CN210905951U - Silica sol dispersing device for lead-acid colloid storage battery - Google Patents
Silica sol dispersing device for lead-acid colloid storage battery Download PDFInfo
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- CN210905951U CN210905951U CN201921422739.6U CN201921422739U CN210905951U CN 210905951 U CN210905951 U CN 210905951U CN 201921422739 U CN201921422739 U CN 201921422739U CN 210905951 U CN210905951 U CN 210905951U
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Abstract
The utility model discloses a lead acid colloid battery silica sol dispersion devices to solve the inconvenient technical problem of feeding and the ejection of compact in the silica sol preparation process. The device comprises a kettle body, wherein a stirring device is arranged in the kettle body, and a feed inlet, a discharge outlet and a water inlet are formed in the wall of the kettle body; the feed inlet is communicated with a feed pipe, the feed pipe is communicated with a feed pump, and the feed pump is used for pumping raw materials into the kettle body; the discharge port is communicated with a discharge pipe, the discharge pipe is communicated with a discharge pump, and the discharge pump is used for pumping out the product in the kettle body. The utility model has the advantages that the raw material is pumped into the kettle body by the feed pump, the feeding is more convenient, the physical power is saved, and the dust pollution is avoided; the colloid product that will make is taken out through the discharge pump, makes it change in discharging through the discharge gate, improves discharge speed and efficiency.
Description
Technical Field
The utility model relates to a colloid battery technical field, concretely relates to lead acid colloid battery silica sol dispersion devices.
Background
The lead-acid colloid storage battery is a novel battery developed on the basis of the traditional lead-acid storage battery, is also called a maintenance-free storage battery, has the advantages of no environmental pollution, small self discharge, good vibration resistance, ultra-high temperature resistance, ultra-low temperature resistance, stable battery performance and the like, and is widely applied to the fields of electric power, telecommunication, communication, energy storage, electric vehicles and the like.
The lead-acid colloid storage battery has the advantages that the lead-acid colloid storage battery is mainly determined by colloid electrolyte in the lead-acid colloid storage battery, and is prepared by silica sol and sulfuric acid solution with certain concentration according to a certain proportion; the silica sol is a colloid prepared from fumed silica and water, the fumed silica is a white tasteless superfine powder material, the existing raw material products are packed in large bags and are relatively heavy, the silica sol is inconvenient to add into a reaction kettle and is easy to form dust pollution, and the prepared silica sol product is a colloid, has certain viscosity and is not easy to discharge from a discharge hole.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a lead acid colloid battery silica sol dispersion devices to solve the inconvenient technical problem of feeding and the ejection of compact in the silica sol preparation process.
In order to solve the technical problem, the utility model adopts the following technical scheme:
a lead-acid colloid storage battery silica sol dispersing device is designed, and comprises a kettle body, wherein a stirring mechanism is arranged in the kettle body, and a feed inlet, a discharge outlet and a water inlet are formed in the wall of the kettle body; the feed inlet is communicated with a feed pipe, the feed pipe is communicated with a feed pump, and the feed pump is used for pumping raw materials into the kettle body; the discharge port is communicated with a discharge pipe, the discharge pipe is communicated with a discharge pump, and the discharge pump is used for pumping out the product in the kettle body.
Preferably, the feed inlet is communicated with a first feed pipe, the first feed pipe is communicated with a feed pump, the feed pump is communicated with a second feed pipe, and the feed pump directly pumps the raw materials into the kettle body from the big bag package through the second feed pipe.
Preferably, the discharge hole is communicated with a first discharge pipe, the first discharge pipe is communicated with a discharge pump, and the discharge pump is communicated with a second discharge pipe.
Further, an ultrasonic generator is arranged in the kettle body and is electrically connected with an ultrasonic controller arranged outside the kettle body.
Furthermore, the water inlet is communicated with a water inlet pipe, and a flowmeter is arranged on the water inlet pipe.
Preferably, the stirring mechanism comprises a stirring shaft arranged in the center of the kettle body, and a plurality of stirring paddles uniformly distributed are arranged on the stirring shaft.
Furthermore, the upper wall of the kettle body is provided with an observation port.
Further, the feed inlet, the discharge gate with the water inlet all installs the valve.
Compared with the prior art, the utility model discloses a main beneficial technological effect lies in:
1. the utility model discloses a second inlet pipe stretches into in the raw materials packing bag, opens the charge pump, and it is internal from the powder suction cauldron in the big bag package with the raw materials, and it is more convenient to feed, and feeding efficiency is high, does not need the manual work to unpack the wrapping bag apart, reduces intensity of labour, saves physical power.
2. The mode of stretching into the interior extraction powder of raw materials packing bag through the second inlet pipe can effectively avoid dust pollution, makes the workman have good operational environment, avoids influencing healthily.
3. The colloid product that will make is taken out through the discharge pump, makes it change in discharging through the discharge gate, improves discharge speed and efficiency.
4. The utility model discloses internal agitating unit and the supersonic generator that is equipped with of cauldron can accelerate dispersion rate, and the colloid product that makes is more even.
