CN201735258U - Intelligent anti-shedding device of surface fiber of inner cavity of melt-blown filter core - Google Patents
Intelligent anti-shedding device of surface fiber of inner cavity of melt-blown filter core Download PDFInfo
- Publication number
- CN201735258U CN201735258U CN2010202511333U CN201020251133U CN201735258U CN 201735258 U CN201735258 U CN 201735258U CN 2010202511333 U CN2010202511333 U CN 2010202511333U CN 201020251133 U CN201020251133 U CN 201020251133U CN 201735258 U CN201735258 U CN 201735258U
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- China
- Prior art keywords
- intelligent anti
- surface fiber
- melt
- filter element
- cavity surface
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Abstract
The utility model provides an intelligent anti-shedding device of surface fiber of an inner cavity of a melt-blown filter core, which comprises a base and an electric heating rod, wherein one end of the electric heating rod is fixed on the base, the other end of the electric heating rod is used for sleeving the inner cavity of the melt-blown filter core, one end of the electric heating rod fixed on the base is also connected with a heating device, the heating device can transfer heat to the electric heating rod, and the heating device is also connected with a temperature control device used for controlling the heating temperature of the heating device. The utility model has the advantages that the design is ingenious, the structure is rational, the heat radiation technology can play a good role of preventing fiber shedding, and the device has significance on promotion.
Description
Technical field
The utility model relates to a kind of intelligent anti-dropping device of cavity surface fiber of meltblown filter element, belongs to purification technology field.
Background technology
The melt-blown filter of prior art can be used for multiple sewage purification and filters the place, is generally made by polypropylene, is one to have the cylinder of through-lumen.Because filter core is that melt blown technology makes, so exposing of its outer surface and inner chamber can produce some fibre inevitably.Wherein, the fiber of melt-blown filter outer surface only needs the press pressing to get final product, but does not also have device can flatten the fiber of melt-blown filter inner chamber at present.Like this, for the melt-blown filter of filtration from outside to inside, the surface of internal cavity fiber that comes off can produce a secondary pollution to the filtered fluid of needs.
The utility model content
The purpose of this utility model is to solve above-mentioned technical problem, and a kind of device that is used to prevent the cavity surface fiber of meltblown filter element anticreep is provided.
The purpose of this utility model is achieved through the following technical solutions:
A kind of cavity surface fiber of meltblown filter element intelligent anti-dropping device, comprise a pedestal and an electrical bar, one end of described electrical bar is fixed on the described pedestal, the other end is used for the inner chamber of the described melt-blown filter of socket, a described end that is fixed on the electrical bar on the pedestal also is connected with a heater, described heater can be passed to heat described electrical bar, also is connected with a temperature controller that is used to control described heater heating-up temperature on the described heater.
Further, described electrical bar has a hot-air channel that runs through its axis, and a described hot-air channel and a heated air source link, and also is provided with one group of through hole on the periphery of described electrical bar, and described all through holes all link with described hot-air channel.
Further, described heated air source is arranged in the described heater, and described temperature controller can be controlled the temperature of the hot-air that described heater produces.
Further, the temperature of described hot-air is 150 ℃-250 ℃.
Further, the bilateral symmetry of described electrical bar is provided with a support stick that is used to support melt-blown filter, and described support stick pivot is arranged on the described pedestal.
Further, the other end pivot of described support stick passes the pivot hole of a riser, with so that described support stick pivot be arranged on the described riser.
Further, described device also comprises a base plate, and described base plate is provided with an elongated slot, and described riser is arranged in the described elongated slot movably.
Further, described pedestal is provided with one and teases and ridicule knothole, and the spacing of two adjustment holes of described symmetry is corresponding with the diameter of described melt-blown filter, and described support stick selectively is inserted in any one adjustment hole.
The beneficial effects of the utility model are mainly reflected in: design ingeniously, rational in infrastructure, adopt the heat radiation technology can play the effect that prevents fibre shedding well, be with the promotion of good sense.
Description of drawings
Below in conjunction with accompanying drawing technical solutions of the utility model are described further:
Fig. 1: the structural representation of the preferred embodiment of the utility model cavity surface fiber of meltblown filter element intelligent anti-dropping device.
Wherein:
1 pedestal, 2 electrical bars, 3 heaters
4 temperature controllers, 5 support sticks, 6 adjustment holes
7 base plates, 8 risers, 9 elongated slots
10 pivot holes, 11 hot-air channels, 12 through holes
13 melt-blown filters, 14 inner chambers
The specific embodiment
As shown in Figure 1, adopt polypropylene, and have an inner chamber 14, often have a polypropylene fibre on the inner surface of inner chamber 14 and come off by the melt-blown filter 13 that melt blown technology makes as raw material.The utility model has disclosed a kind of intelligent apparatus that makes the inner chamber 14 surface fiber anticreeps of described melt-blown filter 13.
In this preferred embodiment, this device comprises a pedestal 1 and an electrical bar 2, and an end of described electrical bar 2 is fixed on the described pedestal 1, and the other end can be used for the inner chamber 14 of the described melt-blown filter 13 of socket.
A described end that is fixed on the electrical bar 2 on the pedestal 1 also is connected with a heater 3, described heater 3 can be passed to heat described electrical bar 2, also is connected with a temperature controller 4 that is used to control described heater 3 heating-up temperatures on the described heater 3.Described heater and temperature controller all are the prior aries of moulding, therefore do not repeat them here.
Described device also is provided with a base plate 7 and perpendicular to two risers 8 of described base plate 7, described base plate 7 is provided with an elongated slot 9 at the opposite position of pedestal 1, and described riser 8 is arranged in the described elongated slot 9 movably.
