Auxiliary discharging assembly of stirring device

By introducing slide rails, sliders and scraper structures into the agitator, the problem of sticking to viscous raw materials is solved, and better cutting and cleaning effects are achieved.

CN223112977UActive Publication Date: 2025-07-18常州市泽涛机械制造有限公司
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Patent Information

Application Number
CN202421824384.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-18
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

After the mixing device is completed, some viscous raw materials are easily attached to the inner wall of the cylinder, making it difficult to get the material and clean it.

Method used

An auxiliary feeding assembly is designed, including a slide rail, slider, scraper and spring structure. The viscous raw materials are scraped off through the scraper contact with the inner wall of the stirring device, and the spring is used to increase the contact force to improve the feeding effect and cleanliness.

Benefits of technology

Effectively scrape off raw materials attached to the inner wall of the stirring device, improve the cutting efficiency and enhance the cleaning effect, and ensure smooth cutting of raw materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of stirring devices, and particularly relates to an auxiliary blanking assembly of a stirring device, which comprises a stirring device body, a stirring mechanism is mounted on the side wall of the stirring device body; the side wall of the stirring mechanism is fixedly connected with a pair of sliding rails; the sliding blocks are inserted into the inner side walls of the sliding rails, then raw materials attached to the inner side walls of the stirring device body can be scraped off through continuous rotation of the stirring mechanism under the full contact of the first scraping plates and the inner side walls of the stirring device body, and in the process, the phenomenon that the raw materials are prone to falling off after being mixed can be reduced. When the stirring device body is used for stirring the raw materials, part of the raw materials are thick and are easily attached to the inner side wall of the stirring device body, so that discharging is difficult, at the moment, the raw materials attached to the inner side wall of the stirring device body are scraped off through a first scraping plate, and then the discharging effect of the stirring device body after the raw materials are stirred is improved; meanwhile, the full contact effect between the first scraping plate and the inner side wall of the stirring device body can be improved through the first spring, and the cleaning effect is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of stirring devices, and specifically relates to an auxiliary feeding component of a stirring device. Background Technique

[0002] A stirring device is a device that installs a stirrer on the equipment cylinder body to mix, stir or transfer heat to the materials in the equipment cylinder body. The stirring devices are mainly divided into side-entry stirring, eccentric stirring, and inclined stirring.

[0003] In the prior art, the stirring device mainly consists of a stirring mechanism, a cylinder body, and a feeding port. During use, the raw materials to be stirred and mixed are put into the cylinder body, and then the stirring mechanism is started. At this time, the raw materials in the cylinder body can be stirred and mixed by the stirring mechanism. When the stirring and mixing are completed, the raw materials can be discharged through the feeding port.

[0004] However, in the prior art, it is found that after the stirring device finishes stirring, when discharging the raw materials, due to the viscosity of some raw materials, the raw materials are easily attached to the inner wall of the cylinder body, which is not convenient for cleaning, resulting in difficult full discharge of the raw materials. Therefore, the utility model provides an auxiliary feeding component of a stirring device. Summary of the Utility Model

[0005] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background technique.

[0006] The technical solution adopted by the utility model to solve its technical problems is as follows: An auxiliary feeding component of a stirring device according to the utility model includes a stirring device body; a stirring mechanism is installed on the side wall of the stirring device body; a pair of slide rails are fixedly connected to the side wall of the stirring mechanism; the slide rails are symmetrically arranged on both sides of the stirring mechanism and have the same structure; a slider is slidably connected to the inner side wall of the slide rail; a rubber pad is fixedly connected to the side wall of the slider; a fixing frame is fixedly connected to the side wall of the slider; a plurality of telescopic rods are fixedly connected to the side wall of the fixing frame; the telescopic rods are evenly distributed on the side wall of the fixing frame and have the same structure; a first spring is sleeved outside the telescopic rod; the telescopic rod and the end of the first spring are fixedly connected to the same first scraping plate. At this time, the raw materials attached to the inner side wall of the stirring device body are scraped off by the first scraping plate, thereby improving the discharging effect of the stirring device body after stirring the raw materials. At the same time, the first spring can increase the full contact effect between the first scraping plate and the inner side wall of the stirring device body, improving the cleaning effect.

