Sausage binding machine traction device with improved structure
By designing a traction device with improved structure in the sausage wire traction device, the coupling of the skateboard and the slider drive the driven wheel and the driving wheel to adjust the width of the conveying channel, solving the problem of operation in the prior art, and achieving easy and convenient adjustment and smooth export of the sausage.
Patent Information
- Application Number
- CN202422013443.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing sausage wire traction device uses manual drive transmission device, which requires a large force to be applied, making the operation more difficult.
A traction device with an improved structure is designed, including a work bench, a traction assembly and a drive mechanism. The traction assembly consists of a driven wheel, a driving wheel and a belt. Through the cooperation of the slide plate and the slide, the drive mechanism is used to drive the slide to slide, so that the driven wheel and the driving wheel are close to or away from each other, and the width of the conveying channel is adjusted.
Through this improved structure, the thrust force when pushing the slide plate to move is reduced, making the process of adjusting the conveying channel easy and convenient, and the friction between the sausage and the belt is reduced, thereby improving the smooth export of the sausage.
Smart Images

Figure CN222929137U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of machinery, and relates to a traction device for a sausage tying machine, in particular to a traction device for a sausage tying machine with an improved structure. Background Technique
[0002] A sausage tying machine is an automated device specifically used for tying sausages, salami and other foods. It can quickly and accurately complete the tying work of sausages and salami, improving production efficiency and reducing labor costs.
[0003] The traction device is an important component of a sausage tying machine. Its structure is like a tying machine traction adjustment device (application number: 201821597716.4) disclosed in the Chinese Patent Library, which includes a left traction guiding mechanism, a right traction guiding mechanism, a panel and a spacing adjustment device; the left traction guiding mechanism and the right traction guiding mechanism are symmetrically arranged and a conveying channel is formed between them. The left traction guiding mechanism and the right traction guiding mechanism are slidably connected to the panel, and the spacing between the left traction guiding mechanism and the right traction guiding mechanism is adjustable. The spacing adjustment device includes a driving device and a transmission device. The driving device drives the transmission device to move synchronously, and the transmission device drives the left traction guiding mechanism and the right traction guiding mechanism to move to adjust the spacing between the two.
[0004] In the above adjustment device, the transmission device drives the left traction guiding mechanism and the right traction guiding mechanism to move as a whole. In actual products, the transmission device is manually driven. Due to the certain weight of the left traction guiding mechanism and the right traction guiding mechanism as a whole, a relatively large force needs to be applied for manual driving, which is rather laborious. Content of the Utility Model
[0005] The purpose of the utility model is to propose a traction device for a sausage tying machine with an improved structure that is easy to adjust in view of the above problems existing in the prior art.
[0006] The purpose of the utility model can be achieved through the following technical solutions: a traction device of a sausage tying machine with an improved structure, comprising a work table, a traction assembly arranged above the work table and a driving mechanism arranged below the work table, the traction assembly having two groups and being symmetrically arranged on the left and right; the traction assembly comprising a driven wheel and a driving wheel arranged front and back and a belt wound around the driven wheel and the driving wheel, and a conveying channel is formed between the two belts, characterized in that a slide plate is horizontally arranged in each conveyor belt, a slide groove is vertically penetrated on the work table, the length of the slide groove extends left and right, each slide plate is arranged corresponding to at least one slide groove, a slider matching the slide groove is provided at the bottom of the slide plate, and the slider is slidably arranged in the corresponding slide groove; the above-mentioned driving mechanism is used to drive the slider to slide so that the two slide plates are close to or away from each other, and the two driven wheels are respectively rotatably arranged at the front ends of the two slide plates; baffles are vertically formed on the two slide plates, vertical planes are formed on the adjacent side walls of the two baffles, and the length of the vertical plane extends front and back, the vertical plane is arranged perpendicular to the top surface of the work table, and the front ends of the two vertical planes are respectively arranged close to the two driven wheels, and the two vertical planes are respectively attached to the inner sides of the two belts.
[0007] When in use, the two slide plates are driven to slide by the driving mechanism so that the two driven wheels are moved closer to or farther from each other, thereby adjusting the width of the front section of the conveying channel to adapt to sausages of different sizes.
[0008] In the present application, it is only necessary to set the driven wheel on the slide and stick it to the inner sides of the two belts through two vertical planes. While ensuring that the front section of the conveying channel always remains straight to smoothly pull the sausages to move, the thrust when pushing the slide to move can be reduced, making the process of adjusting the conveying channel easy and convenient.
