Automatic mixing type sausage stuffer for low-fat high-protein sausage food and use method of automatic mixing type sausage stuffer
By designing an automatic mixing enema machine, using an eccentric rotating mixing cylinder and V-shaped mixing teeth, the existing mixer has solved the problem of low mixing efficiency when dealing with low-fat, high-protein meat sausage foods, achieving efficient and even mixing of meat fillings, and improving the quality of enema.
Patent Information
- Application Number
- CN202510313069.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-03-17
AI Technical Summary
When existing mixers treat low-fat, high-protein meat sausage foods, the mixing efficiency is low, resulting in uneven mixing of meat fillings and poor taste distribution.
A low-fat, high-protein meat sausage food automatic mixing enema machine is designed, using an eccentric rotating mixing cylinder and V-shaped stirring teeth. The piston cylinder and the moving piston are driven by hydraulic oil to achieve the eccentric slow rotation of the mixing cylinder and the up and down movement of the V-shaped stirring teeth to ensure that the meat filling is fully stirred.
It improves the mixing efficiency and uniformity of the meat filling, ensures the full mixing of the meat filling and auxiliary ingredients, and improves the quality of the enema.
Smart Images

Figure CN119969445A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of a mixing type sausage stuffer, in particular to an automatic mixing type sausage stuffer for low-fat and high-protein sausage food and a use method thereof. Background Art
[0002] Low-fat and high-protein sausage food requires the use of a sausage stuffing machine for stuffing. First, the marinating process: the raw meat of the sausage is evenly thawed by a high-humidity thawing machine. After thawing, it is manually trimmed to remove the fascia, blood stasis, impurities, etc. of the meat. Part of the product is minced into semi-finished products by a meat grinder, and part is chopped into semi-finished products at high speed by a chopper. Various auxiliary materials are added through a mixer and evenly stirred into semi-finished meat filling. After stirring and mixing, the meat filling is added to the sausage stuffing machine for stuffing.
[0003] The current mixer uses a simple stirring rod or stirring teeth to stir, which can stir evenly, but takes a long time, resulting in low stirring efficiency. Since the meat filling is sticky and not conducive to dispersion, it will also lead to poor mixing effect and uneven distribution of the taste of the meat filling. For this reason, the application proposes an automatic mixing sausage stuffing machine for low-fat and high-protein sausage food and a method of using the same. Summary of the invention
[0004] The purpose of the present invention is to solve the above technical problems and to propose an automatic mixing type sausage stuffing machine for low-fat and high-protein sausage food and a method of using the same.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] An automatic mixing sausage stuffer for low-fat and high-protein sausage food, comprising a mixing box and a sausage stuffer, wherein the mixing box is connected to the sausage stuffer, an upper cover is hingedly connected to the upper end of the mixing box, and an adding hopper is installed at the upper end of the upper cover;
[0007] Mixing mechanism; the mixing mechanism includes a base installed at the bottom of the upper cover, a motor is installed at the bottom of the base, a vertical tube driven to rotate by the motor is rotatably installed at the bottom of the base, a rectangular piston cylinder connected to it is fixedly connected at the bottom of the vertical tube, a rectangular movable piston is slidably connected in the rectangular piston cylinder, a driving rod is fixed at the bottom of the rectangular movable piston, a mounting block is fixed at the bottom of the driving rod, two V-shaped stirring teeth are installed on the mounting block, a short tube is rotatably connected to the inner bottom of the mixing box, a circular seat is provided above the short tube, a mixing tube is installed at the upper end of the circular seat, a guide groove distributed along the diameter direction is provided at the bottom of the circular seat, a guide block is slidably connected in the guide groove, the short tube is fixedly installed at the bottom of the guide block, a driving mechanism that drives the guide block to move and is connected to the short tube is installed in the guide groove, the guide block moves to make the short tube eccentric with the circular seat, and when the short tube rotates, the circular seat and the mixing tube rotate eccentrically.
[0008] Preferably, a fan is installed on the upper cover, a feed pipe is installed at the air outlet of the fan, the feed pipe is connected to the sausage enema machine, a negative pressure pipe is installed at the bottom of the feed pipe, the negative pressure pipe runs through the upper cover, and the negative pressure pipe can extend into the mixing barrel.
