Filter screen flow detection equipment and system
By designing a filter flow detection equipment and system including sorting boxes, one-way pooling pipes, adapter members and monitoring members, the problem of fluid filtration quality in the prior art cannot be guaranteed and the detection instrument is vulnerable to damage, effective monitoring and control of fluid quality, and improved the service life and measurement accuracy of the equipment.
Patent Information
- Application Number
- CN202510159355.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-05-13
AI Technical Summary
When existing filter flow detection equipment detects different types of filter mechanisms, the quality of the fluid after filtering cannot be well guaranteed, and low-quality fluids may lead to clogging and damage to the detection instrument.
A filter flow detection device and system including a mechanism to be tested, a flow detector and a communication component are designed. The communication components include sorting boxes, one-way pooling connectors, adapter members and monitoring members. These components enable monitoring and control of fluid quality and avoid direct contact with the detection instrument of low-mass fluid.
Effectively monitor and control the quality of filtered fluids, prevent blockage and damage of detection instruments caused by low-quality fluids, and improve the service life of the equipment and measurement accuracy.
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Figure CN119985254A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of filter net flow detection, and in particular to a filter net flow detection device and system. Background Art
[0002] Filter flow detection equipment is an important tool for measuring and monitoring the flow performance of fluids (such as liquids or gases) passing through filters. Existing filter flow detection equipment combines the functions of filtering and flow measurement, which can ensure that the fluid still maintains certain flow characteristics after passing through the filter, and can accurately measure and record flow data;
[0003] At present, the actual use of the filter flow detection equipment is mainly based on the pressure difference, heat change or other related parameters of the fluid flowing through the pipeline to measure the flow. Specifically, in the equipment, the fluid first passes through the filter to filter impurities and particles, and then enters the flow meter part for measurement, where the flow meter calculates the flow by sensing the physical changes (such as pressure difference, flow rate, etc.) when the fluid flows through.
[0004] When the existing filter flow detection equipment is tested, it is necessary to detect the flow rate and corresponding detection data generated by the specified fluid application and different types of filter mechanisms. Therefore, when different types of filter mechanisms are replaced, the quality of the fluid after filtration cannot be well guaranteed. For example, when using filter mechanisms with different mesh sizes to process a specified liquid or gas, the flow data detected by the mechanism with a larger mesh number will be higher, but the quality of the liquid and gas after the final filtration will be poor. On the contrary, although the quality of the liquid and gas filtered by the mechanism with a smaller mesh number is better, the overall flow rate will be reduced accordingly. The tester needs to combine multiple types of data to apply the appropriate mechanism to different occasions. For the existing filter flow detection equipment, since the corresponding filter mechanism is set inside, when the quality of the detected fluid is low, that is, the fluid contains more impurities, particulate matter or suspended matter, these substances are likely to clog the sensor or probe of the flow detection equipment, thereby affecting its measurement accuracy and stability, and even directly causing damage to the equipment. Summary of the invention
[0005] The object of the present invention is to provide a filter flow detection device and system, which can monitor the filtered fluid through the provided components and its system, and when it is detected that the quality of the filtered fluid is abnormal, it can avoid direct contact between the fluid and the detection instrument, thereby avoiding damage to the detection instrument due to long-term detection of low-quality fluid.
[0006] To achieve the above-mentioned purpose, the present invention provides a filter flow detection device and system, including a mechanism to be tested and a flow detector, and also includes a connecting component;
[0007] The connecting component includes a sorting box, a sorting inner core, a one-way collecting pipe, a transfer component and a monitoring component; two of the sorting boxes and the one-way collecting pipe are provided, and the two sorting boxes are both equipped with the one-way collecting pipes, one of the sorting boxes equipped with the one-way collecting pipes is connected to the mechanism to be tested through corresponding pipelines, and the other sorting box equipped with the one-way collecting pipes is connected to the mechanism to be tested through the corresponding one-way collecting pipes, and the sorting inner core is installed on each of the sorting boxes, the transfer component is connected to the flow detector, and is used to introduce the fluid derived from the collecting pipes into the flow detector under the condition of complying with the specified regulation, and the monitoring component is connected to the sorting box, and is used to monitor the quality of the fluid passing through the inside of the sorting box.
