Slowly-descending discharging device for molding distiller's yeast blocks
Technical Field
The utility model relates to the technical field of distiller's yeast making processing, in particular to a distiller's yeast block forming slow-descending discharging device.
Background
In the process of distiller's yeast processing and forming, because the relative height between the drag die box for distiller's yeast shaping and the synchronous ejection of compact conveyer belt of the piece that is used for the distiller's yeast after the shaping is higher, when the drawing of patterns, distiller's yeast is through pushing away freely falling body to the synchronous ejection of compact conveyer belt of piece after the drawing of patterns, on the one hand the direct pushing away of the ejecting mould of piece leads to the damage behind the big atress of piece, on the other hand the piece directly falls on the synchronous ejection of compact conveyer belt of piece and causes to break, makes the fermentation quality of later stage piece receive certain influence.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a slowly-descending discharging device for molding distiller's yeast blocks, which can control the discharging speed after molding the distiller's yeast blocks, avoid the problem of distiller's yeast rupture and ensure the subsequent fermentation quality of the yeast blocks.
In order to solve the technical problems, the technical scheme adopted by the utility model is that the distiller's yeast block forming slow-descending discharging device comprises a frame, wherein a drag die box transmission chain is arranged on the frame, the drag die box transmission chain forms an annular circulating transmission track through two chain wheels, a plurality of drag die boxes are equidistantly arranged on the drag die box transmission chain, and the upper end and the lower end of the drag die box are provided with openings;
A pressing bottom plate is fixed on the frame above the drag mold box transmission chain, and the bottom opening of the drag mold box moving to the transmission surface on the drag mold box transmission chain is closed through the pressing bottom plate;
The top of the frame is provided with a pressing module support, the pressing module support is provided with a pressing module, the pressing module is driven by a servo pressure cylinder arranged at the top of the pressing module support to move up and down, and one side of the pressing module is integrally provided with a curved block ejection die;
a discharge hole is formed in one end of the pressing bottom plate, a bent block synchronous discharge conveyor belt is arranged on a frame below the discharge hole, and a servo lifter is arranged on the bent block synchronous discharge conveyor belt;
the curved block ejection die is arranged right above the discharge hole.
In the preferred scheme, the outside of two sprocket on the drag die box transmission chain is equipped with drag die box and turns to the baffle, drags the baffle to be the arc.
In the preferred scheme, a lower curved hopper is fixed on a frame on the other end of the pressing bottom plate far away from the curved block ejection die.
In the preferred scheme, the pressing module comprises a pressing forming module close to the lower curved hopper and a bionic beating module close to the curved block ejection die.
In a preferred scheme, the die part of the compression molding die set is arranged at a height lower than the die part of the bionic beating die set.
In the preferred scheme, adopt the connected mode that can axial activity between compression molding module and the compression molding module support, and be equipped with buffer spring on the compression molding module.
The distiller's yeast block forming slow-descending discharging device provided by the utility model has the following beneficial effects by adopting the structure:
(1) The forming, beating and ejection modules are linked, so that the continuity of the forming and demolding operation of the curved block is ensured;
(2) The servo lifter can support the bent piece when the bent piece is ejected from the die to be demolded, so that the bent piece is prevented from being broken due to falling of the bent piece, and the subsequent fermentation quality is ensured.
Drawings
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings:
fig. 1 is a schematic diagram of the overall structure of the present utility model.
FIG. 2 is a schematic view of the structure of the utility model in the A-A direction.
In the figure, a frame 1, a drawing die box steering guide plate 2, a drawing die box 3, a drawing die box transmission chain 4, a lower curved hopper 5, a pressing bottom plate 6, a pressing die set bracket 7, a pressing die set 8, a pressing forming die set 801, a bionic beating die set 802, a curved block ejection die 9, a servo pressure cylinder 10, a forming curved block 11, a curved block synchronous discharging conveyor belt 12 and a servo lifter 13 are shown.
Detailed Description
In the fig. 1-2, a distiller's yeast block forming slow-descending discharging device comprises a frame 1, wherein a drag die box transmission chain 4 is arranged on the frame 1, the drag die box transmission chain 4 forms an annular circulating transmission track through two chain wheels, a plurality of drag die boxes 3 are equidistantly arranged on the drag die box transmission chain 4, and the upper end and the lower end of the drag die boxes 3 are opened;
A pressing bottom plate 6 is fixed on the frame 1 above the drag mold box transmission chain 4, and the bottom opening of the drag mold box 3 moving to the transmission surface on the drag mold box transmission chain 4 is closed through the pressing bottom plate 6;
The top of the frame 1 is provided with a pressing module support 7, the pressing module support 7 is provided with a pressing module 8, the pressing module 8 is driven by a servo pressure cylinder 10 arranged at the top of the pressing module support 7 to move up and down, and one side of the pressing module 8 is integrally provided with a bent block ejection die 9;
A discharge hole is formed in one end of the pressing bottom plate 6, a bent block synchronous discharge conveyor belt 12 is arranged on the frame 1 below the discharge hole, and a servo lifter 13 is arranged on the bent block synchronous discharge conveyor belt 12;
the curved block ejection die 9 is arranged right above the discharge hole.
In the preferred scheme, the outside of two sprocket on the drag box transmission chain 4 is equipped with drag box and turns to baffle 2, and drag box turns to baffle 2 and is the arc.
In a preferred scheme, a lower curved hopper 5 is fixed on the frame 1 at the other end of the pressing bottom plate 6 far away from the curved block ejection die 9.
In a preferred embodiment, the pressing module 8 includes a pressing module 801 near the lower curved hopper 5 and a bionic beating module 802 near the curved block ejection module 9.
In a preferred embodiment, the die portion of the press forming module 801 is set to a lower height than the die portion of the bionic beating module 802.
In a preferred scheme, a connection mode capable of moving axially is adopted between the compression molding module 801 and the compression module bracket 7, and a buffer spring is arranged on the compression molding module 801.
The utility model discloses a distiller's yeast piece shaping slowly descends discharging device, its theory of operation is as follows:
as shown in fig. 1, the lower yeast hopper 5 continuously discharges yeast, the yeast falls into the drag die box 3 at one end of the pressing bottom plate 6, and moves forward along with the drag die box 3, when moving to the lower part of the pressing forming module 801, the servo pressure cylinder 10 drives the pressing forming module 801 to move downward and press the yeast for forming, the springs on the pressing forming module 801 cooperate to effectively ensure forming quality, the formed yeast continues to move forward along with the drag die box 3 to the lower part of the bionic beating module 802, the bionic beating module 802 is used for beating, forming quality is further improved, the completely formed yeast moves to the discharge hole position at one end of the pressing bottom plate 6 along with the drag die box 3, the yeast is moved downward and ejected through the yeast ejecting die 9, the servo lifter 13 below is at the highest point and performs the material receiving work of the yeast, the servo lifter 13 moves downward synchronously along with the output of the yeast, the yeast is prevented from being damaged due to extrusion, and the yeast after demoulding moves down along with the servo lifter 13 to the contact with the yeast synchronous discharging conveyor 12, and is conveyed to a lower station through the yeast synchronous discharging conveyor 12.
The steps are repeated along with the driving of the drawing box conveying chain 4 by the drawing box 3 after the drawing is completed, so that the purpose of continuously forming and drawing the curved block is realized.