[0009] In the improved sausage wire tying machine traction device, the rear end of the baffle is an inclined plate arranged obliquely relative to the vertical plane, the distance between the two inclined plates gradually increases from front to back, and the adjacent side surfaces of the two inclined plates are smoothly transitioned to the rear ends of the two vertical planes. The rear end of the baffle is set as an inclined plate so that a gap is formed between the rear end of the baffle and the belt, which greatly reduces the friction between the sausage at the end of the conveying channel and the belt, so that the sausage can be discharged more smoothly.
[0010] In the improved structure of the sausage wire tying machine traction device, a box body is fixed on the bottom wall of the worktable, an oil receiving chamber is formed between the box body and the worktable, each of the above-mentioned slide grooves is arranged directly in the oil chamber, and an oil discharge port is arranged at the bottom of the box body; the above-mentioned driving mechanism is rod-shaped and horizontally penetrates the oil receiving chamber. When in use, the oil receiving chamber is used to receive the oil that seeps out from the sausage and flows to the slide groove, preventing the oil from flowing everywhere and enhancing the use experience.
[0011] In the improved structure of the sausage wire tying machine traction device, the bottom of the box body extends downward to form a vertically arranged oil drain pipe, and the lower end of the oil drain pipe is the above-mentioned oil drain port, so as to facilitate the oil drain port to connect the pipe fittings to discharge the oil in a centralized manner.
[0012] In the traction device of the improved structure sausage tying machine mentioned above, the driving mechanism includes a lead screw horizontally and rotatably arranged in the oil receiving cavity. One end of the lead screw extends out of the oil receiving cavity and is fixedly connected to a hand wheel. On the outer wall of the other end of the lead screw, there are two spiral grooves with opposite spiral directions. Matching nuts are respectively installed on the two spiral grooves, and each slider is fixedly connected to the corresponding nut through a connecting plate. With the above design, it has the advantages of simple structure and stable operation.
[0013] In the traction device of the improved structure sausage tying machine mentioned above, the baffle and the sliding plate are of an integral structure to effectively strengthen the connection strength between the two and stably support the belt.
[0014] Compared with the prior art, the traction device of the improved structure sausage tying machine has the following advantages:
[0015] 1. In this application, only the driven wheel needs to be arranged on the sliding plate, and the two vertical planes are respectively attached to the inner sides of the two belts. On the premise of ensuring that the front section of the conveying channel always remains straight to smoothly traction the movement of the sausage, the thrust when pushing the sliding plate to move can be reduced, making the process of adjusting the conveying channel easy and convenient.
[0016] 2. The rear end of the baffle is set as an inclined plate, so that a gap is formed between the rear end of the baffle and the belt, greatly reducing the friction between the sausage and the belt at the end of the conveying channel, and making the sausage more smoothly exported. Brief Description of the Drawings
[0017] Figure 1 is a three-dimensional schematic diagram of the sausage tying machine.
[0018] Figure 2 is a three-dimensional schematic diagram of this traction device.
[0019] Figure 3 is a connection schematic diagram of the motor and the driving wheel.
[0020] Figure 4 is a structural schematic diagram of the driving mechanism.
[0021] Figure 5 is a structural schematic diagram of the sliding plate.
[0022] In the figure, 1. Workbench board; 1a. Chute; 2. Driven wheel; 3. Driving wheel; 4. Belt; 5. Conveying channel; 6. Motor; 7. Gear; 8. Sliding plate; 8a. Slider; 8b. Baffle; 8c. Vertical plane; 8d. Inclined plate; 9. Box body; 9a. Drain pipe; 10. Oil receiving cavity; 11. Lead screw; 12. Hand wheel; 13. Nut. Detailed Implementation Modes
[0023] The following are specific embodiments of the present utility model and, in conjunction with the accompanying drawings, further describe the technical solutions of the present utility model, but the present utility model is not limited to these embodiments.
[0024] As Figure 1 shown, the traction device of the sausage tying machine with the improved structure includes a workbench plate 1, a traction assembly arranged above the workbench plate 1, and a driving mechanism and a rotating mechanism both arranged below the workbench plate 1.
