CN215044368U - Unloader for filling machine - Google Patents

Unloader for filling machine Download PDF

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Publication number
CN215044368U
CN215044368U CN202120992930.5U CN202120992930U CN215044368U CN 215044368 U CN215044368 U CN 215044368U CN 202120992930 U CN202120992930 U CN 202120992930U CN 215044368 U CN215044368 U CN 215044368U
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China
Prior art keywords
slide
filling machine
milk
unloading
conveyer belt
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Active
Application number
CN202120992930.5U
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Chinese (zh)
Inventor
王伟
孙丽燕
陈广宇
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Changzhou Toli Electromechanical Equipment Co.,Ltd.
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Jinan Daofeng Food Co ltd
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Abstract

The utility model relates to a technical field of liquid filling machine discloses a unloader for liquid filling machine, and it includes unloading slide and supporting component, and the one end setting of unloading slide is contradicted in the bottom of first slide and with first slide, and the other end setting of unloading slide is contradicted at the top of conveyer belt and with the conveyer belt, and supporting component is used for supporting the unloading slide. This application is through setting up unloading slide and supporting component, and the liquid filling machine is accomplished the milk filling back, and milk in bags gets into the unloading slide along first slide, makes milk in bags then continue to move along the unloading slide, and this in-process reduces milk in bags and takes place the condition of sack impact under the effect of self gravity, and then the easy condition of blasting of milk in bags takes place when reducing the liquid filling machine unloading.