[0009] Preferably, the output end of the motor is fixedly connected with a short shaft, a first gear is installed on the short shaft, a second gear is installed on the vertical pipe, and the first gear is meshed with the second gear.
[0010] Preferably, a spring is fixed to the upper end of the rectangular movable piston, and the upper end of the spring is fixedly connected to the inner top of the rectangular piston cylinder.
[0011] Preferably, the driving mechanism comprises a first piston cylinder fixed in a guide groove, a first movable piston being slidably connected in the first piston cylinder, a driving tube fixedly connected thereto penetrating the first movable piston, the driving tube being fixedly connected to the guide block, and the driving tube being connected to a short tube.
[0012] Preferably, it also includes a power mechanism for driving the short tube to rotate, the power mechanism includes a second piston cylinder installed on the inner wall of the mixing box, a second movable piston is slidably connected in the second piston cylinder, a fixed rod is fixedly connected to the second movable piston, a rack plate is fixedly connected to the fixed rod, and a transmission gear is fixedly connected to the short tube, and the transmission gear is meshed with the short tube.
[0013] Preferably, it also includes an air supply mechanism for supplying air to the rectangular piston cylinder, the first piston cylinder and the second piston cylinder, the air supply mechanism includes a vertical plate fixed to the bottom of the upper cover, a liquid supply piston cylinder is installed on the vertical plate, the liquid supply piston cylinder is connected to the vertical pipe, the short pipe and the second piston cylinder through a delivery pipe, a liquid supply movable piston is slidably connected in the liquid supply piston cylinder, a connecting rod is hingedly connected to the liquid supply movable piston, a reduction box is installed on the base, a circular plate is installed on the upper shaft end of the reduction box, the connecting rod is eccentrically hingedly connected to the upper end of the circular plate, a third gear is installed on the bottom shaft end of the reduction box, and the third gear is meshed with the second gear.
[0014] The invention also discloses a method for using the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food, which comprises the following steps:
[0015] S1, adding raw materials: adding raw materials into the mixing box through the adding bucket, the raw materials fall into the mixing cylinder, and then starting the motor;
[0016] S2, mixing cylinder offset: the motor drives the short shaft to rotate, thereby realizing the slow rotation of the first gear, the second gear, the third gear, and the circular plate. The rotation of the circular plate drives the connecting rod and the liquid supply movable piston to move. When the liquid supply movable piston moves away from the motor, the liquid supply movable piston can transport the hydraulic oil in the liquid supply piston cylinder through the delivery pipe to the first piston cylinder. The pressure in the first piston cylinder increases and drives the first movable piston to move. The movement of the first movable piston drives the driving pipe and the guide block to move. Since the short tube rotates in the mixing box, the first piston cylinder and the circular seat will move to one side, so that the short tube is not coaxial with the circular seat.
[0017] S3, the stirring member rotates and moves: the motor drives the short shaft to rotate, the short shaft rotates and drives the first gear to rotate, the first gear rotates and drives the second gear to rotate, the second gear rotates and drives the vertical tube to rotate, the vertical tube rotates and drives the rectangular piston cylinder, the rectangular moving piston and the driving rod to rotate, the driving rod rotates and drives the mounting block and the two V-shaped stirring teeth to rotate;
[0018] S4, mixing cylinder rotation: hydraulic oil is delivered to the second piston cylinder through the delivery pipe, the pressure in the second piston cylinder increases to drive the second movable piston to move, the movement of the second movable piston drives the fixed rod and the rack plate to move, the movement of the rack plate drives the transmission gear to rotate, the rotation of the transmission gear drives the short tube, the guide block and the circular seat to rotate, the rotation of the circular seat drives the mixing cylinder to rotate, so that the mixing cylinder can be eccentrically rotated slowly;
[0019] S5, meat mixing: hydraulic oil is delivered to the rectangular piston cylinder through the delivery pipe and the vertical pipe. The pressure in the rectangular piston cylinder increases and drives the rectangular moving piston to move downward, thereby driving the driving rod, the mounting block and the two V-shaped stirring teeth to rotate and extend into the mixing cylinder, so as to stir the meat;
[0020] S6, meat filling: After the mixing is completed, the motor is turned off, the electric push rod drives the negative pressure tube to move into the mixing barrel, and the fan is started. The fan transmits the hydraulic oil through the feeding pipe, and the mixed meat filling can be sucked into the feeding pipe. Finally, the meat filling is transported to the sausage stuffing machine, and the sausage stuffing can be performed through the sausage stuffing machine.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. The rotation of the second gear drives the third gear to rotate. The rotation of the third gear drives the circular plate to rotate slowly after being decelerated by the reduction gear box. The rotation of the circular plate drives the connecting rod and the liquid supply moving piston to move. When the liquid supply moving piston moves away from the motor, the liquid supply moving piston can transport the hydraulic oil in the liquid supply piston cylinder through the delivery pipe to provide power for the mixing of the meat filling.
