Lifting type sausage stacking device

By designing a lifting sausage stacking device, the automatic stacking of sausages is achieved through a lifting mechanism and transmission components, which solves the problem of poor stacking effect of existing equipment, improves production efficiency and cleanliness, and reduces the need for manual labor.

CN223672941UActive Publication Date: 2025-12-16ZIBO AIKETE DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202520170047.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-12-16
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Existing sausage stacking equipment is not suitable for the size and shape of sausages, resulting in poor stacking effect, requiring manual intervention, and affecting production efficiency and cleanliness.

Method used

Design a lifting sausage stacking device to achieve automatic sausage stacking using a lifting mechanism and transmission components. The device includes a feeding plate, stacking components, lifting frame, storage plate and transmission components. The lifting of the storage plate is controlled by a power rotation mechanism and a crank-connecting rod mechanism. With the help of a material side baffle component and a stacking push component, the automatic stacking of sausages is achieved.

Benefits of technology

It achieves automated stacking of sausages, reduces manual intervention, improves production efficiency, ensures cleanliness and quality, has a simple structure, occupies a small area, and is cost-effective.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lifting type sausage stacking device, which belongs to the technical field of material packaging, comprises a machine frame and a base fixedly arranged on the machine frame, and is characterized in that a feeding plate is arranged on the machine frame, the front end of the feeding plate is connected with a first vertical baffle plate which extends downwards, the front end of the first vertical baffle plate is provided with a stacking assembly, and the stacking assembly is connected with the base. The stacking assembly comprises a second vertical baffle fixed to the base, a lifting frame is further installed on the base, the lifting frame is connected with a first lifting mechanism, an object placing plate is fixed to the lifting frame, the object placing plate is located between the first vertical baffle and the second vertical baffle, and the object placing plate can be flush with the feeding plate. According to the device, the feeding plate is arranged, the storage plate is arranged between the first vertical baffle and the second vertical baffle, after sausages are pushed into the storage plate, the lifting mechanism connected with the storage plate drives the storage plate and the sausages on the bottom layer to move downwards, the sausages are pushed onto the sausages on the bottom layer, and automatic stacking of the sausages can be achieved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to material packaging technical field, concretely relates to a lifting type sausage layering device. BACKGROUND

[0002] In the production process of sausage, a certain number of sausages are often stacked into two or more layers, and then enter the next packaging process. At present, most of the layering devices on the market are not suitable for the size and shape of sausages, which leads to the inability to use or poor layering effect, and thus often requires manual intervention, which cannot guarantee the production efficiency and causes waste of labor, and may also affect the cleanliness and quality of sausages.

[0003] Therefore, the applicant wants to design a simple structure and easy to implement layering mechanism that can automatically layer sausages. SUMMARY

[0004] The utility model discloses a lifting type sausage layering device which is simple in structure and easy to implement, and can automatically layer sausages.

[0005] The utility model discloses a lifting type sausage layering device, which comprises a rack and a base fixedly installed on the rack, a feeding plate is installed on the rack, a first vertical baffle extending downward is connected to the front end of the feeding plate, a layering assembly is arranged at the front end of the first vertical baffle, the layering assembly comprises a second vertical baffle fixedly installed on the base, a lifting frame is also installed on the base, the lifting frame is connected to a first lifting mechanism, a storage plate is fixedly installed on the lifting frame, the storage plate is located between the first vertical baffle and the second vertical baffle, and the storage plate is flush with the feeding plate.

[0006] Further, the first lifting mechanism comprises a power rotating mechanism and a transmission assembly connected to the power rotating mechanism, and the transmission assembly is connected to the lifting frame at the end.

[0007] Further, the lifting frame comprises a lifting vertical plate arranged below the storage plate, and the transmission assembly is connected to the lifting vertical plate at the end.

[0008] Further, a vertical guide rail is fixedly arranged on the base, a lifting mounting plate is fixedly arranged on the lifting vertical plate, and the lifting mounting plate is slidingly installed on the vertical guide rail.

