CN209800181U - pneumatic metering pump - Google Patents

pneumatic metering pump Download PDF

Info

Publication number
CN209800181U
CN209800181U CN201920348642.9U CN201920348642U CN209800181U CN 209800181 U CN209800181 U CN 209800181U CN 201920348642 U CN201920348642 U CN 201920348642U CN 209800181 U CN209800181 U CN 209800181U
Authority
CN
China
Prior art keywords
metering
liquid
detection
electromagnetic valve
outlet
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.)
Active
Application number
CN201920348642.9U
Other languages
Chinese (zh)
Inventor
张维国
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.)
Shanghai Yasheng Electronic Technology Co Ltd
Original Assignee
Shanghai Yasheng Electronic Technology 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 Shanghai Yasheng Electronic Technology Co Ltd filed Critical Shanghai Yasheng Electronic Technology Co Ltd
Priority to CN201920348642.9U priority Critical patent/CN209800181U/en
Application granted granted Critical
Publication of CN209800181U publication Critical patent/CN209800181U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model discloses a pneumatic metering pump, which comprises a pump body, wherein a metering cavity and a detection cavity are arranged inside the pump body, the upper end of the metering cavity is provided with an air inlet and an air outlet, a liquid inlet check valve and a liquid outlet check valve are respectively arranged on a liquid inlet and a liquid outlet at the lower end of the metering cavity, a liquid level float is arranged inside the metering cavity, and magnetic steel is arranged at one side of the liquid level float, which is close to the detection cavity; the detection chamber is provided with a stepping motor, an output shaft of the stepping motor is connected with a lead screw capable of rotating synchronously with the output shaft, one side of the lead screw is fixed with a guide rod arranged in parallel with the lead screw, a slide block capable of moving up and down along with the rotation of the lead screw is arranged on the lead screw, the other side of the slide block is sleeved on the guide rod in a sliding manner, one side of the slide block, which is close to magnetic steel in the measurement chamber, is provided with a detection plate, and a magnetic sensor. The utility model discloses pneumatic measuring pump measurement accuracy is high, structural design is compact, the stable performance, can reliably work for a long time.

