Improved multifunctional sausage tying machine
Patent Information
- Application Number
- CN202521226499.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-06-16
AI Technical Summary
其一,现有香肠扎线机中,香肠线通过绕线装置绕设于卷线轴,当香肠线用尽时,需开启设备外壳重新手动绕线,操作繁琐且耗费时间和人力;
本实用新型通过启用供线机构,实现独立线卷的便捷更换,免于手动绕线的繁琐步骤;同时,通过在一体式无开槽的定位平台上直接固定限位结构,从而将油脂阻挡于绕线机本体的外侧,最大限度避免油脂滴落至绕线机本体内部影响核心驱动部件性能,且无需频繁清理。
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Figure CN224654575U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of sausage tying, and in particular to an improved multi-functional sausage tying machine. Background Technology
[0002] As people's living standards continue to improve, food manufacturing processes are becoming increasingly diverse, especially in the meat processing sector, where various processing methods have emerged to meet consumers' demands for different tastes and qualities. For sausages, a common meat product, the stuffing and tying processes are crucial. Initially, these two processes relied mainly on manual operation, but with social development and technological advancements, corresponding machinery has been developed to automate sausage production. In the technological development of sausage tying machines, numerous patented technologies have emerged and been continuously optimized.
[0003] 1. The semi-automatic sausage tying machine disclosed in Chinese Announcement No. CN211430845U is equipped with a sausage thread guiding and positioning device. By adjusting the elasticity of the device and using the first and second pressure blocks of the sausage thread to guide and position the sausage thread, the problem of thread breakage and tangling is effectively avoided, the equipment error rate is reduced, and the work efficiency is improved. 2. The fully automatic sausage tying machine with Chinese announcement number CN211407472U introduces a drive motor and limit device on the basis of the original manual tying machine. The motor rotation is controlled by a time relay, which drives the winding device to operate in conjunction with gears. At the same time, the limit device prevents the winding device from causing the thread to tangle due to inertia, which greatly improves the work efficiency. 3. The sausage winding machine with automatic thread cutting, which is listed in China under announcement number CN217364473U, uses a motor-driven gear set to precisely control the motion ratio between the number of winding loops and the number of cutting loops. This enables the sausage thread to be automatically cut after being wound multiple times, reducing manual operation steps, lowering the risk of worker operation, significantly improving production efficiency and factory automation capabilities, and making the equipment more suitable for modern, large-scale, and safe production needs.
[0004] As a result, the structure of sausage tying machines has evolved to an automated stage that integrates fully automatic tying and cutting functions. However, in actual production applications, existing sausage tying machines still have many technical problems that urgently need to be solved: Firstly, in existing sausage tying machines, the sausage thread is wound onto the winding shaft via a winding device. When the sausage thread is used up, the machine casing needs to be opened and the thread manually wound again, which is cumbersome and time-consuming. Secondly, to determine the winding length of a single sausage, a limiting structure is often installed on the positioning platform at the front of the winding machine. Currently, this limiting structure often achieves different sausage winding lengths by slotting the positioning platform. This causes grease to easily leak into the winding machine body along the slots during the sausage winding process, not only contaminating the equipment but also potentially affecting the performance of core drive components. Although some machines have a receiving container under the positioning platform to collect dripping grease, the equipment still needs to be turned on periodically for cleaning, which is inconvenient. Third, the protective shell of the existing sausage tying machine is fixed to the body of the winding machine by screw fastening, which is complicated to open and inconvenient for the replacement and maintenance of sausage thread; Fourth, the lack of an operating platform on the front side of the winding machine body is not conducive to the smooth guidance and transportation of sausages during the binding process.
[0005] In view of this, the inventor has designed an improved multi-functional sausage tying machine, which leads to this invention. Utility Model Content
[0006] To solve the above problems, the technical solution of this utility model is as follows: An improved multi-functional sausage tying machine includes a winding machine body, a winding mechanism, and a drive mechanism. The winding machine body is provided with a winding mechanism and a positioning platform is provided on the outlet side of the winding mechanism. The drive mechanism is driven to the winding mechanism to provide winding power. It also includes a wire supply mechanism with a detachable independent wire roll and a limiting structure. The wire led out by the wire supply mechanism is driven to the winding mechanism. The limiting structure is fixed to the positioning platform in a slotless manner.
