as follows: in the automatic sheet inserting machine provided by the present disclosure, the atomizing base is transported to the conveying mechanism through the feeding mechanism, the conveying mechanism precisely conveys the atomizing base to the sheet inserting mechanism, so that the sheet inserting mechanism accurately inserts the electrode sheet into the atomizing base. Further, through the bending mechanism, the electrode sheet on the atomizing base is bent to form a contact surface, which is convenient for the electrical connection with a power supply device later. Finally, the waste material on the electrode sheet is removed by the waste removal mechanism. The operation is simple, the positioning is accurate, and the installation efficiency is high. The present disclosure further provides a sheet inserting method using the above automatic sheet inserting machine, which has a high degree of automation and high work efficiency.
The present disclosure further provides a conveying mechanism and an automatic sheet inserting machine with high working efficiency for conveying the atomizing base.
The technical solution adopted by the present disclosure to solve the problem is as follows: a conveying mechanism for conveying an atomizing base includes a conveying track, a movable member arranged at one side of the conveying track, at least one fixture arranged at the movable member, and a first driving assembly and a second driving assembly that drive the movable member to move, the atomizing base is slidably arranged on the conveying track, the fixture corresponds to the atomizing base, the second driving assembly is enabled to drive the movable member to move towards the conveying track so that the fixture clamps the atomizing base, the first driving assembly is enabled to drive the movable member so as to drive the atomizing base to slide on the conveying track.
Further, a guiding groove is provided in the conveying track, the atomizing base is slidably arranged in the guiding groove, a groove wall of the guiding groove is provided with an opening, when the movable member is located close to the conveying track, the fixture passes through the opening to clamp the atomizing base.
Further, the second driving assembly includes a second fixing member, a second cylinder arranged on the second fixing member, and a second sliding block connected to a protruding end of the second cylinder, the second sliding block is provided with a sliding groove, the movable member is slidably arranged in the sliding groove, the first driving assembly is arranged at one end of the movable member.
Further, the first driving assembly includes a first fixing member, a first cylinder arranged on the first fixing member, and a first sliding block connected to a protruding end of the first cylinder, the movable member is slidably connected to the first sliding block.
Further, the first cylinder and the first sliding block are arranged along an axial direction of the conveying track, the second cylinder and the second sliding block are arranged along a radial direction of the conveying track.
Further, the opening is provided in a bottom groove wall of the guiding groove.
An automatic sheet inserting machine configured for inserting an electrode sheet into an atomizing base is provided, the automatic sheet inserting machine includes the conveying mechanism as described above.
Further, the automatic sheet inserting machine further includes a feeding mechanism connected to the conveying mechanism and a sheet inserting mechanism arranged at one side of the conveying mechanism, the feeding mechanism is configured for transporting the atomizing base to the conveying mechanism, the sheet inserting mechanism is configured for inserting the electrode sheet into the atomizing base.
Further, the feeding mechanism includes a circular vibrator, a linear vibrator located at one end of the circular vibrator, and a first sensor located at one side of the linear vibrator, the first sensor is configured to detect whether there is an atomizing base in the linear vibrator.
Further, the automatic sheet inserting machine further includes a delivery mechanism arranged between the feeding mechanism and the conveying mechanism, the delivery mechanism is configured for transporting the atomizing base on the feeding mechanism to the conveying mechanism.
The beneficial effects of the present disclosure are as follows: in the conveying mechanism provided by the present disclosure, a movable member is arranged at one side of the conveying track, a fixture corresponding to the atomizing base is arranged on the movable member. Under the driving action of the second driving assembly, the movable member moves toward the conveying track, so that the fixture can clamp the atomizing base. Further, under the driving action of the first driving assembly, the movable member is driven to move, so as to drive the atomizing base to slide on the conveying track, so that the atomizing base is accurately transported to the next mechanism, the positioning is accurate, and the transporting efficiency is high. The present disclosure further provides an automatic sheet inserting machine with the above-mentioned conveying mechanism, which has a high degree of automation, accurate installation and positioning of the electrode sheet, and high work efficiency.