[0023] 2. The hydraulic oil is delivered to the first piston cylinder through the delivery pipe and the short pipe. The pressure in the first piston cylinder increases to drive the first movable piston to move. The movement of the first movable piston drives the driving pipe and the guide block to move. Since the short pipe rotates in the mixing box, the first piston cylinder and the circular seat will move to one side, so that the short pipe is not coaxial with the circular seat. When the hydraulic oil in the first piston cylinder is extracted, the circular seat and the mixing cylinder are reset, so that the mixing cylinder hovers between coaxial rotation and non-coaxial rotation.
[0024] 3. The hydraulic oil is delivered to the second piston cylinder through the delivery pipe. The increased pressure in the second piston cylinder drives the second movable piston to move. The movement of the second movable piston drives the fixed rod and the rack plate to move. The movement of the rack plate drives the transmission gear to rotate. The rotation of the transmission gear drives the short tube, the guide block and the circular seat to rotate. The rotation of the circular seat drives the mixing cylinder to rotate, thereby realizing the eccentric slow rotation of the mixing cylinder.
[0025] 4. When the V-shaped stirring teeth rotate and extend into the mixing barrel, the mixing barrel rotates back and forth, and the short tube drives the coaxial rotation to the eccentric reciprocating rotation. In this way, the V-shaped stirring teeth move up and down and rotate, which can fully stir the meat filling in the eccentrically rotating mixing barrel to ensure that the meat filling is fully mixed with various auxiliary materials. The stirring and mixing efficiency is high and the mixing can be guaranteed to be uniform, so as to ensure the quality of the enema.
[0026] 5. Since the rectangular movable piston moves upward due to the action of the spring, the V-shaped stirring teeth are located above the mixing barrel, so that they will not be interfered with by the mixing barrel. Separate the feeding pipe from the fan and open the upper cover. At this time, the mixing barrel is no longer blocked, so it can be cleaned.
[0027] To sum up, when the V-shaped stirring teeth of the present invention rotate and extend into the mixing barrel, the mixing barrel rotates back and forth, and the short tube drives the coaxial rotation to the eccentric reciprocating rotation. In this way, the V-shaped stirring teeth move up and down and rotate, and the meat filling in the eccentrically rotating mixing barrel can be fully stirred to ensure that the meat filling is fully mixed with various auxiliary materials. The stirring and mixing efficiency is high and the mixing can be guaranteed to be uniform, so as to ensure the quality of the enema. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a schematic diagram of the structure of the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food proposed by the present invention;
[0029] Figure 2 It is a rear view of the mixing box in the automatic mixing sausage stuffing machine for low-fat and high-protein meat sausage food proposed by the present invention;
[0030] Figure 3 This is a schematic diagram of the structure inside the mixing box of the automatic mixing sausage stuffing machine for low-fat and high-protein meat sausages proposed by the present invention;
[0031] Figure 4A cross-sectional view of a mixing box in the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food proposed by the present invention;
[0032] Figure 5 This is a structural schematic diagram of the liquid supply piston cylinder in the automatic mixing sausage stuffer for low-fat and high-protein meat sausages proposed by the present invention;
[0033] Figure 6 This is a schematic diagram of the structure of the first gear and the second gear in the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food proposed by the present invention;
[0034] Figure 7 This is a schematic diagram of the structure of the rectangular piston cylinder in the automatic mixing sausage stuffing machine for low-fat and high-protein meat sausages proposed by the present invention;
[0035] Figure 8 This is a schematic structural diagram of the guide groove in the automatic mixing sausage stuffing machine for low-fat and high-protein meat sausages proposed by the present invention;
[0036] Fig. 9 This is a schematic diagram of the structure of the transmission gear in the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food proposed by the present invention.
