Material pushing and dispersing structure for concentrated food size mixing and storage
By setting up an aggregated structure with floating rings, aggregating mesh plates, and dispersing supports inside the slurry storage cylinder, the problem of slurry agglomeration into lumps is solved, achieving efficient utilization of the slurry storage cylinder space and efficient dispersion of the slurry.
Patent Information
- Application Number
- CN202610065325.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-19
- Publication Date
- 2026-02-17
AI Technical Summary
Existing food slurry storage equipment is prone to slurry agglomeration and clumping inside the storage tank, resulting in large space occupation and poor dispersion effect.
A material distribution structure for storing and dispersing food slurry was designed, including a floating ring, a gathering mesh plate, and a dispersing support rod. These components are driven to move downward and rotate synchronously by a side motor, thereby achieving the aggregation and dispersion of the slurry, reducing the internal space occupied by the slurry storage cylinder and improving the dispersion efficiency.
It effectively reduces the space occupied inside the slurry storage cylinder, improves the dispersing effect and efficiency of the slurry, and ensures that the slurry is uniformly gathered in a small space for easy dispersing.
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Figure CN121534814A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of food slurry mixing and pushing and heat dissipation structure, and particularly relates to a set food slurry mixing and storage pushing and bulk material distribution structure. BACKGROUND
[0002] At present, food processing includes a series of steps such as crushing, slurry mixing, ingredient mixing, homogenization, steam roller dryer, scraping, sheet making, packaging and the like. The homogenization is a very important process in production, which needs to mix various food raw materials in water to form viscous slurry for roller pressing and drying. With the rapid development of the nutritional rice flour industry, there are more and more slurry mixing methods. After the food slurry is formed, it is generally conveyed to the inside of a slurry storage cylinder, and then the slurry is conveyed to the roller dryer through a slurry suction pipeline for drying and forming. However, when the food slurry is in the slurry storage cylinder, it will be aggregated into blocks after a long time. Therefore, the slurry in the slurry storage cylinder needs to be dispersed regularly. Thus, a large-area downward distributed beating mechanism needs to be arranged in the slurry storage cylinder, which occupies a large space in the slurry storage cylinder, and the slurry storage space is compressed, and the dispersion effect is poor. Therefore, the existing structure needs to be upgraded and modified to reduce the occupied space in the slurry storage cylinder and improve the bulk material distribution effect. SUMMARY
[0003] In view of the above problems of the prior art, the application provides a set food slurry mixing and storage pushing and bulk material distribution structure which can reduce the occupied space in the slurry storage cylinder and has good bulk material distribution effect.
[0004] To solve the above problems, the technical scheme adopted by the application is as follows: A set food slurry mixing and storage pushing and bulk material distribution structure, which comprises a slurry storage cylinder, a slurry suction pipeline, an upper power mechanism, a positioning rotary rod, a floating ring sleeve, an aggregation mesh plate, a scattering branch rod and a side motor. The slurry suction pipeline is installed in the middle of the inside of the slurry storage cylinder, and the lower end of the slurry suction pipeline extends to the lower part of the inside of the slurry storage cylinder. Two positioning rotary rods are respectively installed on the two sides of the slurry storage cylinder, and the two positioning rotary rods rotate synchronously. A floating ring sleeve is installed in the inside of the slurry storage cylinder, and the floating ring sleeve is sleeved on the outer side of the four peripheries of the slurry suction pipeline. The upper and lower sides of the two sides of the floating ring sleeve are slidably sleeved on the two positioning rotary rods. An aggregation mesh plate is installed on the outer side of the four peripheries of the upper end of the floating ring sleeve. A plurality of scattering branch rods are respectively installed on the lower end of the two sides of the floating ring sleeve. A side motor is respectively installed on the two sides of the upper end of the slurry storage cylinder, and the side motor drives the aggregation mesh plate to move up and down. The upper power mechanism is installed above the inside of the slurry storage cylinder, and the upper power mechanism is transmissionally connected with the two positioning rotary rods to drive the two positioning rotary rods to rotate. When the side motor drives the aggregation mesh plate, the floating ring sleeve and the scattering branch rod to move downward to the lower part of the inside of the slurry storage cylinder, the upper power mechanism drives the floating ring sleeve, the aggregation mesh plate and the scattering branch rod to rotate synchronously to aggregate and scatter.
[0005] Further, the inner side of the four sides of the floating ring is in abutment with the outer side of the four sides of the pulp suction pipeline.
[0006] Further, the middle of the lower end of the pulp storage cylinder is provided with an annular clamping groove, and the two positioning rotating rods are synchronously rotated and clamped on the annular clamping groove.
