CN204740191U - Filter material efficiency simulation tests system - Google Patents

Filter material efficiency simulation tests system Download PDF

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Publication number
CN204740191U
CN204740191U CN201520498276.7U CN201520498276U CN204740191U CN 204740191 U CN204740191 U CN 204740191U CN 201520498276 U CN201520498276 U CN 201520498276U CN 204740191 U CN204740191 U CN 204740191U
Authority
CN
China
Prior art keywords
valve
pneumatic
way valve
anchor clamps
cylinder clamp
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
CN201520498276.7U
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Chinese (zh)
Inventor
徐仁宏
孙民
王静益
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.)
SUZHOU HUADA INSTRUMENT EQUIPMENT CO Ltd
Original Assignee
SUZHOU HUADA INSTRUMENT EQUIPMENT CO Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SUZHOU HUADA INSTRUMENT EQUIPMENT CO Ltd filed Critical SUZHOU HUADA INSTRUMENT EQUIPMENT CO Ltd
Priority to CN201520498276.7U priority Critical patent/CN204740191U/en
Application granted granted Critical
Publication of CN204740191U publication Critical patent/CN204740191U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a filter material efficiency simulation tests system, including the cylinder anchor clamps that are used for the centre gripping filter material the one end of cylinder anchor clamps be connected with the fan, the other end of cylinder anchor clamps be connected with dirt source analogue unit, the cylinder anchor clamps pass through the anchor clamps solenoid valve and be connected with an oil -free air compressor, cylinder anchor clamps both sides respectively establish a dust particle counter respectively cylinder anchor clamps and dirt source analogue unit between let in the air, cylinder anchor clamps and fan between be equipped with a branch road be equipped with a balanced valve on the road. After having adopted above -mentioned system, filter material front end and the rear end population purpose that can survey through the dust particle counter change, and then calculate and reach the dust that the unit area inner filtration falls, calculate and obtain the filterable efficiency of filter material, and convenient to use is swift.

