CN204854306U - Three -dimensional hot type vacuum drying storehouse that adds - Google Patents
Three -dimensional hot type vacuum drying storehouse that adds Download PDFInfo
- Publication number
- CN204854306U CN204854306U CN201520569932.8U CN201520569932U CN204854306U CN 204854306 U CN204854306 U CN 204854306U CN 201520569932 U CN201520569932 U CN 201520569932U CN 204854306 U CN204854306 U CN 204854306U
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- shell
- inner casing
- radiating tube
- vacuum container
- heat
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Abstract
The utility model relates to a three -dimensional hot type vacuum drying storehouse that adds comprises shell, inner shell and support. Three -dimensional hot type vacuum drying storehouse that adds's face shaping is bipyramid form or ball form or cylindric. There are heat -conducting medium import and heat -conducting medium export above the shell, the shell is in the outside of inner shell, and the connection of shell and inner shell is supported fixedly by the support, and the extraction opening and the feeding valve of inner shell extend the shell, have the cooling tube in the inner shell, have the fin on the cooling tube. High fever heat -conducting medium carries out the solid heat dissipation through inner shell and cooling tube and heats inside getting into the inner chamber and cooling tube between shell and the inner shell, and its inner shell and radiating fin pipe dispel the heat under the condition of dry storehouse the same size's space, volume, and heat radiating area has increased 10 -60 doubly, has improved the heating heat conduction speed of heat energy, has strengthened the drying efficiency of material, has reached the purpose of material rapid draing.
Description
Technical field
The utility model relates on a kind of drying plant in dry storehouse, specifically a kind of stereoscopic heating type dry vacuum container.
Background technology
Now commercially the dryness storehouse of drying plant is by adding high temperature heat conducting medium to carry out heating heat exchange in the interlayer of dryness storehouse, heat is contacted with wet stock by the interlayer inwall of dryness storehouse, the radiating surface of interlayer inwall is flat, area of dissipation is little, the heating surface area of material is little, affects the inbound pacing of the required heat of dry materials.
Summary of the invention
Problem to be solved in the utility model is the deficiency overcoming the existence of existing dryness storehouse, provide a kind of dry vacuum container of three-dimensional heating, the inwall individual layer plane heat radiation changing original dryness storehouse is the inwall three-dimensional heating of dryness storehouse, increases area of dissipation, improves heat conduction firing rate.
In order to achieve the above object, the utility model is achieved through the following technical solutions: a kind of stereoscopic heating type dry vacuum container is by shell, and inner casing and support form.
The face shaping of described stereoscopic heating type dry vacuum container is bipyramid shape, or spherical shape, or cylindric.
The rack making material of described stereoscopic heating type dry vacuum container is metal bar, or bonding jumper.
It is metallic plate that the shell of described stereoscopic heating type dry vacuum container and inner casing make material, and the thickness of metallic plate is 0.5-8mm.
Described shell is in the outside of inner casing, and inner casing is in the inside of shell.
1, the connection of shell and inner casing is supported fixing by support.
2, the inner chamber between shell and inner casing is closed gastight.
3, the spacing between shell and inner casing is 10-180mm.
4, in order to reduce the loss of heat energy, adhering in enclosure and installing heat-insulation layer additional to be incubated.
Heat-conducting medium import and heat-conducting medium outlet is had above described shell.
The heat-conducting medium that the dry heat of described stereoscopic heating type dry vacuum container uses is high-temperature-hot-water, or high-temperature steam, or high-temperature gas, or high temperature heat conductive oil.
Bleeding point and the material inlet valve of described inner casing extend shell, have radiating tube in inner casing.
1, the material inlet valve of inner casing and the bonding position of shell, firm welding air tight.
2, the bleeding point of inner casing is extended out by the heat-conducting medium outlet of shell.
3, the upper and lower correspondence of inner casing has aperture, and the diameter in aperture is the same with the pipe diameter of radiating tube; Aperture on inner casing and the spacing in aperture are 50-200mm.
4, the two ends of radiating tube are inserted in the corresponding aperture of inner casing; Radiating tube and inner casing are welded as a whole, the binding site of radiating tube and inner casing is firmly airtight.
5, the two ends of radiating tube and the inner chamber of asking of shell and inner casing are through ventilative.
6, the pipe of radiating tube and radiating tube is asked apart from being 50-200mm.
Described radiating tube is light pipe, or pipe has fin.
The height of the fin 1, on radiating tube is 5-30mm, and the thickness of fin is 0.5-3mm, and the spacing of fin and fin is 18-50mm.
Not having fin above the pipe of 2, radiating tube, is a light pipe.
The pipe of described radiating tube is the metal tube that both ends open is ventilative.
1, the fin on radiating tube and the combination of pipe are fixed as one.
The connection form of the fin 2, on radiating tube and pipe is longitudinal shape, or around shape.
