A pickled mustard tuber processing and mixing equipment
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-14
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本实用新型的主要目的在于提供一种榨菜加工调拌设备,解决了其搅拌机构多为单一方向的旋转搅拌,搅拌架的结构和运动轨迹较为固定,容易在调拌腔的边角或底部形成混合死角,导致榨菜原料与调料无法充分接触,同时固体榨菜原料和液体调料在重力作用下易出现分层,底部物料难以被输送至上层参与混合,不仅影响调拌均匀度,还会延长调拌时间,降低整体加工效率的问题
[0013](1)本实用新型中通过第二电机驱动第三转轴旋转,带动第二弧形混合架同步转动,同时第三转轴通过连接架带动第二转轴绕第三转轴公转,而第二转轴上端的齿轮与固定的齿环啮合,促使第二转轴自身发生自转,进而带动第一弧形混合架转动,然后由于第一弧形混合架与第二弧形混合架倾斜角度相反且交错平行,二者在公转与自转的配合下,能对桶体内不同区域的榨菜原料和调料形成交叉切割式搅拌,此外第二转轴下端的搅拌架贴合桶体底部转动,可对底部物料进行充分搅动,确保物料混合更均匀。
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Figure CN224613663U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pickled mustard tuber production technology, and more specifically, to a pickled mustard tuber processing and mixing equipment. Background Technology
[0002] Pickled mustard tuber is a common name for stem mustard, a variety of mustard tuber belonging to the Brassicaceae family and the Brassica genus. It is mainly distributed in the Sichuan Basin and some provinces and cities in the middle and lower reaches of the Yangtze River. Stem mustard is mainly consumed for its enlarged spindle-shaped or nearly spherical fleshy stem, which is primarily used for processing. When producing pickled mustard tubers, it often requires mixing equipment for processing. For example, application number "CN202120154962.8" proposes a seasoning pickled mustard tuber mixing machine, which includes a frame, a mixing chamber located below the frame, a top cover on the top of the mixing chamber, a stirring mechanism inside the mixing chamber, and a drive motor fixedly installed on the top of the top cover to drive the stirring mechanism. The top cover also has a solid feed hopper and a liquid feed hopper on either side of the drive motor, a weighing hopper above the solid feed hopper, and a first discharge hopper and a second discharge hopper above the weighing hopper. The bottom of the first and second discharge hoppers are respectively provided with a first discharge pipe and a second discharge pipe, and the first discharge pipe has a constant discharge mechanism and a micro discharge mechanism inside.
[0003] However, in the above-mentioned technical solutions, the stirring mechanism is mostly a unidirectional rotating stirring mechanism, and the structure and movement trajectory of the stirring frame are relatively fixed. This can easily create mixing dead zones at the corners or bottom of the mixing chamber, resulting in insufficient contact between the pickled mustard tuber raw material and the seasoning. At the same time, the solid pickled mustard tuber raw material and liquid seasoning are prone to stratification under the action of gravity, and the bottom material is difficult to be transported to the upper layer to participate in the mixing. This not only affects the uniformity of mixing, but also prolongs the mixing time and reduces the overall processing efficiency. Therefore, we propose a pickled mustard tuber processing mixing equipment to solve the above problems. Utility Model Content
[0004] The main purpose of this utility model is to provide a pickled mustard tuber processing and mixing equipment, which solves the problems of the fact that most of the mixing mechanisms are unidirectional rotational mixing, the structure and movement trajectory of the mixing frame are relatively fixed, and it is easy to form mixing dead corners at the corners or bottom of the mixing chamber, which makes it impossible for the pickled mustard tuber raw material and the seasoning to fully contact each other. At the same time, the solid pickled mustard tuber raw material and liquid seasoning are prone to stratification under the action of gravity, and the bottom material is difficult to be transported to the upper layer to participate in the mixing. This not only affects the uniformity of mixing, but also prolongs the mixing time and reduces the overall processing efficiency.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A pickled mustard tuber processing and mixing device includes a barrel body. An auxiliary mechanism is installed inside the barrel body. A feed pipe and a feed inlet are respectively installed through both ends of the upper surface of the barrel body. A discharge pipe is installed through the lower end of the barrel body, and a valve is installed inside the discharge pipe. The auxiliary mechanism includes a fixing block installed on one side of the barrel body. A guide groove is provided inside the fixing block, and its upper and lower ends are connected to the upper and lower ends of the barrel body. A first rotating shaft is movably installed inside the guide groove. An auger blade is sleeved on the outer side of the shaft inside the guide groove, and the auger blade is movably located inside the guide groove. A first motor is installed on the upper surface of the fixing block, and the output end of the first motor is connected to the first rotating shaft. An annular turntable is installed at the upper part of the inside of the barrel, and the upper surface of the annular turntable is inclined. A third rotating shaft is movably installed through the middle of the inside of the barrel. Several connecting frames are installed on the upper part of the shaft of the third rotating shaft, and the end of the connecting frame away from the third rotating shaft is in contact with the inner wall of the barrel. Several second arc-shaped mixing frames are installed at equal intervals on the outer side of the shaft of the third rotating shaft. A second rotating shaft is installed through the upper part of the connecting frame. The upper end of the second rotating shaft is connected to the annular turntable. Several first arc-shaped mixing frames are installed at equal intervals on the lower end of the shaft of the second rotating shaft. The first arc-shaped mixing frames and the second arc-shaped mixing frames have opposite inclination angles and are staggered and parallel. A second motor is installed in the middle of the upper surface of the barrel, and the output end of the second motor is connected to the third rotating shaft.
