A device for tying off a filled sausage
By placing the spool outside the protective cover in the tying device after sausage filling, and using wire clamps and a rope cutting assembly to automatically wind and cut the rope, the problems of difficult spool replacement and rope waste in the prior art are solved, thus improving work efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG HUIFA FOODS
- Filing Date
- 2025-09-02
- Publication Date
- 2026-07-21
AI Technical Summary
In existing wire tying devices, the spools are installed inside a protective casing, making them inconvenient to observe and replace, resulting in low work efficiency and significant waste of wire.
Design a post-filling binding device for sausages. The spool is located outside the protective cover. A fixed spool loading assembly is used, combined with wire clamps, a slider, and a rope cutting assembly, to achieve automatic winding and cutting of the rope, simplifying the operation process.
The spools are easy to observe and replace, reducing thread waste, improving work efficiency, and simplifying the process of segmenting and tying intestines.
Smart Images

Figure CN224522248U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of sausage machines, and in particular to a device for tying sausages after filling. Background Technology
[0002] After sausages are filled, they need to be segmented and tied using string or aluminum wire. Chinese invention patent application CN120021650A discloses a direct-filling sausage quantitative tying and segmenting machine and a tying and segmenting method. The tying device of this tying and segmenting machine includes a first motor, a tying block, and a feeding cylinder sliding within the tying block. One end of the feeding cylinder cooperates with the filling tube, while the other end is provided with a sausage tube. The outlet of the sausage tube faces the segmenting hole. The first motor controls the feeding cylinder to rotate within the tying block. A section corresponding to the sausage tube is provided on one side of the tying block. A first and second shuttle are used in conjunction with each other. Chinese invention patent application CN120021650A discloses a direct-filling sausage quantitative tying and segmenting machine and a tying and segmenting method. The tying device of the tying and segmenting machine includes a first motor, a tying block, and a feeding cylinder that slides within the tying block. One end of the feeding cylinder is connected to the filling tube, and the other end is provided with a sausage passage tube. The outlet of the sausage passage tube faces the segmenting hole. The first motor controls the feeding cylinder to rotate within the tying block. A first shuttle and a second shuttle are provided on one side of the tying block to cooperate with the sausage passage tube.
[0003] As can be seen from the two existing wire tying devices mentioned above, the existing wire tying devices generally load the spool onto the feed pipe and make the spool rotate around the intestines along with the feed pipe, so that the rope is wrapped around and tightly tied to the intestines to achieve wire tying. Since the wire tying block assembly for installing the spool is generally set in the protective shell, it is inconvenient to know the usage status of the rope, and it is also inconvenient to replace and reinstall the spool. Utility Model Content
[0004] To solve the above-mentioned technical problems, this utility model provides a post-filling tying device for sausages, in which the spool is located outside the protective cover, making it convenient to observe and replace the spool and improving work efficiency.
[0005] This utility model discloses a post-filling tying device for sausages, comprising a frame and a feeding pipe. The feeding pipe is rotatably mounted on the frame and is driven by a drive assembly. It also includes a sub-frame, a spool loading assembly, a disc, a slider, a crossbar, and wire clamps. The sub-frame is movable forward and backward in front of the frame. The spool loading assembly is mounted on the sub-frame and is used to load spools. The disc is concentrically mounted on the outer wall of the feeding pipe. The slider is elastically slidable along the radial direction of the disc. The elastic force on the slider causes it to approach the outer edge of the disc. The crossbar is mounted on the slider, and wire clamps are installed at the end of the crossbar. Extending from the front of the feeding tube, a wire clamp elastically holds the end of the rope. A segmenting assembly and a rope-cutting assembly are mounted on the sub-frame. The segmenting assembly is used to segment the sausages to a fixed length, and the rope-cutting assembly is used to cut the rope. The spool is loaded onto the spool loading assembly, and the end of the rope on the spool is pulled out and clamped in the wire clamp. The rear end of the feeding tube is aligned with the output port of the sausage filling machine, allowing the filled sausages to enter the feeding tube and pass through the segmenting assembly on the sub-frame. When the sausages have passed the designated length, the sausage filling machine pauses, and the segmenting assembly compresses the sausages inward into segments. The drive assembly drives the feeding tube to rotate, conveying the sausages. The tube drives the disc, slider, crossbar, and wire clamp to rotate synchronously around the segment of the intestine. This causes the end of the wire clamp holding the rope to rotate around the segment, thus winding the rope end around the segment. As the rope winds, the remaining rope end gradually shortens, pulling the wire clamp, crossbar, and slider from the edge of the disc towards the center. When the rope end is completely wound around the segment, the rope disengages from the wire clamp, and the slider drives the crossbar and wire clamp to reset. At this point, the rope between the spool loading assembly and the segment of the intestine is taut. Adjusting the angle of the feed tube and the disc allows the wire clamp to... Aligning with the taut cord, the sub-frame moves closer to the cord clamp, causing the clamp to grip the cord again. The cord cutting component then cuts the cord between the clamp and the segment of the sausage. The segmenting component and sub-frame reset, completing the segmentation and tying of one sausage segment. This process is repeated to automatically segment and tie the filled sausages. Compared to existing technologies, this method uses a fixed multi-spool loading assembly to load the spools, which are located outside the protective cover for easy observation and replacement. It also automatically cuts the cord, reducing cord waste and simplifying the subsequent cutting of the cord between sausage segments, thus improving work efficiency.
