CN205655856U - Use sensor to gather flange integrated device of pipeline medium parameter - Google Patents

Use sensor to gather flange integrated device of pipeline medium parameter Download PDF

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Publication number
CN205655856U
CN205655856U CN201620146074.0U CN201620146074U CN205655856U CN 205655856 U CN205655856 U CN 205655856U CN 201620146074 U CN201620146074 U CN 201620146074U CN 205655856 U CN205655856 U CN 205655856U
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CN
China
Prior art keywords
flange
medium
integrated flange
temperature sensor
integrated
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Expired - Fee Related
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CN201620146074.0U
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Chinese (zh)
Inventor
范陈云
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Rotork Actuators Co Ltd
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Rotork Actuators Co Ltd
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Priority to CN201620146074.0U priority Critical patent/CN205655856U/en
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Publication of CN205655856U publication Critical patent/CN205655856U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides an use sensor to gather flange integrated device of pipeline medium parameter, it is including integrated flange, a serial communication port, integrated flange is connected gradually by medium inflow end, medium test terminal and medium outflow end and constitutes monolithic structure, pressure sensor temperature sensor and flow sensor is isogonism triangular distribution and is in on the medium test terminal on the integrated flange, and pressure sensor temperature sensor and flow sensor is in the central line projection of integrated flange is the equidistance arranges, the mission profile's such as pressure, flow and temperature in can the real -time supervision pipeline function.