[0007] Preferably, it also includes a protective shell covering the outside of the winding mechanism and the wire supply mechanism, the protective shell being rotatably hinged to the winding machine body for easy opening.
[0008] Preferably, the protective shell includes at least a connecting part fixed to the winding machine body and a flip-top part hinged to the connecting part, wherein the connecting part and / or the flip-top part are provided with a clearance opening for the sausage to pass through.
[0009] Preferably, the wire supply mechanism includes a frame and a positioning structure for positioning the wire coil, the positioning structure being located at a relative position to the wire exit side of the winding mechanism.
[0010] Preferably, the frame is provided with lead holes for guiding the lead wires.
[0011] Preferably, the limiting structure includes a linear adjusting seat and a stop that slides along the length of the adjusting seat, the adjusting seat being distributed in a direction approximately close to the sausage feeding direction.
[0012] Preferably, the limiting structure is fixed to the positioning platform by one of the following methods: welding, bonding, clamping, or sleeve connection.
[0013] Preferably, the positioning platform includes at least a flat bearing surface and a first shielding wall that bends downward along both sides of the bearing surface. The bearing surface is detachably mounted on the upper side of the winding machine body, and the first shielding wall extends to cover and exceed both sides of the winding machine body.
[0014] Preferably, the winding machine body has a secondary oil baffle plate located below the positioning platform for secondary blocking of grease dripping.
[0015] Preferably, it also includes an operating platform, which is located on the opposite side of the positioning platform based on the main body of the winding machine.
[0016] The beneficial effects of this utility model are as follows: This invention enables convenient replacement of independent wire rolls by activating a wire supply mechanism, eliminating the tedious steps of manual winding. At the same time, by directly fixing the limiting structure on the integrated slotless positioning platform, grease is blocked on the outside of the winding machine body, minimizing the risk of grease dripping into the inside of the winding machine body and affecting the performance of the core drive components, and eliminating the need for frequent cleaning.
[0017] In addition, the connection between the protective shell and the winding machine body is achieved by hinge, which makes it easy to open the protective shell to replace the sausage wire and to maintain the internal structure of the winding machine body.
[0018] In addition, adding an operating platform on the other side of the winding machine body relative to the positioning platform facilitates the guidance and transport of the sausage, allowing it to smoothly enter the winding mechanism for tying.
[0019] In particular, this utility model adds an additional secondary oil baffle plate, which, together with the positioning platform on the surface, forms multiple layers of protection, further reducing the impact of grease dripping on the performance of the core drive components. Attached Figure Description
[0020] The accompanying drawings, which are provided to further illustrate the present invention and constitute a part of the present invention, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.
[0021] in: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is an exploded structural diagram of the present invention; Figure 3 This is a three-dimensional structural schematic diagram of the present invention; Figure 4This is a partial structural schematic diagram of the present invention; Figure 5 This is a partial structural diagram of the clamping part in this utility model; Figure 6 This is a partial structural schematic diagram of the sensing device in this utility model; Figure 7 This is a partial front view structural schematic diagram of this utility model.
[0022] Label Explanation: 100. Winding machine body; 110. Mounting cavity; 120. Relief groove; 200. Winding mechanism; 210. Feeding tube; 220. Winding drum; 230. Wire clamping part; 231. Wire clamping screw; 232. Fixing nut; 233. Spring; 234. Wire clamping plate; 235. Wire threading hole; 236. Adjusting nut; 240. Guide part; 250. Automatic wire cutting mechanism; 251. Wire breaking structure; 252. Trigger end; 253. Wire hooking structure; 254. Cutting blade structure; 260. Connecting piece; 300. Drive mechanism; 310. Drive motor; 320. Gear set; 321. First output end; 322. Second output end; 330. Output shaft; 400. Positioning platform; 410. Bearing Surface; 420, First shielding wall; 430, Guide wall; 440, Operating platform; 441, Second shielding wall; 500, Wire supply mechanism; 510, Frame; 520, Positioning structure; 530, Fixing plate; 540, Lead wire hole; 600, Limiting structure; 610, Adjusting seat; 611, Adjusting hole; 620, Stop; 621, Bottom wall; 622, Stop wall; 623, Connecting wall; 624, Fixing hole; 700, Secondary oil baffle; 710, Positioning edge; 720, Positioning wall; 730, Tertiary oil baffle; 800, Protective shell; 810, Connecting part; 820, Flip-top part; 830, Clearance opening; 900, Sensing device; 910, Proximity switch; 920, Sensing plate. Detailed Implementation
[0023] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0024] Please see Figures 1 to 7 This is an improved multi-functional sausage tying machine, which is the preferred embodiment of the present utility model. It includes a winding machine body 100, a winding mechanism 200 and a drive mechanism 300. The winding machine body 100 is provided with the winding mechanism 200 and a positioning platform 400 is provided on the outlet side of the winding mechanism 200. The drive mechanism 300 is connected to the winding mechanism 200 to provide winding power.
