Efficient stirring machine for processing snow-melting agent
By designing a high-efficiency mixer for snow melting agent processing, the problems of raw material stacking and layering are solved by using components such as the storage silo, the first trough, the second trough and the transmission rod, and efficient mixing and feeding are achieved.
Patent Information
- Application Number
- CN202421986692.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-16
AI Technical Summary
During the process of snow melting agent processing, raw materials are prone to accumulate at the feed port, resulting in clogging, and may lead to the delamination of raw materials in the mixing tank, affecting the mixing effect.
A high-efficiency mixer is designed, including a storage silo, a first trough, a second trough, a transmission rod, a mixing scraper and a feed pipe. The transmission rod drives the mixing scraper to rotate. The arc-shaped design of the mixing scraper enables it to effectively mix raw materials and prevent stacking.
Effectively prevent raw materials from stacking and blocking at the feed port, while avoiding the delamination of raw materials in the mixing tank, improving the mixing quality and feeding speed.
Smart Images

Figure CN223010315U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of snow melting agent processing, in particular to an efficient mixer for snow melting agent processing. Background Technique
[0002] A snow melting agent refers to a chemical agent that can lower the melting temperature of ice and snow. Ordinary snow melting agents are easy to obtain raw materials and are inexpensive. Their components are mainly potassium acetate and chlorides, and they are classified into these two types. The snow melting agent melts the snow on the road by lowering the melting temperature of ice and snow, facilitating road dredging, and the effect at the spreading point is obvious. However, it is harmful. Research has found that the residues of the snow melting agent can corrode the road surface and the rubber tires of automobiles. When processing and mixing the snow melting agent, an efficient mixer is required. However, when injecting the snow melting agent into the mixing tank, it may cause the raw materials to accumulate at the feeding port, resulting in blockage, and at the same time, it may cause the raw materials in the mixing tank to be stratified. Content of the Utility Model
[0003] The purpose of the utility model is to provide an efficient mixer for snow melting agent processing to solve the problems that the raw materials may accumulate at the feeding port and the raw materials in the mixing pipe may be stratified as mentioned in the above background technique.
[0004] To achieve the above purpose, the utility model provides the following technical solution: An efficient mixer for snow melting agent processing, including a stirring mechanism, a support component is connected outside the stirring mechanism, a transmission component is connected to the stirring mechanism, and a mixing component is connected outside the transmission component. The mixing component includes a storage bin, a first material groove is clamped in the storage bin, a second material groove is opened in the storage bin, and the second material groove is arranged on one side of the first material groove. A transmission rod is rotatably connected in the storage bin, and a mixing scraper is clamped and connected outside the transmission rod. A baffle plate I is lapped under the mixing scraper, and a feeding pipe is clamped and connected outside the baffle plate I. The storage bin is fixedly connected with the feeding pipe below. A feeding port is opened in the baffle plate I, and two feeding ports are symmetrically arranged. The shape of the mixing scraper is arc-shaped, and a limiting component is connected in the storage bin.
[0005] Preferably, the stirring mechanism includes a mixing tank, and a sleeve I is fixedly connected in the mixing tank. A stirring shaft is sleeved in the sleeve I, and stirring rods are fixedly connected outside the stirring shaft.
[0006] Preferably, one end of the stirring shaft is clamped and connected with a bidirectional motor, and the bidirectional motor is fixedly connected with the mixing tank below. A discharge port is opened below the mixing tank, and a control valve is rotatably connected outside the discharge port. The bidirectional motor is arranged on the front surface of the storage bin.
[0007] Preferably, the support assembly includes a fixed ring, which is fixedly connected to the mixing tank inside the fixed ring. A support column is fixedly connected below the fixed ring, and a reinforcing diagonal rod is fixedly connected to the outside of the support column.
[0008] Preferably, the transmission assembly includes a first synchronous pulley, which is fixedly connected to the bidirectional motor. A second synchronous belt is meshed and connected to the outside of the first synchronous pulley, and the other end of the second synchronous belt is meshed and connected to a second synchronous pulley. The second synchronous pulley is fixedly connected to the transmission rod below.
[0009] Preferably, the limiting assembly includes a fixed block, the front surface of which is lapped with the storage bin. A first limiting plate is snap-fitted inside the fixed block, and the outside of the first limiting plate is snap-fitted with the second material chute.
[0010] Preferably, a second limiting plate is snap-fitted inside the fixed block, and the second limiting plate is arranged opposite to the first limiting plate. A limiting hole is formed inside the fixed block, and a limiting rod is snap-fitted inside the limiting hole.