The present disclosure further provides a sheet inserting mechanism and an automatic sheet inserting machine for installing the electrode sheet with accurate positioning and high working efficiency.
The technical solution adopted by the present disclosure to solve the problem is as follows: a sheet inserting mechanism for inserting an electrode sheet into an atomizing base includes a frame, a sliding seat slidably arranged on the frame, a clamping cylinder arranged on the sliding seat, and a clamping block connected to a protruding end of the clamping cylinder, the clamping block is arranged corresponding to the sliding seat; when the clamping cylinder is activated, the clamping block is driven to move toward the sliding seat and clamps the electrode sheet, or when the clamping cylinder is activated, the clamping block is driven to move away from the sliding seat and releases the electrode sheet.
Further, the sheet inserting mechanism further includes a pushing cylinder for driving the sliding seat to slide, the pushing cylinder is arranged on the frame, the sliding seat is connected to a protruding end of the pushing cylinder, when the pushing cylinder is activated, the sliding seat is driven to move toward or away from the atomizing base.
Further, the frame is provided with a moving groove, the sliding seat is slidably arranged in the moving groove.
An automatic sheet inserting machine configured for inserting an electrode sheet into an atomizing base is provided, the automatic sheet inserting machine includes the sheet inserting mechanism as described above.
Further, the automatic sheet inserting machine further includes an electrode sheet feeding mechanism arranged at one side of the sheet inserting mechanism, the electrode sheet feeding mechanism is provided with a roll of electrode sheets; the clamping block is located close to the sliding seat and clamps one of the electrode sheets and tears the electrode sheet off.
Further, two adjacent electrode sheets are connected.
Further, the automatic sheet inserting machine further includes a conveying mechanism arranged at one side of the feeding mechanism, the conveying mechanism is configured for conveying the atomizing base; when the clamping cylinder is activated, the clamping block is driven to move toward the sliding seat and clamps the electrode sheet, the sliding seat slides toward the conveying mechanism to insert the electrode sheet into the atomizing base.
Further, the automatic sheet inserting machine further includes a bending mechanism arranged at one side of the conveying mechanism, the bending mechanism acts on one end of the atomizing base to bend the electrode sheet located at the one end of the atomizing base to form a contact surface.
Further, the bending mechanism includes a bending fixing seat arranged at one side of the conveying track, a bending cylinder arranged on the bending fixing seat, and a bending block connected to a protruding end of the bending cylinder.
Further, a running direction of the bending cylinder is perpendicular to an axial direction of the electrode sheet on the atomizing base.
The beneficial effects of the present disclosure are as follows: in the sheet inserting mechanism provided by the present disclosure, the clamping cylinder is arranged on the sliding seat, the protruding end of the clamping cylinder is pivotally connected with the connecting rod, and the other end of the connecting rod is pivotally connected with the clamping block. When the clamping cylinder is activated, the clamping block is driven to move toward the sliding seat and clamps the electrode sheet. Further, the sliding seat slides to insert the electrode sheet into the atomizing base with accurate positioning and high installation efficiency. The present disclosure further provides an automatic sheet inserting machine with the above-mentioned sheet inserting mechanism, which has a high degree of automation, accurate installation and positioning of the electrode sheet, and high work efficiency.
The present disclosure further provides a waste removal mechanism and an automatic sheet inserting machine for removing the waste material of the electrode sheet protruding from one end of the atomizing base.
The technical solution adopted by the present disclosure to solve the problem is as follows: a waste removal mechanism configured for removing waste material of an electrode sheet protruding from one end of the atomizing base is provided, the waste removal mechanism includes a waste removal seat, a rotating block rotatably arranged on the waste removal seat, a waste removal rail arranged on one side of the rotating block, a pushing assembly arranged at one side of the waste removal rail, and a waste removal sliding block slidably arranged at one side of the waste removal rail, the rotating block is provided with a receiving groove for transporting the electrode sheet; the rotating block rotates to cause the receiving groove to align with the waste removal rail, the pushing assembly pushes the atomizing base in the receiving groove to slide to the waste removal rail, the waste removal sliding block slides relative to the waste removal rail and removes waste material of the electrode sheet protruding from one end of the atomizing base.
