Computer operating system for adjusting hydraulic balance
By using components such as annular blocks, arc-shaped clamps, and buffer mechanisms at the connection between the valve body and the pipeline, the problem of damage to the connection caused by external factors is solved, thereby improving the stability and practicality of the hydraulic balance system.
Patent Information
- Application Number
- CN202520264378.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing computer operating systems used for regulating hydraulic balance are susceptible to external factors at pipe connections, leading to leaks or loose connections, which affects the stability and practicality of the device.
The valve body is equipped with components such as annular blocks, arc-shaped clamps, locking blocks, annular plates, and buffer mechanisms. By adjusting these components and buffer mechanisms, the protection effect at the connection between the valve body and the pipeline is improved, preventing damage from external factors.
The protection at the connection between the valve body and the pipeline has been enhanced, improving the stability and practicality of the device and preventing external factors from affecting normal operation.
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Figure CN223635732U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of hydraulic flow detection accessory device, especially to a computer operating system for adjusting hydraulic balance. BACKGROUND
[0002] It is known that in modern buildings and industrial facilities, the effective management of the hydraulic system is essential to ensure the normal operation of the entire system, and the commonly used adjustment method is to add a static hydraulic balance device (balance valve) in the pipeline system to adjust the ratio of the system pipeline characteristic resistance number, so that it is consistent with the design requirement pipeline characteristic resistance number;
[0003] The existing computer operating system for adjusting hydraulic balance can accurately monitor the hydraulic conditions in the pipeline and automatically adjust the valve opening according to the preset parameters to maintain the optimal hydraulic balance state of the entire system when in use through the internal advanced sensor technology and automatic control algorithm, achieving the purpose of intelligent heating and pipeline intelligentization; but in use, it is found that the pipeline connection is exposed to the natural environment for a long time, is easily affected by external factors such as wind, sand, rain, and temperature changes, and may be mechanically damaged due to improper operation or accidental collision, resulting in leakage or loose connection and affecting normal operation, thereby reducing the stability of the device, thus resulting in poor practicability. SUMMARY
[0004] To solve the above technical problems, the utility model provides a computer operating system for adjusting hydraulic balance which can improve the protection effect of the valve body and the pipeline connection, prevent normal operation from being affected by external factors, thereby improving the stability of the device, and thus enhancing the practicability.
[0005] The utility model discloses a computer operating system for adjusting hydraulic balance, which comprises an execution main body, a valve body, a connecting assembly and a pipeline, the valve body top and the execution main body output end bottom are connected, the valve body right end passes through the connecting assembly and is connected with the pipeline left end, further comprising an annular block, two groups of arc clamping plates, two groups of first clamping blocks, a first annular plate, a second annular plate, an arc baffle, an adjusting assembly and a buffer mechanism, the valve body outer side right end and the annular block inner side are connected, the annular block right end and the first annular plate left end are close, and the first annular plate is sleeved with the valve body and the pipeline respectively, the annular block right end is connected with the left end of the two groups of arc clamping plates through the adjusting assembly, one end of the two groups of arc clamping plates is connected with the other end of a group of first clamping blocks respectively, two groups of clamping grooves are evenly arranged on the inner side left end of the first annular plate, the other end of the two groups of first clamping blocks is clamped in the clamping grooves of the first annular plate respectively, the first annular plate right end is connected with the second annular plate left end, and the inner side of the second annular plate is sleeved with the outer side of the pipeline, and the first annular plate top is connected with the arc baffle bottom through the buffer mechanism.
[0006] Preferably, the adjusting assembly comprises two groups of first screws and two groups of first sliders, the top and bottom of the right end of the annular block are respectively provided with a group of sliding grooves, the two ends of the two groups of first screws are respectively rotationally connected with one end of a group of sliding grooves of the annular block, the two groups of first sliders are respectively threadedly connected with the first screws, and the two groups of first sliders are respectively slidably connected with the corresponding sliding grooves of the annular block, and the right ends of the two groups of first sliders are respectively connected with the left ends of a group of arc-shaped clamping plates.
[0007] Preferably, the buffering mechanism comprises a fixed block, a connecting block and a telescopic assembly, the top of the first annular plate is connected with the bottom of the fixed block, the top of the fixed block is slidably sleeved with the bottom of the connecting block through the telescopic assembly, and the top of the connecting block is connected with the bottom of the arc-shaped baffle.
