CN218751664U - Powder barrel cache isolator, powder filling device and system - Google Patents

Powder barrel cache isolator, powder filling device and system Download PDF

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Publication number
CN218751664U
CN218751664U CN202223002128.0U CN202223002128U CN218751664U CN 218751664 U CN218751664 U CN 218751664U CN 202223002128 U CN202223002128 U CN 202223002128U CN 218751664 U CN218751664 U CN 218751664U
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China
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powder
barrel
isolator
layer
bottle
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CN202223002128.0U
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Chinese (zh)
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王军伟
杨利
王炯威
罗梓宁
刘斌
任斌
周漾
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Truking Technology Ltd
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Truking Technology Ltd
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Abstract

The utility model discloses a powder bucket buffer memory isolator, including the isolation chamber, locate the butt joint mouth of isolation chamber one side and locate the operating gloves on the isolation chamber lateral wall, be equipped with the first layer in the isolation chamber and put the bucket rack with the second floor, the isolator is equipped with and is used for putting the elevating gear who shifts the bucket between the bucket rack on bucket rack and second floor at the first layer, elevating gear includes elevating platform and lift actuating mechanism, puts the bucket rack or the bucket rack alignment setting is put on the second floor to the mouth and first layer. Also discloses a powder filling device, which comprises a powder barrel overturning mechanism, a powder filling head and a powder barrel cache isolator. The powder filling system comprises the bottle conveying device, the bottle feeding device arranged at the bottle feeding end of the bottle conveying device, the plug adding device arranged at the bottle outlet end of the bottle conveying device and the powder filling device. This powder bucket buffer memory isolator, powder filling device and system have advantage such as rationally distributed, area is little and space utilization height.