Further, the waste removal mechanism further includes a rotating assembly for driving the rotating block to rotate, the rotating assembly includes a gear fixedly connected with the rotating block, a rack meshed with the gear, and a driving cylinder for driving the rack to move, the gear is rotatably arranged on the waste removal seat.
Further, the pushing assembly includes a movable cylinder and a pushing block connected to a protruding end of the movable cylinder, the pushing block is arranged corresponding to the waste removal rail.
Further, the waste removal mechanism further includes a waste removal cylinder arranged at one side of the waste removal rail, the waste removal sliding block is connected to a protruding end of the waste removal cylinder.
Further, one side of the waste removal rail is provided with an opening, the waste removal cylinder drives the waste removal sliding block to slide and extends into one end of the waste removal rail through the opening, so as to remove the waste material formed by the electrode sheet protruding from one end of the atomizing base.
Further, each of the waste removal sliding block and the waste removal cylinder has two in number, one waste removal sliding block corresponds to one waste removal cylinder, the waste removal sliding block is connected to the protruding end of a corresponding waste removal cylinder, and the two waste removal sliding blocks are arranged at opposite sides of the waste removal rail.
An automatic sheet inserting machine configured for installing an electrode sheet onto an atomizing base is provided, the automatic sheet inserting machine includes the waste removal mechanism as described above.
Further, the automatic sheet inserting machine further includes a conveying mechanism connected with the waste removal mechanism, the conveying mechanism is configured for conveying the atomizing base, the rotating block rotates relative to the waste removal seat, so that the receiving groove is aligned with the conveying mechanism or the receiving groove is aligned with the waste removal rail.
Further, the automatic sheet inserting machine further includes a sheet inserting mechanism arranged at one side of the conveying mechanism, the sheet inserting mechanism is configured for inserting the electrode sheet into the atomizing base.
Further, the automatic sheet inserting machine further includes a bending mechanism arranged at one side of the conveying mechanism, the bending mechanism acts on one end of the atomizing base to bend the electrode sheet inserted in the atomizing base to form a contact surface.
The beneficial effects of the present disclosure are as follows: in the waste removal mechanism provided by the present disclosure, the rotating block is rotatably arranged on the waste removal seat, the waste removal rail is arranged at one side of the rotating block, and the waste removal sliding block is arranged at one side of the waste removal rail. The rotating block rotates relative to the waste removal fixing seat, the atomizing base on the rotating block is transported to the waste removal rail, and the atomizing base is rotated by a certain angle, so that the end of the atomizing base with the waste material is arranged corresponding to the waste removal sliding block, and the waste removal sliding block moves and removes the waste material protruding from one end of the atomizing base and formed by the electrode sheet with accurate positioning, simple operation and high work efficiency. The present disclosure further provides an automatic sheet inserting machine with the above-mentioned waste removal mechanism, which has a high degree of automation and high work efficiency.
The following further describes the present disclosure with reference to the accompanying drawings and embodiments.
The part names and reference signs shown in the figures are as follows:
The present disclosure will now be described in detail with reference to the accompanying drawings. These figures are simplified schematic diagrams, which only illustrate the basic structure of the present disclosure in a schematic manner, so they only show the structures related to the present disclosure.
As shown in
The atomizing base 203 includes a first end and a second end that are arranged oppositely. The weight of the second end of the atomizing base 203 is greater than the weight of the first end of the atomizing base 203. The automatic sheet inserting machine 100 inserts the electrode sheet 204 into the atomizing base 203 from the first end of the atomizing base 203 until the electrode sheet 204 penetrates through the atomizing base 203 and is protruded out of the second end of the atomizing base 203. The automatic sheet inserting machine 100 bends the portion of the electrode sheet 204 located at the second end of the atomizing base 203 to form a contact surface. However, the portion of the electrode sheet 204 protruding out of the first end of the atomizing base 203 forms as waste material.