[0008] Preferably, the telescopic assembly comprises a plurality of groups of damping rods and a plurality of groups of connecting springs, the top of the fixed block is provided with a groove, the bottom of the groove of the fixed block is connected with the bottom of the plurality of groups of damping rods in a uniform manner, the bottom of the connecting block is connected with the top of the plurality of groups of damping rods in a uniform manner, the outer sides of the plurality of groups of damping rods are respectively provided with a group of connecting springs, and the bottom of the connecting block is slidably sleeved with the groove of the fixed block.
[0009] Preferably, the utility model also comprises two groups of rotating handles, and one end of the two groups of first screws is connected with one end of the rotating handle and one end of the sliding groove of the corresponding annular block.
[0010] Preferably, the utility model also comprises two groups of limiting blocks, one end of the two groups of limiting blocks is slidably connected with a group of sliding grooves, and the other end of the connecting block is connected with the other end of a group of limiting blocks.
[0011] Preferably, the utility model also comprises two groups of handles, and the front and rear ends of the first annular plate are respectively connected with one end of a group of handles.
[0012] Compared with the prior art, the computer operating system for adjusting water force balance has the beneficial effects that when the pipeline and the valve body are installed through the connecting assembly, the worker slides the first annular plate, so that the left end of the first annular plate and the right end of the annular block are tightly attached, then the worker slides the two groups of arc-shaped clamping plates through the adjusting assembly until the two groups of arc-shaped clamping plates drive the first clamping blocks and the inner sides of the first annular plates to slide and clamp, so that the protection effect of the connection between the valve body and the pipeline can be improved, the normal operation can be prevented from being affected due to damage caused by external factors, and therefore the stability of the device is improved, and the practicability is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] Fig. 1 is the three-dimensional structure schematic diagram of the utility model;
[0014] Fig. 2 is the internal cross-sectional structure three-dimensional schematic diagram of the utility model;
[0015] Fig. 3 is the front view structure cross-sectional schematic diagram of the utility model;
[0016] Fig. 4 It is the partial structure amplification schematic view of A of the utility model;
[0017] The marks in the drawing: 1, the executive body; 2, valve body; 3, connecting assembly; 4, pipeline; 5, annular block; 6, arc clamping plate; 7, first clamping block; 8, first annular plate; 9, second annular plate; 10, arc baffle; 11, first screw; 12, first sliding block; 13, fixed block; 14, connecting block; 15, damping rod; 16, connecting spring; 17, rotary handle; 18, limit block; 19, handle. DETAILED DESCRIPTION
[0018] The specific embodiments of the utility model are further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.
[0019] As Figs. 1 to 4 shown, the utility model relates to a computer operating system for adjusting water balance, including executive body 1, valve body 2, connecting assembly 3 and pipeline 4, valve body 2 top and executive body 1 output end bottom connection, valve body 2 right end passes through connecting assembly 3 and pipeline 4 left end connection, still including annular block 5, two groups of arc clamping plate 6, two groups of first clamping block 7, first annular plate 8, second annular plate 9, arc baffle 10, adjusting assembly and buffer mechanism, valve body 2 outside right end and annular block 5 inside connection, annular block 5 right end and first annular plate 8 left end close, and first annular plate 8 is packed with valve body 2 and pipeline 4 respectively, annular block 5 right end is connected with the left end of two groups of arc clamping plate 6 through adjusting assembly, one end of two groups of arc clamping plate 6 is connected with the other end of a group of first clamping block 7 respectively, the left end in first annular plate 8 is evenly provided with two groups of clamping slots, the other end of two groups of first clamping block 7 is clamped with the clamping slot in first annular plate 8 respectively, and the right end of first annular plate 8 is connected with the left end of second annular plate 9, and the inside of second annular plate 9 is packed with the outside of pipeline 4, and the top of first annular plate 8 is connected with the bottom of arc baffle 10 through buffer mechanism;When pipeline and valve body are installed through connecting assembly, staff slides first annular plate, so that the left end of first annular plate and the right end of annular block are close, then staff slides two groups of arc clamping plate through adjusting assembly, until two groups of arc clamping plate drive first clamping block and first annular plate inside slide clamping, can improve the protection effect of the connecting place of valve body and pipeline, prevent from being damaged due to external factors and influence normal operation, thereby improve the stability of the device, therefore, the practicability is enhanced.