[0007] Further, the upper power mechanism comprises an upper motor, a driving shaft, a driving disc and a rotating ring; the upper motor is installed on the upper side of the inside of the pulp storage cylinder; the lower side of the upper motor is connected with the driving disc through the driving shaft; the rotating ring is rotatably installed on the upper side of the inside of the pulp storage cylinder, and the lower end of the rotating ring is fixedly connected with the upper ends of the two positioning rotating rods; the side of the driving disc and the side of the rotating ring are engagedly connected.
[0008] Further, the upper end of the rotating ring is provided with rotating clamping rods on both sides thereof; the upper side of the inside of the pulp storage cylinder is provided with a limiting ring groove; the rotating clamping rods are rotatably clamped on the limiting ring groove.
[0009] Further, the inside of the pulp storage cylinder is provided with a floating ring body, the floating ring body is slidably installed on the inside of the pulp storage cylinder; the outer side of the four sides of the gathering net plate is rotatably clamped on the inside of the four sides of the floating ring body; the lower side of the side motor is connected with the side of the inside of the pulp storage cylinder through a rotating screw rod; the two sides of the floating ring body are screw-connected through the rotating screw rod.
[0010] Further, the four sides of the gathering net plate are provided with annular convex edges; the inner side of the four sides of the floating ring body is provided with a rotating ring groove; the annular convex edges are rotatably clamped in the rotating ring groove.
[0011] Further, the upper end of the pulp suction pipeline is provided with a pulp suction pump body.
[0012] The beneficial effects of the present application are as follows: 1. The present application is generally through the suction pipe during operation to suck the slurry in the slurry storage cylinder, the slurry is stored in the slurry storage cylinder, once the operation cycle is long, the slurry in the slurry storage cylinder will be aggregated into blocks, so the present application is provided with a floating ring sleeve above the slurry storage cylinder, and an aggregation mesh plate and a scattering branch are integrated on the floating ring sleeve, so that the aggregation mesh plate, the floating ring sleeve and the scattering branch are driven by the side motor to move downward synchronously to the inside of the slurry storage cylinder, the aggregated slurry is gathered downward uniformly by the aggregation mesh plate, the density of the aggregated slurry is improved and the dispersion space is reduced, finally the floating ring sleeve, the aggregation mesh plate and the scattering branch are driven by the upper power mechanism to rotate synchronously, the aggregated slurry is gathered and scattered by the scattering branch, so that the scattering effect and efficiency are greatly improved; the upper end of the slurry storage cylinder is integrated by the floating ring sleeve, the aggregation mesh plate and the scattering branch, the space occupation in the slurry storage cylinder is greatly reduced, and the aggregated slurry is gathered downward in the narrow space below the slurry storage cylinder synchronously by the aggregation mesh plate, the floating ring sleeve and the scattering branch, so that the scattering is facilitated.
[0013] 2. The present application is designed to be more ingenious, the upper power mechanism is installed above the inside of the slurry storage cylinder, the upper power mechanism includes an upper motor, a driving shaft, a driving disc, a rotating ring sleeve, the driving disc is driven by the upper motor to rotate, the rotating ring sleeve is rotated by the driving disc, the two positioning rotating rods are synchronously rotated by the rotating ring sleeve, the floating ring sleeve, the aggregation mesh plate and the scattering branch are synchronously rotated by the positioning rotating rods, the effective rotation of the scattering branch is realized, and the floating ring sleeve is connected with the two positioning rotating rods through sliding, so that the synchronous upward and downward movement of the floating ring sleeve, the aggregation mesh plate and the scattering branch is not affected, and the structure design is ingenious. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 The structure of the present application is shown in the figure.
[0015] Figure 2 The structure of the present application Figure 1 is shown in the figure.
[0016] Figure 3 The structure of the present application Figure 1 is shown in the figure.
[0017] Figure 4 The structure of the present application Figure 2 is shown in the figure.
[0018] Figure 5 The structure of the present application Figure 2 is shown in the figure.
[0019] Figure 6 The structure of the present application Figure 5 is shown in the figure. Detailed Implementation
[0020] The invention will now be described in further detail with reference to the accompanying drawings.