[0009] Further, the transmission assembly is a crank connecting rod mechanism, the crank connecting rod mechanism comprises a first connecting rod, a second connecting rod and a third connecting rod, the first connecting rod is fixedly installed on the rotating shaft of the power rotating mechanism, a guide shaft is arranged at the end of the first connecting rod, a guide groove is arranged at one end of the second connecting rod, the guide shaft is arranged in the guide groove, the other end of the second connecting rod is hingedly installed on the base, one end of the third connecting rod is hingedly installed on the second connecting rod, and the other end of the third connecting rod is hingedly installed on the lifting mounting plate.

[0010] Further, the first vertical baffle rear end is fixed with an inlet extension plate, the inlet extension plate is arranged in close contact with the inlet plate, the first vertical baffle and the inlet extension plate jointly constitute a movable connecting piece, and the movable connecting piece can be pulled out relative to the inlet plate.

[0011] Further, the first vertical baffle rear end is fixed with an inlet extension plate, the inlet extension plate is arranged in close contact with the inlet plate, the first vertical baffle and the inlet extension plate jointly constitute a movable connecting piece, and the movable connecting piece can be pulled out relative to the inlet plate.

[0012] Further, the first vertical baffle rear end is fixed with an inlet extension plate, the inlet extension plate is arranged in close contact with the inlet plate, the first vertical baffle and the inlet extension plate jointly constitute a movable connecting piece, and the movable connecting piece can be pulled out relative to the inlet plate.

[0013] Further, the first vertical baffle rear end is fixed with an inlet extension plate, the inlet extension plate is arranged in close contact with the inlet plate, the first vertical baffle and the inlet extension plate jointly constitute a movable connecting piece, and the movable connecting piece can be pulled out relative to the inlet plate.

[0014] Further, the first vertical baffle rear end is fixed with an inlet extension plate, the inlet extension plate is arranged in close contact with the inlet plate, the first vertical baffle and the inlet extension plate jointly constitute a movable connecting piece, and the movable connecting piece can be pulled out relative to the inlet plate.

[0015] Optionally, the horizontal moving mechanism is a linear module, the linear module is driven by a motor, and the linear module has a sliding seat, and the push rod is connected to the sliding seat.

[0016] Optionally, the horizontal moving mechanism is a linear module, the linear module is driven by a motor, and the linear module has a sliding seat, and the push rod is connected to the sliding seat.

[0017] Compared with the prior art, the beneficial effects of the present application are:

[0018] 1. The utility model discloses a feeding plate and a laminating assembly are set up on the rack, the laminating assembly sets up the lifting frame of connecting first lifting mechanism, sets up the thing plate on the lifting frame, the thing plate can be flush with the feeding plate, the sausage on the feeding plate can be pushed into the thing plate forward, when the sausage of bottom layer is full and is lowered through the lifting mechanism and drives the thing plate on the lifting frame and bottom layer sausage, the sausage on the feeding plate is pushed to the upper portion of bottom layer sausage, thereby realizes the automatic lamination of sausage.

[0019] 2, first lifting mechanism sets up as the power rotary mechanism of installing on the base and the transmission assembly of connecting power rotary mechanism, the transmission assembly end connects the lifting frame, can convert the rotary motion of power rotary mechanism into the lifting motion of lifting frame, is convenient for control, and the cost performance is high.

[0020] 3, through setting up the lifting vertical board below the thing plate, the transmission assembly end is coupled lifting vertical board, is convenient for realizing the lifting of lifting frame, simple structure.

[0021] 4, through fixing and installing vertical guide rail on the base, lifting installation plate is fixedly arranged on the lifting vertical board, and the lifting installation plate is slidably installed on the vertical guide rail, can restrain the lifting direction of lifting frame, simple structure, convenient to realize.

[0022] 5, through the transmission assembly is the crank link mechanism, transmission is reliable, convenient to realize, and it is favorable to save the working space.

[0023] 6, through setting up the movable connecting piece, the movable connecting piece can be pulled relative to the feeding plate, and setting up the thing extension plate, the thing extension plate can be pulled relative to the fixed thing plate, thereby can adjust the length of feeding plate and thing plate to adapt to the sausage number of different sizes of packaging bag required to be packed.