[0037] In the figure: 1 mixing box, 2 upper cover, 3 sausage stuffer, 4 adding bucket, 5 fan, 6 feeding pipe, 7 negative pressure pipe, 8 mixing cylinder, 9 vertical plate, 10 liquid supply piston cylinder, 11 motor, 12 rectangular piston cylinder, 13 base, 14 connecting rod, 15 delivery pipe, 16 second piston cylinder, 17 second movable piston, 18 circular seat, 19 driving rod, 20 mounting block, 21 V-type stirring tooth, 22 liquid supply movable piston, 23 vertical pipe, 24 circular plate, 25 first gear, 26 reduction box, 27 third gear, 28 second gear, 29 short shaft, 30 rectangular movable piston, 31 spring, 32 guide groove, 33 first piston cylinder, 34 driving pipe, 35 guide block, 36 transmission gear, 37 short pipe, 38 rack plate, 39 fixing rod, 40 first movable piston. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0039] Reference Figure 1-Figure 9The automatic mixing sausage stuffer for low-fat and high-protein meat sausage food comprises a mixing box 1 and a sausage stuffer 3. The mixing box 1 is connected to the sausage stuffer 3. A fan 5 is installed on the upper cover 2. A feeding pipe 6 is installed at the air outlet end of the fan 5. The feeding pipe 6 is connected to the sausage stuffer 3. A negative pressure pipe 7 is installed at the bottom of the feeding pipe 6. The negative pressure pipe 7 is a telescopic pipe. The negative pressure pipe 7 runs through the upper cover 2 and can extend into the mixing barrel 8. An electric push rod can be installed on the upper cover 2. The output end of the electric push rod is connected to the negative pressure pipe 7, which can drive the negative pressure pipe 7 to move into the mixing barrel 8.
[0040] The upper end of the mixing box 1 is hingedly connected to the upper cover 2, and hinges are installed on the upper cover 2 and the mixing box 1, so that the upper cover 2 can be rotated; an adding bucket 4 is installed on the upper end of the upper cover 2, and the adding bucket 4 is opposite to the mixing barrel 8, so that the added raw materials can fall into the mixing barrel 8.
[0041] Mixing mechanism; the mixing mechanism includes a base 13 installed at the bottom of the upper cover 2, a motor 11 is installed at the bottom of the base 13, a vertical tube 23 driven to rotate by the motor 11 is rotatably installed at the bottom of the base 13, a short shaft 29 is fixedly connected to the output end of the motor 11, a first gear 25 is installed on the short shaft 29, a second gear 28 is installed on the vertical tube 23, and the first gear 25 is meshed with the second gear 28.
[0042] The bottom of the vertical tube 23 is fixedly connected to a rectangular piston cylinder 12 which is in communication therewith, a rectangular movable piston 30 is slidably connected inside the rectangular piston cylinder 12, a spring 31 is fixed to the upper end of the rectangular movable piston 30, and the upper end of the spring 31 is fixedly connected to the inner top of the rectangular piston cylinder 12; a driving rod 19 is fixed to the bottom of the rectangular movable piston 30, a mounting block 20 is fixed to the bottom of the driving rod 19, and two V-shaped stirring teeth 21 are mounted on the mounting block 20.
[0043] A short tube 37 is rotatably connected to the inner bottom of the mixing box 1, a circular seat 18 is provided above the short tube 37, a mixing barrel 8 is installed on the upper end of the circular seat 18, a guide groove 32 distributed along the diameter direction is provided at the bottom of the circular seat 18, a guide block 35 is slidably connected in the guide groove 32, and the short tube 37 is fixedly installed at the bottom of the guide block 35.
[0044] A driving mechanism for driving the guide block 35 to move and connected to the short tube 37 is installed in the guide groove 32. The driving mechanism includes a first piston cylinder 33 fixed in the guide groove 32. A first movable piston 40 is slidably connected in the first piston cylinder 33. A driving tube 34 fixedly connected to the first movable piston 40 passes through the first movable piston 40. The driving tube 34 is fixedly connected to the guide block 35. The driving tube 34 is connected to the short tube 37. The guide block 35 moves to make the short tube 37 eccentric with the circular seat 18. When the short tube 37 rotates, the circular seat 18 and the mixing cylinder 8 rotate eccentrically.
