CN201235281Y - Reverse osmosis membrane raw material synthesis machine - Google Patents

Reverse osmosis membrane raw material synthesis machine Download PDF

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Publication number
CN201235281Y
CN201235281Y CNU2008200264423U CN200820026442U CN201235281Y CN 201235281 Y CN201235281 Y CN 201235281Y CN U2008200264423 U CNU2008200264423 U CN U2008200264423U CN 200820026442 U CN200820026442 U CN 200820026442U CN 201235281 Y CN201235281 Y CN 201235281Y
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CN
China
Prior art keywords
mixing bowl
shaft
reverse osmosis
osmosis membrane
cooling water
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CNU2008200264423U
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Chinese (zh)
Inventor
胡业忠
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANDONG HENGFENG MEMBRANE TECHNOLOGY Co Ltd
Original Assignee
SHANDONG HENGFENG MEMBRANE TECHNOLOGY Co Ltd
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Priority to CNU2008200264423U priority Critical patent/CN201235281Y/en
Application granted granted Critical
Publication of CN201235281Y publication Critical patent/CN201235281Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a reverse osmosis membrane material synthesizing machine, which belongs to the field of reverse osmosis membrane preparation, in particular to a material pre-processing device of reverse osmosis membrane. The material synthesizing machine is characterized by further comprising a sensor, a mixing crock cooling water inlet pipe, a mixing crock cooling water outlet pipe and a heating rod, wherein a mixing crock also comprises an inner shell, the inner shell is arranged in an outer shell, a thermoregulation space is formed between the inner shell and the outer shell, the mixing crock cooling water inlet pipe and the mixing crock cooling water outlet pipe are respectively communicated with the thermoregulation space, the heating rod is installed in the thermoregulation space, and the sensor is installed on the inner shell. The reverse osmosis membrane material synthesizing machine can detect the material temperature in the mixing crock, can heat the mixing crock when the temperature is over low, and can lower the temperature of the mixing crock through cooling water when the temperature is over high, thereby effectively controlling the working temperature of the synthesizing machine to be constant. Once a pressure gauge of the synthesizing machine displays that the pressure of the mixing crock is over high, a pressure discharge valve can be started to discharge the pressure in the crock through a pressure discharge pipe.

