Horizontal stirrer
By using two sets of spiral mixing blade design in a horizontal mixer, the problem of powder and particles not being able to contact fully is solved, and a better mixing effect is achieved.
Patent Information
- Application Number
- CN202421955666.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-13
AI Technical Summary
When the existing horizontal mixer for feed processing mixes with a variety of powders and a variety of particles, it is easy for the powder and particles to be unable to contact sufficiently, resulting in poor mixing effect.
The two sets of spiral stirring blade design are adopted, and the stirring shaft is driven by the driving component to rotate, so that the two sets of spiral stirring blades rotate in the stirring container, thereby achieving full mixing of multiple particles and powders.
The mixing effect of a variety of particles and powder is improved, ensuring that each component can be fully contacted during the stirring process, and the mixing uniformity is improved.
Smart Images

Figure CN223170717U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feed processing equipment, in particular to a horizontal stirrer. Background Art
[0002] The horizontal mixer for feed processing is a common mixing device, which is widely used in the feed production industry. Its design aims to achieve efficient and uniform mixing effects, enabling various feed components to be fully combined to improve the nutritional value and taste of the feed. The horizontal mixer for feed processing is usually in a horizontal state, with stirring blades inside and a motor for driving the stirring blades outside, so that the stirring blades can mix the various components of the feed in the horizontal mixer.
[0003] At present, most of the stirring blades in the horizontal mixer for feed processing are single spiral blades, mainly relying on the motor to drive the internal stirring blades to rotate. During the mixing process, the various components in the feed form a vortex under the action of the stirring blades and move in one direction, thus promoting the mixing between the components. However, when mixing feeds containing multiple powders and multiple granules, this single-blade horizontal mixer for feed processing is prone to the phenomenon that multiple powders and multiple granules cannot fully contact, resulting in poor mixing effects of the various components in the feed.
[0004] In the utility model with the application number: CN202022687932.1 and the publication number: CN213966252U, a horizontal mixer for feed additive raw materials is disclosed, including a base, a housing, a driving device, a stirring device and a disinfection device. The base includes a bottom plate and a receiving sleeve, the housing includes a rotating motor and a box body, the driving device includes a stirring motor and a connecting column, the stirring device includes a sealing sleeve and a stirring rod, and the disinfection device includes a transparent protection plate and an electricity connection column. When mixing feeds containing multiple powders and multiple granules, there is still the problem that multiple powders and multiple granules cannot fully contact, resulting in poor mixing effects of the various components in the feed. Summary of the Utility Model
[0005] Based on this, in view of the above problems, the utility model provides a horizontal stirrer, which solves the problem that when the current horizontal mixer for feed processing mixes feeds containing multiple powders and multiple granules, multiple powders and multiple granules are prone to insufficient contact, resulting in poor mixing effects of the various components in the feed.
[0006] The technical solution of the utility model is as follows:
[0007] A horizontal stirrer includes a stirring container main body, a stirring component and a driving component. The stirring component is arranged inside the stirring container main body, and the driving component is arranged on one side of the stirring container main body for driving the stirring component;
[0008] The stirring assembly includes a stirring rotating shaft and two sets of spiral stirring blades. The two sets of spiral stirring blades are connected to the stirring rotating shaft by a number of connecting rods. The number of connecting rods penetrate the stirring rotating shaft and are fixedly connected to the stirring rotating shaft. The two sets of spiral stirring blades are respectively fixedly connected to the number of connecting rods;
[0009] Both ends of the stirring rotating shaft penetrate the main body of the stirring container respectively and are rotatably connected to the main body of the stirring container. The driving assembly is arranged on one side of the main body of the stirring container and is fixedly connected to one end of the stirring rotating shaft for driving the stirring rotating shaft to rotate.
[0010] Preferably, each set of spiral stirring blades includes two spiral stirring blades.
