CN201222971Y - Processing equipment for on line expansion of cabo - Google Patents

Processing equipment for on line expansion of cabo Download PDF

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Publication number
CN201222971Y
CN201222971Y CNU2008200420436U CN200820042043U CN201222971Y CN 201222971 Y CN201222971 Y CN 201222971Y CN U2008200420436 U CNU2008200420436 U CN U2008200420436U CN 200820042043 U CN200820042043 U CN 200820042043U CN 201222971 Y CN201222971 Y CN 201222971Y
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China
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connects
feeding mechanism
heating mechanism
expansion
pressurization heating
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Expired - Lifetime
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CNU2008200420436U
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Chinese (zh)
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韩梅玲
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Individual
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Individual
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Priority to CNU2008200420436U priority Critical patent/CN201222971Y/en
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Abstract

The utility model discloses an on-line tobacco stems expansion device. A feeding mechanism (1) is connected with the vertical pipe (7) of a pressurization heating mechanism (2) via an auxiliary feeding mechanism (6). The feed port of the vertical pipe (7) is connected with the discharge port of the auxiliary feeding mechanism (6). The discharge port of the vertical pipe (7) is communicated with the feed end of a horizontal delivery pipe (8). The exit of the horizontal delivery pipe (8) is connected with a Venturi expansion pipe (3). A helical conveyor (9) is arranged inside the horizontal delivery pipe (8). A rotating ball piece (12) is arranged inside the body of a spherical seal valve (11). The rotating ball piece (12) is connected with a driver (14) via the rotating shafts at both ends of the rotating ball piece (12). A U-shaped feed trough (13) is formed inside the rotating ball piece (12). The on-line tobacco stems expansion device has simple structure, achieves the effect of continuous production while ensuring the same quality of expansion treatment, greatly reduces the consumption of steam energy sources, and reduces the relevant production treatment costs.

