CN203229507U - Continuous cooking system - Google Patents

Continuous cooking system Download PDF

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Publication number
CN203229507U
CN203229507U CN 201320251830 CN201320251830U CN203229507U CN 203229507 U CN203229507 U CN 203229507U CN 201320251830 CN201320251830 CN 201320251830 CN 201320251830 U CN201320251830 U CN 201320251830U CN 203229507 U CN203229507 U CN 203229507U
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CN
China
Prior art keywords
discharge port
cylindrical shell
hopper
transfer roller
spreading
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Expired - Fee Related
Application number
CN 201320251830
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Chinese (zh)
Inventor
乔蓬海
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JIANGSU JUYUAN MACHINERY EQUIPMENT CO Ltd
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JIANGSU JUYUAN MACHINERY EQUIPMENT CO Ltd
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Priority to CN 201320251830 priority Critical patent/CN203229507U/en
Application granted granted Critical
Publication of CN203229507U publication Critical patent/CN203229507U/en
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Abstract

The utility model discloses a continuous cooking system of rice hulls in white spirit brewage. The continuous cooking system comprises a bucket conveyer, a quantified conveying packing auger, a vertical type cooking cylinder, a hopper conveyer and an air-cooling spreading conveyer, wherein a discharge port positioned in the upper end of a bucket elevator is positioned above a feed hopper of the quantified conveying packing auger; a discharge port of the quantified conveying packing auger is communicated with a feed port positioned in the upper end of the vertical type cooking cylinder; a discharge port positioned in the bottom end of the vertical type cooking cylinder is positioned above a feed hopper of the hopper conveyer; a discharge port of the hopper conveyer is positioned above a feed port of the air-cooling spreading conveyer. The continuous cooking system disclosed by the utility model changes the traditional mode of melt pit cooking, manually carries out the material laying and raising operation, realizes the continuous type conveying, vertical type cooking and draught fan air-cooling process of the rice hulls through the full electric automation control of system equipment, saves the time, the space and the labor power and is energy-saving and environment-friendly by cooking materials and conveying the materials at the same time. The integral equipment disclosed by the utility model saves the energy by about 50%, is controlled in the field by needing only one person and has rather wide market prospect.