[0011] Preferably, a second sleeve is fixedly connected to the fixed block, and a second baffle is slidably connected inside the second sleeve. A return spring is snap-fitted on the second baffle, and the limiting rod is sleeved inside the return spring. The limiting rod is fixedly connected to the second baffle.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. For the high-efficiency mixer for snow melting agent processing, by setting the storage bin, the first material chute, the second material chute, the transmission rod, the feed pipe, the mixing scraper, and the feed port, pulling the fixed block drives the first limiting plate and the second limiting plate to move, releasing the limitation on the first material chute and the second material chute, and starting the bidirectional motor. The bidirectional motor drives the second synchronous belt and the transmission rod to rotate through the second synchronous belt, so that the transmission rod drives the mixing scraper to rotate along the center of the transmission rod, enabling the mixing scraper to mix the raw materials in the first material chute and the second material chute, preventing the raw materials from stratifying, and pushing the mixed raw materials to move, so that the raw materials are injected into the mixing tank through the feed port. At the same time, the mixing scraper continuously rotates, preventing the raw materials from accumulating at the feed port, preventing the feed port from being blocked, ensuring the feeding speed, and improving the mixing quality.
[0014] 2. The high-efficiency mixer for snow melting agent processing can, by setting the fixed block, the first limiting plate, the second limiting plate, the limiting hole, the limiting rod, the second sleeve, the second baffle and the return spring, pull the limiting rod to drive the second baffle to move and compress the return spring, so that the limiting rod is disengaged from the limiting hole, thereby releasing the limitation on the second limiting plate. At the same time, pull the fixed block to drive the first limiting plate to be withdrawn from the second material tank, thereby releasing the limitation on the second material tank, enabling the second material tank and the first material tank to be filled with materials in sequence, facilitating the control of the main material sequence according to the raw materials and ensuring the quality of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0016] Figure 2 is a bottom view structural schematic diagram of the mixing tank of the present utility model;
[0017] Figure 3 is a partially cut-away structural schematic diagram of the mixing tank of the present utility model;
[0018] Figure 4 is a cut-away structural schematic diagram of the storage bin of the present utility model;
[0019] Figure 5 is a partially cut-away structural schematic diagram of the feed pipe of the present utility model;
[0020] Figure 6 is a partially cut-away structural schematic diagram of the fixed block of the present utility model.
[0021] In the figure: 1. Mixing mechanism; 101. Mixing tank; 102. First sleeve; 103. Mixing shaft; 104. Mixing rod; 105. Bidirectional motor; 106. Discharge port; 107. Control valve; 2. Support assembly; 201. Fixed ring; 202. Support column; 203. Reinforcing diagonal bar; 3. Transmission assembly; 301. First synchronous pulley; 302. Second synchronous belt; 303. Second synchronous pulley; 4. Mixing assembly; 401. Storage bin; 402. First material tank; 403. Second material tank; 404. Transmission rod; 405. Feed pipe; 406. Mixing scraper; 407. First baffle; 408. Feed inlet; 5. Limiting assembly; 501. Fixed block; 502. First limiting plate; 503. Second limiting plate; 504. Limiting hole; 505. Limiting rod; 506. Second sleeve; 507. Second baffle; 508. Return spring. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0023] Please refer to Figures 1-6 , the present invention provides a technical solution: a high-efficiency mixer for snow melting agent processing, including a stirring mechanism 1, a support assembly 2 is connected outside the stirring mechanism 1, a transmission assembly 3 is connected to the stirring mechanism 1, and a mixing assembly 4 is connected outside the transmission assembly 3. The mixing assembly 4 includes a storage bin 401, a first material groove 402 is clamped in the storage bin 401, a second material groove 403 is opened in the storage bin 401, and the second material groove 403 is arranged on one side of the first material groove 402. A transmission rod 404 is rotatably connected in the storage bin 401, and a mixing scraper 406 is clamped and connected to the outside of the transmission rod 404. A first baffle 407 is lapped under the mixing scraper 406, and a feed pipe 405 is clamped and connected to the outside of the first baffle 407. The storage bin 401 is fixedly connected to the feed pipe 405 below. A feed port 408 is opened in the first baffle 407, and two feed ports 408 are symmetrically arranged. The shape of the mixing scraper 406 is arc-shaped. A limiting assembly 5 is connected in the storage bin 401. By providing the first material groove 402 and the second material groove 403, it is convenient to store different raw materials. By providing the transmission rod 404, when the transmission rod 404 rotates, the mixing scraper 406 is driven to rotate. By providing the mixing scraper 406, when the mixing scraper 406 rotates and the mixing scraper 406 is an arc-shaped plate, the mixing scraper 406 mixes the raw materials, and at the same time, it is convenient to push the raw materials to move, preventing the raw materials from accumulating at the feed port 408 and avoiding blockage of the feed port 408, ensuring the injection of raw materials.
