Beverage producing and processing equipment
By introducing material separation and material pushing mechanisms into beverage production and processing equipment, the problems of incomplete sterilization or excessive sterilization caused by dense beverage bottles are solved, and uniform sterilization and efficient production are achieved.
Patent Information
- Application Number
- CN202510782972.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2025-08-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the spray pasteurization process of existing beverage production and processing equipment, the beverage bottles are too close, resulting in incomplete sterilization of some bottles or partial excessive sterilization, affecting product quality.
The beverage production and processing equipment including the first transmission component, the material separation mechanism and the material pushing mechanism are adopted to adjust the distance between the beverage bottles through the cylinder-driven material separation mechanism, and ensure the orderly arrangement of the beverage bottles through the scissor mechanism and the material pushing mechanism to avoid dense placement.
It achieves uniform sterilization of beverage bottles, improves product quality, and improves production efficiency and consistency.
Smart Images

Figure CN120458142A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of beverage production, and specifically discloses beverage production and processing equipment. Background Art
[0002] A beverage production line is a series of processes that transform raw materials into finished beverages. This process involves multiple steps, including raw material processing, batching, mixing, homogenization, sterilization, filling, packaging, and inspection. The spray pasteurizer used in beverage production is a device that combines pasteurization and spraying technology. It is mainly used to kill harmful microorganisms in beverages while preserving the nutritional content and flavor of the beverages. The spray pasteurizer transports the beverage bottles into the interior of the device and then uses spray technology to spray high-temperature water or steam directly onto the surface of the beverage bottles. By precisely controlling the temperature of the heating medium, the beverage bottles are kept at the appropriate temperature for a period of time to achieve the sterilization effect. This sterilization method can evenly cover the surface of the beverage bottle, ensuring that every part is effectively sterilized.
[0003] In the spray pasteurization process of existing beverage production and processing equipment, the beverage bottles are too close together and the spacing between the beverage bottles cannot be effectively adjusted. As a result, during the sterilization process, the beverage bottles are placed too densely, resulting in incomplete sterilization of some bottles or local over-sterilization, affecting product quality. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to propose a beverage production and processing equipment to solve the problem in the existing technology that during the spray pasteurization process, the beverage bottles are too close to each other and the spacing between the beverage bottles cannot be effectively adjusted, resulting in the beverage bottles being placed too densely during the sterilization process, resulting in incomplete sterilization of some bottles or local over-sterilization, affecting product quality.
[0005] To achieve the above objectives, the present invention provides a beverage production and processing equipment, including a sterilization equipment, wherein a first transmission component is arranged inside the sterilization equipment, support plates are installed inside the sterilization equipment and on both sides of the first transmission component, a dividing mechanism is arranged above the first transmission component, the dividing mechanism is located between the two support plates, and the dividing mechanism is used to adjust the spacing between beverage bottles, a second transmission component is arranged at the front end of the sterilization equipment, and a pushing mechanism is arranged above the second transmission component, and the pushing mechanism is used to push the beverage bottles to the surface of the first transmission component and make the beverage bottles cooperate with the dividing mechanism.
[0006] In the above technical solution, preferably, the surface of the support plate is penetrated by a sliding groove, a movable rod is slidingly provided inside the sliding groove, a slide is slidably installed above the sliding groove, the top of the movable rod movably passes through the slide, the top ends of the two movable rods are fixedly connected to the main plate, a first spring is installed on the surface of the movable rod and between the main plate and the slide, a fixed frame is fixedly connected to the bottom of the main plate, three light rods are evenly installed inside the fixed frame, a plurality of rectangular blocks are slidably installed on the surface of the light rod, a collection frame is fixedly installed at the front end of the rectangular block, and a scissors mechanism is connected between the plurality of rectangular blocks.
[0007] In the above technical solution, preferably, a first cylinder is arranged inside the sterilization equipment and below the first transmission component, the output end of the first cylinder is connected to a driving block, the surfaces of the two movable rods near the bottom are connected to a cross bar, and a guide rod is fixedly installed at the middle end of the bottom of the cross bar, and the guide rod is movably inserted into the driving block.