The automatic sheet inserting machine 100 includes a feeding mechanism 10, a delivery mechanism 20, a conveying mechanism 30 disposed at one end of the delivery mechanism 20, and a sheet inserting mechanism 40, a bending mechanism 50, a shaping mechanism 60 and a waste removal mechanism 70 located at one side of the conveying mechanism 30.
Please refer to
Specifically, referring to
Referring to
Referring to
In this embodiment, the first cylinder 342 and the first sliding block 343 are arranged along the axial direction of the conveying track, while the second cylinder 352 and the second sliding block 353 are arranged along the radial direction of the conveying track. After the delivery mechanism 20 transports the atomizing base 203 in the delivery groove 211 into the guiding groove, the first cylinder 342 is activated, the first cylinder 342 drives the first sliding block 343 so as to accordingly drive the movable member 32 to slide in the sliding groove 3531, so that the movable member 32 slides in the direction close to the delivery mechanism 20. When the first driving assembly 34 drives the movable member 32 to move to the position of being located under one end of the conveying track close to the delivery mechanism 20, the first cylinder 342 stops working, and the second cylinder 352 is activated, the second cylinder 352 drives the second sliding block 353 so as to drive the movable member 32 to move in the radial direction of the conveying track toward the conveying track, and during the moving process, the movable member 32 slides relative to the first sliding block 343 in the radial direction of the conveying track, the fixture 33 on the movable member 32 extends into the guiding groove through the opening and clamps a corresponding atomizing base 203, then the second cylinder 352 stops working, and the first cylinder 342 is activated, the first cylinder 342 drives the first sliding block 343 so as to drive the movable member 32 to move away from the delivery mechanism 20, that is, the movable member 32 drives the atomizing base 203 to move in the direction toward the sheet inserting mechanism 40, and then, the first cylinder 342 stops working, the second cylinder 352 is activated, the second cylinder 352 drives the movable member 32 to move downward in the radial direction of the conveying track, so that the fixture 33 moves away from the guiding groove through the opening and is separated from the atomizing base 203. Thereafter, the first cylinder 342 drives the movable member 32 to return to its original position, and the next round of transportation of the atomizing base 203 is performed. It can be understood that, in other implementations not shown, the opening provided by the conveying track may also be arranged in other orientations, and the movable member 32, the fixture 33, the first driving assembly 34 and the second driving assembly 35 are correspondingly arranged in other orientations on the conveying track, it only needs to satisfy that under the driving of the second driving assembly 35, the movable member 32 is enabled to move toward or move away from the conveying track, when the movable member 32 is close to the conveying track, the fixture 33 clamps the atomizing base 203, and the first driving assembly 34 can drive the movable member 32 so as to drive the atomizing base 203 to slide along the axial direction in the conveying track.
Referring to
The frame 41 is provided with a moving groove, the sliding seat 42 is slidably arranged in the moving groove, the sliding seat 42 is connected to the protruding end of the pushing cylinder 43. When the pushing cylinder 43 is activated, the sliding seat 42 is driven to slide relative to the frame 41 so as to move toward or move away from the conveying track. When the clamping cylinder 44 is activated, the connecting rod 45 is driven to move, the connecting rod 45 then drives the clamping block 46 to move, and the clamping block 46 moves in the direction of approaching the sliding seat 42 and abuts against the sliding seat 42.
It can be understood that, in other embodiments, the connecting rod 45 may be omitted from the sheet inserting mechanism 40, the clamping block 46 is directly driven by the clamping cylinder 44 to move toward or move away from the sliding seat 42.
In this embodiment, as shown in
Please refer to
Please refer to
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In this embodiment, please refer to
It is understood that in other embodiments not shown, the delivery mechanism 20 may be omitted, the feeding mechanism 10 is connected with the conveying mechanism 30, the atomizing base 203 is directly transported by the feeding mechanism 10 to the conveying mechanism 30.