[0024] 7, through setting up the screw of connecting first vertical baffle and second vertical baffle to adjust the front and back positions of movable connecting piece, convenient to realize, easy to operate.

[0025] 8, through setting up the material side stop assembly above the thing plate, the lifting mechanism of material side stop vertical board connection, can adjust the height of material side stop vertical board in side stop assembly, and the material side stop vertical board can limit the motion of sausage left and right direction, prevent the left and right slide of sausage in the process of lamination, due to the push of front and back and the slip between sausage.

[0026] 9, because the material side stop vertical board is divided into side fixed vertical baffle and side floating vertical baffle, the position of side floating baffle can be adjusted through the long strip-shaped mounting hole, so that the sausage of different lengths can be side stopped, and the motion of left and right direction is better constrained.

[0027] 10, through setting up the post-lamination pushing assembly on the rack, can push the sausage after lamination to the next station to carry out the next round of lamination process.

[0028] 11、Due to the horizontal moving mechanism of the post-stacking pushing assembly is set as a linear module, the technology is mature, the precision is high, and the floor space is small.

[0029] 12、Due to the optical axis is set, the front and back positions of the object extension plate can be adjusted more conveniently.

[0030] 13、The utility model discloses clever design, realizes the automatic layering of sausage through using the lifting mechanism, and the structure is relatively simple, and the floor space is smaller, saves the manual work, and it is worth promoting and using in the industry. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0032] Figure 2 It is the A view in Figure 1

[0033] Figure 3 It is the enlarged view of partial I in Figure 1 (not showing the rack and left and right guard plates);

[0034] Figure 4 It is the B-B section view in Figure 2 (not showing the rack);

[0035] Figure 5 It is the C-C section view in Figure 2 (not showing the rack).

[0036] ​The components in the diagram are labeled as follows: 1. Frame; 2. Base; 3. Feed plate; 31. Movable support plate; 32. Movable connector; 321. Feed extension plate; 322. First vertical baffle; 323. Lead screw; 324. Handwheel; 4. Stacking assembly; 41. Second vertical baffle; 411. Limit nut; 42. Lifting frame; 421. Lifting vertical plate; 423. Lifting mounting plate; 424. Slider; 425. Vertical guide rail; 426. Rail mounting base; 427. Vertical slot. 43. Shelf; 431. Fixed shelf; 432. Extended shelf; 433. Extended shelf; 434. Optical axis; 435. Linear bearing; 44. Transmission assembly; 441. First connecting rod; 442. Second connecting rod; 443. Third connecting rod; 444. First bearing; 445. Second bearing; 446. Third bearing; 447. Hinge joint; 448. Guide groove; 45. Material side guard assembly; 451. Floating side guard; 452. Lifting plate; 453. Dual-axis cylinder; 454. Fixed side guard; 455. Side guard mounting plate; 456. Cylinder mounting plate; 46. First servo motor; 47. Left and right guard plates; 58. Stacked pusher assembly; 51. Push shovel; 52. Push rod; 53. Lateral movement mechanism; 531. Second servo motor; 532. Linear module. Detailed Implementation

[0037] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0038] When in use, this utility model refers to the horizontal movement direction of the sausage from back to front as it enters the stacking assembly 4 from the feed plate 3. The downstream end of the sausage movement is defined as the front end, and the upstream end of the sausage movement is defined as the rear end. The direction perpendicular to the front and back is defined as the left and right direction. The end closer to the ground is defined as the bottom or lower end, and the other end farther from the ground is defined as the upper end or top end. The direction perpendicular to the ground is defined as vertical or vertical.

[0039] like Figure 1 , Figure 2 As shown, this utility model includes a frame 1, a base 2, a feed plate 3, and a stacking assembly 4.

[0040] Specifically, a feed plate 3 is installed on the frame 1. The feed plate 3 is used for feeding sausages. The rear end of the feed plate 3 can be connected to a pushing mechanism (not shown in the figure) that pushes the sausages forward. The pushing mechanism can be a pusher mechanism in the prior art, such as a pushing robot, or it can be disconnected and pushed manually. The sausages are pushed forward by the pushing mechanism or manually to the front end of the feed plate 3 and then enter the stacking assembly 4.