[0008] In the above technical solution, preferably, a pushing column is installed on the surface of the rectangular block on the most side, and the pushing column moves through the fixed frame. A second tension spring is provided on the surface of the pushing column and between the rectangular block on the most side and the fixed frame. A protruding platform is installed on the adjacent surfaces of the two support plates, and the protruding platform is at the front end of the sliding groove, and the protruding platform is connected to the support plate through an inclined surface.
[0009] In the above technical solution, preferably, the support plate is installed with a side plate by bolts at one end away from the first transmission component, and a path groove is provided on the surface of the side plate, and the path groove includes a first inclined groove, a horizontal groove and a second inclined groove, and the first inclined groove, the horizontal groove and the second inclined groove are connected in sequence, and the first inclined groove is at the front end, and an opening is provided at the bottom of the front end of the first inclined groove, and a boss is provided on the surface of the movable rod near the bottom end, and the surface of the boss is slidably installed in the path groove.
[0010] In the above technical solution, preferably, semicircular grooves are provided on both sides of the driving block, and the bottom surface of the movable rod is slidably installed in the semicircular grooves.
[0011] In the above technical solution, preferably, an opening is provided on the surface of the second transmission component, the opening corresponds to the first transmission component, a light panel is connected between the opening and the first transmission component, a through groove is provided below the first transmission component, a drag platform is installed on the side of the through groove away from the first transmission component, the pushing mechanism includes a second cylinder, the second cylinder is fixedly installed on the surface of the drag platform, the output end of the second cylinder is connected to a displacement frame, the top of the displacement frame is fixedly connected to a pushing plate, the pushing plate is movably installed in the opening, and the bottom end of the displacement frame is movably set in the through groove.
[0012] In the above technical solution, preferably, an L-shaped contact plate is fixedly installed at the bottom end of the displacement frame, a groove is provided at the front end inside the sterilization equipment, an L-shaped slider is slidably installed inside the groove, a triangular block is provided on the surface of the L-shaped slider, the triangular block cooperates with the cross bar, the L-shaped contact plate corresponds to the L-shaped slider, a third spring is provided inside the groove, and the end of the third spring is connected to the L-shaped slider.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] Through the action of the first cylinder, the movement of the driving block can be actively and accurately controlled, thereby driving the movement of the crossbar, the movable rod, and the main plate connected to the movable rod, so that the material distribution mechanism can move flexibly in the sterilization equipment. In the process of movement, the spacing between the beverage bottles is automatically adjusted by the scissor mechanism, avoiding the problem of incomplete sterilization of some bottles or local over-sterilization due to the bottles being placed too densely, ensuring that all beverage bottles can receive uniform and appropriate sterilization treatment, thereby improving the overall quality of the product.
[0015] The L-shaped contact plate in the pushing mechanism cooperates with the L-shaped slider at the front end of the sterilization device. During the pushing process, the triangular block squeezes the crossbar to move the collection frame from the bottle mouth to the bottle body. This can effectively prevent the bottles from tilting after being pushed, ensuring that the bottles are arranged in order inside each collection frame, making subsequent sterilization more uniform.
[0016] Through the coordinated work of multiple components and mechanisms, the device realizes the automated process of beverage bottle transmission, material distribution, sterilization and discharge, reduces manual intervention, and improves production efficiency and consistency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic structural diagram of the sterilization equipment of the present invention;
[0018] Figure 2 It is a schematic structural diagram of the first transmission component and the second transmission component of the present invention;
[0019] Figure 3 This is a structural schematic diagram of the first transmission component and the second transmission component from another perspective of the present invention;
[0020] Figure 4 It is a structural schematic diagram of the material pushing mechanism of the present invention;
[0021] Figure 5 This is a schematic structural diagram of the first transmission component of the present invention;
[0022] Figure 6 It is a structural schematic diagram of the material distribution mechanism of the present invention;
[0023] Figure 7 This is a schematic diagram of the internal structure of the material distribution mechanism of the present invention;
[0024] Figure 8 For the present invention Figure 7 Enlarged view of point A in the middle.