Description

A kind of reverse osmosis membrane raw material synthesizer
Technical field
The utility model belongs to the reverse osmosis membrane preparation field, is specifically related to a kind of pretreatment equipment of reverse osmosis membrane.
Background technology
Counter-infiltration (Reverse Osmosis) is called for short RO, is under external pressure, makes some the component selective permeation in the solution, thereby reaches a practical technique of desalination, purification or concentrating and separating purpose.In water treatment procedure, it can remove in the water subparticle of the overwhelming majority, can also remove various impurity such as bacterium in the water and organic matter simultaneously, is a kind of advanced person of present profound purification, economic means.As a kind of new water technology, reverse osmosis membrane is widely used in seawater, brackish water desalination, medical and industrial high purity water preparation, drink water purifying, beverage and food processing, effective separation of medicine and other materials is on the sewage disposal in environmental protection field and other Treatment of Industrial Water.
In the preparation technology of reverse osmosis membrane, raw material synthetic is one of key factor that influences the film end product quality.The preliminary treatment of reverse osmosis membrane raw material requires under constant temperature and pressure various raw materials evenly to be mixed.Especially the raw material mixing temperature is too high or too low, and the reverse osmosis membrane filtration effect of making is had a greatly reduced quality.Temperature and pressure when existing raw material synthesizer can not effectively be controlled the raw material mixing, therefore the quality of production to film causes very big negative effect.
The utility model content
The technical problem that the utility model solves is: design a kind of reverse osmosis membrane raw material synthesizer, can evenly mix the reverse osmosis membrane raw material under constant temperature.
The technical scheme that its technical problem that will solve the utility model adopts is: design a kind of reverse osmosis membrane raw material synthesizer, comprise motor, bearing, shaft, stirring wing and a mixing bowl, a mixing bowl comprises shell and loam cake, shell is tubular, shell one end is uncovered, other end sealing, the opening end of shell is installed loam cake, on cover and offer through hole; Shaft one end connects motor, the other end of shaft passes the loam cake through hole and extend in the shell, connect by bearing between shaft and the loam cake, stirring wing is installed on the shaft, it is characterized in that also comprising sensor, a mixing bowl cooling water inlet pipe, a mixing bowl cooling outlet pipe and heating rod, a mixing bowl also comprises inner casing, inner casing is arranged on enclosure, form conditioned space between inner casing and the shell, a mixing bowl cooling water inlet pipe and a mixing bowl cooling outlet pipe are connected with conditioned space respectively, heating rod is installed in the conditioned space, and sensor is installed on the inner casing.
A kind of reverse osmosis membrane raw material synthesizer described in the utility model, it is characterized in that also comprising shaft cooling water inlet pipe, shaft cooling outlet pipe and air ring, air ring is hollow ring body, and bearing connects loam cake by air ring, air ring axis and shaft axis conllinear; Shaft cooling water inlet pipe one end is connected with the hollow of air ring, and the other end connects a mixing bowl cooling water inlet pipe; Shaft cooling outlet pipe one end is connected with the hollow of air ring, and the other end connects a mixing bowl cooling outlet pipe.Offer peep hole last covering.Also comprise Pressure gauge, discharge pressure pipe and purge valve, Pressure gauge is installed in by discharge pressure pipe and covers, and purge valve is set on the discharge pressure pipe.On cover and offer charging aperture, a mixing bowl bottom is provided with discharging opening.
The beneficial effect that the utility model had is:
1. a mixing bowl of the present utility model adopts inside and outside shell double Shell formula design, has the effect of insulation.
2. on the utility model inner casing sensor is set, material temperature in the detectable a mixing bowl, in case temperature is crossed and low can be started heating rod a mixing bowl is heated, if temperature drift, then between inner casing and shell, inject cooling water by a mixing bowl cooling water inlet pipe, and by the cooling water discharge that a mixing bowl cooling outlet pipe will carry heat, lower the temperature to a mixing bowl, thereby the operating temperature of effectively controlling the raw material synthesizer keeps constant.
3. the utility model is provided with peep hole, can observe the working condition in a mixing bowl at any time.
4. cover setting pressure table and purge valve on the utility model,, can open purge valve, the pressure in the cylinder body is discharged by discharge pressure pipe in case Pressure gauge shows that a mixing bowl internal pressure is too high.
Description of drawings
Fig. 1 is the utility model overall structure schematic diagram;
Fig. 2 is the positional structure schematic diagram of the utility model heating rod and sensor;
Fig. 3 is the B partial enlarged drawing among Fig. 2;
Among the figure: 1. motor, 2. shaft cooling outlet pipe, 3. loam cake, 4. a mixing bowl cooling outlet pipe, 5. charging aperture, 6. peep hole, 7. shaft, 8. stirring wing, 9. discharging opening, 10. a mixing bowl cooling water inlet pipe, 11. discharge pressure pipes, 12. purge valve, 13. Pressure gauges, 14. shafts cooling water inlet pipe, 15. inner casing, 16. shells, 17. conditioned space, 18. heating rod, 19. sensors, 20. air rings.
The specific embodiment
As illustrated in fig. 1 and 2, a mixing bowl is made up of loam cake 3, inner casing 15 and shell 16.Motor 1 connects shaft 7, and shaft 7 is installed on the loam cake 3 by bearing, and some stirring wings 8 are set on the shaft 7.Form conditioned space 17 between inner casing 15 and the shell 16, a mixing bowl cooling water inlet pipe 10 and a mixing bowl cooling outlet pipe 4 are connected with conditioned space 17 respectively.Heating rod 18 is a ring-type, is installed in the conditioned space 17, is enclosed within on the inner casing 15.Sensor 19 is installed on the inner casing 15.As shown in Figure 3, air ring 20 is hollow ring body, and air ring 20 is arranged on the loam cake 3 of bearing periphery, air ring 20 axis and shaft 7 axis conllinear.Shaft cooling water inlet pipe 14 1 ends are connected with the hollow of air ring 20, and the other end connects a mixing bowl cooling water inlet pipe 10; Shaft cooling outlet pipe 2 one ends are connected with the hollow of air ring 20, and the other end connects a mixing bowl cooling outlet pipe 4.Pressure gauge 13 is installed on the loam cake 3 by discharge pressure pipe 11, and purge valve 12 is set on the discharge pressure pipe 11.Offer charging aperture 5 and peep hole 6 on the loam cake 3.Discharging opening 9 is offered in a mixing bowl bottom.When using the utility model, earlier charging aperture 5 is opened, raw material is poured in a mixing bowl, with charging aperture 5 sealings.Starter motor 1 drives the raw material in shaft 7 and the stirring wing 8 rotation stirring inner casings 15.In the whipping process, note observing Pressure gauge 13, when a mixing bowl internal pressure is excessive, can open purge valve 12, internal pressure is discharged from discharge pressure pipe 11.
Mix in the process at raw material, the sensor 19 that is arranged on the inner casing 15 can be found out material temperature automatically.When temperature was too high, sensor 19 started cooling water sources, from a mixing bowl cooling water inlet pipe 10 enters conditioned space 17 between inner casing 15 and the shell 16, gave inner raw material cooling.Cross when low when temperature, sensor 19 starts heating rods 18, heats for inner raw material.Realize temperature controlling function of the present utility model thus.Can observe the stirring state of raw material by the peep hole on the loam cake 36.
Shaft 7 spin friction bearing in whipping process can produce very big heat, can have influence on the service life of machine when serious.Therefore in machine running process, can regularly start cooling water source and enter air ring 20 by shaft cooling water inlet pipe 14, give bearing and shaft 7 coolings, carry the cooling water of heat then and discharge from shaft cooling outlet pipe 2 again, bearing and shaft 7 are lowered the temperature with this.
After after a while mixing is stirred, via peep hole 6 check raw material synthetic evenly after, can open discharging opening 9, raw material is taken out.