[0025] Specifically, in this embodiment, the winding machine body 100 is a shell structure with an internal hollow mounting cavity 110 and an opening on the upper side. Its cross-section is square (or circular or other shapes, which are not limited here). The drive mechanism 300 includes a drive motor 310, a gear set 320, and an output shaft 330. The gear set 320 meshes with each other through gears with different numbers of teeth to form two output ends 321 and 322 with different rotation speeds. One of the first output ends 321 is formed on the upper side of the winding machine body 100 in the form of external gear teeth, and is used to mesh with the outer gear of the drive winding mechanism 200 to drive the winding mechanism 200. The first output end 321 rotates to achieve winding; the second output end 322 forms an output point at the center of the gear in a central output manner, and the output shaft 330 is fixed at the output point to follow the rotation. The speed ratio between the first output end 321 and the second output end 322 is 5:1, that is, after the gear corresponding to the first output end 321 rotates 5 times, the gear corresponding to the second output end 322 rotates 1 time. The first output end 321 corresponds to the winding mechanism 200 to achieve 5 turns of sausage thread winding. The second output end 322 is used to drive the connection with the trigger end 252 of the corresponding automatic cutting mechanism 250 to trigger the automatic cutting operation after it rotates one time.
[0026] It is worth mentioning that in this embodiment, the drive motor 310 is located on the outer wall of the winding machine body 100, and its output end is inserted into the mounting cavity 110 and meshed with the corresponding gear set 320. Thus, by operating the external drive motor 310, the influence of dripping grease inside the winding machine body 100 on the drive motor 310 can be eliminated, and the heat dissipation effect of the drive motor 310 can be improved to a certain extent, maintaining its stable working state and extending its service life.
[0027] To achieve cooperation with the drive mechanism 300, in this embodiment, the winding mechanism 200 mainly includes a feeding pipe 210 fixed to the winding machine body 100, a winding drum 220 sleeved with the feeding pipe 210, a wire clamping part 230 fixedly connected to the winding drum 220, a guide part 240, and an automatic wire cutting mechanism 250. The outer wall of the winding drum 220 has external teeth and is meshed with the external teeth of the first output end 321 for transmission. The wire clamping part 230 and the guide part 240 are both The connecting piece 260 is fixedly connected to the outer periphery of the front end of the winding drum 220 and arranged in a V-shape with the wire clamping part 230 located on the upper side and the guide part 240 located on the lower side. The automatic wire cutting mechanism 250 includes a wire breaking structure 251 and a trigger end 252 for triggering the wire breaking structure 251. The trigger end 252 is fixed on the output shaft 330 and rotates with the output shaft 330. The wire breaking operation is triggered when the trigger end 252 contacts the wire breaking structure 251.
[0028] The wire clamping part 230 includes a wire clamping screw 231, a fixing nut 232, a spring 233, and two wire clamping plates 234. The wire clamping screw 231 is clamped and fixed to the end of the connecting piece 260 by the two fixing nuts 232. The two wire clamping plates 234 are slidably sleeved on the screw of the wire clamping screw 231 and are pushed towards the nut side of the wire clamping screw 231 by the spring 233. When the wire clamping plate 234 close to the spring 233 is pulled away from the other wire clamping plate 234, the spring 233 is compressed, exposing the gap between the two wire clamping plates 234 for the sausage thread to pass through. When the wire clamping plate 234 is released, it moves again towards the other wire clamping plate 234 under the action of the spring 233 to clamp the sausage thread. Thus, the two wire clamping plates 234 can form a clamping point, so that the sausage thread maintains a certain tension, preventing the thread end from naturally drooping and misaligning after the previous sausage thread is cut, and maintaining a stable winding and cutting process.
