CN208526048U - Applied to the cyclone separator in cooling driers - Google Patents
Applied to the cyclone separator in cooling driers Download PDFInfo
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- CN208526048U CN208526048U CN201820618723.1U CN201820618723U CN208526048U CN 208526048 U CN208526048 U CN 208526048U CN 201820618723 U CN201820618723 U CN 201820618723U CN 208526048 U CN208526048 U CN 208526048U
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- cyclone separator
- shell
- cooling driers
- water
- gas outlet
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Abstract
The utility model is provided applied to the cyclone separator in cooling driers, it include shell, vane piece and water fender, the hull outside is provided with air inlet, gas outlet is provided with above the shell, discharge outlet is provided with below the shell, the enclosure interior is provided with cyclone separator, vane piece is provided with above the cyclone separator, water fender is provided with below the cyclone separator, top connects gas outlet in the cyclone separator, the utility model has the beneficial effects that the water rem oval of cooling driers is improved.
Description
Technical field
The utility model relates to cooling driers, more particularly to applied to the cyclone separator in cooling driers.
Background technique
Currently, cooling driers carry out heat exchange using refrigerant and compressed air, compressed air temperature is dropped to 2~10 DEG C of ranges
Dew-point temperature, be easy to make gas to generate moisture when compressed air temperature is cooled down.
The secondary bifurcation structure of traditional cooling driers is generally all fairly simple, and de-water ratio is not generally high, and excess moisture is be easy to cause
The finished product gas of cooling driers has the phenomenon that water.
Utility model content
To solve problem described above, the existing cooling driers water rem oval of the utility model effective solution is lower
Problem.
In conjunction with problem described above, the utility model is provided applied to the cyclone separator in cooling driers, includes
Shell, vane piece and water fender, the hull outside are provided with air inlet, are provided with gas outlet, the shell above the shell
Discharge outlet is provided with below body, the enclosure interior is provided with cyclone separator, is provided with vane above the cyclone separator
Piece, the cyclone separator lower section are provided with water fender, and top connects gas outlet in the cyclone separator.
Further, the air inlet connects evaporator.
Further, the housing bottom is provided with water trap, and the discharge outlet connects water trap.
Further, the cyclone separator connects cooling driers.
Further, top by pipeline connects gas outlet in the cyclone separator.
The utility model has the beneficial effects that the oversaturated compressed gas of low temperature via evaporator enters shell from air inlet
Body does centrifugal movement in the cavity of shell via cyclone leaf gas, and the liquid water of the overwhelming majority is thrown away attachment housing wall down
Stream, operative liquid water are adhered to by the interception twice of water fender and are removed, and liquid water, which converges at housing bottom, has water trap that shell is discharged
In vitro, the gas for obtaining low temperature drying is discharged effectively to improve the water rem oval of cooling driers by gas outlet.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model.
Fig. 2 is the shell perspective view of the utility model.
Fig. 3 is the shell main view of the utility model.
Fig. 4 is the shell right view of the utility model.
Fig. 5 is the perspective view of the cyclone separator of the utility model.
Fig. 6 is the main view of the cyclone separator of the utility model.
In conjunction with shown in mark of the Fig. 1 to Fig. 6: shell 1, water fender 3, cyclone separator 4, air inlet 11, goes out vane piece 2
Port 12, exhaust outlet 13.