[0025] Among them,
[0026] There are two groups of traction assemblies which are symmetrically arranged left and right. The traction assembly includes a driven wheel 2 and a driving wheel 3 arranged front and back, and a belt 4 wound around the driven wheel 2 and the driving wheel 3. Among them, the belt 4 is horizontally arranged, the axes of the driven wheel 2 and the driving wheel 3 are both vertically arranged, and a conveying channel 5 is formed between the two belts 4. In the actual product, the structure of the belt 4 is existing and will not be introduced in detail here.
[0027] The rotating mechanism is used to drive the two driving wheels 3 to rotate synchronously and in opposite directions. Specifically, a frame is fixed below the workbench plate 1. The rotating mechanism includes a motor 6 fixed on the frame and two gears 7 horizontally arranged on the frame, and the two gears 7 are meshed with each other. Among them, the two gears 7 are both rotatably arranged on the frame through vertically arranged rotating shafts, the two driving wheels 3 are respectively fixedly connected to the upper ends of the two rotating shafts, and the motor 6 is connected to the lower end of one of the rotating shafts through a coupling.
[0028] As Figure 2 、 Figure 4 and Figure 5 shown, a sliding plate 8 is horizontally arranged in each conveyor belt. A chute 1a vertically penetrates through the workbench plate 1, and the length of the chute 1a extends left and right. Each sliding plate 8 is arranged corresponding to at least one chute 1a. The bottom of the sliding plate 8 has a slider 8a matching the chute 1a, and the slider 8a is slidably arranged in the corresponding chute 1a so that the sliding plate 8 can stably slide left and right. Preferably, each sliding plate 8 is arranged corresponding to two chutes 1a. The two chutes 1a corresponding to the same sliding plate 8 are distributed front and back. The number of the sliders 8a and the chutes 1a is the same and their positions correspond one by one to enhance the sliding stability and accuracy of the sliding plate 8.
[0029] The driving mechanism is used to drive the slider 8a to slide so that the two sliding plates 8 approach or move away from each other, and the two driven wheels 2 are respectively rotatably arranged at the front ends of the two sliding plates 8 to adjust the width of the front section of the conveying channel 5. As Figure 1 shown, vertical baffles 8b are formed on both sliding plates 8, and preferably, the baffles 8b and the sliding plates 8 are of an integral structure. Vertical planes 8c are formed on the side walls of the two adjacent baffles 8b, and the length of the vertical planes 8c extends front and back. The vertical planes 8c are perpendicular to the top surface of the workbench plate 1, and the front ends of the two vertical planes 8c are respectively close to the two driven wheels 2. The two vertical planes 8c are respectively attached to the inner sides of the two belts 4.
[0030] During use, the driving mechanism drives the two sliding plates 8 to slide, so that the two driven wheels 2 approach or move away from each other, thereby adjusting the width of the front section of the conveying channel 5 to adapt to different sizes of sausages.
[0031] In this application, only the driven wheels 2 need to be arranged on the sliding plates 8, and the two vertical planes 8c are respectively attached to the inner sides of the two belts 4. On the premise of ensuring that the front section of the conveying channel 5 always remains straight to smoothly tow the movement of the sausages, the thrust when pushing the sliding plate 8 to move can be reduced, making the process of adjusting the conveying channel 5 easy and convenient.
[0032] Further explanation, the rear end of the baffle 8b is an inclined plate 8d inclined relative to the vertical plane 8c. The distance between the two inclined plates 8d gradually increases from front to back, and the adjacent sides of the two inclined plates 8d are smoothly transitioned with the rear ends of the two vertical planes 8c. The rear end of the baffle 8b is set as the inclined plate 8d, so as to form a gap between the rear end of the baffle 8b and the belt 4, greatly reducing the friction between the sausage and the belt 4 at the end of the conveying channel 5 and making the sausage more smoothly exported.
[0033] Such as Figure 2 and Figure 3 As shown, a box body 9 is fixed on the bottom wall of the workbench plate 1. An oil receiving cavity 10 is formed between the box body 9 and the workbench plate 1. Each of the above-mentioned chutes 1a is arranged directly opposite to the oil receiving cavity 10. An oil discharge port is provided at the bottom of the box body 9; the above-mentioned driving mechanism is rod-shaped and horizontally passes through the oil receiving cavity 10. During use, the oil receiving cavity 10 is used to catch the oil that oozes from the sausage and flows to the chute 1a, preventing the oil from flowing around randomly and enhancing the use experience. Further explanation, the bottom of the box body 9 extends downward to form a vertically arranged oil discharge pipe 9a, and the lower port of the oil discharge pipe 9a is the above-mentioned oil discharge port, so as to facilitate the connection of pipe fittings to the oil discharge port to centrally discharge the oil.