Description

Unloader for filling machine
Technical Field
The application relates to the field of filling machines, in particular to a blanking device for a filling machine.
Background
A filling machine is a device used to fill a substance. Filling machines play an important role in milk production companies, and are often used for filling milk.
In the related art, referring to fig. 1, the filling machine includes a filling machine body 100, a first slideway 110 and a second slideway 120, wherein one end of the first slideway 110 is disposed on the filling machine body 100, the other end of the first slideway 110 is disposed obliquely downward, one end of the second slideway 120 is disposed at the bottom of the lower end of the first slideway 110, the other end of the second slideway 120 is disposed obliquely downward, and the second slideway 120 is fixedly connected to the filling machine body 100. When the filling machine is used, the conveyor belt 200 needs to be installed on one side of the filling machine body 100 in a matching manner, so that the lower end of the second slideway 120 relative to the conveyor belt 200 is located at the top of the conveyor belt 200, the bagged milk filled by the filling machine body 100 falls on the first slideway 110, the bagged milk falling on the first slideway 110 slides along the inclination direction of the first slideway 110, the bagged milk then slides onto the second slideway 120, the bagged milk on the second slideway 120 slides onto the conveyor belt 200 along the inclination direction of the second slideway 120, and finally the conveyor belt 200 transports the bagged milk.
In view of the above-mentioned related technologies, the inventor believes that, because a height difference exists between a lower end of a relative position of the first slideway and a higher end of a relative position of the second slideway, and a height difference exists between a lower end of a relative position of the second slideway and the conveyor belt, in a process of blanking the bagged milk by the filling machine, the bagged milk impacts a bag containing the milk under the action of self gravity, and further the bagged milk has a defect of easy explosion.
SUMMERY OF THE UTILITY MODEL
In order to alleviate the easy problem that explodes that appears of milk in bags when liquid filling machine unloading, this application provides a unloader for liquid filling machine.
The application provides a pair of unloader for filling machine adopts following technical scheme:
the utility model provides a unloader for filling machine, includes unloading slide and supporting component, the one end setting of unloading slide is contradicted in the bottom of first slide and with first slide, the other end setting of unloading slide is contradicted at the top of conveyer belt and with the conveyer belt, supporting component is used for supporting the unloading slide.
Through adopting above-mentioned technical scheme, the liquid filling machine accomplishes the back to the milk filling, milk falls on first slide in bags, milk slides along first slide in bags, make milk in bags move to the unloading slide on then, milk in bags continues along the motion of unloading slide, finally make milk in bags move to the conveyer belt, the milk in bags that moves to on the conveyer belt continues to be conveyed by the conveyer belt, in the motion process of milk in bags, the impact of milk self gravity in bags to the sack has been reduced, and then the easy condition of blasting of milk in bags takes place when reducing the liquid filling machine unloading.
Optionally, one end of the discharging slideway, which is close to the first slideway, is bent towards the first slideway, and one end of the discharging slideway, which is close to the conveying belt, is bent towards the direction in which the conveying belt conveys the bagged milk.
Through adopting above-mentioned technical scheme, when the liquid filling machine carries out the unloading to milk in bags, milk in bags moved along the unloading slide, made crooked respectively with the both ends of unloading slide, can reduce milk in bags on the one hand and appear the circumstances of jamming and take place in the slip in-process, on the other hand reduces the kinetic energy loss of milk in bags motion in-process, can also reduce the circumstances that milk in bags moved out the conveyer belt and take place.
Optionally, the both sides of unloading slide all are provided with the engaging lug, supporting component sets up the bottom at the unloading slide, supporting component includes bottom plate and two spinal branch vaulting poles, two the bracing piece all with bottom plate fixed connection, one the bracing piece sets up on the engaging lug, another the bracing piece sets up on another engaging lug.
Through adopting above-mentioned technical scheme, with unloader installation back to the filling machine on, two spinal branch vaulting poles support the engaging lug of unloading slide both sides respectively, and the bottom plate supports the bracing piece, and then increases the stability of unloading slide, and the condition emergence of unloading slide and liquid filling machine separation when reducing milk in bags when moving on the unloading slide.
Optionally, every the bracing piece all includes stay tube and threaded rod, the threaded rod sets up with the bracing piece is coaxial, the one end screw thread of threaded rod penetrates in the stay tube, the one end and the bottom plate fixed connection of threaded rod are kept away from to the stay tube, the one end that the stay tube was kept away from to the threaded rod rotates with the engaging lug that corresponds and is connected.
Through adopting the above-mentioned technical scheme, when installing unloader, place the position of unloading slide earlier, make the one end of unloading slide be located the bottom of first slide and conflict with first slide simultaneously, the other end of unloading slide is located the top of conveyer belt and conflicts with the conveyer belt, then rotate two threaded rods simultaneously, two threaded rods take place relative rotation with the engaging lug that corresponds respectively, the threaded rod takes place relative rotation with the stay tube, then make the bottom plate orientation keep away from the direction motion of unloading slide, thereby make bottom plate and ground conflict, can make things convenient for the staff to adjust the unloading slide on the one hand, on the other hand can increase the stability of supporting component when supporting the unloading slide.
