Raw material stirring tank capable of controlling water adding speed
By introducing a linkage mechanism and a feeding mechanism into the mixing tank, utilizing the different directions of rotation of the main shaft and the auxiliary shaft and the up and down conveying of the feeding auger, the problem of uneven mixing of the raw materials at the bottom of the mixing tank and the upper materials is solved, achieving a better mixing effect and improving food quality.
Patent Information
- Application Number
- CN202421977417.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The existing stirring tank has a poor stirring effect when stirring food raw materials, especially the raw materials at the bottom of the stirring tank are not mixed evenly with the materials on the upper layer, which affects the quality of the food.
A raw material stirring tank with controllable water adding speed is designed. It adopts linkage mechanism and feeding mechanism. By rotating the main shaft and auxiliary shaft in different directions, combined with the up and down conveying of raw materials by the feeding auger, the bottom layer raw materials and the upper layer raw materials are fully mixed.
The mixing effect of food raw materials is improved, the bottom layer raw materials and the upper layer raw materials can be fully contacted and mixed, and the food processing quality is improved.
Smart Images

Figure CN223381433U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing, in particular to a raw material stirring tank capable of controlling the water adding speed. Background Art
[0002] Food processing refers to the processing of grain, feed, vegetable oil and sugar, slaughtering and meat processing, aquatic product processing, and other food processing activities such as vegetables, fruits, and nuts, all directly using agricultural, forestry, animal husbandry, and fishery products as raw materials. It is a type of agricultural product processing industry in the broad sense. During food processing, some raw materials require agitation in a mixing tank to promote thorough mixing and improve food quality.
[0003] The existing mixing tank has poor mixing effect when mixing food raw materials. In addition, the raw materials at the bottom of the mixing tank are not easily mixed with the materials at the upper layer, resulting in uneven mixing, which affects the quality of the food. Utility Model Content
[0004] In view of the above-mentioned deficiencies in the prior art, the present invention provides a raw material stirring tank capable of controlling the water adding speed, so as to solve the problems raised in the above-mentioned background technology.
[0005] In order to achieve the above-mentioned purpose of the utility model, the technical solution adopted by the utility model is a raw material stirring tank with controllable water addition speed, including a stirring tank, a stirring motor is installed at the center of the upper outer wall of the stirring tank, the output shaft end of the stirring motor extends into the stirring tank and is fixedly connected to the main rotating shaft, and a plurality of main stirring blades are evenly arranged on the main rotating shaft, a linkage mechanism is provided inside the stirring tank, and a feeding mechanism is provided on the outside of the stirring tank.
[0006] As an improvement: the linkage mechanism includes a secondary rotating shaft, a secondary stirring blade, a driving gear and a driven gear. The secondary rotating shaft is rotatably connected on the upper inner wall of the stirring tank and located on both sides of the main rotating shaft. A plurality of secondary stirring blades are evenly arranged on the secondary rotating shaft. The upper end fixing sleeve of the main rotating shaft is provided with a driving gear, and the upper end fixing sleeve of the secondary rotating shaft is provided with a driven gear. The driven gear is meshed with the driving gear.
[0007] As an improvement: the feeding mechanism includes a feeding barrel, a driving motor, a feeding auger, a feeding channel and a return channel. The feeding barrel is fixedly connected to the two sides of the outer circumferential wall of the mixing tank, and the driving motor is installed on the lower outer wall of the feeding barrel. The output shaft end of the driving motor extends to the interior of the feeding barrel and is fixedly connected to the feeding auger. The upper end of the feeding auger is rotatably connected to the upper inner wall of the feeding barrel, and feeding channels are respectively opened on both sides of the lower inner wall of the mixing tank. The other end of the feeding channel is connected to the lower end of the feeding barrel, and the two sides of the circumferential wall of the mixing tank are connected to the upper end of the feeding barrel through the return channel.
[0008] As an improvement: a water supply port is provided on the upper outer wall of the stirring tank, the water supply port is connected to a water supply pipe, and a ball valve is installed on the water supply pipe.
[0009] As an improvement: a feeding port is provided on the upper outer wall of the stirring tank.