The utility model has following beneficial effect compared with the dryness storehouse of existing drying plant: a kind of stereoscopic heating type dry vacuum container, high thermal conductance thermal medium enters inner chamber between shell and inner casing and radiating tube is inner, solid heat radiation heating is carried out by inner casing and radiating tube, its inner casing and radiating tube heat radiation when dryness storehouse formed objects space, volume, its area of dissipation adds 10-60 doubly, improve the heating heat-transfer rate of heat energy, strengthen the drying efficiency of material, reach the quick-drying object of material.
Accompanying drawing illustrates:
Fig. 1, structural representation for the utility model stereoscopic heating type dry vacuum container;
Fig. 2, appearance shape figure for the hot stereoscopic heating type dry vacuum container of the utility model.
Detailed description of the invention:
Below in conjunction with drawings and Examples, the utility model is described further.
Embodiment:
A kind of stereoscopic heating type dry vacuum container is as shown in Figure 1 by shell (2), and inner casing (6) and support (8) form.
It is metal bar that the support (8) of described stereoscopic heating type dry vacuum container makes material.
The shell (2) of described stereoscopic heating type dry vacuum container and the making material of inner casing (6) are corrosion resistant plates, and the thickness of corrosion resistant plate is 2mm.
Described shell (2) is in the outside of inner casing (6), and inner casing (6) is in the inside of shell (2).
1, the connection of shell (2) and inner casing (6) is supported fixing by support (8).
2, the inner chamber between shell (2) and inner casing (6) is closed gastight.
3, the spacing between shell (2) and inner casing (6) is 60mm.
4, shell (2) outside adheres to and installs heat-insulation layer additional to be incubated.
Described shell (2) has heat-conducting medium import (7) and heat-conducting medium outlet (4) above.
The heat-conducting medium that the dry heat of described stereoscopic heating type dry vacuum container uses is high temperature heat conductive oil.
Bleeding point (3) and the material inlet valve (1) of described inner casing (6) extend shell (2), and inner casing (6) is inner radiating tube (5).
1, the material inlet valve (1) of inner casing (6) and the bonding position of shell (2) want firm welding air tight.
2, the bleeding point (3) of inner casing (6) is extended out by heat-conducting medium outlet (4) of shell (2).
3, the upper and lower correspondence of inner casing (6) has aperture, and the diameter in aperture is the same with the pipe diameter of radiating tube; Aperture on inner casing (6) and the spacing in aperture are 100mm.
4, the two ends of radiating tube (5) are inserted in the corresponding aperture of inner casing (6); The bonding position of radiating tube (5) and inner casing (6) be welded as a whole, the binding site of radiating tube (5) and inner casing (6) is firmly airtight.
5, the two ends of radiating tube (5) and the inner chamber between shell (2) and inner casing (6) are through ventilative.
6, the radiating tube (5) that inner casing (6) is inner and the tube pitch of radiating tube (5) are 100mm.
The pipe of described radiating tube (5) is the metal tube that both ends open is ventilative; Radiating tube (5) is light pipe, or pipe has fin.
The height of the fin 1, on radiating tube (5) is 20mm, and the thickness of fin is 1mm, and the spacing of fin and fin is 25mm.
2, the fin on radiating tube (5) and the combination of pipe are fixed as one.
3, the fin on radiating tube (5) and the connection form of pipe are around shape.
The face shaping of described three-dimensional heat dissipation type dry vacuum container is as shown in Figure 2 cylindric.
When stereoscopic heating type dry vacuum container carries out dry materials work:
1, after wet stock enters the inside in stereoscopic heating type dry vacuum container storehouse by the material inlet valve (1) of inner casing (6), material inlet valve (1) is closed.
2, high thermal conductance deep fat enters inner chamber between shell (2) and inner casing (6) by heat-conducting medium import (7).
3, stereoscopic heating type dry vacuum container is when carrying out dry materials work, can rotate under the effect of external force.
4, high thermal conductance deep fat is to the inwall of inner casing (6) and radiating tube (5) heating; The inwall of inner casing (6) and radiating tube (5) to dried material to carry out dispelling the heat, heat conduction, heating.
5, the conduction oil after heat radiation discharges shell (2) by heat-conducting medium outlet (8).
6, in inner casing (6), the moisture that dry materials produces, is discharged by bleeding point (3) outside the storehouse of stereoscopic heating type dry vacuum container.
7, the material after drying is discharged after outside the storehouse of stereoscopic heating type dry vacuum container by the discharge valve (1) of inner casing (6), closes discharge valve (1).
Above embodiment just understands preparation method of the present utility model and core concept thereof for helping; concrete enforcement is not limited to above-mentioned concrete embodiment; those skilled in the art is from above-mentioned design; without performing creative labour; done change, all drops on protection domain of the present utility model.
Claims (10)
1. a stereoscopic heating type dry vacuum container, is characterized in that: stereoscopic heating type dry vacuum container is by shell (2), and inner casing (6) and support (8) form;
The face shaping of described stereoscopic heating type dry vacuum container is bipyramid shape, or spherical shape, or cylindric;
Described shell (2) is in the outside of inner casing (6), and inner casing (6) is in the inside of shell (2);
Described shell (2) and the connection of inner casing (6) are supported fixing by support (8);
Described shell (2) has heat-conducting medium import (7) and heat-conducting medium outlet (4) above;
Bleeding point (3) and the material inlet valve (1) of described inner casing (6) extend shell (2), and inner casing (6) is inner radiating tube (5);
The pipe of described radiating tube (5) is the metal tube that both ends open is ventilative; The two ends of radiating tube (5) and the inner chamber between shell (2) and inner casing (6) are through ventilative;
Fin on described radiating tube (5) and the combination of pipe are fixed as one.
2. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the inner chamber between shell (2) and inner casing (6) is closed gastight; Spacing between shell (2) and inner casing (6) is 10-180mm.
3. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: shell (2) outside adheres to and installs heat-insulation layer additional to be incubated.
4. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the material inlet valve (1) of inner casing (6) and the bonding position of shell (2) want firm welding air tight.
5. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the bleeding point (3) of inner casing (6) is extended out by heat-conducting medium outlet (4) of shell (2).
6. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the two ends of radiating tube (5) are inserted in the corresponding aperture of inner casing (6); The bonding position of radiating tube (5) and inner casing (6) be welded as a whole, the binding site of radiating tube (5) and inner casing (6) is firmly airtight.
7. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the tube pitch of the radiating tube (5) that inner casing (6) is inner and radiating tube (5) is 50-200mm.
8. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: radiating tube (5) is light pipe, or pipe has fin.
9. a kind of stereoscopic heating type dry vacuum container according to claim 1, it is characterized in that: the height of the fin on radiating tube (5) is 5-30mm, the thickness of fin is 0.5-3mm, and the spacing of fin and fin is 18-50mm.
10. a kind of stereoscopic heating type dry vacuum container according to claim 1, is characterized in that: the fin on radiating tube (5) and the connection form of pipe are longitudinal shapes, or around shape.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520569932.8U CN204854306U (en) | 2015-07-26 | 2015-07-26 | Three -dimensional hot type vacuum drying storehouse that adds |
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CN201520569932.8U CN204854306U (en) | 2015-07-26 | 2015-07-26 | Three -dimensional hot type vacuum drying storehouse that adds |
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CN204854306U true CN204854306U (en) | 2015-12-09 |
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CN201520569932.8U Expired - Fee Related CN204854306U (en) | 2015-07-26 | 2015-07-26 | Three -dimensional hot type vacuum drying storehouse that adds |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105222577A (en) * | 2015-07-26 | 2016-01-06 | 张海娟 | Stereoscopic heating type dry vacuum container |
CN105403010A (en) * | 2015-12-15 | 2016-03-16 | 张海娟 | Rotary vacuum drying cabin |
CN105444551A (en) * | 2015-12-18 | 2016-03-30 | 张海娟 | Rotary drying storehouse with cooling section |
CN105486047A (en) * | 2015-12-31 | 2016-04-13 | 张海娟 | Cylindrical drier with cooling section |
CN105486070A (en) * | 2015-12-18 | 2016-04-13 | 张海娟 | Drying bin with cooling section |
CN105486053A (en) * | 2015-12-15 | 2016-04-13 | 张海娟 | Heat pipe vacuum drying bin |
CN105509435A (en) * | 2015-12-31 | 2016-04-20 | 张海娟 | Hot air drying machine with cooling section |
-
2015
- 2015-07-26 CN CN201520569932.8U patent/CN204854306U/en not_active Expired - Fee Related
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105222577A (en) * | 2015-07-26 | 2016-01-06 | 张海娟 | Stereoscopic heating type dry vacuum container |
CN105222577B (en) * | 2015-07-26 | 2017-12-05 | 张海娟 | Stereoscopic heating type dry vacuum container |
CN105403010A (en) * | 2015-12-15 | 2016-03-16 | 张海娟 | Rotary vacuum drying cabin |
CN105486053A (en) * | 2015-12-15 | 2016-04-13 | 张海娟 | Heat pipe vacuum drying bin |
CN105444551A (en) * | 2015-12-18 | 2016-03-30 | 张海娟 | Rotary drying storehouse with cooling section |
CN105486070A (en) * | 2015-12-18 | 2016-04-13 | 张海娟 | Drying bin with cooling section |
CN105444551B (en) * | 2015-12-18 | 2018-09-07 | 张海娟 | There is the rotary drying storehouse of cooling section |
CN105486047A (en) * | 2015-12-31 | 2016-04-13 | 张海娟 | Cylindrical drier with cooling section |
CN105509435A (en) * | 2015-12-31 | 2016-04-20 | 张海娟 | Hot air drying machine with cooling section |
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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 | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20151209 Termination date: 20180726 |