[0041] like Figures 1 to 5As shown, the rack 1 is provided with a base 2, and the laminated assembly 4 is arranged on the base 2. The laminated assembly 4 comprises a second vertical stop plate 41, a lifting frame 42, and a storage plate 43 fixedly arranged on the lifting frame 42. The top of the storage plate 43 is flush with the feeding plate 3. The lifting frame 42 is connected with the first servo motor 46 through a transmission assembly 44.

[0042] Specifically, the second vertical stop plate 41 is arranged at the front end of the laminated assembly 4, and is used for stopping the sausage and preventing the sausage from continuing to advance. The front end of the feeding plate 32 is provided with a first vertical stop plate 322. The first vertical stop plate 322 and the second vertical stop plate 41 are provided with the lifting frame 42. The lifting frame 42 comprises two lifting vertical plates 421 in left and right directions. The two lifting vertical plates 421 are arranged in front and back. The lifting vertical plates 421 are provided with the storage plate 43. The lifting frame 42 is provided with a lifting mounting plate 423. The lifting vertical plates 421 are fixedly arranged on the lifting mounting plate 423. The lifting mounting plate 423 is fixedly provided with two sliding blocks 424. The base 2 is fixedly provided with a rail mounting seat 426. The rail mounting seat 426 is fixedly provided with two vertical guide rails 425. The sliding blocks 424 and the vertical guide rails 425 are matched. The lifting mounting plate 423 is slidably arranged on the two vertical guide rails 425 through the two sliding blocks 424. The base 2 is fixedly provided with the first servo motor 46. The first servo motor 46 is connected with the lifting mounting plate 423 through the transmission assembly 44. The transmission assembly 44 converts the rotation of the first servo motor 46 into the lifting movement of the lifting mounting plate 423. The transmission assembly 44 comprises a first connecting rod 441 fixedly connected with the rotating shaft of the first servo motor 46, a second connecting rod 442, and a third connecting rod 443. The first connecting rod 441 is provided with a guide shaft at the end. In the embodiment, the guide shaft is provided as a first bearing 444. One end of the second connecting rod 442 is provided with a guide groove 448. The first bearing 444 is arranged in the guide groove 448. The base 2 is provided with a second bearing 445. The other end of the second connecting rod 442 is connected with the second bearing 445 and is hingedly connected with the base 2. The second connecting rod 442 is provided with a hinge joint 447. One end of the third connecting rod 443 is arranged on the hinge joint 447. The lifting mounting plate 423 is provided with a third bearing 446. The other end of the third connecting rod 443 is connected with the third bearing 446 and is hingedly connected with the lifting mounting plate 423. In this way, through the rotation of the first servo motor 46, the first connecting rod 441 is driven to rotate, and then the second connecting rod 442 and the third connecting rod 443 are driven to swing. The lifting mounting plate 423 arranged at the end of the third connecting rod 443 can be lifted up and down, so as to realize the lifting of the lifting frame 42.

[0043] Initially, the height of the storage plate 43 and the feeding plate 3 on the lifting frame 42 is basically the same. The sausages on the feeding plate 3 are pushed onto the storage plate 43 by the pushing mechanism or manually. When the storage plate 43 is full of sausages, the lifting frame 42 drives the layer of sausages to descend, and the sausages on the feeding plate 3 continue to be pushed onto the storage plate 43 and stacked on the bottom layer of sausages, so that the sausages on the storage plate 43 are stacked.

[0044] like Figure 3 , Figure 5 As shown, to accommodate different numbers of sausages on the shelf 43 and to accommodate different sizes of packaging, the shelf 43 is designed to be adjustable in length. Specifically, the shelf 43 includes a fixed shelf 431 and a shelf extension 432 that is fitted to the fixed shelf 431. The fixed shelf 431 is fixed to the lifting frame 42, and the shelf extension 432 can be pulled out relative to the fixed shelf 431. Both the fixed shelf 431 and the shelf extension 432 can be designed as U-shaped grooves with the opening facing downwards. The shelf extension 432 fits over the fixed shelf 431 to achieve its pull-out capability, or other structural forms can be used, as long as it allows for pull-out functionality. To facilitate adjustment, a storage extension plate 433 can be fixedly installed at the rear end of the storage extension plate 432. Two linear bearings 435 are installed on the lifting plate 421, and two forward and backward extending optical shafts 434 are installed on the linear bearings 435. One end of the optical shaft 434 is installed on the linear bearing 435 and passes through the lifting plate 421, and the other end is pushed against the storage extension plate 433. The forward and backward position of the storage extension plate 432 can be adjusted by adjusting the forward and backward position of the optical shaft 434, so as to adjust the length of the storage plate 42 more conveniently.