[0007] Preferably, an annular slider is installed on the outer side of the annular turntable, and the annular slider is engaged with the upper part of the inner side of the barrel. The upper surface of the annular turntable and the feed pipe and feed port are vertically parallel.
[0008] Preferably, an annular guide frame is installed at the upper part of the inside of the barrel, and the annular guide frame is located at the upper end of the annular turntable.
[0009] Preferably, the lower surface of the annular turntable is provided with movable grooves, and the upper end of the rod of the second rotating shaft is movably installed inside the movable grooves.
[0010] Preferably, gears are installed at one end of the second rotating shaft inside the movable groove, and the gears are movably located inside the movable groove. The annular turntable has a placement groove inside, and the placement groove is connected to the movable groove. A toothed ring is installed inside the placement groove, and the toothed ring is connected to the inner wall of the barrel. The toothed ring and the gear are meshed together.
[0011] Preferably, a stirring rack is installed at the lower end of the second rotating shaft, and the lower surface of the stirring rack is in contact with the lower surface of the barrel.
[0012] Compared with the prior art, the present invention has the following beneficial effects:
[0013] (1) In this utility model, the second motor drives the third rotating shaft to rotate, which in turn drives the second arc-shaped mixing frame to rotate synchronously. At the same time, the third rotating shaft drives the second rotating shaft to revolve around the third rotating shaft through the connecting frame. The gear at the upper end of the second rotating shaft meshes with the fixed gear ring, causing the second rotating shaft to rotate on its own axis, which in turn drives the first arc-shaped mixing frame to rotate. Since the first arc-shaped mixing frame and the second arc-shaped mixing frame have opposite inclination angles and are parallel to each other, the two can form a cross-cutting stirring of the pickled mustard tuber raw materials and seasonings in different areas of the barrel under the cooperation of revolution and rotation. In addition, the stirring frame at the lower end of the second rotating shaft rotates close to the bottom of the barrel, which can fully stir the bottom material and ensure that the material is mixed more evenly.
[0014] (2) In this utility model, the auger blades in the fixed block rotate under the drive of the first motor and convey the material at the bottom of the barrel upward through the guide groove. The material conveyed to the top will fall back into the annular turntable area and participate in the mixing again under the guidance of the rotation and tilting surface of the annular turntable. This cyclic conveying process breaks the layered state of the material due to gravity, so that the solid pickled mustard raw material and liquid seasoning can flow through the mixing area repeatedly, reducing the problem of insufficient mixing caused by layering, shortening the time required to achieve uniform mixing, and improving the overall mixing efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of a pickled mustard tuber processing and mixing equipment according to this utility model;
[0016] Figure 2 This is a front view structural diagram of a pickled mustard tuber processing and mixing equipment according to the present invention;
[0017] Figure 3 This is a side view of the structure of a pickled mustard tuber processing and mixing device according to the present invention;
[0018] Figure 4 This utility model relates to a pickled mustard tuber processing and mixing equipment. Figure 3 Schematic diagram of the cross-sectional structure at point AA;
[0019] Figure 5 This utility model relates to a pickled mustard tuber processing and mixing equipment. Figure 4 Enlarged structural diagram at point B;
[0020] Figure 6 This utility model relates to a pickled mustard tuber processing and mixing equipment. Figure 4 Enlarged structural diagram at point C.
