CN219719589U - Plunger type core injection machine - Google Patents

Plunger type core injection machine Download PDF

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Publication number
CN219719589U
CN219719589U CN202321020471.XU CN202321020471U CN219719589U CN 219719589 U CN219719589 U CN 219719589U CN 202321020471 U CN202321020471 U CN 202321020471U CN 219719589 U CN219719589 U CN 219719589U
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China
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core injection
frame
core
cylinder
plunger type
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CN202321020471.XU
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Chinese (zh)
Inventor
苏勇强
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Longhai Hengchi Mechanical Equipment Co ltd
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Longhai Hengchi Mechanical Equipment Co ltd
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Abstract

The utility model discloses a plunger type core injection machine, which belongs to the technical field of core injection and comprises a base, wherein a driving component for driving a conveying device to convey is arranged on the base, a control platform, a frame and a supporting frame are respectively arranged on the top side of the base, a core injection device is arranged on the frame, a first cylinder for adjusting the core injection device is arranged on the top side of the frame, a storage bin is arranged on the supporting frame, a discharging device is arranged at the bottom of the storage bin, a guide pipe is connected between a discharging hole of the discharging device and a feeding hole of the core injection device, the discharging device is driven by a second cylinder, and sliding blocks which are in sliding connection with sliding tables on two sides of the supporting frame are arranged on two sides of the discharging device.