[0006] Preferably, it also includes a slide rod and a spring. The slide rod is mounted on the disk and arranged radially along the disk. The slider is slidably mounted on the slide rod. One end of the spring is connected to the slider and the other end of the spring is connected to the disk. The spring force pushes the slider towards the outer edge of the disk. The slider is slidably mounted on the disk via the slide rod, and the spring elastically supports the slider, making the slider slide smoothly and stably.
[0007] Preferably, the segmented assembly includes a first segmented plate, a second segmented plate, and a double-headed push rod. The first and second segmented plates are slidably mounted on the sub-frame. Semicircular slots are provided on opposite sides of the first and second segmented plates, and clearance slots are provided at the middle edges of the semicircular slots of both segments. The double-headed push rod is mounted in the middle of the sub-frame, and piston rods are provided at both ends of the double-headed push rod, with each piston rod connected to the first and second segmented plates respectively. The two piston rods of the double-headed push rod simultaneously move the first and second segmented plates... The two outward pushers create a large circular hole by forming a semi-circular groove between the first and second segmented plates. This allows the filled sausages to pass through the circular hole after being conveyed through the feed pipe. When the sausages reach the set length, the two piston rods of the double-headed pusher simultaneously move the first and second segmented plates inward, causing them to stagger and approach each other. This allows the first and second segmented plates to clamp and shrink the sausages inward through the semi-circular groove, thus segmenting them. By avoiding the sausage casing through the avoidance groove, automatic segmentation is achieved, resulting in a simple structure.
[0008] Preferably, the spool loading assembly includes a support plate, a vertical shaft, multiple elastic support plates, and a guide plate. The support plate is mounted on the sub-frame, the vertical shaft is mounted on the support plate, the multiple elastic support plates are mounted on the support plate around the outer side of the vertical shaft, and the guide plate is mounted on the support plate. The guide plate has a guide hole. The central hole of the spool is fitted onto the vertical shaft, and the multiple elastic support plates elastically support the hole wall of the spool, thereby elastically loading the spool onto the support plate. After the end of the rope on the spool is pulled out, it passes through the guide hole of the guide plate and is clamped in a wire clamp. By adjusting the shape and stiffness of the multiple elastic support plates, the pulling resistance of the spool can be adjusted, so that the rope is taut but does not break. The structure is simple and practical.
[0009] Preferably, it also includes a second guide plate, which is installed on the first segment plate. The second guide plate has a second guide hole, which is located directly above the clearance groove of the first segment plate. The end of the rope passes through the first guide hole of the first guide plate and the second guide hole of the second guide plate in sequence and is then clamped in the wire clamp. After the rope is tied at the segment of the intestine, the taut rope between the intestine and the second guide plate is roughly vertically positioned directly above the intestine, so that the taut rope is accurately positioned and the wire clamp can accurately clamp it.