[0021] In the diagram: 1. Barrel body; 2. Auxiliary mechanism; 201. Fixing block; 202. Guide groove; 203. Screwdriver blade; 204. First rotating shaft; 205. First motor; 206. Annular turntable; 207. Annular slider; 208. Second rotating shaft; 209. Movable groove; 210. Gear; 211. Placement groove; 212. Gear ring; 213. Annular guide frame; 214. First arc-shaped mixing frame; 215. Connecting frame; 216. Third rotating shaft; 217. Second arc-shaped mixing frame; 218. Second motor; 219. Stirring frame; 3. Feed pipe; 4. Feed inlet; 5. Discharge pipe. Detailed Implementation
[0022] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.
[0023] like Figures 1 to 6As shown in the figure, this utility model embodiment proposes a pickled mustard tuber processing and mixing device, including a barrel body 1. An auxiliary mechanism 2 is installed inside the barrel body 1. A feed pipe 3 and a feed inlet 4 are respectively installed through the two ends of the upper surface of the barrel body 1. A discharge pipe 5 is installed through the lower end of the barrel body 1, and a valve is installed inside the discharge pipe 5. The auxiliary mechanism 2 includes a fixing block 201, which is installed on one side of the barrel body 1. A guide groove 202 is provided inside the fixing block 201. The upper and lower ends of the guide groove 202 are connected through the upper and lower ends of the barrel body 1. A first rotating shaft 204 is movably installed inside the guide groove 202. An auger blade 203 is sleeved on the outside of the shaft of the first rotating shaft 204 inside the guide groove 202, and the auger blade 203 is movably located inside the guide groove 202. A first motor 205 is installed on the upper surface of the fixing block 201, and the output end of the first motor 205 is connected to the first rotating shaft 204. Next, an annular turntable 206 is installed at the upper part of the inside of the barrel 1, and the upper surface of the annular turntable 206 is inclined. A third rotating shaft 216 is movably installed through the middle of the inside of the barrel 1. Several connecting frames 215 are installed at the upper part of the rod of the third rotating shaft 216, and the end of the connecting frame 215 away from the third rotating shaft 216 is in contact with the inner wall of the barrel 1. Several second arc-shaped mixing frames 217 are installed at equal intervals on the outer side of the rod of the third rotating shaft 216. A second rotating shaft 208 is installed through the upper part of the inside of the connecting frame 215. The upper end of the second rotating shaft 208 is connected to the annular turntable 206. Several first arc-shaped mixing frames 214 are installed at equal intervals on the lower end of the rod of the second rotating shaft 208. The first arc-shaped mixing frames 214 and the second arc-shaped mixing frames 217 have opposite inclination angles and are staggered and parallel. A second motor 218 is installed in the middle of the upper surface of the barrel 1. The output end of the second motor 218 is connected to the third rotating shaft 216.
[0024] like Figures 4 to 6As shown, in another embodiment of this utility model, an annular slider 207 is installed on the outer side of the annular turntable 206. The annular slider 207 is engaged and installed at the upper end of the inner side of the barrel 1. The upper surface of the annular turntable 206 is parallel to the feed pipe 3 and the feed inlet 4. An annular guide frame 213 is installed at the upper end of the inner side of the barrel 1. The annular guide frame 213 is located at the upper end of the annular turntable 206. The lower surface of the annular turntable 206 is provided with movable grooves 209. The upper ends of the rod of the second rotating shaft 208 are movably installed inside the movable grooves 209. Gears 210 are installed at one end of the movable groove 209, and the gears 210 are movably located inside the movable groove 209. The annular turntable 206 has a placement groove 211 inside, and the placement groove 211 is connected to the movable groove 209. A toothed ring 212 is installed inside the placement groove 211, and the toothed ring 212 is connected to the inner wall of the barrel 1. The toothed ring 212 is meshed with the gears 210. A stirring rack 219 is installed at the lower end of the second rotating shaft 208, and the lower surface of the stirring rack 219 is in contact with the lower surface of the barrel 1.