[0021] like Figures 1 to 6 As shown, a material distribution structure for storing and distributing aggregated food slurry includes a slurry storage cylinder 1, a slurry suction pipe 2, an upper-mounted power mechanism 3, positioning rotating rods 4, a floating ring 5, an aggregating mesh plate 6, a dispersing support rod 7, and a side motor 8. A slurry suction pipe 2 is installed in the center of the storage cylinder 1, with its lower end extending to the lower part of the storage cylinder 1. A positioning rotating rod 4 is installed on each side of the storage cylinder 1, and the two positioning rotating rods 4 rotate synchronously. A floating ring 5 is installed inside the storage cylinder 1, and the floating ring 5 is fitted around the outer periphery of the slurry suction pipe 2. The two sides of the floating ring 5 are slidably fitted onto the two positioning rotating rods 4. Above; an aggregating mesh plate 6 is installed on the outer periphery of the upper end of the floating ring sleeve 5; multiple dispersing support rods 7 are installed on both sides of the lower end of the floating ring sleeve 5; a side motor 8 is installed on both sides of the upper end of the slurry storage cylinder 1, and the side motor 8 drives the aggregating mesh plate 6 to move up and down; the upper power mechanism 3 is installed inside the upper part of the slurry storage cylinder 1, and the upper power mechanism 3 is connected to two positioning rotating rods 4 to rotate; when the side motor 8 drives the aggregating mesh plate 6, the floating ring sleeve 5, and the dispersing support rods 7 to move down synchronously to the lower part of the slurry storage cylinder 1, the upper power mechanism 3 drives the floating ring sleeve 5, the aggregating mesh plate 6, and the dispersing support rods 7 to rotate synchronously to aggregate and disperse.
[0022] like Figures 1 to 6 As shown, in order to facilitate the full aggregation of slurry into blocks, the inner sides of the floating ring 5 further abut against the outer sides of the slurry suction pipe 2.
[0023] like Figures 1 to 6 As shown, in order to improve the connection stability of the positioning rotating rod 4, the lower end of the slurry storage cylinder 1 is provided with an annular groove 11, and the two positioning rotating rods 4 are synchronously rotated and engaged in the annular groove 11.
[0024] like Figures 1 to 6As shown, to control the synchronous rotation of the two positioning rotating rods 4, the upper power mechanism 3 further includes an upper motor 31, a drive shaft 32, a drive disk 33, and a rotating ring 34. The upper motor 31 is installed inside the slurry storage cylinder 1 on the upper side. The lower side of the upper motor 31 is connected to the drive disk 33 via the drive shaft 32. The rotating ring 34 is rotatably installed inside the slurry storage cylinder 1, and its lower end is fixedly connected to the upper ends of the two positioning rotating rods 4. The side of the drive disk 33 and the side of the rotating ring 34 are engaged. To improve the stable rotation of the rotating ring 34, rotating locking rods 341 are provided on both sides of the upper end of the rotating ring 34. A limiting ring groove 12 is provided inside the slurry storage cylinder 1. The rotating locking rods 341 are rotatably locked onto the limiting ring groove 12.
[0025] like Figures 1 to 6 As shown, to facilitate the up-and-down driving of the gathering mesh plate 6 by the side motor 8, a floating ring 9 is further provided around the inside of the slurry storage cylinder 1, and the floating ring 9 is slidably installed inside the slurry storage cylinder 1; the outer periphery of the gathering mesh plate 6 is rotatably engaged with the inner periphery of the floating ring 9; the lower side of the side motor 8 is connected to the inner side of the slurry storage cylinder 1 through a rotating screw 81; the two sides of the floating ring 9 are threadedly connected through the rotating screw 81. To improve the connection stability of the gathering mesh plate 6, an annular protrusion 61 is further provided around the periphery of the gathering mesh plate 6; a rotating annular groove 91 is provided around the inner periphery of the floating ring 9; the annular protrusion 61 is rotatably engaged within the rotating annular groove 91. Furthermore, a slurry suction pump body 21 is provided on the outer side of the upper end of the slurry suction pipe 2.
[0026] In this invention, slurry is typically pumped from inside the slurry storage cylinder 1 via the suction pipe 2. However, over extended periods, the slurry inside the cylinder may clump together. To address this, a floating ring 5 is installed above the slurry storage cylinder 1, integrating a gathering mesh plate 6 and a dispersing support rod 7. A side motor 8 drives the gathering mesh plate 6, floating ring 5, and dispersing support rod 7 to move synchronously downwards to the lower interior of the slurry storage cylinder 1. The gathering mesh plate 6 then uniformly gathers the clumps of slurry downwards, improving the slurry's clump-forming properties. The density is reduced and the dispersion space is decreased. Finally, the floating ring 5, the gathering mesh plate 6, and the dispersing support rod 7 are driven to rotate synchronously by the upper power mechanism 3. The dispersing support rods gather and disperse the lumps of slurry, which greatly improves the dispersing effect and efficiency. Since the floating ring 5, the gathering mesh plate 6, and the dispersing support rod 7 are integrated at the upper end of the slurry storage cylinder 1, the internal space occupied by the floating ring 5, the gathering mesh plate 6, and the dispersing support rod 7 move downwards synchronously, and gather the lumps of slurry uniformly downwards in the narrow space at the bottom of the slurry storage cylinder 1, which facilitates dispersing.
