CN216072043U - Synchronous clamping assembly for bottled milk production - Google Patents

Synchronous clamping assembly for bottled milk production Download PDF

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Publication number
CN216072043U
CN216072043U CN202122508318.9U CN202122508318U CN216072043U CN 216072043 U CN216072043 U CN 216072043U CN 202122508318 U CN202122508318 U CN 202122508318U CN 216072043 U CN216072043 U CN 216072043U
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China
Prior art keywords
sliding
synchronous
clamping assembly
production
bottom plate
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CN202122508318.9U
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Chinese (zh)
Inventor
朱玲丽
许李昱
李博胜
王顺军
余毅敏
李国平
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Hebi Liziyuan Food Co ltd
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Hebi Liziyuan Food Co ltd
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Abstract

The utility model relates to a synchronous clamping assembly for bottled milk production, which comprises an installation bottom plate, wherein two sides of the gravity center of the installation bottom plate in the length direction are respectively and oppositely provided with two groups of sliding rail kits, the upper parts of the two groups of sliding rail kits are respectively provided with a sliding bottom plate for connecting the sliding rail kits at the same side, the upper parts of the two sliding bottom plates are respectively and oppositely provided with an opening and closing clamping piece, the installation bottom plate at one side of the two sliding bottom plates is respectively provided with a driving cylinder, and the gravity center of the installation bottom plate is provided with a synchronous maintaining mechanism; the free end of the piston in the driving cylinder is connected with the lower part of the sliding bottom plate. According to the feeding bottle turnover fixture, the two sets of sliding rail external members are arranged on the mounting bottom plate, the two sets of sliding rail external members are respectively connected with the sliding bottom plates, so that the two sliding bottom plates can stably move, the two driving cylinders are respectively connected to the lower parts of the sliding bottom plates, and the synchronous maintaining mechanism is further arranged, so that the feeding bottle turnover fixture can be clamped at the same position by the opening and closing clamping piece.