[0007] Preferably, a spiral impeller is fixedly connected to the side wall of the stirring mechanism; a pair of support plates are fixedly connected to the side wall of the spiral impeller; the support plates are symmetrically arranged on both sides of the spiral impeller and have the same structure; a second scraper is fixedly connected to the end of the support plate; at this time, by arranging the spiral impeller, the smoothness during feeding is increased, and at the same time, the second scraper can clean the raw materials attached to the bottom of the stirring device body.

[0008] Preferably, a pair of grooves are formed in the side wall of the slider; the grooves are symmetrically arranged on both sides of the slider and have the same structure; a plurality of second springs are fixedly connected to the side wall of the groove; the second springs are evenly distributed on the side wall of the groove and have the same structure; an insertion plate is fixedly connected to the end of the second spring; a pair of through holes are symmetrically formed in the side wall of the slide rail; at this time, by arranging the insertion plate, the fixing effect of the slider on the inner side wall of the slide rail is further increased.

[0009] Preferably, an elastic sheet is fixedly connected to the side wall of the first scraper; a plurality of convex blocks are evenly fixedly connected to the inner side wall of the stirring device body; at this time, through the mutual cooperation of the elastic sheet and the convex blocks, the raw materials attached to the side wall of the first scraper are cleaned.

[0010] Preferably, a pair of elastic plates are fixedly connected to the side wall of the slide rail; the elastic plates are symmetrically arranged on both sides of the slide rail and have the same structure; a plurality of protective pads are evenly fixedly connected to the side wall of the elastic plate; at this time, by arranging the elastic plate, the positioning effect when the slider is inserted into the inner side wall of the slide rail is achieved, and at the same time, the protective pad can protect the elastic plate.

[0011] Preferably, a plurality of flow guiding plates are evenly fixedly connected to the side wall of the first scraper; at this time, by arranging the flow guiding plates, the guiding effect on the scraped raw materials is achieved.

[0012] Preferably, an elastic strip is fixedly connected to the side wall of the elastic plate; the elastic strip is fixedly connected to the slide rail; at this time, by arranging the elastic strip, the protection effect when the elastic plate is squeezed is achieved.

[0013] The beneficial effects of the present invention are as follows:

[0014] 1. For the auxiliary feeding component of the stirring device of the present invention, by arranging the first scraper, it is possible to reduce the situation that after the raw materials are mixed, some raw materials are relatively viscous and easily adhere to the inner side wall of the stirring device body, resulting in difficult feeding. At this time, the first scraper scrapes off the raw materials attached to the inner side wall of the stirring device body, thereby improving the feeding effect after the stirring device body finishes stirring the raw materials. At the same time, the first spring can increase the full contact effect between the first scraper and the inner side wall of the stirring device body, improving the cleaning effect.

[0015] 2. The auxiliary blanking component of a stirring device described in the present utility model can reduce the poor fixing effect of the slider on the inner wall of the slide rail through the arranged insertion plate. When the slider is accidentally pulled to the fixing frame, the slider is likely to slide out from the inner wall of the slide rail. At this time, through the arranged insertion plate, the fixing effect of the slider on the inner wall of the slide rail is further enhanced. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present utility model will be further described below with reference to the accompanying drawings.

[0017] Figure 1 is a perspective view of the present utility model;

[0018] Figure 2 is a schematic structural view of the first scraping plate in the present utility model;

[0019] Figure 3 is Figure 2 a partial enlarged view at A in

[0020] Figure 4 is a schematic structural view of the guide plate in the present utility model;

[0021] Figure 5 is a schematic structural view of the through hole in the present utility model;

[0022] Figure 6 is a schematic structural view of the protective pad in the present utility model.