Description

Powder barrel cache isolator, powder filling device and system
Technical Field
The utility model relates to a food, pharmaceutical packaging mechanical equipment technical field especially relate to a powder bucket buffer memory isolator, powder filling device and system.
Background
In closed isolator installations, regulations require that the operator generally only open the installation during periods of downtime, and no personnel or body parts can enter the isolator directly for operation during operation. And all material entering the isolator must be microbially decontaminated or sterilized and must enter either directly through the microbial contamination or sterilization system or through the rapid transfer chamber. In the prior art, the ORABS system generally transports the powder barrels through the laminar flow trolley, and after the production of each powder barrel is finished, the equipment is opened to replace the powder barrel, so that the scheme cannot be applied to the production of the isolator. The prior art has a technical scheme that a full barrel is conveyed from a full barrel cache region, powder is loaded on the full barrel and then the powder is placed in an empty barrel cache region, and the two regions are located at different plane positions, so that the technical problems of large occupied area and low space utilization rate exist.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome the not enough of prior art, provide a powder bucket buffer memory isolator, powder filling device and system rationally distributed, area is little and space utilization is high.
In order to solve the technical problem, the utility model discloses a following technical scheme:
the utility model provides a powder bucket buffer memory isolator, includes the isolation chamber, locate the operation gloves on isolation chamber one side be used for with the butt joint mouth of filling district butt joint and locating isolation chamber lateral wall, barrel holder and second floor are put to the first floor that is equipped with interval arrangement about in the isolation chamber, and the isolator is equipped with and is used for putting the elevating gear that barrel holder and second floor put the barrel holder between the transfer powder bucket at the first floor, elevating gear includes the elevating platform and is used for driving the elevating platform and puts the elevating system of elevating movement between the barrel holder at the first floor and put the barrel holder on the second floor, put the barrel holder butt joint on barrel holder or second floor to the mouth and first floor.
As a further improvement of the above technical solution:
the barrel placing frame is characterized in that a first material conveying port is formed in the barrel placing frame on the first layer, a second material conveying port which is aligned with the first material conveying port vertically is formed in the barrel placing frame on the second layer, the first material conveying port is formed in the corner of the barrel placing frame on the first layer, and the second material conveying port is formed in the corner of the barrel placing frame on the second layer.
The butt joint port is arranged corresponding to the first material conveying port or the second material conveying port.
The lifting driving mechanism comprises a lifting shaft and a sealing corrugated sleeve, the lifting shaft is movably conveyed to penetrate through the bottom wall of the isolation chamber, the lifting platform is arranged at the top end of the lifting shaft, the bottom end of the lifting shaft is connected with a lifting driving piece, and the sealing corrugated sleeve is arranged between the lifting platform and the bottom wall of the isolation chamber and sleeved on the lifting shaft.
The lifting driving piece is an air cylinder, an oil cylinder or an electric cylinder.
And a plurality of rows of barrel conveying rollers are arranged on the first layer of barrel placing rack and the second layer of barrel placing rack.
The utility model provides a powder filling device, includes powder bucket turnover mechanism, powder filling head and foretell powder bucket buffer memory isolator, the interface and the powder bucket turnover mechanism intercommunication of the isolation chamber of powder bucket buffer memory isolator, the powder filling head communicates with the export of powder bucket turnover mechanism.
The powder filling system comprises a bottle conveying device, a bottle feeding device arranged at the bottle feeding end of the bottle conveying device, a plug adding device arranged at the bottle outlet end of the bottle conveying device and the powder filling device, wherein a powder filling head of the powder filling device is positioned above the bottle conveying device.
As a further improvement of the above technical solution:
the plug adding device is connected with a bottle discharging device.
One side of the bottle discharging device is provided with a waste removing device.
Drawings
Fig. 1 is a schematic view of the three-dimensional structure of the powder barrel buffer isolator of the present invention.
Fig. 2 is the schematic diagram of the internal structure of the powder barrel buffer isolator of the present invention.
Fig. 3 is a schematic structural diagram of the barrel rack of the powder barrel buffer isolator of the present invention (the first layer is provided with a powder barrel on the barrel rack).
Fig. 4 is a schematic structural diagram of the barrel rack of the powder barrel buffer isolator of the present invention (the second layer of the barrel rack holds powder barrels).
Fig. 5 is a schematic structural view of the lifting driving mechanism of the powder barrel buffer isolator of the present invention.