[0029] Furthermore, a thread-passing hole 235 is provided at the end of the screw 231 for the sausage thread to pass through, preventing the sausage thread from escaping the clamping range of the two clamping plates 234 under tension. In addition, an adjusting nut 236 is threaded onto the screw 231. The end of the spring 233 is in movable contact with the adjusting nut 236. When the adjusting nut 236 rotates, the tension of the spring 233 is adjusted by its movement towards or away from the nut, thereby changing the magnitude of the clamping force. In this embodiment, the spring 233 is a tower-shaped spring 233, with the side with the smaller opening located at the position in contact with the adjusting nut 236.
[0030] The guide part 240 has a sleeve-shaped structure, which is used to guide the sausage thread to a position close to the thread break structure 251. The thread break structure 251 has a hook structure 253 that can hook the sausage thread and a cutter structure 254. The thread break operation and the hook operation are triggered synchronously when the trigger end 252 contacts the thread break structure 251 (triggered by the step-shaped structure being distributed vertically and contacting each other). The guide part 240 extends to a position close to the hook structure 253, thereby enabling the hook structure 253 to stably hook the sausage thread, automatically break and hook the thread, and realize continuous and stable sausage winding work.
[0031] Thus, after the sausage thread is led out, it is held at tension by the clamping part 230, and then led out to the guide part 240 located on the lower side, and finally connected to the hooking structure 253 of the thread breaking structure 251. When the drive motor 310 works, it drives the winding drum 220 and the output shaft 330 to rotate at different rotation ratios through the gear set 320. The clamping part and the guide part 240 on the winding drum 220 drive the sausage thread to rotate 5 times, wrapping the sausage passing through the feeding tube 210 with 5 turns of sausage thread. After the winding drum 220 rotates 5 times, the trigger end 252 rotates exactly one turn with the output shaft 330. Then the trigger end 252 contacts the thread breaking structure 251, so that the thread breaking structure 251 performs the thread breaking operation and the hooking operation simultaneously. Before the sausage thread is cut, the hooking structure 253 hooks the beginning position of the next segment of sausage thread. When the thread breaking operation is completed, the previous segment of sausage is finished winding.
[0032] The implementation principle of the above process is the prior art. The specific structure of the disconnection structure 251 and the implementation process and principle of the disconnection operation are shown in the content disclosed in CN217364473U mentioned in the background art, and will not be repeated here.
[0033] like Figure 4 As shown, it also includes a wire supply mechanism 500 with a detachable independent wire reel and a limiting structure 600. The wire drive leading out of the wire supply mechanism 500 is connected to the winding mechanism 200, and the limiting structure 600 is fixed on the positioning platform 400 in a slotless manner.
[0034] Specifically, the wire feeding mechanism 500 includes a frame 510 and a positioning structure 520 for positioning the wire coil. The positioning structure 520 is located at a relative position on the wire exit side of the winding mechanism 200. In this embodiment, the frame 510 is generally square, and its middle part is fixed to the upper and lower sides of the feeding tube 210 by a fixing piece 530 to form a structure symmetrically distributed around the feeding tube 210. The initial positions of the positioning structure 520, the wire clamping part 230, and the guide part 240 are symmetrically distributed about the feeding tube 210.
[0035] Furthermore, the frame 510 is provided with a lead hole 540 for guiding the lead wire. The lead hole 540 is opened on the upper side of the positioning structure 520 and the upper side of the clamping part 230 and the guide part 240. Thus, after the sausage line is led out along the independent coil position of the positioning structure 520, it passes through the first lead hole 540 above it, and winds around from the outside of the frame 510 to the position of another lead hole 540. After passing through the other lead hole 540, it passes through the clamping part 230 and the guide part 240 again, so that the sausage line maintains a stable lead path and avoids directly bypassing the feeding tube 210, which would cause the sausage line to become disordered during the winding process.
[0036] In this embodiment, the positioning platform 400 includes at least a flat bearing surface 410 and a first blocking wall 420 that bends downwards along both sides of the bearing surface 410. The bearing surface 410 is detachably mounted on the upper side of the winding machine body 100, and the first blocking wall 420 extends to cover and exceed both sides of the winding machine body 100. The inner side of the first blocking wall 420 has an opening, and the outer side of the winding machine body 100 has corresponding holes. A detachable locking and fixing mechanism between the positioning platform 400 and the winding machine body 100 is achieved by sequentially passing a wing bolt through two holes (not shown in the figure).
