CN213253405U - Glass fiber wire drawing machine impregnating compound recovery unit - Google Patents

Glass fiber wire drawing machine impregnating compound recovery unit Download PDF

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Publication number
CN213253405U
CN213253405U CN202021881253.1U CN202021881253U CN213253405U CN 213253405 U CN213253405 U CN 213253405U CN 202021881253 U CN202021881253 U CN 202021881253U CN 213253405 U CN213253405 U CN 213253405U
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recovery
filter screen
centrifugal device
grid plate
glass fiber
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CN202021881253.1U
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范兴会
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Wuhe Yongxing Composite Material Co ltd
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Wuhe Yongxing Composite Material Co ltd
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Abstract

The utility model provides a glass fiber wire drawing machine treating compound recovery unit, which comprises a filter box. The upper part of the filter box is provided with a recovery port, a grid plate is transversely arranged in the filter box, and the grid plate extends out of the filter box and is connected with a vibration motor; a recovery cylinder is arranged below the grid plate, and the bottom of the recovery cylinder is communicated with a plurality of recovery devices; the recovery device comprises a shell, a centrifugal device, a liquid inlet valve and a slag discharging valve, wherein the centrifugal device, the liquid inlet valve and the slag discharging valve are arranged in the shell; the outer wall of the centrifugal device is of a hollow structure, and the outer side of the centrifugal device is also provided with a first filter screen and a second filter screen which surround the outer wall of the whole centrifugal device; the upper end and the lower end of the centrifugal device are respectively provided with an input pipeline and an output pipeline, and the input pipeline is communicated with the bottom of the recovery cylinder; the outlet of the output pipeline is connected with a collecting box; two sides of the lower end of the shell are provided with liquid recovery pipelines; the bottom of the filter box is positioned below the recovery device. This is novel through centrifugal process, and the waste liquid velocity of flow accelerates, has shortened waste liquid recovery's time, has improved waste liquid recovery's efficiency.