Description

A kind of flange integrating device using sensor acquisition pipeline medium parameter
Technical field:
This utility model relates to valve pipe medium parameter and gathers integrating device field, a kind of flange integrating device using sensor acquisition pipeline medium parameter.
Background technology:
The integrated Flange joint of pipeline is connected mode conventional in equipment in oil, chemical field, and it combines with valve matched often, is readily disassembled the advantage of installation because it has, is widely used in pressure vessel and the pipeline of the industries such as petrochemical industry, nuclear power, metallurgy, pharmacy.In existing production process, it would be desirable to regularly detect to technical parameters such as the pressure in pipeline, flow, temperature, the pipe leakage problem caused to prevent the technical parameters such as manifold pressure, flow, temperature from changing;Particularly under the operating mode that media environment is severe, need to detect in real time the Parameters variation in pipeline.
Utility model content:
For defect present in prior art, the purpose of this utility model is just to provide a kind of flange integrating device using sensor acquisition pipeline medium parameter, and it can the function of the technical parameter such as pressure, flow and temperature in real-time monitoring tubular road.
This utility model solves its technical problem and be the technical scheme is that a kind of flange integrating device using sensor acquisition pipeline medium parameter, and it includes integrated flange, is positioned at integrated flange side and is fixed on the pressure transducer on integrated flange shell;It is positioned at integrated flange opposite side limit and is symmetrical set the temperature sensor on integrated flange shell with pressure transducer;And be placed between pressure transducer and temperature sensor and be positioned at the flow transducer on integrated flange shell;It is characterized in that, described integrated flange is flowed into end, dielectric tests end and medium outflow end and is sequentially connected with and constitutes monolithic construction by medium;Described pressure transducer, described temperature sensor and described flow transducer are that equiangular triangle is distributed on the dielectric tests end on described integrated flange, and described pressure transducer, described temperature sensor and described flow transducer project in equidistant arrangement at the centrage of described integrated flange;Described pressure transducer has, toward the inner side of dielectric tests end, the induction part maintained an equal level with integrated flange inner wall;Described temperature sensor stretches out axial projection toward the inner side of dielectric tests end on integrated flange central point direction;Described flow transducer has, axially adjacent to the inner side of dielectric tests end, the impeller unit rotated along with medium radial flow direction;When medium is by the dielectric tests end of integrated flange, the induction part induction medium pressure on described pressure transducer is touched by medium, touch the axial projection contact medium temperature in described temperature sensor, and drive the impeller unit of described flow transducer to rotate.
By using above technical scheme, owing to integrated flange have employed monolithic construction, described pressure transducer, described temperature sensor and described flow transducer are that equiangular triangle is distributed on the dielectric tests end on described integrated flange, and described pressure transducer, described temperature sensor and described flow transducer project in equidistant arrangement at the centrage of described integrated flange, therefore at pressure transducer, temperature sensor and flow transducer angular distribution on integrated flange, and between the medium in integrated flange, form stable monitoring flow field, make the media technology parameter monitored more accurate;And, this utility model pressure transducer has, toward the inner side of dielectric tests end, the induction part maintained an equal level with integrated flange inner wall, medium by integrated flange inner chamber time, medium can apply chamber pressure near integrated flange, the induction part maintained an equal level with integrated flange inner wall can accurately be sensed, and chamber pressure is the most accurate, therefore can realize good and reliable pressure monitoring structure function;Described temperature sensor stretches out axial projection toward the inner side of dielectric tests end on integrated flange central point direction, this axially arranged axial projection makes temperature sensor will not change because of the flowing of medium or stopping with the relative position of the medium in integrated flange, it is thus possible to realize the most stable function of temperature control;Described flow transducer has, axially adjacent to the inner side of dielectric tests end, the impeller unit rotated along with medium radial flow direction;Owing to have employed impeller unit, waiting in use, media flow can drive the impeller unit of flow transducer to rotate, thus realizes observing media flow situation.
As preferred version of the present utility model, the piston spring induction mechanism that described induction part is made up of piston head, spring, inductive circuit board, spring one end contact induction wiring board, the other end is connected with piston head one end, and the piston head other end maintains an equal level with described integrated flange inner wall.
Use above technical scheme, the piston spring induction mechanism that induction part of the present utility model is made up of piston head, spring, inductive circuit board, piston head and spring is relatively moved in the axial direction or the mode that resets is connected on integrated flange, thus ensure that the relative alternate position spike that will not cause induction part because of media variations with integrated flange inner wall.
As preferred version of the present utility model, described protuberance is made up of feeler lever, infrared probe, inductive circuit board, and infrared probe is fixed on the head end of feeler lever and contacts with medium, and connects inductive circuit board with data wire.
Use above technical scheme, protuberance of the present utility model is made up of feeler lever, infrared probe, inductive circuit board, infrared probe is fixed on the head end of feeler lever and contacts with medium, this axially arranged infrared probe makes temperature sensor will not change, it is thus possible to further ensure stable function of temperature control because of the flowing of medium or stopping with the relative position of the medium in integrated flange.
As preferred version of the present utility model, if described impeller unit is constituted circular apparatus by dry tablet blade along impeller stem is circumferentially distributed, wherein blade construction stepped cross.