[0045] It also includes a power mechanism for driving the short tube 37 to rotate, the power mechanism includes a second piston cylinder 16 installed on the inner wall of the mixing box 1, a second movable piston 17 is slidably connected in the second piston cylinder 16, a fixed rod 39 is fixedly connected to the second movable piston 17, a rack plate 38 is fixedly connected to the fixed rod 39, a transmission gear 36 is fixedly connected to the short tube 37, and the transmission gear 36 is meshed with the short tube 37.
[0046] It also includes an air supply mechanism for supplying air to the rectangular piston cylinder 12, the first piston cylinder 33, and the second piston cylinder 16. The air supply mechanism includes a vertical plate 9 fixed to the bottom of the upper cover 2, and a liquid supply piston cylinder 10 is installed on the vertical plate 9. The liquid supply piston cylinder 10 is connected to the vertical tube 23, the short tube 37 and the second piston cylinder 16 through a delivery pipe 15. The delivery pipe 15 is coaxially connected with the vertical tube 23 and the short tube 37, which can be achieved by a rotary joint; a liquid supply movable piston 22 is slidably connected in the liquid supply piston cylinder 10, and a connecting rod 14 is hingedly connected to the liquid supply movable piston 22. A reduction box 26 is installed on the base 13, and a circular plate 24 is installed on the upper shaft end of the reduction box 26. The connecting rod 14 is eccentrically hingedly connected to the upper end of the circular plate 24, and a third gear 27 is installed on the bottom shaft end of the reduction box 26, and the third gear 27 is meshed with the second gear 28.
[0047] The invention also discloses a method for using the automatic mixing sausage stuffing machine for low-fat and high-protein sausage food, which comprises the following steps:
[0048] S1, adding raw materials: adding raw materials into the mixing box 1 through the adding hopper 4, the raw materials fall into the mixing cylinder 8, and then starting the motor 11;
[0049] S2, the mixing cylinder 8 is offset: the motor 11 drives the short shaft 29 to rotate, thereby realizing the slow rotation of the first gear 25, the second gear 28, the third gear 27, and the circular plate 24. The rotation of the circular plate 24 drives the connecting rod 14 and the liquid supply movable piston 22 to move. When the liquid supply movable piston 22 moves away from the motor 11, the liquid supply movable piston 22 can deliver the hydraulic oil in the liquid supply piston cylinder 10 through the delivery pipe 15 to the first piston cylinder 33. The pressure in the first piston cylinder 33 increases and drives the first movable piston 40 to move. The movement of the first movable piston 40 drives the driving pipe 34 and the guide block 35 to move. Since the short tube 37 rotates in the mixing box 1, the first piston cylinder 33 and the circular seat 18 will move to one side, so that the short tube 37 is not coaxial with the circular seat 18.
[0050] S3, the stirring member rotates and moves: the motor 11 drives the short shaft 29 to rotate, the rotation of the short shaft 29 drives the first gear 25 to rotate, the rotation of the first gear 25 drives the second gear 28 to rotate, the rotation of the second gear 28 drives the vertical tube 23 to rotate, the rotation of the vertical tube 23 drives the rectangular piston cylinder 12, the rectangular movable piston 30 and the driving rod 19 to rotate, the rotation of the driving rod 19 drives the mounting block 20 and the two V-shaped stirring teeth 21 to rotate;
[0051] S4, the mixing cylinder 8 rotates: the hydraulic oil is delivered to the second piston cylinder 16 through the delivery pipe 15, the pressure in the second piston cylinder 16 increases to drive the second movable piston 17 to move, the movement of the second movable piston 17 drives the fixed rod 39 and the rack plate 38 to move, the movement of the rack plate 38 drives the transmission gear 36 to rotate, the rotation of the transmission gear 36 drives the short tube 37, the guide block 35 and the circular seat 18 to rotate, the rotation of the circular seat 18 drives the mixing cylinder 8 to rotate, so that the mixing cylinder 8 can be eccentrically rotated slowly;
[0052] S5, meat mixing: hydraulic oil is delivered to the rectangular piston cylinder 12 through the delivery pipe 15 and the vertical pipe 23. The pressure in the rectangular piston cylinder 12 increases, driving the rectangular movable piston 30 to move downward, thereby driving the driving rod 19, the mounting block 20 and the two V-shaped stirring teeth 21 to rotate and extend into the mixing cylinder 8, so as to stir the meat;
[0053] S6, meat filling: after the mixing is completed, the motor 11 is turned off, the electric push rod drives the negative pressure tube 7 to move into the mixing barrel 8, and the fan 5 is started. The fan 5 conveys the hydraulic oil through the feeding pipe 6, and the mixed meat filling can be sucked into the feeding pipe 6. Finally, the meat filling is conveyed to the sausage stuffer 3, and the sausage stuffer 3 can be used for enema.