The pushing cylinder 43 drives the sliding seat 42 to move, thereby inserting the electrode sheet 204 clamped between the clamping block 46 and the sliding seat 42 into the atomizing base 203, then the end of the electrode sheet 204 that is clamped by the clamping block 46 and the sliding seat 42 forms the waste material. Before the atomizing base 203 is assembled with other components, the waste removal mechanism 70 needs to be used to remove the waste on the atomizing base 203.
Please refer to
The rotating block 72 is pivotally connected to the waste removal seat 71. The rotating assembly 73 includes a gear 731 fixedly connected with the rotating block 72, a rack 732 meshed with the gear 731, and a driving cylinder 733 for driving the rack 732 to move. The rotating block 72 is provided with a receiving groove 721. The gear 731 is rotatably arranged on the waste removal seat 71. The rack 732 is slidably arranged on the waste removal seat 71. The waste removal mechanism 70 further includes a movable cylinder for driving the pushing block to slide and a waste removal cylinder 76 for driving the waste removal sliding block 75 to slide. One end of the pushing block is connected to the protruding end of the movable cylinder. The waste removal sliding block 75 is connected to the protruding end of the waste removal cylinder 76. One end of the waste removal rail 74 is disposed close to the rotating block 72. A movable groove 741 is provided in the waste removal rail 74. The atomizing base 203 slides in the movable groove 741 of the waste removal rail 74. The rotating assembly 73 drives the rotating block 72 to rotate, so that the receiving groove 721 is aligned with the conveying mechanism 30 or the receiving groove 721 is aligned with the movable groove 741. One side of the waste removal rail 74 is provided with an opening, and the opening is communicated with the lower side of the waste removal rail 74. The waste removal cylinder 76 can drive the waste removal sliding block 75 to slide and extend through the opening to the lower side of the waste removal rail 74.
When the atomizing base 203 on the conveying mechanism 30 is transported to the receiving groove 721 of the rotating block 72, the driving cylinder 733 begins to work, the driving cylinder 733 drives the rack 732 to move. Due to the meshing effect of the rack 732 and the gear 731, the gear 731 is rotated relative to the waste removal seat 71, and then the rotating block 72 rotates under the driving of the gear 731 to cause the receiving groove 721 of the rotating block 72 to align with the waste removal rail 74, the movable cylinder works to dive the pushing block to push the atomizing base 203 in the receiving groove 721 to slide to the waste removal rail 74, and push the atomizing base 203 on the waste removal rail 74 to slide along the waste removal rail 74; then, the driving cylinder 733 retracts, the rotating assembly 73 drives the rotating block 72 to reset. At this time, the bent end of the electrode sheet 204 on the atomizing base 203 faces upwards, and the waste-forming end of the electrode sheet 204 faces downwards. When the atomizing base 203 passes the waste removal sliding block 75, the waste removal cylinder 76 works and drives the waste removal sliding block 75 to pass through the opening and push the end of the atomizing base 203 provided with the electrode waste, so that the end of the electrode sheet 204 with the waste material is bent and separated from the main body of the electrode sheet; thus, the waste material is removed, and the waste material directly falls into a collection basket located at the lower side of the waste removal rail 74, which is convenient for collection. The rotation of the rotating block 72 drives the atomizing base 203 to rotate a certain angle, so that the waste material protruding at one end of the atomizing base 203 is aligned with the waste removal sliding block 75.
Since the atomizing base 203 is provided with two electrode sheets 204, each of the waste removal sliding block 75 and the waste removal cylinder 76 has two in number. One waste removal sliding block 75 corresponds to one electrode sheet 204, one waste removal cylinder 76 corresponds to one waste removal sliding block 75, so that the waste removal cylinder 76 drives a corresponding waste removal sliding block 75 to remove the waste material on a corresponding electrode sheet 204. It can be understood that, in other embodiments not shown, the movable cylinder and the pushing block can also be replaced by an equipment capable of generating high-pressure gas, the atomizing base 203 in the receiving groove 721 is blown to the waste removal rail 74 by high-pressure gas. The assembly for generating the high-pressure gas or the combination of the movable cylinder and the pushing block constitutes a pushing assembly.