Description

Plunger type core injection machine
Technical Field
The utility model relates to the technical field of core injection, in particular to a plunger type core injection machine.
Background
In food consumption, dessert food is popular with people, the proportion of the dessert food in daily food consumption of the masses is gradually increased, the dessert food comprises puff, bread, cakes and the like, and cream, chocolate, ice cream and the like are required to be injected into the dessert during the preparation.
At present, two methods for filling the cake are adopted, one is to fill the cake manually, and the other is to fill the cake only by using a semi-automatic pedal type filling machine for one time after the cake is arranged, and the two methods have poor sanitary conditions and low efficiency and are not suitable for processing and production of a full-automatic production line.
Disclosure of Invention
In order to overcome the defects of the prior art, the technical problem to be solved by the utility model is to provide the core injection machine which can effectively improve the core injection efficiency and is suitable for processing and production of a full-automatic production line.
To achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a plunger type core injection machine, which comprises a base, wherein a driving assembly for driving a conveying device to convey is arranged on the base, and a control platform, a rack and a supporting frame are respectively arranged on the top side of the base;
the feeding device is characterized in that the feeding device is arranged on the frame, a first cylinder for adjusting the feeding device is arranged on the top side of the frame, a storage bin is arranged on the supporting frame, a discharging device is arranged at the bottom of the storage bin, a guide pipe is connected between a discharging hole of the discharging device and a feeding hole of the feeding device, the discharging device is driven by a second cylinder, and sliding blocks which are in sliding connection with sliding tables on two sides of the supporting frame are arranged on two sides of the discharging device.
The preferable technical scheme of the utility model is that the core injection device comprises a support plate arranged between two side walls of the frame, wherein a plurality of groups of core injection cylinders are arranged at the bottom of the support plate through mounting plates, and core injection pipes are arranged at the bottom of the core injection cylinders.
The preferable technical scheme of the utility model is that a sliding rod is arranged between two sides of the supporting plate and the frame, and the sliding rod is connected with the supporting plate in a sliding way.
The discharging device comprises a plurality of groups of storage barrels arranged at the bottom of a storage bin, a pushing rod is arranged at one end, far away from a discharging hole, of each storage barrel, and the second cylinder drives the pushing rod to move so as to squeeze core injection materials in the storage barrels into the core injection pipe.
The preferable technical scheme of the utility model is that a plurality of groups of discharge ports are arranged at the bottom of the storage bin, and a plurality of groups of discharge port storage cylinders are correspondingly communicated.
The preferable technical scheme of the utility model is that a plurality of groups of the storage barrels are fixed on a supporting frame, the supporting frame is provided with a connecting plate, the pushing rod is fixed on the connecting plate through bolts, and the connecting plate is fixedly connected with a sliding block.
The preferable technical scheme of the utility model is that a fixing plate is arranged on one side of the supporting frame, which is close to the second air cylinder, the second air cylinder is fixed on one side of the fixing plate, and the driving end of the second air cylinder penetrates through the fixing plate to be fixedly connected with the connecting plate.
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, the core injection raw material is added into the storage bin, the core injection raw material enters the discharging device from the storage bin to supply materials for subsequent core injection, the driving assembly is controlled by the control platform to drive the conveying device to move, food positioned at the top side of the conveying device is moved below the core injection device, the core injection device is connected with the discharging device by the guide pipe, the second cylinder is started to drive the discharging device to realize discharging, the core injection raw material is injected into the core injection device from the guide pipe, the first cylinder works to drive the supporting plate to slide downwards along the sliding rod, the supporting plate drives the plurality of groups of core injection pipes and the core injection cylinders to move downwards, the nozzle of the core injection pipe is inserted into the food from the top of the to-be-injected food, the core injection cylinder drives the core injection raw material in the core injection pipe to squeeze the food, the core injection work of the food is completed, the first cylinder works to drive the supporting plate to move upwards along the sliding rod, so that the plurality of groups of core injection pipes move upwards, the food after the core injection is separated from the conveying device to a designated position, the manual core injection and the semi-automatic core injection are driven, the full-automatic core injection work of the food is realized, the full-automatic core injection work of the food is guaranteed, the clean and the automatic core injection work is guaranteed, the automatic core injection efficiency and the full-automatic core injection production efficiency and the production efficiency is guaranteed is improved.
The core injection machine provided by the utility model can effectively improve the core injection efficiency and is suitable for processing and production of a full-automatic production line.
Drawings
FIG. 1 is a schematic diagram of a core injection machine according to an embodiment of the present utility model;
FIG. 2 is a perspective view of the structure of the core injection machine provided in the embodiment of the utility model;
FIG. 3 is a top view of the structure of the core injection machine provided in the embodiment of the utility model;
FIG. 4 is an enlarged schematic view of the structure shown in FIG. 3A, provided in an embodiment of the present utility model;
in the drawings, the list of components represented by the various numbers is as follows:
1. a base; 11. a frame; 12. a first cylinder; 13. a support frame; 14. a sliding table; 15. a slide block; 2. a drive assembly; 3. a conveying device; 4. a core injection device; 41. a support plate; 42. a slide bar; 43. a core injection cylinder; 44. a feed inlet; 45. injecting a core tube; 5. a storage bin; 51. a discharge port; 52. a discharge port; 6. a discharging device; 61. a fixing plate; 62. a second cylinder; 63. a driving end; 64. a connecting plate; 65. a pushing rod; 66. a bolt; 67. a storage cylinder; 7. and controlling the platform.
