Flow warning detection system

Through the combination design of the sensor motherboard slot and the annular valve slot frame, the problem of hasty alarm time of cylinder explosion or pipe explosion caused by the liquid level sensor is solved, and more accurate flow warning detection and tight coverage of the sensing motherboard are achieved to ensure emergency treatment time.

CN223283705UActive Publication Date: 2025-08-29FUJIAN BENLIU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422679835.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-08-29
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The placement of the liquid level sensor during flange docking and flow detection can easily cause the critical alarm to approach the explosion cylinder or explosion tube, resulting in a hasty warning and detection reaction time, and the sensor motherboard is in a tight series connection.

Method used

The structural design of components such as sensor motherboard slots, digital displays, beam line branch pipes, annular valve slot frames, flanges, etc. is adopted. Through the cooperation of the sensor tube and the back frame tube frame, a high and low-level sensing integration is formed to achieve accurate coverage flow warning detection and reserve emergency treatment time.

Benefits of technology

The real-time flow warning detection and the series connection density of the sensing motherboard are improved, ensuring that staff have enough time to carry out emergency treatment and avoiding the risk of cylinder or pipe burst.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223283705U_ABST
Patent Text Reader

Abstract

The utility model discloses a flow warning detection system, which belongs to the field of electronic equipment and structurally comprises a sensing main board groove, a digital display, a bunch branch pipe, an annular valve groove frame and a flange plate, the sensing main board groove is nested on the rear side of the digital display, the bunch branch pipe is inserted and embedded under the bottom of the sensing main board groove and is perpendicular to the sensing main board groove, and the annular valve groove frame is arranged on the annular valve groove frame. According to the utility model, the sensing mainboard groove is matched with the annular valve groove frame, and the embedded pipe is surrounded by the valve groove shell through the sensor pipe and the frame pipe frame shaped like the Chinese character'hui ', so that the flow warning detection real-time data of the valve and the pipeline can be more accurately covered by combining the whole alignment angle and the high-low position sensor integration framework; when the liquid level height of the upper middle section is reached and the serial sensing mainboard groove gives an alarm, a time period can be reserved for a worker to carry out emergency treatment and valve stopping operation.
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Description

Technical Field

[0001] The utility model relates to a flow alarm detection system, belonging to the field of electronic equipment. Background Art

[0002] Flow alarm detection is to improve the data of liquid level sensor by combining valve and pipeline connection. Usually, the integration of flow detection system is to collect and display the sensor data of multiple pipelines and valve ports on the interactive screen of human-machine interface, so as to improve the timeliness of overall flow alarm detection. The shortcomings of current technology that need to be optimized are as follows:

[0003] However, the placement of the liquid level sensor during flange docking and flow detection often results in an alarm only when the critical value of cylinder or pipe explosion is approaching, resulting in a short time for the warning detection to provide timely response and stop the loss for the staff, and the structural sensor is not tightly connected in series with the sensor motherboard. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a flow warning detection system to solve the problem that the flange docking and the placement of the liquid level sensor during flow detection often cause the alarm to be issued only when the critical value of the cylinder or pipe explosion is approaching, resulting in a short time for the warning detection to provide timely response and stop the loss for the staff, and the structural sensor is not tightly connected in series with the sensor mainboard.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical scheme: a flow warning detection system, whose structure includes: a sensor main board slot, a digital display, a wire branch pipe, an annular valve slot frame, and a flange. The sensor main board slot is nested on the rear side of the digital display, and the wire branch pipe is inserted under the bottom of the sensor main board slot and is perpendicular to each other. The wire branch pipe is inserted on the top of the annular valve slot frame and is perpendicular to each other. There are two flanges and they are respectively installed on the left and right sides of the annular valve slot frame. The sensor main board slot is provided with an integrated circuit board, a barrel slot, a single-chip microcomputer, a sensor chip, a resistor block, and a capacitor. The integrated circuit board is inserted into the inside of the barrel slot. The single-chip microcomputer, sensor chip, resistor block, and capacitor are all inserted on the top of the integrated circuit board and are perpendicular to each other. The single-chip microcomputer is electrically connected to the sensor chip through the integrated circuit board, and the barrel slot is nested on the rear side of the digital display.

[0006] In order to optimize the above technical solutions, further measures are taken as follows:

[0007] As a further improvement of the present invention, the annular valve slot frame is composed of a sensor tube, a circular frame tube frame, and a valve slot shell. The sensor tube is installed inside the circular frame tube frame, and the circular frame tube frame is nested in the front side of the valve slot shell and is on the same arc surface.