Description

The continuously cooking system
Technical field
The utility model relates to the brewed spirit field, is specifically related to the continuously cooking system of rice husk in the brewed spirit.
Background technology
Along with the progress of society and improving constantly of people's living standard, new challenge has been proposed China white wine traditional mode of production mode.Because labour intensity is big, it is increasing to recruit wine brewing workman difficulty, in addition labor cost constantly soaring, land resources growing tension, production environment require factors such as stricter, restricting the liquor sustained development of enterprises.Therefore, domestic wine industry is demanded urgently innovating on traditional production technique basis, and the lifting of production mechanization, automatization level becomes the emphasis of industry research, and integrated automation and information-based production are the only ways that wine industry realizes Sustainable development.
Wherein making wine, auxiliary material---rice husk is when steaming material, traditional way is to sink to ground one segment distance to form melt pit in inside, house, lay pipeline connection steam in the melt pit, stainless steel plate with holes is laid in the pipeline top, manually rice husk is layered on the stainless steel plate then, after the connection steamed is cooked, rely on naturally cooling, again by manually bit by bit playing material, exist whole technological process extensive, regulation and control are complicated, labour intensity is big, productive efficiency is low, unstable product quality, drawbacks such as the serious and comprehensive energy consumption of environmental pollution is excessive, the industry that restricting develops in a healthy way, and becomes the bottleneck of Sustainable development.
The utility model content
The technical problems to be solved in the utility model provides a kind of continuously cooking system, by the full electric automatization control of system device, the continous way that realizes rice husk is carried, vertical boiling and the air-cooled process of blower fan, and the material cooking effect is good, saves time, save space, human-saving, energy-saving and environmental protection.
The utility model is achieved through the following technical solutions:
The continuously cooking system comprises feeding unit, vertical steaming tube and spreading for cooling drawing mechanism, and the discharge port of feeding unit is communicated with the vertical opening for feed that steams the tube upper end, and the vertical discharge port that steams the tube bottom is connected with the opening for feed of spreading for cooling drawing mechanism.
The further improvement project of the utility model is, described feeding unit comprises bucket conveyor and quantitative conveying auger, the spreading for cooling drawing mechanism comprises hopper transfer roller and air-cooled spreading for cooling transfer roller, the discharge port of described chapelet upper end is positioned at the hopper top of quantitative conveying auger, quantitatively the discharge port of conveying auger is communicated with the vertical opening for feed that steams the tube upper end, the vertical discharge port that steams the tube bottom is positioned at the hopper top of hopper transfer roller, and the discharge port of hopper transfer roller is positioned at the opening for feed top of air-cooled spreading for cooling transfer roller.
The utility model further improvement project is, described vertical steaming tube comprises cylindrical shell and steaming plant, and cylinder top is offered opening for feed, and the bottom arranges the discharging assembly, forms discharge port under the discharging assembly open mode, offers exhaust duct on the cylindrical shell; Described steaming plant comprises a plurality of steam seals chamber of connecting cylindrical shell, and the vapour line that is communicated with the steam seal chamber, uniform gas orifice on the steam seal cavity wall.
The utility model further improvement project is that described steam seal chamber comprises the steam seal chamber, top and the bottom steam annular seal space that is positioned at discharging assembly position around cylindrical shell.
The utility model further improvement project is, the discharging assembly of described cylindrical shell by be connected four of the cylindrical shell bottom all around plate constitute, fixedly connected with cylindrical shell in the front and rear panel upper end, fixedly connected with the bottom steam annular seal space in the bottom, plate upper end, the left and right sides flexibly connects with the cylindrical shell hinge, which is provided with flexible push rod.
The utility model further improvement project is, described cylindrical shell top inner wall is equipped with temperature regulator, and vapour line is provided with temperature regulating and controlling valve, and both are electrically connected.
The utility model further improvement project is that the hopper top of described quantitative conveying auger is provided with the A limit switch, is electrically connected with the drive unit of chapelet; Vertical steaming tube roof is provided with the B limit switch, is electrically connected with the drive unit of quantitative conveying auger.
The utility model further improvement project is that described air-cooled spreading for cooling transfer roller is drag conveyer, is provided with a plurality of materials above the carrier bar of drag conveyer and breaks up assembly, is provided with the wind chamber below the carrier bar, is communicated with many typhoons machine that is equipped with outside the wind chamber.
The utility model further improvement project is that the discharge port of described air-cooled spreading for cooling transfer roller is equipped with temp probe, is electrically connected with blower fan.