Optionally, one end of the discharging slide way close to the conveying belt is provided with a rolling assembly, and the discharging slide way is abutted to the top of the conveying belt through the rolling assembly.
Through adopting above-mentioned technical scheme, with the back on the unloading slide is installed to the liquid filling machine, the one end of unloading slide is contradicted with the conveyer belt through rolling the subassembly, and the conveyer belt during operation, rolling subassembly and conveyer belt take place relative roll to reduce the frictional force between unloading slide and the conveyer belt, reduce the damage of unloading slide to the conveyer belt, and then reach the purpose that increases conveyer belt life.
Optionally, a notch is formed in one end, close to the conveyor belt, of the blanking slide, the rolling assembly comprises a rotating shaft and a rotating pipe, the rotating shaft is parallel to the top of the conveyor belt and is arranged, the rotating pipe is coaxially sleeved outside the rotating shaft, the rotating shaft is fixedly connected with the notch, and the rotating pipe is abutted to the conveyor belt.
Through adopting above-mentioned technical scheme, when the conveyer belt moved, the rotating tube took place relative roll with the conveyer belt, and the rotating tube took place relative rotation with the axis of rotation to reduce the frictional force between unloading slide and the conveyer belt, and then reach the purpose that increases conveyer belt life.
Optionally, one end of the discharging slideway, which is close to the conveyor belt, is provided with a limiting component, and the limiting component is used for limiting the motion of the bagged milk.
Through adopting above-mentioned technical scheme, when the bagging-off milk moved to the conveyer belt along unloading slide, the one side motion of bagging-off milk towards the conveyer belt under self inertial effect, spacing subassembly was spacing to the motion of bagging-off milk this moment, and then the condition that reduces bagging-off milk and conveyer belt separation takes place.
Optionally, the limiting assembly comprises two limiting strips, the two limiting strips are arranged in a direction parallel to the conveying direction of the conveying belt for conveying the bagged milk, one limiting strip is arranged on one side of the discharging slideway, the other limiting strip is arranged on the other side of the discharging slideway, and the two limiting strips are arranged on the conveying belt.
Through adopting above-mentioned technical scheme, behind the bagging-off milk moved to the conveyer belt along the unloading slide, the spacing that is located unloading slide both sides carries on spacingly to the milk in bags, makes the clearance of milk in bags between two spacing strips to pass through then, and then reduces the condition emergence that the milk in bags moved out the conveyer belt under self inertial action.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the blanking slide way and the supporting component, one end of the blanking slide way is arranged at the bottom of the first slide way and is abutted against the first slide way, the other end of the blanking slide way is arranged at the top of the conveyor belt and is abutted against the conveyor belt, the supporting component supports the blanking slide way, and after the filling machine finishes the milk filling, the bagged milk enters the blanking slide way along the first slide way, so that the bagged milk continues to move along the blanking slide way, the impact of the bagged milk on bags under the action of self gravity is reduced in the process, and the easy explosion of the bagged milk during the blanking of the filling machine is reduced;
2. one end of the blanking slideway is bent towards the first slideway, and the other end of the blanking slideway is bent towards the conveying direction of the conveying belt for conveying the bagged milk, so that the kinetic energy loss in the movement process of the bagged milk can be reduced, and the condition that the bagged milk moves out of the conveying belt is reduced;
3. through setting up spacing subassembly, when milk in bags moved to the conveyer belt through the unloading slide on, spacing subassembly was spacing to the motion of milk in bags to the condition that the milk in bags moved out of the conveyer belt is reduced takes place.
Drawings
Fig. 1 is a schematic view of a structure of a filling machine in the related art;
FIG. 2 is a schematic structural diagram of a blanking device mounted on a filling machine according to an embodiment of the present application;
FIG. 3 is a schematic structural diagram of a support assembly in a blanking device according to an embodiment of the present application;
FIG. 4 is a schematic structural diagram of a blanking chute in the blanking device in the embodiment of the present application;
FIG. 5 is an enlarged view of portion A of FIG. 4;
fig. 6 is a schematic structural diagram of another view angle of the blanking device installed on the filling machine according to the embodiment of the present application;
fig. 7 is an enlarged view of a portion B in fig. 6.
Description of reference numerals: 100. a filling machine body; 110. a first slideway; 120. a second slideway; 200. a conveyor belt; 210. connecting sheets; 300. a blanking slideway; 310. connecting lugs; 320. a notch; 400. a support assembly; 410. a base plate; 420. a support bar; 421. supporting a tube; 422. a threaded rod; 423. a stopper; 500. a rolling component; 510. a rotating shaft; 520. rotating the tube; 600. a limiting component; 610. a limiting strip; 611. a T-shaped groove; 612. a bolt; 613. and a nut.
Detailed Description
The present application is described in further detail below with reference to figures 2-7.
The embodiment of the application discloses unloader for filling machine.
Referring to fig. 2, the blanking device for the filling machine includes a blanking chute 300 and a support assembly 400, wherein one end of the blanking chute 300 is disposed at the bottom of the first chute 110 and is abutted against the first chute 110, and the other end of the blanking chute 300 is disposed at the top of the conveyor belt 200 and is abutted against the top of the conveyor belt 200. After the blanking device is mounted on the filling machine, the support assembly 400 supports the blanking chute 300.
