Rice rolling die and rice rolling machine thereof
By designing a rice rolling mold and a chain drive system, the problems of low efficiency and poor forming quality of existing rice rolling machines have been solved, achieving a high-efficiency and uniform leaf rolling effect for rice wrapped in grape leaves, which is suitable for automated production of rice rolling machines.
Patent Information
- Application Number
- CN202422692018.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-05
AI Technical Summary
Existing rice roll machines are inefficient and produce poor quality rice rolls wrapped in grape leaves, making mass production difficult.
Design a rice rolling mold, including a rice rolling inclined plate and a guide plate, setting a winding push rod and a rice rolling belt, and combining a chain drive system and a feeding device to realize continuous production of rolled rice.
It improves the production efficiency and forming quality of rice wrapped in grape leaves, ensures a uniform and beautiful rolled effect, prevents rice clumps from falling out, and realizes automated production.
Smart Images

Figure CN223626908U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a rice rolling machine technology field, and specifically is a rice rolling mould and rice rolling machine thereof. BACKGROUND
[0002] The rice rolling machine, also known as a rice rolling machine, is a food processing equipment for making rice rolls. Rice rolls are a popular food made with rice flour skin, wrapped with meat stuffing, vegetables and other food materials, soft and glutinous in taste, rich in nutrition, and very suitable for breakfast or snacks. According to the production scale and purpose, the rice rolling machine can be divided into household small rice rolling machine and commercial large rice rolling machine. The working principle of the rice rolling machine on the market usually involves the mixing, pressing, molding and cutting of rice flour. Specifically, a proper amount of rice flour and water are mixed uniformly and poured into the hopper of the rice rolling machine. Under the action of the machine, the rice flour is pressed into a thin sheet and processed through a series of molds and cutters, finally forming the shape of a rice roll. In order to improve the taste, in addition, rice ball wrapping leaf rolling products such as grape leaf wrapped rice rolls are also deeply loved by consumers. Therefore, our company has developed a grape leaf rice rolling machine (utility model patent CN212994247U), which includes a frame structure and an upper spiral conveying device, an automatic feeding device, an automatic rice rolling device and a conveying device arranged on the frame structure. The spiral conveying device includes a transmission motor, a transmission shaft, a conveying cage, and a material holding tank. The automatic feeding device includes a cylinder, a knife, and a feeding hopper feeding cylinder. The cylinder drives the knife to move up and down. The automatic rice rolling device includes a divider, a transmission motor, a synchronous pulley, a rotating disc, a former, a former slider, a guide block, a winding drum cylinder, and a guide groove. The grape leaf rice rolling machine provides high integration, high efficiency of grape leaf rice rolling, easy operation and convenient maintenance. However, during long-term use, it is found that the equipment not only has low efficiency, but also has large differences in quality after forming, making it difficult to be mass-produced and marketed. There is an urgent need for a rice rolling machine that can process grape leaf wrapped rice rolls, which wrap leaves outside the rice ball. SUMMARY
[0003] To solve the above problems, the purpose of the utility model is to provide a rice rolling mould and rice rolling machine thereof.
[0004] In order to achieve the above object, the technical scheme of the utility model is: a rolling rice mold, including rolling rice inclined plate and the guide plate of setting in both sides of rolling rice inclined plate, the guide plate of each side is opened respectively with the long strip shape guide groove in parallel with the inclined plane of rolling rice inclined plate, and the both ends of guide groove are bent upwards, the upper surface of rolling rice inclined plate is provided with the winding push rod of both ends in each side long strip shape guide groove, makes the winding push rod sliding support in the upper of rolling rice inclined plate, the rolling rice inclined plate of guide plate upper end leaves the blanking port, the surface of rolling rice inclined plate is provided with rolling rice belt, and the both ends of rolling rice belt are fixed between the guide plate below rolling rice inclined plate respectively, and the rolling rice belt on the surface of rolling rice inclined plate passes through winding push rod, and the belt body on the upper surface of rolling rice belt is concave and forms winding groove in winding push rod part downwards.
[0005] Further, the outer side of each side guide plate is further provided with a guide rod parallel to the inclined plane of the rolling rice inclined plate, and the two ends of the winding push rod are respectively fixed with guide sliders sleeved on the guide rods of each side.