[0008] As a further improvement of the present invention, the sensor tube consists of a tube shell, a sensing column cap, and an inner core tube. There are five sensing column caps and they are nested together around the center of the inner core tube. The inner core tube is inserted into the tube shell and the axes are collinear.

[0009] As a further improvement of the present invention, the U-shaped frame pipe rack is a composite pipe rack structure in which half-bend arcs are connected to U-shaped bend pipes, which facilitates the left and right half-wrapped valve ring shells to form an external sensing flow warning detection operation effect.

[0010] As a further improvement of the present invention, the sensing column cap is a sensing cap rack structure with column caps of five sensing terminals arranged in a ring, which is convenient for adapting to sensing requirements at high and low positions and at multiple angles to form an operational effect of reserving emergency processing time.

[0011] Beneficial effects

[0012] The utility model provides a flow alarm detection system. A worker assembles a sensor main board slot, connects the wires in series to a digital display, and then lowers the wires through a wire branch pipe to connect the sensor tube of the annular valve slot frame and the circular frame pipe rack. The flange plate is connected to the pipes on the left and right to open the water level circulation. During operation, the single-chip microcomputer in the built-in tube slot on the integrated circuit board and the sensor chip are integrated with electronic components such as resistor blocks and capacitors to enable circuit flow alarm detection. The sensor column cap and the inner core tube are connected in series to form an overall high and low position sensor integrated electrical signal feedback operation effect through the tube shell in the valve slot shell.

[0013] The advantages that can be achieved after the operation of the utility model are:

[0014] By matching the sensor main board slot with the annular valve slot frame, the sensor tube and the U-shaped frame pipe frame are used to surround the buried pipe in the valve slot shell, so as to combine the overall alignment angle and the high and low position sensor integration architecture to more accurately cover the flow warning detection real-time data of the valve and pipeline. When the liquid level height in series with the sensor main board slot reaches the upper middle section, a time period can be reserved for the staff to carry out emergency treatment and valve stop operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will describe in detail the drawings in the description of the embodiments, so that other features, purposes and advantages of the present invention will become more apparent:

[0016] Figure 1 This is a structural diagram of a flow warning detection system of the present utility model.

[0017] Figure 2 This is a schematic diagram of the detailed side cross-section structure of the sensor mainboard slot of the utility model.

[0018] Figure 3It is a detailed three-dimensional cross-sectional structural diagram of the annular valve slot frame of the present invention.

[0019] Figure 4 This is a schematic diagram of the detailed side cross-section structure of the sensor tube of the present invention.

[0020] Explanation of the accompanying reference numerals: sensor main board slot-1, digital display-2, wire bundle branch pipe-3, annular valve slot frame-4, flange-5, integrated circuit board-11, cylinder slot-12, single-chip microcomputer-13, sensor chip-14, resistor block-15, capacitor-16, sensor tube-41, circular frame tube frame-42, valve slot shell-43, tube shell-411, sensor column cap-412, inner core tube-413. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0022] Example 1:

[0023] See also Figures 1-4 The utility model provides a flow alarm detection system, which includes: a sensor mainboard slot 1, a digital display 2, a wire branch pipe 3, an annular valve slot frame 4, and a flange 5. The sensor mainboard slot 1 is nested on the rear side of the digital display 2, the wire branch pipe 3 is inserted under the bottom of the sensor mainboard slot 1 and is perpendicular to each other, the wire branch pipe 3 is inserted on the top of the annular valve slot frame 4 and is perpendicular to each other, two flanges 5 are provided and are respectively installed on the left and right sides of the annular valve slot frame 4, the sensor mainboard slot 1 is provided with an integrated circuit board 11, a barrel slot 12, a single-chip microcomputer 13, a sensor chip 14, a resistor block 15, and a capacitor 16, the integrated circuit board 11 is inserted into the inside of the barrel slot 12, the single-chip microcomputer 13, the sensor chip 14, the resistor block 15, and the capacitor 16 are all inserted on the top of the integrated circuit board 11 and are perpendicular to each other, the single-chip microcomputer 13 is electrically connected to the sensor chip 14 through the integrated circuit board 11, and the barrel slot 12 is nested on the rear side of the digital display 2.

