Vegetable mincing and dehydrating all-in-one machine
The integrated vegetable mincing and dehydration machine design enables automatic scraping of inner wall debris and direct dehydration during the vegetable mincing process, solving the problems of low efficiency and uneven dehydration in vegetable mincing machines, and improving operational safety and efficiency.
Patent Information
- Application Number
- CN202511377543.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2025-12-12
AI Technical Summary
Existing vegetable grinders cause vegetable fragments to splatter and adhere to the inner wall during the grinding process, requiring manual cleaning, which reduces efficiency and poses safety hazards. Furthermore, the dehydration process is time-consuming, labor-intensive, and uneven, affecting the quality of the filling.
Design a vegetable mincing and dehydrating integrated machine, which includes a vegetable mincing component and a dehydrating component. The vegetable mincing component scrapes off the inner wall of the vegetable and directly conveys it to the dehydrating drum, where the dehydrating component performs automatic dehydration.
It improves the efficiency of vegetable grinding, avoids the safety hazards of manual cleaning, simplifies the operation process, and ensures the uniformity and efficiency of dehydration.
Smart Images

Figure CN121103486A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a vegetable shredding and dehydrating integrated machine capable of shredding and dehydrating vegetables, belonging to the technical field of vegetable processing, in particular to a vegetable shredding machine with a dehydration function, which can shred vegetables through a vegetable shredding assembly and simultaneously scrape off vegetable debris attached to the inner wall of the vegetable shredding cylinder, directly conveying the vegetables to the dehydration cylinder through a vegetable conveying port to reduce secondary handling, and then dehydrating the vegetable pieces through a dehydration assembly. BACKGROUND
[0002] In breakfast restaurants, freshly made steamed buns are favored by consumers for their freshness and superior taste. Compared with pre-made or frozen steamed buns, freshly made steamed buns not only provide a better eating experience, but also greatly enhance consumers' trust and confidence in food safety due to the transparency of the production process. Therefore, many steamed bun shops use freshly made steamed buns by hand. Given the large daily production of steamed buns in steamed bun shops, a vegetable shredding machine is an indispensable device in the preparation of vegetable fillings. Currently, there are two types of vegetable shredding machines on the market: small and large. Small vegetable shredding machines only have shredding function and cannot dehydrate, while large vegetable shredding machines can complete shredding and dehydration at the same time, but their high cost and large size make them unsuitable for breakfast restaurants with limited space. Therefore, most steamed bun shops choose to use small vegetable shredding machines. However, small vegetable shredding machines have certain drawbacks during use. During the shredding process, vegetable pieces are splashed to the surrounding area and adhere to the inner wall of the vegetable shredding machine due to the centrifugal force of the blades. The vegetable debris on the inner wall of the vegetable shredding machine needs to be scraped out manually after the machine stops, which not only reduces the efficiency of the vegetable shredding process but also may injure the operator during the scraping process. In addition, after shredding the vegetables, the vegetable pieces need to be properly dehydrated to maintain the taste and quality of the filling. Currently, the common method is to wrap the vegetable filling with gauze and manually squeeze it to dehydrate. However, this method has obvious shortcomings. Manual squeezing is time-consuming, labor-intensive, and inefficient, and it is difficult to ensure the consistency of the dehydration effect, resulting in fluctuations in the quality of the filling. Long-term manual squeezing may also cause wrist and finger strain in the operator. The used gauze needs to be cleaned or replaced, increasing operating costs.
[0003] The announcement number CN211682341U discloses a kind of cut vegetable shredding machine, including base box and motor and motor shaft installed in base box, it further includes cup body, cutter disc and upper cover sequentially installed on base box from bottom to top, the cup body is no lid cylindrical structure, cup body upper end is equipped with feed slot and the pusher bar installed in feed slot;Cup body central part is equipped with hollow tube for the motor shaft passes through, cup body left lower corner is equipped with vegetable outlet, and the inclined plate is equipped in the vegetable outlet of left lower corner to cup body right upper corner;The length of the hollow tube in cup body is less than the length of the motor shaft in cup body, the cutter disc is composed of semicircular cutter and semicircular baffle arranged obliquely below semicircular cutter;The announcement number CN212441515U discloses a kind of new shredding machine, including barrel, barrel cover, handle, plug-in column, first locking mechanism, crushing mechanism and driving mechanism, the side end of the barrel is fixedly connected with handle;The lower end of the barrel cover is clamped on the inside of the top end of the barrel;The outer end of the barrel cover is fixedly connected with the plug-in column;The plug-in column is plugged into the handle;The first locking mechanism is connected to the handle;The first locking mechanism is plugged into the plug-in column;The upper end of the crushing mechanism is rotatably fitted in the central through-hole of the barrel cover;The lower end of the crushing mechanism is rotatably fitted in the barrel, during the shredding process of the shredding machine, vegetable debris adheres to the inner wall of the shredding machine and cannot be automatically scraped off, the shredding machine needs to be paused, and the vegetable debris needs to be scraped out, which reduces the work efficiency and may injure the operator;And the shredded vegetable pieces cannot be dehydrated, which needs secondary processing. SUMMARY
[0004] In order to improve the above situation, the present application provides a kind of through shredding assembly to vegetable shredding and simultaneously scraping the vegetable debris adhered to the inner wall of shredding barrel, which can be directly conveyed into dehydration cylinder through vegetable conveying port to reduce secondary handling, and then dehydrated by dehydration assembly.
