Dry-out-preventing and printing-remaining system for ventilation high-temperature solid-phase beer fermentation

文档序号:1717338 发布日期:2019-12-17 浏览:30次 中文

阅读说明:本技术 一种通风高温固相啤酒发酵防干涸留印系统 (Dry-out-preventing and printing-remaining system for ventilation high-temperature solid-phase beer fermentation ) 是由 孔仕华 于 2019-09-26 设计创作,主要内容包括:本发明公开了一种通风高温固相啤酒发酵防干涸留印系统,其结构包括观察窗、通风口,观察窗焊接于固相高温桶外表面,其啤酒置入置物格内部后,其啤酒将会顺着中流道往内灌输,其曲软条在啤酒的量大时会对内囊球进行挤压,让其入口变大,其隔固块限制了最大的出口范围,让其托板能够更顺利的上移,其液体是会波动的,由椭扯条与软条之间的衔接变化,跟随所受到的力一同产生形变,贴合于液体一同波动,不会使其脱离液体,当内部的温度开始在慢慢上升时,让飞溅得多的时候,当整体更好的倾斜,让其啤酒更好的往下滑动,让其在内部进行高温固相发酵处理的啤酒,不会由于高温飞溅起来的液体溅于干涸的位置,而马上凝固粘结。(The invention discloses a ventilation high-temperature solid-phase beer fermentation anti-drying and anti-mark-remaining system, which structurally comprises an observation window and a ventilation opening, wherein the observation window is welded on the outer surface of a solid-phase high-temperature barrel, beer can be infused inwards along a middle flow channel after being placed in a storage grid, a flexible strip can extrude an inner bag ball when the volume of the beer is large, the inlet of the flexible strip is enlarged, a fixing block limits the maximum outlet range, a supporting plate of the flexible strip can move upwards more smoothly, liquid of the flexible strip can fluctuate, the flexible strip and the elliptic strip are changed by connection between the elliptic strip and the flexible strip, the flexible strip and the flexible strip deform together along with the applied force, the flexible strip is adhered to the liquid and fluctuates together without separating the liquid, when the internal temperature begins to rise slowly, the splashing amount is much, the beer can better incline integrally and slide downwards, and the beer is subjected to high-temperature solid-phase fermentation treatment in the interior, the liquid splashed by high temperature can not splash to a dry position, and the liquid can be immediately solidified and bonded.)

1. The utility model provides a dry system of keeping seal of preventing of ventilation high temperature solid phase beer fermentation, its structure includes observation window (11), vent (22), solid phase high temperature bucket (33), supporting legs (44), its characterized in that:

The observation window (11) is welded on the outer surface of the solid-phase high-temperature barrel (33), the vent (22) is installed above the solid-phase high-temperature barrel (33) and is communicated with the solid-phase high-temperature barrel, and one end, far away from the vent (22), of the solid-phase high-temperature barrel (33) is welded with the supporting legs (44).

2. The ventilation high-temperature solid-phase beer fermentation drying and printing prevention system of claim 1, wherein the system comprises: the solid-phase high-temperature barrel (33) comprises an object placing grid (aa 1), an outer pocket shell (aa 2) and a floating drop plate (aa 3), the object placing grid (aa 1) is embedded into the outer pocket shell (aa 2), the floating drop plate (aa 3) is installed inside the outer pocket shell (aa 2) and movably connected with the outer pocket shell, the floating drop plate (aa 3) comprises a floating ring strip (mm 1), a fixed shell (mm 2), a conical drop port (mm 3) and a supporting plate (mm 4), the floating ring strip (mm 1) is embedded into the fixed shell (mm 2), the fixed shell (mm 2) and the supporting plate (mm 4) are on the same axis, and the conical drop port (mm 3) is installed on the outer surface of the supporting plate (mm 4).

3. The ventilation high-temperature solid-phase beer fermentation drying and printing prevention system of claim 2, wherein the system comprises: the floating ring strip (mm 1) comprises a fixed floating ball (a 1 a), a supporting connection body (a 2 a), a soft strip (a 3 a) and an ellipse dragging strip (a 4 a), wherein the supporting connection body (a 2 a) is connected with the ellipse dragging strip (a 4 a), the ellipse dragging strip (a 4 a) is embedded into the soft strip (a 3 a), and the soft strip (a 3 a) is connected with the fixed floating ball (a 1 a).

Technical Field

The invention belongs to the field of ventilation solid-phase fermentation equipment, and particularly relates to a ventilation high-temperature solid-phase beer fermentation drying and printing prevention system.

background

Beer brewed by wheat is fermented at high temperature through a solid phase fermentation barrel with a ventilation function, water vapor of high-temperature fermentation in the beer is emitted out through a ventilation opening, and the upper part of the inner wall is in a high-temperature drying state through high-temperature treatment.

Based on the findings of the inventor, the existing ventilation solid phase fermentation system mainly has the following defects, such as:

When the wheat beer inside expands in solid phase fermentation and slightly splashes upwards, the wheat beer splashes to a dry part, and the stamp of the wheat beer is dried immediately after the high-temperature state is added, so that the stamp is adhered to the inner wall to form a layer of scale.

Therefore, a system for preventing drying and printing of solid-phase beer in a ventilated high-temperature fermentation mode needs to be provided.

Disclosure of Invention

In order to solve the problem that when the wheat beer inside expands in solid phase fermentation and slightly splashes upwards, the wheat beer splashes to a dry part, and when a high-temperature state is added, the wheat beer stamp dries up immediately, so that the wheat beer stamp is adhered to the inner wall to form a layer of scale.