[0011] Preferably, the driving assembly includes a driving motor, a transmission structure and a gear reduction box. The gear reduction box includes a reduction box body, an input rotating shaft, a transmission rotating shaft and an output rotating shaft. The input rotating shaft, the transmission rotating shaft and the output rotating shaft are arranged in the reduction box body and are rotatably connected to the reduction box body through shaft bearings. Among them, one end of the input rotating shaft penetrates one side of the reduction box body and is connected to the driving motor through the transmission structure. The driving motor is used to drive the input rotating shaft to rotate. A first-stage input gear is fixedly arranged on the input rotating shaft. The transmission rotating shaft is arranged between the input rotating shaft and the output rotating shaft, and a first-stage mating gear meshing with the first-stage input gear is fixedly arranged on the transmission rotating shaft. A second-stage output gear is fixedly arranged on one side of the first-stage mating gear on the transmission rotating shaft. One end of the output rotating shaft penetrates the other side of the reduction box body and is fixedly connected to the stirring rotating shaft. A second-stage mating gear meshing with the second-stage output gear is fixedly arranged on the output rotating shaft.
[0012] Preferably, the reduction box body includes an upper box body and a lower box body, and the upper box body and the lower box body are detachably connected by bolts.
[0013] Preferably, the transmission structure includes a driving wheel and a driven wheel. The driving wheel is fixedly arranged on the output shaft of the driving motor, and the driven wheel is fixedly arranged at the end of the end of the input rotating shaft penetrating the reduction box body. The driving wheel and the driven wheel are driven by a transmission belt.
[0014] Preferably, bearing seats are respectively arranged on both sides of the main body of the stirring container. The bearing seats are fixedly installed on the main body of the stirring container through mounting plates, and both ends of the stirring rotating shaft are respectively connected to the bearing seats.
[0015] Preferably, the main body of the stirring container includes a stirring box body and a stirring box cover. The lower end of the stirring box body is an arc structure. An opening is provided at the top of the stirring box body. The stirring box cover is arranged on the top of the stirring box body and is slidably connected to the stirring box body for covering the opening. Driving cylinders for driving the stirring box cover to slide are arranged on both sides of the stirring box body. The driving cylinders are fixedly connected to the stirring box body, and the output ends of the driving cylinders are fixedly connected to the stirring box cover through a pair of connecting blocks.
[0016] Preferably, it further includes a mounting bracket and a mounting seat. The main body of the mixing container is fixedly mounted on the mounting bracket. The mounting seat is arranged on one side of the mounting bracket, and the driving assembly is arranged on the mounting bracket.
[0017] Preferably, a discharge port is provided at the bottom of the main body of the mixing container. A shielding member is provided at the bottom of the main body of the mixing container and is arranged in cooperation with the discharge port. The shielding member includes a pair of sliding plates arranged at the bottom of the main body of the mixing container and a shielding plate arranged between the sliding plates. One end of the shielding plate can be inserted between the pair of sliding plates and is slidably connected to the pair of sliding plates. One end of the pair of sliding plates is arranged in cooperation with the discharge port, and the shielding plate is used to shield the discharge port.
[0018] Preferably, a pair of driving members are provided at one end of the shielding plate. The pair of driving members are respectively located on both sides of the shielding plate, and the output ends of the pair of driving members are fixedly connected to the shielding plate respectively for driving the shielding plate to slide.