[0024] See also Figure 3 The annular valve groove frame 4 is composed of a sensor tube 41, a U-shaped frame pipe frame 42, and a valve groove shell 43. The sensor tube 41 is installed inside the U-shaped frame pipe frame 42. The U-shaped frame pipe frame 42 is nested in the front side of the valve groove shell 43 and is on the same arc surface. The U-shaped frame pipe frame 42 is a composite pipe frame structure with a semi-bend connected to a U-shaped bend pipe, which is convenient for the left and right half-wrapped valve ring shells to form an external sensing flow warning detection operation effect.

[0025] See also Figure 4The sensor tube 41 is composed of a tube shell 411, a sensing column cap 412, and an inner core tube 413. The sensing column cap 412 is provided with five and is nested together around the center of the inner core tube 413. The inner core tube 413 is inserted into the interior of the tube shell 411 and the axis is collinear. The sensing column cap 412 is a sensing cap rack structure with five sensing terminal caps arranged in a ring, which is convenient for high and low position multi-angle adaptation to sensing requirements to form an operational effect of reserving emergency processing time.

[0026] Workflow: The staff assembles the sensor main board slot 1 and connects the wires in series to the digital display 2, and then lowers the wires through the wire branch pipe 3 to connect the sensor tube 41 of the annular valve slot frame 4 and the circular frame pipe frame 42, so that the flange 5 can connect the pipes on the left and right to open the water level circulation. During the operation, the microcontroller 13 in the built-in cylinder slot 12 on the integrated circuit board 11 and the sensor chip 14 are integrated with the resistor block 15, capacitor 16 and other electronic components to allow circuit flow warning detection, and the sensor column cap 412 and the inner core tube 413 are connected in series through the tube shell 411 in the valve slot shell 43 to form an overall high and low position sensing integrated electrical signal feedback operation effect.

[0027] The present invention achieves the effect of using the sensor main board slot 1 to cooperate with the annular valve slot frame 4 through the mutual combination of the above-mentioned components, and embracing the inner pipe of the valve slot shell 43 through the sensor tube 41 and the circular frame pipe frame 42, thereby combining the overall alignment angle and the high and low position sensor integration architecture to more accurately cover the flow warning detection real-time data of the valve and pipeline. When the liquid level height in series with the sensor main board slot 1 above the middle section alarms, a time period can be reserved for the staff to carry out emergency treatment and stop valve operation, so as to solve the problem that the placement of the liquid level sensor during the flange docking and flow detection is prone to cause the alarm to be close to the critical value of the cylinder or pipe explosion, resulting in a hasty time for the warning detection to give the staff a timely reaction to stop the loss, and the structural sensor is not tightly connected in series with the sensor main board.

[0028] The specific embodiments described herein are merely illustrative of the present invention. Persons skilled in the art may make various modifications, additions, or substitutions to the described specific embodiments without departing from the scope of the present invention or exceeding the scope of the appended claims.

Claims

1. A flow alarm detection system, comprising: The sensor main board slot (1), the digital display (2), the wire harness branch pipe (3), the annular valve slot frame (4), and the flange (5) are characterized by: The sensor mainboard slot (1) is nested in the rear side of the digital display (2), the wire harness branch pipe (3) is inserted under the bottom of the sensor mainboard slot (1), and the wire harness branch pipe (3) is inserted on the top of the annular valve slot frame (4), and two flanges (5) are provided and are respectively installed on the left and right sides of the annular valve slot frame (4); The sensor main board slot (1) is provided with an integrated circuit board (11), a barrel slot (12), a single chip computer (13), a sensor chip (14), a resistor block (15), and a capacitor (16); The integrated circuit board (11) is inserted into the interior of the barrel groove (12); the single-chip computer (13), the sensor chip (14), the resistor block (15), and the capacitor (16) are all inserted into the top of the integrated circuit board (11); the single-chip computer (13) is electrically connected to the sensor chip (14) through the integrated circuit board (11); and the barrel groove (12) is nested in the rear side of the digital display (2).

2. A flow alarm detection system according to claim 1, characterized in that: The annular valve slot frame (4) is composed of a sensor tube (41), a circular frame tube frame (42), and a valve slot shell (43). The sensor tube (41) is installed inside the circular frame tube frame (42), and the circular frame tube frame (42) is nested in the front side of the valve slot shell (43).

3. A flow alarm detection system according to claim 2, characterized in that: The sensor tube (41) is composed of a tube shell (411), a sensing column cap (412), and an inner core tube (413). Five sensing column caps (412) are provided and are nested together around the center of the inner core tube (413). The inner core tube (413) is inserted into the tube shell (411).