[0008] Wherein, the transfer component includes a three-way connector, a one-way flow valve core, a control element and a transfer component, the three-way connector is connected to the collecting pipe and connected to the flow detector; the one-way flow valve core is installed in the three-way connector; the control element is connected to the one-way flow valve core for driving the one-way flow valve core; the transfer component is connected to the three-way connector for temporarily storing fluids that do not meet the requirements.
[0009] Among them, the monitoring component includes a gas detector and a liquid detector. The gas detector is connected to the sorting box and is used to monitor the quality of the gas passing through the sorting box; the liquid detector is installed on a side of the sorting box away from the gas detector and is used to monitor the quality of the liquid passing through the sorting box.
[0010] Wherein, the transfer component includes a storage box, a transparent observation window and an air pressure sensor, the storage box is connected to the three-way connector; the transparent observation window is arranged on the storage box; and the air pressure sensor is installed on one side of the storage box.
[0011] Among them, the connecting component also includes an indicator plate, a marking block and a twisting component, the indicator plate is fixedly installed on the top of the sorting inner core; the marking block is installed on the side of the sorting box close to the indicator plate; the twisting component is connected to the sorting inner core and is used to drive and limit the sorting inner core accordingly.
[0012] Among them, the twisting component includes a sliding frame, an extrusion spring and a twist lock handle, the sliding frame is slidably installed on the top of the sorting inner core; the two sides of the extrusion spring are respectively connected to the sliding frame and the sorting inner core; the twist lock handle is fixedly installed on the top of the sliding frame.
[0013] Among them, a filter flow detection system adopts the filter flow detection device, including an import module, a data processing module, a control module and an early warning module.
[0014] The import module is connected to the control module, the data processing module is connected to the control module, and the early warning module is connected to the control module;
[0015] The introduction module is used to introduce the fluid to be tested into the designated device;
[0016] The data processing module is used to receive and process the corresponding data output by the flow detector and the monitoring component, and then send the corresponding control instructions generated according to the processing results to the control module;
[0017] The control module controls the import module and corresponding elements in the transfer member according to corresponding control instructions;
[0018] The early warning module is used to remind operators to perform maintenance and inspection on the equipment.
[0019] Wherein, the data processing module includes a signal receiving unit, a judging unit and an output unit, the judging unit is connected to the receiving unit, and the output unit is connected to the judging unit;
[0020] The signal receiving unit is used to receive corresponding data output by the flow detector and the monitoring component;
[0021] The judgment unit is used to judge and analyze the received data according to preset rules;
[0022] The output unit is used to output the final analysis result of the judgment unit.
[0023] The present invention provides a filter flow detection device, wherein the mechanism to be tested is a corresponding element that needs to detect the filter flow, and the flow detector is a main detection element for monitoring the flow of the filter box. The sorting box, the sorting inner core and the one-way collecting pipe cooperate with the monitoring component to form a corresponding fluid selection structure. The feed end and the discharge end of the mechanism to be tested are connected to the entire fluid selection structure through corresponding pipelines. The sorting box is provided with a feed channel and two discharge channels. A feed channel and two discharge channels inside the sorting box are controlled by the sorting inner core. The sorting inner core is cylindrical as a whole. The sorting inner core is provided with an "L"-shaped channel, so that when the sorting inner core is rotated to a certain angle, a feed channel can be connected to a designated discharge channel, and the undesignated discharge channel will be blocked by the sorting inner core. The two discharge channels can directly change the connection relationship with the feed channel by rotating the sorting inner core, thereby completing the control of the internal connection relationship of the sorting box.