[0045] Since the shelf 43 is designed to be adjustable in length, the distance between the first upright baffle 322 and the second upright baffle 41 also needs to be adjusted accordingly. Specifically, as follows... Figure 3 , Figure 5 As shown, a feeding extension plate 321 is fixed to the rear end of the first upright baffle 322. The feeding extension plate 321 is fitted to the feeding plate 3. The first upright baffle 322 and the feeding extension plate 321 together form a movable connector 32. The movable connector 32 can be pulled out relative to the feeding plate 3. The pull-out structure can be implemented as follows: both the feeding plate 3 and the movable connector 32 are set in a U-shape with the opening facing downward, similar to the structure of a drawer. A movable support plate 31 extending along the front and rear is set on the feeding plate 3. The movable connector 32 is supported on the movable support plate 33, so that the movable connector 32 can be pulled out.

[0046] In order to make the activity of the connecting piece 32 more convenient, a screw rod 323 is arranged, a threaded hole is arranged on the first vertical stop plate 322, a limiting nut 411 is fixed on the second vertical stop plate 41, a through hole is arranged on the second vertical stop plate 41, the through hole is coaxially arranged with the limiting nut 411, the rear end of the screw rod 323 is arranged in the threaded hole, the front end of the screw rod 323 is arranged in the limiting nut 411, the front end of the screw rod 323 is provided with a hand wheel 324, and the hand wheel 324 is located in front of the second vertical stop plate 41. The front and rear positions of the connecting piece 32 can be adjusted by rotating the hand wheel 324. When adjustment is needed, the front and rear positions of the connecting piece 32 are adjusted by rotating the hand wheel 324, the front and rear positions of the optical shaft 434 are adjusted, the front and rear positions of the placing extension plate 432 are adjusted, the placing extension plate 432 is connected with the first vertical stop plate 322 and the fixed placing plate 431, the length of the placing plate 43 between the first vertical stop plate 322 and the second vertical stop plate 41 is adjusted, and thus different packages can be adapted.

[0047] The sausages in the laminated assembly 4 may slide due to the front and rear thrust, in order to limit the left and right movement of the sausages, as shown in Figure 3 、 Figure 4 、 Figure 5 a material side stop assembly 45 is further arranged above the placing plate 43. The material side stop assembly 45 comprises front and rear extending material side stop vertical plates, in the embodiment, two material side stop vertical plates are arranged, which are a side fixed stop vertical plate 454 and a side floating stop vertical plate 451, a second lifting mechanism is fixedly installed on the rack 1, the output end of the second lifting mechanism is connected with an upper lifting plate 452, and the material side stop vertical plates are installed on the upper lifting plate 452. Specifically, two cylinder installation plates 456 are fixedly installed on the rack 1, the second lifting mechanism is arranged as two double-shaft cylinders 453 installed on the two cylinder installation plates 456, the output ends of the two double-shaft cylinders 453 are connected with the upper lifting plate 452, the side fixed stop vertical plate 454 is fixedly installed on the upper lifting plate 452, the side floating stop vertical plate 451 is top-fixedly provided with a horizontally arranged side stop installation plate 455, the side stop installation plate 455 extends into the upper lifting plate 452, the side stop installation plate 455 is provided with a long strip-shaped installation hole in the left and right directions, the upper lifting plate 452 is provided with a bolt hole, and the side stop installation plate 455 is installed on the upper lifting plate 452 through bolts arranged in the installation hole and the bolt hole. The left and right positions of the side floating stop vertical plate 451 can be adjusted according to the different lengths of the laminated sausages, so that the sausages can be better side-stopped. The height of the upper lifting plate 452 is adjusted by adjusting the extension of the double-shaft cylinder 453, and then the height of the side fixed stop vertical plate 454 and the side floating stop vertical plate 451 is adjusted, so that the sausages are side-stopped. After the sausages are laminated, the height of the upper lifting plate 452 is adjusted again, so that the sausages are pushed out.

