Stacking machine suitable for multi-turn wine brewing process
By designing a stacker suitable for multi-round brewing processes, the automatic driving of rotary brackets and conveying mechanisms is used to solve the problem of low efficiency of manual pile-up of grease, efficient automation of grease accumulation and improved the production efficiency of liquor brewing.
Patent Information
- Application Number
- CN202422044599.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-22
AI Technical Summary
During the brewing process of liquor, the existing technology requires manual accumulation of grit into different shapes according to the needs of different rounds, resulting in large amounts of manual labor and low efficiency, and reducing overall production efficiency.
A stacking machine suitable for multi-round brewing processes is designed, including a rack, a feeding mechanism, a rotary bracket and a drive assembly. By driving the rotary bracket to rotate and the first conveying mechanism to translate, the automation of the stacking of grits is realized.
Through the automated grit accumulation process, the amount of manual labor is reduced, the stacking efficiency is improved, and the overall production efficiency of liquor brewing is improved.
Smart Images

Figure CN222974299U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pile-forming devices for fermented grains in liquor brewing, and particularly relates to a pile-forming machine applicable to multi-round liquor brewing processes. Background Art
[0002] In the process of liquor brewing, it is necessary to pile up the fermented grains for fermentation. In different rounds, the fermented grains need to be piled up into two different fermented grain piles in the shape of a "steamed bun" or a "cone". However, in the existing pile-forming process, it is still necessary for workers to manually pile up the fermented grains into different fermented grain piles according to the requirements of different rounds. In such a fermented grain pile-forming operation, the manual labor intensity is large, the fermented grain pile-forming efficiency is low, and the overall production efficiency of liquor brewing is reduced. Summary of the Utility Model
[0003] In view of the above problems, the utility model provides a pile-forming machine applicable to multi-round liquor brewing processes, aiming to reduce the manual labor intensity in fermented grain pile-forming and improve the pile-forming efficiency.
[0004] In order to achieve the above invention purpose, the technical solution adopted by the utility model is as follows:
[0005] Provide a pile-forming machine applicable to multi-round liquor brewing processes, including: a frame; a feeding mechanism for outputting the fermented grains to be piled up; a rotating bracket rotatably arranged on the frame; a first conveying mechanism movably arranged on the rotating bracket for receiving and transporting the fermented grains output by the feeding mechanism; a driving assembly capable of driving the rotating bracket to perform a rotating motion and also capable of driving the first conveying mechanism to perform a translational motion along the conveying direction.
[0006] Further, the feeding mechanism includes: symmetrically arranged second and third conveying mechanisms with opposite conveying directions.
[0007] Further, the feeding mechanism further includes: a hopper for temporarily storing the fermented grains; a fourth conveying mechanism arranged at the bottom of the hopper for carrying the fermented grains; a fifth conveying mechanism and a toothed scraper, with a number of toothed scrapers arranged on the fifth conveying mechanism for scraping and conveying the fermented grains; a sixth conveying mechanism arranged between the third conveying mechanism and the fifth conveying mechanism along the gravity direction.
[0008] Further, the pile-forming machine further includes: a screw jack arranged on the frame for driving the rotating bracket to lift and lower in the vertical direction.
[0009] Further, a seventh conveying mechanism is installed on the rotating bracket parallel to the first conveying mechanism and above the first conveying mechanism for buffering the fermented grains.
[0010] Further, the stacking machine further includes: a traveling crane, with the frame disposed on the traveling crane; and a track for guiding the traveling crane to move along a fixed path.
[0011] The beneficial effects of the present utility model are as follows: In the present utility model, on the one hand, through the driving assembly, the first conveying mechanism can be driven to translate along the conveying direction, thereby changing the dropping point of the fermented grains. By driving the first conveying mechanism to reciprocally translate along the conveying direction several times, a fermented grains pile in the shape of a "steamed bun" can be formed below the first conveying mechanism; on the other hand, by driving the rotating bracket to rotate through the driving assembly and periodically driving the first conveying mechanism to translate along the conveying direction, a fermented grains pile in the shape of a "cone" can be formed below the first conveying mechanism.
[0012] By using the present utility model, the fermented grains can be respectively stacked into two different fermented grains piles in the shape of a "steamed bun" or a "cone" in different rounds; it can reduce the manual labor amount, effectively improve the stacking efficiency of the fermented grains, and accelerate the overall production efficiency of Baijiu brewing. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a three-dimensional schematic diagram of the overall structure of the stacking machine provided by the embodiment of the present application.