[0010] Preferably, the rope cutting assembly includes a blade mounted on the segmented plate one, located below the wire hole two of the conductor plate two, and below the wire clamp. The wire clamp has two elastic clamping plates at its end, with a friction plate between them for elastically clamping the rope. The opposing surfaces of the outer ends of the two clamping plates have V-shaped openings to guide the rope, ensuring the wire clamp maintains a certain pulling force when clamping the rope. This allows the wire clamp to continue rotating after the rope end is completely wrapped around the segmented section, enabling the rope end to be pulled out of the clamp. After the wire clamp separates from the rope, the blade is positioned below the clamp. After the wire clamp holds the taut rope between the conductor plate two and the segmented section, the auxiliary frame moves closer to the feed pipe, causing the blade to extend below the wire clamp, thereby cutting the taut rope below the clamp and maintaining the clamp's hold on the new rope end.
[0011] Preferably, it also includes a push cylinder, the fixed end of which is mounted on the frame, and the piston rod of the push cylinder is connected to the sub-frame; the sub-frame is mounted on the frame in a way that allows it to move back and forth via the push cylinder, so that the push cylinder drives the sub-frame to move back and forth, and when the sub-frame moves back and forth, the wire clamp automatically clamps the end of the wire and cuts the wire by the blade.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: multiple spool loading components are fixedly set to load the spools, which are located outside the protective cover, making it convenient to observe and replace the spools. At the same time, the spools can be automatically cut, reducing spool waste, and simplifying the subsequent operation of cutting the spools between the segments of the intestine, thus improving work efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the segmented component of this utility model in the segmented state of intestines; Figure 3 This is a structural schematic diagram of the blade of this utility model in the state of cutting a rope; Figure 4 This is a schematic diagram of the isometric structure of this utility model; Figure 5 It is a structural diagram of the frame, feed pipe, disc, slider, crossbar, wire clamp and slide bar, etc. Figure 6 This is a structural diagram of the sub-frame, spool loading assembly, and segmented assembly, etc. Figure 7 yes Figure 3 A magnified schematic diagram of the structure at point A in the middle.
[0014] The following components are labeled in the attached diagram: 1. Frame; 2. Feed pipe; 3. Sub-frame; 4. Bore load assembly; 5. Disc; 6. Slider; 7. Crossbar; 8. Wire clamp; 9. Slide bar; 10. Spring; 11. Section plate one; 12. Section plate two; 13. Double-headed push rod; 14. Support plate; 15. Vertical shaft; 16. Elastic support plate; 17. Wire guide plate one; 18. Wire guide plate two; 19. Blade; 20. Push cylinder. Detailed Implementation
[0015] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example 1
[0016] like Figures 1 to 6 As shown, a sausage filling and tying device includes a frame 1 and a feeding pipe 2. The feeding pipe 2 is rotatably mounted on the frame 1 and is driven by a drive assembly. It also includes a sub-frame 3, a spool loading assembly 4, a disc 5, a slider 6, a crossbar 7, and a wire clamp 8. The sub-frame 3 is movably mounted in front of the frame 1. The spool loading assembly 4 is mounted on the sub-frame 3 and is used to load spools. The disc 5 is concentrically mounted on the outer wall of the feeding pipe 2. The slider 6 is elastically slidably mounted along the radial direction of the disc 5. The elastic force on the slider 6 causes it to approach the outer edge of the disc 5. The crossbar 7 is mounted on the slider 6, and the wire clamp 8 is mounted at the end of the crossbar 7. The wire clamp 8 extends out from the front of the feeding pipe 2 and elastically clamps the end of the wire. A segmenting assembly and a wire cutting assembly are mounted on the sub-frame 3. The segmenting assembly is used to segment the sausage into fixed lengths, and the wire cutting assembly... The component is used to cut the rope; it also includes a slide rod 9 and a spring 10. The slide rod 9 is mounted on the disc 5 and is arranged radially along the disc 5. The slider 6 is slidably mounted on the slide rod 9. One end of the spring 10 is connected to the slider 6 and the other end of the spring 10 is connected to the disc 5. The elastic force of the spring 10 pushes the slider 6 toward the outer edge of the disc 5. The segmented assembly includes a segmented plate 11, a segmented plate 2 12 and a double-headed push rod 13. The segmented plate 11 and the segmented plate 2 12 are slidably mounted on the sub-frame 3. The opposite parts of the segmented plate 11 and the segmented plate 2 12 are provided with semi-circular slots. The middle edge of the semi-circular slots of the segmented plate 11 and the segmented plate 2 12 are provided with clearance slots. The double-headed push rod 13 is installed in the middle of the sub-frame 3. Both ends of the double-headed push rod 13 are provided with piston rods. The two piston rods are respectively connected to the segmented plate 11 and the segmented plate 2 12.