[0023] In the figure: 1, the main body of the stirring device; 11, the stirring mechanism; 12, the slide rail; 13, the slider; 14, the rubber pad; 15, the fixing frame; 16, the telescopic rod; 17, the first spring; 18, the first scraping plate; 2, the spiral impeller; 21, the support plate; 22, the second scraping plate; 3, the groove; 31, the second spring; 32, the insertion plate; 33, the through hole; 4, the elastic sheet; 41, the convex block; 5, the elastic plate; 51, the protective pad; 6, the guide plate; 7, the elastic strip. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] In order to make the technical means, creative features, achieved purposes and effects of the present utility model easy to understand, the present utility model will be further described below in conjunction with the specific embodiments.

[0025] Such as Figures 1-6As shown in the figure, an auxiliary blanking component of a stirring device according to an embodiment of the present utility model includes a stirring device body 1; a stirring mechanism 11 is installed on the side wall of the stirring device body 1; a pair of slide rails 12 are fixedly connected to the side wall of the stirring mechanism 11; the slide rails 12 are symmetrically arranged on both sides of the stirring mechanism 11 and have the same structure; a slider 13 is slidably connected to the inner side wall of the slide rail 12; a rubber pad 14 is fixedly connected to the side wall of the slider 13; a fixing frame 15 is fixedly connected to the side wall of the slider 13; a plurality of telescopic rods 16 are fixedly connected to the side wall of the fixing frame 15; the telescopic rods 16 are evenly distributed on the side wall of the fixing frame 15 and have the same structure; a first spring 17 is sleeved outside the telescopic rod 16; the telescopic rod 16 and the end of the first spring 17 are fixedly connected to the same first scraping plate 18. When in use, first, the staff holds the fixing frame 15, inserts the slider 13 into the inner side wall of the slide rail 12, and a certain frictional force will be generated by the full contact between the rubber pad 14 and the slide rail 12, so as to fix the fixing frame 15. After the raw materials in the stirring device body 1 are stirred, then through the continuous rotation of the stirring mechanism 11, when the first scraping plate 18 is in full contact with the inner side wall of the stirring device body 1, the raw materials attached to the inner side wall of the stirring device body 1 can be scraped off. At the same time, the long-term contact between the first scraping plate 18 and the inner side wall of the stirring device body 1 will cause wear to the first scraping plate 18, increasing the distance between the two. At this time, the first spring 17 will exert a certain reaction force on the first scraping plate 18 to push the first scraping plate 18, so that the first scraping plate 18 can be in full contact with the side wall of the stirring device body 1, and the telescopic rod 16 will perform telescopic movement to maintain the stable movement of the first scraping plate 18. In this process, it can reduce the situation that after the raw materials are mixed, some raw materials are relatively viscous and easy to adhere to the inner side wall of the stirring device body 1, resulting in difficult blanking. At this time, the first scraping plate 18 scrapes off the raw materials attached to the inner side wall of the stirring device body 1, thereby improving the blanking effect of the stirring device body 1 after the raw materials are stirred. At the same time, the first spring 17 can increase the full contact effect between the first scraping plate 18 and the inner side wall of the stirring device body 1, improving the cleaning effect.

[0026] As Figure 2As shown, a spiral impeller 2 is fixedly connected to the side wall of the stirring mechanism 11; a pair of support plates 21 are fixedly connected to the side wall of the spiral impeller 2; the support plates 21 are symmetrically arranged on both sides of the spiral impeller 2 and have the same structure; a second scraper 22 is fixedly connected to the end of the support plate 21; during use, when the stirring mechanism 11 rotates, the stirring mechanism 11 can drive the spiral impeller 2 to rotate. At this time, as the spiral impeller 2 rotates, the raw materials can be conveyed to the outside along the threads of the spiral impeller 2, preventing the raw materials from accumulating at the discharge port. At the same time, when the spiral impeller 2 rotates, the second scraper 22 can scrape the raw materials attached to the bottom of the stirring device body 1 towards the discharge port, allowing them to flow out to the outside. In this process, it can reduce the situation that during feeding, due to the small discharge port, the raw materials are likely to accumulate at the discharge port, making it inconvenient to feed them. At this time, by setting the spiral impeller 2, the smoothness during feeding is increased. At the same time, the second scraper 22 can play a role in cleaning the raw materials attached to the bottom of the stirring device body 1.