[0054] When the present invention is used, raw materials are added into the mixing box 1 through the adding hopper 4, the raw materials fall into the mixing cylinder 8, and then the motor 11 is started;
[0055] The motor 11 drives the short shaft 29 to rotate, the rotation of the short shaft 29 drives the first gear 25 to rotate, the rotation of the first gear 25 drives the second gear 28 to rotate, the rotation of the second gear 28 drives the vertical tube 23 to rotate, the rotation of the vertical tube 23 drives the rectangular piston cylinder 12, the rectangular movable piston 30 and the driving rod 19 to rotate, the rotation of the driving rod 19 drives the mounting block 20 and the two V-shaped stirring teeth 21 to rotate;
[0056] The rotation of the second gear 28 drives the third gear 27 to rotate. The rotation of the third gear 27 drives the circular plate 24 to rotate slowly after being decelerated by the reduction box 26. The rotation of the circular plate 24 drives the connecting rod 14 and the liquid supply movable piston 22 to move. When the liquid supply movable piston 22 moves away from the motor 11, the liquid supply movable piston 22 can deliver the hydraulic oil in the liquid supply piston cylinder 10 through the delivery pipe 15; the hydraulic oil is delivered to the first piston cylinder 33 through the delivery pipe 15 and the short tube 37. The pressure in the first piston cylinder 33 increases and drives the first movable piston 40 to move. The movement of the first movable piston 40 drives the driving pipe 34 and the guide block 35 to move. Since the short tube 37 rotates in the mixing box 1, the first piston cylinder 33 and the circular seat 18 will move to one side, so that the short tube 37 is not coaxial with the circular seat 18.
[0057] The hydraulic oil is delivered to the second piston cylinder 16 through the delivery pipe 15. The pressure in the second piston cylinder 16 increases and drives the second movable piston 17 to move. The movement of the second movable piston 17 drives the fixed rod 39 and the rack plate 38 to move. The movement of the rack plate 38 drives the transmission gear 36 to rotate. The rotation of the transmission gear 36 drives the short tube 37, the guide block 35 and the circular seat 18 to rotate. The rotation of the circular seat 18 drives the mixing cylinder 8 to rotate, so that the mixing cylinder 8 can be rotated eccentrically and slowly.
[0058] At the same time, the hydraulic oil is delivered to the rectangular piston cylinder 12 through the delivery pipe 15 and the vertical pipe 23. The pressure in the rectangular piston cylinder 12 increases, driving the rectangular movable piston 30 to move downward, thereby driving the driving rod 19, the mounting block 20 and the two V-shaped stirring teeth 21 to rotate and extend into the mixing cylinder 8.
[0059] When the liquid supply moving piston 22 is reset, the mixing cylinder 8 can be reversed, and the V-shaped stirring teeth 21 rotate and move upward;
[0060] That is to say, when the V-shaped stirring teeth 21 rotate and extend into the mixing cylinder 8, the mixing cylinder 8 reciprocates, and the short tube 37 drives the coaxial rotation to the eccentric reciprocating rotation, so that the V-shaped stirring teeth 21 move up and down and rotate, and the meat filling in the eccentrically rotating mixing cylinder 8 can be fully stirred to ensure that the meat filling is fully mixed with various auxiliary materials, and the stirring and mixing efficiency is high and the mixing can be ensured to be uniform, so as to ensure the quality of the enema;
[0061] After the mixing is completed, the motor 11 is turned off, the electric push rod drives the negative pressure tube 7 to move into the mixing cylinder 8, and the fan 5 is started. The fan 5 delivers the hydraulic oil to the mixing cylinder through the feeding tube 6. At this time, the wind speed at the upper end of the negative pressure tube 7 is large and the pressure is small, and the wind speed at the bottom of the negative pressure tube 7 is small and the pressure is large. Therefore, the mixed meat filling can be sucked into the feeding tube 6 (Bernoulli principle), and finally the meat filling is delivered to the sausage stuffer 3, and the sausage can be enema through the sausage stuffer 3.