Description

Glass fiber wire drawing machine impregnating compound recovery unit
Technical Field
The utility model belongs to the technical field of the glass fiber processing, specifically a glass fiber wire drawing machine treating compound recovery unit.
Background
The glass fiber sizing agent can effectively bond fiber monofilaments into protofilaments and avoid bonding among strands in the unwinding process; protection of the strands against abrasion during the various stages of manufacture of the fiber (e.g. winding, spinning, etc.); the compatibility and adhesion between the fiber and the resin substrate are improved. Which plays an important role in the processing of glass fibers.
At present, the waste liquid that produces in the glass fiber soaks the in-process contains many solid particle waste materials, adopts chemistry or biological method processing waste liquid usually, adopts physical adsorption's method to retrieve the waste liquid mostly among the prior art, but at the in-process of handling, it is too big to filter the remaining solid water content of back to the waste liquid, has increaseed subsequent solid processing's work load, and ordinary filtration only relies on the waste liquid to realize filtering under the action of gravity, and filter speed is slow, and the effect is not good.
SUMMERY OF THE UTILITY MODEL
Problem to current technical scheme existence, the utility model aims to provide a glass fiber wire drawing machine infiltrant recovery unit.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides a glass fiber wire drawing machine treating compound recovery unit for to the centrifugation recovery of glass fiber wire drawing machine treating compound, it includes:
the upper part of the filter box is provided with a recovery port;
a grid plate is transversely arranged in the filter box, and the grid plate extends out of the filter box and is connected with a vibration motor; a recovery cylinder is arranged below the grid plate, and the bottom of the recovery cylinder is communicated with a plurality of recovery devices; the recovery device comprises a shell, a centrifugal device, a liquid inlet valve and a slag discharging valve, wherein the centrifugal device, the liquid inlet valve and the slag discharging valve are arranged in the shell; the outer wall of the centrifugal device is of a hollow structure, a first filter screen and a second filter screen are further arranged on the outer side of the outer wall of the centrifugal device, and the first filter screen and the second filter screen are detachably mounted on the outer wall of the centrifugal device and surround the outer wall of the whole centrifugal device; the upper end and the lower end of the centrifugal device are respectively provided with an input pipeline and an output pipeline, and the input pipeline is communicated with the bottom of the recovery cylinder; the liquid inlet valve is fixed at the outlet of the input pipeline in a sealing way, and the slag discharge valve is fixed at the inlet of the output pipeline in a sealing way; the outlet of the output pipeline is connected with a collecting box; liquid recovery pipelines are arranged on two sides of the lower end of the shell, and when entering a centrifugal device for centrifugal filtration, the impregnating compound enters the liquid recovery pipelines on two sides after passing through a first filter screen and a second filter screen;
the bottom of the filter box is positioned below the recovery device.
Furthermore, a layer of third filter screen is arranged between the recovery device and the liquid outlet pipe.
Furthermore, a row of dripping pipes are arranged below the third filter screen.
Further, the grid plate is positioned below the recovery port, the grid plate is in the shape of a long strip plate with an arc-shaped side face, and the inclination angle is 15-25 degrees.
Furthermore, a valve is arranged on the liquid outlet pipe.
Compared with the prior art, the beneficial effects of the utility model are that: 1. this is novel when filtering the recovery, and grid plate's shape is a side for curved rectangular panel, and grid plate becomes the oblique angle and is fixed in the rose box, is favorable to increasing grid plate's filter area, also is favorable to making the solid particle filter residue pile up in the concave part of grid plate when vibrating motor vibrates, is convenient for filter out large granule solid.
2. Carry out centrifugal treatment to the waste liquid through designing recovery unit, the infiltration liquid that the centrifugation was accomplished reaches the standard of retrieving the secondary and using after two-layer filter net filters, and partial small particle impurity does not fall into the collection box after centrifugal filtration by the filtration of grid plate, and through the centrifugation process, the waste liquid velocity of flow accelerates, has shortened the time that the waste liquid was retrieved, has improved the efficiency that the waste liquid was retrieved.
Drawings
The present invention will be further explained with reference to the accompanying drawings.
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the recycling device of the present invention.
The figure is marked with: 1-a filter box, 2-a grid plate, 3-a recovery port, 4-a vibration motor, 5-a recovery cylinder, 6-a recovery device, 7-a third filter screen, 71-a dripping pipe, 8-a liquid outlet pipe, 81-a valve, 61-a shell, 62-a centrifugal device, 63-a liquid inlet valve, 64-a residue discharge valve, 65-a first filter screen, 66-a second filter screen, 67-an output pipeline, 68-a collection box and 69-a liquid recovery pipeline.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the embodiments of the present invention and the accompanying drawings, and obviously, the described embodiments are some, not all, of the embodiments of the present invention.
As shown in fig. 1-2, the recovery device for an impregnating compound of a glass fiber drawing machine of the present embodiment is used for centrifugally recovering an impregnating compound of a glass fiber drawing machine, and includes a filter box 1, wherein a recovery port 3 is formed at an upper portion of the filter box 1; the bottom of the filter box 1 is provided with a liquid outlet pipe 8; the liquid outlet pipe 8 is provided with a valve 81.
A grid plate 2 is transversely arranged in the filter box 1, the grid plate 2 is positioned below the recovery port 3, the grid plate 2 is a long strip plate with an arc-shaped side face, and the inclination angle is 15-25 degrees. The grid plate 2 extends out of the filter box 1 and is connected with a vibration motor 4; a recovery cylinder 5 is arranged below the grid plate 2, and the bottom of the recovery cylinder 5 is communicated with a plurality of recovery devices 6; the recovery device 6 comprises a shell 61, a centrifugal device 62, a liquid inlet valve 63 and a slag discharging valve 64 which are arranged in the shell 61; the outer wall of the centrifugal device 62 is of a hollow structure, a first filter screen 65 and a second filter screen 66 are further arranged on the outer side of the outer wall of the centrifugal device 62, and the first filter screen 65 and the second filter screen 66 are detachably mounted on the outer wall of the centrifugal device 62 and surround the outer wall of the whole centrifugal device 62; the upper end and the lower end of the centrifugal device 62 are respectively provided with an input pipeline 60 and an output pipeline 67, and the input pipeline 60 is communicated with the bottom of the recovery cylinder 5; the liquid inlet valve 63 is hermetically fixed at the outlet of the input pipeline 60, and the slag discharge valve 64 is hermetically fixed at the inlet of the output pipeline 67; the outlet of the output duct 67 is connected to a collecting box 68; liquid recovery pipelines 69 are arranged on two sides of the lower end of the shell 61, and when the impregnating compound enters the centrifugal device 62 for centrifugal filtration, the impregnating compound enters the liquid recovery pipelines 69 on two sides after passing through the first filter screen 65 and the second filter screen 66; a layer of third filter screen 7 is arranged between the recovery device 6 and the liquid outlet pipe 8; a row of dripping pipes 71 are arranged below the third filter screen 7.
During specific work, a filter box 1 is arranged below an immersion opening of a glass fiber drawing machine, a recovery opening 3 of the filter box 1 is aligned to a discharge opening for discharging immersion liquid, the immersed immersion agent enters the filter box 1 through the recovery opening 3 and falls onto a grid plate 2, the grid plate 2 is in the shape of a long strip plate with an arc-shaped side face, the inclination angle is 15-25 degrees, large-particle solids in the immersion liquid are filtered and discharged under the driving of the amplitude of an electric motor 4, the preliminarily filtered immersion liquid enters a recovery tank 5, and a recovery device 6 with a centrifugal device 62 is communicated with the bottom of the recovery tank 5.
The immersion liquid passes through the input pipeline 60 and then enters the centrifugal device 62 through the liquid inlet valve 63, and the centrifugal device 62 centrifugally throws the immersion liquid through the second filter screen 66 and the first filter screen 65; and then rapidly discharged through the recovery pipe 69. The filtered small particles are delivered to a collection box 68 through an output pipe 67 after being opened by a reject valve 64.
The immersion liquid treated by the recovery device 6 basically reaches the standard of recovery and secondary use, and the immersion liquid rapidly discharged from the recovery pipeline 69 falls through the dripping pipe 71 after being treated by the third filter screen 7 at the bottom of the filter box 1, and is finally recovered through the liquid outlet pipe 8 controlled by the valve 81.
To sum up, this is novel when filtering the recovery, the shape of grid plate is curved rectangular panel for a side, and grid plate becomes the oblique angle and is fixed in the rose box, is favorable to increasing the filter area of grid plate, also is favorable to making the solid particle filter residue pile up in the concave part of grid plate when vibrating motor vibrates, is convenient for filter out the large granule solid.
And, carry out centrifugal treatment to the waste liquid through designing recovery unit, the infiltration liquid that the centrifugation was accomplished reaches the standard of retrieving the secondary and using after two-layer filter screen filters, and partial small particle impurity does not fall into the collection box after the centrifugal filtration by the filtration of grid plate, and through the centrifugation process, the waste liquid velocity of flow accelerates, has shortened the time that the waste liquid was retrieved, has improved the efficiency that the waste liquid was retrieved.
The foregoing is merely exemplary and illustrative of the structure of the invention, and various modifications, additions and substitutions as described in the detailed description may be made by those skilled in the art without departing from the structure or scope of the invention as defined in the accompanying claims.

