CN204694722U - A kind of on-line measuring device - Google Patents
A kind of on-line measuring device Download PDFInfo
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- CN204694722U CN204694722U CN201520429783.5U CN201520429783U CN204694722U CN 204694722 U CN204694722 U CN 204694722U CN 201520429783 U CN201520429783 U CN 201520429783U CN 204694722 U CN204694722 U CN 204694722U
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- measuring vessel
- surge bunker
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Abstract
The utility model discloses a kind of on-line measuring device, by measurement mechanism, measuring vessel top cover, measuring vessel, submersible drainage pump, extraordinary filter plate and surge bunker composition, measuring vessel there is measuring vessel top cover, measuring vessel top cover is connected with bolt seal between measuring vessel, measuring vessel top cover is provided with measurement mechanism and pressure buffer pipe, pressure buffer pipe is equipped with pressure buffer valve, the measuring junction of measurement mechanism gos deep in the liquid of measuring vessel, measuring vessel side is provided with surge bunker, extraordinary filter plate is embedded in the middle of surge bunker, extraordinary filter plate is connected with surge bunker adhesive seal, surge bunker is provided with solid-liquid mixing system inflow entrance and sedimentation escape hole, measuring vessel opposite side is provided with draining hole, draining hole pipeline is provided with drain valve and submersible drainage pump.The utility model adopts drainage power to combine with filtration, and drainage power size is adjustable, and measured object flow state is controlled, and solid-liquid mixture realizes being separated under tying up to flow state, and realizes long-time on-line checkingi under flow state.
Description
Technical field
The utility model relates to a kind of on-line measuring device, particularly a kind of device realizing on-line checkingi in solid-liquid mixing system.
Background technology
As everyone knows, generally, two kinds of methods are divided into the detection of solid-liquid mixing system, one of them is discontinuous detection method, the measurement of solid-liquid mixing system current potential, pH value etc. all adopts the mode of Discontinuous sampling to carry out, namely first by sampling apparatus, solid-liquid biased sample is gathered out on certain time point, to liquid or directly detect sample solid-liquid mixing system and measure after following sample leaches solid matter, this method complicated operation, require high, the system for moment change cannot grasp the Changing Pattern of system in time, another detection method is on_line detection method, this method detecting electrode or other pick-up units is directly inserted in solid-liquid mixing system to carry out on-line checkingi, but for the solid-liquid mixing system of flowing, this method can only realize short-term on-line checkingi, reason is that detecting electrode or device are all generally the set composites being easy to damage or exist salt bridge and molecule barrier film, solid matter in solid-liquid mixing system has collision effect to the measuring junction of measurement mechanism in flowing or whipping process, long-play can produce wearing and tearing and cause measured deviation to strengthen, in addition, the existence of fine solid matter also easily blocks the measurement mechanism having salt bridge or molecule barrier film, cause measurement inaccurate.Therefore, need a kind of on-line measuring device that can realize can affecting measurement mechanism nothing itself in solid-liquid system, the existence of extraordinary filter plate effectively can separate solid in solid-liquid mixing system and liquid in filtration, and extraordinary filter plate can filter the solid-liquid mixing system containing pole micro-solid and filter opening can not block, solid-liquid mixing system mainly needs tracer liquid, therefore extraordinary filter plate can be utilized to set up the on-line measuring device of solid-liquid mixing system.
Summary of the invention
The purpose of this utility model be in order to solve conventional solid-liquid mixing system detection method exist cannot on-line checkingi or long-time on-line checkingi and flowing solid-liquid system to the loss problem of measurement mechanism, and provide a kind of and utilize extraordinary filter plate to realize the device of solid-liquid mixing system on-line checkingi.
The utility model is by measurement mechanism, measuring vessel top cover, measuring vessel, submersible drainage pump, extraordinary filter plate and surge bunker composition, measuring vessel there is measuring vessel top cover, measuring vessel top cover is connected with bolt seal between measuring vessel, measuring vessel top cover is provided with measurement mechanism and pressure buffer pipe, pressure buffer pipe is equipped with pressure buffer valve, the measuring junction of measurement mechanism gos deep in the liquid of measuring vessel, measuring vessel side is provided with surge bunker, extraordinary filter plate is embedded in the middle of surge bunker, extraordinary filter plate is connected with surge bunker adhesive seal, surge bunker is provided with solid-liquid mixing system inflow entrance and sedimentation escape hole, measuring vessel opposite side is provided with draining hole, draining hole pipeline is provided with drain valve and submersible drainage pump, for providing drainage power and realizing flow state, submersible drainage pump rotating speed is controlled, drainage flow size is adjustable.
The course of work of the present utility model is:
According to the running status of measurement demand and solid-liquid mixing system, submersible drainage pump rotating speed is set.First package unit is put into solid-liquid mixing system, liquid level must not exceed edge on measuring vessel top cover, must not contact with measurement mechanism, then closing presure trimmer valve, open drain valve, open submersible drainage pump simultaneously, the drainage power provided by submersible drainage pump makes solidliquid mixture enter in surge bunker by solid-liquid mixing system inflow entrance, and realize Separation of Solid and Liquid by extraordinary filter plate under solid-liquid mixing system drainage dynamic action, liquid enters in the measurement space of measuring vessel, solid is discharged by sedimentation escape hole through gravity settling effect, in container to be measured after liquid level stabilizing, measurement mechanism enters on-line measurement state.