[0019] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0020] Compared with the traditional horizontal mixer for feed, the present utility model, by providing two groups of spiral mixing blades, when mixing feeds of multiple particles and multiple powders, drives the mixing rotating shaft to rotate through the driving assembly, and then drives the two groups of spiral mixing blades connected to the mixing rotating shaft through a plurality of connecting rods to rotate, so that the feeds in the main body of the mixing container are stirred by the two groups of spiral mixing blades, thereby enabling the multiple particles and powders in the feeds to be better mixed, and solving the problem that in the current horizontal mixer for feed processing, when mixing feeds containing multiple powders and multiple particles, it is easy to occur that the multiple powders and multiple particles cannot fully contact, and the mixing effect of each component in the feed is poor. Description of the Drawings
[0021] Figure 1 is a schematic structural diagram of a horizontal mixer described in an embodiment of the present utility model;
[0022] Figure 2 is a partial structural schematic diagram of a horizontal mixer described in an embodiment of the present utility model Figure 1 ;
[0023] Figure 3 is a schematic structural diagram of the mixing assembly and the driving assembly described in an embodiment of the present utility model;
[0024] Figure 4 is a partial structural schematic diagram of the driving assembly described in an embodiment of the present utility model;
[0025] Figure 5 is a partial structural schematic diagram of a horizontal mixer described in an embodiment of the present utility model Figure 2 ;
[0026] Figure 6 It is a schematic diagram of a partial structure of a horizontal stirrer described in an embodiment of the present utility model Figure 3 ;
[0027] Figure 7 It is a schematic diagram of a partial structure of a horizontal stirrer described in an embodiment of the present utility model Figure 4 ;
[0028] Explanation of reference numerals in the drawings:
[0029] 10 - Stirring container main body, 11 - Bearing seat, 12 - Mounting plate, 100 - Stirring box body, 101 - Stirring box cover, 102 - Driving cylinder, 103 - Connecting block, 104 - Discharge port, 105 - Shielding member, 106 - Sliding plate, 107 - Baffle plate, 108 - Driving member, 20 - Stirring assembly, 200 - Stirring rotating shaft, 201 - Helical stirring blades, 202 - Connecting rod, 30 - Driving assembly, 300 - Driving motor, 301 - Transmission structure, 302 - Gear reduction box, 303 - Reduction box main body, 304 - Input rotating shaft, 305 - Transmission rotating shaft, 306 - Output rotating shaft, 307 - Rotating shaft bearing, 308 - First - stage input gear, 309 - First - stage mating gear, 310 - Second - stage output gear, 311 - Second - stage mating gear, 312 - Upper box body, 313 - Lower box body, 314 - Driving wheel, 315 - Driven wheel, 316 - Transmission belt, 40 - Mounting bracket, 50 - Mounting seat, 60 - Material conveying device, 600 - Fixed frame, 601 - Conveying rotating shaft, 602 - Conveying belt, 603 - Conveying motor Detailed implementation manners
[0030] The embodiments of the present utility model will be described in detail below with reference to the drawings
[0031] Embodiment:
[0032] As Figures 1 to 3 shown, in order to solve the above - mentioned problems, this embodiment discloses a horizontal stirrer, including a stirring container main body 10, a stirring assembly 20 and a driving assembly 30. The stirring assembly 20 is arranged inside the stirring container main body 10, and the driving assembly 30 is arranged on one side of the stirring container main body 10 for driving the stirring assembly 20;
[0033] The stirring assembly 20 includes a stirring rotating shaft 200 and two groups of helical stirring blades 201. The two groups of helical stirring blades 201 are connected to the stirring rotating shaft 200 through a plurality of connecting rods 202. The plurality of connecting rods 202 penetrate through the stirring rotating shaft 200 and are fixedly connected to the stirring rotating shaft 200. The two groups of helical stirring blades 201 are respectively fixedly connected to the plurality of connecting rods 202;
[0034] Both ends of the stirring rotating shaft 200 penetrate through the stirring container main body 10 respectively and are rotatably connected to the stirring container main body 10. The driving assembly 30 is arranged on one side of the stirring container main body 10 and is fixedly connected to one end of the stirring rotating shaft 200 for driving the stirring rotating shaft 200 to rotate.
[0035] Compared with the traditional horizontal mixer for feed, in the present utility model, by arranging two groups of spiral stirring blades 201, when stirring feeds of multiple particles and multiple powders, the driving assembly 30 drives the stirring rotating shaft 200 to rotate, and then drives the two groups of spiral stirring blades 201 connected to the stirring rotating shaft 200 through a plurality of connecting rods 202 to rotate, so that the feeds are stirred by the two groups of spiral stirring blades 201 in the stirring container main body 10, and further enables the multiple particles and powders in the feeds to be better mixed, solving the problem that in the current horizontal mixer for feed processing, when mixing feeds containing multiple powders and multiple particles, it is easy to occur that the multiple powders and multiple particles cannot fully contact, and the mixing effect of each component in the feed is poor.