Description

Synchronous clamping assembly for bottled milk production
Technical Field
The utility model belongs to the technical field of auxiliary equipment of beverage production lines, and particularly relates to a synchronous clamping assembly for bottled milk production.
Background
Bottled milk need press from both sides tightly the turnover anchor clamps that get into the station in the process of blowing off the comdenstion water, and current clamping component sets up the cylinder in the both sides of transmission band as the power supply, and it is tight to drive splint through the cylinder action, and the clamping of the unable assurance turnover anchor clamps of this kind of clamping mode is in same position each time, and this also makes the relative distance and the angle of subassembly and the feeding bottle subassembly of blowing unstable, makes the effect of blowing off the comdenstion water unsatisfactory.
Disclosure of Invention
Aiming at the defects in the prior art, the technical problem to be solved by the utility model is to provide a synchronous clamping assembly for bottled milk production, wherein the clamping assembly clamps a turnover clamp at the same position every time, and the use is stable.
The purpose of the utility model is realized by the following technical scheme: a synchronous clamping assembly for bottled milk production comprises an installation bottom plate, wherein two sides of the gravity center of the installation bottom plate in the length direction are respectively and oppositely provided with two sets of slide rail external members, the upper parts of the two sets of slide rail external members are respectively provided with a sliding bottom plate for connecting the slide rail external members on the same side, the upper parts of the two sliding bottom plates are respectively and oppositely provided with an opening and closing clamping member, the installation bottom plate on one side of the two sliding bottom plates is respectively provided with a driving cylinder, and the gravity center of the installation bottom plate is provided with a synchronous maintaining mechanism; the free end of the piston in the driving cylinder is connected with the lower part of the sliding bottom plate.
Preferably, the synchronous holding mechanism comprises a gear arranged at the gravity center of the mounting bottom plate, and two racks which are meshed with the gear and arranged in parallel with each other; the two racks and the two sets of sliding rail external members are arranged in parallel, and the two racks are respectively connected with the sliding bottom plate on one side of each rack through bolts. The synchronous holding mechanism is characterized in that two racks are respectively connected with the sliding bottom plates on different sides by utilizing the meshing synchronous effect of one gear and two racks, so that the two sides of the synchronous holding mechanism keep the same displacement under the driving of a driving cylinder.
Preferably, the opening/closing clamping member is formed by bending a plate surface as a whole, and includes: the clamping device comprises a mounting surface, a supporting surface perpendicular to the mounting surface, an extending surface perpendicular to the supporting surface and a clamping surface perpendicular to the extending surface. The whole board surface bending is adopted to conveniently control the height of the supporting surface in the manufacturing process so as to utilize the height space to accommodate the conveying belt.
Preferably, the clamping surface is provided with a non-slip strip. Cleats are provided to increase the coefficient of friction when clamped.
Preferably, the surface of the anti-skid strip, which faces one side of the center of gravity of the mounting base plate, is provided with concave-convex ribs in the whole range. The concave-convex edges are arranged to achieve a further anti-slip effect.
Preferably, a water collecting groove is formed in one side, close to the clamping surface, of the extending surface. The department sets up that the water catch bowl can be convenient be connected with turnover anchor clamps delivery port, makes the comdenstion water collect concentratedly.
Preferably, the water collecting tank is provided with water absorption cotton. The cotton that absorbs water can make the comdenstion water that gets into the water catch bowl adsorbed by the cotton that absorbs water to water in the water catch bowl does not form and rocks the splash outward when opening and shutting clamping piece removes.
Preferably, an avoidance port is arranged on the supporting surface. The avoiding opening avoids the racks on two sides when the opening and closing clamping piece clamps a small range.
In summary, compared with the prior art, the utility model has the following advantages:
according to the feeding bottle turnover clamp, the two sets of sliding rail kits are arranged on the mounting bottom plate, the two sets of sliding rail kits are respectively connected with the sliding bottom plates, so that the two sliding bottom plates can stably move, the two driving cylinders are respectively connected to the lower parts of the sliding bottom plates, the synchronous maintaining mechanism is further arranged, the sliding bottom plates can synchronously and relatively move when the driving cylinders drive, the opening and closing clamping pieces are oppositely arranged on the upper parts of the two sliding bottom plates, and the opening and closing clamping pieces clamp the feeding bottle turnover clamp at the same position.
Therefore, compared with the prior art, the clamp realizes clamping of the bottle turnover clamp at the same position, and the relative distance and angle between the blowing assembly and the feeding bottle assembly can be stably controlled, so that the effect of blowing off condensed water is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged view of a portion of FIG. 1 at I;
FIG. 3 is a top view of the present invention;
fig. 4 is a partial enlarged view at II in fig. 3.
The labels in the figure are:
10, mounting a bottom plate; 20 a slide rail kit; 30, a sliding bottom plate; 40 opening and closing the clamping piece; 41 mounting surface; 42 a support surface; 43 an extension plane; 44 a clamping surface; 45 anti-slip strips; 46 a water collection tank; 47 avoiding the mouth; 50 a synchronization holding mechanism; 60 gears; 70 rack bars; 80 driving the cylinder; 90 infrared induction probe.
Detailed Description
The utility model will be further described with reference to examples of embodiments shown in the drawings to which:
example 1:
as shown in fig. 1 to 4, a synchronous clamping assembly for bottled milk production includes an installation base plate 10, two sets of slide rail kits 20 are respectively and oppositely arranged at two sides of the installation base plate 10 in the length direction at the center of gravity, sliding base plates 30 for connecting the slide rail kits 20 at the same side by bolts are respectively arranged at the upper parts of the two sets of slide rail kits 20, opening and closing clamping members 40 are respectively and oppositely arranged at the upper parts of the two sliding base plates 30, driving cylinders 80 are respectively arranged on the installation base plate 10 at one side of the two sliding base plates 30, and a synchronous holding mechanism 50 is arranged at the center of gravity of the installation base plate 10; the free end of the piston in the drive cylinder 80 is connected to the lower portion of the slide base 30.
The high space of clamping piece 40 that opens and shuts is used for holding the transmission band, and for the convenience control height, the whole face that adopts of clamping piece 40 that opens and shuts bends and form includes: a mounting surface 41, a support surface 42 perpendicular to the mounting surface 41, an extension surface 43 perpendicular to the support surface 42, a clamping surface 44 perpendicular to the extension surface 43. An infrared sensing probe 90 is arranged in the clamping surface 44, and an avoidance opening 47 is arranged on the supporting surface 42. The avoiding opening avoids the racks on two sides when the opening and closing clamping piece clamps a small range.
In order to facilitate connection with the outlet of the revolving clamp and collect condensed water in a concentrated manner, a water collecting groove 46 is formed on the side of the extension surface 43 close to the clamping surface 44. The water collecting groove 46 is also provided with absorbent cotton, and the absorbent cotton can enable condensed water entering the water collecting groove to be absorbed by the absorbent cotton, so that water in the water collecting groove 46 does not shake and splash outwards when the opening and closing clamping piece moves.
In order to increase the coefficient of friction during clamping, the clamping surface 44 is provided with cleats 45. The surface of the anti-slip strip 45 facing the gravity center side of the installation bottom plate 10 is provided with concave-convex edges in the whole range so as to achieve a further anti-slip effect.
The synchronization maintaining mechanism 50 includes a gear 60 installed at the center of gravity of the installation base plate 10, and two racks 70 engaged with the gear 60 and arranged in parallel with each other; the two racks 70 and the two sets of slide rail assemblies 20 are parallel to each other, and the two racks 70 are respectively connected to the sliding bottom plate 30 on one side of each through bolts.
The operation principle is as follows:
as shown in fig. 3 and 4, the synchronous holding mechanism 50 is configured such that two racks 70 are respectively connected to the sliding bottom plates 30 on different sides by using the meshing synchronization effect of one gear 60 and two racks 70, and when the driving cylinders 80 on both sides are simultaneously driven, the simultaneous driving can only be theoretically simultaneous driving, and there is a real sequential error, at this time, since the synchronous maintaining mechanism 50 connected between the sliding bottom plates 30 is in a gear engagement relationship, the two racks 70 are respectively moved in different directions by the same distance in the gear engagement relationship when the gear 60 is rotated, therefore, the error of the synchronization of the two side driving cylinders 80 can be eliminated, namely, even if only one side driving cylinder 80 is driven, the same displacement of the two side sliding bottom plates 30 can be kept, therefore, the clamping of the opening and closing clamping piece 40 to the milk bottle turnover clamp at the same position can be realized by combining the sensing of the infrared sensing probe 90.
The specific embodiments described herein are merely illustrative of the spirit of the utility model. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the utility model as defined in the appended claims.