Description

Pneumatic metering pump
Technical Field
The utility model belongs to the technical field of the measuring pump, specifically a pneumatic measuring pump.
Background
Metering pumps are common machines for fluid delivery and are characterized by the ability to maintain a constant flow rate independent of discharge pressure. Due to its outstanding features, metering pumps are now widely used in various industrial fields such as petrochemical industry, pharmaceuticals, food and the like.
The existing metering pump with higher accuracy mainly comprises: plunger type, diaphragm type, etc., wherein, the plunger type metering pump can cause abrasion to affect normal work because of the reciprocating relative motion between the plunger and the cavity; diaphragm metering pumps also suffer from variations in metering accuracy due to variations in the viscosity of the fluid being metered.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve above-mentioned problem, provide a pneumatic measuring pump of high accuracy measurement liquid.
In order to achieve the above object, the utility model provides a following technical scheme:
The utility model provides a pneumatic measuring pump, includes the pump body, inside measurement cavity and the detection cavity of being equipped with of pump body, its characterized in that: the upper end of the metering cavity is provided with an air inlet and an air outlet, the lower end of the metering cavity is provided with a liquid inlet and a liquid outlet, and the liquid inlet and the liquid outlet are respectively provided with a liquid inlet check valve and a liquid outlet check valve; a liquid level floater capable of freely moving is arranged in the metering chamber, and magnetic steel is arranged on one side, close to the detection chamber, in the liquid level floater; the detection chamber is provided with a stepping motor, an output shaft of the stepping motor is connected with a lead screw which can synchronously rotate with the output shaft, one side of the lead screw is fixed with a guide rod which is arranged in parallel with the lead screw, the lead screw is provided with a slide block which can move up and down along with the rotation of the lead screw, the other side of the slide block is sleeved on the guide rod in a sliding manner, one side of the slide block, which is close to magnetic steel in the measurement chamber, is provided with a detection plate, and the detection; the detection chambers at the upper end and the lower end of the guide rod are respectively provided with an upper limit switch and a lower limit switch; and a controller is arranged in the detection chamber and is respectively in control connection with the stepping motor, the limit switch and the detection plate through leads.
As a further preferable scheme, a flow guide disc is fixed below the air inlet and outlet in the metering chamber, and a plurality of flow guide holes are uniformly formed in the flow guide disc.
As a further preferable scheme, a safety valve floater is arranged in a through hole in the flow guiding disc and positioned right below the air inlet and outlet, and magnetic steel is arranged in the safety valve floater; and a safety valve detection plate connected with the controller is arranged on one side of the air inlet and the air outlet of the metering chamber, and a reed pipe is arranged on the safety valve detection plate.
as a further preferred scheme, the air inlet and outlet are respectively connected with the negative pressure electromagnetic valve and the positive pressure electromagnetic valve through a main air path pipeline, the other end of the negative pressure electromagnetic valve is connected with the vacuum pump, the other end of the positive pressure electromagnetic valve is connected with the air compressor, the main air path pipeline is provided with the main air path electromagnetic valve, and the negative pressure electromagnetic valve, the positive pressure electromagnetic valve and the main air path electromagnetic valve are respectively connected with the controller.
As a further preferred scheme, the pneumatic metering pump further comprises an alarm device, and the alarm device is connected with the controller.
as a further preferred scheme, the limit switch is a photoelectric switch and consists of a light emitter and a light receiver, and a light barrier capable of cutting off the photoelectric switch is arranged on the sliding block.
The utility model has the advantages of it is following:
(1) Electric parts such as controller, stop device all set up in the detection cavity of keeping apart with the measurement cavity, realize the non-contact liquid level measurement to the liquid of being surveyed, can be applied to the accurate measurement pump sending of inflammable and explosive and highly corrosive liquid.
(2) The controller measures the height of the liquid according to the type and the number of the pulse signals, and the obtained measurement data are accurate and high in precision.
(3) Compared with plunger type and diaphragm type metering pumps, the pneumatic metering pump can not influence normal work due to abrasion in work, can not cause metering precision change due to viscosity change of metered liquid, and can realize high-precision metering under the condition of large flow.
(4) the structure design is compact, the performance is stable, and the long-term reliable work can be realized.
Drawings
FIG. 1 is a schematic view of the external structure of the pneumatic metering pump of the present invention;
FIG. 2 is a schematic view of the internal structure of the pneumatic metering pump of the present invention;
Fig. 3 is a top view of the middle baffle plate of the present invention;
Fig. 4 is a front sectional view of the middle baffle plate of the present invention;
Fig. 5 is a working principle diagram of the pneumatic metering pump controller of the present invention.
In the figure: 1-gas inlet and outlet; 2-a safety valve detection plate; 3-safety valve float; 4-a pump body; 5-a flow guide disc; 6-liquid level float; 7-magnetic steel; 8-liquid inlet one-way valve; 9-liquid outlet one-way valve; 10-a stepper motor; 11-a guide bar; 12-upper limit switch; 13-a magnetic sensor; 14-a slide block; 15-a controller; 16-flexible conductor; 17-a screw rod; 18-lower limit switch.
Detailed Description
in order to make the technical means of the present invention known to those skilled in the art, the present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1-5, the utility model discloses a pneumatic metering pump, including the pump body, the pump body is inside to be equipped with measurement cavity A and to detect cavity B, its characterized in that: the upper end of the metering cavity A is provided with an air inlet and an air outlet 1, the lower end of the metering cavity A is provided with a liquid inlet and a liquid outlet, the liquid inlet and the liquid outlet are respectively provided with a liquid inlet check valve 8 and a liquid outlet check valve 9, a liquid level floater 6 capable of freely moving is arranged in the metering cavity A, and one side of the liquid level floater 6, which is close to the detection cavity, is provided with magnetic steel 7; the detection device is characterized in that a stepping motor 10 is installed in the detection chamber B, a lead screw 17 capable of rotating synchronously with the output shaft is connected to the output shaft of the stepping motor 10, a guide rod 11 arranged in parallel with the lead screw 17 is fixed to one side of the lead screw 17, a sliding block 14 capable of moving up and down along with the rotation of the lead screw 17 is installed on the lead screw 17, the other side of the sliding block 14 is sleeved on the guide rod 11 in a sliding mode, a detection plate is installed on one side, close to the magnetic steel 7 in the measurement chamber A, of the sliding block 14, a magnetic sensor 13 is arranged on the detection plate, upper and lower limit switches 12 and 18 are respectively arranged on the detection chamber B at the upper end and the lower end of the guide rod 11, a controller 15 is arranged in the detection chamber B, and the controller. In this embodiment, the controller 15 may be an 80C51 type general-purpose single chip microcomputer or a Programmable Logic Controller (PLC), and the controller 15 outputs a pulse signal to the stepping motor 10 to control the output shaft of the stepping motor 10 to rotate forward or backward on the one hand, and calculates the level of the liquid to be measured according to the forward rotation type and the backward rotation type of the pulse signal and the number of the pulse signal on the other hand; when the stepping motor 10 receives an output pulse of the controller 15, the output shaft of the stepping motor 10 enables the screw rod 17 to generate a fixed rotation angle, and when the controller 15 outputs a forward rotation pulse, the output shaft of the stepping motor 10 rotates along one direction, for example, the clockwise direction; when the controller 15 outputs the reverse rotation pulse, the output shaft of the stepping motor 10 rotates in another direction, for example, counterclockwise. In practical application, the detection precision can be effectively improved only by increasing the number of the subdivided steps of the stepping motor 10.