[0024] The stirring mechanism 1 includes a stirring tank 101, and a first sleeve 102 is fixedly connected in the stirring tank 101. A stirring shaft 103 is sleeved in the first sleeve 102, and stirring rods 104 are fixedly connected to the outside of the stirring shaft 103.
[0025] One end of the stirring shaft 103 is clamped and connected with a bidirectional motor 105, and the bidirectional motor 105 is fixedly connected to the stirring tank 101 below. An outlet 106 is opened below the stirring tank 101, and a control valve 107 is rotatably connected to the outside of the outlet 106. The bidirectional motor 105 is arranged on the front of the storage bin 401.
[0026] The support assembly 2 includes a fixed ring 201, and the fixed ring 201 is fixedly connected to the stirring tank 101 inside. A support column 202 is fixedly connected below the fixed ring 201, and a reinforcing diagonal rod 203 is fixedly connected to the outside of the support column 202. By providing the reinforcing diagonal rod 203, the stability between the fixed rings 201 is increased.
[0027] The transmission assembly 3 includes a first synchronous pulley 301, and the first synchronous pulley 301 is fixedly connected to the bidirectional motor 105. A second synchronous belt 302 is meshed and connected to the outside of the first synchronous pulley 301, and the other end of the second synchronous belt 302 is meshed and connected to a second synchronous pulley 303. The second synchronous pulley 303 is fixedly connected to the transmission rod 404 below. By providing the second synchronous belt 302 and the second synchronous belt 302, when the first synchronous pulley 301 rotates, the first synchronous pulley 301 drives the second synchronous belt 302 to operate, so as to facilitate the transmission of power to the second synchronous pulley 303.
[0028] The limiting assembly 5 includes a fixed block 501, and the front surface of the fixed block 501 abuts against the storage bin 401. A first limiting plate 502 is snap-fitted inside the fixed block 501, and the outside of the first limiting plate 502 is snap-fitted with the second material groove 403. By providing the first limiting plate 502, the second material groove 403 is limited.
[0029] A second limiting plate 503 is snap-fitted inside the fixed block 501, and the second limiting plate 503 is arranged opposite to the first limiting plate 502. A limiting hole 504 is opened inside the fixed block 501, and a limiting rod 505 is snap-fitted inside the limiting hole 504. By providing the second limiting plate 503, when the second limiting plate 503 is snap-fitted with the first material groove 402, the raw materials in the second material groove 403 are limited.
[0030] A second sleeve 506 is fixedly connected to the fixed block 501, and a second baffle 507 is slidably connected inside the second sleeve 506. A return spring 508 is snap-fitted on the second baffle 507, and the inside of the return spring 508 is sleeved with the limiting rod 505. The limiting rod 505 is fixedly connected to the second baffle 507. By providing the limiting hole 504 and the limiting rod 505, by snap-fitting the limiting rod 505 with the limiting hole 504, the fixed block 501 and the second limiting plate 503 are fixed. When the return spring 508 maintains its original length, the limiting rod 505 is snap-fitted with the limiting hole 504. When the return spring 508 is compressed, the limiting rod 505 is disengaged from the limiting hole 504, and the limitation of the second limiting plate 503 is released.
[0031] Working principle: When using the high-efficiency mixer, first inject the raw materials into the first material tank 402 or the second material tank 403 respectively. Then, by pulling the fixed block 501, drive the first limiting plate 502 and the second limiting plate 503 to move, releasing the limitation on the first material tank 402 and the second material tank 403. When injecting materials, by pulling the limiting rod 505, the limiting rod 505 drives the baffle two 507 to move, and the baffle two 507 compresses the return spring 508, so that the limiting rod 505 disengages from the limiting hole 504, thus releasing the limitation on the second limiting plate 503. At the same time, pull the fixed block 501, so that the fixed block 501 drives the first limiting plate 502 to be withdrawn from the second material tank 403, thus releasing the limitation on the second material tank 403, enabling the second material tank 403 and the first material tank 402 to be filled with materials in sequence, facilitating the control of the main material order according to the raw materials, ensuring the quality of the product, and starting the bidirectional motor 105, so that the bidirectional motor 105 drives the synchronous belt two 302 and the transmission rod 404 to rotate through the synchronous belt two 302, so that the transmission rod 404 drives the mixing scraper 406 to rotate along the center of the transmission rod 404, enabling the mixing scraper 406 to mix the raw materials in the first material tank 402 and the second material tank 403, and pushing the mixed raw materials to move, so that the raw materials are injected into the mixing tank 101 through the feed port 408. At the same time, the mixing scraper 406 keeps rotating to prevent the raw materials from accumulating at the feed port 408 and prevent the feed port 408 from being blocked, ensuring the feeding speed and improving the mixing quality. While the bidirectional motor 105 is rotating, the bidirectional motor 105 drives the stirring shaft 103 to rotate, so that the stirring rod 104 further stirs and mixes the mixed raw materials, increasing the mixing efficiency. By opening the control valve 107, the mixed raw materials are discharged from the discharge port 106, thus completing the use of the high-efficiency mixer.