[0036] The spiral stirring blades 201 can realize the movement of the feed in different directions by setting different spiral directions. The following are examples of three different setting methods:
[0037] Example 1: Set the spiral directions of the two groups of spiral stirring blades 201 to be the same, and the two groups of spiral stirring blades 201 can convey the feed from one side of the stirring container main body 10 to the other side.
[0038] Compared with the traditional horizontal mixer for feed, by stirring the feed with the two groups of spiral stirring blades 201, this setting method can make the multiple particles and multiple powders in the feed better mixed.
[0039] As Figure 3 shown, the figure shows the setting method of the spiral stirring blades 201 in Example 1, and the setting methods of the spiral stirring blades 201 in Example 2 and Example 3 are not shown in the drawings.
[0040] Example 2: Set the spiral directions of the two groups of spiral stirring blades 201 to be opposite, and one group of spiral stirring blades 201 can convey the feed from the left side to the right side of the stirring container main body 10, and the other group of spiral stirring blades 201 can convey the feed from the right side to the left side of the stirring container main body 10.
[0041] Compared with the traditional horizontal mixer for feed, by making the feed move in two directions of left and right with the two groups of spiral stirring blades 201, this setting method can make the multiple particles and multiple powders in the feed better mixed.
[0042] Example 3: Each spiral stirring blade 201 is set to two S-shaped spiral structures, and the spiral directions of the two S-shaped spiral structures are opposite. Then, make the spiral direction of one set of spiral stirring blades 201 opposite to that of the other set of spiral stirring blades 201, so that one set of spiral stirring blades 201 can be used to convey the feed from both sides of the stirring container main body 10 to the middle, and the other set of spiral stirring blades 201 can be used to convey the feed from the middle of the stirring container main body 10 to both sides.
[0043] Compared with the traditional horizontal mixer for feed, this setting method makes the feed move in different directions through two sets of spiral stirring blades 201, so as to make the feed perform efficient convective mixing, and can make various particles and powders in the feed mix better.
[0044] Each set of spiral stirring blades 201 includes two spiral stirring blades 201.
[0045] Bearing seats 11 are respectively arranged on both sides of the stirring container main body 10. The bearing seats 11 are fixedly installed on the stirring container main body 10 through mounting plates 12, and both ends of the stirring rotating shaft 200 are respectively connected with the bearing seats 11. The setting of the bearing seats 11 can make the rotation between the stirring rotating shaft 200 and the stirring container main body 10 more stable.
[0046] The bearing seat 11 can adopt the bearing seat 11 in the prior art that can realize the functions of the present utility model, which mainly includes a bearing main body and a bearing seat body for installing the bearing main body.
[0047] Such as Figures 2 to 4As shown in the figure, in order to facilitate the driving of the stirring shaft 200, this embodiment is modified on the basis of the above embodiment. The difference from the above embodiment is that the driving assembly 30 includes a driving motor 300, a transmission structure 301 and a gear reduction box 302. The gear reduction box 302 includes a reduction box body 303, an input rotating shaft 304, a transmission rotating shaft 305 and an output rotating shaft 306. The input rotating shaft 304, the transmission rotating shaft 305 and the output rotating shaft 306 are arranged in the reduction box body 303 and are rotatably connected to the reduction box body 303 through a shaft bearing 307. Among them, one end of the input rotating shaft 304 penetrates through one side of the reduction box body 303 and is connected to the driving motor 300 through the transmission structure 301. The driving motor 300 is used to drive the input rotating shaft 304 to rotate. A first-stage input gear 308 is fixedly arranged on the input rotating shaft 304. The transmission rotating shaft 305 is arranged between the input rotating shaft 304 and the output rotating shaft 306, and a first-stage mating gear 309 meshing with the first-stage input gear 308 is fixedly arranged on the transmission rotating shaft 305. A second-stage output gear 310 is fixedly arranged on one side of the first-stage mating gear 309 on the transmission rotating shaft 305. One end of the output rotating shaft 306 penetrates through the other side of the reduction box body 303 and is fixedly connected to the stirring shaft 200. A second-stage mating gear 311 meshing with the second-stage output gear 310 is fixedly arranged on the output rotating shaft 306.