The utility model further improvement project is that the drive-motor of described decoction system is frequency transformer is installed.
The utility model compared with prior art has following obvious advantage:
The wine brewing rice husk is when steaming material, traditional way is to sink to ground one segment distance to form melt pit in inside, house, lay pipeline connection steam in the melt pit, stainless steel plate with holes is laid in the pipeline top, manually rice husk is layered on the stainless steel plate then, after the connection steamed is cooked, rely on naturally cooling, again by manually bit by bit playing material.The utility model has changed traditional way, employing comprises system's production line that bucket conveyor, quantitative conveying auger, vertical steaming tube, hopper transfer roller and air-cooled spreading for cooling transfer roller are formed, by the full electric automatization control of system device, realize the continous way conveying of rice husk, vertical boiling and the air-cooled process of blower fan, carry on boiling limit, material limit, saves time, save space, human-saving, energy-saving and environmental protection.Whole plant is energy-conservation about 50%, only needs 1 people's field control, and market outlook are quite wide.
Description of drawings
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the structural representation of bucket conveyor in the utility model.
Fig. 3 is the structural representation of quantitative conveying auger in the utility model.
Fig. 4 is the vertical structural representation that steams tube in the utility model.
Fig. 5 is the structural representation of hopper transfer roller in the utility model.
Fig. 6 is the structural representation of air-cooled spreading for cooling transfer roller in the utility model.
Embodiment
As shown in Figure 1, the utility model comprises bucket conveyor 1, quantitative conveying auger 2, vertical steaming tube 3, hopper transfer roller 4 and air-cooled spreading for cooling transfer roller 5, the discharge port 16 of described chapelet 1 upper end is positioned at hopper 22 tops of quantitative conveying auger 2, quantitatively the discharge port 23 of conveying auger 2 is communicated with the vertical opening for feed 31 that steams tube 3 upper ends, the vertical discharge port 315 that steams tube 3 bottoms is positioned at hopper 41 tops of hopper transfer roller 4, and the discharge port 45 of hopper transfer roller 4 is positioned at opening for feed 51 tops of air-cooled spreading for cooling transfer roller 5.
As shown in Figure 2, bucket conveyor 1 comprises is located at the interior head roll 12 that is positioned at the upper end of housing and the driven cylinder 13 of lower end, winnowing pan formula conveying belt 14 connects the head roll 12 and driven cylinder 13 at two ends up and down, head roll 12 is in transmission connection with drive-motor 15, the housing of bucket conveyor 1 lower end is provided with opening for feed 11, the upper end is provided with discharge port 16, also offer access hole 17 on the housing of bucket conveyor lower end, the conveying belt bottom connects tension assembly 18, so that maintenance and adjustment conveying belt rate of tension.
As shown in Figure 3, quantitatively conveying auger 2 comprises the screw-conveyer-shaft of being located in the housing 21, and screw-conveyer-shaft 21 1 ends top is provided with hopper 22, and discharge port 23 is offered in the other end below, and screw-conveyer-shaft 21 is in transmission connection with the drive-motor 24 of its top.Described hopper 22 internal upper parts are provided with A limit switch 25, be electrically connected with the drive-motor 15 of bucket conveyor 1, whether the rice husk height that A limit switch 25 detects in the quantitative conveying auger hopper 22 reach predetermined height, control bucket conveyor 1 stop or continuing charging.
As shown in Figure 4, vertical steaming tube 3 comprises cylindrical shell 31 and steaming plant, cylindrical shell 31 is from top to down by the circular cone stage body of hollow, right cylinder, (the upper end cross section of old name for the Arabian countries in the Middle East's ground circle is circular to old name for the Arabian countries in the Middle East's ground circle, the lower end cross section is foursquare) be welded, opening for feed 311 is offered on cylindrical shell 31 tops, be connected by flange with the discharge port 23 of quantitative conveying auger 2, offer exhaust duct 312 respectively on the extraction hood in circular cone stage body upper wall and the circle outside, old name for the Arabian countries in the Middle East ground, 313, residual steam and dust are by exhaust duct 312 in the vertical steaming tube 3,313 unified recovery, circle bottom, old name for the Arabian countries in the Middle East ground arranges discharging assembly 314, discharging assembly 314 by four trilaterals that are connected cylindrical shell 31 bottoms all around plate constitute, fixedly connected with cylindrical shell 31 in the front and rear panel upper end, the bottom is fixedly connected by III steam seal chamber 323, bottom, plate upper end, the left and right sides flexibly connects with cylindrical shell 31 hinges, which is provided with cylinder push-rod, cylindrical shell 31 was the cavity of sealing when cylinder shrank, when cylinder stretches, promote left and right sides plate and open, constitute the discharge port 315 of vertical boiling tube.