[0005] The present application is realized as follows: the present application is composed of support assembly, shredding assembly and water pressing assembly, The support assembly is composed of base, support frame, heat dissipation hole, control panel and adjusting button, The bottom surface of the base is fixedly provided with a support frame, Preferably, the base is a rectangular body structure, and the base is a hollow structure, Preferably, the support frame is a cylindrical structure, and a plurality of support frames are evenly distributed near the four corners of the bottom surface of the base, A group of heat dissipation holes are correspondingly opened on the two side surfaces of the base, and two groups of heat dissipation holes are correspondingly opened on the other two side surfaces of the base, Preferably, a plurality of heat dissipation holes are arranged on the base, and the plurality of heat dissipation holes are arranged equidistantly along the height of the base and have an elongated structure, The control panel is fixed on the top surface of the base, Two adjusting buttons are arranged on the control panel, one of which is an on-off button, and the other is a speed adjusting button, The noodle twisting assembly comprises a noodle twisting barrel, a noodle outlet, a clamping buckle, a first baffle, an adjusting groove, a second baffle, a sliding buckle, a motor, a fixing ring, a positioning groove, a transmission ring, a transmission ring, a support ring, a protective cover, a placing groove, a cleaning gear, a transmission gear, a transmission shaft, a main gear, a connecting shaft, a blade, and a scraper, The noodle twisting barrel is fixed on the top surface of the base, Preferably, the noodle twisting barrel has a cylindrical structure, two discharge openings are formed near the bottom of the noodle twisting barrel, and the included angle between the two discharge openings is 90 degrees, The noodle outlet is fixed on the side surface of the noodle twisting barrel and communicates with the noodle twisting barrel through one of the discharge openings, Preferably, the noodle outlet extends obliquely downward from the intersection with the noodle twisting barrel, and the cross section of the noodle outlet has a concave structure, The clamping buckle is fixed on the side surface of the noodle twisting barrel and is arranged above the noodle outlet, Preferably, the clamping buckle has two clamping buckles with different heights, The first baffle is clamped on the clamping buckle, Preferably, the first baffle has a curved surface structure with the same curvature as the noodle twisting barrel, the width from the top end to half of the first baffle is smaller than the width from half to the bottom end, and the width from half to the bottom end of the first baffle is approximately the same as the width of the noodle outlet, The other discharge opening has a sliding groove extending upward from the top end, and an adjusting groove is formed between the sliding groove and the inner ring surface of the noodle twisting barrel, Preferably, the adjusting groove has an elongated structure, The second baffle is slidably arranged in the sliding groove, and the second baffle has a sliding buckle arranged near the middle of the top end, and the sliding buckle is slidably connected with the adjusting groove, The motor is fixed on the bottom surface of the base, The fixing ring is fixed on the top surface of the base, Preferably, the fixing ring has a cylindrical structure, The fixing ring has a positioning groove on the top surface, Preferably, the positioning groove has a circular ring structure, the outer ring surface diameter of the positioning groove is smaller than the outer ring surface diameter of the fixing ring, the inner ring surface diameter of the positioning groove is larger than the inner ring surface diameter of the fixing ring, and the fixing ring and the positioning groove are coaxially arranged, The transmission ring is rotatably connected and arranged in the positioning groove through a bearing, Preferably, the transmission ring is circular in structure, and a support bearing is arranged between the outer ring surface of the transmission ring and the inner ring surface of the positioning groove, and a support bearing is arranged between the inner ring surface of the transmission ring and the inner ring surface of the positioning groove, The transmission ring is fixed on the top surface of the transmission ring, Preferably, the fixed ring is circular in structure, the diameter of the outer ring surface of the transmission ring is greater than the diameter of the outer ring surface of the fixed ring, and the diameter of the inner ring surface of the transmission ring is the same as the diameter of the inner ring surface of the fixed ring, The support ring is fixed on the top surface of the base, and the support ring is cylindrical in structure, The protective cover is fixed on the support ring, the bottom surface of the protective cover is fixedly connected with the top surface of the support ring, the inner side surface of the protective cover is slightly larger in diameter than the outer ring surface of the cleaning gear, The support ring is provided with a placing groove, Preferably, the placing groove is provided with two, the two placing grooves are symmetrically arranged about the support ring, the outer arc surface of the placing groove is the same in diameter as the outer ring surface of the support ring, and the inner arc surface of the placing groove is the same in diameter as the inner ring surface of the support ring, The cleaning gear is fixed on the top surface of the transmission ring, and the outer ring surface of the cleaning gear is smaller in diameter than the outer ring surface of the transmission ring, The transmission gear is rotatably connected by a bearing and arranged in the placing groove on the support ring, and is in gear engagement with the cleaning gear, Preferably, the transmission gear is provided with two, and the two transmission gears correspond to the placing grooves one by one, One end of the transmission shaft penetrates through the top surface of the base and is connected with the motor shaft of the motor, and a support bearing is arranged between the transmission shaft and the top surface of the base, and the other end of the transmission shaft penetrates through the protective cover and a support bearing is arranged between the transmission shaft and the protective cover, and the other end of the transmission shaft is provided with a threaded hole, The main gear is fixed on the transmission shaft and is in gear engagement with the two transmission gears, One end of the connecting shaft is threadedly connected in the threaded hole of the transmission shaft, and the screw direction is opposite to the running direction of the motor, The blade is fixed on the side surface of the connecting shaft, Preferably, the blade is provided with a plurality of blades, and the plurality of blades are arranged at equal distances along the axial direction of the connecting shaft, The scraper is fixed on the transmission ring, and the scraper is arranged between the protective cover and the wringer, Preferably, the scraper is provided with a plurality of scrapers, and the plurality of scrapers are arranged at equal distances along the circumferential direction of the transmission ring, The dehydration assembly is composed of a dehydration cylinder, a squeezing cylinder, a squeezing hole, a food conveying opening, a support rod, a first connecting shaft, a fourth connecting shaft, a second connecting shaft, a bent connecting rod, a third connecting shaft, a third connecting rod, a