[0048] Preferably, the transmission structure 301 includes a driving wheel 314 and a driven wheel 315. The driving wheel 314 is fixedly arranged on the output shaft of the driving motor 300. The driven wheel 315 is fixedly arranged at the end of the input rotating shaft 304 penetrating through one side of the reduction box body 303. The driving wheel 314 and the driven wheel 315 are driven by a transmission belt 316.
[0049] During use, the driving motor 300 drives the driving wheel 314, and then the driven wheel 315 is driven by the transmission belt 316, thereby driving the input rotating shaft 304 to rotate. Then, the reduction transmission is completed through the cooperation of the first-stage input gear 308, the first-stage mating gear 309, the second-stage output gear 310 and the second-stage mating gear 311 to drive the output rotating shaft 306, and thus the stirring shaft 200 rotates.
[0050] Among them, the setting of the gear reduction box 302 can reduce the rotational speed output by the driving motor 300, so that the stirring shaft 200 rotates at a lower speed, so that the feed can be fully mixed.
[0051] Among them, the reduction box body 303 includes an upper box body 312 and a lower box body 313. The upper box body 312 and the lower box body 313 are detachably connected by bolts.
[0052] Such as Figure 1As shown in the figure, in order to facilitate feeding and prevent the feed from splashing during the stirring process, this embodiment makes modifications on the basis of the above embodiment. The difference from the above embodiment is that the stirring container main body 10 includes a stirring box body 100 and a stirring box cover 101. The lower end of the stirring box body 100 is an arc-shaped structure. There is an opening at the top of the stirring box body 100. The stirring box cover 101 is arranged on the top of the stirring box body 100 and is slidably connected to the stirring box body 100 for covering the opening. On both sides of the stirring box body 100, there are driving cylinders 102 for driving the sliding of the stirring box cover 101. The driving cylinders 102 are fixedly connected to the stirring box body 100, and the output ends of the driving cylinders 102 are fixedly connected to the stirring box cover 101 through a pair of connecting blocks 103.
[0053] The setting of the stirring box cover 101 can prevent the feed from splashing during the stirring process. The stirring box cover 101 can be opened through the driving cylinder 102, so that the feeding operation can be carried out through the opening.
[0054] Preferably, both ends of the stirring rotating shaft 200 penetrate through the stirring box body 100 respectively and are rotatably connected to the stirring box body 100.
[0055] As Figure 2 shown, in order to facilitate installation, this embodiment makes modifications on the basis of the above embodiment. The difference from the above embodiment is that it further includes a mounting bracket 40 and a mounting seat 50. The stirring container main body 10 is fixedly installed on the mounting bracket 40. The mounting seat 50 is arranged on one side of the mounting bracket 40, and the driving assembly 30 is arranged on the mounting bracket 40.
[0056] Among them, the stirring box body 100 is fixedly arranged on the mounting bracket 40. The stirring box cover 101 is arranged on the top of the stirring box body 100 and is slidably connected to the top of the stirring box body 100.
[0057] As Figures 5 to 6 shown, in order to facilitate discharging, this embodiment makes modifications on the basis of the above embodiment. The difference from the above embodiment is that a discharge port 104 is provided at the bottom of the stirring container main body 10, and a shielding member 105 is provided at the bottom of the stirring container main body 10 and is arranged in cooperation with the discharge port 104. The shielding member 105 includes a pair of sliding plates 106 arranged at the bottom of the stirring container main body 10 and a shielding plate 107 arranged between the sliding plates 106. One end of the shielding plate 107 can be inserted between the pair of sliding plates 106 and is slidably connected to the pair of sliding plates 106. One end of the pair of sliding plates 106 is arranged in cooperation with the discharge port 104, and the shielding plate 107 is used for shielding the discharge port 104.
[0058] Preferably, a pair of driving members 108 are provided at one end of the baffle 107. The pair of driving members 108 are respectively located on both sides of the baffle 107, and the output ends of the pair of driving members 108 are fixedly connected to the baffle 107 respectively, for driving the baffle 107 to slide.