[0024] The one-way collecting pipe is installed at the outlet end of the two discharge channels of the sorting box, and the one-way collecting pipe is provided with two inlet joints and one outlet joint, wherein the two inlet joints are respectively connected with the two discharge channels inside the sorting box, and at the same time, a one-way liquid valve and a one-way gas valve are respectively installed on the pipes connecting the one-way collecting pipe and the two discharge channels of the sorting box, so that the fluid passing through the inside of the sorting box can only flow out in one direction through the one-way collecting pipe, the discharge channel of the sorting box connected with the one-way collecting pipe provided with the one-way liquid valve is a liquid flow channel, and the discharge channel connected with the one-way collecting pipe provided with the one-way gas valve is a gas flow channel, and the gas detector and the liquid detector are respectively arranged in the gas flow channel and the liquid flow channel of the sorting box, so that the user can select different channels for detection by controlling the sorting inner core according to the actual detected fluid conditions;
[0025] The main reason for using two channels to detect different types of fluids is that the structures of the detection elements for liquids and gases are different. If they are directly mixed, it is easy to cause damage to the elements. In this way, when detecting the flow of the fluid filter, the user can use the gas detector or the liquid detector to detect the quality of the fluid before and after filtration. When it is detected that the quality of the filtered fluid does not meet the requirements, the adapter component will cut off the connection between the flow detector and the one-way collecting pipe to avoid damage to the flow detector. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art are briefly introduced below.
[0027] Figure 1 It is a schematic diagram of the structure of the filter flow detection device and the system as a whole of the present invention.
[0028] Figure 2 The present invention Figure 1 Enlarged view of point A.
[0029] Figure 3 It is a schematic diagram of the structure of a sorting box of the present invention when it is cut open.
[0030] Figure 4 It is a schematic structural diagram of a three-way connector of the present invention when it is cut apart.
[0031] Figure 5 The present invention Figure 4 Enlarged view of point B.
[0032] Figure 6 It is a schematic structural diagram of a cutaway separation inner core of the present invention.
[0033] Figure 7 The present invention Figure 6 Enlarged view of point C.
[0034] Figure 8 It is a structural schematic diagram of the filter flow detection system of the present invention.
[0035] Fig. 9 It is a structural schematic diagram of the data processing module of the present invention.
[0036] In the figure: 1-mechanism to be tested, 2-flow detector, 3-sorting box, 4-sorting inner core, 5-one-way collecting pipe, 6-transfer component, 7-monitoring component, 8-indicator plate, 9-marking block, 10-twisting component, 601-three-way connector, 602-one-way flow valve core, 603-control element, 604-transfer component, 701-gas detector, 702-liquid detector, 1001-sliding frame, 1002-extrusion spring, 1003-twist lock handle, 6041-storage box, 6042-transparent observation window, 6043-air pressure sensor, 100-import module, 200-data processing module, 300-control module, 400-early warning module, 2001-signal receiving unit, 2002-judgment unit, 2003-output unit. DETAILED DESCRIPTION
[0037] Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limiting the present invention.
[0038] In the description of the present invention, it should be understood that “plurality” means two or more than two, unless otherwise clearly and specifically defined.
[0039] See also Figures 1 to 7 The present invention provides a filter flow detection device: comprising a mechanism to be detected 1, a flow detector 2 and a connecting component, wherein the connecting component comprises a sorting box 3, a sorting inner core 4, a one-way collecting pipe 5, a switching component 6 and a monitoring component 7, wherein the switching component 6 comprises a three-way connector 601, a one-way flow valve core 602, a control element 603 and a transfer component 604, wherein the monitoring component 7 comprises a gas detector 701 and a liquid detector 702, wherein the transfer component 604 comprises a storage box 6041, a transparent observation window 6042 and an air pressure sensor 6043. The above-mentioned solution solves the problem that when the existing filter flow detection device is used for detection, since it is necessary to detect the flow generated by the application of a specified fluid and different types of filter mechanisms and the corresponding detection data, when different types of filter mechanisms are replaced, the quality of the fluid after filtration is different. The quantity cannot be well guaranteed. For example, when using filter mechanisms with different mesh sizes to process specified liquids or gases, the flow data detected by the mechanism with a larger mesh size will be higher, but the quality of the filtered liquid and gas will be poorer. On the contrary, although the quality of the liquid and gas filtered by the mechanism with a smaller mesh size is better, the overall flow rate will be reduced accordingly. The testers need to combine multiple types of data to apply the appropriate mechanism to different occasions. For the existing filter flow detection equipment, since the corresponding filtering mechanism will be set inside, when the quality of the detected fluid is low, that is, the fluid contains more impurities, particulate matter or suspended matter, these substances will likely block the sensor or probe of the flow detection equipment, thereby affecting its measurement accuracy and stability, and even directly causing damage to the equipment.