[0006] Further, the outer side of the winding push rod is provided with a rotating roller for moving the winding push rod, the roller body on the outer side of the rotating roller is freely rotatable, the central fixed shaft of the rotating roller is vertically fixed on a push plate, and the two ends of the push plate are fixedly connected with the outer side surfaces of the guide sliders of each side, so that the rotating roller is perpendicular to the inclined plane of the rolling rice inclined plate.
[0007] Further, the upper and lower ends of the guide plate are fixedly connected through connecting plates.
[0008] A rolling rice machine comprises a frame body and a plurality of rolling rice molds as described above. The frame body is provided with a closed track, the two ends of the track are semicircular, and a freely rotatable gear turntable is arranged at the semicircular position. One side of the gear turntable is driven to rotate by a driving device. The two ends of a closed chain are sleeved on the gear turntables. Each rolling rice mold is fixed on a mold base plate driven to move by the chain. The bottom of each mold base plate is provided with a support pulley located in the inner and outer side slides of the track. One side of the frame body is provided with an upper rolling guide push plate located above the rolling rice inclined plate and inclinedly arranged in the inclined plane of the rotating roller. The lower end of the upper rolling guide push plate extends below the bottom rotating roller, and the upper end of the upper rolling guide push plate extends above the blanking port.
[0009] Further, the rolling rice machine further comprises a feeding device. The feeding device comprises a hopper and a stirring rod arranged in the bottom of the hopper. The rotating shaft of the stirring rod is driven to rotate by a speed reducer motor outside the hopper. The discharge port of the hopper is provided with an L-shaped blanking channel. The blanking channel is provided with an extrusion outlet at the bending position. The vertical part and the horizontal part of the blanking channel are respectively provided with extrusion push plates driven to move by air cylinders, and the extrusion outlet is located directly below the vertical extrusion push plate.
[0010] Further, a return guide push plate is arranged in the rear side frame body of the upper winding guide push plate, the return guide push plate is located in the same inclined plane as the upper winding guide push plate, the upper end of the return guide push plate extends above the top rotating roller, and the lower end of the return guide push plate extends above the bottom rotating roller.
[0011] Further, one side of the frame body is provided with a control cabinet for controlling the operation of the motor and the air cylinder.
[0012] Through the above arrangement, the present application has the following beneficial effects:
[0013] The surface of the rice winding inclined plate of the rice winding mold is provided with a rice winding belt, both ends of the rice winding belt are fixed between the guide plates below the rice winding inclined plate, the rice winding belt on the surface of the rice winding inclined plate passes through the winding push rod, and the belt body on the upper surface of the rice winding belt is recessed downward at the winding push rod part to form a winding groove, so that when the leaf is wound, the leaf is wound by the rice winding belt, not only the contact area is large and the friction force is large, but also the winding effect is better, and the rice ball can be effectively prevented from falling out, so that the effect and quality of the leaf winding rice can be fully guaranteed, and the appearance of the formed leaf winding rice is more uniform and beautiful.
[0014] The rice winding machine comprises a frame body and the plurality of rice winding molds, a closed track is arranged in the frame body, the two ends of a closed chain are sleeved on gear rotating discs, each rice winding mold is fixed on a mold bottom plate moved by the chain, the bottom of each mold bottom plate is provided with a supporting pulley located in the inner and outer side slides of the track, and an upper winding guide push plate located above the rice winding inclined plate is arranged on one side in the frame body, so that the plurality of rice winding molds are uniformly arranged in the frame body, and a closed circulating moving structure is formed, and a continuous leaf winding rice machine structure is formed, so that the production and processing efficiency can be effectively improved.
[0015] The present application further comprises a feeding device, the feeding device comprises a hopper and a stirring rod arranged in the bottom of the hopper, an extrusion outlet is arranged at the bending part of the discharging channel, extrusion push plates moved by air cylinders are arranged in the vertical part and the horizontal part of the discharging channel, and the extrusion outlet is located directly below the vertical extrusion push plate, so that the mixed rice ball raw materials in the hopper can be stirred and mixed, and the feeding device can effectively avoid material blockage and discharge more smoothly, and the processing efficiency of the leaf winding rice product can be effectively guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0016] The present application will be further described in combination with the drawings.