[0017] The two piston rods of the double-headed push rod 13 simultaneously push the segmented plate 11 and segmented plate 2 12 outwards, so that the semi-circular groove between segmented plate 11 and segmented plate 2 12 forms a large circular hole. After the sausage is filled, it passes through the circular hole after being output through the conveying pipe 2. When the sausage output reaches the set length, the two piston rods of the double-headed push rod 13 simultaneously move the segmented plate 11 and segmented plate 2 12 inwards, so that segmented plate 11 and segmented plate 2 12 stagger and approach each other. This allows segmented plate 11 and segmented plate 2 12 to clamp and shrink the sausage inwards through the semi-circular groove, thereby segmenting it. By avoiding the sausage casing through the avoidance groove, automatic segmentation is achieved.
[0018] The slider 6 is slidably mounted on the disc 5 via the slide bar 9. The spring 10 elastically supports the slider 6, making its sliding smooth and stable. The spool is loaded onto the spool loading assembly 4. The end of the rope on the spool is pulled out and clamped in the wire clamp 8. The rear end of the feed pipe 2 is aligned with the output port of the sausage filling machine, allowing the filled sausages to enter the feed pipe 2 and pass through the segmenting assembly on the sub-frame 3. When the sausages have passed the specified length, the sausage filling machine pauses. The segmenting assembly compresses the sausages inward into segments. The drive assembly drives the feed pipe 2 to rotate. The feed pipe 2 drives the disc 5, slider 6, crossbar 7, and wire clamp 8 to rotate synchronously around the segment of the sausages. This causes the end of the rope held by the wire clamp 8 to rotate around the segment of the sausages, thus winding the end of the rope around the segment of the sausages. As the rope winds, the remaining end of the rope gradually shortens, thus pulling the wire clamp 8, crossbar 7, and slider 6 away from the edge of the disc 5. Pull the cord towards the center. When the end of the cord is completely wrapped around the segment of the sausage, the cord disengages from the clamp 8. The slider 6 drives the crossbar 7 and the clamp 8 to reset. At this time, the cord between the spool loading assembly 4 and the segment of the sausage is tightened. Adjust the angle of the feed pipe 2 and the disc 5 to align the clamp 8 with the tightened cord. The auxiliary frame 3 moves closer to the clamp 8, so that the clamp 8 clamps the tightened cord again, and the cord cutting assembly cuts the cord between the clamp 8 and the segment of the sausage. The segmenting assembly and the auxiliary frame 3 reset, thus completing the segmentation and tying of one section of sausage. Repeat the above actions to automatically segment and tie the sausage after filling. Compared with the existing technology, the use of multiple fixed spool loading assemblies 4 to load spools, with the spools located outside the protective cover, makes it convenient to observe and replace the spools. At the same time, it can automatically cut the cord, reducing cord waste, and simplifying the subsequent operation of cutting the cord between the segments of the sausage, thus improving work efficiency. Example 2
[0019] like Figure 1 , Figure 2 , Figure 4 , Figure 6 and Figure 7As shown, based on Embodiment 1, the bobbin loading assembly 4 includes a support plate 14, a vertical shaft 15, multiple elastic support plates 16, and a first guide plate 17. The support plate 14 is mounted on the sub-frame 3, the vertical shaft 15 is mounted on the support plate 14, the multiple elastic support plates 16 are mounted on the support plate 14 around the outside of the vertical shaft 15, and the first guide plate 17 is mounted on the support plate 14. The first guide plate 17 is provided with a first guide hole. It also includes a second guide plate 18, which is mounted on a first segmented plate 11. The second guide plate 18 is provided with a second guide hole, which is located directly above the clearance slot of the first segmented plate 11. The rope cutting assembly includes a blade 19, which is mounted on the first segmented plate 11. The blade 19 is located below the second guide hole of the second guide plate 18 and below the wire clamp 8. It also includes a push cylinder 20, the fixed end of which is mounted on the frame 1, and the piston rod of the push cylinder 20 is connected to the sub-frame 3.