Detailed Description
The technical scheme of the utility model is further described below by the specific embodiments with reference to the accompanying drawings.
The plunger type core injection machine comprises a base 1, wherein a driving assembly 2 for driving a conveying device 3 to convey is arranged on the base 1, and a control platform 7, a frame 11 and a supporting frame 13 are respectively arranged on the top side of the base 1;
the feeding device is characterized in that the feeding device 4 is arranged on the frame 11, a first air cylinder 12 for adjusting the feeding device 4 is arranged on the top side of the frame 11, a storage bin 5 is arranged on the supporting frame 13, a discharging device 6 is arranged at the bottom of the storage bin 5, a guide pipe is connected between a discharging hole 52 of the discharging device 6 and a feeding hole 44 of the feeding device 4, the discharging device 6 is driven by a second air cylinder 62, and sliding blocks 15 which are in sliding connection with sliding tables 14 on two sides of the supporting frame 13 are arranged on two sides of the discharging device 6.
The core injection device 4 comprises a support plate 41 arranged between two side walls of the frame 11, a plurality of groups of core injection cylinders 43 are arranged at the bottom of the support plate 41 through mounting plates, core injection pipes 45 are arranged at the bottom of the core injection cylinders 43, sliding rods 42 are arranged between two sides of the support plate 41 and the frame 11, and the sliding rods 42 are in sliding connection with the support plate 41.
The feeding device is characterized in that core raw materials are added into a feed bin 5, the core raw materials enter a discharge device 6 from the feed bin 5 to feed the subsequent cores, a driving assembly 2 is controlled by a control platform 7 to drive a conveying device 3 to move, foods positioned on the top side of the conveying device 3 are moved below the core device 4, the core device 4 and the discharge device 6 are connected through a guide pipe, a second cylinder 62 is started to drive the discharge device 6 to discharge, the core raw materials are injected into the core device 4 through the guide pipe, a first cylinder 12 works to drive a supporting plate 41 to slide downwards along a sliding rod 42, the supporting plate 41 drives a plurality of groups of core pipes 45 and core cylinders 43 to move downwards, a nozzle of each core pipe 45 is inserted into the inside from the top of foods to be filled, the core cylinders 43 drive the core cylinders to squeeze the core raw materials inside the core pipes 45 into the foods, the core injecting work of the foods is completed, the first cylinder 12 works to drive the 41 to move upwards along the sliding rod 42, the groups of the core injecting pipes are upwards moved away from the foods after the core, the conveying device 3 moves the foods after the core to a specified position, the core injecting pipes and the core injecting pipes are automatically moved, the core pipes and the core injecting pipes and the core pipes are completely and automatically move along the core pipes and the core cylinder cylinders and the core cylinder to the core filling pipe and the core cylinder.
As a possible implementation manner of the scheme, preferably, the discharging device 6 comprises a plurality of groups of storage barrels 67 arranged at the bottom of the storage barrel 5, a pushing rod 65 is arranged at one end, away from the discharging hole 52, of the storage barrels 67, the second cylinder 62 drives the pushing rod 65 to move, core materials inside the storage barrels 67 are extruded into the core injection pipe 45, the pushing rod 65 is driven by the second cylinder 62 to move, the core injection materials inside the storage barrels 67 are extruded out by the pushing rod 65, the core injection materials are extruded into the core injection device 4 through a guide pipe, a proper amount of core injection materials are selected according to the requirement of core injection conditions, excessive storage of the core injection materials in the core injection device 4 is avoided, waste of the core injection materials is caused, and the benefit of enterprises is guaranteed.
As a possible implementation manner of the solution, preferably, a plurality of groups of discharge ports 51 are provided at the bottom of the bin 5, a plurality of groups of storage cylinders 67 of the discharge ports 51 are correspondingly communicated, after the core injection raw materials are added into the bin 5, the core injection raw materials are stored in the storage cylinders 67 through the discharge ports 51, so that preparation is made for subsequent core injection work, and the corresponding core injection amount is controlled and selected through the control platform 7 according to the requirement of the core injection raw materials, so that waste is avoided.
As a possible implementation manner of the scheme, preferably, multiple groups of storage barrels 67 are fixed on a supporting frame 13, the supporting frame 13 is provided with a connecting plate 64, a pushing rod 65 is fixed on the connecting plate 64 through a bolt 66, the connecting plate 64 is fixedly connected with a sliding block 15, a second air cylinder 62 drives the connecting plate 64 to move, the connecting plate 64 slides along a sliding table 14 under the action of the sliding block 15, the connecting plate 64 drives the multiple groups of pushing rods 65 to move, and core injection raw materials inside the multiple groups of storage barrels 67 are extruded into a core injection device 4, so that simultaneous discharging of multiple groups of raw materials is realized, and the core injection efficiency is improved.
As a possible implementation manner of the scheme, preferably, a fixed plate 61 is arranged on one side of the supporting frame 13 close to the second air cylinder 62, the second air cylinder 62 is fixed on one side of the fixed plate 61, a driving end 63 of the second air cylinder 62 penetrates through the fixed plate 61 and is fixedly connected with a connecting plate 64, the driving end 63 drives the connecting plate 64 to move, the connecting plate 64 drives a plurality of groups of pushing rods 65 to move, the discharging of the core injecting raw materials is realized, the consistency and the production yield of the core injecting of food are ensured, and the production efficiency and the benefit of enterprises are effectively improved.
While the utility model has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the spirit and scope of the utility model. The utility model is not to be limited by the specific embodiments disclosed herein, but rather, embodiments falling within the scope of the appended claims are intended to be embraced by the utility model.