[0014] Figure 2 It is a three-dimensional schematic diagram of another perspective of the overall structure of the stacking machine provided by the embodiment of the present application.
[0015] Figure 3 For Figure 2 It is a partial enlarged schematic diagram of part A in
[0016] Wherein, 1, rotating bracket; 21, first conveying mechanism; 22, second conveying mechanism; 23, third conveying mechanism; 24, fourth conveying mechanism; 25, fifth conveying mechanism; 26, sixth conveying mechanism; 27, seventh conveying mechanism; 31, hopper; 32, toothed scraper; 4, screw jack. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] In order to better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the accompanying drawings of the specification and specific embodiments.
[0018] Referring to Figure 1 and Figure 2 As shown, the embodiment of the present application discloses a stacking machine applicable to a multi-round brewing process, including: a frame; a feeding mechanism for outputting the fermented grains to be stacked; a rotating bracket 1 rotatably disposed on the frame; a first conveying mechanism 21 movably disposed on the rotating bracket 1 for receiving and transporting the fermented grains output by the feeding mechanism; a driving assembly capable of driving the rotating bracket 1 to perform a rotational motion and also capable of driving the first conveying mechanism 21 to perform a translational motion along the conveying direction.
[0019] During use, the feeding mechanism is set up so as to continuously output the mash to be piled, and the first conveying mechanism 21 is used to receive the mash and convey it toward one end of the first conveying mechanism 21 until it falls from the first conveying mechanism 21; on the one hand, the first conveying mechanism 21 can be driven to translate along the conveying direction by the driving component, so as to change the falling point of the mash, and the mash can be piled into a "steamed bun" shape under the first conveying mechanism 21 by driving the first conveying mechanism 21 to translate back and forth along the conveying direction for several times; on the other hand, the rotating bracket 1 is driven to rotate by the driving component, and the first conveying mechanism 21 is regularly driven to translate along the conveying direction, so that a "conical" shape mash can be piled under the first conveying.
[0020] By using the utility model, the mash can be piled into two different mash piles, namely, "steamed bun shape" or "cone shape" in different rounds; the manual labor can be reduced, the mash piling efficiency is effectively improved, and the overall liquor brewing production efficiency is accelerated.
[0021] It can be understood that the rotating bracket 1 can be rotatably mounted on the frame via a bearing.
[0022] It is worth mentioning that the driving assembly includes a driving motor and gears. The rotating bracket 1 can be connected to the output shaft of the driving motor through the gears. The rotating bracket 1 can be driven to rotate by rotating the output shaft of the driving motor.
[0023] The driving assembly may further include: a linear module (which may be a synchronous belt type, a ball screw type, or a linear motor type), through which the first conveying mechanism 21 is movably mounted on the rotating bracket 1 and driven by a servo motor.
[0024] Specifically, the feeding mechanism includes: a second conveying mechanism 22 and a third conveying mechanism 23 which are symmetrically arranged, and the conveying directions of the second conveying mechanism 22 and the third conveying mechanism 23 are opposite; wherein, the second conveying mechanism 22 is used to directly receive and transport the mash that has been dried in the previous sequence; the third conveying mechanism 23 is used to receive the mash that needs to be turned over after being stacked for a certain period of time; the second conveying mechanism 22 and the third conveying mechanism 23 can convey mash of different temperatures to the same drop position, can mix the mash of different temperatures in advance, and send them to the first conveying mechanism 21, so as to improve the uniformity of the temperature of the mash pile.
[0025] Among them, the feeding mechanism also includes: a hopper 31 for temporarily storing mash; a fourth conveying mechanism 24, arranged at the bottom of the hopper 31, for carrying the mash; a fifth conveying mechanism 25 and a toothed scraper 32, on which a plurality of toothed scrapers 32 are arranged for scraping the mash; a sixth conveying mechanism 26, arranged between the third conveying mechanism 23 and the fifth conveying mechanism 25 along the direction of gravity.
[0026] It is worth mentioning that the internal and external temperatures of the fermented grains pile after being piled up for a period of time are not uniform. It is necessary to regularly turn over the fermented grains pile and re-pile it into a heap.
[0027] In the present utility model, a hopper 31 is provided to receive the fermented grains to be turned over; and the fourth conveying mechanism 24 is started, and the fourth conveying mechanism 24 transports the fermented grains to be turned over towards the fifth conveying mechanism 25; a toothed scraper 32 is provided on the bottom conveying mechanism. During the operation of the fifth conveying mechanism 25, a plurality of toothed scrapers 32 can be driven to contact the fermented grains, and the fermented grains are scraped layer by layer onto the sixth conveying mechanism 26, and the fermented grains are sent to the third conveying mechanism 23 through the sixth conveying mechanism 26.