first connecting rod, a second connecting rod, a dehydration rod, a squeezing plate and a drain pipe, The dehydration cylinder is fixed on the top surface of the base, Preferably, the dehydration cylinder has a cylindrical structure, and a notch is formed in the side surface of the dehydration cylinder, the height of the notch being less than the height of the dehydration cylinder, the top end of the notch and the top surface of the dehydration cylinder being in the same plane, The extrusion cylinder is fixed on the top surface of the base, has a cylindrical structure, and is arranged in the dehydration cylinder, and the extrusion cylinder has a notch, The extrusion cylinder has extrusion holes in the side surface, Preferably, the extrusion holes are arranged in multiple groups, the extrusion holes in each group are arranged equidistantly along the circumferential direction of the extrusion cylinder, and multiple extrusion holes are arranged in each group and equidistantly along the axial direction of the extrusion cylinder, One end of the food conveying hole is connected to the side surface of the food twisting cylinder and corresponds to the other discharging hole of the food twisting cylinder, the other end of the food conveying hole is connected to the side surface of the extrusion cylinder and corresponds to the notch of the extrusion cylinder, the outer surface of the food conveying hole is connected to the dehydration cylinder, the food twisting cylinder is communicated with the extrusion cylinder through the food conveying hole, and the food conveying hole extends obliquely downward from the end connected to the food twisting cylinder to the end connected to the extrusion cylinder, The support rod is fixed on the base and is arranged close to the dehydration cylinder, The extrusion plate is fixed on the end surface of the pressing rod, and the diameter of the extrusion plate is slightly smaller than the diameter of the inner annular surface of the extrusion cylinder, and the central axis of the extrusion plate coincides with the central axis of the extrusion cylinder, The pressing rod, the support rod and the transmission rod are arranged in parallel, The second connecting shaft is fixed on the side surface of the transmission rod close to the bottom end, One end of the bent connecting rod is rotatably connected to the pressing rod at one-third of the distance from the bottom end through a shaft, and the other end of the bent connecting rod is rotatably connected to the bottom end of the transmission rod through the second connecting shaft, and extends obliquely upward from the two-thirds of the distance from the one end, One end of the dehydration rod is rotatably connected to the bent connecting rod and the pressing rod through the second connecting shaft, and one-half of the dehydration rod is rotatably connected to the support rod through a rotating shaft, The first connecting shaft is fixed on the side surface of the support rod close to the top end, The third connecting shaft is fixed on the side surface of the other end of the bent connecting rod, One end of the first connecting rod is rotatably connected to the support rod and the third connecting rod through the first connecting shaft, and the other end of the first connecting rod is rotatably connected to the bent connecting rod through the third connecting shaft, The fourth connecting shaft is fixed on the side surface of the transmission rod close to the top end, One end of the second connecting rod is rotatably connected to the pressing rod through a rotating shaft, and the other end of the second connecting rod is rotatably connected to the transmission rod and the other end of the third connecting rod through the fourth connecting shaft, The first connecting shaft, the fourth connecting shaft, the second connecting shaft, the curved connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod and the second connecting rod are provided with two, and are symmetrically arranged with respect to the supporting rod, the transmission rod and the pressing rod, The drain pipe is fixed on the side surface of the dehydration cylinder and is arranged close to the bottom end. The drain pipe has a cylindrical structure and is communicated with the dehydration cylinder. Further, the blade is replaced by a curved blade. One end of the curved blade is fixed on the side surface of the connecting shaft. The width of the curved blade gradually decreases from one end to the other end. The curved blade is arc-shaped and upwardly bent from one end to the other end. Further, the first connecting shaft, the fourth connecting shaft, the second connecting shaft, the curved connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod, the second connecting rod, the transmission rod, the pressing rod and the dehydration rod constitute a power assembly. The power assembly in the dehydration assembly is replaced by a pushing assembly. The pushing assembly comprises a motor box, a transmission box, a dehydration motor, a rotating roller, a supporting frame, a supporting roller, a first rotating rod, a lifting shaft, a second rotating rod, a limiting rod and a limiting sleeve. The motor box is fixed on the top surface of the supporting rod. The top surface of the supporting rod is arranged at the middle position of the bottom surface of the motor box. The transmission box is fixed on the side surface of the motor box. The bottom surface of the transmission box is lower than the bottom surface of the motor box. The motor box and the transmission box are both hollow structures. The dehydration motor is arranged in the motor box. The rotating roller shaft penetrates through the side surfaces of the motor box and the transmission box and is connected with the motor shaft of the dehydration motor. A supporting bearing is arranged between the rotating roller shaft and the transmission box. The supporting frame is fixed on the bottom surface of the transmission box. Two supporting frames are symmetrically arranged. The supporting roller is rotatably connected in the supporting frame through a bearing. The supporting roller and the supporting frame are in one-to-one correspondence. The rotating roller and the supporting roller are relatively rotatable. The bottom surface of the transmission box is provided with a groove. The supporting frame is arranged between the groove and the motor box. One end of the first rotating rod is fixed on the rotating roller close to the edge. The first rotating rod has a cylindrical structure. One end of the extrusion cylinder is fixed on the top surface of the extrusion plate at the middle position. A second rotating rod is fixed on the inner ring surface close to the other end of the extrusion cylinder. The lifting shaft comprises a vertical bar and two cylinders. The two cylinders are fixed on the two ends of the vertical bar and are rotatably connected with the first rotating rod and the second rotating rod, respectively. One end of the limiting rod is fixed on the supporting rod. The other end is fixed on the outer ring surface of the limiting sleeve. The extrusion cylinder and the limiting sleeve are slidably connected. Advantages
[0006] I. The size of the shredded vegetable pieces can be controlled according to the rotation speed of the blade, meeting different use requirements.
[0007] II. The shredded vegetable pieces can be directly discharged or introduced into the dehydration cylinder for dehydration treatment according to the requirements, improving the operation convenience.
[0008] Three, shredded vegetable pieces can directly flow into the dehydration cylinder through the dish conveying port, without manual carrying, improving work efficiency.