[0025] In the figure: 1. Sterilization equipment; 2. First transmission component; 3. Support plate; 4. Material distribution mechanism; 5. Side plate; 6. Path groove; 7. Sliding groove; 8. Main plate; 9. Movable rod; 10. Slide plate; 11. Driving block; 12. Cross bar; 13. Guide rod; 14. Semicircular groove; 15. First cylinder; 16. Fixed frame; 17. Polish rod; 18. Rectangular block; 19. Collecting frame; 20. Scissor mechanism; 21. Push column; 22. Second tension spring; 23. Second transmission component; 24. Pushing mechanism; 25. Polish panel; 26. Opening; 27. Through groove; 28. Drag platform; 29. Second cylinder; 30. Displacement frame; 31. Pushing plate; 32. L-shaped contact plate; 33. Groove; 34. L-shaped slider; 35. First inclined groove; 36. Horizontal groove; 37. Second inclined groove. DETAILED DESCRIPTION
[0026] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0027] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0028] like Figures 1-8The beverage production and processing equipment shown includes a sterilization device 1, a first transmission component 2 is provided inside the sterilization device 1, support plates 3 are installed inside the sterilization device 1 and on both sides of the first transmission component 2, a dividing mechanism 4 is provided above the first transmission component 2, the dividing mechanism 4 is between the two support plates 3, and the dividing mechanism 4 is used to adjust the spacing between beverage bottles, a second transmission component 23 is provided at the front end of the sterilization device 1, and a pushing mechanism 24 is provided above the second transmission component 23, and the pushing mechanism 24 is used to push the beverage bottles to the surface of the first transmission component 2 and make the beverage bottles cooperate with the dividing mechanism 4. Under the action of the dividing mechanism 4, the dividing mechanism 4 can adjust the spacing between the beverage bottles during the movement inside the sterilization device 1, so as to avoid the problem of incomplete sterilization of some bottle bodies or local over-sterilization due to too dense placement of beverage bottles. Under the action of the pushing mechanism 24, the beverage bottles can be pushed into the dividing mechanism 4 to ensure that the beverage bottles are arranged in order in each dividing mechanism 4, so that the subsequent sterilization is more uniform.
[0029] The surface of the support plate 3 is penetrated by a sliding groove 7, and a movable rod 9 is slidingly provided inside the sliding groove 7. A slide plate 10 is slidably installed above the sliding groove 7, and the top of the movable rod 9 movably penetrates the slide plate 10. The top ends of the two movable rods 9 are fixedly connected to the main plate 8. A first spring is installed on the surface of the movable rod 9 and between the main plate 8 and the slide plate 10. The bottom of the main plate 8 is fixedly connected to a fixed frame 16, and three light rods 17 are evenly installed inside the fixed frame 16. A plurality of rectangular blocks 18 are slidably installed on the surface of the light rod 17, and a collection frame 19 is fixedly installed at the front end of the rectangular block 18. A scissor machine is connected between the plurality of rectangular blocks 18 Structure 20, the scissor-fork mechanism 20 is a planar connecting rod mechanism with good foldability and spatial stretchability. It is an existing mature component and will not be elaborated on here. After the beverage bottles are transferred to the interior of the collection frame 19, the scissor-fork mechanism 20 can expand the distance between the multiple rectangular blocks 18, and then the distance between the multiple collection frames 19 will also be expanded, so that the distance between the beverage bottles can be automatically adjusted, which effectively avoids the problem of incomplete sterilization or local over-sterilization of some bottle bodies due to too dense placement of beverage bottles, ensuring that all beverage bottles can be sterilized evenly and appropriately, thereby improving the overall quality of the product.
[0030] A first cylinder 15 is provided inside the sterilization equipment 1 and below the first transmission component 2. The output end of the first cylinder 15 is connected to the driving block 11. The surfaces of the two movable rods 9 near the bottom are connected to the cross bar 12. The middle end of the bottom of the cross bar 12 is fixedly installed with a guide rod 13, and the guide rod 13 is movably inserted in the driving block 11. Through the action of the first cylinder 15, the movement of the driving block 11 can be actively and accurately controlled, thereby driving the movement of the cross bar 12, the movable rod 9 and the main plate 8 connected to the movable rod 9, so that the dividing mechanism 4 can be flexibly moved in the sterilization equipment 1. The dividing mechanism 4 can work in the process of the beverage bottles being transported by the first transmission component 2, without interrupting the transmission process to perform the dividing operation, thereby shortening the single processing cycle.