[0020] The central hole of the spool is fitted onto the vertical shaft 15, and multiple elastic support plates 16 elastically support the hole wall of the spool, thereby elastically loading the spool onto the support plate 14. After the end of the rope on the spool is pulled out, it passes through the first wire hole of the first wire guide plate 17 and the second wire hole of the second wire guide plate 18 in sequence and is clamped on the wire clamp 8. By adjusting the shape and stiffness of the multiple elastic support plates 16, the pulling resistance of the spool can be adjusted, so that the rope is taut but does not break. The wire clamp 8 has two elastic clamping plates at its end, with a friction plate between them for elastically clamping the wire. The opposing outer surfaces of the two clamping plates have V-shaped openings to guide the wire, ensuring the wire clamp 8 maintains a certain pulling force when clamping the wire. This allows the wire clamp 8 to continue rotating even after the wire end is completely wrapped around the guide tube and segmented, enabling the wire end to be pulled out of the wire clamp 8. After the wire clamp 8 detaches from the wire, the blade 19 is positioned below the wire clamp 8, and the wire is tightly stretched between the guide tube and the second guide plate 18. The rope is positioned roughly vertically above the intestines, ensuring precise positioning of the taut rope. The push cylinder 20 drives the auxiliary frame 3 to move, causing the guide plate 18 to guide the taut rope towards the V-shaped opening of the wire clamp 8, thus clamping the rope between the two friction plates of the wire clamp 8. The push cylinder 20 drives the auxiliary frame 3 to continue moving closer to the feed pipe 2, causing the blade 19 to extend under the wire clamp 8, thereby cutting the taut rope under the wire clamp 8 and keeping the wire clamp 8 holding the new end of the rope.
[0021] like Figures 1 to 7As shown, this utility model discloses a sausage filling and tying device. During operation, the spool is first loaded onto the spool loading assembly 4. The end of the rope on the spool is pulled out and clamped in the wire clamp 8. The filled sausages are fed into the conveying pipe 2 and pass through the semi-circular slots of the first segmented plate 11 and the second segmented plate 12. After the sausages have passed a specified length, the sausage filling machine pauses. The first segmented plate 11 and the second segmented plate 12 compress the sausages inward into segments. The driving assembly drives the conveying pipe 2 to rotate. The conveying pipe 2 drives the disc 5, slider 6, crossbar 7, and wire clamp 8 to rotate synchronously around the segmented part of the sausage. This causes the end of the rope held by the wire clamp 8 to rotate around the segmented part of the sausage, thus winding the end of the rope around the segmented part of the sausage. Then, as the rope winds, the remaining end of the rope gradually... The length is shortened, thus pulling the wire clamp 8, crossbar 7, and slider 6 from the edge of the disc 5 towards the center. When the end of the wire is completely wrapped around the segment of the sausage, the wire is pulled out of the wire clamp 8. The spring 10 causes the slider 6 to drive the crossbar 7 and the wire clamp 8 to reset. At this time, the wire between the guide plate 2 18 and the segment of the sausage is tightened. The angle of the feed pipe 2 and the disc 5 is adjusted to align the wire clamp 8 with the tightened wire. The push cylinder 20 drives the auxiliary frame 3 to move closer to the wire clamp 8, so that the wire clamp 8 clamps the tightened wire again, and the blade 19 cuts the wire between the wire clamp 8 and the segment of the sausage. The segmenting plate 1 11 and the segmenting plate 2 12 are reset, and the auxiliary frame 3 is reset, thus completing the segmentation and tying of one section of sausage. Finally, the above actions are repeated to automatically segment and tie the sausage after filling.
[0022] The main functions achieved by this utility model are: 1. Multiple fixed-set spool loading assemblies 4 are used to load spools. The spools are located outside the protective cover, which facilitates observation and replacement of spools and improves work efficiency. 2. It can automatically cut the cord, reducing cord waste and simplifying the subsequent operation of cutting the cord between the segments of the intestine, thus improving work efficiency.