Use above technical scheme, the circular impeller unit that impeller blade surrounds, the flow direction position of its axially opposing medium will cause rotating eccentricity to produce axial vibration because of media impingement, and blade construction is trapezium structure sheet, the impeller blade of this kind of structure can be sharper capture media flow change, not dilute or thick because of medium and change so that monitoring changes in flow rate is more accurate.
Accompanying drawing illustrates:
Fig. 1 is this utility model structural front view.
Fig. 2 is utility model sectional view of the present utility model.
Detailed description of the invention:
In order to be more fully understood that this utility model is relative to the improvement done by prior art, as shown in Figure 1, this utility model provides a kind of flange integrating device using sensor acquisition pipeline medium parameter, it includes integrated flange (1), is positioned at integrated flange (1) side and the pressure transducer (2) being fixed on integrated flange (1) housing;It is positioned at integrated flange (1) another side and the temperature sensor (3) being symmetrical set on integrated flange (1) housing with pressure transducer (2);And the flow transducer (4) being placed between pressure transducer (2) and temperature sensor (3) and being positioned on integrated flange (1) housing;It is characterized in that, described integrated flange (1) is flowed into end (11), dielectric tests end (12) and medium outflow end (13) and is sequentially connected with and constitutes monolithic construction by medium;Described pressure transducer (2), described temperature sensor (3) and described flow transducer (4) are distributed in equiangular triangle on the dielectric tests end (12) on described integrated flange (1), and described pressure transducer (2), described temperature sensor (3) and described flow transducer (4) project in equidistant arrangement at the centrage of described integrated flange (1);Described pressure transducer (2) has, toward the inner side of dielectric tests end (12), the induction part (21) maintained an equal level with integrated flange (1) inwall;Described temperature sensor (3) stretches out axial projection (31) toward the inner side of dielectric tests end (12) on integrated flange central point direction;Described flow transducer (4) has, axially adjacent to the inner side of dielectric tests end (12), the impeller unit (41) rotated along with medium radial flow direction;nullWhen medium is by dielectric tests end (12) of integrated flange (1),Induction part (21) the induction medium pressure on described pressure transducer (2) is touched by medium,Touch axial projection (31) the contact medium temperature in described temperature sensor (3),And drive the impeller unit (41) of described flow transducer (4) to rotate,Owing to integrated flange (1) have employed monolithic construction,Described pressure transducer (2)、Described temperature sensor (3) and described flow transducer (4) are distributed in equiangular triangle on the dielectric tests end (12) on described integrated flange (1),And described pressure transducer (2)、Described temperature sensor (3) and described flow transducer (4) project in equidistant arrangement at the centrage of described integrated flange (1),Therefore in pressure transducer (2)、Temperature sensor (3) and the flow transducer (4) angular distribution on integrated flange (1),And between the medium in integrated flange (1), form stable monitoring flow field,Make the media technology parameter monitored more accurate;And, this utility model pressure transducer (2) has, toward the inner side of dielectric tests end (12), the induction part (21) maintained an equal level with integrated flange (1) inwall, medium by integrated flange (1) inner chamber time, medium can apply chamber pressure near integrated flange (1), the induction part (21) maintained an equal level with integrated flange (1) inwall can accurately be sensed, and chamber pressure is the most accurate, therefore can realize good and reliable pressure monitoring structure function;Described temperature sensor (3) stretches out axial projection (31) toward the inner side of dielectric tests end (12) on integrated flange central point direction, this axially arranged axial projection (31) makes temperature sensor (3) will not change because of the flowing of medium or stopping with the relative position of the medium in integrated flange (1), it is thus possible to realize the most stable function of temperature control;Described flow transducer (4) has, axially adjacent to the inner side of dielectric tests end (12), the impeller unit (41) rotated along with medium radial flow direction;Owing to have employed impeller unit (41), waiting in use, media flow can drive the impeller unit (41) of flow transducer (4) to rotate, thus realizes observing media flow situation.
As shown in Figure 1, described induction part (21) is by piston head, spring, the piston spring induction mechanism of inductive circuit board composition, spring one end contact induction wiring board, the other end is connected with piston head one end, the piston head other end maintains an equal level with described integrated flange (1) inwall, induction part of the present utility model (21) is by piston head, spring, the piston spring induction mechanism of inductive circuit board composition, piston head and spring is relatively moved in the axial direction or reset mode be connected on integrated flange (1), thus ensure that the relative alternate position spike that will not cause induction part (21) because of media variations with integrated flange (1) inwall.
Described protuberance (31) is by feeler lever, infrared probe, inductive circuit board forms, infrared probe is fixed on the head end of feeler lever and contacts with medium, and connect inductive circuit board with data wire, protuberance of the present utility model (31) is by feeler lever, infrared probe, inductive circuit board forms, infrared probe is fixed on the head end of feeler lever and contacts with medium, this axially arranged infrared probe makes temperature sensor (3) will not change because of the flowing of medium or stopping with the relative position of the medium in integrated flange (1), it is thus possible to further ensure stable function of temperature control.
As shown in Figure 2, described impeller unit (41) is if being constituted circular apparatus by dry tablet blade along impeller stem is circumferentially distributed, wherein blade construction stepped cross, the circular impeller unit that impeller blade surrounds, the flow direction position of its axially opposing medium will cause rotating eccentricity to produce axial vibration because of media impingement, and blade construction is trapezium structure sheet, the impeller blade of this kind of structure can be sharper capture media flow change, not dilute or thick because of medium and change so that monitoring changes in flow rate is more accurate.