the lower part that is located into gas outlet 1 in the measurement cavity A is fixed with flow guide disc 5, has evenly seted up a plurality of water conservancy diversion holes on the flow guide disc 5, and flow guide disc 5 can prevent that high-pressure gas from entering into in the measurement cavity A can lead to liquid level float 6 to be strikeed and rock, influences the accuracy of measurement, and a plurality of water conservancy diversion holes on the flow guide disc 5 have disperseed airflow pressure, can make the air current steadily get into measurement cavity A to promote the smooth motion of liquid level float 6, realize measuring accurately.
A safety valve floater 3 is arranged in a through hole which is positioned right below the air inlet and outlet 1 in the flow guide disc 5, magnetic steel is arranged in the safety valve floater 3, a safety valve detection plate 2 connected with a controller 15 is arranged on one side of the air inlet and outlet 1 of the metering chamber A, and a reed pipe is arranged on the safety valve detection plate 2. When the liquid level gauge is normally used, the sliding block 14 is always positioned between the upper limit switch 12 and the lower limit switch 18, if the upper limit switch 12 sends a turn-off signal, the liquid level is full, and the negative pressure electromagnetic valve is immediately turned off; if the liquid level rises continuously due to the failure of the negative pressure solenoid valve or the failure of a controller, the working liquid enters the solenoid valve to damage the solenoid valve, and therefore, the float 3 provided with the safety valve can prevent the phenomenon. When the liquid level continues to rise, the liquid buoyancy supports the safety valve floater 3 and floats to the air inlet and outlet 1, and the safety valve floater 3 is attached to the air inlet and outlet 1 in a sealing mode to prevent the liquid level from further rising; meanwhile, the reed switch on the safety valve detection plate 2 is magnetized and conducted to send a signal, and the controller 15 turns off the main gas circuit electromagnetic valve after detecting the signal and sends out acousto-optic alarm.
The air inlet and outlet 1 is respectively connected with the negative pressure electromagnetic valve and the positive pressure electromagnetic valve through a main air pipeline, the other end of the negative pressure electromagnetic valve is connected with the vacuum pump, the other end of the positive pressure electromagnetic valve is connected with the air compressor, and the negative pressure electromagnetic valve, the positive pressure electromagnetic valve and the main air pipeline are arranged on the main air pipeline and are respectively connected with the controller. When the metering pump is in a suction state, the negative pressure electromagnetic valve is opened, the pressure in the metering chamber A is lower than the atmospheric pressure, liquid flows into the metering chamber A through the liquid inlet one-way valve 8, at the moment, the liquid level floater 6 rises, the magnetic sensor 13 detects a magnetic signal of magnetic steel in the liquid level floater 6, the controller 15 controls the stepping motor 10 to rotate to drive the sliding block 14 to rise to follow the position change of the liquid level floater 6, and meanwhile, the controller 15 records the rotating step number of the stepping motor 10; when the liquid level floater 6 reaches the set height, closing the negative pressure electromagnetic valve; and in the discharging state of the metering pump, the positive pressure electromagnetic valve is opened, so that the compressed gas in the air compressor enters the metering chamber A, the internal pressure of the metering chamber A is higher than the external pressure, and the liquid flows out of the metering chamber A through the liquid outlet one-way valve 9. At the moment, the magnetic sensor 13 detects the signal of the magnetic steel of the liquid level floater 6 and moves downwards along with the liquid level floater 6 under the driving of the stepping motor 10; when the controller 15 detects that the liquid level float 6 reaches the specified position, the positive pressure solenoid valve is closed, and the compressed gas is stopped from entering the metering chamber a, thereby stopping the liquid from flowing out.
The pneumatic metering pump is characterized by further comprising an alarm device, wherein the alarm device is connected with the controller 15 and used for giving out sound and light alarm when the controller 15 detects abnormality.
The limit switches 12 and 18 are photoelectric switches and are composed of two parts, namely a light emitter and a light receiver, and the sliding block 14 is provided with a light barrier capable of cutting off the photoelectric switches.
When the pneumatic metering pump is used for measurement, the measurement method comprises the following steps:
Step 1, when the controller 15 is powered on, the photoelectric device of the lower limit switch 18 is in a conducting state, at this time, the controller 15 drives the stepping motor 10 to rotate and drives the sliding block 14 to move to the lower limit switch 18, a light barrier on the sliding block 14 separates a transmitter and a receiver of the photoelectric switch 12 to send a turn-off signal, and the controller 15 receives the turn-off signal to complete zero calibration, which is called as a calibration step;
step 2, the controller 15 controls the negative pressure electromagnetic valve to be opened, liquid flows into the metering chamber A through the liquid inlet one-way valve 8, the liquid level floater 6 rises along with the rise of the liquid level height, after the magnetic sensor 13 detects a position signal of the magnetic steel 7 in the liquid level floater 6, the controller 15 controls the stepping motor 10 to rotate to drive the sliding block 14 to follow the position change of the liquid level floater 6, and meanwhile, the controller 15 records the rotating steps of the stepping motor 10; after the liquid level floater 6 reaches the designated position, the negative pressure electromagnetic valve is closed, and the controller 15 calculates the liquid volume in the metering chamber A according to the liquid level height and the sectional area of the metering chamber, which is called as a suction step;
Step 3, opening a positive pressure electromagnetic valve to enable liquid in the metering chamber A to flow out of the metering chamber A through the liquid outlet one-way valve 9 under the drive of air pressure, controlling the rotation of the stepping motor 10 by the controller 15 to drive the slider 14 to follow the position change of the liquid level floater 6 after the magnetic sensor 13 detects a position signal of the magnetic steel 7 in the liquid level floater 6, and simultaneously recording the number of steps of the rotation of the stepping motor 10 by the controller 15; after the liquid level float 6 reaches the specified position, the positive pressure solenoid valve is closed, and the controller 15 calculates the volume of the liquid to be pumped out from the height change of the liquid level and the sectional area of the metering chamber a, which is called a pumping-out step.
In the 1 st step, the 2 nd step and the 3 rd step of the measuring method, the controller 15 controls the stepping motor 10 to rotate by a pulse signal sent to the stepping motor 10, wherein the pulse signal is divided into a forward rotation direction and a reverse rotation direction, and the forward rotation direction and the reverse rotation direction respectively correspond to the forward rotation direction and the reverse rotation direction of the output shaft of the stepping motor 10; in the steps 2 and 3, the controller 15 calculates the liquid level height of the liquid to be measured according to the forward rotation type and the reverse rotation type of the pulse signals and the number of the pulse signals, so as to calculate the volumes of the liquid to be sucked and pumped.
It should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and that the present invention can also be modified and improved, for example, the magnetic sensor on the slider can be a proximity switch, a hall element or a reed pipe, and the lead screw can be a coding strip or a soft rope, and the above embodiments and the description only describe the principle of the present invention, and these modifications and improvements fall within the scope of the present invention as claimed.

