CN210823811U - Disposal bag of intelligence garbage bin seals drive arrangement - Google Patents
Disposal bag of intelligence garbage bin seals drive arrangement Download PDFInfo
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- CN210823811U CN210823811U CN201921439646.4U CN201921439646U CN210823811U CN 210823811 U CN210823811 U CN 210823811U CN 201921439646 U CN201921439646 U CN 201921439646U CN 210823811 U CN210823811 U CN 210823811U
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- driving
- driving rod
- synchronous belt
- disposal bag
- gear set
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Abstract
The utility model discloses a driving device for sealing a garbage bag of an intelligent garbage can, which comprises a driving motor (1), wherein a gear bidirectional transmission mechanism (2) is arranged on the driving motor (1), synchronous belts (3) are respectively arranged at the two ends of the gear bidirectional transmission mechanism (2), a first driving rod (4) is arranged on one synchronous belt (3), and a second driving rod (5) is arranged on the other synchronous belt (3); and a guide opening (6) matched with the first driving rod (4) is arranged on the second driving rod (5). The utility model has the characteristics of can reduce the installation area and guarantee the action synchronism.
Description
Technical Field
The utility model relates to a sealing device of intelligent garbage bin, especially a disposal bag of intelligent garbage bin seals drive arrangement.
Background
Along with the rise of intelligent house, intelligent garbage bin begins to get into in the daily life. The intelligent garbage bin draws in the upper end of the garbage bag through a sealing driving part on the edge sealing mechanism, and then seals and cuts off the garbage bag by using a heat sealing device on the edge sealing mechanism. The existing garbage bag folding mode generally adopts a side folding mode, namely, the garbage bags are gathered from four directions to the same direction; the existing sealing driving part mainly drives the synchronous belt to move through the motor, the synchronous belt drives the driving rod to move, and because the synchronous belt can only control the movement in one direction, when the garbage bag is folded, two driving devices need to be installed, so that the installation area is increased, the installation cost is increased, and the phenomenon of asynchronization of the two driving parts can occur during the movement. Therefore, the prior art has the problems of large installation area and asynchronous action.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a disposal bag of intelligence garbage bin seals drive arrangement. The utility model has the characteristics of can reduce the installation area and guarantee the action synchronism.
The technical scheme of the utility model: a driving device for sealing a garbage bag of an intelligent garbage can comprises a driving motor, wherein a gear bidirectional transmission mechanism is arranged on the driving motor, synchronous belts are respectively arranged at two ends of the gear bidirectional transmission mechanism, a first driving rod is arranged on one synchronous belt, and a second driving rod is arranged on the other synchronous belt; and the second driving rod is provided with a guide port matched with the first driving rod.
The garbage bag sealing driving device of the intelligent garbage can further comprises a mounting shell for mounting a driving motor, a gear bidirectional transmission mechanism, a synchronous belt, a first driving rod and a second driving rod; the upper portion of the mounting shell is further provided with a garbage bag cavity, an iron column is arranged on the side wall of the garbage bag cavity, a garbage bag gland is arranged above the garbage bag cavity, and a magnet matched with the iron column is arranged on the lower surface of the garbage bag gland.
In the aforesaid disposal bag of intelligent garbage bin seals drive arrangement, the two-way drive mechanism of gear has driven gear set including the driving gear that is fixed in the driving motor output, and driven gear set both ends mesh respectively has drive gear group, and drive gear group cooperatees with the hold-in range.
In the garbage bag sealing driving device of the intelligent garbage can, two synchronous belts which are vertically distributed are arranged on the gear bidirectional transmission mechanism; two ends of the driven gear set are respectively meshed with a transmission gear set arranged at a right angle of 90 degrees.
In the garbage bag sealing driving device of the intelligent garbage can, the guide shafts are arranged below each synchronous belt, the fixing seats are arranged at two ends of each guide shaft respectively, and the two guide shafts are matched with the corresponding first driving rods or the corresponding second driving rods respectively.
In the garbage bag sealing driving device of the intelligent garbage can, one synchronous belt is provided with one first driving rod, and the other synchronous belt is provided with one second driving rod.
In the garbage bag sealing driving device of the intelligent garbage can, a heater located on one side of the second driving rod is arranged in the mounting shell, and an elastic block corresponding to the heater is embedded in the first driving rod.
In the disposal bag of aforementioned intelligent garbage bin seals drive arrangement, the outside of first actuating lever and second actuating lever all is equipped with limit switch.
In the device for driving sealing of the garbage bag of the intelligent garbage can, two ends of one synchronous belt are provided with two first driving rods with opposite movement directions, two ends of the other synchronous belt are provided with two second driving rods with opposite movement directions, and each second driving rod is provided with a guide port matched with the first driving rod; one of the first driving rods is provided with an elastic block, and the other second driving rod is provided with a heater matched with the elastic block.
In the garbage bag sealing driving device of the intelligent garbage can, the middle part of the outer side of each synchronous belt is provided with a limit switch.
Compared with the prior art, the utility model has the advantages that the gear bidirectional transmission mechanism is arranged on the driving motor, the synchronous belt, the first driving rod and the second driving rod are driven to move through the gear bidirectional transmission mechanism, and the movement of the first driving rod and the second driving rod in two directions can be controlled by using one motor, so that the installation area required by parts can be effectively reduced, and the cost of equipment can be reduced by reducing the driving motor; moreover, the driving motor can also ensure the synchronism of the first driving rod and the second driving rod in the operation process through a movement mode of driving one second driving rod (simultaneously driving two synchronous belts), and the stability of the operation of the device is improved. To sum up, the utility model has the characteristics of can reduce the installation area and guarantee the action synchronism.
Drawings
FIG. 1 is a schematic perspective view of embodiment 1;
FIG. 2 is a bottom view of FIG. 1;
FIG. 3 is a partial exploded view of the upper portion of the mounting housing;
FIG. 4 is a schematic structural view of a bidirectional gear transmission mechanism in embodiment 1;
FIG. 5 is a schematic structural view of example 2;
FIG. 6 is a perspective view of embodiment 2;
fig. 7 is a partially enlarged view of fig. 6.
The labels in the figures are: 1-driving motor, 2-gear bidirectional transmission mechanism, 3-synchronous belt, 4-first driving rod, 5-second driving rod, 6-guide opening, 7-installation shell, 8-guide shaft, 9-fixing seat, 10-heater, 11-elastic block, 12-limit switch, 13-garbage bag cavity, 14-iron column, 15-garbage bag gland, 16-magnet, 201-driving gear, 202-driven gear set and 203-transmission gear set.
Detailed Description
The following description is made with reference to the accompanying drawings and examples, but not to be construed as limiting the invention.
Example 1. A driving device for sealing a garbage bag of an intelligent garbage can is formed as shown in figures 1 to 4 and comprises a driving motor 1, wherein a gear bidirectional transmission mechanism 2 is arranged on the driving motor 1, synchronous belts 3 are respectively arranged at two ends of the gear bidirectional transmission mechanism 2, a first driving rod 4 is arranged on one synchronous belt 3, and a second driving rod 5 is arranged on the other synchronous belt 3; the second driving rod 5 is provided with a guide opening 6 matched with the first driving rod 4.
The device also comprises a mounting shell 7 for mounting a driving motor 1, a gear bidirectional transmission mechanism 2, a synchronous belt 3, a first driving rod 4 and a second driving rod 5; the upper portion of the mounting shell 7 is further provided with a garbage bag cavity 13, an iron column 14 is arranged on the side wall of the garbage bag cavity 13, a garbage bag gland 15 is arranged above the garbage bag cavity 13, and a magnet 16 matched with the iron column 14 is arranged on the lower surface of the garbage bag gland 15.
The gear bidirectional transmission mechanism 2 comprises a driving gear 201 fixed at the output end of the driving motor 1, the driving gear 201 is meshed with a driven gear set 202, two ends of the driven gear set 202 are respectively meshed with a transmission gear set 203, and the transmission gear set 203 is matched with the synchronous belt 3.
Two synchronous belts 3 which are vertically distributed are arranged on the gear bidirectional transmission mechanism 2; two ends of the driven gear set 202 are respectively meshed with a transmission gear set 203 which is arranged at a right angle of 90 degrees.
The below of every hold-in range 3 all is equipped with guiding axle 8, and 8 both ends of guiding axle are equipped with fixing base 9 respectively, and two guiding axles 8 cooperate with corresponding first actuating lever 4 or second actuating lever 5 respectively.
One synchronous belt 3 is provided with a first driving rod 4, and the other synchronous belt 3 is provided with a second driving rod 5.
A heater 10 is arranged in the mounting shell 7 and is positioned at one side of the second driving rod 5, and an elastic block 11 corresponding to the heater 10 is embedded on the first driving rod 4.
The heater comprises a fixed block, a heating wire is arranged on the fixed block, and high-temperature-resistant glass fiber cloth is arranged between the heating wire and the fixed block.
And limit switches 12 are arranged on the outer sides of the first driving rod 4 and the second driving rod 5.
The driving motor and the gear bidirectional transmission mechanism are positioned at one end in the mounting shell, the two synchronous belts are positioned at two ends of the gear bidirectional transmission mechanism, and the first driving rod and the second driving rod are respectively positioned on the synchronous belts.
The other end of each synchronous belt is provided with a synchronous belt wheel, and the synchronous belt wheels are fixed in the installation shell.
And a tooth-shaped structure is arranged on the inner wall of the synchronous belt.
First actuating lever and second actuating lever all include the drive seat, drive seat upper end be equipped with guiding axle matched with guiding hole, drive seat lower extreme be equipped with hold-in range matched with draw-in groove.
The limit switch is arranged in the installation shell. The limit switches at corresponding positions are respectively triggered by the movement of the first driving rod.
The utility model discloses a working process: the driving motor works to drive the driving gear to rotate, the driving gear rotates to drive the driven gear set meshed with the driving gear set to rotate, the driven gear set rotates to drive the transmission gear set meshed with the driven gear set to rotate, the transmission gear set drives the synchronous belts to move, and the two synchronous belts drive the first driving rod and the second driving rod to move respectively.
When the garbage bag opening needs to be folded, the driving motor works to drive the first driving rod and the second driving rod to move towards the end of the driving motor along the guide shaft so as to fold the garbage bag to the end of the elastic block, after the first driving rod touches the limit switch on the initial state side of the second driving rod, the driving motor stops moving, the heater touches the elastic block, and the folded garbage bag is subjected to heat sealing and cutting operation to complete packaging and cutting; and then, the driving motor rotates reversely, the first driving rod and the second driving rod start to reset until the first driving rod touches a limit switch at the other side (in the initial state of the first driving rod), and the driving motor stops working.
Example 2. A driving device for sealing a garbage bag of an intelligent garbage can is formed as shown in figures 5 to 7 and comprises a driving motor 1, wherein a gear bidirectional transmission mechanism 2 is arranged on the driving motor 1, synchronous belts 3 are respectively arranged at two ends of the gear bidirectional transmission mechanism 2, a first driving rod 4 is arranged on one synchronous belt 3, and a second driving rod 5 is arranged on the other synchronous belt 3; the second driving rod 5 is provided with a guide opening 6 matched with the first driving rod 4.
The device also comprises a mounting shell 7 for mounting a driving motor 1, a gear bidirectional transmission mechanism 2, a synchronous belt 3, a first driving rod 4 and a second driving rod 5; the upper portion of the mounting shell 7 is further provided with a garbage bag cavity 13, an iron column 14 is arranged on the side wall of the garbage bag cavity 13, a garbage bag gland 15 is arranged above the garbage bag cavity 13, and a magnet 16 matched with the iron column 14 is arranged on the lower surface of the garbage bag gland 15.
The gear bidirectional transmission mechanism 2 comprises a driving gear 201 fixed at the output end of the driving motor 1, the driving gear 201 is meshed with a driven gear set 202, two ends of the driven gear set 202 are respectively meshed with a transmission gear set 203, and the transmission gear set 203 is matched with the synchronous belt 3.
Two synchronous belts 3 which are vertically distributed are arranged on the gear bidirectional transmission mechanism 2; two ends of the driven gear set 202 are respectively meshed with a transmission gear set 203 which is arranged at a right angle of 90 degrees.
The below of every hold-in range 3 all is equipped with guiding axle 8, and 8 both ends of guiding axle are equipped with fixing base 9 respectively, and two guiding axles 8 cooperate with corresponding first actuating lever 4 or second actuating lever 5 respectively.
Two ends of one synchronous belt 3 are provided with two first driving rods 4 with opposite movement directions, two ends of the other synchronous belt 3 are provided with two second driving rods 5 with opposite movement directions, and each second driving rod 5 is provided with a guide port 6 matched with the first driving rod 4; one of the first driving rods 4 is provided with an elastic block 11, and the other second driving rod 5 is provided with a heater 10 matched with the elastic block 11.
The middle part of the outer side of each synchronous belt 3 is provided with a limit switch 12.
The driving motor and the gear bidirectional transmission mechanism are positioned at one end in the mounting shell, the two synchronous belts are positioned at two ends of the gear bidirectional transmission mechanism, and the first driving rod and the second driving rod are respectively positioned on the synchronous belts.
The other end of each synchronous belt is provided with a synchronous belt wheel, and the synchronous belt wheels are fixed in the installation shell.
And a tooth-shaped structure is arranged on the inner wall of the synchronous belt.
The first driving rod and the second driving rod respectively comprise a driving seat, a guide hole matched with the guide shaft is formed in the upper end of the driving seat, and a clamping groove matched with the synchronous belt is formed in the lower end of the driving seat. The reverse motion is realized by installing the clamping grooves on two edges of the synchronous belt.
The limit switch is arranged in the installation shell.
The heater comprises a fixed block embedded in the first driving rod, a heating wire is arranged on the fixed block, and high-temperature-resistant glass fiber cloth is arranged between the heating wire and the fixed block. The first driving rod is made of high-temperature-resistant materials.
The utility model discloses a working process: the driving motor works to drive the driving gear to rotate, the driving gear rotates to drive the driven gear set meshed with the driving gear set to rotate, the driven gear set rotates to drive the transmission gear set meshed with the driven gear set to rotate, the transmission gear set drives the synchronous belts to move, and the two synchronous belts drive the two first driving rods and the two second driving rods to move simultaneously.
When the garbage bag opening needs to be folded, the driving motor works to drive the two first driving rods to move towards the middle point direction of the guide shaft along the guide shaft, meanwhile, the two second driving rods are driven to move towards the middle point direction of the guide shaft along the guide shaft, the garbage bag is folded to the central position, after one of the two first driving rods touches the limit switch, the driving motor stops moving, the heater can touch the elastic block, heat sealing and cutting-off operations are carried out on the folded garbage bag, and packaging and cutting-off are finished; and then, the driving motor rotates reversely, the first driving rod and the second driving rod start to reset until the same first driving rod touches the limit switch at the other side, and the driving motor stops working.
Claims (10)
1. The utility model provides a disposal bag of intelligence garbage bin seals drive arrangement which characterized in that: the device comprises a driving motor (1), wherein a gear bidirectional transmission mechanism (2) is arranged on the driving motor (1), synchronous belts (3) are respectively arranged at two ends of the gear bidirectional transmission mechanism (2), a first driving rod (4) is arranged on one synchronous belt (3), and a second driving rod (5) is arranged on the other synchronous belt (3); and a guide opening (6) matched with the first driving rod (4) is arranged on the second driving rod (5).
2. The disposal bag sealing driving device of an intelligent trash can according to claim 1, wherein: the device also comprises an installation shell (7) used for installing the driving motor (1), the gear bidirectional transmission mechanism (2), the synchronous belt (3), the first driving rod (4) and the second driving rod (5); the upper part of the mounting shell (7) is also provided with a garbage bag cavity (13), the side wall of the garbage bag cavity (13) is provided with an iron column (14), a garbage bag gland (15) is arranged above the garbage bag cavity (13), and the lower surface of the garbage bag gland (15) is provided with a magnet (16) matched with the iron column (14).
3. The disposal bag sealing driving device of an intelligent trash can according to claim 1, wherein: the gear bidirectional transmission mechanism (2) comprises a driving gear (201) fixed at the output end of the driving motor (1), the driving gear (201) is meshed with a driven gear set (202), two ends of the driven gear set (202) are respectively meshed with a transmission gear set (203), and the transmission gear set (203) is matched with the synchronous belt (3).
4. The disposal bag sealing driving device of an intelligent trash can according to claim 3, wherein: two synchronous belts (3) which are mutually and vertically distributed are arranged on the gear bidirectional transmission mechanism (2); two ends of the driven gear set (202) are respectively meshed with a transmission gear set (203) which is arranged at a right angle of 90 degrees.
5. The disposal bag sealing driving device of an intelligent trash can according to claim 1, wherein: the lower part of each synchronous belt (3) is provided with a guide shaft (8), two ends of each guide shaft (8) are respectively provided with a fixing seat (9), and the two guide shafts (8) are respectively matched with the corresponding first driving rod (4) or the second driving rod (5).
6. The disposal bag sealing driving device of intelligent trash can of claim 2, wherein: one synchronous belt (3) is provided with a first driving rod (4), and the other synchronous belt (3) is provided with a second driving rod (5).
7. The disposal bag sealing driving device of intelligent trash can of claim 6, wherein: a heater (10) positioned on one side of the second driving rod (5) is arranged in the mounting shell (7), and an elastic block (11) corresponding to the heater (10) is embedded on the first driving rod (4).
8. The disposal bag sealing driving device of intelligent trash can of claim 6, wherein: and limit switches (12) are arranged on the outer sides of the first driving rod (4) and the second driving rod (5).
9. The disposal bag sealing driving device of an intelligent trash can according to claim 1, wherein: two ends of one synchronous belt (3) are provided with two first driving rods (4) with opposite movement directions, two ends of the other synchronous belt (3) are provided with two second driving rods (5) with opposite movement directions, and each second driving rod (5) is provided with a guide opening (6) matched with the first driving rod (4); one of the first driving rods (4) is provided with an elastic block (11), and the other second driving rod (5) is provided with a heater (10) matched with the elastic block (11).
10. The disposal bag sealing driving device for intelligent trash cans according to claim 9, wherein: the middle part of the outer side of each synchronous belt (3) is provided with a limit switch (12).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921439646.4U CN210823811U (en) | 2019-08-30 | 2019-08-30 | Disposal bag of intelligence garbage bin seals drive arrangement |
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CN201921439646.4U CN210823811U (en) | 2019-08-30 | 2019-08-30 | Disposal bag of intelligence garbage bin seals drive arrangement |
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CN210823811U true CN210823811U (en) | 2020-06-23 |
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CN201921439646.4U Expired - Fee Related CN210823811U (en) | 2019-08-30 | 2019-08-30 | Disposal bag of intelligence garbage bin seals drive arrangement |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113619953A (en) * | 2021-09-10 | 2021-11-09 | 江苏羽驰区块链科技研究院有限公司 | Automatic sealing device of intelligent collecting box of medical waste treatment block chain system |
-
2019
- 2019-08-30 CN CN201921439646.4U patent/CN210823811U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113619953A (en) * | 2021-09-10 | 2021-11-09 | 江苏羽驰区块链科技研究院有限公司 | Automatic sealing device of intelligent collecting box of medical waste treatment block chain system |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200623 Termination date: 20210830 |
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CF01 | Termination of patent right due to non-payment of annual fee |