[0062] When it is necessary to clean the mixing barrel 8, the rectangular movable piston 30 moves upward due to the action of the spring 31, so that the V-shaped stirring teeth 21 are located above the mixing barrel 8, the feeding pipe 6 is separated from the fan 5, and the upper cover 2 is opened. At this time, the mixing barrel 8 is no longer blocked, so it can be cleaned.
[0063] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An automatic mixing sausage stuffer for low-fat and high-protein meat sausage food, comprising a mixing box (1) and a sausage stuffer (3), wherein the mixing box (1) is connected to the sausage stuffer (3), and characterized in that: The upper end of the mixing box (1) is hingedly connected to an upper cover (2), and an adding hopper (4) is installed on the upper end of the upper cover (2). A mixing mechanism is installed on the mixing box 1, and the mixing mechanism comprises a base (13) installed at the bottom of the upper cover (2), a motor (11) is installed at the bottom of the base (13), and a vertical pipe (23) driven to rotate by the motor (11) is rotatably installed at the bottom of the base (13), and a rectangular piston cylinder (12) connected to the vertical pipe (23) is fixedly connected to the bottom of the vertical pipe (23), and a rectangular movable piston (30) is slidably connected in the rectangular piston cylinder (12), and a driving rod (19) is fixed to the bottom of the rectangular movable piston (30), and a mounting block (20) is fixed to the bottom of the driving rod (19), and a mounting block (20) is installed on the mounting block (20). Two V-shaped stirring teeth (21) are provided. A short tube (37) is rotatably connected to the inner bottom of the mixing box (1). A circular seat (18) is provided above the short tube (37). A mixing barrel (8) is installed at the upper end of the circular seat (18). A guide groove (32) distributed along the diameter direction is provided at the bottom of the circular seat (18). A guide block (35) is slidably connected in the guide groove (32). The short tube (37) is fixedly installed at the bottom of the guide block (35). A driving mechanism for driving the guide block (35) to move and connected to the short tube (37) is installed in the guide groove (32). The guide block (35) moves to make the short tube (37) eccentric with the circular seat (18). When the short tube (37) rotates, the circular seat (18) and the mixing barrel (8) rotate eccentrically.
2. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 1, characterized in that: The upper cover (2) is provided with a fan (5), the air outlet end of the fan (5) is provided with a feed pipe (6), the feed pipe (6) is connected to the sausage enema machine (3), a negative pressure pipe (7) is provided at the bottom of the feed pipe (6), the negative pressure pipe (7) is arranged through the upper cover (2), and the negative pressure pipe (7) can extend into the mixing barrel (8).
3. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 1, characterized in that: The output end of the motor (11) is fixedly connected to a short shaft (29), a first gear (25) is mounted on the short shaft (29), a second gear (28) is mounted on the vertical pipe (23), and the first gear (25) is meshed with the second gear (28).
4. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 1, characterized in that: A spring (31) is fixed to the upper end of the rectangular movable piston (30), and the upper end of the spring (31) is fixedly connected to the inner top of the rectangular piston cylinder (12).
5. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 1, characterized in that: The driving mechanism comprises a first piston cylinder (33) fixed in a guide groove (32), a first movable piston (40) being slidably connected in the first piston cylinder (33), a driving tube (34) fixedly connected to the first movable piston (40) passing through the first movable piston (40), the driving tube (34) being fixedly connected to the guide block (35), and the driving tube (34) being connected to a short tube (37).
6. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 5, characterized in that: The invention also comprises a power mechanism for driving the short tube (37) to rotate, the power mechanism comprising a second piston cylinder (16) mounted on the inner wall of the mixing box (1), a second movable piston (17) being slidably connected inside the second piston cylinder (16), a fixed rod (39) being fixedly connected to the second movable piston (17), a rack plate (38) being fixedly connected to the fixed rod (39), a transmission gear (36) being fixedly connected to the short tube (37), and the transmission gear (36) being meshed with the short tube (37).