Claims (5)

1. a reverse osmosis membrane raw material synthesizer comprises motor, bearing, shaft, stirring wing and a mixing bowl, and a mixing bowl comprises shell and loam cake, and shell is tubular, and shell one end is uncovered, other end sealing, and the opening end of shell is installed loam cake, on cover and offer through hole; Shaft one end connects motor, the other end of shaft passes the loam cake through hole and extend in the shell, connect by bearing between shaft and the loam cake, stirring wing is installed on the shaft, it is characterized in that also comprising sensor, a mixing bowl cooling water inlet pipe, a mixing bowl cooling outlet pipe and heating rod, a mixing bowl also comprises inner casing, inner casing is arranged on enclosure, form conditioned space between inner casing and the shell, a mixing bowl cooling water inlet pipe and a mixing bowl cooling outlet pipe are connected with conditioned space respectively, heating rod is installed in the conditioned space, and sensor is installed on the inner casing.
2. a kind of reverse osmosis membrane raw material synthesizer according to claim 1, it is characterized in that also comprising shaft cooling water inlet pipe, shaft cooling outlet pipe and air ring, air ring is hollow ring body, and bearing connects loam cake by air ring, air ring axis and shaft axis conllinear; Shaft cooling water inlet pipe one end is connected with the hollow of air ring, and the other end connects a mixing bowl cooling water inlet pipe; Shaft cooling outlet pipe one end is connected with the hollow of air ring, and the other end connects a mixing bowl cooling outlet pipe.
3. a kind of reverse osmosis membrane raw material synthesizer according to claim 1 and 2 is characterized in that offering peep hole last covering.
4. a kind of reverse osmosis membrane raw material synthesizer according to claim 1 and 2 is characterized in that also comprising Pressure gauge, discharge pressure pipe and purge valve, and Pressure gauge is installed in by discharge pressure pipe and covers, and purge valve is set on the discharge pressure pipe.
5. a kind of reverse osmosis membrane raw material synthesizer according to claim 1 and 2 is characterized in that covering and offers charging aperture, and a mixing bowl bottom is provided with discharging opening.
CNU2008200264423U 2008-08-01 2008-08-01 Reverse osmosis membrane raw material synthesis machine Expired - Fee Related CN201235281Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200264423U CN201235281Y (en) 2008-08-01 2008-08-01 Reverse osmosis membrane raw material synthesis machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008200264423U CN201235281Y (en) 2008-08-01 2008-08-01 Reverse osmosis membrane raw material synthesis machine

Publications (1)

Publication Number Publication Date
CN201235281Y true CN201235281Y (en) 2009-05-13

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102166480A (en) * 2011-03-01 2011-08-31 南京九思高科技有限公司 An apparatus and a method for synthesizing molecular sieve membranes
CN103623733A (en) * 2013-11-28 2014-03-12 苏州蓝王机床工具科技有限公司 Novel stirrer
CN106016761A (en) * 2016-07-02 2016-10-12 安徽水利开发股份有限公司 Multifunctional liquid temperature regulation tank
CN108007138A (en) * 2017-11-30 2018-05-08 重庆赛亚迪锂电池能源科技股份有限公司 Lithium battery raw material stirring and drying device
CN109571749A (en) * 2019-01-10 2019-04-05 湖南古圣砖瓦科技有限公司 A kind of large-scale equal material pond of grey tile production
CN110314578A (en) * 2019-08-09 2019-10-11 天津绿之本生物科技有限公司 A kind of organic fertilizer vibration rabbling mechanism

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102166480A (en) * 2011-03-01 2011-08-31 南京九思高科技有限公司 An apparatus and a method for synthesizing molecular sieve membranes
CN103623733A (en) * 2013-11-28 2014-03-12 苏州蓝王机床工具科技有限公司 Novel stirrer
CN106016761A (en) * 2016-07-02 2016-10-12 安徽水利开发股份有限公司 Multifunctional liquid temperature regulation tank
CN108007138A (en) * 2017-11-30 2018-05-08 重庆赛亚迪锂电池能源科技股份有限公司 Lithium battery raw material stirring and drying device
CN109571749A (en) * 2019-01-10 2019-04-05 湖南古圣砖瓦科技有限公司 A kind of large-scale equal material pond of grey tile production
CN110314578A (en) * 2019-08-09 2019-10-11 天津绿之本生物科技有限公司 A kind of organic fertilizer vibration rabbling mechanism

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Effective date of registration: 20130625

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Date of cancellation: 20140625

Granted publication date: 20090513

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Granted publication date: 20090513

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Granted publication date: 20090513

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Granted publication date: 20090513

Termination date: 20130801

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