[0034] In this embodiment, the driving mechanism includes a lead screw 11 horizontally rotatably arranged in the oil receiving cavity 10. One end of the lead screw 11 extends out of the oil receiving cavity 10 and is fixedly connected to a hand wheel 12. Two spiral grooves with opposite spiral directions are provided on the outer wall of the other end of the lead screw 11. Matching nuts 13 are respectively installed on the two spiral grooves, and each slider 8a is fixedly connected to the corresponding nut 13 through a connecting plate. With the above design, it has the advantages of simple structure and stable operation.
[0035] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the technical field to which the present invention belongs can make various modifications or supplements to the described specific embodiments or use similar methods to replace them, but will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
Claims
1. A traction device for a sausage binding machine with an improved structure, comprising a worktable (1), a traction assembly arranged above the worktable (1), and a driving mechanism arranged below the worktable (1), wherein the traction assembly has two groups and is arranged symmetrically on the left and right; the traction assembly comprises a driven wheel (2) and a driving wheel (3) arranged front and back, and a belt (4) wound around the driven wheel (2) and the driving wheel (3), and a conveying channel (5) is formed between the two belts (4), characterized in that: A slide plate (8) is horizontally arranged in each conveyor belt, and a slide groove (1a) is vertically penetrated on the work table (1), and the length of the slide groove (1a) extends left and right. Each slide plate (8) is arranged corresponding to at least one slide groove (1a), and a slider (8a) matching the slide groove (1a) is provided at the bottom of the slide plate (8), and the slider (8a) is slidably arranged in the corresponding slide groove (1a); the above-mentioned driving mechanism is used to drive the slider (8a) to slide so that the two slide plates (8) are close to or away from each other, and the two driven wheels (2) are respectively rotatably arranged at the front ends of the two slide plates (8); baffles (8b) are vertically formed on the two slide plates (8), and vertical planes (8c) are formed on the adjacent side walls of the two baffles (8b), and the length of the vertical plane (8c) extends forward and backward. The vertical plane (8c) is arranged perpendicular to the top surface of the work table (1), and the front ends of the two vertical planes (8c) are respectively arranged close to the two driven wheels (2), and the two vertical planes (8c) are respectively attached to the inner sides of the two belts (4).
2. The improved sausage tying machine traction device according to claim 1 is characterized in that: The rear end of the baffle (8b) is an inclined plate (8d) arranged obliquely relative to the vertical plane (8c), the distance between the two inclined plates (8d) gradually increases from front to back, and the adjacent side surfaces of the two inclined plates (8d) are smoothly transitioned to the rear ends of the two vertical planes (8c) respectively.
3. The improved structure of the sausage tying machine traction device according to claim 1 or 2 is characterized in that: A box body (9) is fixed on the bottom wall of the workbench (1), an oil receiving chamber (10) is formed between the box body (9) and the workbench (1), each of the above-mentioned slide grooves (1a) is arranged to be directly connected to the oil chamber (10), and an oil discharge port is provided at the bottom of the box body (9); the above-mentioned driving mechanism is rod-shaped and horizontally penetrates the oil receiving chamber (10).
4. The improved sausage tying machine traction device according to claim 3 is characterized in that: The bottom of the box body (9) extends downward to form a vertically arranged oil drain pipe (9a), and the lower end of the oil drain pipe (9a) is the above-mentioned oil drain port.
5. The improved sausage tying machine traction device according to claim 3 is characterized in that: The driving mechanism comprises a lead screw (11) which is horizontally rotatably arranged in the oil receiving chamber (10), one end of the lead screw (11) protruding from the oil receiving chamber (10) and fixedly connected to a hand wheel (12), and the outer wall of the other end of the lead screw (11) is provided with two spiral grooves with opposite spiral directions, and matching nuts (13) are respectively mounted on the two spiral grooves, and each slider (8a) is fixedly connected to a corresponding nut (13) via a connecting plate.
6. The improved sausage tying machine traction device according to claim 1 is characterized in that: The baffle plate (8b) and the slide plate (8) are an integrated structure.
Citation Information
Patent Citations
Traction adjusting device of wire binding machine
CN209563423U