7. The automatic mixing sausage stuffing machine for low-fat and high-protein sausage food according to claim 6, characterized in that: The invention also comprises an air supply mechanism for supplying air to the rectangular piston cylinder (12), the first piston cylinder (33) and the second piston cylinder (16), wherein the air supply mechanism comprises a vertical plate (9) fixed to the bottom of the upper cover (2), a liquid supply piston cylinder (10) is installed on the vertical plate (9), and the liquid supply piston cylinder (10) is connected to the vertical pipe (23), the short pipe (37) and the second piston cylinder (16) through a delivery pipe (15), and a liquid supply piston cylinder (10) is slidably connected to the inside of the liquid supply piston cylinder (10). A liquid supply movable piston (22), the liquid supply movable piston (22) is hingedly connected to a connecting rod (14), a reduction box (26) is installed on the base (13), a circular plate (24) is installed on the upper shaft end of the reduction box (26), the connecting rod (14) is eccentrically hingedly connected to the upper end of the circular plate (24), a third gear (27) is installed on the bottom shaft end of the reduction box (26), and the third gear (27) is meshed with the second gear (28).
8. A method of using the automatic mixing sausage stuffer for low-fat and high-protein sausage food according to claim 1 is provided, characterized in that: The following steps are involved: S1, adding raw materials: adding raw materials into the mixing box (1) through the adding hopper (4), the raw materials fall into the mixing cylinder (8), and then starting the motor (11); S2, the mixing cylinder (8) is offset: the motor (11) drives the short shaft (29) to rotate, thereby realizing the slow rotation of the first gear (25), the second gear (28), the third gear (27), and the circular plate (24). The rotation of the circular plate (24) drives the connecting rod (14) and the liquid supply movable piston (22) to move. When the liquid supply movable piston (22) moves away from the motor (11), the liquid supply movable piston (22) can deliver the hydraulic oil in the liquid supply piston cylinder (10) through the delivery pipe (15) to the first piston cylinder (33). The pressure in the first piston cylinder (33) increases and drives the first movable piston (40) to move. The movement of the first movable piston (40) drives the driving pipe (34) and the guide block (35) to move. Since the short tube (37) rotates in the mixing box (1), the first piston cylinder (33) and the circular seat (18) will move to one side, so that the short tube (37) is not coaxial with the circular seat (18); S3, the stirring member rotates and moves: the motor (11) drives the short shaft (29) to rotate, the rotation of the short shaft (29) drives the first gear (25) to rotate, the rotation of the first gear (25) drives the second gear (28) to rotate, the rotation of the second gear (28) drives the vertical tube (23) to rotate, the rotation of the vertical tube (23) drives the rectangular piston cylinder (12), the rectangular movable piston (30) and the driving rod (19) to rotate, the rotation of the driving rod (19) drives the mounting block (20) and the two V-shaped stirring teeth (21) to rotate; S4, the mixing cylinder (8) rotates: the hydraulic oil is delivered to the second piston cylinder (16) through the delivery pipe (15), the pressure in the second piston cylinder (16) increases, driving the second movable piston (17) to move, the movement of the second movable piston (17) drives the fixed rod (39) and the rack plate (38) to move, the movement of the rack plate (38) drives the transmission gear (36) to rotate, the rotation of the transmission gear (36) drives the short tube (37), the guide block (35) and the circular seat (18) to rotate, the rotation of the circular seat (18) drives the mixing cylinder (8) to rotate, and the mixing cylinder (8) can be rotated eccentrically and slowly; S5, meat filling mixing: hydraulic oil is delivered to the rectangular piston cylinder (12) through the delivery pipe (15) and the vertical pipe (23), and the pressure in the rectangular piston cylinder (12) increases, driving the rectangular movable piston (30) to move downward, driving the driving rod (19), the mounting block (20) and the two V-shaped stirring teeth (21) to rotate and extend into the mixing cylinder (8), so as to stir the meat filling; S6, meat filling: after the mixing is completed, the motor (11) is turned off, the electric push rod drives the negative pressure tube (7) to move into the mixing barrel (8), the fan (5) is started, and the fan (5) delivers the hydraulic oil through the feeding pipe (6), so that the mixed meat filling is sucked into the feeding pipe (6), and finally the meat filling is delivered to the sausage stuffer (3), and the sausage stuffer (3) performs enema.
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