When the filling machine is used for feeding, the bagged milk moves to the first slide rail 110, the bagged milk moves to the feeding slide rail 300 along the first slide rail 110, the bagged milk on the feeding slide rail 300 finally moves to the conveyor belt 200, and the conveyor belt 200 transports the bagged milk.
In order to reduce the possibility of jamming when the bagged milk moves along the discharging chute 300, one end of the discharging chute 300 close to the first chute 110 is bent towards the direction of the first chute 110, and one end of the discharging chute 300 close to the conveyor belt 200 is bent towards the direction of conveying the bagged milk by the conveyor belt 200. When the filling machine feeds the bagged milk, the bagged milk moves along the bending direction of the feeding slideway 300, and because both ends of the feeding slideway 300 are arranged in a bending way, the situation that the bagged milk is blocked with the feeding slideway 300 can be reduced in the process that the bagged milk moves along the feeding slideway 300.
Referring to fig. 2 and 3, the two sides of the blanking chute 300 are both provided with a connecting lug 310, the two connecting lugs 310 are both horizontally arranged, and each connecting lug 310 is fixedly connected with the blanking chute 300. The support assembly 400 includes a bottom plate 410 and two support rods 420, and the two support rods 420 are spaced apart in parallel. Two support rods 420 are fixedly connected with the bottom plate 410, one support rod 420 is positioned at one side of the blanking slideway 300, and the other support rod 420 is positioned at the other side of the blanking slideway 300. One support rod 420 is arranged corresponding to one of the connection lugs 310, and one end of the support rod 420 far away from the bottom plate 410 is rotatably connected with the corresponding connection lug 310. After the supporting assembly 400 is installed, the bottom plate 410 supports the supporting rod 420, and the supporting rod 420 supports the connecting lug 310, so that the blanking chute 300 is kept in a stable state.
Each support rod 420 comprises a support tube 421 and a threaded rod 422, and an internal thread is opened in the support tube 421. The threaded rod 422 is disposed coaxially with the support tube 421, and one end of the threaded rod 422 is threaded into the support tube 421. The end of the support tube 421 away from the threaded rod 422 is fixedly connected to the bottom plate 410. The engaging lug 310 is provided with a hole for the threaded rod 422 to pass through, and one end of the threaded rod 422 far away from the support tube 421 passes through the hole on the engaging lug 310. Two stoppers 423 are fixedly connected to the threaded rod 422, one stopper 423 is located on one side of the engaging lug 310, and the other stopper 423 is located on the other side of the engaging lug 310.
When installing unloading slide 300, place the bottom at first slide 110 with the one end of unloading slide 300 earlier, the other end of unloading slide 300 is placed on conveyer belt 200, rotates threaded rod 422 again, and threaded rod 422 takes place relative rotation with engaging lug 310, and threaded rod 422 takes place relative rotation with stay tube 421 simultaneously, and bottom plate 410 moves towards the direction at ground place to make bottom plate 410 contradict with ground, and then make bottom plate 410 support bracing piece 420.
Referring to fig. 2, 4 and 5, in order to increase the service life of the conveyor belt 200, a notch 320 is formed at one end of the blanking chute 300 close to the conveyor belt 200, a rolling assembly 500 is arranged in the notch 320, and the blanking chute 300 abuts against the conveyor belt 200 through the rolling assembly 500. The rolling assembly 500 includes a rotating shaft 510 and a rotating pipe 520, the rotating shaft 510 is coaxially sleeved in the rotating pipe 520, and the rotating shaft 510 is disposed parallel to the top of the conveyor belt 200. One end of the rotating shaft 510 is fixedly connected with one side of the notch 320, and the other end of the rotating shaft 510 is fixedly connected with the other side of the notch 320.
When the conveyor belt 200 works, the rotating pipe 520 and the conveyor belt 200 roll relatively, so that the friction between the blanking slide way 300 and the conveyor belt 200 is reduced, the damage of the blanking slide way 300 to the conveyor belt 200 is reduced, and the purpose of prolonging the service life of the conveyor belt 200 is finally achieved.
Referring to fig. 6 and 7, a limiting assembly 600 is arranged at one end of the blanking chute 300 close to the conveyor belt 200, the limiting assembly 600 comprises two limiting strips 610, and the two limiting strips 610 are both arranged in parallel to the direction in which the conveyor belt 200 conveys the bagged milk. One limiting strip 610 is arranged on one side of the blanking slide 300, and the other limiting strip 610 is arranged on the other side of the blanking slide 300. Both stop strips 610 are detachably connected to the edge beams of the conveyor belt 200. The bagged milk sliding down from the discharging slideway 300 moves onto the conveyor belt 200, and the limiting strips 610 on the conveyor belt 200 block the bagged milk, so that the situation that the bagged milk moves out of the conveyor belt 200 under the self inertia is reduced.
T-shaped grooves 611 are formed in the side faces, away from each other, of the two limiting strips 610, and the forming direction of the T-shaped grooves 611 is parallel to the length direction of the limiting strips 610. A plurality of bolts 612 are arranged in each T-shaped groove 611, the bolt heads of the bolts 612 are slidably connected in the T-shaped grooves 611, one ends of the bolts 612 far away from the bolt heads penetrate through the T-shaped grooves 611, and two nuts 613 are threadedly connected to each bolt 612. The edge beams at two sides of the conveyor belt 200 are fixedly connected with a plurality of connecting pieces 210, and the connecting pieces 210 are vertically arranged. One of the coupling pieces 210 is disposed corresponding to one of the bolts 612, and an end of the bolt 612 remote from the bolt head passes through the corresponding coupling piece 210. And one nut 613 on the same bolt 612 is located on one side of the attachment piece 210, another nut 613 on the same bolt 612 is located on the other side of the attachment piece 210, and the two nuts 613 clamp the attachment piece 210.