[0027] As Figure 5 , 6 shown, a pair of grooves 3 are formed on the side wall of the slider 13; the grooves 3 are symmetrically arranged on both sides of the slider 13 and have the same structure; a plurality of second springs 31 are fixedly connected to the side wall of the groove 3; the second springs 31 are evenly distributed on the side wall of the groove 3 and have the same structure; a plug board 32 is fixedly connected to the end of the second spring 31; a pair of through holes 33 are symmetrically formed on the side wall of the slide rail 12; during use, when the slider 13 is inserted into the inner side wall of the slide rail 12, first, the plug board 32 is slightly pressed. Then, under the extrusion of the slide rail 12 on the plug board 32, the plug board 32 can be extruded into the side wall of the groove 3, and the second spring 31 will perform a telescopic movement under the extrusion. When the slider 13 is completely inserted into the inner side wall of the slide rail 12, the plug board 32 will correspond to the position of the through hole 33. At this time, the second spring 31 will apply a certain reaction force to the plug board 32, pushing the plug board 32 out and making it stuck on the side wall of the through hole 33 to fix the slider 13. When the slider 13 needs to be disassembled, the plug board 32 is pressed, and then the slider 13 can be pulled out. In this process, it can reduce the poor fixing effect of the slider 13 on the inner side wall of the slide rail 12, which may cause the slider 13 to easily slide out of the inner side wall of the slide rail 12 when accidentally pulling the fixing frame 15. At this time, by setting the plug board 32, the fixing effect of the slider 13 on the inner side wall of the slide rail 12 is further enhanced.

[0028] As Figure 3 , 4As shown, an elastic sheet 4 is fixedly connected to the side wall of the first scraper 18; a plurality of protrusions 41 are evenly fixedly connected to the inner side wall of the stirring device body 1; when in use, when the first scraper 18 rotates, it can drive the elastic sheet 4 to rotate. When the elastic sheet 4 rotates to correspond to the position of the protrusion 41, the elastic sheet 4 is squeezed by the protrusion 41 and deformed to a certain extent. The elastic sheet 4 is moved. When the elastic sheet 4 is staggered from the protrusion 41, the elastic sheet 4 will vibrate under the elastic action of the elastic sheet 4. The vibration generated by the shaking can vibrate off the raw materials attached to the side wall of the first scraper 18. In this process, the first scraper 18 can be reduced. After long-term use, part of the scraped raw materials are easily attached to the side wall of the first scraper 18, which is inconvenient to clean. At this time, the elastic sheet 4 and the protrusion 41 cooperate with each other to clean the raw materials attached to the side wall of the first scraper 18.

[0029] like Figure 5 , 6 As shown, a pair of elastic plates 5 are fixedly connected to the side walls of the slide rail 12; the elastic plates 5 are symmetrically arranged on both sides of the slide rail 12 and have the same structure; a plurality of protective pads 51 are evenly fixedly connected to the side walls of the elastic plates 5; when in use, when the slider 13 is inserted into the inner wall of the slide rail 12, the slider 13 will contact the elastic plates 5 on both sides of the slide rail 12, and the protective pads 51 can prevent the slider 13 from directly contacting the elastic plates 5, thereby protecting the wall of the elastic plates 5, and then the slider 13 will also cause a certain amount of extrusion on the elastic plates 5, which can cause the elastic plates 5 to produce a certain amount of The elastic plate 5 exerts a certain reaction force on the slider 13 under the elastic action of the elastic plate 5, pushing the slider 13 toward the middle of the slide rail 12. At the same time, the slider 13 also slides toward the middle of the elastic plates 5 on both sides. In this process, it is difficult to align the slider 13 when inserting it into the inner wall of the slide rail 12, thereby making the installation process more complicated. At this time, the elastic plate 5 is set to play a positioning role when the slider 13 is inserted into the inner wall of the slide rail 12. At the same time, the protective pad 51 can protect the elastic plate 5.