[0009] Four, the vegetable debris adhered to the inner wall of the shredded vegetable cylinder can be scraped, without stopping the machine, improving work efficiency and avoiding injury to the operator. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application; Figure 2 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the shredded vegetable assembly; Figure 3 It is a structural schematic view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the shredded vegetable assembly; Figure 4 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the shredded vegetable assembly; Figure 5 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the shredded vegetable assembly; Figure 6 It is a structural schematic view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the dehydration assembly; Figure 7 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows the structure of the curved blade of embodiment 2; Figure 8 It is a perspective view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows the structure of the curved blade of embodiment 3; Figure 9 It is a structural schematic view of a shredded vegetable dehydration all-in-one machine of the present application, which only shows part of the structure of the dehydration assembly of embodiment 3. DRAWINGS
[0011] Wherein is: the first connecting rod (1), support rod (2), pressure bar (3), transmission rod (4), extrusion plate (5), extrusion cylinder (6), dehydration cylinder (7), drain pipe (8), base (9), control panel (10), adjusting button (11), dish mouth (12), support frame (13), heat dissipation hole (14), dish mouth (15), the first baffle (16), twist cylinder (17), clamping buckle (18), dehydration rod (19), the third connecting rod (20), adjusting groove (21), sliding buckle (22), the second baffle (23), scraper (24), blade (25), connecting shaft (26), transmission ring (27), protective cover (28), placing groove (29), transmission shaft (30), transmission gear (31), cleaning gear (32), fixed ring (33), support ring (34), main gear (35), transmission ring (36), positioning groove (37), motor (38), the first connecting shaft (39), extrusion hole (40), curved connecting rod (41), the second connecting shaft (42), the third connecting shaft (43), the fourth connecting shaft (44), the second connecting rod (45), curved blade (46), motor box (47), transmission box (48), extrusion cylinder (49), limit rod (50), limit sleeve (51), rotating roller (52), dehydration motor (53), support roller (54), support frame (55), second rotating rod (56), lifting shaft (57), first rotating rod (58). DETAILED DESCRIPTION Example 1
[0012] The present application is a kind of twisted vegetable dehydration all-in-one machine is realized as follows: the twisted vegetable dehydration all-in-one machine of the present application is composed of a support assembly, a vegetable twisting assembly and a water pressing assembly, The support assembly is composed of a base, a support frame, heat dissipation holes, a control panel and adjusting buttons, The base bottom surface is fixed with a support frame, Preferably, the base is a rectangular parallelepiped structure, and the base is a hollow structure, Preferably, the support frame is a cylindrical structure, and the support frame is provided with a plurality of support frames, and the plurality of support frames are evenly distributed near the four corners of the base bottom surface, A group of heat dissipation holes are correspondingly formed on the two side surfaces of the base, and two groups of heat dissipation holes are correspondingly formed on the other two side surfaces of the base, Preferably, one group of heat dissipation holes is provided with a plurality of heat dissipation holes, and the plurality of heat dissipation holes are equidistantly arranged along the height of the base, and the heat dissipation holes are in a strip-shaped structure, The control panel is fixed on the top surface of the base, Two adjusting buttons are arranged on the control panel, one adjusting button is an on-off button, and the other adjusting button is a speed adjusting button, The twisted vegetable assembly is composed of a twisted vegetable cylinder, a vegetable outlet, a clamping buckle, a first baffle, an adjusting groove, a second baffle, a sliding buckle, a motor, a fixing ring, a positioning groove, a transmission ring, a transmission ring, a support ring, a protective cover, a placing groove, a cleaning gear, a transmission gear, a transmission shaft, a main gear, a connecting shaft, a blade and a scraper, The twisted vegetable cylinder is fixed on the top surface of the base, Preferably, the twisted vegetable cylinder has a cylindrical structure, two discharge openings are formed near the bottom of the twisted vegetable cylinder, and the included angle between the two discharge openings is 90 degrees, The vegetable outlet is fixed on the side surface of the twisted vegetable cylinder and communicates with one of the discharge openings, Preferably, the vegetable outlet extends obliquely downward from the intersection with the twisted vegetable cylinder, and the cross section of the vegetable outlet has a concave structure, The clamping buckle is fixed on the side surface of the twisted vegetable cylinder and above the vegetable outlet, Preferably, the clamping buckle has two clamping buckles with different heights, The first baffle is clamped on the clamping buckle, Preferably, the first baffle has a curved surface structure with the same curvature as the twisted vegetable cylinder, the width from the top end to half of the first baffle is smaller than the width from half to the bottom end, and the width from half to the bottom end of the first baffle is approximately the same as the width of the vegetable outlet, The other discharge opening has a sliding groove extending upward at the top end, and an adjusting groove is formed between the sliding groove and the inner ring surface of the twisted vegetable cylinder, Preferably, the adjusting groove has a long strip structure, The second baffle is slidably arranged in the sliding groove, and the second baffle has a sliding buckle arranged near the middle of the top end, and the sliding buckle is slidably connected with the adjusting groove, The motor is fixed on the bottom surface of the base, The fixing ring is fixed on the top surface of the base, Preferably, the fixing ring has a cylindrical structure, The fixing ring has a positioning groove on the top surface, Preferably, the positioning groove has a circular ring structure, the outer ring surface diameter of the positioning groove is smaller than the outer ring surface diameter of the fixing ring, the inner ring surface diameter of the positioning groove is larger than the inner ring surface diameter of the fixing ring, and the fixing ring and the positioning groove are coaxially arranged, The transmission ring is rotatably connected and arranged in the positioning groove through a bearing, Preferably, the transmission ring has a circular ring structure, a support bearing is arranged between the outer ring surface of the transmission ring and the inner ring surface of the positioning groove, and a bearing is arranged between the inner ring surface of the transmission ring and the inner ring surface of the positioning groove, and the top surface height of the transmission ring is slightly higher than the top surface of the fixing ring, The transmission ring is fixed on the top surface of the transmission ring, Preferably, the fixed ring is in a circular ring structure, the outer ring surface diameter of the transmission ring is