[0017] Figure 1 It is a front side three-dimensional structure schematic view of the embodiment 2 of the present application.
[0018] Figure 2It is the rear side three-dimensional structure schematic view of the embodiment 2 of the utility model;
[0019] Figure 3 It is the three-dimensional structure schematic view of the embodiment 1 of the utility model;
[0020] Figure 4 It is the cross section structure schematic view of the embodiment 1 of the utility model;
[0021] Figure 5 It is the overhead three-dimensional structure schematic view of the embodiment 2 of the utility model's material loading device;
[0022] Figure 6 It is the front side three-dimensional structure schematic view of the embodiment 2 of the utility model's material loading device;
[0023] Figure 7 It is the three-dimensional structure schematic view of the embodiment 2 of the utility model's upper winding guide push plate, return guide push plate part. SPECIFIC EMBODIMENT EMBODIMENT 1
[0024] As Figures 3-4 Shown, a kind of rice rolling mould, including rice rolling inclined plane 1 and the guide plate 2 being arranged in the both sides of rice rolling inclined plane 1, each side's guide plate 2 is respectively opened with the long strip-shaped guide slot 3 parallel with the inclined plane of rice rolling inclined plane 1, and the both ends of guide slot 3 are bent upwards, the upper surface of rice rolling inclined plane 1 is provided with two ends in each side long strip-shaped guide slot 3's winding push rod 4, so that winding push rod 4 is slidably supported in the upper of rice rolling inclined plane 1, and the lower outlet is left in the rice rolling inclined plane 1 between the upper end of guide plate 2, the surface of rice rolling inclined plane 1 is provided with rice rolling belt 10, rice rolling belt 10 is similar to belt structure, can be bent, and the both ends of rice rolling belt 10 are respectively fixed between the guide plate 2 below the lower side of rice rolling inclined plane 1, and rice rolling belt 10 on the surface of rice rolling inclined plane 1 passes through winding push rod 4, and the belt body on the upper surface of rice rolling belt 10 is recessed downward to form winding groove 26 in the part of winding push rod 4.
[0025] In order to guarantee the stability of winding push rod 4, the outer side of each side guide plate 2 is further provided with guide rod 5 parallel with the inclined plane of rice rolling inclined plane 1, the both ends of winding push rod 4 are respectively fixed with guide slider 6 sleeved on each side guide rod 5, the outer side of winding push rod 4 is provided with rotating roller 7 for pushing winding push rod 4 to move, the roller body of the outer side of rotating roller 7 can be freely rotated, the central fixed shaft of rotating roller 7 is vertically fixed on push plate 8, and the both ends of push plate 8 are fixedly connected with the outer side surface of each side guide slider 6, so that rotating roller 7 is perpendicular to winding push rod 4 of the inclined plane of rice rolling inclined plane 1, and the upper and lower ends of guide plate 2 are fixedly connected through connecting plate 9.
[0026] The working principle of this embodiment is as follows: When rolling rice, grape leaves are placed on the rice rolling strip 10 on the bottom surface of the rice rolling inclined plate 1, with the grape leaves closely attached to the winding groove 26, forming a groove structure for holding the rice ball. The rice ball is placed into the groove structure formed by the grape leaves, and then the rotating roller 7 is pushed, which pushes the winding push rod 4 to move upward along the rice rolling inclined plate 1. Since the rice rolling strip 10 on the surface of the rice rolling inclined plate 1 passes through the winding push rod 4, when the winding push rod 4 simultaneously drives the bottom winding groove 26 of the rice rolling strip 10 to move upward, the rice rolling strip 10 in the winding groove 26 on the upper side of the winding push rod 4 is equivalent to moving upward and outward during the movement, that is, the rice rolling strip 10 on the upper side of the winding push rod 4 continuously shortens, while the rice rolling strip 10 on the lower side of the winding push rod 4 moves downward, that is, the rice rolling strip 10 on the lower side of the winding push rod 4 continuously lengthens. In this way, the rice rolling strip 10 on both sides of the winding push rod 4 moves accordingly. Figure 4 As shown by the arrow, this causes the rice roll 10 in the winding groove 26 to move upward and outward during the movement, thereby causing the grape leaves to roll upward. Finally, the rolled grape leaves and rice fall through the feeding port left by the rice roll inclined plate 1 between the upper ends of the guide plate 2 under the pushing action. Example 2
[0027] like Figures 1-2 As shown in Figures 5-7, a rice rolling machine includes a frame 11 and multiple rice rolling molds as described in Embodiment 1. A closed track 12 is provided inside the frame 11. Both ends of the track 12 are semi-circular, and a freely rotatable gear turntable 13 is provided at the semi-circular part. One side of the gear turntable 13 is driven to rotate by a drive device. The two ends of a closed chain 14 are respectively sleeved on the gear turntable 13. Each rice rolling mold is fixed on a mold base plate 15 that is driven to move by the chain 14. The bottom of each mold base plate 15 is provided with a support pulley 16 located in the inner and outer slides of the track 12. An upper rolling guide push plate 17 is provided on one side inside the frame 11, located above the rice rolling inclined plate 1. The upper rolling guide push plate 17 is inclined within the inclined surface where the rotating roller 7 moves. The lower end of the upper rolling guide push plate 17 extends to the bottom of the bottom rotating roller 7, and the upper end of the upper rolling guide push plate 17 extends to the top of the feeding port.