[0030] like Figure 3 , 4 As shown, a plurality of guide plates 6 are evenly fixed to the side wall of the first scraper 18; when in use, when the first scraper 18 scrapes off the raw materials attached to the inner wall of the stirring device body 1, the raw materials will slide along the wall of the guide plate 6 to separate from the wall of the stirring device body 1, so that the raw materials will not contact the inner wall of the stirring device body 1 when being scraped off. In this process, the raw materials can be reduced from falling on the inner wall of the stirring device body 1 when falling after being scraped off. At this time, the guide plates 6 are set to guide the scraped raw materials.

[0031] like Figure 5 , 6As shown, the side wall of the elastic plate 5 is fixedly connected with an elastic strip 7; the elastic strip 7 is fixedly connected to the slide rail 12; when in use, when the slider 13 squeezes the elastic plate 5, the elastic plate 5 will produce a certain deformation, and then when the slider 13 and the elastic plate 5 are offset, a certain reaction force will be applied to the elastic plate 5 under the elastic action of the elastic strip 7, so that the elastic plate 5 is quickly reset. In this process, the elastic plate 5 can be reduced from being squeezed with a large force, which makes it difficult to quickly reset, thereby causing a certain impact on the use effect of the elastic plate 5. At this time, the elastic strip 7 is set to protect the elastic plate 5 when it is squeezed.

[0032] During operation, the staff first holds the fixing frame 15 and inserts the slider 13 into the inner wall of the slide rail 12. The rubber pad 14 will generate a certain friction force when in full contact with the slide rail 12, so that the fixing frame 15 can be fixed. After the stirring of the raw materials in the stirring device body 1 is completed, the stirring mechanism 11 is continuously rotated, and the raw materials attached to the inner wall of the stirring device body 1 can be scraped off when the first scraper 18 is in full contact with the inner wall of the stirring device body 1. At the same time, the long-term contact between the first scraper 18 and the inner wall of the stirring device body 1 will cause wear to the first scraper 18, so that the distance between the two becomes larger. At this time, a certain reaction force will be applied to the first scraper 18 through the first spring 17 to push the first scraper 18. Thereby, the first scraper 18 can be fully in contact with the side wall of the stirring device body 1, and the telescopic rod 16 will perform telescopic movement to maintain the first scraper 18 to move smoothly. When in use, when the stirring mechanism 11 rotates, the stirring mechanism 11 can drive the spiral impeller 2 to rotate. At this time, as the spiral impeller 2 rotates, the raw materials can be transported to the outside along the threads of the spiral impeller 2, and the raw materials are not allowed to accumulate at the discharge port. At the same time, when the spiral impeller 2 rotates, the raw materials attached to the bottom of the stirring device body 1 can be scraped to the discharge port through the second scraper 22, so that it flows out to the outside. When in use, when the slider 13 is inserted into the inner wall of the slide rail 12, the insert plate 32 is first slightly pressed, and then the slide rail 12 squeezes the insert plate 32. The insert plate 32 can be squeezed into the side wall of the groove 3, and the second spring 31 can be squeezed to perform a telescopic movement. When the slider 13 is fully inserted into the inner wall of the slide rail 12, the insert plate 32 will correspond to the position of the through hole 33. At this time, the second spring 31 will exert a certain reverse thrust on the insert plate 32, pushing the insert plate 32 out so that it is stuck on the side wall of the through hole 33 to fix the slider 13. When the slider 13 needs to be disassembled, the insert plate 32 can be pressed, and then the slider 13 can be pulled out. During use, when the first scraper 18 is rotating, it can drive the elastic sheet 4 to rotate. When the elastic sheet 4 rotates to correspond to the position of the protrusion 41, the elastic sheet 4 is squeezed by the protrusion 41 to produce a certain deformation. The elastic sheet 4 is toggled. When the elastic sheet 4 is aligned with the protrusion 41, the elastic sheet 4 will be deformed. After the blocks 41 are staggered, the elastic sheet 4 will vibrate under the elastic action of the elastic sheet 4. The vibration generated by the vibrating action can shake off the raw materials attached to the side wall of the first scraper 18. When in use, when the slider 13 is inserted into the inner wall of the slide rail 12, the slider 13 will contact the elastic plates 5 on both sides of the slide rail 12. The protective pad 51 can prevent the slider 13 from directly contacting the elastic plate 5, and protect the wall of the elastic plate 5. After that, the slider 13 will also cause a certain amount of extrusion on the elastic plate 5, and the elastic plate 5 can be deformed by extruding it. Then, under the elastic action of the elastic plate 5, a certain reaction force will be applied to the slider 13, pushing the slider 13 to the middle of the slide rail 12. At the same time, the slider 13 will also slide to the middle of the elastic plates 5 on both sides. When in use,When the first scraper 18 scrapes off the raw material attached to the inner wall of the stirring device body 1, the raw material will slide along the wall of the guide plate 6, so that it is separated from the wall of the stirring device body 1, so that the raw material does not contact the inner wall of the stirring device body 1 when being scraped off. When in use, when the slider 13 squeezes the elastic plate 5, the elastic plate 5 will produce a certain deformation. After that, when the slider 13 is staggered from the elastic plate 5, the elastic strip 7 will exert a certain reaction force on the elastic plate 5 under the elastic action, so that the elastic plate 5 is quickly reset.