[0040] Furthermore, two of the sorting boxes 3 and the one-way collecting pipes 5 are provided, and the two sorting boxes 3 are both equipped with the one-way collecting pipes 5. One of the sorting boxes 3 equipped with the one-way collecting pipes 5 is connected to the mechanism 1 to be tested through a corresponding pipeline, and the other sorting box 3 equipped with the one-way collecting pipes 5 is connected to the mechanism 1 to be tested through the corresponding one-way collecting pipes 5. The sorting inner core 4 is installed on each of the sorting boxes 3. The adapter component 6 is connected to the flow detector 2 for introducing the fluid discharged from the collecting pipes into the flow detector 2 under the condition of complying with the specified adjustment. The monitoring component 7 is connected to the sorting box 3 for monitoring the quality of the fluid passing through the inside of the sorting box 3.
[0041] Furthermore, the gas detector 701 is connected to the sorting box 3 for monitoring the quality of the gas passing through the sorting box 3; the liquid detector 702 is installed on a side of the sorting box 3 away from the gas detector 701 for monitoring the quality of the liquid passing through the sorting box 3.
[0042] Specifically, the tested mechanism 1 is a corresponding element that needs to detect the flow of the filter screen, and the flow detector 2 is a main detection element for monitoring the flow of the filter box. The sorting box 3, the sorting inner core 4 and the one-way collecting pipe 5 cooperate with the monitoring component 7 to form a corresponding fluid selection structure. The feed end and the discharge end of the tested mechanism 1 are connected to the entire fluid selection structure through corresponding pipelines. The sorting box 3 is provided with a feed channel and two discharge channels. The feed channel and the two discharge channels inside the sorting box 3 are controlled by the sorting inner core 4. The sorting inner core 4 is cylindrical as a whole. The sorting inner core 4 is provided with an "L"-shaped channel, so that when the sorting inner core 4 is rotated to a certain angle, a feed channel can be connected to a designated discharge channel, and the undesignated discharge channel will be blocked by the sorting inner core 4. The two discharge channels can directly change the connection relationship with the feed channel through the rotation of the sorting inner core 4, thereby completing the control of the internal connection relationship of the sorting box 3;
[0043] The one-way collecting pipe 5 is installed at the outlet end of the two discharge channels of the sorting box 3, and the one-way collecting pipe 5 is provided with two inlet joints and one outlet joint, wherein the two inlet joints are respectively connected to the two discharge channels inside the sorting box 3, and at the same time, a one-way liquid valve and a one-way gas valve are respectively installed on the pipelines connecting the one-way collecting pipe 5 and the two discharge channels of the sorting box 3, so that the fluid passing through the inside of the sorting box 3 can only flow out in one direction through the one-way collecting pipe 5, and the discharge channel of the sorting box 3 connected with the one-way collecting pipe 5 provided with the one-way liquid valve is a liquid flow channel, while the discharge channel connected with the one-way collecting pipe 5 provided with the one-way gas valve is a gas flow channel, and the gas detector 701 and the liquid detector 702 are respectively arranged in the gas flow channel and the liquid flow channel of the sorting box 3, so that the user can select different channels for detection by controlling the sorting inner core 4 according to the actual detected fluid conditions;
[0044] The main reason for using two channels to detect different types of fluids is that the structures of the detection elements for liquids and gases are different. If they are directly mixed, it is easy to cause damage to the elements. In this way, when detecting the flow of the fluid filter, the user can use the gas detector 701 or the liquid detector 702 to detect the quality of the fluid before and after filtration. When it is detected that the quality of the filtered fluid does not meet the requirements, the adapter component 6 will cut off the connection between the flow detector 2 and the one-way collecting pipe 5 to avoid damage to the flow detector 2.