Specific embodiment
It include shell 1, vane piece 2 and water fender 3 applied to the cyclone separator in cooling driers referring to figs. 1 to Fig. 6,
It is provided with air inlet 11 outside shell 1, gas outlet 12 is provided with above shell 1, discharge outlet 13, shell 1 are provided with below shell 1
It is internally provided with cyclone separator 4, vane piece 2 is provided with above cyclone separator 4, is provided with water blocking below cyclone separator 4
Plate 3, top connects gas outlet 12 in cyclone separator 4, as described above, being effectively mainly according to the cyclonic separation in cooling driers
It is made of shell 1, vane piece 2 and 3 three parts of water fender, via the oversaturated compressed gas of the low temperature of evaporator from air inlet 11
Centrifugal movement is done in the cavity of shell 1 via 2 gas of cyclone leaf into shell 1, the liquid water of the overwhelming majority is thrown away into attachment
1 wall of shell is toward flowing down, and operative liquid water is adhered to by the interception twice of water fender 3 and removed, and liquid water, which converges at 1 bottom of shell, to be had
Water trap 14 is discharged outside shell 1, and the gas for obtaining low temperature drying is discharged by gas outlet 12.
Air inlet 11 connects evaporator, as described above, effectively entering the oversaturated compressed gas of the low temperature of evaporator
Cyclonic separation is carried out in shell 1.
1 bottom of shell is provided with water trap, and discharge outlet 13 connects water trap, as described above, effectively passing through water trap 14
The moisture that water fender 3 intercepts twice in discharge shell 1, is discharged by discharge outlet 13.
Cyclone separator 4 connects cooling driers and utilizes rotation as described above, effectively saying that cyclone separator 4 is connected to cooling driers
The de-water ratio of the increase cooling driers of wind separator 4.
Top connects gas outlet 12 by pipeline in cyclone separator 4, as described above, effectively according to cyclone separator 4
The gas that low temperature drying is obtained after water removal carries out gas discharge by gas outlet 12.
The utility model has the beneficial effects that the oversaturated compressed gas of low temperature via evaporator enters from air inlet 11
Shell 1 does centrifugal movement in the cavity of shell 1 via 2 gas of cyclone leaf, and the liquid water of the overwhelming majority is thrown away attachment shell
Wall is toward flowing down, and operative liquid water is adhered to by the interception twice of water fender 3 and removed, and liquid water, which converges at 1 bottom of shell, draining
Device 14 is discharged outside shell 1, and the gas for obtaining low temperature drying is discharged effectively to improve the water removal effect of cooling driers by gas outlet 12
Rate.
Claims (5)
- It include shell (1), vane piece (2) and water fender (3), feature exists 1. being applied to the cyclone separator in cooling driers In: it is provided with air inlet (11) outside the shell (1), is provided with gas outlet (12), the shell above the shell (1) (1) lower section is provided with discharge outlet (13), and the shell (1) is internally provided with cyclone separator (4), the cyclone separator (4) Top is provided with vane piece (2), is provided with water fender (3) below the cyclone separator (4), in the cyclone separator (4) Top connects gas outlet (12).
- 2. being applied to the cyclone separator in cooling driers according to claim 1, it is characterised in that: the air inlet (11) is even Connect evaporator.
- 3. being applied to the cyclone separator in cooling driers according to claim 1, it is characterised in that: shell (1) bottom It is provided with water trap, the discharge outlet (13) connects water trap.
- 4. being applied to the cyclone separator in cooling driers according to claim 1, it is characterised in that: the cyclone separator (4) cooling driers are connected.
- 5. being applied to the cyclone separator in cooling driers according to claim 1, it is characterised in that: the cyclone separator (4) top connects gas outlet (12) by pipeline in.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820618723.1U CN208526048U (en) | 2018-04-27 | 2018-04-27 | Applied to the cyclone separator in cooling driers |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820618723.1U CN208526048U (en) | 2018-04-27 | 2018-04-27 | Applied to the cyclone separator in cooling driers |
Publications (1)
Publication Number | Publication Date |
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CN208526048U true CN208526048U (en) | 2019-02-22 |
Family
ID=65396254
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201820618723.1U Active CN208526048U (en) | 2018-04-27 | 2018-04-27 | Applied to the cyclone separator in cooling driers |
Country Status (1)
Country | Link |
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CN (1) | CN208526048U (en) |
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2018
- 2018-04-27 CN CN201820618723.1U patent/CN208526048U/en active Active
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