Modularized heat metering structure
The modular design of the sealing blocks and separators solves the problems of sensor loosening and inconvenient maintenance, enabling rapid disassembly and assembly of the meter and safe maintenance, thereby improving the service life and safety of the sensor.
Patent Information
- Application Number
- CN202423247435.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing heat metering instruments are prone to sensor loosening and damage when the medium flow rate is large, and sensor replacement and maintenance are inconvenient and require flow interruption.
It adopts a modular structure, including a connecting pipe socket, an installation module, and a measurement module. Through the design of the sealing block and the separator, the meter can be disassembled and replaced without interrupting the flow. The sliding fit of the sealing block and the separator achieves medium sealing.
It enables rapid disassembly and maintenance of meters, improves sensor protection and safety, avoids media leakage, and simplifies maintenance procedures.
Smart Images

Figure CN223565129U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heat metering structure technical field, specifically related to a modular heat metering structure. BACKGROUND
[0002] When agricultural planting is carried out, agricultural instrument is usually needed, and the most commonly used is heat metering instrument, and heat metering instrument is to measure the heat energy consumed in the heating system.
[0003] According to the announcement number CN219776937U, the announcement date: 2023.09.29, the heat metering instrument disclosed in the prior art relates to the field of instruments, to solve the problem that the existing heat metering instrument is easy to cause the sensor to loosen and be damaged when the medium flow is large during use, and affects the accuracy of data, including the main body, the main body is the heat metering instrument body, the positioning piece is a circular structure, the positioning piece is connected with the shunt through the outer plate, the shunt is a triangular structure, the shunt is a metal material, and a rectangular groove is arranged in each shunt. When using, the positioning piece and the shunt are fixedly installed in the inside, so that the positioning piece can be sleeved outside the sensor, and the sensor is supported by the supporting rod, so as to improve the fixing effect of the sensor, and when the medium flows, the shunt can control the medium to be shunted, so as to reduce the impact on the sensor and improve the protection effect of the sensor, so as to avoid the loosening and deformation of the sensor.
[0004] In the prior art including the above-mentioned patent, the main body is connected with the pipeline, and the sensor is arranged on the column body so that the end of the sensor extends into the inner cavity of the main body. The sensor is used to measure the medium flow. Since the sensor is only fixedly installed on the main body, if the sensor is damaged, the medium liquid in the pipeline needs to be stopped before the sensor can be disassembled and replaced, which is not convenient for disassembly and maintenance of the sensor. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a modular heat metering structure to solve the above problems.
[0006] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: a modular heat metering structure, including the communication pipe base, the installation module and the measurement module, the communication pipe base is provided with flow channel and communication hole which are communicated with each other, the installation module includes the mounting seat, the mounting seat is installed on the mounting part of the communication pipe base, the mounting seat is provided with the partition in the loading hole, the partition is symmetrically provided with the plugging block which slides, the plugging block is in the default state and is in contact with each other in the loading hole, the measurement module includes the meter, the meter is installed on the mounting seat so that the detection end of the meter pushes the plugging block to slide away, and the detection end extends into the communication hole through the loading hole.
[0007] As preferred, an inclined guide slope is arranged on each of the blocking blocks, and a protruding strip and an inner recess that match each other are arranged on the first end of each of the blocking blocks.
[0008] As preferred, a movable cavity is arranged in the mounting seat, and the partition piece piston is slidingly arranged in the movable cavity.
[0009] As preferred, annular grooves are arranged on both sides of the partition piece, annular abutting strips are symmetrically arranged in the movable cavity, and the partition piece is driven to abut against the end of the movable cavity so that the annular abutting strips abut against the annular grooves.
[0010] As preferred, a blocking part is arranged on the meter, a sealing groove is arranged on the partition piece, and the detection end extends into the communication hole through the loading hole so that the blocking part abuts against the sealing groove.
[0011] As preferred, a plurality of contact grooves that match the protruding strips are arranged on the blocking part.
[0012] As preferred, sliding parts are symmetrically arranged on the blocking blocks, sliding grooves are symmetrically arranged on the partition piece, the sliding parts slide in the sliding grooves, and elastic members for driving the blocking blocks to slide back to the default state are arranged in the sliding grooves.