[0048] Optionally, the left and right ends of the storage plate 43 can also be provided with left and right guard plates 47 mounted on the base, the bottom ends of the left and right guard plates 47 are connected to the base 2, the front and rear ends are connected to the second vertical baffle 41 and the feeding plate 3, and the integrity of the device can be enhanced.

[0049] In order to push out the sausages after the layering is completed, as shown in Figure 1 、 Figure 2 the rear pushing assembly 5 is also provided on the frame 1. Specifically, the rear pushing assembly 5 is provided with a pushing shovel 51, the pushing shovel 51 is connected to a pushing rod 52, the pushing rod 52 is connected to a horizontal moving mechanism 53, the horizontal moving mechanism 53 is arranged as a linear module 532 arranged left and right, the linear module 532 is driven by a second servo motor 531, the linear module 532 has a sliding seat, and the pushing rod 52 is connected to the sliding seat. By controlling the rotation of the second servo motor 531, the left and right movements of the pushing rod 52 connected to the sliding seat of the linear module 532 can be controlled, so as to drive the left and right movements of the pushing shovel 51, and thus the sausages after the layering is completed can be pushed out to the next station.

[0050] The working process of the utility model is as follows:

[0051] Firstly, the front and rear positions of the movable connecting piece 32 are adjusted by rotating the hand wheel 324 at the end of the screw rod 323 according to the number of sausages to be packaged, then the front and rear positions of the storage extension plate 432 are adjusted to adjust the length of the storage plate 43, so that the storage plate 43 is connected to the first vertical baffle 322 and the second vertical baffle 41; then the position of the side floating vertical baffle 451 is adjusted according to the length of the sausage; then the height of the lifting plate 452 is adjusted by controlling the double-shaft air cylinder 453, so that the side fixed vertical baffle 454 and the side floating vertical baffle 451 are adjusted to a suitable height; after the adjustment, the layering process is started. The sausages on the feeding plate 3 are arranged in the left and right directions and are pushed forward, at the beginning, the top of the storage plate 43 and the feeding plate 3 are flush, the sausages on the feeding plate 3 are pushed to the storage plate 43 of the layering assembly by a pushing mechanism or manually, when the storage plate 43 is full of sausages, the lifting frame 42 is lowered by controlling the first servo motor 46, the lowering height is about equal to the diameter of a sausage, the storage plate 43 drives the bottom layer of sausages to be lowered, the sausages on the feeding plate 3 are continuously pushed forward, and the sausages continuously enter the storage plate 43 of the layering assembly 4 and are stacked on the bottom layer of sausages, so that the sausages are automatically layered; after the layering is completed, the height of the lifting plate 452 is adjusted by controlling the double-shaft air cylinder 453, then the left and right movements of the pushing shovel 51 are controlled by controlling the linear module 532, so that the sausages on the layering assembly 4 are pushed out to the subsequent station, and thus one round of layering process is completed.

[0052] It can be seen that, in addition to the sausage, other similar long strip-shaped materials can also be stacked by the utility model. In addition, in addition to using the transmission assembly to convert the rotating motion of the servo motor into lifting motion, the lifting mechanism can also use a pneumatic cylinder, an oil cylinder or other mechanisms that convert the rotating motion of the motor into linear motion. Similarly, the horizontal moving mechanism can also be selected from the above mechanisms.

[0053] The above is only a preferred embodiment of the utility model, and is not intended to limit the utility model in other forms. Any skilled person in the art can modify or change the above disclosed technology content to equivalent embodiments. However, any simple modification, equivalent change and modification of the above embodiments without departing from the technical solution of the utility model and in accordance with the technical essence of the utility model are within the scope of the utility model.