larger than the outer ring surface diameter of the fixed ring, the inner ring surface diameter of the transmission ring is the same as the inner ring surface diameter of the fixed ring, The support ring is fixed on the top surface of the base, and the support ring is in a cylindrical structure, The protective cover is fixed on the support ring, the bottom surface of the protective cover is fixedly connected with the top surface of the support ring, the inner side surface diameter of the protective cover is slightly larger than the outer ring surface diameter of the cleaning gear, The support ring is provided with a placing groove, Preferably, the placing groove is provided with two, the two placing grooves are symmetrically arranged about the support ring, the outer arc surface diameter of the placing groove is the same as the outer ring surface diameter of the support ring, and the inner arc surface diameter of the placing groove is the same as the inner ring surface diameter of the support ring, The cleaning gear is fixed on the top surface of the transmission ring, and the outer ring surface diameter of the cleaning gear is smaller than the outer ring surface diameter of the transmission ring, The transmission gear is rotatably connected in the placing groove on the support ring through a bearing, and is in gear engagement with the cleaning gear, Preferably, the transmission gear is provided with two, and the two transmission gears correspond to the placing grooves one by one, One end of the transmission shaft penetrates through the top surface of the base and is connected with the motor shaft, and a support bearing is arranged between the transmission shaft and the top surface of the base, the other end of the transmission shaft penetrates through the protective cover and a support bearing is arranged between the transmission shaft and the protective cover, and the other end of the transmission shaft is provided with a threaded hole, The main gear is fixed on the transmission shaft and is in gear engagement with the two transmission gears, One end of the connecting shaft is threadedly connected to the threaded hole in the transmission shaft, and the screw direction is opposite to the running direction of the motor, The blade is fixed on the side surface of the connecting shaft, Preferably, the blade is provided with a plurality of blades, and the plurality of blades are arranged at equal distances along the axial direction of the connecting shaft, The scraper is fixed on the transmission ring, and the scraper is arranged between the protective cover and the wringer, Preferably, the scraper is provided with a plurality of scrapers, and the plurality of scrapers are arranged at equal distances along the circumferential direction of the transmission ring, The dehydration assembly is composed of a dehydration cylinder, a squeezing cylinder, a squeezing hole, a food conveying opening, a support rod, a first connecting shaft, a fourth connecting shaft, a second connecting shaft, a bent connecting rod, a third connecting shaft, a third connecting rod, a first connecting rod, a second connecting rod, a dehydration rod, a squeezing plate and a drain pipe, The dehydration cylinder is fixed on the top surface of the base, Preferably, the dehydration cylinder is in a cylindrical structure, the dehydration cylinder is provided with a notch on the side surface, the height of the notch is smaller than the height of the dehydration cylinder, and the top end of the notch and the top surface of the dehydration cylinder are on the same plane, The extrusion cylinder is fixed on the top surface of the base, and has a cylindrical structure, is arranged in the dehydration cylinder, and has a gap, The extrusion cylinder has extrusion holes on the side surface, Preferably, the extrusion holes are arranged in multiple groups, the extrusion holes in each group are arranged equidistantly along the circumferential direction of the extrusion cylinder, and multiple extrusion holes are arranged equidistantly along the axial direction of the extrusion cylinder, The food conveying opening is connected to the side surface of the food twisting cylinder at one end and is opposite to the other discharging opening of the food twisting cylinder, the other end of the food conveying opening is connected to the side surface of the extrusion cylinder and is opposite to the gap of the extrusion cylinder, the outer surface of the food conveying opening is connected to the dehydration cylinder, the food twisting cylinder is communicated with the extrusion cylinder through the food conveying opening, and the food conveying opening extends obliquely downward from the end connected to the food twisting cylinder to the end connected to the extrusion cylinder, The support rod is fixed on the base and is arranged close to the dehydration cylinder, The extrusion plate is fixed on the bottom surface of the pressing rod, and has a diameter slightly smaller than the diameter of the inner annular surface of the extrusion cylinder, and the central axis of the extrusion plate coincides with the central axis of the extrusion cylinder, The pressing rod, the support rod and the transmission rod are arranged in parallel, The second connecting shaft is fixed on the side surface of the transmission rod close to the bottom end, The one end of the bent connecting rod is rotatably connected to the pressing rod at one third of the distance from the bottom end through a shaft, the other end of the bent connecting rod is rotatably connected to the bottom end of the transmission rod through the second connecting shaft, and extends obliquely upward from the two third of the distance from the one end, The dehydration rod is rotatably connected to the bent connecting rod and the pressing rod through the second connecting shaft at one end, and is rotatably connected to the support rod through a rotating shaft at one half, The first connecting shaft is fixed on the side surface of the support rod close to the top end, The third connecting shaft is fixed on the side surface of the other end of the bent connecting rod, The one end of the first connecting rod is rotatably connected to the support rod and the one end of the third connecting rod through the first connecting shaft, and the other end of the first connecting rod is rotatably connected to the bent connecting rod through the third connecting shaft, The fourth connecting shaft is fixed on the side surface of the transmission rod close to the top end, The one end of the second connecting rod is rotatably connected to the pressing rod through a rotating shaft, and the other end is rotatably connected to the transmission rod and the other end of the third connecting rod through the fourth connecting shaft, The first connecting shaft, the fourth connecting shaft, the second connecting shaft, the bent connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod and the second connecting rod are arranged in two groups and symmetrically with respect to the support rod, the transmission rod and the pressing rod, The drain pipe is fixed on the side surface of the dehydration cylinder and is arranged close to the bottom end, has a cylindrical structure, and is communicated with the dehydration cylinder, When in use, the vegetables to be shredded are put into the shredding cylinder, when the vegetables do not need to be dehydrated, the first baffle is hung on the upper clamping buckle, the adjusting button of the control switch is pressed, the blade rotates at high speed under the drive of the motor, strong centrifugal force is generated, the