[0023] The present invention relates to a sausage filling and tying device. Its installation, connection, or setting methods are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented. The frame 1, feeding pipe 2, auxiliary frame 3, bobbin loading assembly 4, disc 5, slider 6, crossbar 7, wire clamp 8, sliding rod 9, spring 10, double-headed push rod 13, support plate 14, vertical shaft 15, elastic support plate 16, guide plate one 17, guide plate two 18, blade 19, and push cylinder 20 of the sausage filling and tying device are commercially available. Technical personnel in this industry only need to install and operate it according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0024] All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0025] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A sausage tying device after filling, comprising a frame (1) and a conveying pipe (2), the conveying pipe (2) is rotatably installed on the frame (1), and the conveying pipe (2) is driven by a driving assembly; characterized in that, It also includes a sub-frame (3), a bobbin loading assembly (4), a disc (5), a slider (6), a crossbar (7), and wire clamps (8). The sub-frame (3) is mounted in front of the frame (1) and can move back and forth. The bobbin loading assembly (4) is mounted on the sub-frame (3) and is used to load bobbins. The disc (5) is concentrically mounted on the outer wall of the feed pipe (2). The slider (6) is elastically mounted along the radial direction of the disc (5). The elastic force on the slider (6) causes the slider (6) to move close to the outer edge of the disc (5). The crossbar (7) is mounted on the slider (6). The wire clamps (8) are mounted at the end of the crossbar (7). The wire clamps (8) extend out from the front of the feed pipe (2) and elastically clamp the end of the wire rope. The sub-frame (3) is mounted with a segmenting assembly and a rope cutting assembly. The segmenting assembly is used to segment the intestines into fixed lengths, and the rope cutting assembly is used to cut the wire rope.
2. A sausage casing tying device after filling as defined in claim 1, characterized in that It also includes a slide bar (9) and a spring (10). The slide bar (9) is mounted on the disk (5) and is arranged radially along the disk (5). The slider (6) is slidably mounted on the slide bar (9). One end of the spring (10) is connected to the slider (6) and the other end of the spring (10) is connected to the disk (5). The elastic force of the spring (10) pushes the slider (6) toward the outer edge of the disk (5).
3. A sausage casing tying apparatus as defined in claim 1, wherein, The segmented assembly includes a segmented plate one (11), a segmented plate two (12), and a double-headed push rod (13). The segmented plate one (11) and the segmented plate two (12) are slidably mounted on the sub-frame (3). Semicircular slots are provided on the opposite parts of the segmented plate one (11) and the segmented plate two (12). Avoidance slots are provided at the middle edge of the semicircular slots of the segmented plate one (11) and the segmented plate two (12). The double-headed push rod (13) is installed in the middle of the sub-frame (3). Piston rods are provided at both ends of the double-headed push rod (13). The two piston rods are connected to the segmented plate one (11) and the segmented plate two (12) respectively.
4. A sausage casing post-filling stringer as defined in claim 3, wherein, The bobbin loading assembly (4) includes a tray (14), a vertical shaft (15), multiple elastic support plates (16), and a first guide plate (17). The tray (14) is mounted on the sub-frame (3), the vertical shaft (15) is mounted on the tray (14), multiple elastic support plates (16) are mounted on the tray (14) around the outside of the vertical shaft (15), and the first guide plate (17) is mounted on the tray (14). A first guide hole is provided on the first guide plate (17).
5. A sausage casing post-filling stringer as defined in claim 4, wherein, It also includes a second guide plate (18), which is installed on the first segment plate (11). The second guide plate (18) is provided with a second guide hole, which is located directly above the clearance slot of the first segment plate (11).
6. A sausage casing tying apparatus as defined in claim 5, wherein, The rope cutting assembly includes a blade (19), which is mounted on the first segment plate (11). The blade (19) is located below the second wire hole of the second wire plate (18) and below the wire clamp (8).
7. A sausage casing tying apparatus as defined in claim 1, wherein, It also includes a push cylinder (20), the fixed end of which is mounted on the frame (1), and the piston rod of the push cylinder (20) is connected to the sub-frame (3).