[0045] Furthermore, the three-way connector 601 is connected to the collecting pipe and to the flow detector 2; the one-way flow valve core is installed in the three-way connector 601; the control element 603 is connected to the one-way circulation valve core 602, and is used to drive the one-way circulation valve core 602; the transfer component 604 is connected to the three-way connector 601, and is used to temporarily transfer the fluid that does not meet the requirements.
[0046] Furthermore, the storage box 6041 is connected to the three-way connector 601 ; the transparent observation window 6042 is provided on the storage box 6041 ; and the air pressure sensor 6043 is installed on one side of the storage box 6041 .
[0047] When this embodiment is used, the structure of the three-way connector 601 is similar to that of the sorting box 3, and three connecting channels are arranged inside. The three-way connector 601 is controlled by the one-way flow valve core 602, and the one-way flow valve core 602 has the same structure and function as the sorting inner core 4. The one-way flow valve core 602 is controlled by the control element 603. In this solution, the control element 603 is a control motor, so that the one-way flow valve core 602 can rotate under the action of the control element 603, thereby realizing the connection conversion between the three channels inside the three-way connector 601;
[0048] One feed channel of the three-way connector 601 is connected to one outlet joint of the one-way collecting pipe 5, and two discharge channels provided in the three-way connector 601 are respectively connected to the flow detector 2 and the storage box 6041. The storage box 6041 is provided with the transparent observation window 6042 and the air pressure sensor 6043, so that the user can observe the liquid and gas stored in the storage box 6041. When it is observed that too much liquid or gas is stored in the storage box 6041, the operator needs to take corresponding measures;
[0049] In actual operation, when the gas detector 701 or the liquid detector 702 detects that the quality of the filtered fluid does not meet the requirements, the control element 603 will drive the one-way flow valve core 602 to rotate, so that the subsequent fluid will enter the storage box 6041 for storage. The storage box 6041 is used for storage mainly to avoid the leakage of fluid that does not meet the requirements, causing waste of resources or even pollution of the external environment.
[0050] Preferably, the connecting assembly provided by the present invention further includes an indicator plate 8 , a marking block 9 and a twisting component 10 , and the twisting component 10 includes a sliding frame 1001 , a compression spring 1002 and a twisting lock handle 1003 .
[0051] Furthermore, the indicator plate 8 is fixedly mounted on the top of the sorting inner core 4; the marking block 9 is mounted on the side of the sorting box 3 close to the indicator plate 8; the twisting component 10 is connected to the sorting inner core 4 for corresponding driving and limiting of the sorting inner core 4.
[0052] Furthermore, the sliding frame 1001 is slidably installed on the top of the sorting inner core 4; the two sides of the extrusion spring 1002 are respectively connected to the sliding frame 1001 and the sorting inner core 4; the twist lock handle 1003 is fixedly installed on the top of the sliding frame 1001.
[0053] When the present embodiment is in use, the marking block 9 is arranged in the marking groove arranged on the top of the sorting box 3, and the indicating plate 8 is fixedly sleeved on the protruding cylinder on the top of the sorting inner core 4. The marking block 9 can be marked with two markings of gas and liquid according to the situation, and then the indicating plate 8 points to the corresponding marking to allow the user to quickly determine the actual conduction direction of the sorting inner core 4;
[0054] The top cylinder of the sorting inner core 4 is also slidably mounted with the sliding frame 1001, and the corresponding extrusion spring 1002 is arranged on the sliding frame 1001. The twist lock handle 1003 is fixed on the top of the sliding frame 1001. The twist lock handle 1003 is composed of a top flat handle and a lower fork frame. The bottom end of the lower fork frame provided with the twist lock handle 1003 is provided with an insertion round table. The top of the sorting box 3 is provided with two sockets for cooperating with the twist lock handle 1003 to be inserted into the original table. The positions of the two sockets correspond to the two rotation states of the twist lock handle 1003 and the sorting inner core 4 respectively. When it is necessary to change When detecting the fluid state, the user can first lift the twist lock handle 1003, so that the bottom end of the twist lock handle 1003 is inserted into the round table and pulled out from the socket on the top of the sorting box 3, and then the sorting valve core is driven to rotate by twisting the twist lock handle 1003, and then the insertion round table at the bottom of the twist lock handle 1003 cooperates with another socket on the top of the sorting box 3, thereby completing the conversion and limiting of the conduction state of the sorting inner core 4. In this way, the conduction state of the sorting inner core 4 is converted manually, which can greatly reduce the maintenance of the corresponding electronic components and control circuits.