[0032] Finally, it should be noted that the above content is only used to illustrate the technical solution of the present invention, rather than a limitation on the protection scope of the present invention. Any simple modification or equivalent replacement of the technical solution of the present invention by those of ordinary skill in the art shall not depart from the essence and scope of the technical solution of the present invention.
Claims
1. A high-efficiency mixer for processing snow-melting agent, comprising a stirring mechanism (1), characterized in that: The stirring mechanism (1) is externally connected to a support assembly (2), the stirring mechanism (1) is connected to a transmission assembly (3), and the transmission assembly (3) is externally connected to a mixing assembly (4), the mixing assembly (4) comprises a material storage bin (401), a first material trough (402) is engaged in the material storage bin (401), a second material trough (403) is provided in the material storage bin (401), and the second material trough (403) is arranged on one side of the first material trough (402), and a transmission rod (404) is rotatably connected in the material storage bin (401). ), and the transmission rod (404) is externally snap-connected with a mixing scraper (406), a baffle plate 1 (407) is overlapped below the mixing scraper (406), and a feed pipe (405) is externally snap-connected with the baffle plate 1 (407), the storage bin (401) is fixedly connected to the feed pipe (405) below, a feed port (408) is provided inside the baffle plate 1 (407), and two feed ports (408) are symmetrically arranged, the mixing scraper (406) is in the shape of an arc, and a limiting component (5) is connected inside the storage bin (401).
2. The high-efficiency mixer for snow-melting agent processing according to claim 1, characterized in that: The stirring mechanism (1) comprises a stirring tank (101), wherein a sleeve 1 (102) is fixedly connected inside the stirring tank (101), a stirring shaft (103) is sleeved inside the sleeve 1 (102), and a stirring rod (104) is fixedly connected outside the stirring shaft (103).
3. The high-efficiency mixer for snow-melting agent processing according to claim 2, characterized in that: One end of the stirring shaft (103) is snap-connected to a bidirectional motor (105), and the bidirectional motor (105) is fixedly connected to the stirring tank (101) at the bottom. A discharge port (106) is provided at the bottom of the stirring tank (101), and the discharge port (106) is externally rotatably connected to a control valve (107). The bidirectional motor (105) is arranged at the front of the storage bin (401).
4. The high-efficiency mixer for snow-melting agent processing according to claim 2, characterized in that: The support assembly (2) comprises a fixed circular ring (201), and the fixed circular ring (201) is fixedly connected to the stirring tank (101) inside, a support column (202) is fixedly connected below the fixed circular ring (201), and a reinforcing diagonal rod (203) is fixedly connected outside the support column (202).
5. The high-efficiency mixer for snow-melting agent processing according to claim 3, characterized in that: The transmission assembly (3) comprises a synchronous wheel (301) which is fixedly connected to the bidirectional motor (105); the synchronous wheel (301) is externally meshedly connected to a synchronous belt (302); the other end of the synchronous belt (302) is meshedly connected to a synchronous wheel (303); the synchronous wheel (303) is fixedly connected to a transmission rod (404) at its lower end.
6. The high-efficiency mixer for snow-melting agent processing according to claim 1, characterized in that: The limiting assembly (5) comprises a fixed block (501), and the front surface of the fixed block (501) overlaps with the material storage bin (401), the fixed block (501) is internally snap-connected with a first limiting plate (502), and the first limiting plate (502) is externally snap-connected with the second material trough (403).
7. A high-efficiency mixer for processing snow-melting agent according to claim 6, characterized in that: A second limiting plate (503) is snap-connected in the fixed block (501), and the second limiting plate (503) is arranged opposite to the first limiting plate (502). A limiting hole (504) is provided in the fixed block (501), and a limiting rod (505) is snap-connected in the limiting hole (504).
8. The high-efficiency mixer for snow-melting agent processing according to claim 7, characterized in that: The fixed block (501) is fixedly connected to a second sleeve (506), and a second baffle (507) is slidably connected inside the second sleeve (506). The second baffle (507) is snap-connected to a return spring (508), and the return spring (508) is sleeved with a limit rod (505). The limit rod (505) is fixedly connected to the second baffle (507).