Through set up T type groove 611 on spacing strip 610 to set up bolt 612 in T type groove 611, both can realize adjusting the interval between two spacing strips 610, can realize again that two spacing strips 610 and the relative position between unloading slide 300 adjust, and then increase the flexibility between two spacing strips 610.
The implementation principle of the blanking device for the filling machine is as follows: when the filling machine feeds the bagged milk, the bagged milk firstly falls on the first slideway 110, and then the bagged milk moves along the first slideway 110. The bagged milk moving along the first chute 110 moves to the discharging chute 300, and the bagged milk continues to move along the discharging chute 300, so that the bagged milk on the discharging chute 300 moves to the conveyor belt 200. The bagged milk moving to the conveyor belt 200 is blocked by the limiting strip 610, so that the situation that the bagged milk moves to the outside of the conveyor belt 200 is reduced. The impact of the bagged milk on the bag under the self gravity is reduced in the process of the bag-packed milk sliding, and finally the explosion of the bagged milk is reduced.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a unloader for filling machine which characterized in that: including unloading slide (300) and supporting component (400), the one end setting of unloading slide (300) is in the bottom of first slide (110) and contradicts with first slide (110), the other end setting of unloading slide (300) is at the top of conveyer belt (200) and contradicts with conveyer belt (200), supporting component (400) are used for supporting unloading slide (300).
2. The blanking device for the filling machine as claimed in claim 1, wherein: one end, close to the first slide (110), of the blanking slide (300) is arranged in a bending mode towards the first slide (110), and one end, close to the conveyor belt (200), of the blanking slide (300) is arranged in a bending mode towards the direction in which the conveyor belt (200) conveys bagged milk.
3. The blanking device for the filling machine as claimed in claim 1, wherein: the both sides of unloading slide (300) all are provided with engaging lug (310), supporting component (400) set up the bottom at unloading slide (300), supporting component (400) include bottom plate (410) and two spinal branch vaulting poles (420), two bracing piece (420) all with bottom plate (410) fixed connection, one bracing piece (420) set up on an engaging lug (310), another bracing piece (420) set up on another engaging lug (310).
4. The blanking device for the filling machine as claimed in claim 3, wherein: every bracing piece (420) all includes stay tube (421) and threaded rod (422), threaded rod (422) and stay tube (421) coaxial arrangement, the one end screw thread of threaded rod (422) penetrates in stay tube (421), the one end and bottom plate (410) fixed connection of threaded rod (422) are kept away from in stay tube (421), the one end that stay tube (421) were kept away from in threaded rod (422) rotates with engaging lug (310) that corresponds and is connected.
5. The blanking device for the filling machine as claimed in claim 1, wherein: one end of the blanking slideway (300) close to the conveyor belt (200) is provided with a rolling assembly (500), and the blanking slideway (300) is abutted against the top of the conveyor belt (200) through the rolling assembly (500).
6. The blanking device for the filling machine as claimed in claim 5, wherein: breach (320) are seted up to the one end that unloading slide (300) are close to conveyer belt (200), rolling subassembly (500) include axis of rotation (510) and rotating tube (520), axis of rotation (510) are on a parallel with the top setting of conveyer belt (200), the outside at axis of rotation (510) is established to rotating tube (520) coaxial cover, fixed connection is located with breach (320) in axis of rotation (510), rotating tube (520) are contradicted with conveyer belt (200).
7. The blanking device for the filling machine as claimed in claim 1, wherein: one end, close to the conveyor belt (200), of the discharging slide way (300) is provided with a limiting assembly (600), and the limiting assembly (600) is used for limiting the movement of the bagged milk.
8. The blanking device for the filling machine as claimed in claim 7, wherein: spacing subassembly (600) includes two spacing strips (610), two spacing strip (610) all are on a parallel with the direction setting of conveyer belt (200) conveying milk in bags, one spacing strip (610) set up the one side at unloading slide (300), another spacing strip (610) set up the opposite side at unloading slide (300), two spacing strip (610) all set up on conveyer belt (200).
CN202120992930.5U 2021-05-10 2021-05-10 Unloader for filling machine Active CN215044368U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120992930.5U CN215044368U (en) 2021-05-10 2021-05-10 Unloader for filling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120992930.5U CN215044368U (en) 2021-05-10 2021-05-10 Unloader for filling machine

Publications (1)

Publication Number Publication Date
CN215044368U true CN215044368U (en) 2021-12-07

Family

ID=79198462

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120992930.5U Active CN215044368U (en) 2021-05-10 2021-05-10 Unloader for filling machine

Country Status (1)

Country Link
CN (1) CN215044368U (en)

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GR01 Patent grant
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TR01 Transfer of patent right

Effective date of registration: 20240617

Address after: No. 102 Zhenxing Road, Anjia Industrial Park, Chunjiang Town, Xinbei District, Changzhou City, Jiangsu Province, 213000

Patentee after: Changzhou Toli Electromechanical Equipment Co.,Ltd.

Country or region after: China

Address before: 250400 No. 77, Shanshui Road, East Industrial New Town, Pingyin County, Jinan City, Shandong Province

Patentee before: Jinan Daofeng Food Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right