[0013] In the above technical solution, the modular heat metering structure has the following beneficial effects: the installation module is arranged on the communication pipe seat, the measurement module can be detachably arranged with the installation module, when the meter is damaged, the meter can be disassembled and replaced without stopping the flow of the medium liquid in the communication pipe seat, and the meter can be quickly disassembled and maintained. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical solutions in the embodiments or the prior art, the drawings needed in the embodiments will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art according to these drawings.
[0015] Figure 1 The overall structure schematic view provided by the embodiment of the present application is shown in the figure;
[0016] Figure 2 The overall structure cross-sectional view provided by the embodiment of the present application is shown in the figure;
[0017] Figure 3 The structure schematic view of the communication pipe seat provided by the embodiment of the present application is shown in the figure;
[0018] Figure 4The utility model discloses provide the explosion structure schematic diagram of measuring module and installing module for the embodiment of the utility model,
[0019] Figure 5 The partial explosion structure schematic diagram of installing module is provided for the embodiment of the utility model,
[0020] Figure 6 The utility model discloses provide the Figure 2 The local amplification schematic diagram of A at the middle.
[0021] Mark explanation:
[0022] 1, the communicating pipe base;11, the flow passage;12, the installation part;121, the communicating hole;122, the first threaded hole;2, the installing module;21, the mounting seat;211, the loading hole;212, the matching groove;213, the first through hole;214, the movable cavity;2141, the annular resistance strip;22, the mounting bolt;23, the partition;231, the through hole;232, the sealing groove;233, the annular groove;234, the sliding groove;24, the plugging block;241, the inclined guide slope;242, the convex strip;243, the inner groove;244, the sliding part;25, the elastic piece;3, the measuring module;31, the meter;311, the detection end;312, the plugging part;3121, the contact groove;313, the fitting column;314, the second through hole. Specific implementation
[0023] In order to make the purpose, technical scheme and advantage of the embodiment of the disclosure clearer, the technical scheme of the embodiment of the disclosure will be clearly and completely described below in combination with the drawings of the embodiment of the disclosure. Obviously, the described embodiment is a part of the embodiment of the disclosure, rather than all the embodiments. Based on the described embodiment of the disclosure, all other embodiments obtained by those of ordinary skill in the art without creative labor belong to the protection scope of the disclosure.
[0024] As Figures 1-6 The utility model discloses provide a kind of modular heat metering structure, including communicating pipe base 1, installing module 2 and measuring module 3, communicating pipe base 1 is set with flow passage 11 and communicating hole 121 that are mutually communicated, installing module 2 includes mounting seat 21, mounting seat 21 is installed to the installation part 12 of communicating pipe base 1, the loading hole 211 of mounting seat 21 is provided with partition 23, partition 23 is symmetrically slidably provided with plugging block 24, plugging block 24 default state mutually resist in plugging loading hole 211, measuring module 3 includes meter 31, meter 31 is installed in mounting seat 21 to make the detection end 311 of meter 31 push plugging block 24 relative sliding away, and detection end 311 is inserted into communicating hole 121 by loading hole 211.
[0025] Specifically, as Figure 1As shown, the communication pipe base 1 is connected with the heat supply pipeline to make the medium liquid flow in the flow channel 11, the mounting base 21 of the installation module 2 is provided with a first through hole 213, the mounting part 12 is provided with a first threaded hole 122, the installation bolt 22 can be screwed to the first threaded hole 122 through the first through hole 213, the mounting base 21 is fixed to the mounting part 12 by the installation bolt 22, the mounting base 21 is provided with an installation hole 211, the partition piece 23 and the blocking piece 24 are located in the installation hole 211 to block the installation hole 211 in the default state, and the medium liquid in the communication pipe base 1 cannot overflow from the installation module 2 to the outside. As shown, Figure 6 As shown, the two blocking pieces 24 are symmetrically and horizontally arranged on the partition piece 23, and the blocking pieces 24 abut each other to block the through hole 231 provided in the partition piece 23 in the default state.