Claims (7)

1. A plunger type core injection machine which is characterized in that: the automatic feeding device comprises a base (1), wherein a driving assembly (2) for driving a conveying device (3) to convey is arranged on the base (1), and a control platform (7), a frame (11) and a supporting frame (13) are respectively arranged on the top side of the base (1);
install on frame (11) annotate heart device (4), first cylinder (12) that are used for adjusting annotating heart device (4) are installed to frame (11) top side, install feed bin (5) on supporting rack (13), feed bin (5) bottom is provided with discharging device (6), be connected with the pipe between discharging device (6) discharge gate (52) and annotate feed inlet (44) of heart device (4), discharging device (6) are driven by second cylinder (62), and discharging device (6) both sides are provided with slider (15) with supporting rack (13) both sides slip table (14) sliding connection.
2. A plunger type core injector as set forth in claim 1, wherein:
the core injection device (4) comprises a supporting plate (41) arranged between two side walls of the frame (11), a plurality of groups of core injection cylinders (43) are arranged at the bottoms of the supporting plate (41) through mounting plates, and core injection pipes (45) are arranged at the bottoms of the core injection cylinders (43).
3. A plunger type core injector as set forth in claim 2, wherein:
a sliding rod (42) is arranged between the two sides of the supporting plate (41) and the frame (11), and the sliding rod (42) is in sliding connection with the supporting plate (41).
4. A plunger type core injector as set forth in claim 1, wherein:
the discharging device (6) comprises a plurality of groups of storage barrels (67) arranged at the bottom of the storage barrels (5), a pushing rod (65) is arranged at one end, far away from the discharging hole (52), of each storage barrel (67), the second air cylinder (62) drives the pushing rod (65) to move, and core injection materials inside the storage barrels (67) are extruded into the core injection pipe (45).
5. A plunger type core injector as set forth in claim 1, wherein:
the bottom of the storage bin (5) is provided with a plurality of groups of discharge ports (51), and the discharge ports (51) and the storage cylinder (67) are correspondingly communicated.
6. The plunger type core injection machine according to claim 4, wherein:
the multiple groups of the material storage barrels (67) are fixed on the supporting frame (13), the supporting frame (13) is provided with a connecting plate (64), the material pushing rods (65) are fixed on the connecting plate (64) through bolts (66), and the connecting plate (64) is fixedly connected with the sliding blocks (15).
7. The plunger type core injection machine according to claim 6, wherein:
the bearing frame (13) is provided with fixed plate (61) near second cylinder (62) one side, second cylinder (62) are fixed in fixed plate (61) one side, drive end (63) of second cylinder (62) pass fixed plate (61) and connecting plate (64) fixed connection.
CN202321020471.XU 2023-04-28 2023-04-28 Plunger type core injection machine Active CN219719589U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321020471.XU CN219719589U (en) 2023-04-28 2023-04-28 Plunger type core injection machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321020471.XU CN219719589U (en) 2023-04-28 2023-04-28 Plunger type core injection machine

Publications (1)

Publication Number Publication Date
CN219719589U true CN219719589U (en) 2023-09-22

Family

ID=88055412

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321020471.XU Active CN219719589U (en) 2023-04-28 2023-04-28 Plunger type core injection machine

Country Status (1)

Country Link
CN (1) CN219719589U (en)

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