CN205607817U - Similar material permeability testing experiment platform of many field couplings - Google Patents
Similar material permeability testing experiment platform of many field couplings Download PDFInfo
- Publication number
- CN205607817U CN205607817U CN201620303546.9U CN201620303546U CN205607817U CN 205607817 U CN205607817 U CN 205607817U CN 201620303546 U CN201620303546 U CN 201620303546U CN 205607817 U CN205607817 U CN 205607817U
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- test specimen
- rubber sleeve
- experimental facilities
- display screen
- hydraulic cylinder
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Abstract
The utility model discloses a similar material permeability testing experiment platform of many field couplings relates to rock -mineral analysis technical field. The experiment platform includes laboratory bench, experimental facilities and display screen, and the experimental facilities carries out the permeability test of test piece under different temperatures field and electric magnetic field environment, can the convenient parameter of measurement test piece under different temperatures field and electric magnetic field environment to measure the parameter that obtains by showing that screen display shows, provide true, accurate data support for the true physical characteristic of research test piece.
Description
Technical field
This utility model relates to rock-mineral analysis technical field, particularly relates to multi-scenarios method analog material permeability
Test experiments platform.
Background technology
Geological prospecting often carries out the characteristic test in rock ore deposit, the parameter such as such as gas permeability, measure these
The characteristic tool understanding rock ore deposit is had very important significance by parameter.
Existing rock ore deposit permeability test device is all the relevant ginseng testing rock ore deposit under the normal electromagnetic environment of room temperature
Number, the actual environment residing for rock ore deposit is complicated and changeable, and the Permeability Parameters under the normal electromagnetic environment of room temperature is sometimes
Time can not embody the genuine property in rock ore deposit.And existing test device all can not accomplish variable temperature field and electricity
The test of Xia Yan ore deposit, magnetic field permeability.
Utility model content
This utility model embodiment provides multi-scenarios method analog material permeability test device, can solve existing
There is in technology the problem that equipment of testing can not accomplish the test of variable temperature field and electromagnetic field Xia Yan ore deposit permeability.
Multi-scenarios method analog material permeability test experiments platform, including laboratory table, experimental facilities and display screen,
Described display screen is fixed in described laboratory table;
Described experimental facilities includes test specimen seat, rubber sleeve, voltage regulating device and hydraulic cylinder, described test specimen seat
Being fixed in described laboratory table, described rubber sleeve is arranged around described test specimen seat, and it is internally formed sealing sky
Between, described rubber sleeve sidewall is arranged with coil, described coil electrically connects with described voltage regulating device, institute
State hydraulic cylinder and be positioned at above described rubber sleeve, bottom described hydraulic cylinder, stretch out piston rod, described piston-rod end
Insert described rubber sleeve and be in directly over described test specimen seat, below described test specimen seat, being provided with pressure transducer,
Described pressure transducer electrically connects with the proportional amplifier being arranged in described laboratory table, described proportional amplifier
Electrically connect with described display screen.
It is preferred that described experimental facilities includes air compressor, the surge tank peace being sequentially connected with by pipeline
Weighing apparatus tank, described compensator is provided with exhaustor, and described exhaustor end inserts described through described test specimen seat
Inside rubber sleeve, described exhaustor is provided with control valve.
It is preferred that be provided with baroceptor on described compensator, described experimental facilities also includes PLC control
Cabinet and pulse signal firing box, described baroceptor, PLC control cabinet, pulse signal firing box and control
Valve is sequentially connected electrically.
It is preferred that be provided with effusion meter on described exhaustor.
It is preferred that described effusion meter electrically connects with described proportional amplifier.
It is preferred that be provided with liquidometer on described hydraulic cylinder.
Multi-scenarios method analog material permeability test experiments platform in this utility model embodiment, including laboratory table,
Experimental facilities and display screen, experimental facilities carries out test specimen permeability under different temperature fields and electromagnetic field environment
Test, can easily measure test specimen parameter under different temperature fields and electromagnetic field environment, and by display screen display
Show and measure the parameter that obtains, provide truly for the real physical characteristics of research test specimen, data support accurately.
Accompanying drawing explanation
The multi-scenarios method analog material permeability test experiments platform that Fig. 1 provides for this utility model embodiment
Structural representation.
Description of reference numerals:
100-laboratory table, 200-experimental facilities, 201-air compressor, 202-surge tank, 203-compensator,
204-pulse signal firing box, 205-PLC switch board, 206-exhaustor, 207-baroceptor, 208-
Control valve, 209-effusion meter, 210-test specimen seat, 211-rubber sleeve, 212-coil, 213-voltage regulating device,
214-piston rod, 215-hydraulic cylinder, 216-liquidometer, 217-pressure transducer, 300-display screen, 301-ratio
Example amplifier.
