CN214513967U - Dosing unit is used in glass bottle production - Google Patents
Dosing unit is used in glass bottle production Download PDFInfo
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- CN214513967U CN214513967U CN202023018525.8U CN202023018525U CN214513967U CN 214513967 U CN214513967 U CN 214513967U CN 202023018525 U CN202023018525 U CN 202023018525U CN 214513967 U CN214513967 U CN 214513967U
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- weighing
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- blanking
- batching
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Abstract
The utility model discloses a batching device for glass bottle production, including feeding bracing piece, base and batching structure, the batching structure includes feeding weighing structure, compounding structure, buffer structure and bottom blanking structure, feeding weighing structure includes weighing motor, weighing pivot, fixed rotor plate, weighs box and side guide board, buffer structure includes netted board, side spout, motor supporting seat, bottom spring, side slider, driving motor and drive cam, the compounding structure includes compounding motor, compounding pivot, compounding flabellum, bottom cross support frame, connecting rod and connection spout, bottom blanking structure includes blanking motor and blanking baffle, and this device can weigh on two sides through setting up the weighing box at the feed inlet, makes efficiency higher; be provided with buffer structure on the device for the raw materials at first cushions when getting into, avoids the raw materials direct arrival batching bottom half, causes the sediment, thereby influences compounding efficiency.
Description
Technical Field
The utility model relates to a dosing unit specifically is a dosing unit is used in glass bottle production.
Background
When glass bottle production, at first need carry out the ratio to the raw materials, directly pour the raw materials after the ratio into batching box inside, but general batching can not realize automatic weighing, and efficiency is lower.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a proportioning device is used in glass bottle production to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a batching device for glass bottle production comprises a feeding support rod, a base and a batching structure, wherein the batching structure comprises a feeding weighing structure, a mixing structure, a buffering structure and a bottom blanking structure, a batching box body is fixed above the base, a top inlet is fixed at the top of the batching box body, the feeding weighing structure is arranged below the top inlet, the buffering structure is arranged below the feeding weighing structure, the mixing structure is arranged below the buffering structure, a bottom blanking structure is arranged below the mixing structure, a feeding support rod is fixed at the bottom of the base, the feeding weighing structure comprises a weighing motor, a weighing rotating shaft, a fixed rotating plate, a weighing box body and a side guide plate, a side guide plate is fixed at the side edge of the batching box body, a weighing motor is fixed at the end part side edge of the side edge, the weighing motor is in driving connection with the weighing rotating shaft, the weighing device is characterized in that a fixed rotating plate is fixed on the weighing rotating shaft, weighing boxes are fixed on the upper side and the lower side of the fixed rotating plate, a pressure sensor is arranged in each weighing box, and each weighing box is located below the corresponding top inlet.
As a further aspect of the present invention: buffer structure includes netted board, side spout, motor supporting seat, bottom spring, side slider, driving motor and drive cam, the side spout has been seted up to batching box side, the inside slip of side spout is provided with the side slider, side slider bottom is fixed with the bottom spring, bottom spring bottom is fixed in side spout bottom, side slider side is fixed with netted board, side spout below is fixed with the motor supporting seat, be fixed with driving motor on the motor supporting seat, drive motor drive box connects drive cam, drive cam arranges in netted board below.
As a further aspect of the present invention: the compounding structure includes compounding motor, compounding pivot, compounding flabellum, bottom cross support frame, connecting rod and connection spout, the feed opening has been seted up to batching bottom half, reticular lamina below intermediate position is fixed with the compounding motor, the compounding pivot is connected in the compounding motor drive, compounding pivot side is fixed with the compounding flabellum, compounding pivot tip rotates the setting and is in bottom cross support frame intermediate position, bottom cross support frame side is fixed with the connecting rod, the connection spout has been seted up to the feed opening side, the connecting rod with connect spout sliding connection.