[0028] To facilitate feeding, a feeding device is also included. The feeding device includes a hopper 18 and a stirring rod 19 set in the bottom of the hopper 18. The rotating shaft of the stirring rod 19 is driven to rotate by a reduction motor 20 on the outside of the hopper 18. The discharge port of the hopper 18 is provided with an L-shaped feeding channel 21. The feeding channel 21 is provided with an extrusion port 22 at the bend. The vertical and horizontal parts of the feeding channel 21 are respectively provided with extrusion push plates 23 that are driven to move by a cylinder, and the extrusion port 22 is located directly below the vertical extrusion push plate 23.
[0029] The rear side frame body 11 of the upper rolling guide push plate 17 is further provided with a return guide push plate 24, the return guide push plate 24 is located in the same inclined plane as the upper rolling guide push plate 17, and the upper end of the return guide push plate 24 extends above the top rotating roller 7, the lower end of the return guide push plate 24 extends above the bottom rotating roller 7, and one side of the frame body 11 is provided with a control cabinet 25 for controlling the operation of the motor and the air cylinder.
[0030] The working principle of the embodiment can be seen in combination with embodiment 1. The blades are placed, and only the dynamic rotating roller 7 needs to be pushed to move upward along the rice inclined plate 1 to realize rolling of the leaves. In the embodiment, each rolling rice mold is fixed on the mold bottom plate 15 driven by the chain 14 to move, and each rolling rice mold is driven by the driving device such as a motor to rotate the gear disc 13 to move along the track 12 in a cycle. When the corresponding rolling rice mold moves to the feeding device part, and the rolling groove 26 is located directly below the extrusion outlet 22, the rice ball enters the feeding channel 21, is first pushed by the horizontal extrusion push plate 23 through the horizontal air cylinder, moves to the vertical extrusion push plate 23 directly below, and then the vertical extrusion push plate 23 moves downward, so as to force the rice ball to be extruded out of the extrusion outlet 22 and fall onto the grape leaves of the rolling groove 26. When the corresponding rolling rice mold moves to the front end of the upper rolling guide push plate 17, the rotating roller 7 is inclined to the upper rolling guide push plate 17, and the upper rolling guide push plate 17 is inclined to set in the inclined plane of the rotating roller 7. Thus, the rotating roller 7 is inevitably pushed upward along the rice inclined plate 1, and the rolling of the leaves and the rice in the process of embodiment 1 is completed. The rolled product falls from the feeding port and falls onto the conveying belt at the bottom of the frame body 11 to be sent to the next process, so as to realize automatic extrusion of the rice ball, automatic rolling of the leaves and rice, and greatly improve the processing efficiency of the leaf rolling rice.
[0031] The above merely illustrates the specific implementation of the present application, and is not intended to limit the scope of the present application. Any equivalent changes and modifications made by those skilled in the art without departing from the concept and principles of the present application shall fall within the scope of the present application. The rotating pot body drives the internal material to rotate, the stirring rake is driven to rotate by the driving device to continuously stir the passing material, has the function of breaking large pieces of material, uniformly mixes the eggs and rice, and better stirs the passing material, so as to stir more evenly, and can especially prevent the pot from being burnt when frying rice and eggs.