[0031] A push column 21 is installed on the surface of the most side rectangular block 18, and the push column 21 moves through the fixed frame 16. A second tension spring 22 is provided on the surface of the push column 21 and between the most side rectangular block 18 and the fixed frame 16. A protruding platform is installed on the adjacent surfaces of the two support plates 3. The protruding platform is at the front end of the sliding groove 7, and the protruding platform is connected to the support plate 3 through an inclined surface. When the fixed frame 16 is at the front end of the first transmission component 2, the end of the push column 21 rests on the surface of the protruding platform, and the push column 21 will drive the most side rectangular block 18 to the fixed frame 16 The center of the frame 16 is moved, and then the other rectangular blocks 18 are driven to move through the linkage of the scissor-fork mechanism 20, so that the spacing between the collection frames 19 is reduced to the minimum spacing. When the fixed frame 16 moves toward the rear of the first transmission component 2, the push column 21 moves backward synchronously, and the push column 21 moves out of the protruding platform area. At this time, under the action of the second tension spring 22, the rectangular block 18 on the most side will be moved toward the side of the fixed frame 16 by the tension of the second tension spring 22, and the other rectangular blocks 18 are driven to move through the linkage of the scissor-fork mechanism 20, so that the spacing between the collection frames 19 is expanded.
[0032] The end of the support plate 3 away from the first transmission component 2 is fixed with a side plate 5 by bolts. The surface of the side plate 5 is provided with a path groove 6. The path groove 6 includes a first inclined groove 35, a horizontal groove 36 and a second inclined groove 37. The first inclined groove 35, the horizontal groove 36 and the second inclined groove 37 are connected in sequence, and the first inclined groove 35 is at the front end. The bottom of the front end of the first inclined groove 35 is provided with an opening. The surface of the movable rod 9 near the bottom end is provided with a boss. The surface of the boss is slidably installed in the path groove 6. When the boss is at the top of the first inclined groove 35 , the first spring is in a semi-compressed state, at this time the collection frame 19 is at the bottle mouth of the beverage bottle, when the first transmission component 2 starts to transport the beverage bottle, the first cylinder 15 drives the distributing mechanism 4 to move synchronously to the inside of the sterilization device 1 through the driving block 11, and the protruding column on the movable rod 9 moves from the first inclined groove 35 at the front end of the path groove 6 to the horizontal groove 36. As the distributing mechanism 4 continues to move, the protruding column will slide downward along the first inclined groove 35, the first spring will gradually compress, and the collection frame 19 will gradually descend to the bottle body of the beverage bottle. At the same time, the push column 2 1 will also gradually move out of the protruding platform area. After the protruding column moves to the horizontal groove 36, the material distribution mechanism 4 continues to move on the first transmission component 2, and the protruding column slides in the horizontal groove 36. The horizontal groove 36 can keep the position of the protruding column relatively stable. At the same time, the pushing column 21 is completely moved out of the protruding platform area. Under the action of the second tension spring 22, the rectangular block 18 on the most side moves toward the side of the fixed frame 16 through the tension of the second tension spring 22. Through the linkage of the scissor mechanism 20, the other rectangular blocks 18 are driven to move, and the spacing between the collecting frames 19 is expanded. When the boss slides in the horizontal groove 36, the beverage bottles can be dispersed to avoid dense placement. When the beverage bottles are sterilized, the dividing mechanism 4 continues to move backward, and the boss enters the second inclined groove 37 from the horizontal groove 36. The boss slides upward along the second inclined groove 37, so that the movable rod 9 drives the main plate 8 to move upward, and the main plate 8 simultaneously drives the fixed frame 16 to move upward. At this time, the collecting frame 19 will move to the top of the beverage bottles, and the beverage bottles can be moved out of the dividing mechanism 4 through the first transmission component 2, and finally removed from the sterilization equipment 1.