[0037] In addition, a downwardly inclined guide wall 430 is formed on the side of the positioning platform 400 away from the winding mechanism 200, and the first shielding wall 420 extends to both sides of the guide wall 430 accordingly.
[0038] The limiting structure 600 includes a linear adjusting seat 610 and a stop 620 that slides along the length of the adjusting seat 610. The adjusting seat 610 is distributed in a direction approximately close to the sausage feed direction.
[0039] In this embodiment, the adjusting seat 610 is an L-shaped sheet structure, with its bottom surface welded and fixed to the positioning platform 400, and its other wall surface perpendicular to the positioning platform 400. The entire structure is distributed parallel to the sausage feeding direction. Strip-shaped adjusting holes 611 are formed on the wall surface of the adjusting seat 610 along its length. The stop member 620 is also L-shaped, including a bottom wall 621, a stop wall 622, and a connecting wall 623. The stop wall 622 and the connecting wall 623 are respectively vertically fixed to two adjacent sides of the bottom wall 621. The connecting wall 623 is located at one end of the bottom wall 621 along its length. A fixing hole 624 is provided on the connecting wall 623, which cooperates with the adjusting hole 611. The fixing hole 624 and the adjusting hole 611 are locked and fixed by using a wing bolt (not shown in the figure). This allows the stop 620 to be limited and fixed at any position on the adjusting hole 611. The stop wall 622 forms a stop for the sausage. Thus, by adjusting the position of the stop wall 622, the length of the sausage can be adjusted to achieve fixed-length wrapping.
[0040] In particular, the limiting structure 600 can be fixed to the positioning platform 400 by means of welding, bonding, clamping, or sleeve, and there are no restrictions on this.
[0041] In this embodiment, a secondary oil baffle 700 is provided inside the winding machine body and below the positioning platform 400 for secondary blocking of grease dripping. The two sides of the secondary oil baffle 700 protrude to form positioning edges 710, and the front side of the secondary oil baffle 700 bends downward to form a positioning wall 720. The front side of the winding machine body is locked and fixed to the positioning wall 720 by bolts (not shown in the figure). The two sides of the upper opening of the winding machine body form relief grooves 120 corresponding to the positioning edges 710. When the secondary oil baffle 700 is installed on the winding machine body, the relief grooves 120 make the top opening of the mounting cavity 110 form a flat closed surface, forming a secondary stop for grease, further preventing grease dripping.
[0042] Furthermore, a third oil baffle 730 is also provided on the upper side of the broken wire structure 251.
[0043] Preferably, it also includes a protective shell 800 covering the outside of the winding mechanism 200 and the wire supply mechanism 500. The protective shell 800 is rotatably hinged to the winding machine body 100 for easy opening.
[0044] Preferably, the protective shell 800 includes at least a connecting portion 810 fixed to the winding machine body 100 and a flip-top portion 820 hinged to the connecting portion 810. The connecting portion 810 and the flip-top portion 820 are provided with a clearance opening 830 for sausages to pass through.
[0045] In this embodiment, the clearance opening 830 is formed at the relative position of the flip-top portion 820 and the connecting portion 810, and is opposite to the opening positions on both sides of the feeding tube 210.
[0046] Preferably, it also includes an operating platform 440, which is located on the opposite side of the positioning platform 400 based on the winding machine body.
[0047] In this embodiment, the operating platform 440 is also a flat surface, and second shielding walls 441, which are the same as the first shielding wall 420, are formed on both sides of it. The operating platform 440 is located on the upper side of the drive motor 310, thus shielding the drive motor 310.
[0048] Specifically, in this embodiment, a sensing device 900 is also provided in the mounting cavity 110. The sensing device 900 includes two proximity switches 910 and a sensing plate 920 that cooperates with the proximity switches 910. The sensing plate 920 is disposed on the surface of the trigger end 252. The proximity switches 910 are disposed on the sweep path of the sensing plate 920 as the trigger end 252 rotates and are symmetrically distributed about both sides of the cutting mechanism. Through the cooperation of the proximity switches 910 and the sensing plate 920, the movement position of the trigger end 252 can be accurately identified. The movement position is fed back to the control part of the drive motor 310 so that it can be controlled to decelerate after the fourth wrap, so as to avoid the sausage thread breaking due to excessive wrapping speed.