[0028] It is worth mentioning that the conveying direction of the fifth conveying mechanism 25 is arranged along the height direction of the hopper 31. The operation of the fifth conveying mechanism 25 can drive a plurality of toothed scrapers 32 along the height direction of the hopper 31 to scrape out the fermented grains at different temperatures, improving the temperature uniformity of the fermented grains after turning over.
[0029] Specifically, the piling machine further includes: a lead screw lift 4, which is arranged on the frame and is used to drive the rotating bracket 1 to lift and lower in the vertical direction; the lead screw of the lead screw lift 4 can be driven by a servo motor to rotate, so as to drive the first conveying mechanism 21 to lift and lower in the vertical direction, thereby changing the height of the fermented grains falling, preventing the height of the fermented grains falling from being too high, and ensuring that the overall fermented grains pile is loose.
[0030] Furthermore, the piling machine further includes a seventh conveying mechanism 27, which is installed on the rotating bracket 1 parallel to the first conveying mechanism 21 and is above the first conveying mechanism 21 for caching the fermented grains; arranging the first conveying mechanism 21 and the seventh conveying mechanism 27 in a stepped manner can effectively shorten the length of the first conveying mechanism 21 and shorten the moving path of the first conveying mechanism 21.
[0031] It is worth mentioning that the first conveying mechanism 21, the second conveying mechanism 22, the third conveying mechanism 23, the fourth conveying mechanism 24, the sixth conveying mechanism 26 and the seventh conveying mechanism 27 are all selected as chain plate conveyors.
[0032] Refer to Figure 3 As shown, the fifth conveying mechanism 25 is selected as a scraper conveyor, and a plurality of toothed scrapers 32 are inserted on the scraper conveyor.
[0033] Furthermore, the piling machine further includes: a traveling crane, the frame is arranged on the traveling crane; a track, which guides the traveling crane to move along a fixed path; by driving the traveling crane to move on the track, a plurality of fermented grains piles can be stacked along the fixed path.
[0034] Those skilled in the art should understand that although the preferred embodiments of the present invention have been described, once the basic creative concepts are known to those skilled in the art, additional changes and modifications can be made to these embodiments. Therefore, the appended claims are intended to be construed to include the preferred embodiments as well as all changes and modifications falling within the scope of the present invention. Obviously, those skilled in the art can make various changes and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the equivalent technologies of the claims of the present invention, the present invention is also intended to include these modifications and variations.
Claims
1. A composting machine suitable for multi-round winemaking process, characterized in that: include: frame; A feeding mechanism, used for outputting the mash to be piled; A rotating bracket (1) is rotatably arranged on the frame; A first conveying mechanism (21) is movably arranged on the rotating bracket (1) and is used to receive and transport the mash outputted by the feeding mechanism; The driving assembly can drive the rotating bracket (1) to perform rotational motion, and can also drive the first conveying mechanism (21) to perform translational motion along the conveying direction.
2. The stacking machine suitable for multi-round winemaking process according to claim 1 is characterized in that: The feeding mechanism comprises: a second conveying mechanism (22) and a third conveying mechanism (23) which are symmetrically arranged, and the conveying directions of the second conveying mechanism (22) and the third conveying mechanism (23) are opposite.
3. The stacking machine applicable to multi-round winemaking process according to claim 2 is characterized in that: The feeding mechanism also includes: A hopper (31) for temporarily storing fermented grains; A fourth conveying mechanism (24) is arranged at the bottom of the hopper (31) and is used for carrying the mash; A fifth conveying mechanism (25) and a toothed scraper (32), wherein a plurality of toothed scrapers (32) are arranged on the fifth conveying mechanism (25) for scraping and conveying mash; The sixth conveying mechanism (26) is arranged between the third conveying mechanism (23) and the fifth conveying mechanism (25) along the direction of gravity.
4. The stacking machine applicable to multi-round winemaking process according to claim 1 is characterized in that: Also includes: The screw lift (4) is arranged on the frame and is used to drive the rotating bracket (1) to move up and down in the vertical direction.
5. The stacking machine applicable to multi-round winemaking process according to claim 1 is characterized in that: The seventh conveying mechanism (27) is installed on the rotating bracket (1) in parallel with the first conveying mechanism (21), is located above the first conveying mechanism (21), and is used to buffer the mash.
6. The stacking machine applicable to multi-round winemaking process according to claim 1 is characterized in that: Also includes: Crane, the frame is arranged on the crane; Tracks guide vehicles along fixed paths.