[0033] Semicircular grooves 14 are provided on both sides of the driving block 11, and the bottom surface of the movable rod 9 is slidably installed in the semicircular grooves 14. The semicircular grooves 14 limit the lateral displacement of the movable rod 9, so that the movable rod 9 is always in the correct position, preventing it from offsetting or shaking during movement. This helps to maintain the structural stability of the entire material distribution mechanism 4, thereby ensuring the accuracy of the material distribution action.
[0034] An opening 26 is provided on the surface of the second transmission component 23, and the opening 26 corresponds to the first transmission component 2. A light panel 25 is connected between the opening 26 and the first transmission component 2. A through groove 27 is provided below the first transmission component 2, and a drag platform 28 is installed on the side of the through groove 27 away from the first transmission component 2. The pushing mechanism 24 includes a second cylinder 29, and the second cylinder 29 is fixedly mounted on the surface of the drag platform 28. The output end of the second cylinder 29 is connected to a displacement frame 30, and the top of the displacement frame 30 is fixedly connected to a pushing plate 31, which is movably mounted in the opening 26, and the bottom end of the displacement frame 30 is movably set in the through groove 27. The second cylinder 29 is in an initial state, and the pushing plate 31 is located in front of the opening 26. The beverage bottle is Under the action of the air cylinder 29, the bottles are arranged and transported to the position of the opening 26. The second cylinder 29 is started, and its output end extends, driving the displacement frame 30 to move along the through groove 27 toward the first transmission component 2. Since the top of the displacement frame 30 is fixedly connected to the push plate 31, the push plate 31 moves synchronously in the opening 26, thereby pushing the beverage bottles on the second transmission component 23 to pass through the light panel 25 and smoothly reach the surface of the first transmission component 2. Then, under the action of the first transmission component 2, the arranged beverage bottles can be respectively transported to the inside of multiple collection frames 19 and move toward the inside of the collection frame 19. After the beverage bottles are pushed, the output end of the second cylinder 29 retracts, driving the displacement frame 30 and the push plate 31 to move in the opposite direction along the through groove 27 and return to the initial position to prepare for the next pushing.
[0035] An L-shaped contact plate 32 is fixedly installed at the bottom end of the displacement frame 30, and a groove 33 is opened at the front end inside the sterilization equipment 1, and an L-shaped slider 34 is slidably installed inside the groove 33. A triangular block is provided on the surface of the L-shaped slider 34, and the triangular block cooperates with the cross bar 12. The L-shaped contact plate 32 corresponds to the L-shaped slider 34, and a third spring is provided inside the groove 33. The end of the third spring is connected to the L-shaped slider 34. When the second cylinder 29 starts to push the displacement frame 30 forward, the L-shaped contact plate 32 fixed at the bottom end of the displacement frame 30 moves forward synchronously. After the beverage bottle is pushed to the surface of the light panel 25, the L-shaped contact plate 32 contacts the L-shaped slider 34. After the beverage bottle moves to the inside of the collection frame 19 through the first transmission component 2, the third The second cylinder 29 continues to push the displacement frame 30 to move. The L-shaped contact plate 32 can now push the L-shaped slider 34 to slide in the groove 33 toward the rear of the device. During the forward sliding of the L-shaped slider 34, the triangular blocks on its surface cooperate with the cross bar 12. The triangular blocks have a squeezing effect on the cross bar 12. Since the cross bar 12 connects the two movable rods 9, it drives the movable rod 9 to slide downward, so that the collection frame 19 will also move downward. The collection frame 19 will move from the bottle mouth of the beverage bottle to the bottle body of the beverage bottle, which can effectively prevent the beverage bottle from being skewed after being pushed, and ensure that the beverage bottles are arranged in order inside each collection frame 19. This is especially important for the subsequent sterilization process. Neatly arranged beverage bottles can make sterilization more uniform and improve the overall quality of the product.