[0025] Solid pickled mustard tuber raw materials and liquid seasonings are fed into the barrel 1 through the feed pipe 3 and feed inlet 4 on the upper surface of the barrel 1, respectively. The materials then fall onto the inclined upper surface of the annular turntable 206. Driven by the second rotating shaft 208, the annular turntable 206 rotates along the inner wall of the barrel 1 via the annular slider 207. The inclined surface disperses the materials to the edge, allowing them to be initially mixed before falling into the lower part of the barrel 1. Then, the second motor 218 in the middle of the upper surface of the barrel 1 is started. The output end of the second motor 218 drives the third rotating shaft 216 to rotate. The third rotating shaft 216 simultaneously drives the second arc-shaped mixing frame 217 on the outer side of the rod to rotate. The third rotating shaft 216 drives the second rotating shaft 208 to revolve around the third rotating shaft 216 through the connecting frame 215 at the upper end of the rod. At the same time, the gear 210 at the upper end of the second rotating shaft 208 interacts with the inside of the annular turntable 206. The fixed toothed ring 212 in the placement groove 211 engages, forcing the second rotating shaft 208 to rotate along the movable groove 209 during its revolution, thereby driving the first arc-shaped mixing frame 214 at the lower end of the rod to rotate. Then, the stirring frame 219 at the lower end of the second rotating shaft 208 moves synchronously with the second rotating shaft 208, rotating against the bottom of the barrel 1 to stir the bottom material. Then, the user starts the first motor 205 on the upper surface of the fixed block 201, so that its output end drives the first rotating shaft 204 to rotate. The auger blades 203 on the outside of the first rotating shaft 204 rotate in the guide groove 202, conveying the material at the bottom of the barrel 1 upward along the guide groove 202 to the area of the annular turntable 206, where it participates in dispersion and stirring again. Finally, after the mixing is completed, the valve in the discharge pipe 5 at the lower end of the barrel 1 is opened, and the mixed material is discharged through the discharge pipe 5.
[0026] The annular guide frame 213 can prevent the material from getting stuck in the gap between the annular turntable 206 and the barrel 1 when the material returns to the inside of the barrel 1 through the upper end of the guide groove 202. Then, an annular baffle is installed on the upper surface of the annular turntable 206 to block the material when the annular turntable 206 rotates, further preventing the material from getting stuck in the gap between the annular turntable 206 and the barrel 1.
[0027] The auger blades 203 convey the bottom material upward through the guide groove 202, breaking the stratification of the material caused by gravity, and allowing the material to flow repeatedly through the mixing zone, reducing the mixing time.
[0028] The working principle of this pickled mustard tuber processing and mixing equipment:
[0029] In use, firstly, solid pickled mustard tuber raw materials and liquid seasonings are fed into the feed pipe 3 and feed inlet 4 on the upper surface of the barrel 1, respectively. Then, the materials fall onto the inclined upper surface of the annular turntable 206. Then, driven by the second rotating shaft 208, the annular turntable 206 rotates along the inner wall of the barrel 1 via the annular slider 207, using the inclined surface to disperse the materials to the edge, so that the materials are initially mixed and fall into the lower part of the barrel 1. Then, the second motor 218 in the middle of the upper surface of the barrel 1 is started. Then, the output end of the second motor 218 drives the third rotating shaft 216 to rotate. The third rotating shaft 216 synchronously drives the second arc-shaped mixing frame 217 on the outer side of the rod to rotate. The third rotating shaft 216 drives the second rotating shaft 208 to revolve around the third rotating shaft 216 through the connecting frame 215 at the upper end of the rod. At the same time, the gear 210 at the upper end of the second rotating shaft 208 and the annular turntable 206... The fixed toothed ring 212 in the internal placement groove 211 engages, forcing the second rotating shaft 208 to rotate along the movable groove 209 during its revolution, thereby driving the first arc-shaped mixing frame 214 at the lower end of the rod to rotate. Then, the stirring frame 219 at the lower end of the second rotating shaft 208 moves synchronously with the second rotating shaft 208, rotating against the bottom of the barrel 1 to agitate the bottom material. Then, the user starts the first motor 205 on the upper surface of the fixed block 201, causing its output end to drive the first rotating shaft 204 to rotate. The auger blades 203 on the outside of the first rotating shaft 204 rotate in the guide groove 202, conveying the material at the bottom of the barrel 1 upward along the guide groove 202 to the area of the annular turntable 206, where it participates in dispersion and agitation again. Finally, after the mixing is completed, the valve in the discharge pipe 5 at the lower end of the barrel 1 is opened, and the mixed material is discharged through the discharge pipe 5.