Principle of work of the present utility model is:
Utilize drainage power and filtration that solid-liquid mixing system is separated and keep liquid fluidity to realize the long-time on-line checkingi of solid-liquid mixing system.According to the motion state of measurement demand and solid-liquid mixing system, there is provided drainage power by submersible drainage pump, make Separation of Solid and Liquid by extraordinary filter plate, liquid enters in measuring vessel under drainage dynamic action, and the moment is in flow state, be achieved the on-line measurement of solid-liquid hybrid motion system.
The beneficial effects of the utility model are:
Adopt drainage power to combine with filtration, drainage power size is adjustable, and measured object flow state is controlled, and solid-liquid mixture realizes being separated under tying up to flow state, and realizes long-time on-line checkingi under flow state.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embodiment.
Fig. 2 is the A-A cut-open view in Fig. 1.
Embodiment
Refer to shown in Fig. 1 and Fig. 2, for the present embodiment is by measurement mechanism 1, measuring vessel top cover 2, measuring vessel 3, submersible drainage pump 6, extraordinary filter plate 7 and surge bunker 8 form, measuring vessel 3 there is measuring vessel top cover 2, between measuring vessel top cover 2 with measuring vessel 3, bolt seal is connected, measuring vessel top cover 2 is provided with measurement mechanism 1 and pressure buffer pipe 13, pressure buffer valve 12 pressure buffer pipe 13 is equipped with, the measuring junction of measurement mechanism 1 gos deep in the liquid of measuring vessel 3, measuring vessel 3 side is provided with surge bunker 8, extraordinary filter plate 7 is embedded in the middle of surge bunker 8, extraordinary filter plate 7 is connected with adhesive seal with surge bunker 8, surge bunker 8 is provided with solid-liquid mixing system inflow entrance 10 and sedimentation escape hole 11, measuring vessel 3 opposite side is provided with draining hole 4, draining hole 4 pipeline is provided with drain valve 5 and submersible drainage pump 6, for providing drainage power and realizing flow state, submersible drainage pump 6 rotating speed is controlled, drainage flow size is adjustable.
The course of work of the present embodiment is:
According to the running status of measurement demand and solid-liquid mixing system, submersible drainage pump 6 rotating speed is set.First package unit is put into solid-liquid mixing system, liquid level must not exceed edge on measuring vessel top cover 2, must not contact with measurement mechanism 1, then closing presure trimmer valve 12, open drain valve 5, open submersible drainage pump 6 simultaneously, the drainage power provided by submersible drainage pump 6 makes solidliquid mixture enter in surge bunker 8 by solid-liquid mixing system inflow entrance 10, and realize Separation of Solid and Liquid by extraordinary filter plate 7 under solid-liquid mixing system drainage dynamic action, liquid enters in the measurement space of measuring vessel 3, solid is discharged by sedimentation escape hole 11 through gravity settling effect, in container 3 to be measured after liquid level stabilizing, measurement mechanism 1 enters on-line measurement state.
Claims (1)
1. an on-line measuring device, it is characterized in that: be by measurement mechanism (1), measuring vessel top cover (2), measuring vessel (3), submersible drainage pump (6), extraordinary filter plate (7) and surge bunker (8) composition, measuring vessel (3) there is measuring vessel top cover (2), between measuring vessel top cover (2) with measuring vessel (3), bolt seal is connected, measuring vessel top cover (2) is provided with measurement mechanism (1) and pressure buffer pipe (13), pressure buffer valve (12) pressure buffer pipe (13) is equipped with, the measuring junction of measurement mechanism (1) gos deep in the liquid of measuring vessel (3), measuring vessel (3) side is provided with surge bunker (8), extraordinary filter plate (7) is embedded in the middle of surge bunker (8), extraordinary filter plate (7) is connected with adhesive seal with surge bunker (8), surge bunker (8) is provided with solid-liquid mixing system inflow entrance (10) and sedimentation escape hole (11), measuring vessel (3) opposite side is provided with draining hole (4), draining hole (4) pipeline is provided with drain valve (5) and submersible drainage pump (6).
Priority Applications (1)
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CN201520429783.5U CN204694722U (en) | 2015-06-22 | 2015-06-22 | A kind of on-line measuring device |
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CN201520429783.5U CN204694722U (en) | 2015-06-22 | 2015-06-22 | A kind of on-line measuring device |
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CN204694722U true CN204694722U (en) | 2015-10-07 |
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CN201520429783.5U Active CN204694722U (en) | 2015-06-22 | 2015-06-22 | A kind of on-line measuring device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107687959A (en) * | 2017-11-01 | 2018-02-13 | 中山市华源电气设备有限公司 | Testing device and testing method for powder-brewing beverage machine |
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2015
- 2015-06-22 CN CN201520429783.5U patent/CN204694722U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107687959A (en) * | 2017-11-01 | 2018-02-13 | 中山市华源电气设备有限公司 | Testing device and testing method for powder-brewing beverage machine |
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Address after: 130012 nanhu road, Chaoyang District, Changchun, Jilin Province, No. 6760 Patentee after: Changchun Gold Research Institute Co., Ltd. Address before: 130012 nanhu road, Jilin, Changchun, No. 6760 Patentee before: Changchun Gold Research Institute |