[0049] The beneficial effects of this utility model are as follows: This invention enables convenient replacement of independent wire rolls by activating the wire supply mechanism 500, eliminating the tedious steps of manual winding. At the same time, by directly fixing the limiting structure 600 on the integrated slotless positioning platform 400, grease is blocked on the outside of the winding machine body 100, minimizing the risk of grease dripping into the inside of the winding machine body 100 and affecting the performance of the core drive components, and eliminating the need for frequent cleaning.
[0050] In addition, the connection between the protective shell 800 and the winding machine body 100 is achieved by means of hinge, which makes it easy to open the protective shell 800 to replace the sausage wire and to maintain the inside of the winding machine body 100.
[0051] In addition, an operating platform 440 is added to the other side of the winding machine body 100 relative to the positioning platform 400, which facilitates the guidance and transportation of the sausage, allowing it to smoothly enter the winding mechanism 200 for tying.
[0052] In particular, this utility model adds a secondary oil baffle 700, which, together with the surface positioning platform 400, forms multiple layers of protection, further reducing the impact of grease dripping on the performance of the core drive components.
[0053] The present invention has been described above with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. An improved multi-functional sausage tying machine, comprising a winding machine body (100), a winding mechanism (200), and a drive mechanism (300), wherein the winding machine body (100) is provided with the winding mechanism (200) and a positioning platform (400) is provided on the outlet side of the winding mechanism (200), and the drive mechanism (300) is drivenly connected to the winding mechanism (200) to provide winding power, characterized in that, It also includes a wire supply mechanism (500) with a detachable independent wire spool and a limiting structure (600), the wire supply mechanism (500) leading out to a winding mechanism (200), and the limiting structure (600) being fixed to the positioning platform (400) in a slotless manner.
2. The improved multi-functional sausage tying machine according to claim 1, characterized in that, It also includes a protective shell (800) covering the outside of the winding mechanism (200) and the wire supply mechanism (500), the protective shell (800) being rotatably hinged to the winding machine body (100) for easy opening.
3. The improved multi-functional sausage tying machine according to claim 2, characterized in that, The protective shell (800) includes at least a connecting part (810) fixed to the winding machine body (100) and a flap part (820) hinged to the connecting part (810), wherein the connecting part (810) and / or the flap part (820) are provided with a clearance opening (830) for sausages to pass through.
4. The improved multi-functional sausage tying machine according to claim 1, characterized in that, The wire supply mechanism (500) includes a frame (510) and a positioning structure (520) for positioning the wire coil, the positioning structure (520) being located at a relative position on the wire exit side of the winding mechanism (200).
5. An improved multi-functional sausage tying machine according to claim 4, characterized in that, The frame (510) is provided with lead holes (540) for guiding lead wires.
6. An improved multi-functional sausage tying machine according to claim 1, characterized in that, The limiting structure (600) includes a linear adjusting seat (610) and a stop (620) that slides along the length of the adjusting seat (610). The adjusting seat (610) is distributed in a direction approximately close to the sausage feeding direction.
7. An improved multi-functional sausage tying machine according to claim 1, characterized in that, The limiting structure (600) is fixed to the positioning platform (400) by one of the following methods: welding, bonding, clamping, or sleeve.
8. An improved multi-functional sausage tying machine according to claim 1, characterized in that, The positioning platform (400) includes at least a flat bearing surface (410) and a first shielding wall (420) that bends downward along both sides of the bearing surface (410). The bearing surface (410) is detachably mounted on the upper side of the winding machine body (100), and the first shielding wall (420) extends to cover and beyond both sides of the winding machine body (100).
9. An improved multi-functional sausage tying machine according to claim 1, characterized in that, The winding machine body has a secondary oil baffle (700) located inside and below the positioning platform (400) for secondary blocking of grease dripping.
10. An improved multi-functional sausage tying machine according to claim 1, characterized in that, It also includes an operating platform (440), which is located on the opposite side of the positioning platform (400) based on the main body of the winding machine.
Citation Information
Patent Citations
Full-automatic sausage binding machine
CN211407472U
Semi-automatic sausage binding machine
CN211430845U
Sausage winding machine capable of automatically cutting sausages
CN217364473U