[0010] As an improvement: a discharge pipe is installed on the bottom wall of the stirring tank, and a control valve is installed on the discharge pipe.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. Through the linkage mechanism, the auxiliary shaft can be driven to rotate together with the main shaft, and the rotation direction of the auxiliary shaft is different from that of the main shaft, which greatly improves the stirring effect of the food raw materials and enables the raw materials to be fully mixed. Under the action of the feeding mechanism, the raw materials at the bottom of the stirring tank can be continuously turned upward, so that the lower layer of raw materials and the upper layer of raw materials can contact and mix, thereby improving the mixing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the overall structure of a raw material stirring tank capable of controlling the water addition speed according to the present invention;
[0014] Figure 2 This is a schematic diagram of the internal structure of a raw material stirring tank capable of controlling the water addition speed of the utility model;
[0015] Figure 3 This is a cross-sectional view of a feed barrel of a raw material stirring tank capable of controlling water addition speed according to the present invention;
[0016] As shown in the figure:
[0017] 100, stirring tank; 110, stirring motor; 120, main rotating shaft; 130, main stirring blade; 200, linkage mechanism; 300, feeding mechanism; 210, auxiliary rotating shaft; 220, auxiliary stirring blade; 230, driving gear; 240, driven gear; 310, feeding barrel; 320, driving motor; 330, feeding auger; 340, feeding channel; 350, returning channel; 140, water supply port; 150, water supply pipe; 160, ball valve; 170, feeding port; 180, discharge pipe. DETAILED DESCRIPTION
[0018] In order to make the technical means, creative features and purpose effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0019] In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "front," "back," "both sides," "one side," "the other side," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0020] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "connected," etc. should be understood in a broad sense. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0021] like Figure 1 and Figure 2 As shown, a raw material stirring tank with controllable water adding speed includes a stirring tank 100, a stirring motor 110 is installed at the center of the upper outer wall of the stirring tank 100, the output shaft end of the stirring motor 110 extends into the stirring tank 100 and is fixedly connected to the main rotating shaft 120, and a plurality of main stirring blades 130 are evenly arranged on the main rotating shaft 120. The output shaft of the stirring motor 110 can drive the main rotating shaft 120 and the main stirring blades 130 to rotate, and the main stirring blades 130 stir the raw materials. A linkage mechanism 200 is provided inside the stirring tank 100, and a feeding mechanism 300 is provided outside the stirring tank 100.
[0022] Specifically, such as Figure 2As shown, a raw material stirring tank with controllable water adding speed, the linkage mechanism 200 includes a secondary rotating shaft 210, a secondary stirring blade 220, a driving gear 230 and a driven gear 240. The secondary rotating shaft 210 is rotatably connected on the upper inner wall of the stirring tank 100 and is located on both sides of the main rotating shaft 120. A plurality of secondary stirring blades 220 are evenly arranged on the secondary rotating shaft 210. A driving gear 230 is fixedly sleeved on the upper end of the main rotating shaft 120, and a driven gear 240 is fixedly sleeved on the upper end of the secondary rotating shaft 210. The driven gear 240 is meshed with the driving gear 230. When the main rotating shaft 120 rotates, it drives the driving gear 230 to rotate. When the driving gear 230 rotates, it can make the driven gear 240 meshed with it drive the secondary rotating shaft 210 to rotate, thereby rotating the secondary stirring blade 220 to stir the raw materials. The main rotating shaft 120 and the secondary rotating shaft 210 have different rotation directions, which can improve the stirring effect during stirring.
[0023] Specifically, such as Figure 3 As shown, a raw material stirring tank with controllable water adding speed, the feeding mechanism 300 includes a feeding cylinder 310, a driving motor 320, a feeding auger 330, a feeding channel 340 and a return channel 350, and the feeding cylinder 310 is fixedly connected to both sides of the outer circumferential wall of the stirring tank 100, and the driving motor 320 is installed on the lower outer wall of the feeding cylinder 310. The output shaft end of the driving motor 320 extends to the interior of the feeding cylinder 310 and is fixedly connected to the feeding auger 330. The upper end of the feeding auger 330 is rotatably connected to the upper inner wall of the feeding cylinder 310, and the feeding channel 340 is opened on both sides of the lower inner wall of the stirring tank 100. The other end of the feeding channel 340 is connected to the feeding cylinder 310. 0 is connected, and the two sides of the circumferential wall of the stirring tank 100 are connected with the upper end of the feeding barrel 310 through the return channel 350. During the stirring process, the raw materials at the bottom of the stirring tank 100 will enter the feeding barrel 310 through the discharge pipe 340, and the output shaft of the driving motor 320 can drive the feeding auger 330 to rotate. When the feeding auger 330 rotates, the raw materials entering the feeding barrel 310 can be transported upward. When it is transported to the upper end of the feeding barrel 310, the raw materials will enter the stirring tank 100 again through the return channel 350, and will fall on the upper raw materials, so that the raw materials in the bottom layer can contact and mix with the upper raw materials, which greatly improves the mixing effect.
[0024] Specifically, such as Figure 1 As shown, a raw material mixing tank with controllable water addition speed is provided. A water supply port 140 is provided on the upper outer wall of the mixing tank 100. The water supply port 140 is connected to a water supply pipe 150. A ball valve 160 is installed on the water supply pipe 150. The other end of the water supply pipe 150 is connected to an external water supply system. When water is added, the ball valve 160 is opened, and water flows into the mixing tank 100 through the water supply pipe 150 and the water supply port 140. The water addition speed can be controlled by controlling the ball valve 160 during the water addition process.