Claims

1. A lifting sausage layering apparatus comprising a frame and a base fixedly mounted to the frame, characterised in that, The rack is provided with a feeding plate, and the front end of the feeding plate is connected with a downwardly extending first vertical stop plate. The front end of the first vertical stop plate is provided with a stacking assembly. The stacking assembly comprises a second vertical stop plate fixed on a base. The base is further provided with a lifting frame. The lifting frame is connected with a first lifting mechanism. The lifting frame is fixed with a storage plate. The storage plate is located between the first vertical stop plate and the second vertical stop plate and can be flush with the feeding plate.

2. The elevating sausage layering apparatus of claim 1 wherein, The first lifting mechanism comprises a power rotating mechanism and a transmission assembly connected with the power rotating mechanism. The transmission assembly is connected with the lifting frame at the end.

3. The elevating sausage layering apparatus of claim 2, wherein, The lifting frame comprises a lifting vertical plate arranged below the storage plate. The transmission assembly is connected with the lifting vertical plate at the end.

4. The lift type sausage stacking device according to claim 3, wherein The base is fixed with a vertical guide rail. The lifting vertical plate is fixed with a lifting mounting plate. The lifting mounting plate is slidingly installed on the vertical guide rail.

5. The elevating sausage depositor according to claim 4, characterized in that The transmission assembly is a crank connecting rod mechanism. The crank connecting rod mechanism comprises a first connecting rod, a second connecting rod and a third connecting rod. The first connecting rod is fixedly installed on the rotating shaft of the power rotating mechanism. The first connecting rod is provided with a guide shaft at the end. The second connecting rod is provided with a guide groove at one end. The guide shaft is arranged in the guide groove. The other end of the second connecting rod is hingedly installed on the base. One end of the third connecting rod is hingedly installed on the second connecting rod. The other end of the third connecting rod is hingedly installed on the lifting mounting plate.

6. The elevating sausage collaring apparatus of claim 1 wherein, The rear end of the first vertical stop plate is fixed with a feeding extension plate. The feeding extension plate is arranged in close contact with the feeding plate. The first vertical stop plate and the feeding extension plate jointly form a movable connecting piece. The movable connecting piece can be pulled out relative to the feeding plate. The storage plate comprises a fixed storage plate and a storage extension plate arranged in close contact with the fixed storage plate. The fixed storage plate is fixed on the lifting frame. The storage extension plate can be pulled out relative to the fixed storage plate.

7. The lift type sausage stacking device according to claim 6, wherein Further comprising a lead screw. The first vertical stop plate is provided with a threaded hole. The second vertical stop plate is fixed with a limiting nut. The second vertical stop plate is further provided with a through hole. The through hole is coaxially arranged with the limiting nut. The rear end of the lead screw is fitted in the threaded hole. The front part of the lead screw is fitted in the limiting nut. The front end of the lead screw is provided with a hand wheel. The hand wheel is located in front of the second vertical stop plate.

8. The elevating sausage depositor according to any one of claims 1 to 7, characterized in that The storage plate is provided with a material side stop assembly above. The material side stop assembly comprises front and rear extending material side stop vertical plates. The rack is fixedly installed with a second lifting mechanism. The output end of the second lifting mechanism is connected with an upper lifting plate. The material side stop vertical plates are installed on the upper lifting plate.

9. The elevating sausage depositor according to claim 8, characterized in that The material side stop vertical plates are provided with two, which are a side fixed vertical stop plate and a side floating vertical stop plate. The side fixed vertical stop plate is fixedly installed on the upper lifting plate. The side floating vertical stop plate is fixedly provided with a side stop mounting plate. The side stop mounting plate is provided with a long strip-shaped mounting hole. The upper lifting plate is provided with a bolt hole. The side stop mounting plate is installed on the upper lifting plate through the bolt arranged in the mounting hole and the bolt hole.

10. The elevating sausage depositor according to any one of claims 1 to 7, characterized in that The rack is further provided with a stacking rear pushing assembly. The stacking rear pushing assembly comprises a pushing shovel and a pushing rod connected with the pushing shovel. The pushing rod is connected with a horizontal moving mechanism. The horizontal moving mechanism can drive the pushing rod to move left and right.