centrifugal force makes the vegetables be shredded and flow out of the vegetable outlet of the shredding cylinder, at the same time, the working of the motor also drives the main gear to rotate, through the cooperation of the transmission gear and the cleaning gear, the transmission ring can be driven to rotate, the scraper connected to the transmission ring rotates with it, effectively scrapes off the vegetable debris on the inner wall of the shredding cylinder, and discharges through the vegetable outlet, ensuring the cleaning of the inner wall of the shredding cylinder, when the vegetables need to be dehydrated, the first baffle is hung on the lower clamping buckle, the second baffle is slid upward, the shredded vegetables enter the extrusion cylinder through the vegetable conveying port, the dehydration rod is lifted upward, cooperates with the connecting rod and other related parts, the extrusion plate applies pressure to the vegetables in the extrusion cylinder, so that the water in the vegetables is discharged through the extrusion holes on the extrusion cylinder, finally the water flows out through the drain pipe, realizing the dehydration treatment of the vegetables; Example 2
[0013] The difference between this embodiment and example 1 is that the blade is replaced by a curved blade, one end of the curved blade is fixed on the side surface of the connecting shaft, the width of the curved blade gradually decreases from one end to the other end, and the curved blade is arc-shaped and upwardly bent from one end to the other end, when in use, the curved blade can better promote the flow of vegetables in the shredding cylinder during the working process, reduce the accumulation of vegetables between the curved blade and the protective cover, and thus shred the vegetables more uniformly; Example 3
[0014] The difference between the embodiment and embodiment 1 is that the first connecting shaft, the fourth connecting shaft, the second connecting shaft, the bent connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod, the second connecting rod, the transmission rod, the pressing rod and the dehydration rod constitute a power assembly, the power assembly in the dehydration assembly is replaced by a pushing assembly, the pushing assembly is composed of a motor box, a transmission box, a dehydration motor, a rotating roller, a supporting frame, a supporting roller, a first rotating rod, a lifting shaft, a second rotating rod, a limiting rod and a limiting sleeve, the motor box is fixedly arranged on the top surface of the supporting rod, the top surface of the supporting rod is arranged at the middle position of the bottom surface of the motor box, the transmission box is fixedly arranged on the side surface of the motor box, the bottom surface of the transmission box is lower than the bottom surface of the motor box, the motor box and the transmission box are both hollow structures, the dehydration motor is arranged in the motor box, the rotating roller shaft penetrates through the side surface of the motor box and the motor shaft of the dehydration motor and is connected, and a supporting bearing is arranged between the rotating roller shaft and the transmission box, the supporting frame is fixedly arranged on the bottom surface of the transmission box, the two supporting frames are symmetrically arranged, the supporting roller is rotatably connected in the supporting frame through a bearing, the supporting roller and the supporting frame are one-to-one corresponding, the rotating roller and the supporting roller are relatively rotatable, the bottom surface of the transmission box is provided with a groove, the supporting frame is arranged between the groove and the motor box, one end of the first rotating rod is fixedly arranged at the edge position of the rotating roller, the first rotating rod is in a cylindrical structure, one end of the extrusion cylinder is fixedly arranged at the middle position of the top surface of the extrusion plate, the second rotating rod is fixedly arranged on the inner ring surface of the other end of the extrusion cylinder, the lifting shaft is composed of a vertical rod and two cylinders, the two cylinders are fixedly arranged at the two ends of the vertical rod and are rotatably connected with the first rotating rod and the second rotating rod respectively, one end of the limiting rod is fixedly arranged on the supporting rod, the other end is fixedly arranged on the outer ring surface of the limiting sleeve, the extrusion cylinder and the limiting sleeve are slidably connected, in use, a proper amount of vegetable pieces are arranged in the extrusion cylinder, the limiting sleeve can move the extrusion cylinder only in the vertical direction and prevent the extrusion cylinder from deviating in the horizontal direction, the dehydration motor is driven to rotate the rotating roller, and the first transmission rod slides on the rotating roller in a circle, in the process that the first rotating rod moves up and down, the lifting shaft can drive the extrusion cylinder to move up and down in the limiting sleeve, so that the vegetables in the extrusion cylinder are extruded, and the water in the vegetables flows out from the drain pipe through the extrusion hole; Two adjusting buttons are arranged on the control panel, one adjusting button is a switch button, and the other adjusting button is a speed adjusting button, the switch button can control the start of the machine, and the speed adjusting button can control the size of the vegetable pieces to meet different use requirements; Two discharge ports are arranged on the bottom of the vegetable crushing cylinder, and the included angle between the two discharge ports is 90 degrees, which can be flexibly selected according to requirements, the vegetable pieces can be directly discharged from the device or introduced into the dehydration cylinder for dehydration treatment, the operation convenience is improved, and the work process is optimized; The scraper is arranged between the wringer barrel and the protective cover, and the design that the transmission ring rotates around the central shaft can make the scraper scrape off the vegetable fragments attached to the inside of the wringer barrel during the wringing process, so that the vegetable fragments are smoothly discharged from the wringer barrel through the gap of the wringer barrel, reduces the process of manually scraping off the vegetable fragments on the inner wall of the wringer, improves the work efficiency, and avoids scratching the operator; The connecting shaft is threadedly connected to the threaded hole in the transmission shaft at one end, and the design that the screw direction is opposite to the motor rotation direction can avoid loosening of the connecting shaft during the wringing process, and improves the safety; The food conveying port extends obliquely downward from one end connected with the wringer barrel to the other end connected with the extrusion barrel, and the design that the wringer barrel is communicated with the extrusion barrel through the food conveying port can make the vegetable fragments directly flow into the extrusion barrel after being shredded, without manual carrying, and reduces the workload; The purpose is to shred the vegetables by the wringer assembly, scrape off the vegetable fragments attached to the inner wall of the wringer barrel, directly convey the vegetables to the dehydration barrel through the food conveying port to reduce secondary carrying, and then dehydrate the vegetable fragments by the dehydration assembly.