[0055] See also Figure 8 and Fig. 9 A filter flow detection system adopts the filter flow detection device, characterized in that it includes an import module 100, a data processing module 200, a control module 300 and an early warning module 400.
[0056] The import module 100 is connected to the control module 300, the data processing module 200 is connected to the control module 300, and the early warning module 400 is connected to the control module 300;
[0057] The introduction module 100 is used to introduce the fluid to be tested into the designated device;
[0058] The data processing module 200 is used to receive and process the corresponding data output by the flow detector 2 and the monitoring component 7, and then send the corresponding control instructions generated according to the processing results to the control module 300;
[0059] The control module 300 controls the corresponding elements in the introduction module 100 and the transfer member 6 according to the corresponding control instructions;
[0060] The warning module 400 is used to remind the operator to perform maintenance and inspection on the equipment.
[0061] Further, the data processing module 200 includes a signal receiving unit 2001, a judgment unit 2002 and an output unit 2003, wherein the judgment unit 2002 is connected to the receiving unit, and the output unit 2003 is connected to the judgment unit 2002;
[0062] The signal receiving unit 2001 is used to receive the corresponding data output by the flow detector 2 and the monitoring component 7;
[0063] The judgment unit 2002 is used to judge and analyze the received data according to preset rules;
[0064] The output unit 2003 is used to output the final analysis result of the judgment unit 2002.
[0065] Specifically, the import module 100 is mainly used to import the specified fluid to be tested into the fluid selection structure connected to the feed end of the tested mechanism 1, that is, the sorting box 3 arranged on one side of the feed end of the tested mechanism 1, and then select the gas detector 701 or the liquid detector 702 installed on the two channels inside the sorting box 3 according to the type of the actual tested fluid to detect the quality of the imported fluid, and then the fluid passes through the tested mechanism 1 into the sorting box 3 connected to the discharge end of the tested mechanism 1, completing the normal circulation and detection of the subsequent fluid;
[0066] The data processing module 200 collects specific data of the flow detector 2 and the gas detector 701 and the liquid detector 702 in the monitoring component 7 through the signal receiving unit 2001. For the flow detector 2, it is mainly used to collect the flow data detected by the flow detector 2. When the judgment unit 2002 analyzes the detected data of the flow detector 2 and finds that the data of the flow detector 2 is always lower than the preset range, it proves that the filter screen in the flow detector 2 is likely to be blocked, and then cooperates with the output unit 2003 to output the corresponding control instruction to let the control template activate the early warning module 400. Finally, the early warning module 400 reminds the operator to check and maintain the instrument in time to avoid the instrument being in an abnormal working state for a long time and being damaged;
[0067] For the gas detector 701 and the liquid detector 702, the signal receiving unit 2001 mainly collects the detected fluid quality data, and then analyzes the detected fluid quality data through the judgment unit 2002. When it is analyzed that the fluid quality does not meet the preset requirements, the output unit 2003 will output the corresponding control instruction, so that the control module 300 operates the control element 603 set in the adapter component 6, so that the control element 603 drives the one-way flow valve core 602 to rotate, and then introduces the corresponding fluid into the storage box 6041, thereby avoiding the flow detector 2 from being in contact with the fluid that does not meet the requirements for a long time.