Described steaming plant comprises three steam seal chambeies (I steam seal chamber 321, II steam seal chamber 322, III steam seal chamber 323) of being connected on the cylindrical shell 31, and the vapour line 324 that is communicated with the steam seal chamber, the gas orifice of uniform 3mm on the steam seal cavity wall.The I steam seal chamber on top and II steam seal chamber are the annular seal space that arranges around cylindrical shell, contain straight neck pipe on the annular seal space, be welded with flange on the pipe, and stopping valve is installed, and are communicated with vapour line; The III steam seal chamber 324 of discharging assembly 314 bottoms is that the bottom is rectangle, the cavity body that meets at any is stretched in four angle upper edges, the gas orifice of uniform 3mm on the skew wall on the cavity body, the rectangle symmetry limit of 323 bottoms, III steam seal chamber is fixedly connected on the front and rear panel of discharging assembly 314, be separately installed with flange and blind plate on the front and rear panel in III steam seal chamber 323, flange is equipped with stopping valve, be communicated with vapour line, can regulate into quantity of steam, blind plate is opened the foreign material that can be convenient to clean in the III steam seal cavity.
Described cylindrical shell 31 top inner wall are equipped with temperature regulator 33, be electrically connected with the temperature regulating and controlling valve 325 that arranges on the vapour line 324, can be by the open amount of temperature regulator 33 regulating and controlling temperature regulating and controlling valves 325 valves, in order to reach the peak use rate of steam.
Bottom, described steam seal chamber is provided with the water of condensation outlet orifice and is connected with discharge pipe line, and the heat power drain valve is installed on the discharge pipe line, in time gets rid of because the water of condensation that steam cooling produces guarantees to use safety.
Be provided with B limit switch 34 in described cylindrical shell 31 roofs, be electrically connected with the drive unit 24 of quantitative conveying auger 2.B limit switch 34 detects whether the rice husk height reaches predetermined height in the cylindrical shell 31, stops or continuing charging to control quantitative conveying auger 2.After full on first material, open steaming plant, after the temperature regulator 33 on cylindrical shell 31 tops detected preset temperature, the discharging assembly 314 of cylindrical shell 31 bottoms was opened, and carries out discharging, and is in opened condition always.
As shown in Figure 5, hopper transfer roller 4 is chain and pan conveyor, and well-done rice husk connects material, deposits by hopper 41, and drive-motor 42 drives main drive shaft 43 rotations simultaneously, and main drive shaft 43 drives carrier bars 44 and transmits rice husks to front end discharge port 45.
As shown in Figure 6, air-cooled spreading for cooling transfer roller 5 is drag conveyer, carrier bar 52 tops are provided with six materials and break up assembly 53, carrier bar 52 belows are provided with wind chamber 54, the wind chamber 54 outer six typhoon machines 55 that are equipped with that are communicated with, the discharge port 56 of described air-cooled spreading for cooling transfer roller 5 is equipped with temp probe 57, is electrically connected with blower fan 55.
The rice husk digestion process:
Rice husk drops into the lower end opening for feed 11 of chapelet 1, be thus lifted to high-order top from low level, enter in the hopper 22 of quantitative conveying auger 2 from discharge port 16 then, A limit switch 25 on the hopper 22 detects rice husk and reaches predetermined height, chapelet 1 suspends haul (when A limit switch 25 detects rice husk and do not reach predetermined height, vertical lift 1 continues to open haul), following quantitative conveying auger 2 starts, rice husk is transported in the vertical steaming tube 3, this moment, the vertical discharging assembly 314 that steams tube 3 bottoms was closed, the rice husk that the B limit switch 34 at cylindrical shell top detects in the cylindrical shell 31 reaches predetermined height, quantitatively conveying auger 2 suspends feeding, the open amount of the temperature regulating and controlling valve 325 that arranges on the temperature regulator 33 control vapour lines 324 on the described cylindrical shell top inner wall, delivering vapor in the steam seal chamber, steam enters cylindrical shell 31 inside from the gas orifice on the annular seal space, rice husk is carried out boiling, when a steaming tube head temperature controller 33 detects preset temperature, discharging assembly 314 is opened automatically, carry out discharging, fall in the hopper 41 of hopper transfer roller 4, discharging assembly 314 is in opened condition always.When top B limit switch 34 detected the rice husk height and do not reach predetermined height, quantitatively conveying auger 2 was proceeded charging, finishes up to whole digestion process simultaneously.Hopper transfer roller 4 is used for well-done rice husk is delivered in the opening for feed 51 of air-cooled spreading for cooling transfer roller 5, air-cooled spreading for cooling transfer roller 5 runnings, rice husk is carried to a high position from low level, in course of conveying, beat and to spread 53 pairs of rice husks of assembly and stir, 55 pairs of rice husks of blower fan that the below is communicated with wind chamber 54 are bled outward, take away the heat in the rice husk.The discharge port 56 of described air-cooled spreading for cooling transfer roller 5 is equipped with temp probe 57, is used for control blower fan 55 and opens quantity and air quantity size.
Carry on boiling limit, whole digestion process limit, and the whole system drive-motor is variable frequency control, and speed can be mated mutually, to reach the boiling best effect of material.Whole plant is energy-conservation about 50%, only needs 1 people's field control, and market outlook are quite wide.
The boiling of the present main application fields of the utility model rice husk in brewed spirit enterprise is used, and all has place to show one's prowess in numerous food product processing enterprise by suitable improvement.