[0059] The driving member 108 can adopt a cylinder that can realize the functions of the present utility model in the prior art. When in use, the baffle 107 is driven to slide through the driving member 108, so that the discharge port 104 is exposed, and thus the feed can leak out from the discharge port 104 under the action of the stirring assembly 20 to complete the discharging.
[0060] Preferably, the pair of driving members 108 are respectively fixedly connected to the mounting bracket 40.
[0061] As Figure 7 shown, preferably, a material conveying device 60 is provided at the bottom of the discharge port 104, and one end of the material conveying device 60 is arranged in cooperation with the discharge port 104.
[0062] The material conveying device 60 can adopt a belt conveyor that can realize the functions of the present utility model in the prior art.
[0063] The material conveying device 60 can also adopt the following structure: The material conveying device 60 includes a fixed frame 600, a plurality of conveying rotating shafts 601, a conveying belt 602 and a conveying motor 603. The plurality of conveying rotating shafts 601 are rotatably arranged on the fixed frame 600, the conveying belt 602 is sleeved on the plurality of conveying rotating shafts 601, and the driving motor 300 is arranged on one side of the fixed frame 600 and is fixedly connected to one of the conveying rotating shafts 601 at one end for driving the conveying rotating shaft 601 to rotate.
[0064] The transmission mode between the conveying belt 602 and the conveying rotating shaft 601 can adopt the transmission mode between the conveying belt 602 and the conveying rotating shaft 601 in the belt conveyor in the prior art. For example: teeth that cooperate with each other are provided at one end where the conveying belt 602 contacts the conveying rotating shaft 601.
[0065] The working principle of the present utility model:
[0066] Compared with the traditional horizontal mixer for feed, the present utility model, by providing two groups of spiral stirring blades 201, when stirring feed of various particles and various powders, drives the stirring rotating shaft 200 to rotate through the driving assembly 30, and then drives the two groups of spiral stirring blades 201 connected to the stirring rotating shaft 200 through a plurality of connecting rods 202 to rotate, so that the feed in the stirring container main body 10 is stirred by the two groups of spiral stirring blades 201, and thus various particles and powders in the feed can be better mixed.
[0067] The above-described embodiments merely represent the specific implementation manners of the present utility model. The description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all fall within the protection scope of the present utility model.
Claims
1. A horizontal stirrer, characterized in that, It includes a stirring container body (10), a stirring component (20) and a driving component (30). The stirring component (20) is arranged inside the stirring container body (10), and the driving component (30) is arranged on one side of the stirring container body (10) for driving the stirring component (20). The stirring component (20) includes a stirring rotating shaft (200) and two groups of spiral stirring blades (201). The two groups of spiral stirring blades (201) are connected to the stirring rotating shaft (200) through a number of connecting rods (202). The number of connecting rods (202) penetrates the stirring rotating shaft (200) and is fixedly connected to the stirring rotating shaft (200). The two groups of spiral stirring blades (201) are respectively fixedly connected to the number of connecting rods (202). Each group of spiral stirring blades (201) includes two spiral stirring blades (201), and the spiral directions of the two groups of spiral stirring blades (201) are set to be the same or opposite. Both ends of the stirring rotating shaft (200) penetrate the stirring container body (10) respectively and are rotatably connected to the stirring container body (10). The driving component (30) is arranged on one side of the stirring container body (10) and is fixedly connected to one end of the stirring rotating shaft (200) for driving the stirring rotating shaft (200) to rotate.