[0026] When the measuring module 3 needs to be installed on the installation module 2, the meter 31 can be installed in the installation hole 211, the detection end 311 of the meter 31 extends into the installation hole 211 to push the blocking piece 24 to slide away, then the detection end 311 extends into the communication hole 121 through the through hole 231 of the partition piece 23 to measure the medium liquid in the communication pipe base 1, thereby calculating the heat supply, the installation module 2 is arranged on the communication pipe base 1, and the measuring module 3 can be detachably arranged with the installation module 2. If the meter 31 is damaged, the meter 31 can be disassembled and replaced without stopping the flow of the medium liquid in the communication pipe base 1, so that the meter 31 can be quickly disassembled and maintained. As shown, the meter 31 is provided with an embedded column 313, and the mounting base 21 is provided with a matching groove 212. When the meter 31 is installed on the mounting base 21, the embedded column 313 is embedded in the matching groove 212 to improve the installation stability of the meter 31. Second through holes 314 can be provided in the embedded column 313, threaded holes can be provided in the matching groove 212, and the meter 31 and the mounting base 21 can be connected and installed by screwing the bolts through the second through holes 314 into the threaded holes in the matching groove 212.
[0027] In the above technical solution, the installation module 2 is arranged on the communication pipe base 1, and the measuring module 3 can be detachably arranged with the installation module 2. If the meter 31 is damaged, the meter 31 can be disassembled and replaced without stopping the flow of the medium liquid in the communication pipe base 1, so that the meter 31 can be quickly disassembled and maintained.
[0028] As a further embodiment of the utility model, the blocking piece 24 is provided with an inclined guide slope 241, and the first end of the blocking piece 24 is provided with a protruding strip 242 and an inner recess 243 which abut each other.
[0029] Specifically, as shown,Figure 2 As shown, the upper surface of the blocking block 24 is provided with an inclined guide slope 241, and as Figure 5 As shown, one end of the blocking block 24 towards the through hole 231 is the first end, when the blocking blocks 24 are relatively slid close to each other and the first ends abut against each other, the blocking blocks 24 are in the default state to block the through hole 231, and when the metering table 31 of the metering module 3 is installed on the mounting seat 21, the detection end 311 of the metering table 31 pushes against the inclined guide slope 241 to push the blocking block 24 to relatively slide away to expose the through hole 231, and the detection end 311 extends into the communication hole 121 from the through hole 231 to perform metering detection.
[0030] Further, the blocking block 24 is symmetrically provided with a sliding part 244, the partition 23 is symmetrically provided with a sliding groove 234, the sliding part 244 slides in the sliding groove 234, and the sliding groove 234 is provided with an elastic member 25 for driving the blocking block 24 to slide back to the default state. The sliding part 244 is slidably arranged in the sliding groove 234 to improve the sliding stability of the blocking block 24, the elastic member 25 in the sliding groove 234 pushes the blocking block 24 to relatively slide close to each other, and the protruding strips 242 and the inner grooves 243 on the first ends of the two blocking blocks 24 abut against each other to achieve stable blocking of the through hole 231, avoiding the problem of overflow of the medium liquid in the communication pipe seat 1 from the mounting seat 21. The protruding strips 242 and the inner grooves 243 of the blocking block 24 are used to further improve the sealing performance of the blocking block 24 on the through hole 231, avoiding the problem of overflow of the medium liquid to the outside.
[0031] Among them, the elastic member 25 can be a gas bag, a spring, an elastic plate or other elastic articles known to those skilled in the art.
[0032] As further provided in the embodiments of the utility model, the mounting seat 21 is provided with a movable cavity 214, and the partition 23 is piston slidably arranged in the movable cavity 214.
[0033] Specifically, as shown in the drawings, Figure 6 As shown, the partition 23 is piston slidably arranged in the movable cavity 214, when the metering table 31 is installed on the mounting seat 21, the detection end 311 first pushes against the blocking block 24, so that the partition 23 is pushed to move towards the end of the flow channel 11 of the movable cavity 214 and abuts against and stops, then the blocking block 24 is pushed by the detection end 311 to relatively slide away to expose the through hole 231, and then the detection end 311 extends into the communication hole 121 from the through hole 231 to realize metering detection in the flow channel 11.
[0034] When the meter 31 is detached from the mounting base 21, the detection end 311 is away from the partition 23, and the elastic member 25 drives the blocking block 24 to slide relatively and close to each other to reseal the through hole 231, at this time, the liquid pressure in the flow channel 11 pushes the partition 23 to slide close to the end of the movable chamber 214 away from the flow channel 11 and abuts to make a sound, thereby the partition 23 and the blocking block 24 complete the sealing of the communication hole 121 after the meter 31 is detached, and the safety in use is improved.
[0035] As further provided in the embodiments of the utility model, annular grooves 233 are respectively formed on both sides of the partition 23, and annular abutting strips 2141 are symmetrically arranged in the movable chamber 214, and the partition 23 is abutted on the end of the movable chamber 214 to make the annular abutting strips 2141 abut in the annular grooves 233.