As a further aspect of the present invention: the bottom blanking structure comprises a blanking motor and a blanking baffle, a blanking port is formed in the base in a linkage mode, the side edge of the base is fixed with the blanking motor, the blanking motor is connected with the blanking baffle in a driving mode, and the blanking baffle is an eccentric wheel.
As a further aspect of the present invention: the feeding support rod side is fixed with the unloading bracing piece, it is provided with the transfer roller to rotate on the unloading bracing piece, be provided with conveyer belt on the transfer roller.
Compared with the prior art, the beneficial effects of the utility model are that: the device can carry out weighing on two sides by arranging the weighing box body at the feeding hole, so that the efficiency is higher; be provided with buffer structure on the device for the raw materials at first cushions when getting into, avoids the raw materials direct arrival batching bottom half, causes the sediment, thereby influences compounding efficiency.
Drawings
FIG. 1 is a schematic structural diagram of a batching device for glass bottle production.
FIG. 2 is a schematic view of a partially enlarged structure of a dispensing device for producing glass bottles.
FIG. 3 is a schematic structural diagram of a weighing box in the batching device for glass bottle production.
In the figure: 1-base, 2-bottom cross support frame, 3-mixing fan blades, 4-batching box body, 5-bottom spring, 6-side slide block, 7-driving cam, 8-driving motor, 9-side guide plate, 10-fixed rotating plate, 11-top inlet, 12-weighing box body, 13-reticular plate, 14-side sliding groove, 15-motor support seat, 16-mixing rotating shaft, 17-blanking opening, 18-conveying roller, 19-blanking support rod, 20-conveying belt, 21-blanking baffle, 22-feeding support rod, 23-blanking motor, 24-mixing motor, 24-connecting rod and 25-connecting sliding groove.
Detailed Description
The technical solution of the present patent will be described in further detail with reference to the following embodiments.
Example 1
Referring to fig. 1-3, a batching device for glass bottle production comprises a feeding support rod 22, a base 1 and a batching structure, wherein the batching structure comprises a feeding weighing structure, a material mixing structure, a buffering structure and a bottom blanking structure, a batching box body 4 is fixed above the base 1, a top inlet 11 is fixed at the top of the batching box body 4, the feeding weighing structure is arranged below the top inlet 11, the buffering structure is arranged below the feeding weighing structure, the material mixing structure is arranged below the buffering structure, the bottom blanking structure is arranged below the material mixing structure, the feeding support rod 22 is fixed at the bottom of the base 1, the feeding weighing structure comprises a weighing motor, a weighing rotating shaft, a fixed rotating plate 10, a weighing box body 12 and a side guide plate 9, a side guide plate 9 is fixed at the side of the batching box body 4, and a weighing motor is fixed at the side of the end of the side guide plate 9, the weighing motor is connected with the weighing rotating shaft in a driving mode, the weighing rotating shaft is fixedly provided with a fixed rotating plate 10, the upper side and the lower side of the fixed rotating plate 10 are fixedly provided with a weighing box body 12, a pressure sensor is arranged inside the weighing box body 12, and the weighing box body 12 is located below the top inlet 11. At first the raw materials gets into the raw materials through top inlet port 14, and the raw materials reachs and weighs inside weighing of weighing box 12, when weighing and reachs certain weight, utilizes and weighs the motor drive and weigh the pivot and rotate for fixed rotor plate 10 rotates, makes and weighs box 12 and rotate and drop to batching box 4 inside, utilizes buffer structure to cushion the raw materials afterwards, utilizes the compounding structure to make various raw materials mix, utilizes bottom blanking structure to realize the unloading afterwards.
In above-mentioned dosing unit is used in glass bottle production, buffer structure includes reticular plate 13, side spout 14, motor supporting seat 15, bottom spring 5, side slider 6, driving motor 8 and driving cam 7, side spout 14 has been seted up to 4 sides of batching box, the inside slip of side spout 14 is provided with side slider 6, 6 bottoms of side slider are fixed with bottom spring 5, bottom spring 5 bottoms are fixed in 14 bottoms of side spout, 6 sides of side slider are fixed with reticular plate 13, 14 below of side spout are fixed with motor supporting seat 15, be fixed with driving motor 8 on the motor supporting seat 15, driving cam 7 is connected to 8 drive boxes of driving motor, driving cam 7 is arranged in 13 below of reticular plate. Utilize driving motor 8 to drive cam 7 and rotate for carry out fore-and-aft removal to reticular lamina 13, make reticular lamina 13 realize fore-and-aft vibration under the effect of self gravity and bottom spring 5, make and to cushion the raw materials unloading.
In above-mentioned proportioning device for glass bottle production, the compounding structure includes compounding motor 24, compounding pivot 16, compounding flabellum 3, bottom cross support frame 2, connecting rod 25 and connection spout 26, feed opening 17 has been seted up to 4 bottoms of batching box, reticular lamina 13 below intermediate position is fixed with compounding motor 24, compounding motor 24 drive is connected compounding pivot 16, 16 sides of compounding pivot are fixed with compounding flabellum 3, 16 tip rotations of compounding pivot set up 2 intermediate positions of bottom cross support frame, 2 sides of bottom cross support frame are fixed with connecting rod 25, connection spout 26 has been seted up to feed opening 17 sides, connecting rod 25 with connect spout 26 sliding connection. The material mixing rotating shaft 16 is driven to rotate by the material mixing motor 24, so that the material mixing fan blades 3 are used for mixing materials.
In above-mentioned dosing unit is used in glass bottle production, bottom blanking structure includes unloading motor 23 and unloading baffle 21, the intermodal is provided with feed opening 17 on the base 1, the 1 side of base is fixed with unloading motor 23, unloading baffle 21 is connected in the drive of unloading motor 23, unloading baffle 21 is the eccentric wheel. Utilize unloading baffle 21 to shelter from feed opening 17, when needs carry out the unloading, utilize unloading motor 23 to rotate for the skew feed opening 17 of unloading baffle 21, thereby realize the unloading.
Example 2
Compared with embodiment 1, the improvement point of the present embodiment is that: the feeding support rod 22 side is fixed with unloading bracing piece 19, it is provided with transfer roller 18 to rotate on the unloading bracing piece 19, be provided with conveyer belt 20 on the transfer roller 18. The conveying roller 18 is driven by a power device at the side of the conveying roller 18, so that the conveying belt 20 rotates, and the blanking is performed.
The utility model discloses a theory of operation is: at first the raw materials gets into the raw materials through top inlet port 14, the raw materials reachs and weighs inside weighing of weighing box 12, when weighing and reachs certain weight, utilize the weighing motor to drive and weigh the pivot and rotate, make fixed rotor plate 10 rotate, make it rotate inside the batching box 4 that drops to weigh box 12, utilize buffer structure to cushion the raw materials afterwards, driving motor 8 drives driving cam 7 and rotates promptly, make and carry out fore-and-aft removal to reticular lamina 13, make reticular lamina 13 realize fore-and-aft vibration under self gravity and bottom spring 5's effect, make and cushion the raw materials unloading, utilize compounding motor 24 to drive compounding pivot 16 and rotate, make and utilize flabellum compounding 3 to carry out the compounding, utilize bottom blanking structure to realize the unloading afterwards.
The utility model has the advantages that: the device can carry out weighing on two sides by arranging the weighing box body at the feeding hole, so that the efficiency is higher; be provided with buffer structure on the device for the raw materials at first cushions when getting into, avoids the raw materials direct arrival batching bottom half, causes the sediment, thereby influences compounding efficiency.
Although the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present patent within the knowledge of those skilled in the art.
Claims (5)
1. A batching device for glass bottle production comprises a feeding support rod (22), a base (1) and a batching structure, and is characterized in that the batching structure comprises a feeding weighing structure, a material mixing structure, a buffering structure and a bottom blanking structure, a batching box body (4) is fixed above the base (1), a top inlet (11) is fixed at the top of the batching box body (4), the feeding weighing structure is arranged below the top inlet (11), the buffering structure is arranged below the feeding weighing structure, the material mixing structure is arranged below the buffering structure, the bottom blanking structure is arranged below the material mixing structure, the feeding support rod (22) is fixed at the bottom of the base (1), the feeding weighing structure comprises a weighing motor, a weighing rotating shaft, a fixed rotating plate (10), a weighing box body (12) and a side guide plate (9), the side of the batching box body (4) is fixed with a side guide plate (9), the side of the end part of the side guide plate (9) is fixed with a weighing motor, the weighing motor is driven to be connected with a weighing rotating shaft, a fixed rotating plate (10) is fixed on the weighing rotating shaft, the upper side and the lower side of the fixed rotating plate (10) are fixed with a weighing box body (12), a pressure sensor is arranged inside the weighing box body (12), and the weighing box body (12) is located below a top inlet (11).
2. The batching device for glass bottle production according to claim 1, wherein said buffering structure comprises a mesh plate (13), a side chute (14), a motor support (15), a bottom spring (5), a side slide block (6), a driving motor (8) and a driving cam (7), said side chute (14) is opened at the side of said batching box body (4), said side slide block (6) is slidably disposed inside said side chute (14), said bottom spring (5) is fixed at the bottom of said side slide block (6), said bottom spring (5) is fixed at the bottom of said side chute (14), said mesh plate (13) is fixed at the side of said side slide block (6), said motor support (15) is fixed below said side chute (14), said driving motor (8) is fixed on said motor support (15), said driving motor (8) driving box is connected with said driving cam (7), the driving cam (7) is arranged below the reticular plate (13).
3. The batching device for glass bottle production according to claim 2, wherein the mixing structure comprises a mixing motor (24), a mixing rotating shaft (16), mixing fan blades (3), a bottom cross support frame (2), a connecting rod (25) and a connecting chute (26), a feed opening (17) is arranged at the bottom of the batching box body (4), a mixing motor (24) is fixed at the middle position below the reticular plate (13), the mixing motor (24) is connected with the mixing rotating shaft (16) in a driving way, the mixing fan blades (3) are fixed on the side edge of the mixing rotating shaft (16), the end part of the mixing rotating shaft (16) is rotatably arranged in the middle of the bottom cross-shaped support frame (2), bottom cross support frame (2) side is fixed with connecting rod (25), connecting chute (26) have been seted up to feed opening (17) side, connecting rod (25) with connecting chute (26) sliding connection.
4. The batching device for glass bottle production according to claim 3, wherein the bottom blanking structure comprises a blanking motor (23) and a blanking baffle (21), the base (1) is provided with a blanking opening (17) in a linkage manner, the side of the base (1) is fixed with the blanking motor (23), the blanking motor (23) is in driving connection with the blanking baffle (21), and the blanking baffle (21) is an eccentric wheel.
5. The batching device for glass bottle production according to claim 4, characterized in that a blanking support rod (19) is fixed on the side of the feeding support rod (22), a conveying roller (18) is arranged on the blanking support rod (19) in a rotating manner, and a conveying belt (20) is arranged on the conveying roller (18).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023018525.8U CN214513967U (en) | 2020-12-16 | 2020-12-16 | Dosing unit is used in glass bottle production |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023018525.8U CN214513967U (en) | 2020-12-16 | 2020-12-16 | Dosing unit is used in glass bottle production |
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CN214513967U true CN214513967U (en) | 2021-10-29 |
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CN202023018525.8U Active CN214513967U (en) | 2020-12-16 | 2020-12-16 | Dosing unit is used in glass bottle production |
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- 2020-12-16 CN CN202023018525.8U patent/CN214513967U/en active Active
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