Description

The swelling cabo online process equipment
Technical field
The utility model relates to a kind of expanding tobacco process equipment that cigarette manufacturing enterprise uses, and relates in particular to a kind of swelling cabo online process equipment that uses saturated or superheated steam.
Background technology
At present, domestic and international existing offal or stem (cutting the back offal) expansion process device is made up of feed arrangement, hot and humid expanding apparatus, hot air circulating system usually.For example application number is the disclosed cabo expansion equipment of 2005101189346 applications for a patent for invention, be characterized in having the first and second superheated steam processing sections that valve separates, the second superheated steam processing section of this equipment is in the pressurization warm-up mode all the time, and its first superheated steam processing section is clearance-type work, pressurising adds gentle release of pressure cooling in turn, so that when release of pressure is lowered the temperature, under atmospheric pressure, realize charging, when heating, pressurising make offal obtain preheating, and after the first and second superheated steam processing section pressure balances, material could enter the second superheated steam processing section by the first superheated steam processing section.This equipment is the clearance-type charging, the clearance-type discharging, and the first and second superheated steam processing sections are that the gap takes turns to operate all the time, can't realize continuous production, and working (machining) efficiency is lower, and energy utilization rate is also lower.
The disclosed cabo expansion equipment of 2006100983145 applications for a patent for invention, adopt the rotation gas lock to replace seal valve in the import and export in pressurized treatments storehouse, having overcome the former clearance-type to a certain extent takes turns to operate and is unfavorable for the quantity-produced problem, but the gas lock sealing of its use is difficult to obtain assurance, easily produce steam leakage, and because the gas lock in exit is when the obstruct air-flow is taken offal out of, the folding slowly of rotation gas lock, also can influence the release of pressure speed of offal, and then the expansion of offal is had a negative impact.
Summary of the invention
The purpose of this utility model is: a kind of swelling cabo online process equipment is provided, and this equipment guarantees offal serialization expansion production, can realize better expansion effect again simultaneously.
Swelling cabo online process equipment of the present utility model comprises feeding mechanism, pressurization heating mechanism, Wen's expansion tube, the outlet of the pressurization heating mechanism of carrying vapour inlet connects Wen's expansion tube, the outlet of Wen's expansion tube connects discharging opening, it is characterized in that: feeding mechanism is connected with the pressurization heating mechanism by charging auxiliary body, the feed end of charging auxiliary body connects the bottom of feeding mechanism, and the discharge end of charging auxiliary body connects the feed end top of pressurization heating mechanism; Described pressurization heating mechanism is made up of vertical tube, horizontal conveying pipe, auger conveyor, the charging aperture of vertical tube is connected with the discharging opening of charging auxiliary body, the discharging opening of vertical tube and the feed end of horizontal conveying pipe intersect perforation, the outlet of horizontal conveying pipe connects Wen's expansion tube, and auger conveyor is installed in the horizontal conveying pipe; Described charging auxiliary body is made up of ball-type seal valve valve body, revolution spheroid, U type material trough and driver, in ball-type seal valve valve body, establish the revolution spheroid, the revolution spheroid connects driver by the rotating shaft at two ends, U type material trough is installed in the revolution spheroid, and feed end on the ball-type seal valve valve body and discharge end are communicated with U type material trough respectively successively when the rotation of revolution spheroid.
During actual the use, the offal material is sent into the feed end of charging auxiliary body by feeding mechanism, falls in the U type material trough of revolution spheroid, along with the rotation of revolution spheroid to ball-type seal valve valve body discharge end direction, offal is brought to ball-type seal valve valve outlet end, falls into the pressurization heating apparatus.
The utlity model has following advantage: 1. ball-type seal valve valve body and revolution spheroid have the structure of general steam ball valve and have had the high pressure sealing effect, thereby play high temperature and high pressure steam in the heating mechanism that prevents to pressurize through the effect of feeding mechanism to external leakage, also be able to offal under the state of normal temperature and pressure simultaneously, carry continuously in the high-temperature high-pressure state in the pressurization heating mechanism, thereby the swelling cabo online processing that has realized relative serialization is handled; 2. the offal in the U type material trough takes offal to the port of export from inlet by revolution spheroid rotation, and the steam in the heating mechanism that prevents to pressurize is outwards revealed; 3. charging auxiliary body can be continuously with the offal material from by in the pressurization heating mechanism of sending the high pressure-temperature state under the atmospheric pressure to, and need not install rotation gas lock, seal valve or preheating steam treatment section in addition; 4. heating through pressurization, to carry out vapour by Wen's expansion tube subsequently quick-fried for offal material after handling, realizes quick step-down and expand, and can guarantee the offal expansion quality; 5. simple in structure, when obtaining equal expansion quality, realize serialization production, can save steam energy significantly, reduce corresponding production processing cost.
Description of drawings
Below in conjunction with accompanying drawing the utility model is further described:
Fig. 1 is the utility model structural representation;
Fig. 2 is the pressurization heating mechanism schematic diagram of Fig. 1.
Fig. 3 is the charging auxiliary body schematic diagram of Fig. 1.
Among the figure: 1 feeding mechanism, 2 pressurization heating mechanisms, 3 Wen's expansion tubes, 4 steam inlets, 5 discharging openings, 6 charging auxiliary bodies, 7 vertical tubes, 8 horizontal conveying pipes, 9 auger conveyors, 10 rotating shafts, 11 ball-type seal valve valve bodies, 12 revolution spheroids, 13U type material trough, 14 drivers.
The specific embodiment
As Figure 1-3, the swelling cabo online process equipment comprises feeding mechanism 1, pressurization heating mechanism 2, Wen's expansion tube 3, the outlet of the pressurization heating mechanism 2 of carrying vapour inlet 4 connects Wen's expansion tube 3, the outlet of Wen's expansion tube 3 connects discharging opening 5, it is characterized in that: feeding mechanism 1 is connected with pressurization heating mechanism 2 by charging auxiliary body 6, the feed end of charging auxiliary body 6 connects the bottom of feeding mechanism 1, and the discharge end of charging auxiliary body 6 connects the feed end top of pressurization heating mechanism 1; Described pressurization heating mechanism 2 is made up of vertical tube 7, horizontal conveying pipe 8, auger conveyor 9, the charging aperture of vertical tube 7 is connected with the discharge port end of charging auxiliary body 6, the feed end of the discharging opening of vertical tube and horizontal conveying pipe 8 intersects perforation, the outlet of horizontal conveying pipe 8 connects Wen's expansion tube 3, and auger conveyor 9 is installed in the horizontal conveying pipe 8; Described charging auxiliary body 6 is made up of ball-type seal valve valve body 11, revolution spheroid 12, U type material trough 13 and driver 14, in ball-type seal valve valve body 11, establish revolution spheroid 12, revolution spheroid 12 connects driver 14 by the rotating shaft 10 at two ends, U type material trough 13 is installed in the revolution spheroid 12, and feed end on the ball-type seal valve valve body 11 and discharge end are communicated with U type material trough 13 respectively successively when 12 rotations of revolution spheroid.
During actual the use, the offal material is sent into the feed end of charging auxiliary body 6 by feeding mechanism 1, fall in the U type material trough 13 of revolution spheroid 12, along with of the rotation of revolution spheroid 12 to ball-type seal valve valve body 11 discharge end directions, offal is brought to ball-type seal valve valve body 11 ports of export, falls into the pressurization heating apparatus.