Description

A kind of filtrate Efficiency Simulation test macro
Technical field
The utility model relates to the technical field of measurement and test of filtrator, especially relates to a kind of filtrate Efficiency Simulation test macro.
Background technology
Filtrate efficiency evaluates a kind of basic data of filtering material quality, in the process that filtration unit is designed, need to consider many problems, such as medical mask and the anti-articles for use of multiple labor should play a role in filtering and can not affect effect of breathing, just requirement is had like this when selection material, and need simply to test to the filtrate of product, could use after test passes, because the dirt source in each environment is different, the quality treating various dirt sources media filtration effect is vital, sound not enough to the method for testing of filtrate efficiency at present, be easy to occur substandard product, the use of substandard product, easily cause danger, jeopardize safety.
Summary of the invention
Technical problem to be solved in the utility model is to provide a kind ofly can conveniently test media filtration effect and the filtrate Efficiency Simulation test macro of safety.
The technical scheme in the invention for solving the technical problem is: a kind of filtrate Efficiency Simulation test macro, comprise the cylinder clamp for clamping filtrate, blower fan is connected with in one end of described cylinder clamp, the other end of described cylinder clamp is connected with dirt source analogue unit, described cylinder clamp is connected with the first oilless air compressor by fixture solenoid valve, an airborne particle counter is respectively established respectively in described cylinder clamp both sides, air is passed between described cylinder clamp and dirt source analogue unit, a branch road is provided with between described cylinder clamp and blower fan, described branch road is provided with an equalizing valve.
Concrete further, described dirt source analogue unit comprises oil atomizer and salt spray device, is connected between the spray bottle of described oil atomizer and the spray bottle of salt spray device by the first Pneumatic three-way valve, and the first described Pneumatic three-way valve connects spraying air pump; The receiving flask of described oil atomizer is connected with the second Pneumatic three-way valve; The receiving flask of described salt spray device is connected with the second Pneumatic three-way valve by electrostatic neutralising arrangement; Described electrostatic neutralising arrangement is connected with the second oilless air compressor.
Concrete further, described spraying air pump is connected with the first Pneumatic three-way valve with spray solenoid valve by the first retaining valve.
Concrete further, the second described oilless air compressor is connected with electrostatic neutralising arrangement by tonifying Qi pressure regulator valve, flow of air supply meter and the second retaining valve.
Concrete further, be provided with oily spray concentration variable valve between the spray bottle of described oil atomizer and the first Pneumatic three-way valve; Salt spray concentration adjustment valve is provided with between the spray bottle of described salt spray device and the first Pneumatic three-way valve.
Concrete further, described electrostatic neutralising arrangement comprises the electric heater be connected with the second oilless air compressor, the ion spray gun be connected with electric heater, the mixing arrangement that is connected with ion spray gun, and described mixing arrangement is connected with the second Pneumatic three-way valve.
The beneficial effects of the utility model are: after have employed said system, the change of the filtrate front-end and back-end number of particles can surveyed by airborne particle counter, and then calculate the dust that unit area inner filtration falls, and calculate the efficiency of media filtration, convenient to use.
Accompanying drawing explanation
Fig. 1 is system architecture schematic diagram of the present utility model.
In figure: 1, cylinder clamp; 2, blower fan; 3, dirt source analogue unit; 4, airborne particle counter; 5, equalizing valve; 6, air; 7, fixture solenoid valve; 8, the first oilless air compressor; 31, oil atomizer; 32, salt spray device; 33, the first Pneumatic three-way valve; 34, spraying air pump; 35, the second Pneumatic three-way valve; 36, the first retaining valve; 37, spray solenoid valve; 38, oily spray concentration variable valve; 39, salt spray concentration adjustment valve; 310, electrostatic neutralising arrangement; 311,312, receiving flask; 313, flow of air supply meter; 314, tonifying Qi pressure regulator valve; 315, oilless air compressor; 3101, electric heater; 3102, ion spray gun; 3103, mixing arrangement.
Embodiment
Below in conjunction with accompanying drawing, the utility model is explained in detail.
A kind of filtrate Efficiency Simulation test macro as shown in Figure 1, comprise the cylinder clamp 1 for clamping filtrate, blower fan 2 is connected with in one end of described cylinder clamp 1, the other end of described cylinder clamp 1 is connected with dirt source analogue unit 3, described cylinder clamp 1 is connected with the first oilless air compressor 8 by fixture solenoid valve 7, described cylinder clamp 1 both sides respectively establish an airborne particle counter 4 respectively, air 6 is passed between described cylinder clamp 1 and dirt source analogue unit 3, a branch road is provided with between described cylinder clamp 1 and blower fan 2, described branch road is provided with an equalizing valve 5.
In order to convenient test, different dirt source can be produced, dirt source analogue unit 3 comprises oil atomizer 31 and salt spray device 32, be connected by the first Pneumatic three-way valve 33 between the spray bottle of described oil atomizer 31 and the spray bottle of salt spray device 32, the first described Pneumatic three-way valve 33 connects spraying air pump 34; The receiving flask 311 of described oil atomizer 31 is connected with the second Pneumatic three-way valve 35; The receiving flask 312 of described salt spray device 32 is connected with the second Pneumatic three-way valve 35 by electrostatic neutralising arrangement 310; Described electrostatic neutralising arrangement 310 is connected with the second oilless air compressor 315; Described spraying air pump 34 is connected with the first Pneumatic three-way valve 33 with spray solenoid valve 37 by the first retaining valve 36; The second described oilless air compressor 315 is connected with electrostatic neutralising arrangement 310 by tonifying Qi pressure regulator valve 314, flow of air supply meter 313 and the second retaining valve; Oily spray concentration variable valve 38 is provided with between the spray bottle of described oil atomizer 31 and the first Pneumatic three-way valve 33; Salt spray concentration adjustment valve 39 is provided with between the spray bottle of described salt spray device 32 and the first Pneumatic three-way valve 33; Described electrostatic neutralising arrangement 310 comprises the electric heater 3101 be connected with the second oilless air compressor 315, the ion spray gun 3102 be connected with electric heater 3101, the mixing arrangement 3103 that is connected with ion spray gun 3102, and described mixing arrangement 3103 is connected with the second Pneumatic three-way valve 35.
Different dirt source can be produced by dirt source analogue unit 3 to test, be calculated the dust particle of filtrate both sides by the airborne particle counter 4 of filtrate both sides, and draw the efficiency of filtration according to formulae discovery, convenient to use.
The dust particle generated in oil atomizer 31 or salt spray device 32 to be ejected on filtrate by spraying air pump 34 and to detect by dirt source analogue unit 3, can carry out as required regulating the constituent of dust particle and the content of composition.
It is emphasized that: be only preferred embodiment of the present utility model above, not any pro forma restriction is done to the utility model, every above embodiment is done according to technical spirit of the present utility model any simple modification, equivalent variations and modification, all still belong in the scope of technical solutions of the utility model.