Fig. 6 is a schematic structural diagram of the powder filling apparatus of the present invention.
Fig. 7 is a schematic structural diagram of the powder filling system of the present invention.
The reference numerals in the figures denote:
1. an isolation chamber; 11. a butt joint port; 12. operating the gloves; 13. a bottom wall; 2. a first layer of barrel placing frames; 21. a plurality of rows of barrel conveying rollers; 3. a second layer of barrel placing frames; 4. a first material conveying port; 5. a second material conveying port; 6. a lifting platform; 7. a lifting drive mechanism; 71. a lifting shaft; 72. sealing the corrugated sleeve; 73. a lifting drive member; 8. a powder barrel overturning mechanism; 81. powder filling head; 9. a bottle conveying device; 91. a bottle feeding device; 92. a plugging device; 93. a bottle discharging device; 94. a waste removing device.
Detailed Description
The invention will be described in further detail with reference to the drawings and specific examples.
As used in this disclosure and in the claims, the terms "a," "an," "the," and/or "the" are not intended to be inclusive in the singular, but rather are inclusive in the plural unless the context clearly dictates otherwise. The use of "first," "second," and similar terms in this disclosure is not intended to indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Likewise, the word "comprising" or "comprises", and the like, means that the element or item listed before the word covers the element or item listed after the word and its equivalents, but does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect.
The first embodiment is as follows:
fig. 1 to 5 show an embodiment of the utility model discloses powder bucket buffer memory isolator, this powder bucket buffer memory isolator includes isolation room 1, locate the butt joint mouth 11 that is used for with the butt joint of filling district of isolation room 1 one side and locate operation gloves 12 on isolation room 1 lateral wall, barrel holder 2 is put to the first layer that is equipped with upper and lower interval arrangement in isolation room 1 and barrel holder 3 is put to the second floor, the isolator is equipped with the elevating gear who is used for putting barrel holder 2 and second floor at the first layer and puts the barrel holder 3 between shift powder bucket, elevating gear includes elevating platform 6 and is used for driving elevating gear 7 that elevating gear 6 put barrel holder 2 and second floor and put elevating movement between barrel holder 3 at the first layer, put barrel holder 2 or second floor and put barrel holder 3 butt joint to mouth 11 and first layer.
Before production, a batch of powder barrels filled with materials are placed on the second layer barrel placing frame 3, and the lifting platform 6 rises to be flush with the second layer barrel placing frame 3 under the driving action of the lifting driving mechanism 7. When beginning production, operating personnel pushes away the powder bucket of placing on the second floor puts the bucket rack 3 through operation gloves 12 in isolation room 1 outside, pushes away it and puts to elevating platform 6 on, then, elevating platform 6 takes the powder bucket to descend to putting 2 parallel and level of bucket rack with the first floor under the driving action of lifting drive mechanism 7, transports to the filling district by operating personnel with the powder bucket on elevating platform 6 through interface 11 again and fills. After the powder in one barrel is filled, the empty powder barrel is transferred to the lifting platform 6, and then the empty powder barrel is transferred to the first layer barrel placing rack 2 through the operation gloves 12. Then the lifting platform 6 is driven by the lifting driving mechanism 7 to ascend to be flush with the second layer barrel placing rack 3, and the previous actions are repeated to transfer the powder barrel to the filling area for filling. The whole batch of powder barrels are transported inside the isolation chamber 1 through the operation of the operation gloves 12, so that the filling production of a batch of materials can be completed, and the risk of material pollution is reduced. This powder bucket buffer memory isolator's second floor is put bucket rack 3 and first floor and is put bucket rack 2 and set up from top to bottom, and in the top of coplanar position, it is rationally distributed, area is little, and space utilization is high.
In this embodiment, the first layer barrel placing frame 2 is provided with a first material conveying port 4, the second layer barrel placing frame 3 is provided with a second material conveying port 5 aligned with the first material conveying port 4 up and down, the first material conveying port 4 is arranged at a corner of the first layer barrel placing frame 2, and the second material conveying port (5) is arranged at a corner of the second layer barrel placing frame 3.