[0015] It should be noted that, unless otherwise explicitly specified and limited, the terms "arranged", "connected", and "linked" should be understood broadly, for example, can be fixed connection modes such as folding connection, rivet connection, pin connection, bonding connection, and welding connection, can also be detachable connection modes such as threaded connection, buckle connection, and hinge connection, or integrated connection, can also be electrical connection, or direct connection, or indirect connection through an intermediate medium, can be the communication between the two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
Claims
1. A vegetable mincing and dehydrating integrated machine, characterized in that: It consists of a support assembly, a vegetable grinding assembly, and a water pressing assembly. The support assembly comprises a base, a support frame, heat dissipation holes, a control panel, and adjustment buttons. The support frame is fixedly mounted on the bottom surface of the base. A set of heat dissipation holes is correspondingly opened on one of the two sides of the base, and two sets of heat dissipation holes are correspondingly opened on the other two sides of the base. The control panel is fixedly mounted on the top surface of the base. The vegetable grinding assembly comprises a grinding cylinder, a vegetable outlet, a locking buckle, a first baffle, an adjustment groove, a second baffle, a sliding buckle, a motor, a fixing ring, a positioning groove, a transmission ring, a transmission ring, a support ring, a protective cover, a placement groove, a cleaning gear, a transmission gear, a transmission shaft, a main gear, a connecting shaft, blades, and a scraper. The grinding cylinder is fixedly mounted on the top surface of the base, and the vegetable outlet is fixedly mounted on the side of the grinding cylinder, and is connected to the grinding cylinder via a discharge port. The vegetable feed tubes are interconnected. A locking buckle is fixedly placed on the side of the vegetable feed tube and positioned above the outlet. A first baffle is secured to the locking buckle. A sliding groove extends upward from the top of the other outlet. An adjustment groove is formed between the sliding groove and the inner circumference of the vegetable feed tube. A second baffle is slidably placed within the sliding groove. A sliding buckle is placed near the center of the top of the second baffle. The sliding buckle and the adjustment groove are slidably connected. The motor is fixedly placed on the bottom surface of the base. A fixing ring is fixedly placed on the top surface of the base. A positioning groove is formed on the top surface of the fixing ring. A transmission ring is rotatably connected to the positioning groove via a bearing. The transmission ring is fixedly placed on the top surface of the transmission ring. A support ring is fixedly placed on the top surface of the base. The support ring has a cylindrical structure. A protective cover is fixedly placed on the support ring. The bottom surface of the protective cover and the top surface of the support ring are fixedly connected. Next, a placement groove is opened on the support ring, and the cleaning gear is fixedly placed on the top surface of the transmission ring. The transmission gear is rotatably connected to the placement groove on the support ring through a bearing and meshes with the cleaning gear. One end of the transmission shaft passes through the top surface of the base and is connected to the motor shaft, with a support bearing placed between the transmission shaft and the top surface of the base. The other end of the transmission shaft passes through the protective cover and has a support bearing placed between the transmission shaft and the protective cover. The other end of the transmission shaft has a threaded hole, and the main gear is fixedly placed on the transmission shaft and meshes with both of the transmission gears. One end of the connecting shaft is threadedly connected to the internal threaded hole of the transmission shaft, with the helix direction opposite to the motor rotation direction. The blade is fixedly placed on the side of the connecting shaft, and the scraper is fixedly placed on the transmission ring. The scraper is placed between the protective cover and the vegetable grinding drum. The dehydration unit The device consists of a dehydration cylinder, a pressing cylinder, a pressing hole, a food conveying opening, a support rod, a first connecting shaft, a fourth connecting shaft, a second connecting shaft, a bent connecting rod, a third connecting shaft, a third connecting rod, a first connecting rod, a second connecting rod, a dehydration rod, a pressing plate, and a drain pipe. The dehydration cylinder is fixedly placed on the top surface of the base, and the pressing cylinder is also fixedly placed on the top surface of the base. The pressing cylinder has a cylindrical structure and is placed inside the dehydration cylinder. The pressing cylinder has a notch and a pressing hole on its side. One end of the food conveying opening is connected to the side of the food grinding cylinder and corresponds to another discharge port on the food grinding cylinder. The other end of the food conveying opening is connected to the side of the pressing cylinder and corresponds to the notch on the pressing cylinder. The outer side of the food conveying opening is connected to the dehydration cylinder. The food grinding cylinder communicates with the pressing cylinder through the food conveying opening.The food delivery opening extends diagonally downwards from the end connected to the food grinding cylinder to the end connected to the extrusion cylinder. A support rod is fixed to the base, positioned close to the dehydration cylinder. An extrusion plate is fixed to the end face of the pressure rod. The pressure rod, support rod, and transmission rod are arranged parallel to each other. A second connecting shaft is fixed to the side of the transmission rod near its bottom. One end of a curved connecting rod is rotatably connected to the pressure rod at one-third of its distance from the bottom. The curved connecting rod is rotatably connected to the bottom end of the transmission rod via the second connecting shaft at two-thirds of its distance from one end, extending diagonally upwards from the two-thirds point to the other end. One end of the dehydration rod is rotatably connected to the curved connecting rod and the pressure rod via the second connecting shaft, and rotatably connected to the support rod at half its distance via a rotating shaft. A first connecting shaft is fixed to the side of the support rod near its top. A third connecting shaft is fixed to the curved connecting rod... On the other side of the connecting rod, one end of the first connecting rod is rotatably connected to the support rod and one end of the third connecting rod via a first connecting shaft, and the other end of the first connecting rod is rotatably connected to the bent connecting rod via the third connecting shaft. A fourth connecting shaft is fixedly placed on the side of the transmission rod near the top. One end of the second connecting rod is rotatably connected to the pressure rod via a rotating shaft, and the other end is rotatably connected to the transmission rod and the other end of the third connecting rod via the fourth connecting shaft. Two of each of the following are provided, symmetrically arranged with respect to the support rod, transmission rod, and pressure rod: the first connecting rod, the fourth connecting shaft, the second connecting shaft, the bent connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod, and the second connecting rod. The drain pipe is fixedly placed on the side of the dewatering cylinder, near the bottom. The drain pipe has a cylindrical structure and communicates with the dewatering cylinder.