It can be understood that, in this embodiment, the automatic sheet inserting machine 100 further includes a controller. The controller is electrically connected with the feeding mechanism 10, the delivery mechanism 20, the conveying mechanism 30, the sheet inserting mechanism 40, the bending mechanism 50, the shaping mechanism 60 and the waste removal mechanism 70. The controller is configured to control the start or stop of each of the above mechanisms.
In one embodiment, please refer to
In one embodiment, the atomizer 200 further includes a mouthpiece 205 arranged at the other end of the liquid storage member 201 and a sealing member 206 arranged between the mouthpiece 205 and the liquid storage member 201. The inner cavity of the mouthpiece 205 is communicated with the inner cavity of the vent tube 2011. The mouthpiece 205 is provided with a smoke outlet 2051. The sealing member 206 is made of a sealing material such as silicone or rubber, so as to enhance the sealing performance between the mouthpiece 205 and the liquid storage member 201.
In one embodiment, a sealing ring 207 is arranged between the atomizing base 203 and the liquid storage member 201. The sealing ring 207 is made of a sealing material such as silicone or rubber, so as to enhance the sealing performance between the liquid storage member 201 and the atomizing base 203.
The atomizing base 203 is further provided with an air inlet, and the air inlet is communicated with the atomizing chamber 2024. When the user sucks the aerosol generating device, the aerosol-forming substrate in the liquid storage chamber 2012 flows to the liquid guiding member 2022 through the liquid inlet 2025; under the electric drive of the power supply device, the heating member 2023 heats the aerosol-forming substrate to form smoke which flows into the atomizing chamber 2024, the outside air enters the atomizing chamber 2024 through the air inlet to mix with the smoke, the mixed gas is sucked by the user after passing through the vent tube 2011.
A sheet inserting method using the automatic sheet inserting machine 100 is configured for inserting the electrode sheet 204 into the atomizing base 203, the atomizing base 203 includes a first end and a second end arranged oppositely, and the sheet inserting method includes the following step:
It is understood that in other embodiments not shown, the delivery mechanism 20 may be omitted, and the atomizing base 203 is directly transported by the feeding mechanism 10 to the conveying mechanism 30.
The automatic sheet inserting machine 100 provided by the present disclosure transports the atomizing base 203 to the conveying mechanism 30 through the feeding mechanism 10 and the delivery mechanism 20; the conveying mechanism 30 precisely conveys the atomizing base 203 to the sheet inserting mechanism 40, so that the sheet inserting mechanism 40 accurately inserts the electrode sheet 204 into the atomizing base 203; the electrode sheet 204 on the atomizing base 203 is bent to form a contact surface through the bending mechanism 50, and the contact surface is closely attached to the atomizing base 203 through the shaping mechanism 60, so that the electrode sheet 204 is convenient for electrical connection with the power supply device later. Finally, the waste material on the electrode sheet 204 is removed by the waste removal mechanism 70. The operation is simple, the positioning is accurate, and the installation efficiency is high.
The sheet inserting method of the automatic sheet inserting machine 100 provided by the present disclosure has simple operation, accurate positioning and high installation efficiency.
Taking the above-mentioned ideal embodiments according to the present disclosure as enlightenment, through the above description, the relevant persons can make various changes and modifications without departing from the concept of the present disclosure. The technical scope of the present disclosure is not limited to the content of the specification, and its technical scope should be determined according to the scope of the claims.
Number | Date | Country | Kind |
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202010467057.8 | May 2020 | CN | national |
202020940145.0 | May 2020 | CN | national |
202020940240.0 | May 2020 | CN | national |
202020945702.8 | May 2020 | CN | national |
Number | Date | Country | |
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Parent | PCT/CN2021/092572 | May 2021 | US |
Child | 18070425 | US |