[0033] The above shows and describes the basic principles, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. The above embodiments and descriptions are only for explaining the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, which fall within the scope of the utility model to be protected. The scope of protection claimed by the utility model is defined by the attached claims and their equivalents.

Claims

1. An auxiliary blanking component of a stirring device, comprising a stirring device body (1); characterized in that: A stirring mechanism (11) is installed on the side wall of the stirring device body (1); a pair of slide rails (12) are fixedly connected to the side wall of the stirring mechanism (11); the slide rails (12) are symmetrically arranged on both sides of the stirring mechanism (11) and have the same structure; a slider (13) is slidably connected to the inner side wall of the slide rail (12); a rubber pad (14) is fixedly connected to the side wall of the slider (13); a fixing frame (15) is fixedly connected to the side wall of the slider (13); a plurality of telescopic rods (16) are fixedly connected to the side wall of the fixing frame (15); the telescopic rods (16) are evenly distributed on the side wall of the fixing frame (15) and have the same structure; a first spring (17) is sleeved outside the telescopic rod (16); the telescopic rod (16) and the end of the first spring (17) are fixedly connected to the same first scraping plate (18).

2. The auxiliary blanking assembly of a stirring device according to claim 1, characterized in that: A spiral impeller (2) is fixedly connected to the side wall of the stirring mechanism (11); a pair of support plates (21) are fixedly connected to the side wall of the spiral impeller (2); the support plates (21) are symmetrically arranged on both sides of the spiral impeller (2) and have the same structure; a second scraping plate (22) is fixedly connected to the end of the support plate (21).

3. The auxiliary blanking assembly of a stirring device according to claim 1, characterized in that: A pair of grooves (3) are formed on the side wall of the slider (13); the grooves (3) are symmetrically arranged on both sides of the slider (13) and have the same structure; a plurality of second springs (31) are fixedly connected to the side wall of the groove (3); the second springs (31) are evenly distributed on the side wall of the groove (3) and have the same structure; a plug board (32) is fixedly connected to the end of the second spring (31); a pair of through holes (33) are symmetrically formed on the side wall of the slide rail (12).

4. The auxiliary blanking assembly of a stirring device according to claim 1, characterized in that: An elastic sheet (4) is fixedly connected to the side wall of the first scraping plate (18); a plurality of bumps (41) are evenly fixedly connected to the inner side wall of the stirring device body (1).

5. The auxiliary blanking assembly of a stirring device according to claim 1, characterized in that: A pair of elastic plates (5) are fixedly connected to the side wall of the slide rail (12); the elastic plates (5) are symmetrically arranged on both sides of the slide rail (12) and have the same structure; a plurality of protective pads (51) are evenly fixedly connected to the side wall of the elastic plate (5).

6. The auxiliary feeding component of a stirring device according to claim 1, wherein: A plurality of flow guide plates (6) are evenly fixedly connected to the side wall of the first scraping plate (18).

7. The auxiliary blanking assembly of a stirring device according to claim 5, characterized in that: An elastic strip (7) is fixedly connected to the side wall of the elastic plate (5); the elastic strip (7) is fixedly connected to the slide rail (12).