The bilateral symmetry of described electrical bar 2 is provided with a support stick 5 that is used to support melt-blown filter 13, one end pivoting of described support stick 5 is arranged on the described pedestal 1, the other end pivot of described support stick 5 passes the pivot hole 10 of described riser 8, with so that described support stick 5 same pivots be arranged on the described riser 8.Like this, when melt-blown filter 13 rotates, also can drive described support stick 5 and rotate simultaneously.
Described pedestal 1 is provided with one and teases and ridicule knothole 6, and the spacing of two adjustment holes 6 of described symmetry is corresponding with the diameter of described melt-blown filter 13, and described support stick 5 selectively is inserted in any one adjustment hole 6.
Further, described electrical bar 2 also has a hot-air channel 11 that runs through its axis, is a through hole in this example.A described hot-air channel 11 and a heated air source link, and also are provided with one group of through hole 12 on the periphery of described electrical bar 2, and described all through holes 12 all link with described hot-air channel 11.In this preferred embodiment, described heated air source is arranged in the described heater 3, and the temperature that described temperature controller 4 can be controlled the hot-air that described heater 3 produced is 150 ℃-250 ℃.
After a melt-blown filter 13 makes, the end of its inner chamber 14 from electrical bar is inserted in, the heat that distributes of electrical bar can so just can prevent that filamentary fibers from coming off with the fiber thermosetting on inner chamber 14 surfaces like this.When heat is not enough, can also start heated air source, hot-air sheds from through hole 12, so just can further accelerate thermosetting.
Another advantage of the utility model is that support stick 5 can be regulated.When the inner chamber of the melt-blown filter 13 that is used for the thermosetting different model, can regulate the spacing between the support stick 5, so just can be successfully the melt-blown filter 13 of each model be carried out surface of internal cavity fiber anticreep and solidify.During adjusting, mobile riser 8 in elongated slot 9 is inserted the other end of support stick 5 in the adjustment hole 6 accordingly, and after adjusting finished, available bolt was fixed in riser 8 on the described base plate 7.
The utility model still has multiple concrete embodiment, and all employings are equal to replacement or equivalent transformation and all technical schemes of forming, all drop within the claimed scope of the utility model.
Claims (8)
1. cavity surface fiber of meltblown filter element intelligent anti-dropping device, it is characterized in that: comprise a pedestal and an electrical bar, one end of described electrical bar is fixed on the described pedestal, the other end is used for the inner chamber of the described melt-blown filter of socket, a described end that is fixed on the electrical bar on the pedestal also is connected with a heater, described heater can be passed to heat described electrical bar, also is connected with a temperature controller that is used to control described heater heating-up temperature on the described heater.
2. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 1, it is characterized in that: described electrical bar has a hot-air channel that runs through its axis, a described hot-air channel and a heated air source link, also be provided with one group of through hole on the periphery of described electrical bar, described all through holes all link with described hot-air channel.
3. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 2 is characterized in that: described heated air source is arranged in the described heater, and described temperature controller can be controlled the temperature of the hot-air that described heater produces.
4. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 3 is characterized in that: the temperature of described hot-air is 150 ℃-250 ℃.
5. according to described any one cavity surface fiber of meltblown filter element intelligent anti-dropping device of claim 1 to 4, it is characterized in that: the bilateral symmetry of described electrical bar is provided with a support stick that is used to support melt-blown filter, and described support stick pivot is arranged on the described pedestal.
6. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 5 is characterized in that: the other end pivot of described support stick passes the pivot hole of a riser, with so that described support stick pivot be arranged on the described riser.
7. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 6 is characterized in that: described device also comprises a base plate, and described base plate is provided with an elongated slot, and described riser is arranged in the described elongated slot movably.
8. cavity surface fiber of meltblown filter element intelligent anti-dropping device according to claim 7, it is characterized in that: described pedestal is provided with one and teases and ridicule knothole, the spacing of two adjustment holes of described symmetry is corresponding with the diameter of described melt-blown filter, and described support stick selectively is inserted in any one adjustment hole.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010202511333U CN201735258U (en) | 2010-06-30 | 2010-06-30 | Intelligent anti-shedding device of surface fiber of inner cavity of melt-blown filter core |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010202511333U CN201735258U (en) | 2010-06-30 | 2010-06-30 | Intelligent anti-shedding device of surface fiber of inner cavity of melt-blown filter core |
Publications (1)
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CN201735258U true CN201735258U (en) | 2011-02-09 |
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CN2010202511333U Expired - Lifetime CN201735258U (en) | 2010-06-30 | 2010-06-30 | Intelligent anti-shedding device of surface fiber of inner cavity of melt-blown filter core |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101905100A (en) * | 2010-06-30 | 2010-12-08 | 苏州工业园区拓朴环保净化有限公司 | Intelligent anti-dropping device for cavity surface fiber of meltblown filter element |
-
2010
- 2010-06-30 CN CN2010202511333U patent/CN201735258U/en not_active Expired - Lifetime
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101905100A (en) * | 2010-06-30 | 2010-12-08 | 苏州工业园区拓朴环保净化有限公司 | Intelligent anti-dropping device for cavity surface fiber of meltblown filter element |
CN101905100B (en) * | 2010-06-30 | 2012-12-12 | 苏州工业园区拓朴环保净化有限公司 | Intelligent anti-dropping device for cavity surface fiber of meltblown filter element |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20110209 Effective date of abandoning: 20130227 |
|
RGAV | Abandon patent right to avoid regrant |