Claims (1)

1, the swelling cabo online process equipment, the swelling cabo online process equipment comprises feeding mechanism (1), pressurization heating mechanism (2), Wen's expansion tube (3), the outlet of the pressurization heating mechanism (2) of carrying vapour inlet (4) connects Wen's expansion tube (3), the outlet of Wen's expansion tube (3) connects discharging opening (5), it is characterized in that: feeding mechanism (1) is connected with pressurization heating mechanism (2) by charging auxiliary body (6), the feed end of charging auxiliary body (6) connects the bottom of feeding mechanism (1), and the discharge end of charging auxiliary body (6) connects the feed end top of pressurization heating mechanism (1); Described pressurization heating mechanism (2) is made up of vertical tube (7), horizontal conveying pipe (8), auger conveyor (9), the charging aperture of vertical tube (7) is connected with the discharging opening of charging auxiliary body (6), the feed end of the discharging opening of vertical tube (7) and horizontal conveying pipe (8) intersects perforation, the outlet of horizontal conveying pipe (8) connects Wen's expansion tube (3), and auger conveyor (9) is installed in the horizontal conveying pipe (8); Described charging auxiliary body (6) is made up of ball-type seal valve valve body (11), revolution spheroid (12), U type material trough (13) and driver (14), in ball-type seal valve valve body (11), establish revolution spheroid (12), revolution spheroid (12) connects driver (14) by the rotating shaft (10) at two ends, U type material trough (13) is installed in the revolution spheroid (12), and feed end on the ball-type seal valve valve body (11) and discharge end are communicated with U type material trough (13) respectively successively when revolution spheroid (12) rotation.
CNU2008200420436U 2008-07-23 2008-07-23 Processing equipment for on line expansion of cabo Expired - Lifetime CN201222971Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200420436U CN201222971Y (en) 2008-07-23 2008-07-23 Processing equipment for on line expansion of cabo

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008200420436U CN201222971Y (en) 2008-07-23 2008-07-23 Processing equipment for on line expansion of cabo

Publications (1)

Publication Number Publication Date
CN201222971Y true CN201222971Y (en) 2009-04-22

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CNU2008200420436U Expired - Lifetime CN201222971Y (en) 2008-07-23 2008-07-23 Processing equipment for on line expansion of cabo

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102640975A (en) * 2012-05-03 2012-08-22 南京瑞驰电子技术工程实业有限公司 Method and device for preparing cut expanded plant stems
CN101773290B (en) * 2010-02-04 2012-09-26 江苏智思机械集团有限公司 Tobacco stem expanding method and equipment using low-pressure steam as medium

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101773290B (en) * 2010-02-04 2012-09-26 江苏智思机械集团有限公司 Tobacco stem expanding method and equipment using low-pressure steam as medium
CN102640975A (en) * 2012-05-03 2012-08-22 南京瑞驰电子技术工程实业有限公司 Method and device for preparing cut expanded plant stems

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Granted publication date: 20090422