Claims
1. A rolling mill, comprising a rolling slope (1) and guide plates (2) arranged on both sides of the rolling slope (1), characterized in that: The guide plate (2) of each side is provided with a long strip-shaped guide groove (3) parallel to the inclined surface of the winding inclined plate (1), and the two ends of the guide groove (3) are bent upwards. The upper surface of the winding inclined plate (1) is provided with a winding push rod (4) located in the long strip-shaped guide groove (3) of each side, so that the winding push rod (4) is slidingly supported above the winding inclined plate (1). The winding inclined plate (1) between the upper ends of the guide plates (2) is provided with a discharging port. The surface of the winding inclined plate (1) is provided with a winding belt (10), and the two ends of the winding belt (10) are fixed between the guide plates (2) below the winding inclined plate (1). The winding belt (10) on the surface of the winding inclined plate (1) passes through the winding push rod (4), and the belt body on the upper surface of the winding belt (10) is recessed downward at the winding push rod (4) to form a winding groove (26).
2. A roll molding tool as claimed in claim 1, characterized in that: The outer side of each side guide plate (2) is further provided with a guide rod (5) parallel to the inclined surface of the winding inclined plate (1), and the two ends of the winding push rod (4) are respectively fixed with a guide block (6) sleeved on each side guide rod (5).
3. A roll molding tool as claimed in claim 2, characterized in that: The outer side of the winding push rod (4) is provided with a rotating roller (7) for pushing the winding push rod (4) to move. The roller body on the outer side of the rotating roller (7) can rotate freely. The central fixed shaft of the rotating roller (7) is vertically fixed on the push plate (8). The two ends of the push plate (8) are fixedly connected with the outer side surface of each side guide block (6), so that the rotating roller (7) is perpendicular to the inclined surface of the winding inclined plate (1) and the winding push rod (4).
4. A roll molding tool as claimed in claim 1, characterized in that: The upper and lower ends of the guide plate (2) are fixedly connected through the connecting plate (9).
5. A rice rolling machine comprising a frame (11) and a plurality of the rice rolling molds of claim 3, characterized in that: The frame body (11) is provided with a closed track (12). The two ends of the track (12) are semicircular, and a gear turntable (13) that can rotate freely is arranged at the semicircular position. One side of the gear turntable (13) is driven to rotate by a driving device. The two ends of the closed chain (14) are sleeved on the gear turntable (13). Each winding mold is fixed on the mold base plate (15) driven to move by the chain (14). The bottom of each mold base plate (15) is provided with a supporting pulley (16) located in the inner and outer side slides of the track (12). One side of the frame body (11) is provided with an upper winding guide push plate (17) located above the winding inclined plate (1). The upper winding guide push plate (17) is inclinedly arranged in the inclined surface of the rotating roller (7). The lower end of the upper winding guide push plate (17) extends below the bottom rotating roller (7). The upper end of the upper winding guide push plate (17) extends above the discharging port.
6. A winding machine as claimed in claim 5, characterized in that: It also includes a feeding device. The feeding device includes a hopper (18) and a stirring rod (19) arranged in the bottom of the hopper (18). The rotating shaft of the stirring rod (19) is driven to rotate by a speed reducer motor (20) outside the hopper (18). The discharge port of the hopper (18) is provided with an L-shaped discharging channel (21). The discharging channel (21) is provided with an extrusion outlet (22) at the bending position. The vertical part and the horizontal part of the discharging channel (21) are respectively provided with an extrusion push plate (23) driven to move by a pneumatic cylinder. The extrusion outlet (22) is located directly below the vertical extrusion push plate (23).
7. A winding machine as claimed in claim 6, characterized in that: The rear side frame body (11) of the upper winding guide push plate (17) is further provided with a return guide push plate (24), the return guide push plate (24) is located in the same inclined plane as the upper winding guide push plate (17), and the upper end of the return guide push plate (24) extends above the top rotating roller (7), and the lower end of the return guide push plate (24) extends above the bottom rotating roller (7).
8. A winding machine as claimed in claim 7, characterized in that: One side of the frame body (11) is provided with a control cabinet (25) for controlling the operation of the motor and the cylinder.