[0036] Working principle: First, the beverage bottles are arranged and transported to the position of the opening 26 under the action of the second transmission component 23. At this time, the second cylinder 29 is in the initial state, and the push plate 31 is located in front of the opening 26. The second cylinder 29 is started, and its output end extends, driving the displacement frame 30 to move along the through groove 27 toward the first transmission component 2. The push plate 31 moves synchronously in the opening 26, pushing the beverage bottles located on the second transmission component 23 to pass through the light panel 25 and smoothly reach the surface of the first transmission component 2. Under the action of the first transmission component 2, the arranged beverage bottles can be respectively transported to the inside of multiple collection frames 19 and move toward the inside of the collection frame 19. After the beverage bottles are pushed, the output end of the second cylinder 29 retracts, driving the displacement frame 30 and the push plate 31 moves in the opposite direction along the through groove 27 and returns to the initial position to prepare for the next pushing. Then, when the boss is at the top of the first inclined groove 35 in the path groove 6, the first spring is in a semi-compressed state. At this time, the collection frame 19 is at the bottle mouth of the beverage bottle, and the first transmission component 2 starts to convey the beverage bottle. The first cylinder 15 drives the distributing mechanism 4 to move synchronously into the sterilization equipment 1 through the driving block 11. The boss on the movable rod 9 moves from the first inclined groove 35 at the front end of the path groove 6 to the horizontal groove 36. As the distributing mechanism 4 continues to move, the boss will slide downward along the first inclined groove 35, the first spring will gradually compress, and the collection frame 19 will gradually descend to the bottle body of the beverage bottle. At the same time, when the fixed frame 16 is at the front end of the first transmission component 2, it pushes The end of the column 21 rests on the surface of the protruding platform, and the pushing column 21 will drive the most side rectangular block 18 to move toward the center of the fixed frame 16, and then drive the other rectangular blocks 18 to move through the linkage of the scissor mechanism 20, and shrink the spacing between the collection frames 19 to the minimum spacing. Then, after the protruding column moves to the horizontal groove 36, the material distribution mechanism 4 continues to move on the first transmission component 2, and the protruding column slides in the horizontal groove 36. The horizontal groove 36 can keep the position of the protruding column relatively stable. At the same time, the pushing column 21 is completely moved out of the protruding platform area. Under the action of the second tension spring 22, the most side rectangular block 18 moves toward the side of the fixed frame 16 through the tension of the second tension spring 22, and drives the other rectangular blocks 18 to move through the linkage of the scissor mechanism 20, and shrinks the spacing between the collection frames 19 to the minimum spacing. The spacing between the bottles is enlarged, thereby dispersing the beverage bottles to avoid dense placement. After the dividing mechanism 4 adjusts the spacing between the beverage bottles, the beverage bottles are sterilized in the sterilization equipment 1 to avoid the problem of incomplete sterilization or over-sterilization due to dense placement, ensuring that all beverage bottles can be sterilized evenly and appropriately. In the next step, when the beverage bottles are sterilized, the dividing mechanism 4 continues to move backward, and the protruding column enters the second inclined groove 37 from the horizontal groove 36. The protruding column slides upward along the second inclined groove 37, so that the movable rod 9 drives the main plate 8 to move upward, and the main plate 8 simultaneously drives the fixed frame 16 to move upward. At this time, the collecting frame 19 will move to the top of the beverage bottle, and the beverage bottle can be moved out of the dividing mechanism 4 through the first transmission component 2, and finally removed from the sterilization equipment 1.
[0037] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. Various changes and improvements are possible without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the invention as claimed.
Claims
1. A beverage production and processing device, comprising a sterilization device (1), characterized in that: A first transmission component (2) is provided inside the sterilization device (1), support plates (3) are installed inside the sterilization device (1) and on both sides of the first transmission component (2), a material separation mechanism (4) is provided above the first transmission component (2), the material separation mechanism (4) is located between the two support plates (3), and the material separation mechanism (4) is used to adjust the spacing between beverage bottles, a second transmission component (23) is provided at the front end of the sterilization device (1), a pushing mechanism (24) is provided above the second transmission component (23), and the pushing mechanism (24) is used to push the beverage bottles to the surface of the first transmission component (2) and make the beverage bottles cooperate with the material separation mechanism (4).