Claims (4)

1. using a flange integrating device for sensor acquisition pipeline medium parameter, it includes integrated flange (1), is positioned at integrated flange (1) side and the pressure transducer (2) being fixed on integrated flange (1) housing;It is positioned at integrated flange (1) another side and the temperature sensor (3) being symmetrical set on integrated flange (1) housing with pressure transducer (2);And the flow transducer (4) being placed between pressure transducer (2) and temperature sensor (3) and being positioned on integrated flange (1) housing;
It is characterized in that, described integrated flange (1) is flowed into end (11), dielectric tests end (12) and medium outflow end (13) and is sequentially connected with and constitutes monolithic construction by medium;Described pressure transducer (2), described temperature sensor (3) and described flow transducer (4) are distributed in equiangular triangle on the dielectric tests end (12) on described integrated flange (1), and described pressure transducer (2), described temperature sensor (3) and described flow transducer (4) project in equidistant arrangement at the centrage of described integrated flange (1);
Described pressure transducer (2) has, toward the inner side of dielectric tests end (12), the induction part (21) maintained an equal level with integrated flange (1) inwall;Described temperature sensor (3) toward the inner side of dielectric tests end (12) toward flange center's point direction on stretch out axial projection (31);Described flow transducer (4) has, axially adjacent to the inner side of dielectric tests end (12), the impeller unit (41) rotated along with medium radial flow direction;When medium is by dielectric tests end (12) of flange (1), induction part (21) the induction medium pressure on described pressure transducer (2) is touched by medium, touch axial projection (31) the contact medium temperature in described temperature sensor (3), and drive the impeller unit (41) of described flow transducer (4) to rotate.
A kind of flange integrating device using sensor acquisition pipeline medium parameter, it is characterized in that, the piston spring induction mechanism that described induction part (21) is made up of piston head, spring, inductive circuit board, spring one end contact induction wiring board, the other end is connected with piston head one end, and the piston head other end maintains an equal level with described integrated flange (1) inwall.
A kind of flange integrating device using sensor acquisition pipeline medium parameter, it is characterized in that, described protuberance (31) is made up of feeler lever, infrared probe, inductive circuit board, infrared probe is fixed on the head end of feeler lever and contacts with medium, and connects inductive circuit board with data wire.
4. a kind of flange integrating device using sensor acquisition pipeline medium parameter described in claim 1 in front of, it is characterized in that, described impeller unit (41) if being constituted circular apparatus by dry tablet blade along impeller stem is circumferentially distributed, wherein blade construction stepped cross.
CN201620146074.0U 2016-02-22 2016-02-22 Use sensor to gather flange integrated device of pipeline medium parameter Expired - Fee Related CN205655856U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620146074.0U CN205655856U (en) 2016-02-22 2016-02-22 Use sensor to gather flange integrated device of pipeline medium parameter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620146074.0U CN205655856U (en) 2016-02-22 2016-02-22 Use sensor to gather flange integrated device of pipeline medium parameter

Publications (1)

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CN205655856U true CN205655856U (en) 2016-10-19

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106482779A (en) * 2016-02-22 2017-03-08 罗托克执行器有限公司 A kind of flange integrating device of use sensor acquisition pipeline medium parameter

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106482779A (en) * 2016-02-22 2017-03-08 罗托克执行器有限公司 A kind of flange integrating device of use sensor acquisition pipeline medium parameter
CN106482779B (en) * 2016-02-22 2019-09-06 浙江罗托克执行器股份有限公司 A kind of flange integrating device using sensor acquisition pipeline medium parameter

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

Granted publication date: 20161019

Termination date: 20180222

CF01 Termination of patent right due to non-payment of annual fee