The invention relates to a purpose and an effect of a ventilation high-temperature solid-phase beer fermentation drying-prevention and printing-retention system, which are achieved by the following specific technical means:

The structure of the device comprises an observation window, a ventilation opening, a solid phase high temperature barrel and supporting legs.

The observation window is welded on the outer surface of the solid-phase high-temperature barrel, the vent is installed above the solid-phase high-temperature barrel and communicated with the solid-phase high-temperature barrel, and one end, away from the vent, of the solid-phase high-temperature barrel is welded with the supporting legs.

The solid-phase high-temperature barrel comprises an object placing grid, an outer pocket shell and a floating drip plate, the object placing grid is embedded into the outer pocket shell, and the outer pocket shell is internally provided with the floating drip plate and movably connected with the floating drip plate.

As a further improvement of the invention, the floating drop plate comprises a floating ring strip, a fixed shell, conical drop openings and a supporting plate, wherein the floating ring strip is embedded in the fixed shell, the fixed shell and the supporting plate are on the same axis, the conical drop openings are arranged on the outer surface of the supporting plate, the conical drop openings are circularly and uniformly distributed, and the fixed shell is of a circular structure.

as a further improvement of the invention, the floating ring strip comprises a fixed floating ball, a support connecting body, a soft strip and an oval strip, wherein the support connecting body is connected with the oval strip, the oval strip is embedded in the soft strip, the soft strip is connected with the fixed floating ball, the support connecting body is of a spherical structure, seven oval strips are arranged, and two fixed floating balls are arranged.

as a further improvement of the invention, the conical drip opening comprises a conical assistant head, a separation and fixation block, an inner bag ball, a curved soft strip and a middle flow passage, wherein the conical assistant head is connected with the curved soft strip, the inner bag ball is embedded in the curved soft strip, the middle flow passage is positioned in the curved soft strip, one end of the curved soft strip, which is far away from the middle flow passage, is connected with the separation and fixation block, the inner bag ball is of an oval structure, and the number of the conical assistant heads is two.

As a further improvement of the invention, the cone auxiliary head comprises an auxiliary falling groove, a dragging angle, a falling and dropping head and a chamfering block, the falling and dropping head is positioned in the auxiliary falling groove, the dragging angle is attached to the outer surface of the falling and dropping head, the falling and dropping head is abutted to the outer surface of the chamfering block, five falling and dropping heads are arranged, and six dragging angles are arranged.

As a further improvement of the invention, the drop-hanging and warping head comprises a smooth layer, a chuck, a counter-expansion angle, a leaning ball, a back included angle and a round head, wherein the round head is welded on the outer surface of the smooth layer, the chuck is embedded in the counter-expansion angle, the leaning ball is propped in the back included angle, the chuck is connected with the smooth layer, the leaning ball is of a spherical structure, and the round head is of a semicircular structure.

Compared with the prior art, the invention has the following beneficial effects:

After the beer is placed in the storage grid, the beer can be infused inwards along the middle flow channel, the flexible strip can extrude the inner sacculus ball when the volume of the beer is large, the inlet of the flexible strip is enlarged, the maximum outlet range is limited by the solid separation block, the supporting plate can move upwards smoothly, the liquid can fluctuate, the liquid can change due to the connection between the oval strip and the flexible strip, the flexible strip deforms along with the applied force, the liquid can fluctuate together to prevent the liquid from separating from the liquid, when the internal temperature begins to rise slowly, the liquid of the beer can be stained on the smooth layer and can continuously slide downwards along the smooth layer, when the splashing is much higher, the round head can be stained with the applied force, when the inclined ball changes, the return included angle can be extruded, when the whole body is better inclined, the beer can better slide downwards, and the beer can be subjected to high-temperature solid phase fermentation treatment in the beer, the liquid splashed by high temperature can not splash to a dry position, and the liquid can be immediately solidified and bonded.

Drawings

FIG. 1 is a schematic structural diagram of a ventilation high-temperature solid-phase beer fermentation drying-proof mark-remaining system.

FIG. 2 is a schematic diagram of a front view of the internal structure of the solid-phase high-temperature barrel according to the present invention.

FIG. 3 is a schematic top view of an inner structure of a floating-drop plate according to the present invention.

Fig. 4 is a schematic front view of the inner structure of a floating ring strip according to the present invention.

Fig. 5 is a schematic front view of the internal structure of a cone-shaped drip outlet according to the present invention.

FIG. 6 is a schematic front view of an internal structure of a cone aid according to the present invention.

fig. 7 is a front view of an internal structure of a drop warp head according to the present invention.

in the figure: observation window-11, ventilation opening-22, solid phase high temperature barrel-33, supporting leg-44, storage lattice-aa 1, outer bag shell-aa 2, floating drip plate-aa 3, floating ring strip-mm 1, solid shell-mm 2, cone drip-mm 3, supporting plate-mm 4, fixed floating ball-a 1a, supporting connector-a 2a, soft strip-a 3a, ellipse tear strip-a 4a, cone head-1 pp, separation block-2 pp, inner capsule ball-3 pp, flexible strip-4 pp, middle flow channel-5 pp, drop groove-g 1, pull angle-g 2, drop head-g 3, chamfer-g 4, smooth layer-1 zz, chuck-2 zz, expansion reverse angle-3 zz, inclination ball-4 zz, return included angle-5 zz, round head-6 zz.

Detailed Description

The invention is further described below with reference to the accompanying drawings:

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