[0068] What is disclosed above is only one or more preferred embodiments of the present application, and cannot be used to limit the scope of rights of the present application. Ordinary technicians in this field can understand that all or part of the processes of implementing the above embodiments and equivalent changes made according to the claims of the present application are still within the scope covered by the present application.
Claims
1. A filter flow detection device, comprising a mechanism to be tested and a flow detector, characterized in that: Also included are connectivity components; The connecting component includes a sorting box, a sorting inner core, a one-way collecting pipe, a transfer component and a monitoring component; two of the sorting boxes and the one-way collecting pipe are provided, and the two sorting boxes are both equipped with the one-way collecting pipes, one of the sorting boxes equipped with the one-way collecting pipes is connected to the mechanism to be tested through corresponding pipelines, and the other sorting box equipped with the one-way collecting pipes is connected to the mechanism to be tested through the corresponding one-way collecting pipes, and the sorting inner core is installed on each of the sorting boxes, the transfer component is connected to the flow detector, and is used to introduce the fluid derived from the collecting pipes into the flow detector under the condition of complying with the specified regulation, and the monitoring component is connected to the sorting box, and is used to monitor the quality of the fluid passing through the inside of the sorting box.
2. The filter flow detection device according to claim 1, characterized in that: The transfer component includes a three-way connector, a one-way flow valve core, a control element and a transfer component. The three-way connector is connected to the collecting pipe and to the flow detector; the one-way flow valve core is installed in the three-way connector; the control element is connected to the one-way flow valve core and is used to drive the one-way flow valve core; the transfer component is connected to the three-way connector and is used to temporarily store fluids that do not meet the requirements.
3. The filter flow detection device according to claim 1, characterized in that: The monitoring component includes a gas detector and a liquid detector. The gas detector is connected to the sorting box and is used to monitor the quality of the gas passing through the sorting box; the liquid detector is installed on a side of the sorting box away from the gas detector and is used to monitor the quality of the liquid passing through the sorting box.
4. The filter flow detection device according to claim 2, characterized in that: The transfer component includes a storage box, a transparent observation window and an air pressure sensor. The storage box is connected to the three-way connector; the transparent observation window is arranged on the storage box; and the air pressure sensor is installed on one side of the storage box.
5. The filter flow detection device according to claim 1, characterized in that: The connecting component also includes an indicator plate, a marking block and a twisting component. The indicator plate is fixedly installed on the top of the sorting inner core; the marking block is installed on the side of the sorting box close to the indicator plate; the twisting component is connected to the sorting inner core and is used to drive and limit the sorting inner core accordingly.
6. The filter flow detection device according to claim 5, characterized in that: The twisting component includes a sliding frame, an extrusion spring and a twist lock handle. The sliding frame is slidably installed on the top of the sorting inner core; the two sides of the extrusion spring are respectively connected to the sliding frame and the sorting inner core; the twist lock handle is fixedly installed on the top of the sliding frame.
7. A filter flow detection system, using the filter flow detection device as claimed in claim 1, characterized in that: It includes import module, data processing module, control module and early warning module. The import module is connected to the control module, the data processing module is connected to the control module, and the early warning module is connected to the control module; The introduction module is used to introduce the fluid to be tested into the designated device; The data processing module is used to receive and process the corresponding data output by the flow detector and the monitoring component, and then send the corresponding control instructions generated according to the processing results to the control module; The control module controls the import module and corresponding elements in the transfer member according to corresponding control instructions; The early warning module is used to remind operators to perform maintenance and inspection on the equipment.
8. The filter flow detection system according to claim 7, characterized in that: The data processing module includes a signal receiving unit, a judging unit and an output unit, wherein the judging unit is connected to the receiving unit, and the output unit is connected to the judging unit; The signal receiving unit is used to receive corresponding data output by the flow detector and the monitoring component; The judgment unit is used to judge and analyze the received data according to preset rules; The output unit is used to output the final analysis result of the judgment unit.