2. The vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The blade is replaced with a curved blade, one end of which is fixed on the side of the connecting shaft. The width of the curved blade gradually decreases from one end to the other, and the curved blade bends upward in an arc from one end to the other.
3. The vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The power assembly consists of the first connecting shaft, the fourth connecting shaft, the second connecting shaft, the bent connecting rod, the third connecting shaft, the third connecting rod, the first connecting rod, the second connecting rod, the transmission rod, the pressure rod, and the dehydration rod. The power assembly within the dehydration assembly is replaced by a pushing assembly. This pushing assembly comprises a motor housing, a transmission housing, a dehydration motor, rotating rollers, a support frame, support rollers, a first rotating rod, a lifting shaft, a second rotating rod, a limiting rod, and a limiting sleeve. The motor housing is fixedly placed on the top surface of the support rod, with the top surface of the support rod positioned at the center of the bottom surface of the motor housing. The transmission housing is fixedly placed on the side of the motor housing, with its bottom surface lower than the bottom surface of the motor housing. Both the motor housing and the transmission housing are hollow structures. The dehydration motor is placed inside the motor housing. The axle of the rotating rollers passes through the sides of the motor housing and the transmission housing and connects to the motor shaft of the dehydration motor, with a gap between the rollers and the transmission housing. The transmission box has a support bearing, and the support frame is fixedly placed on the bottom surface of the transmission box. The two support frames are symmetrically arranged. The support rollers are rotatably connected to the support frames through the bearings and are placed inside the support frames. The support rollers and support frames correspond one-to-one. The rotating rollers and support rollers rotate relative to each other. The bottom surface of the transmission box has a groove, and the support frame is placed between the groove and the motor box. One end of the first rotating rod is fixedly placed near the edge of the rotating roller. The first rotating rod has a cylindrical structure. One end of the extrusion cylinder is fixedly placed at the middle of the top surface of the extrusion plate. A second rotating rod is fixedly placed on the inner ring surface of the extrusion cylinder near the other end. The lifting shaft consists of a vertical bar and two cylinders. The two cylinders are fixed at both ends of the vertical bar and are rotatably connected to the first rotating rod and the second rotating rod, respectively. One end of the limiting rod is fixedly placed on the support rod, and the other end is fixedly placed on the outer ring surface of the limiting sleeve. The extrusion cylinder and the limiting sleeve are slidably connected.
4. The vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The base has a cuboid structure and a hollow structure. The support frame has a cylindrical structure and there are multiple support frames, which are evenly distributed near the four corners of the bottom surface of the base.
5. The integrated vegetable mincing and dehydrating machine according to claim 1, characterized in that... The set of internal heat dissipation holes has multiple holes, which are arranged at equal intervals along the height of the base. The heat dissipation holes are in the form of elongated strips. The control panel has two adjustment buttons: one is a power button and the other is a speed adjustment button.
6. The integrated vegetable mincing and dehydrating machine according to claim 1, characterized in that... The vegetable grinding tube has a cylindrical structure with two discharge ports near the bottom, forming a 90-degree angle between them. The discharge ports extend diagonally downwards from their intersection with the grinding tube, and their cross-section has a U-shaped structure. There are two locking buckles with different heights. The first baffle has a curved surface structure with the same curvature as the grinding tube. The width from the top to the halfway point of the first baffle is less than the width from the halfway point to the bottom. The width from the halfway point to the bottom of the first baffle is approximately the same as the width of the discharge port. The adjusting groove has a long strip structure.
7. The vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The fixed ring has a cylindrical structure, and the positioning groove has a circular structure. The outer diameter of the positioning groove is smaller than the outer diameter of the fixed ring, and the inner diameter of the positioning groove is larger than the inner diameter of the fixed ring. The fixed ring and the positioning groove are coaxially arranged. The transmission ring has a circular structure, and a supporting bearing is placed between the outer surface of the transmission ring and the inner surface of the positioning groove. A supporting bearing is also placed between the inner surface of the transmission ring and the inner surface of the positioning groove. The top surface of the transmission ring is slightly higher than the top surface of the fixed ring.
8. The vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The fixed ring has a circular ring structure. The outer ring diameter of the transmission ring is larger than the outer ring diameter of the fixed ring. The inner ring diameter of the transmission ring is the same as the inner ring diameter of the fixed ring. There are two placement slots, which are symmetrically arranged about the support ring. The outer arc diameter of the placement slot is the same as the outer ring diameter of the support ring. The inner arc diameter of the placement slot is the same as the inner ring diameter of the support ring. The inner side diameter of the protective cover is slightly larger than the outer ring diameter of the cleaning gear.
9. A vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The outer ring diameter of the cleaning gear is smaller than the outer ring diameter of the transmission ring. There are two transmission gears, and the two transmission gears correspond one-to-one with the placement groove. There are multiple blades, which are arranged at equal distances along the connecting shaft axis. There are multiple scrapers, which are arranged at equal distances along the circumference of the transmission ring.
10. A vegetable mincing and dehydrating integrated machine according to claim 1, characterized in that... The dehydration cylinder has a cylindrical structure with a notch on its side. The height of the notch is less than the height of the dehydration cylinder. The top of the notch and the top surface of the dehydration cylinder are on the same plane. There are multiple sets of extrusion holes, which are equidistantly arranged along the circumference of the extrusion cylinder. Each set contains multiple extrusion holes, which are equidistantly arranged along the axial direction of the extrusion cylinder. The diameter of the extrusion plate is slightly smaller than the diameter of the inner circumference of the extrusion cylinder, and the central axis of the extrusion plate coincides with the central axis of the extrusion cylinder.
Citation Information
Patent Citations
Vegetable cutting and mincing machine
CN211682341U
Novel vegetable mincing machine
CN212441515U