Claims (10)

1. continuously cooking system, it is characterized in that: comprise feeding unit, vertical steaming tube (3) and spreading for cooling drawing mechanism, the discharge port of feeding unit is communicated with the vertical opening for feed that steams the tube upper end, and the vertical discharge port that steams the tube bottom is connected with the opening for feed of spreading for cooling drawing mechanism.
2. continuously cooking according to claim 1 system, it is characterized in that: described feeding unit comprises bucket conveyor (1) and quantitative conveying auger (2), the spreading for cooling drawing mechanism comprises hopper transfer roller (4) and air-cooled spreading for cooling transfer roller (5), the discharge port (16) of described chapelet (1) upper end is positioned at hopper (22) top of quantitative conveying auger (2), quantitatively the discharge port (23) of conveying auger (2) is communicated with the vertical opening for feed (311) that steams tube (3) upper end, the vertical discharge port (315) that steams tube (3) bottom is positioned at hopper (41) top of hopper transfer roller (4), and the discharge port (45) of hopper transfer roller (4) is positioned at opening for feed (51) top of air-cooled spreading for cooling transfer roller (5).
3. continuously cooking according to claim 1 and 2 system, it is characterized in that: described vertical steaming tube (3) comprises cylindrical shell (31) and steaming plant (32), opening for feed (311) is offered on cylindrical shell (31) top, the bottom arranges discharging assembly (314), form discharge port (315) under discharging assembly (314) open mode, offer exhaust duct (312,313) on the cylindrical shell (31); Described steaming plant (32) comprises a plurality of steam seals chamber that connects cylindrical shell (31) and the vapour line (324) that is communicated with the steam seal chamber, uniform gas orifice on the steam seal cavity wall.
4. continuously cooking according to claim 3 system is characterized in that: described steam seal chamber comprises around the steam seal chamber, top (321,322) of cylindrical shell and is positioned at the bottom steam annular seal space (323) at discharging assembly position.
5. continuously cooking according to claim 4 system, it is characterized in that: the discharging assembly (314) of described cylindrical shell (31) by be connected four of the cylindrical shell bottom all around plate constitute, fixedly connected with cylindrical shell in the front and rear panel upper end, fixedly connected with bottom steam annular seal space (323) in the bottom, plate upper end, the left and right sides flexibly connects with the cylindrical shell hinge, which is provided with flexible push rod.
6. continuously cooking according to claim 3 system, it is characterized in that: described cylindrical shell (31) top inner wall is equipped with temperature regulator (33), and vapour line (324) is provided with temperature regulating and controlling valve (325), and both are electrically connected.
7. continuously cooking according to claim 2 system, it is characterized in that: the hopper top of described quantitative conveying auger (2) is provided with A limit switch (25), is electrically connected with the drive unit of chapelet (1); Vertical steaming tube (3) roof is provided with B limit switch (34), is electrically connected with the drive unit of quantitative conveying auger (2).
8. continuously cooking according to claim 2 system, it is characterized in that: described air-cooled spreading for cooling transfer roller (5) is drag conveyer, the carrier bar of drag conveyer (52) top is provided with a plurality of materials and breaks up assembly (53), carrier bar (52) below is provided with wind chamber (54), wind chamber (54) outer many typhoons machine (55) that is equipped with that is communicated with.
9. continuously cooking according to claim 8 system, it is characterized in that: the discharge port of described air-cooled spreading for cooling transfer roller (5) is equipped with temp probe (57), is electrically connected with blower fan (55).
10. continuously cooking according to claim 1 and 2 system, it is characterized in that: the drive-motor of described decoction system is frequency transformer is installed.
CN 201320251830 2013-05-10 2013-05-10 Continuous cooking system Expired - Fee Related CN203229507U (en)

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Application Number Priority Date Filing Date Title
CN 201320251830 CN203229507U (en) 2013-05-10 2013-05-10 Continuous cooking system

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Application Number Priority Date Filing Date Title
CN 201320251830 CN203229507U (en) 2013-05-10 2013-05-10 Continuous cooking system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103614272A (en) * 2013-10-21 2014-03-05 广西丹泉酒业有限公司 An energy-saving continuous rice-steaming machine
CN107435018A (en) * 2017-09-29 2017-12-05 浙江德清莫干山酒业有限公司 A kind of horizontal cold meal unit of steaming

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103614272A (en) * 2013-10-21 2014-03-05 广西丹泉酒业有限公司 An energy-saving continuous rice-steaming machine
CN107435018A (en) * 2017-09-29 2017-12-05 浙江德清莫干山酒业有限公司 A kind of horizontal cold meal unit of steaming

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20131009

Termination date: 20150510

EXPY Termination of patent right or utility model