2. The horizontal stirrer according to claim 1, characterized in that, The driving component (30) includes a driving motor (300), a transmission structure (301) and a gear reduction box (302). The gear reduction box (302) includes a reduction box body (303), an input rotating shaft (304), a transmission rotating shaft (305) and an output rotating shaft (306). The input rotating shaft (304), the transmission rotating shaft (305) and the output rotating shaft (306) are arranged inside the reduction box body (303) and are rotatably connected to the reduction box body (303) through shaft bearings (307). Among them, one end of the input rotating shaft (304) penetrates one side of the reduction box body (303) and is connected to the driving motor (300) through the transmission structure (301). The driving motor (300) is used to drive the input rotating shaft (304) to rotate. A first-stage input gear (308) is fixedly arranged on the input rotating shaft (304). The transmission rotating shaft (305) is arranged between the input rotating shaft (304) and the output rotating shaft (306), and a first-stage mating gear (309) meshing with the first-stage input gear (308) is fixedly arranged on the transmission rotating shaft (305). A second-stage output gear (310) is fixedly arranged on one side of the first-stage mating gear (309) on the transmission rotating shaft (305). One end of the output rotating shaft (306) penetrates the other side of the reduction box body (303) and is fixedly connected to the stirring rotating shaft (200). A second-stage mating gear (311) meshing with the second-stage output gear (310) is fixedly arranged on the output rotating shaft (306).
3. A horizontal stirrer according to claim 2, characterized in that, The reduction box body (303) includes an upper box body (312) and a lower box body (313), and the upper box body (312) and the lower box body (313) are detachably connected by bolts.
4. A horizontal stirrer according to claim 3, characterized in that, The transmission structure (301) includes a driving wheel (314) and a driven wheel (315). The driving wheel (314) is fixedly arranged on the output shaft of the driving motor (300), and the driven wheel (315) is fixedly arranged at the end of one end of the input rotating shaft (304) passing through the main body of the speed reducer (303). The driving wheel (314) and the driven wheel (315) are driven by a transmission belt (316).
5. A horizontal stirrer according to claim 4, characterized in that, Bearing seats (11) are respectively arranged on both sides of the main body of the stirring container (10). The bearing seats (11) are fixedly installed on the main body of the stirring container (10) through mounting plates (12). Both ends of the stirring rotating shaft (200) are respectively connected to the bearing seats (11).
6. A horizontal stirrer according to claim 5, characterized in that, The main body of the stirring container (10) includes a stirring box body (100) and a stirring box cover (101). The lower end of the stirring box body (100) is of an arc structure. An opening is provided at the top of the stirring box body (100). The stirring box cover (101) is arranged on the top of the stirring box body (100) and is slidably connected to the stirring box body (100) for covering the opening. Driving cylinders (102) for driving the sliding of the stirring box cover (101) are arranged on both sides of the stirring box body (100). The driving cylinders (102) are fixedly connected to the stirring box body (100), and the output ends of the driving cylinders (102) are fixedly connected to the stirring box cover (101) through a pair of connecting blocks (103).
7. A horizontal stirrer according to claim 6, characterized in that, It further includes a mounting bracket (40) and a mounting seat (50). The main body of the stirring container (10) is fixedly installed on the mounting bracket (40). The mounting seat (50) is arranged on one side of the mounting bracket (40), and the driving assembly (30) is arranged on the mounting bracket (40).
8. A horizontal stirrer according to claim 7, characterized in that, A discharge port (104) is provided at the bottom of the main body of the stirring container (10). A shielding member (105) cooperating with the discharge port (104) is provided at the bottom of the main body of the stirring container (10). The shielding member (105) includes a pair of sliding plates (106) arranged at the bottom of the main body of the stirring container (10) and a shielding plate (107) arranged between the sliding plates (106). One end of the shielding plate (107) can be inserted between the pair of sliding plates (106) and is slidably connected to the pair of sliding plates (106). One ends of the pair of sliding plates (106) are arranged in cooperation with the discharge port (104), and the shielding plate (107) is used for shielding the discharge port (104).
9. The horizontal stirrer according to claim 8, characterized in that, A pair of driving members (108) are provided at one end of the shielding plate (107). The pair of driving members (108) are respectively located on both sides of the shielding plate (107), and the output ends of the pair of driving members (108) are respectively fixedly connected to the shielding plate (107) for driving the sliding of the shielding plate (107).
Citation Information
Patent Citations
Horizontal stirrer for feed additive raw materials
CN213966252U
Cited By
A solid and liquid fertilizer mixing and discharging device
CN224686778U