[0036] Specifically, as shown in the figure, annular grooves 233 are respectively formed on both sides of the partition 23, and annular abutting strips 2141 are symmetrically arranged in the movable chamber 214, and the partition 23 is abutted on the end of the movable chamber 214 to make the annular abutting strips 2141 abut in the annular grooves 233. Figure 6 When the partition 23 is abutted on both ends of the movable chamber 214, the annular grooves 233 and the annular abutting strips 2141 abut each other to improve the sealing between the partition 23 and the mounting base 21, avoid the problem of medium liquid leakage from the partition 23, and improve the safety in use.
[0037] As further provided in the embodiments of the utility model, a blocking part 312 is arranged on the meter 31, a sealing groove 232 is formed on the partition 23, and the detection end 311 extends into the communication hole 121 through the mounting hole 211 to make the blocking part 312 abut in the sealing groove 232.
[0038] Specifically, as shown in the figure, a blocking part 312 is arranged on the meter 31, and a sealing groove 232 is formed on the partition 23. Figure 6 When the detection end 311 of the meter 31 extends into the communication hole 121 through the through hole 231, the blocking part 312 extends into the sealing groove 232 to improve the sealing of the through hole 231, avoid the problem of medium liquid leakage from the through hole 231, and improve the safety in use.
[0039] As further provided in the embodiments of the utility model, a plurality of contact grooves 3121 are formed on the blocking part 312 and abut the protruding strips 242.
[0040] Specifically, as shown in Figure 4 The blocking part 312 is provided with a plurality of contact grooves 3121. When the detection end 311 of the meter 31 extends into the communication hole 121 through the through hole 231, the elastic member 25 pushes the blocking block 24 to slide and approach, so that the protruding strips 242 of the blocking block 24 press and contact the contact grooves 3121 of the blocking part 312, thereby further achieving radial limiting of the detection end 311 and improving the fixing stability and protection of the detection end 311.
[0041] The above only describes certain exemplary embodiments of the present application by way of illustration, without doubt, for those skilled in the art, without departing from the spirit and scope of the present application, the described embodiments can be modified in various ways. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the present application.
Claims
1. A modular heat metering structure, characterized by, Including the communicating pipe base (1), the installation module (2) and the measurement module (3), the communicating pipe base (1) is set up with the flow channel (11) and the communicating hole (121) that communicate with each other, the installation module (2) includes the mounting seat (21), the mounting seat (21) is installed to the mounting portion (12) of communicating pipe base (1), the installation hole (211) of mounting seat (21) is provided with the partition piece (23), the partition piece (23) is symmetrically slidably provided with the blocking block (24), the blocking block (24) is in default state and each other is in contact with the blocking installation hole (211), the measurement module (3) includes the meter (31), the meter (31) is installed in mounting seat (21) to make the detection end (311) of meter (31) push the blocking block (24) and slide away relatively, and the detection end (311) is extended into the communicating hole (121) through the installation hole (211).
2. A modular heat metering structure according to claim 1, characterized in that, The blocking block (24) is provided with inclined guide slope (241), and the first end of the blocking block (24) is provided with protruding strip (242) and inner recess (243) that are matched with each other.
3. The modular heat metering structure of claim 1, wherein, The mounting seat (21) is provided with movable cavity (214), and the partition piece (23) is arranged in the movable cavity (214) by piston sliding.
4. A modular heat metering structure according to claim 3, wherein, The partition piece (23) is provided with annular groove (233) on both sides, and the movable cavity (214) is provided with annular resistance strip (2141) symmetrically.
5. The modular heat metering structure of claim 2, wherein, The meter (31) is provided with blocking part (312), the partition piece (23) is provided with sealing groove (232), the detection end (311) is extended into the communicating hole (121) through the installation hole (211) to make the blocking part (312) contact in the sealing groove (232).
6. A modular heat metering structure according to claim 5, wherein, The blocking part (312) is provided with a plurality of contact grooves (3121) matched with the protruding strip (242).
7. The modular heat metering structure of claim 1, wherein, The blocking block (24) is symmetrically provided with sliding part (244), the partition piece (23) is symmetrically provided with sliding groove (234), the sliding part (244) is slid in the sliding groove (234), and the sliding groove (234) is provided with elastic member (25) for driving the blocking block (24) to slide reset to the default state.