Before production, a batch of powder barrels filled with materials are placed on the second layer barrel placing frame 3, and the lifting platform 6 rises to the first material conveying opening 4 under the driving action of the lifting driving mechanism 7 and is flush with the second layer barrel placing frame 3. When beginning production, operating personnel promotes the powder bucket of placing on second floor puts the bucket rack 3 through operating gloves 12 in the isolation ward 1 outside, puts it on elevating platform 6 with it, then, elevating platform 6 takes the powder bucket to descend to second delivery port 5 under the driving action of lifting drive mechanism 7, puts 2 parallel and level of bucket rack with the first layer, transports the filling district to the powder bucket on the elevating platform 6 through interface 11 by operating personnel again and carries out the filling. After the powder in one barrel is filled, the empty powder barrel is transferred to the lifting platform 6, and then the empty powder barrel is transferred to the first layer barrel placing rack 2 through the operation gloves 12. Then through 7 drive elevating platform 6 lifts to first material conveying mouth 4 of lift actuating mechanism, puts the barrel holder 3 parallel and level with the second floor, repeats the preceding action of going up and transports the powder bucket to filling district filling. The first material conveying port 4 is arranged at the corner of the barrel frame 2 placed on the first layer, the second material conveying port 5 is arranged at the corner of the barrel frame 3 placed on the second layer, and the butt joint port 11 and the first material conveying port 4 or the second material conveying port 5 are arranged correspondingly.
In this embodiment, as shown in fig. 5, the lifting driving mechanism 7 includes a lifting shaft 71 and a sealing corrugated sleeve 72, the lifting shaft 71 is movably disposed in the bottom wall 13 of the isolation chamber 1, the lifting platform 6 is disposed at the top end of the lifting shaft 71, the bottom end of the lifting shaft 71 is connected to a lifting driving member 73, and the sealing corrugated sleeve 72 is disposed between the lifting platform 6 and the bottom wall 13 of the isolation chamber 1 and sleeved on the lifting shaft 71. The lifting driving piece 73 is used for driving the lifting shaft 71 to drive the lifting platform 6 to move up and down, and the sealing corrugated sleeve 72 is arranged between the lifting platform 6 and the bottom wall 13 of the isolation chamber 1, so that a good sealing effect is achieved. The lifting drive 73 is an air cylinder, oil cylinder or electric cylinder. The lifting drive 73 is located below the bottom wall 13 of the isolation chamber 1 and does not affect the environment in the isolation chamber 1.
In this embodiment, the first layer of the bucket rack 2 and the second layer of the bucket rack 3 are both provided with a plurality of rows of bucket conveying rollers 21. The powder barrel can be conveniently moved on the barrel placing frame.
Example two:
fig. 6 shows an embodiment of the powder filling apparatus of the present invention, the powder filling apparatus of the present embodiment includes a powder barrel overturning mechanism 8, a powder filling head 81 and a powder barrel buffer isolator of the first embodiment, the interface 11 of the isolation chamber 1 of the powder barrel buffer isolator communicates with the powder barrel overturning mechanism 8, and the powder filling head 81 communicates with the outlet of the powder barrel overturning mechanism 8. The powder bucket filled with the powder enters the powder bucket tipping mechanism 8 through the docking port 11, and is filled through the powder filling head 81. This powder filling device includes powder bucket buffer isolator, has all advantages of powder bucket buffer isolator.
Example three:
fig. 7 shows an embodiment of the powder filling system of the present invention, the powder filling system of this embodiment includes bottle conveying device 9, bottle feeding device 91 located at the bottle feeding end of bottle conveying device 9, plug device 92 located at the bottle discharging end of bottle conveying device 9, and the powder filling device of the second embodiment, and the powder filling head 81 of the powder filling device is located above bottle conveying device 9.
On advancing bottled putting 91 and carrying bottle to defeated bottled putting 9, the bottle passes through defeated bottled putting 9 and carries to the below of powder filling head 81, carries out the filling by powder filling head 81, and the bottle that the powder was filled is carried to plugging device 92 through defeated bottled putting 9, is plugged by plugging device 92 to the bottleneck of bottle. This powder filling system includes powder bucket buffer isolator, has all advantages of powder bucket buffer isolator.
In this embodiment, the plugging device 92 is connected to a bottle discharging device 93. The bottle body which reaches the standard after being plugged is output by a bottle output device 93.
In this embodiment, a waste removing device 94 is disposed on one side of the bottle discharging device 93. The bottle bodies with plugs which do not reach the standard are subjected to waste removal treatment by the waste removal device 94.
In other embodiments, the lifting device is also disposed outside the isolation room 1, for example, a lifting cavity is disposed outside the isolation room 1, the lifting device is installed in the lifting cavity, the isolation room 1 is provided with alignment ports on both sides of the first layer rack 2 and the second layer rack 3, so that the lifting platform 6 is aligned and communicated with the first layer rack 2 and the second layer rack 3, and the lifting cavity is communicated with the isolation room 1 through the alignment ports.
Although the present invention has been described with reference to the preferred embodiments, it is not intended to limit the present invention. The technical solution of the present invention can be used by anyone skilled in the art to make many possible variations and modifications, or to modify equivalent embodiments, without departing from the scope of the technical solution of the present invention, using the technical content disclosed above. Therefore, any simple modification, equivalent change and modification made to the above embodiments by the technical entity of the present invention should fall within the protection scope of the technical solution of the present invention.