2. The beverage production and processing equipment according to claim 1, characterized in that: The surface of the support plate (3) is provided with a sliding groove (7), the interior of the sliding groove (7) is provided with a movable rod (9) for sliding, a slide plate (10) is slidably installed above the sliding groove (7), the top of the movable rod (9) is movable and passes through the slide plate (10), the top ends of the two movable rods (9) are fixedly connected with a main plate (8), a first spring is installed on the surface of the movable rod (9) and between the main plate (8) and the slide plate (10), the bottom of the main plate (8) is fixedly connected with a fixed frame (16), three light rods (17) are evenly installed inside the fixed frame (16), a plurality of rectangular blocks (18) are slidably installed on the surface of the light rod (17), a collection frame (19) is fixedly installed at the front end of the rectangular block (18), and a scissor mechanism (20) is connected between the plurality of rectangular blocks (18).
3. The beverage production and processing equipment according to claim 2, characterized in that: A first cylinder (15) is provided inside the sterilization device (1) and below the first transmission component (2); the output end of the first cylinder (15) is connected to a driving block (11); the surfaces of the two movable rods (9) near the bottom are connected to a cross bar (12); a guide rod (13) is fixedly installed at the middle end of the bottom of the cross bar (12); and the guide rod (13) is movably inserted into the driving block (11).
4. The beverage production and processing equipment according to claim 3, characterized in that: A push column (21) is installed on the surface of the rectangular block (18) at the most side, and the push column (21) is movable through the fixed frame (16). A second tension spring (22) is provided on the surface of the push column (21) and between the rectangular block (18) at the most side and the fixed frame (16). A protruding platform is installed on the adjacent surfaces of the two support plates (3), and the protruding platform is located at the front end of the sliding groove (7), and the protruding platform is connected to the support plate (3) through an inclined surface.
5. The beverage production and processing equipment according to claim 3, characterized in that: The end of the support plate (3) away from the first transmission component (2) is mounted with a side plate (5) by means of bolts, and a path groove (6) is provided on the surface of the side plate (5), and the path groove (6) includes a first inclined groove (35), a horizontal groove (36) and a second inclined groove (37), the first inclined groove (35), the horizontal groove (36) and the second inclined groove (37) are connected in sequence, and the first inclined groove (35) is at the front end, and an opening is provided at the bottom of the front end of the first inclined groove (35), and a boss is provided on the surface of the movable rod (9) near the bottom end, and the surface of the boss is slidably mounted in the path groove (6).
6. The beverage production and processing equipment according to claim 3, characterized in that: Semicircular grooves (14) are provided on both sides of the driving block (11), and the bottom surface of the movable rod (9) is slidably mounted in the semicircular grooves (14).
7. The beverage production and processing equipment according to claim 3, characterized in that: The surface of the second transmission component (23) is provided with an opening (26), the opening (26) corresponds to the first transmission component (2), a light panel (25) is connected between the opening (26) and the first transmission component (2), a through groove (27) is provided below the first transmission component (2), a drag platform (28) is installed on the side of the through groove (27) away from the first transmission component (2), the pushing mechanism (24) includes a second cylinder (29), the second cylinder (29) is fixedly installed on the surface of the drag platform (28), the output end of the second cylinder (29) is connected to a displacement frame (30), the top of the displacement frame (30) is fixedly connected to a pushing plate (31), the pushing plate (31) is movably installed in the opening (26), and the bottom end of the displacement frame (30) is movably set in the through groove (27).
8. The beverage production and processing equipment according to claim 7, characterized in that: An L-shaped contact plate (32) is fixedly installed at the bottom end of the displacement frame (30), a groove (33) is provided at the front end inside the sterilization device (1), an L-shaped slider (34) is slidably installed inside the groove (33), a triangular block is provided on the surface of the L-shaped slider (34), the triangular block cooperates with the cross bar (12), the L-shaped contact plate (32) corresponds to the L-shaped slider (34), a third spring is provided inside the groove (33), and the end of the third spring is connected to the L-shaped slider (34).