[0027] The structure of this invention is quite ingenious. The upper power mechanism 3 is installed inside the upper part of the storage cylinder. The upper power mechanism 3 includes an upper motor 31, a drive shaft 32, a drive disk 33, and a rotating ring 34. The upper motor 31 controls the rotation of the drive disk 33, which engages with the rotating ring 34. The rotating ring 34 drives the two positioning rotating rods 4 to rotate synchronously. The positioning rotating rods 4 drive the floating ring 5, the gathering mesh plate 6, and the dispersing support rod 7 to rotate synchronously, realizing the effective rotation of the dispersing support rod. At the same time, the floating ring 5 and the two positioning rotating rods 4 are slidably connected, so as not to affect the synchronous up and down movement of the floating ring 5, the gathering mesh plate 6, and the dispersing support rod 7. The structural design is ingenious.
[0028] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A massed food slurry mixing and storing pushing and scattering structure, characterized in that, The utility model provides a kind of slurry collecting and dispersing device, including slurry cylinder, slurry suction pipeline, upper power mechanism, positioning rotary rod, floating ring sleeve, gathering screen, dispersing support, side motor;The inside intermediate installation of the slurry cylinder one slurry suction pipeline, slurry suction pipeline lower end extends to the inside below of slurry cylinder;The both sides of the slurry cylinder are respectively installed one positioning rotary rod, and two positioning rotary rods rotate synchronously;The inside installation of the slurry cylinder one floating ring sleeve, and floating ring sleeve is sleeved in the outside four around of slurry suction pipeline;The both sides of floating ring sleeve slide on and off on two positioning rotary rods;The upper end four around outside of floating ring sleeve is installed gathering screen;The lower end both sides of floating ring sleeve are respectively installed multiple dispersing supports;The both sides of the upper end of slurry cylinder are respectively installed one side motor, and side motor drives gathering screen to move up and down;When upper power mechanism drives floating ring sleeve, gathering screen, dispersing support synchronous rotation, carries out gathering and dispersing when the side motor drives gathering screen, floating ring sleeve, dispersing support synchronous downward movement to the inside below of slurry cylinder, transmission connection two positioning rotary rods rotation of upper power mechanism installation in the inside above of slurry cylinder.
2. The massing food slurry storage pusher bulk material structure according to claim 1, wherein, The four around inside of the floating ring sleeve and the four around outside of the slurry suction pipeline abut.
3. The massing food slurry mixing and storing pushing and scattering structure according to claim 1, characterized in that, The lower end intermediate of the slurry cylinder is equipped with annular clamping groove, and two positioning rotary rods synchronous rotation are clamped on annular clamping groove.
4. The massing food slurry storage pusher bulk structure according to claim 1, wherein, The upper power mechanism includes upper motor, drive shaft, driving disc, rotary ring sleeve;The upper motor is installed in the inside upper of slurry cylinder one side;The lower side of the upper motor is connected driving disc by drive shaft;Rotary ring sleeve is rotatably installed in the inside above of slurry cylinder, and the lower end of rotary ring sleeve is fixedly connected with the upper end of two positioning rotary rods;Driving disc side and rotary ring sleeve side are engagedly connected.
5. The massing food slurry storage pusher bulk structure according to claim 4, wherein, The upper end both sides of the rotary ring sleeve are respectively equipped with rotary clamping rod;The inside upper of the slurry cylinder is equipped with limiting ring groove;Rotary clamping rod rotates and is clamped on limiting ring groove.
6. The agglomerated food slurry mixing and storing pusher bulk material structure according to claim 1, wherein The inside four around of the slurry cylinder is equipped with one floating ring body, and floating ring body is slidably installed in the inside of slurry cylinder;The four around outside of gathering screen is rotatably clamped in the inside four around of floating ring body;The lower side of side motor is connected in the inside side of slurry cylinder by rotating screw rod;The both sides of floating ring body are screw threaded by rotating screw rod.
7. The massing food slurry storage pusher bulk structure according to claim 6, wherein, The four around of the gathering screen is equipped with annular convex edge;The inside four around of the floating ring body is equipped with rotary ring groove;Annular convex edge is rotatably clamped in rotary ring groove.
8. The agglomerated food slurry mixing and storing pusher bulk material structure according to claim 1, wherein, The upper end outside of the slurry suction pipeline is equipped with slurry pump body.