[0030] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. For those skilled in the art, other variations or modifications can be made based on the above description. It is impossible to exhaustively list all the implementation methods here. Any obvious variations or modifications derived from the technical solutions of this utility model are still within the protection scope of this utility model.
Claims
1. A pickled mustard tuber processing and mixing device, comprising a barrel (1), characterized in that: An auxiliary mechanism (2) is installed inside the barrel body (1). A feed pipe (3) and a feed inlet (4) are respectively installed through the two ends of the upper surface of the barrel body (1). A discharge pipe (5) is installed through the lower end of the barrel body (1), and a valve is installed inside the discharge pipe (5). The auxiliary mechanism (2) includes a fixing block (201). The fixing block (201) is installed on one side of the barrel body (1). A guide groove (202) is provided inside the fixing block (201). The upper and lower ends of the guide groove (202) are connected to the barrel body. The upper and lower ends of the body (1) are connected through. A first rotating shaft (204) is movably installed inside the guide groove (202). An auger blade (203) is sleeved on the outside of the rod body inside the guide groove (202) of the first rotating shaft (204), and the auger blade (203) is movably located inside the guide groove (202). A first motor (205) is installed on the upper surface of the fixing block (201). The output end of the first motor (205) is connected to the first rotating shaft (204). The interior of the barrel (1) An annular turntable (206) is installed at the upper end, and the upper surface of the annular turntable (206) is inclined. A third rotating shaft (216) is movably installed through the middle of the inside of the barrel (1). Several connecting frames (215) are installed on the upper end of the rod of the third rotating shaft (216), and the end of the connecting frame (215) away from the third rotating shaft (216) is in contact with the inner wall of the barrel (1). Several second arc-shaped mixing frames (217) are installed at equal intervals on the outer side of the rod of the third rotating shaft (216). The inside of the connecting frame (215) The upper end is provided with a second rotating shaft (208) that is installed through it. The upper end of the second rotating shaft (208) is connected to the annular turntable (206). Several first arc-shaped mixing frames (214) are installed at equal intervals on the lower end of the shaft of the second rotating shaft (208). The first arc-shaped mixing frames (214) and the second arc-shaped mixing frames (217) have opposite inclination angles and are parallel and interlaced. A second motor (218) is installed in the middle of the upper surface of the barrel (1). The output end of the second motor (218) is connected to the third rotating shaft (216).
2. The pickled mustard tuber processing and mixing equipment according to claim 1, characterized in that: An annular slider (207) is installed on the outside of the annular turntable (206). The annular slider (207) is engaged and installed on the upper inside of the barrel body (1). The upper surface of the annular turntable (206) and the feed pipe (3) are parallel vertically to each other with respect to the feed port (4).
3. The pickled mustard tuber processing and mixing equipment according to claim 1, characterized in that: An annular guide frame (213) is installed at the upper end of the inside of the barrel (1), and the annular guide frame (213) is located at the upper end of the annular turntable (206).
4. The pickled mustard tuber processing and mixing equipment according to claim 1, characterized in that: The lower surface of the annular turntable (206) is provided with movable grooves (209), and the upper end of the rod of the second rotating shaft (208) is movably installed inside the movable grooves (209).
5. The pickled mustard tuber processing and mixing equipment according to claim 4, characterized in that: The second rotating shaft (208) is equipped with gears (210) at one end inside the movable groove (209), and the gears (210) are movably located inside the movable groove (209). The annular turntable (206) is provided with a placement groove (211), and the placement groove (211) is connected to the movable groove (209). A toothed ring (212) is installed inside the placement groove (211), and the toothed ring (212) is connected to the inner wall of the barrel (1). The toothed ring (212) is meshed with the gears (210).
6. The pickled mustard tuber processing and mixing equipment according to claim 1, characterized in that: The lower end of the second rotating shaft (208) is equipped with a stirring rack (219), and the lower surface of the stirring rack (219) is in contact with the lower surface of the barrel (1).
Citation Information
Patent Citations
Seasoning and mixing machine for seasoning preserved szechuan pickles
CN214715925U