Claims (6)

1. the utility model provides a pneumatic measuring pump, includes the pump body, inside measurement cavity and the detection cavity of being equipped with of pump body, its characterized in that: the upper end of the metering cavity is provided with an air inlet and an air outlet, the lower end of the metering cavity is provided with a liquid inlet and a liquid outlet, and the liquid inlet and the liquid outlet are respectively provided with a liquid inlet check valve and a liquid outlet check valve; a liquid level floater capable of freely moving is arranged in the metering chamber, and magnetic steel is arranged on one side, close to the detection chamber, in the liquid level floater; the detection chamber is provided with a stepping motor, an output shaft of the stepping motor is connected with a screw rod capable of synchronously rotating with the output shaft, one side of the screw rod is fixed with a guide rod arranged in parallel with the screw rod, the screw rod is provided with a slide block capable of moving up and down along with the rotation of the screw rod, and the other side of the slide block is sleeved on the guide rod in a sliding manner; a detection plate is arranged on one side, close to the magnetic steel in the metering chamber, of the sliding block, and a magnetic sensor is arranged on the detection plate; the detection chambers at the upper end and the lower end of the guide rod are respectively provided with an upper limit switch and a lower limit switch; and a controller is arranged in the detection chamber and is respectively in control connection with the stepping motor, the limit switch and the detection plate through leads.
2. The pneumatic metering pump of claim 1, wherein: a flow guide disc is fixed below the air inlet and outlet in the metering chamber, and a plurality of flow guide holes are uniformly formed in the flow guide disc.
3. The pneumatic metering pump of claim 2, wherein: a safety valve floater is arranged in a through hole in the flow guide disc and positioned right below the air inlet and outlet, and magnetic steel is arranged in the safety valve floater; and a safety valve detection plate connected with the controller is arranged on one side of the air inlet and the air outlet of the metering chamber, and a reed pipe is arranged on the safety valve detection plate.
4. A pneumatic metering pump according to any one of claims 1 to 3, wherein: the air inlet and outlet are respectively connected with a negative pressure electromagnetic valve and a positive pressure electromagnetic valve through a main air path pipeline, the other end of the negative pressure electromagnetic valve is connected with a vacuum pump, the other end of the positive pressure electromagnetic valve is connected with an air compressor, and the main air path pipeline is provided with a main air path electromagnetic valve; the negative pressure electromagnetic valve, the positive pressure electromagnetic valve and the main air path electromagnetic valve are respectively connected with the controller.
5. The pneumatic metering pump of claim 4, wherein: the pneumatic metering pump further comprises an alarm device, and the alarm device is connected with the controller.
6. The pneumatic metering pump of claim 4, wherein: the limit switch is a photoelectric switch and consists of an optical transmitter and an optical receiver, and the sliding block is provided with a light barrier capable of cutting off the photoelectric switch.
CN201920348642.9U 2019-03-19 2019-03-19 pneumatic metering pump Active CN209800181U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920348642.9U CN209800181U (en) 2019-03-19 2019-03-19 pneumatic metering pump