Claims (6)

1. a filtrate Efficiency Simulation test macro, comprise the cylinder clamp (1) for clamping filtrate, blower fan (2) is connected with in one end of described cylinder clamp (1), it is characterized in that, the other end of described cylinder clamp (1) is connected with dirt source analogue unit (3), described cylinder clamp (1) is connected with the first oilless air compressor (8) by fixture solenoid valve (7), described cylinder clamp (1) both sides respectively establish an airborne particle counter (4) respectively, air (6) is passed between described cylinder clamp (1) and dirt source analogue unit (3), a branch road is provided with between described cylinder clamp (1) and blower fan (2), described branch road is provided with an equalizing valve (5).
2. filtrate Efficiency Simulation test macro according to claim 1, it is characterized in that, described dirt source analogue unit (3) comprises oil atomizer (31) and salt spray device (32), be connected by the first Pneumatic three-way valve (33) between the spray bottle of described oil atomizer (31) and the spray bottle of salt spray device (32), described the first Pneumatic three-way valve (33) connects spraying air pump (34); The receiving flask (311) of described oil atomizer (31) is connected with the second Pneumatic three-way valve (35); The receiving flask (312) of described salt spray device (32) is connected with the second Pneumatic three-way valve (35) by electrostatic neutralising arrangement (310); Described electrostatic neutralising arrangement (310) is connected with the second oilless air compressor (315).
3. filtrate Efficiency Simulation test macro according to claim 2, is characterized in that, described spraying air pump (34) is connected with the first Pneumatic three-way valve (33) with spray solenoid valve (37) by the first retaining valve (36).
4. filtrate Efficiency Simulation test macro according to claim 2, it is characterized in that, described the second oilless air compressor (315) is connected with electrostatic neutralising arrangement (310) by tonifying Qi pressure regulator valve (314), flow of air supply meter (313) and the second retaining valve.
5. filtrate Efficiency Simulation test macro according to claim 2, is characterized in that, is provided with oily spray concentration variable valve (38) between the spray bottle of described oil atomizer (31) and the first Pneumatic three-way valve (33); Salt spray concentration adjustment valve (39) is provided with between the spray bottle of described salt spray device (32) and the first Pneumatic three-way valve (33).
6. filtrate Efficiency Simulation test macro according to claim 2, it is characterized in that, described electrostatic neutralising arrangement (310) comprises the electric heater (3101) be connected with the second oilless air compressor (315), the ion spray gun (3102) be connected with electric heater (3101), the mixing arrangement (3103) that is connected with ion spray gun (3102), and described mixing arrangement (3103) is connected with the second Pneumatic three-way valve (35).
CN201520498276.7U 2015-07-10 2015-07-10 Filter material efficiency simulation tests system Expired - Fee Related CN204740191U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520498276.7U CN204740191U (en) 2015-07-10 2015-07-10 Filter material efficiency simulation tests system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520498276.7U CN204740191U (en) 2015-07-10 2015-07-10 Filter material efficiency simulation tests system

Publications (1)

Publication Number Publication Date
CN204740191U true CN204740191U (en) 2015-11-04

Family

ID=54421922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520498276.7U Expired - Fee Related CN204740191U (en) 2015-07-10 2015-07-10 Filter material efficiency simulation tests system

Country Status (1)

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CN (1) CN204740191U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104950086A (en) * 2015-07-11 2015-09-30 苏州华达仪器设备有限公司 Dust resource simulation system
CN104964907A (en) * 2015-07-10 2015-10-07 苏州华达仪器设备有限公司 Simulation test system for filtering efficiency of filtering materials

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104964907A (en) * 2015-07-10 2015-10-07 苏州华达仪器设备有限公司 Simulation test system for filtering efficiency of filtering materials
CN104950086A (en) * 2015-07-11 2015-09-30 苏州华达仪器设备有限公司 Dust resource simulation system

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151104

Termination date: 20160710