Claims (5)

1. The utility model provides a glass fiber wire drawing machine treating compound recovery unit for to the centrifugation recovery of glass fiber wire drawing machine treating compound, it includes:
the upper part of the filter box (1) is provided with a recovery port (3);
the device is characterized in that a grid plate (2) is transversely arranged in the filter box (1), and the grid plate (2) extends out of the filter box (1) and is connected with a vibration motor (4); a recovery cylinder (5) is arranged below the grid plate (2), and the bottom of the recovery cylinder (5) is communicated with a plurality of recovery devices (6); the recovery device (6) comprises a shell (61), a centrifugal device (62), a liquid inlet valve (63) and a slag discharge valve (64) which are arranged in the shell (61); the outer wall of the centrifugal device (62) is of a hollow structure, a first filter screen (65) and a second filter screen (66) are further arranged on the outer side of the outer wall of the centrifugal device (62), and the first filter screen (65) and the second filter screen (66) are detachably mounted on the outer wall of the centrifugal device (62) and surround the outer wall of the whole centrifugal device (62); the upper end and the lower end of the centrifugal device (62) are respectively provided with an input pipeline (60) and an output pipeline (67), and the input pipeline (60) is communicated with the bottom of the recovery cylinder (5); the liquid inlet valve (63) is fixed at the outlet of the input pipeline (60) in a sealing way, and the slag discharging valve (64) is fixed at the inlet of the output pipeline (67) in a sealing way; the outlet of the output pipeline (67) is connected with a collection box (68); liquid recovery pipelines (69) are arranged on two sides of the lower end of the shell (61), and when the impregnating compound enters a centrifugal device (62) for centrifugal filtration, the impregnating compound enters the liquid recovery pipelines (69) on two sides after passing through a first filter screen (65) and a second filter screen (66);
the bottom of the filter box (1) is positioned below the recovery device (6) and is provided with a liquid outlet pipe (8).
2. A glass fiber drawing machine sizing agent recovery device according to claim 1, characterized in that a third filter screen (7) is arranged between the recovery device (6) and the liquid outlet pipe (8).
3. A glass fiber drawing machine sizing agent recovery device according to claim 2, characterized in that a row of dripping pipes (71) is arranged below the third filter screen (7).
4. The impregnating compound recovery device of the glass fiber drawing machine as claimed in claim 1, wherein the grid plate (2) is located below the recovery port (3), and the grid plate (2) is in the shape of a long strip with an arc-shaped side surface and is inclined at an angle of 15-25 °.
5. The impregnating compound recovery device of the glass fiber drawing machine as claimed in claim 1, wherein a valve (81) is mounted on the liquid outlet pipe (8).
CN202021881253.1U 2020-08-31 2020-08-31 Glass fiber wire drawing machine impregnating compound recovery unit Active CN213253405U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021881253.1U CN213253405U (en) 2020-08-31 2020-08-31 Glass fiber wire drawing machine impregnating compound recovery unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021881253.1U CN213253405U (en) 2020-08-31 2020-08-31 Glass fiber wire drawing machine impregnating compound recovery unit

Publications (1)

Publication Number Publication Date
CN213253405U true CN213253405U (en) 2021-05-25

Family

ID=75937277

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021881253.1U Active CN213253405U (en) 2020-08-31 2020-08-31 Glass fiber wire drawing machine impregnating compound recovery unit

Country Status (1)

Country Link
CN (1) CN213253405U (en)

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