[0025] Specifically, such as Figure 1 As shown, a raw material stirring tank with controllable water adding speed is provided with a feeding port 170 on the upper outer wall of the stirring tank 100 , and all raw materials to be mixed are added into the stirring tank 100 through the feeding port 170 .
[0026] Specifically, such as Figure 2 As shown, a raw material mixing tank with controllable water adding speed is provided. A discharge pipe 180 is installed on the bottom wall of the mixing tank 100 . A control valve is installed on the discharge pipe 180 . After the control valve is opened, the mixed raw materials can be discharged through the discharge pipe 180 .
[0027] During the specific implementation of the present invention, all raw materials are added into the mixing tank 100 through the feeding port 170, and then the ball valve 160 is opened, and water flows into the mixing tank 100 through the water supply pipe 150 and the water supply port 140. During the water injection process, the water injection speed can be controlled by controlling the ball valve 160. After the water injection is completed, the ball valve 160 is closed, and then the stirring motor 110 is started. The output shaft of the stirring motor 110 can drive the main shaft 120 and the main stirring blade 130 to rotate, and the main stirring blade 130 stirs the raw materials. When the main shaft 120 rotates, it drives the driving gear 230 to rotate. When the driving gear 230 rotates, it can make the driven gear 240 meshing therewith drive the auxiliary shaft 210 to rotate, thereby rotating the auxiliary stirring blade 220 to stir the raw materials. The rotation directions of the rotating shaft 120 and the auxiliary rotating shaft 210 are different, which can improve the stirring effect during stirring. During the stirring process, the raw materials at the bottom of the stirring tank 100 will enter the feeding barrel 310 through the discharge pipe 340, and the output shaft of the driving motor 320 can drive the feeding auger 330 to rotate. When the feeding auger 330 rotates, the raw materials entering the feeding barrel 310 can be transported upward. When it is transported to the upper end of the feeding barrel 310, the raw materials will enter the stirring tank 100 again through the return channel 350, and will fall on the upper raw materials, so that the raw materials on the bottom layer can contact and mix with the upper raw materials, which greatly improves the mixing effect. After the mixing is completed, the control valve on the discharge pipe 180 is opened to allow the stirred raw materials to be discharged from the stirring tank 100 through the discharge pipe 180.
[0028] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.
Claims
1. A raw material stirring tank capable of controlling water addition speed, comprising a stirring tank (100), characterized in that: A stirring motor (110) is installed at the center of the upper outer wall of the stirring tank (100), the output shaft end of the stirring motor (110) extends into the stirring tank (100) and is fixedly connected to a main rotating shaft (120), a plurality of main stirring blades (130) are evenly arranged on the main rotating shaft (120), a linkage mechanism (200) is provided inside the stirring tank (100), and a feeding mechanism (300) is provided outside the stirring tank (100), the linkage mechanism (200) includes a secondary rotating shaft ( 210), auxiliary stirring blades (220), a driving gear (230) and a driven gear (240), the auxiliary rotating shaft (210) is rotatably connected on the upper inner wall of the stirring tank (100) and located on both sides of the main rotating shaft (120), and a plurality of auxiliary stirring blades (220) are evenly arranged on the auxiliary rotating shaft (210), the upper end of the main rotating shaft (120) is fixedly sleeved with a driving gear (230), the upper end of the auxiliary rotating shaft (210) is fixedly sleeved with a driven gear (240), and the The movable gear (240) is meshed with the driving gear (230), and the feeding mechanism (300) includes a feeding cylinder (310), a driving motor (320), a feeding auger (330), a feeding channel (340) and a returning channel (350). The feeding cylinder (310) is fixedly connected to both sides of the outer circumferential wall of the stirring tank (100), and the driving motor (320) is installed on the lower outer wall of the feeding cylinder (310). The output shaft end of the driving motor (320) extends to the feeding cylinder ( A feeding auger (330) is fixedly connected to the interior of the feeding barrel (310), and the upper end of the feeding auger (330) is rotatably connected to the upper inner wall of the feeding barrel (310). Feeding channels (340) are respectively opened on both sides of the lower inner wall of the stirring tank (100), and the other end of the feeding channel (340) is connected to the lower end of the feeding barrel (310). Return channels (350) are respectively opened on both sides of the circumferential wall of the stirring tank (100) and are connected to the upper end of the feeding barrel (310).
2. A raw material stirring tank with controllable water addition speed according to claim 1, characterized in that: A water supply port (140) is provided on the upper outer wall of the stirring tank (100), the water supply port (140) is connected to a water supply pipe (150), and a ball valve (160) is installed on the water supply pipe (150).
3. The raw material stirring tank with controllable water addition speed according to claim 1, characterized in that: A feeding port (170) is provided on the upper outer wall of the stirring tank (100).
4. The raw material stirring tank with controllable water addition speed according to claim 1, characterized in that: A discharge pipe (180) is installed on the bottom wall of the stirring tank (100), and a control valve is installed on the discharge pipe (180).