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920348642.9U CN209800181U (en) 2019-03-19 2019-03-19 pneumatic metering pump

Publications (1)

Publication Number Publication Date
CN209800181U true CN209800181U (en) 2019-12-17

Family

ID=68825370

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920348642.9U Active CN209800181U (en) 2019-03-19 2019-03-19 pneumatic metering pump

Country Status (1)

Country Link
CN (1) CN209800181U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111706506A (en) * 2020-06-18 2020-09-25 潍坊工程职业学院 Pneumatic driven liquid flowing device for pneumatic liquid conveying mechanism
CN111720284A (en) * 2019-03-19 2020-09-29 上海雅燊电子技术有限公司 Pneumatic metering pump and measuring method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111720284A (en) * 2019-03-19 2020-09-29 上海雅燊电子技术有限公司 Pneumatic metering pump and measuring method thereof
CN111720284B (en) * 2019-03-19 2022-07-05 上海雅燊电子技术有限公司 Pneumatic metering pump and measuring method thereof
CN111706506A (en) * 2020-06-18 2020-09-25 潍坊工程职业学院 Pneumatic driven liquid flowing device for pneumatic liquid conveying mechanism

Similar Documents

Publication Publication Date Title
CN111720284B (en) Pneumatic metering pump and measuring method thereof
US11187217B2 (en) Method and system for metering fluid flow from a fluid source based on a count of pump strokes
CN209800181U (en) pneumatic metering pump
JP5748423B2 (en) Reciprocating pump with electronically monitored air valve and piston
KR20160114528A (en) System for measuring temporally resolved through-flow processes of fluids
JPS63105291A (en) Device for measuring and monitoring flow rate of positive displacement pump and pump mounted to said device
US9841015B2 (en) Arrangement and method for measuring a delivery volume and a delivery rate of an intermittently operating pump
CN101435712B (en) Device for measuring air volume flow
CN104165661B (en) A kind of low pressure loss differential pressure flowmeter and its scaling method and flow metering method
CN212360062U (en) Pneumatic metering pump
US20210138139A1 (en) Pump system, dialysis machine, and method of operating a pump
CN104197998A (en) Low-pressure-loss leakage detecting differential pressure type flow detection device, calibration method and measurement method
US20150064025A1 (en) High Viscosity Portion Pump
CN112146720A (en) Micro gas flow measuring device and method
US20190154019A1 (en) Coating agent pump
CN211755909U (en) System for controlling material flow by using pump speed
CN204756100U (en) Pulse control automatically controlled valve of consumption position feedback bistable state that declines
CN102506950A (en) Device for detecting free flow and back pressure flow of electromagnetic pump and detection method
CN110887536A (en) Water-blocking type flow measuring device
CN2092089U (en) Liquid flowmeter
JP2010077931A (en) Device for flow rate measuring inspection of inspection object and method for inspection by flow rate measurement of inspection object
CN110825127A (en) Safe and reliable's intelligent electronic type vacuum drainage controller
CN220354020U (en) Novel plunger infusion pump
CN219796313U (en) Hydraulic valve capable of detecting valve opening
CN2646413Y (en) Accurate trace quantity metering pump

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant