CN206450054U - A kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device - Google Patents
A kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device Download PDFInfo
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- CN206450054U CN206450054U CN201720056783.4U CN201720056783U CN206450054U CN 206450054 U CN206450054 U CN 206450054U CN 201720056783 U CN201720056783 U CN 201720056783U CN 206450054 U CN206450054 U CN 206450054U
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Abstract
It is air-dried the utility model discloses a kind of production of hollow glass micropearl and uses circulating silica gel drying device, including casing, air-heater, material storing box and controller, the material storing box is arranged on bottom half side, the material storing box is internally provided with moisture detection probe, screw elevator is installed on the material storing box, the box house is stretched into above the screw elevator, discharging opening side-lower positioned at the screw elevator is provided with delivery sheet, the delivery sheet side-lower is provided with the air-heater, gas blow pipe is uniformly installed at the air outlet of the air-heater, filter is installed in the middle part of the casing, no fan blade blower is provided with above the filter, it is described that fan blade blower top is provided with silicagel column.Beneficial effect is:Circulation drying can be carried out to hollow glass micropearl, and dust suction dehumidifying is carried out to humid air, then hollow glass micropearl will be dried in the air feeding casing of dried and clean, it is ensured that dries quantity.
Description
Technical field
The utility model is related to hollow glass micropearl production field, and in particular to a kind of hollow glass micropearl production air is done
It is dry to use circulating silica gel drying device.
Background technology
Hollow glass micropearl, due to the particularity of its composition, easily adsorbs the moisture in air in production, therefore in life
Need that repeatedly it is dried during production, traditional drying machine only can carry out single drying to hollow glass micropearl, it is impossible to ensure dry
The drying effect of dry rear hollow glass micropearl.
Utility model content
The purpose of this utility model, which is that, provides a kind of hollow glass micropearl production air in order to solve the above problems
Circulating silica gel drying device is used in drying.
The utility model is achieved through the following technical solutions above-mentioned purpose:
A kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device, including casing, air-heater, storing
Case and controller, the material storing box are arranged on bottom half side, and the material storing box is internally provided with moisture detection probe,
It is provided with the material storing box above screw elevator, the screw elevator and stretches into the box house, positioned at the spiral
The discharging opening side-lower of elevator is provided with delivery sheet, and the delivery sheet side-lower is provided with the air-heater, the air-heater
Air outlet at gas blow pipe is uniformly installed, be provided with the middle part of the casing above filter, the filter and be provided with no fan
Leaf blower fan, described without silicagel column is provided with above fan blade blower, the silicagel column side is provided with electric rotating machine, the electric rotating
The controller is provided with below machine, the casing top is provided with appendix, and the gas transmission bottom of the tube leads to the air-heater
Air inlet.
In said structure, hollow glass micropearl is sent into the delivery sheet by the screw elevator, and hollow glass micropearl exists
During falling on the delivery sheet, hot blast is blowed to its surface by the air-heater, moisture is together increased with air, described
Under collective effect without fan blade blower, after malaria first carries out dust adsorption through the filter, liter is continued up, then pass through
The silicagel column rotated is crossed, the moisture in air is absorbed, dry air is discharged into institute again through the appendix
Air-heater is stated, the hollow glass micropearl fallen into through the delivery sheet in the material storing box is fed again into the delivery sheet and done
It is dry, until the humidity value that the moisture detection probe is detected reaches after setup parameter that device is stopped, now it can be taken off hollow
Glass microballoon.
In order to further improve the use function of silica gel drying device, the moisture detection probe and the screw elevator
Electrically connected with the controller, the material storing box is enclosed construction.
In order to further improve the use function of silica gel drying device, the delivery sheet is mesh screen plate, is inclined at institute
State box house, slope angle stretches to the material storing box, slope top is positioned at the discharge outlet of the screw elevator, and the delivery sheet
Upper surface is waveform.
In order to further improve the use function of silica gel drying device, the gas blow pipe is perpendicular to the delivery sheet bottom.
In order to further improve the use function of silica gel drying device, the filter is air cleaner.
In order to further improve the use function of silica gel drying device, described is air inducing blower fan without fan blade blower.
In order to further improve the use function of silica gel drying device, the cylindrical outer cover of the silicagel column is net surface structure,
Size of mesh opening is less than silica gel particle size.
Guidance panel is installed before the use function of silica gel drying device, the controller in order to further improve.
Beneficial effect is:Circulation drying can be carried out to hollow glass micropearl, and dust suction dehumidifying is carried out to humid air, then
Hollow glass micropearl will be dried in the air feeding casing of dried and clean, it is ensured that dries quantity.
Brief description of the drawings
Fig. 1 is that a kind of hollow glass micropearl production described in the utility model is air-dried and uses circulating silica gel drying device
Front view.
Description of reference numerals is as follows:
1st, casing;2nd, air-heater;3rd, gas blow pipe;4th, appendix;5th, filter;6th, without fan blade blower;7th, silicagel column;8th, revolve
Rotating motor;9th, controller;10th, delivery sheet;11st, screw elevator;12nd, material storing box;13rd, moisture detection probe.
Embodiment
The utility model is described in further detail below in conjunction with the accompanying drawings:
As shown in figure 1, a kind of hollow glass micropearl production is air-dried and uses circulating silica gel drying device, including casing 1,
Air-heater 2, material storing box 12 and controller 9, material storing box 12 are arranged on the bottom sides of casing 1, and material storing box 12 is internally provided with humidity
Screw elevator 11 is installed, the top of screw elevator 11 is stretched into inside casing 1, positioned at spiral shell on detection probe 13, material storing box 12
The discharging opening side-lower of rotation elevator 11 is provided with delivery sheet 10, and delivery sheet 10 is used to make hollow glass micropearl receive air-heater 2
Drying process, while making treated hollow glass micropearl fall into material storing box 12, the side-lower of delivery sheet 10 is provided with air-heater
2, gas blow pipe 3 is uniformly installed, the middle part of casing 1 is provided with filter 5, and the top of filter 5 is provided with the air outlet of air-heater 2
Without fan blade blower 6, no fan blade blower 6 is used to upwards take out the humid air of bottom, and no top of fan blade blower 6 is provided with silicagel column
7, the side of silicagel column 7 is provided with electric rotating machine 8, and electric rotating machine 8 is used to drive silicagel column 7 to rotate, it is to avoid silicagel column 7 is unilateral to be inhaled
Water, the lower section of electric rotating machine 8 is provided with controller 9, and controller 9 is normally run for control device, and the top of casing 1 is provided with gas transmission
The air inlet of air-heater 2 is led in pipe 4, the bottom of appendix 4.
In said structure, hollow glass micropearl is sent into delivery sheet 10 by screw elevator 11, and hollow glass micropearl is in feeding
During falling on plate 10, hot blast is blowed to its surface by air-heater 2, moisture is together increased with air, without fan blade blower 6
Under collective effect, malaria first passes through filter 5 and carried out after dust adsorption, continues up liter, then the silicagel column by rotating
7, the moisture in air is absorbed, dry air is discharged into air-heater 2 again through appendix 4, is fallen into through delivery sheet 10
Hollow glass micropearl in material storing box 12 is fed again into delivery sheet 10 and is dried, until the detection of moisture detection probe 13 is wet
Angle value reaches after setup parameter that device is stopped, and now can be taken off hollow glass micropearl.
In order to further improve the use function of silica gel drying device, moisture detection probe 13 and screw elevator 11 with
Controller 9 is electrically connected, and material storing box 12 is enclosed construction, and delivery sheet 10 is mesh screen plate, is inclined inside casing 1, slope angle
Material storing box 12 is stretched to, slope top is located at the discharge outlet of screw elevator 11, and the upper surface of delivery sheet 10 is waveform, gas blow pipe
3 perpendicular to the bottom of delivery sheet 10, and filter 5 is air cleaner, and no fan blade blower 6 is outside air inducing blower fan, the cylindricality of silicagel column 7
Shell is net surface structure, and size of mesh opening is less than silica gel particle size, and controller 9 is above provided with guidance panel.
General principle of the present utility model, principal character and advantage has been shown and described above.The technical staff of the industry
It should be appreciated that the utility model is not restricted to the described embodiments, the simply explanation described in above-described embodiment and specification is originally
The principle of utility model, on the premise of the utility model spirit and scope are not departed from, the utility model also has various change
And improvement, these changes and improvements are both fallen within the range of claimed the utility model.Scope is claimed in the utility model
Defined by appended claims and its effect thing.
Claims (8)
1. a kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device, it is characterised in that:Including casing, heat
Blower fan, material storing box and controller, the material storing box are arranged on bottom half side, and the material storing box is internally provided with humidity
It is provided with detection probe, the material storing box above screw elevator, the screw elevator and stretches into the box house, is located at
The discharging opening side-lower of the screw elevator is provided with delivery sheet, and the delivery sheet side-lower is provided with the air-heater, institute
State and gas blow pipe is uniformly installed at the air outlet of air-heater, be provided with above filter, the filter and set in the middle part of the casing
No fan blade blower is equipped with, described without silicagel column is provided with above fan blade blower, the silicagel column side is provided with electric rotating machine, institute
State and be provided with the controller below electric rotating machine, the casing top is provided with appendix, and the gas transmission bottom of the tube leads to institute
State the air inlet of air-heater.
2. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:The moisture detection probe and the screw elevator are electrically connected with the controller, and the material storing box is envelope
Closed type structure.
3. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:The delivery sheet is mesh screen plate, is inclined at the box house, and slope angle stretches to the material storing box, slope top position
In the discharge outlet of the screw elevator, and the upper surface of the delivery sheet is waveform.
4. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:The gas blow pipe is perpendicular to the delivery sheet bottom.
5. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:The filter is air cleaner.
6. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:Described is air inducing blower fan without fan blade blower.
7. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:The cylindrical outer cover of the silicagel column is net surface structure, and size of mesh opening is less than silica gel particle size.
8. a kind of hollow glass micropearl production according to claim 1, which is air-dried, uses circulating silica gel drying device, its
It is characterised by:Guidance panel is installed before the controller.
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CN201720056783.4U CN206450054U (en) | 2017-01-17 | 2017-01-17 | A kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device |
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CN201720056783.4U CN206450054U (en) | 2017-01-17 | 2017-01-17 | A kind of hollow glass micropearl production, which is air-dried, uses circulating silica gel drying device |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108168270A (en) * | 2017-12-26 | 2018-06-15 | 新昌县江北轴承有限公司 | A kind of clear post-washing fast-drying device of bearing roller |
CN111426152A (en) * | 2020-04-16 | 2020-07-17 | 宿州市正辰环保科技有限公司 | Device for separating landfill leachate |
CN111981828A (en) * | 2020-07-14 | 2020-11-24 | 安徽宜安精密机械零部件有限公司 | Environment-friendly tectorial membrane sand core sand clay sand quick drying device |
CN112044761A (en) * | 2020-08-07 | 2020-12-08 | 湖北京山群健米业有限公司 | Rice processing is with preventing piling up stirring drying device |
-
2017
- 2017-01-17 CN CN201720056783.4U patent/CN206450054U/en active Active
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108168270A (en) * | 2017-12-26 | 2018-06-15 | 新昌县江北轴承有限公司 | A kind of clear post-washing fast-drying device of bearing roller |
CN111426152A (en) * | 2020-04-16 | 2020-07-17 | 宿州市正辰环保科技有限公司 | Device for separating landfill leachate |
CN111426152B (en) * | 2020-04-16 | 2022-05-10 | 湖南迪亚环境工程有限公司 | Device for separating landfill leachate |
CN111981828A (en) * | 2020-07-14 | 2020-11-24 | 安徽宜安精密机械零部件有限公司 | Environment-friendly tectorial membrane sand core sand clay sand quick drying device |
CN112044761A (en) * | 2020-08-07 | 2020-12-08 | 湖北京山群健米业有限公司 | Rice processing is with preventing piling up stirring drying device |
CN112044761B (en) * | 2020-08-07 | 2021-11-30 | 湖北共发米业有限公司 | Rice processing is with preventing piling up stirring drying device |
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