Drawings
FIG. 1 is a schematic diagram of a silica sol dispersing device for a lead-acid colloid storage battery of the present invention;
in the above figures, 1 is a kettle body, 2 is a stirring shaft, 3 is a stirring paddle, 4 is a bearing, 5 is a motor, 6 is a feed port, 71 is a first feed pipe, 72 is a second feed pipe, 8 is a feed pump, 9 is a discharge port, 101 is a first discharge pipe, 102 is a second discharge pipe, 11 is a discharge pump, 12 is a water inlet pipe, 13 is a flow meter, 14 is a water inlet, 15 is an ultrasonic generator, 16 is an ultrasonic controller, and 17 is an observation port.
Detailed Description
The following embodiments are only intended to illustrate the present invention in detail, and do not limit the scope of the present invention in any way.
Example 1: the utility model provides a lead acid colloid battery silica sol dispersion devices, refers to figure 1, includes the cauldron body 1, and the centre rotates through bearing 4 in the cauldron body 1 and is connected with (mixing) shaft 2, is equipped with a plurality of evenly distributed's stirring rake 3 on the (mixing) shaft 2, and (mixing) shaft 2 electricity is connected with motor 5. An ultrasonic generator 15 is also arranged in the kettle body 1, and is electrically connected with an ultrasonic controller 16 arranged outside the kettle body 1, and the ultrasonic generator 15 is controlled by the ultrasonic controller 16. Through stirring and ultrasonic wave, the dispersion speed of the raw materials in the kettle body 1 can be accelerated, so that the prepared colloid product is more uniform.
The wall of the kettle body 1 is provided with a feed inlet 6, a discharge outlet 9, a water inlet 14 and an observation port 17, the water inlet 14 is communicated with a water inlet pipe 12, and the water inlet pipe 12 is provided with a flowmeter 13. The inlet 6, the outlet 9 and the inlet 14 are all provided with valves (not shown in the figure), and the observation port 17 is provided with a cover.
Feed inlet 6 intercommunication has first inlet pipe 71, and first inlet pipe 71 intercommunication has charge pump 8, and charge pump 8 intercommunication has second inlet pipe 72, and charge pump 8 is through second inlet pipe 72 directly with the raw materials from big bag package suction to the cauldron body 1 in, and it is more convenient to feed, saves physical power, avoids dust pollution.
The discharge hole 9 is communicated with a first discharge pipe 101, the first discharge pipe 101 is communicated with a discharge pump 11, the discharge pump 11 is communicated with a second discharge pipe 102, and the prepared colloid product is pumped out through the discharge pump 11, so that the colloid product can be discharged through the discharge hole 9 more easily, and the discharge speed and efficiency are improved.
During the use, stretch into the raw materials wrapping bag with second inlet pipe 72, through a certain amount of powder raw materials of charge-in pump 8 suction, then through water inlet 14 and with the water meter 13 control add corresponding volume water, close the valve of feed inlet 6, discharge gate 9 and water inlet 14 department and the lid of viewing aperture 17, open the motor 5 of control (mixing) shaft 2 and the ultrasonic controller 16 of control supersonic generator 15, after stirring reaction a period, take out a small amount of colloid product through ejection of compact pump 11, after the product is qualified, close motor 5 and ultrasonic controller 16, take out the colloid product that makes through ejection of compact pump 11.
The present invention has been described in detail with reference to the accompanying drawings and embodiments, but those skilled in the art will understand that various specific parameters in the above embodiments can be changed without departing from the spirit of the present invention to form a plurality of specific embodiments, which are the common variation ranges of the present invention and will not be described in detail herein.
Claims (6)
1. A lead-acid colloid storage battery silica sol dispersing device comprises a kettle body, wherein a stirring mechanism is arranged in the kettle body, and a feed inlet, a discharge outlet and a water inlet are arranged on the wall of the kettle body; the discharge port is communicated with a discharge pipe, the discharge pipe is communicated with a discharge pump, and the discharge pump is used for pumping out the product in the kettle body.
2. The lead-acid colloid storage battery silica sol dispersing device of claim 1, wherein the kettle body is internally provided with an ultrasonic generator which is electrically connected with an ultrasonic controller arranged outside the kettle body.
3. The lead-acid colloidal battery silica sol dispersing device of claim 1, wherein the water inlet is communicated with a water inlet pipe, and a flow meter is arranged on the water inlet pipe.
4. The lead-acid colloid storage battery silica sol dispersing device of claim 1, wherein the stirring mechanism comprises a stirring shaft arranged in the center of the kettle body, and a plurality of stirring paddles uniformly distributed on the stirring shaft.
5. The lead-acid colloid storage battery silica sol dispersing device of claim 1, wherein the upper wall of the kettle body is provided with an observation port.
6. The lead-acid colloidal storage battery silica sol dispersing device of claim 1, wherein matched valves are installed at the corresponding positions of the feed inlet, the discharge outlet and the water inlet.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921422739.6U CN210905951U (en) | 2019-08-29 | 2019-08-29 | Silica sol dispersing device for lead-acid colloid storage battery |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921422739.6U CN210905951U (en) | 2019-08-29 | 2019-08-29 | Silica sol dispersing device for lead-acid colloid storage battery |
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CN210905951U true CN210905951U (en) | 2020-07-03 |
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CN201921422739.6U Active CN210905951U (en) | 2019-08-29 | 2019-08-29 | Silica sol dispersing device for lead-acid colloid storage battery |
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2019
- 2019-08-29 CN CN201921422739.6U patent/CN210905951U/en active Active
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