Claims (8)

1. The synchronous clamping assembly for bottled milk production is characterized by comprising an installation base plate (10), wherein two groups of sliding rail kits (20) are respectively and oppositely arranged on two sides of the gravity center of the installation base plate (10) in the length direction, sliding base plates (30) for connecting the sliding rail kits (20) on the same side are respectively arranged on the upper parts of the two groups of sliding rail kits (20), opening and closing clamping members (40) are respectively and oppositely arranged on the upper parts of the two sliding base plates (30), driving cylinders (80) are respectively arranged on the installation base plate (10) on one side of the two sliding base plates (30), and a synchronous retaining mechanism (50) is arranged at the gravity center of the installation base plate (10); the free end of the piston in the driving cylinder (80) is connected with the lower part of the sliding bottom plate (30).
2. Synchronous clamping assembly for the production of bottled milk according to claim 1, wherein said synchronous retention means (50) comprise a gear (60) mounted at the centre of gravity of the mounting base (10), two racks (70) engaged with the gear (60) and arranged parallel to each other; the two racks (70) and the two sets of sliding rail external members (20) are arranged in parallel, and the two racks (70) are respectively connected with the sliding bottom plates (30) on one side of each rack through bolts.
3. Synchronous clamping assembly for bottled milk production according to claim 1, wherein said opening and closing clamping element (40) is entirely folded in the plane of a plate, comprising: the mounting surface (41), a support surface (42) perpendicular to the mounting surface (41), an extension surface (43) perpendicular to the support surface (42), and a clamping surface (44) perpendicular to the extension surface (43).
4. Synchronous clamping assembly for the production of bottled milk according to claim 3, characterised in that said clamping surface (44) is provided with anti-slip strips (45).
5. Synchronous clamping assembly for the production of bottled milk according to claim 4, wherein said antislip strip (45) is provided with a concave and convex ridge on one side towards the centre of gravity of the mounting base (10).
6. Synchronous clamping assembly for the production of bottled milk according to claim 3, characterised in that said extended surface (43) is provided with a water collection sump (46) on the side close to the clamping surface (44).
7. Synchronous clamping assembly for the production of bottled milk according to claim 6, characterised in that in said water collection sump (46) there are provided absorbent cottons.
8. Synchronous clamping assembly for the production of bottled milk according to claim 3, characterised in that said support surface (42) is provided with an escape mouth (47).
CN202122508318.9U 2021-10-18 2021-10-18 Synchronous clamping assembly for bottled milk production Active CN216072043U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122508318.9U CN216072043U (en) 2021-10-18 2021-10-18 Synchronous clamping assembly for bottled milk production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122508318.9U CN216072043U (en) 2021-10-18 2021-10-18 Synchronous clamping assembly for bottled milk production

Publications (1)

Publication Number Publication Date
CN216072043U true CN216072043U (en) 2022-03-18

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ID=80639925

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122508318.9U Active CN216072043U (en) 2021-10-18 2021-10-18 Synchronous clamping assembly for bottled milk production

Country Status (1)

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CN (1) CN216072043U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114803007A (en) * 2022-04-08 2022-07-29 鹤壁李子园食品有限公司 Milk product packing box bundling production line
CN114802915A (en) * 2022-04-08 2022-07-29 鹤壁李子园食品有限公司 Combined delivery device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114803007A (en) * 2022-04-08 2022-07-29 鹤壁李子园食品有限公司 Milk product packing box bundling production line
CN114802915A (en) * 2022-04-08 2022-07-29 鹤壁李子园食品有限公司 Combined delivery device
CN114802915B (en) * 2022-04-08 2023-12-01 鹤壁李子园食品有限公司 Combined distribution device
CN114803007B (en) * 2022-04-08 2023-12-05 鹤壁李子园食品有限公司 Milk product packing box binding assembly line

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