Claims (10)

1. The utility model provides a powder bucket buffer memory isolator which characterized in that: including isolation room (1), locate being used for of isolation room (1) one side with filling district butt joint to interface (11) and locate operation gloves (12) on isolation room (1) lateral wall, barrel holder (2) are put on the first layer of interval arrangement about being equipped with in isolation room (1) and barrel holder (3) are put on the second floor, the isolator is equipped with and is used for putting barrel holder (2) and the second floor at the first layer and puts the elevating gear who shifts the powder bucket between barrel holder (3), elevating gear includes elevating platform (6) and is used for driving elevating platform (6) and puts barrel holder (2) and second floor at the first layer and put elevating system (7) of elevating movement between barrel holder (3), put barrel holder (2) or barrel holder (3) butt joint on the second floor to interface (11) and first layer.
2. The powder barrel buffer isolator as claimed in claim 1, wherein: be equipped with first material conveying mouth (4) on first layer bucket rack (2), be equipped with on second layer bucket rack (3) with first material conveying mouth (4) second material conveying mouth (5) of aligning from top to bottom, the corner of first layer bucket rack (2) is located in first material conveying mouth (4), the corner of second layer bucket rack (3) is located in second material conveying mouth (5).
3. The powder barrel buffer isolator as claimed in claim 2, wherein: the butt joint port (11) is arranged corresponding to the first material conveying port (4) or the second material conveying port (5).
4. The powder barrel buffer isolator according to any one of claims 1 to 3, wherein: lifting drive mechanism (7) are including lift axle (71) and sealed ripple cover (72), in diapire (13) of isolation room (1) are worn to locate in lift axle (71) live transportation, the top of lift axle (71) is located in elevating platform (6), the bottom of lift axle (71) is connected with lift driving piece (73), sealed ripple cover (72) are located between diapire (13) of elevating platform (6) and isolation room (1) to the cover is located on lift axle (71).
5. The powder barrel buffer isolator as claimed in claim 4, wherein: the lifting driving piece (73) is an air cylinder, an oil cylinder or an electric cylinder.
6. The powder barrel buffer isolator according to any one of claims 1 to 3, wherein: and a plurality of rows of barrel conveying rollers (21) are arranged on the first layer of barrel placing frame (2) and the second layer of barrel placing frame (3).
7. The utility model provides a powder filling device which characterized in that: comprising a powder barrel overturning mechanism (8), a powder filling head (81) and the powder barrel buffering isolator as claimed in any one of claims 1 to 6, wherein the butt joint port (11) of the isolation chamber (1) of the powder barrel buffering isolator is communicated with the powder barrel overturning mechanism (8), and the powder filling head (81) is communicated with the outlet of the powder barrel overturning mechanism (8).
8. A powder filling system, characterized by: comprising a bottle conveying device (9), a bottle feeding device (91) arranged at the bottle feeding end of the bottle conveying device (9), a plugging device (92) arranged at the bottle discharging end of the bottle conveying device (9) and the powder filling device according to claim 7, wherein the powder filling head (81) of the powder filling device is positioned above the bottle conveying device (9).
9. The powder filling system according to claim 8, wherein: the plugging device (92) is connected with a bottle discharging device (93).
10. The powder filling system according to claim 9, wherein: one side of the bottle discharging device (93) is provided with a waste removing device (94).
CN202223002128.0U 2022-11-10 2022-11-10 Powder barrel cache isolator, powder filling device and system Active CN218751664U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223002128.0U CN218751664U (en) 2022-11-10 2022-11-10 Powder barrel cache isolator, powder filling device and system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223002128.0U CN218751664U (en) 2022-11-10 2022-11-10 Powder barrel cache isolator, powder filling device and system

Publications (1)

Publication Number Publication Date
CN218751664U true CN218751664U (en) 2023-03-28

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Application Number Title Priority Date Filing Date
CN202223002128.0U Active CN218751664U (en) 2022-11-10 2022-11-10 Powder barrel cache isolator, powder filling device and system

Country Status (1)

Country Link
CN (1) CN218751664U (en)

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