Detailed description of the invention
Below in conjunction with the accompanying drawings, a detailed description of the invention of the present utility model is described in detail, but it should
Understand that protection domain of the present utility model is not limited by detailed description of the invention.
With reference to Fig. 1, the multi-scenarios method analog material permeability test experiments provided for this utility model embodiment
The structural representation of platform, described experiment porch includes laboratory table 100, experimental facilities 200 and display screen 300,
Described display screen 300 is arranged in described laboratory table 100.
Described experimental facilities 200 includes air compressor 201, surge tank 202, compensator 203, PLC (can
Programmed logic controller) switch board 205 and pulse signal firing box 204.Described air compressor 201, slow
Rushing and pass sequentially through pipeline connection between tank 202 and compensator 203, described air compressor 201 extracts gas
And be stored in described surge tank 202, the gas of storage is the most also carried out certain by described surge tank 202
Pressure buffer.Described compensator 203 stores a small amount of expellant gas from described surge tank 202, and to depositing
The gas of storage carries out further pressure balance, makes the pressure level-off of gas.
Described baroceptor 207 is arranged on described compensator 203, in order to detect described compensator 203
In atmospheric pressure value.Described control valve 208 is arranged on the exhaustor 206 of described compensator 203, in order to control
Make described compensator 203 and discharge the speed of gas.Described baroceptor 207, PLC control cabinet 205,
Pulse signal firing box 204 and control valve 208 are sequentially connected electrically, and described PLC control cabinet 205 is according to described
The atmospheric pressure value that baroceptor 207 detects produces corresponding control command, described pulse signal firing box 204
Receiving described control command, and generate corresponding pulse control signal, described control valve 208 is in described pulse
Adjust aperture size under the control of control signal, discharge the speed of gas regulating described compensator 203.Institute
State and effusion meter 209 is installed on exhaustor 206, for detecting the stream flowing through gas in described exhaustor 206
Amount.
In the present embodiment, described baroceptor 207 can detect relatively low low pressure, such as 0.1MPa.Institute
State control valve 208 for Siemens's low pressure fine control valve, it is possible to achieve high-precision gas flow controls.
It is understood that described PLC control cabinet 205 can also generate corresponding according to the manual operation of user
Control command, to control the aperture size of described control valve 208.
Described experimental facilities 200 also includes test specimen seat 210, rubber sleeve 211, voltage regulating device 213 and liquid
Cylinder pressure 215.Described test specimen seat 210 is fixed in described laboratory table 100, and described test specimen seat 210 is offered
Air inlet, described exhaustor 206 is had to be inserted and secured in described air inlet.Described rubber sleeve 211 is also solid
It is scheduled in described laboratory table 100, and arranges around described test specimen seat 210, the most described rubber sleeve 211 shape
Become to close space.Described rubber sleeve 211 is internal is provided with coil 212, described voltage regulating device 213 and institute
State coil 212 to electrically connect, in order to regulate the voltage swing being added on described coil 212.
Described hydraulic cylinder 215 is positioned at above described rubber sleeve 211, stretches out piston bottom described hydraulic cylinder 214
Bar 214, described piston rod 214 inserts in described rubber sleeve 211, and is positioned at above described test specimen seat 210.
Described piston rod 214 in the vertical direction under the control of described hydraulic cylinder 215 moves.Described hydraulic cylinder 215
Side is additionally provided with liquidometer 216, to show the liquid level of hydraulic oil in described hydraulic cylinder 215.
Being also equipped with pressure transducer 217 in described laboratory table 100, described pressure transducer 217 is positioned at institute
State below test specimen seat 210, be used for detecting described test specimen seat 210 pressure experienced size.
Being additionally provided with proportional amplifier 301 in described laboratory table 100, described proportional amplifier 301 is aobvious with described
Display screen 300 electrically connects.Meanwhile, described proportional amplifier 301 also with described effusion meter 209 and pressure sensing
Device 217 electrically connects, to be put by the signal of telecommunication that described effusion meter 209 and pressure transducer 217 detect
Greatly, and transmit to described display screen 300, described display screen 300 show related data.
When using described experiment porch to carry out test specimen permeability survey, test specimen is placed on described test specimen seat 210
On, control described hydraulic cylinder 215 and adjust the height of described piston rod 214, make test specimen bear different pressure.
Control described control valve 208 simultaneously and in described rubber sleeve 211, discharge gas by described exhaustor 206,
Regulate the voltage on described coil 212 by described voltage regulating device 213, make described coil 212 produce
Different temperature and electromagnetic field.By described effusion meter 209 and pressure transducer 217 detected gas flow respectively
And force value, after described proportional amplifier 301 amplifies, described display screen 300 show that test specimen is not
Gas flow under synthermal and electromagnetic field environment and force value.
It is understood that storage device can also be used to store described effusion meter 209 and pressure transducer 217
The numerical value detected, uses simultaneously and calculates device according to the correlation values drafting temperature-permeability figure stored and electricity
The images such as magnetic field-permeability figure, and shown by described display screen 300.
In sum, multi-scenarios method analog material permeability test experiments platform in this utility model embodiment,
Including laboratory table, experimental facilities and display screen, experimental facilities carries out test specimen at different temperature fields and electromagnetic field ring
Permeability test under border, can easily measure test specimen parameter under different temperature fields and electromagnetic field environment,
And measured, by display screen display, the parameter obtained, the real physical characteristics for research test specimen provides true, accurate
True data support.
Only several specific embodiments of the present utility model disclosed above, but, this utility model embodiment
Being not limited to this, the changes that any person skilled in the art can think of all should fall into guarantor of the present utility model
Protect scope.
Claims (6)
1. multi-scenarios method analog material permeability test experiments platform, it is characterised in that include laboratory table (100),
Experimental facilities (200) and display screen (300), described display screen (300) is fixed on described laboratory table (100)
On;
Described experimental facilities (200) includes test specimen seat (210), rubber sleeve (211), voltage regulating device (213)
With hydraulic cylinder (215), described test specimen seat (210) is fixed in described laboratory table (100), described rubber
Set (211) is arranged around described test specimen seat (210), and it is internally formed sealing space, described rubber sleeve
(211) sidewall is arranged with coil (212), described coil (212) and described voltage regulating device (213)
Electrical connection, described hydraulic cylinder (215) is positioned at described rubber sleeve (211) top, described hydraulic cylinder (215)
Piston rod (214) is stretched out in bottom, and described piston rod (214) end inserts described rubber sleeve (211) and locates
Directly over described test specimen seat (210), described test specimen seat (210) lower section is provided with pressure transducer (217),
Described pressure transducer (217) and proportional amplifier (301) electricity being arranged in described laboratory table (100)
Connecting, described proportional amplifier (301) electrically connects with described display screen (300).
2. experiment porch as claimed in claim 1, it is characterised in that described experimental facilities (200) wraps
Include air compressor (201), surge tank (202) and compensator (203), the institute being sequentially connected with by pipeline
Stating and be provided with exhaustor (206) on compensator (203), described exhaustor (206) end passes described examination
It is internal that part seat (210) inserts described rubber sleeve (211), and described exhaustor is provided with control valve on (206)
(208)。
3. experiment porch as claimed in claim 2, it is characterised in that the upper peace of described compensator (203)
Equipped with baroceptor (207), described experimental facilities (200) also includes PLC control cabinet (205) and arteries and veins
Rush signal firing box (204), described baroceptor (207), PLC control cabinet (205), pulse signal
Firing box (204) and control valve (208) are sequentially connected electrically.
4. experiment porch as claimed in claim 2, it is characterised in that the upper peace of described exhaustor (206)
Equipped with effusion meter (209).
5. experiment porch as claimed in claim 4, it is characterised in that described effusion meter (209) and institute
State proportional amplifier (301) electrical connection.
6. experiment porch as claimed in claim 1, it is characterised in that the upper peace of described hydraulic cylinder (215)
Equipped with liquidometer (216).
Priority Applications (1)
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CN201620303546.9U CN205607817U (en) | 2016-04-07 | 2016-04-07 | Similar material permeability testing experiment platform of many field couplings |
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CN201620303546.9U CN205607817U (en) | 2016-04-07 | 2016-04-07 | Similar material permeability testing experiment platform of many field couplings |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106644881A (en) * | 2016-11-25 | 2017-05-10 | 浙江科技学院(浙江中德科技促进中心) | A liquid measuring type permeability apparatus |
CN106769789A (en) * | 2017-02-23 | 2017-05-31 | 南通市建设工程质量检测站有限公司 | A kind of efficient pervious concrete water permeability electronic detector and its operating method |
-
2016
- 2016-04-07 CN CN201620303546.9U patent/CN205607817U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106644881A (en) * | 2016-11-25 | 2017-05-10 | 浙江科技学院(浙江中德科技促进中心) | A liquid measuring type permeability apparatus |
CN106644881B (en) * | 2016-11-25 | 2023-12-05 | 浙江科技学院(浙江中德科技促进中心) | Liquid-measuring type permeameter |
CN106769789A (en) * | 2017-02-23 | 2017-05-31 | 南通市建设工程质量检测站有限公司 | A kind of efficient pervious concrete water permeability electronic detector and its operating method |
CN106769789B (en) * | 2017-02-23 | 2023-08-08 | 南通市建设工程质量检测站有限公司 | High-efficiency permeable concrete permeability electronic detector and operation method thereof |
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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: 20160928 Termination date: 20170407 |