[0020] As a preferred of the above embodiment, the adjusting assembly comprises two groups of first screws 11 and two groups of first sliders 12, the top and bottom of the right end of the annular block 5 are respectively provided with a group of sliding grooves, the two ends of the two groups of first screws 11 are respectively rotatably connected with one end of a group of sliding grooves of the annular block 5, the two groups of first sliders 12 are respectively threadedly connected with the first screws 11, and the two groups of first sliders 12 are respectively slidably connected with the corresponding sliding grooves of the annular block 5, and the right ends of the two groups of first sliders 12 are respectively connected with the left ends of a group of arc-shaped clamping plates 6; the staff rotates the first screw, so that the two groups of first sliders respectively drive the arc-shaped clamping plates to slide, so that the staff can quickly clamp and fix the first annular plate, and therefore the practicability is enhanced.
[0021] As a preferred of the above embodiment, the buffering mechanism comprises a fixed block 13, a connecting block 14 and a telescopic assembly, the top of the first annular plate 8 is connected with the bottom of the fixed block 13, the top of the fixed block 13 is slidably sleeved with the bottom of the connecting block 14 through the telescopic assembly, and the top of the connecting block 14 is connected with the bottom of the arc-shaped baffle 10; when the arc-shaped baffle collides due to external unexpected factors, external impact force can be effectively absorbed, and the internal structure is protected from being damaged, and therefore the practicability is enhanced.
[0022] As a preferred of the above embodiment, the telescopic assembly comprises a plurality of groups of damping rods 15 and a plurality of groups of connecting springs 16, the top of the fixed block 13 is provided with a groove, the bottoms of the plurality of groups of damping rods 15 are uniformly connected with the bottom of the groove of the fixed block 13, the bottom of the connecting block 14 is uniformly connected with the tops of the plurality of groups of damping rods 15, the outer sides of the plurality of groups of damping rods 15 are respectively provided with a group of connecting springs 16, and the bottom of the connecting block 14 is slidably sleeved with the groove of the fixed block 13; through the telescopic connection of the plurality of groups of damping rods and the connecting springs, external impact force can be effectively absorbed, and the internal structure is protected from being damaged, and therefore the practicability is enhanced.
[0023] As a preferred of the above embodiment, the buffering mechanism comprises a fixed block 13, a connecting block 14 and a telescopic assembly, the top of the first annular plate 8 is connected with the bottom of the fixed block 13, the top of the fixed block 13 is slidably sleeved with the bottom of the connecting block 14 through the telescopic assembly, and the top of the connecting block 14 is connected with the bottom of the arc-shaped baffle 10; when the arc-shaped baffle collides due to external unexpected factors, external impact force can be effectively absorbed, and the internal structure is protected from being damaged, and therefore the practicability is enhanced.
[0024] As a preferred of the above embodiment, the buffering mechanism comprises a fixed block 13, a connecting block 14 and a telescopic assembly, the top of the first annular plate 8 is connected with the bottom of the fixed block 13, the top of the fixed block 13 is slidably sleeved with the bottom of the connecting block 14 through the telescopic assembly, and the top of the connecting block 14 is connected with the bottom of the arc-shaped baffle 10; when the arc-shaped baffle collides due to external unexpected factors, external impact force can be effectively absorbed, and the internal structure is protected from being damaged, and therefore the practicability is enhanced.
[0025] As a preferred of the above embodiment, the buffering mechanism comprises a fixed block 13, a connecting block 14 and a telescopic assembly, the top of the first annular plate 8 is connected with the bottom of the fixed block 13, the top of the fixed block 13 is slidably sleeved with the bottom of the connecting block 14 through the telescopic assembly, and the top of the connecting block 14 is connected with the bottom of the arc-shaped baffle 10; when the arc-shaped baffle collides due to external unexpected factors, external impact force can be effectively absorbed, and the internal structure is protected from being damaged, and therefore the practicability is enhanced.
[0026] The utility model discloses a computer operating system for adjusting hydraulic balance, when the pipeline and the valve body are installed through the connecting component, the staff makes first annular board through handle sliding, and the left end of first annular board and the right end of annular block are close, then the staff rotates first screw rod through rotating handle, and two groups of first slider drive arc clamping plate to slide respectively, until two groups of arc clamping plate drive first clamping block and the inside of first annular board to slide and clamp respectively, and can be used in the position of user's need.
[0027] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0028] The "first", "second", "third" in the utility model do not represent the specific quantity and order, and are only used for distinguishing the names.
[0029] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the technical principle of the utility model, a number of improvements and variations can be made, and these improvements and variations should be regarded as the protection scope of the utility model.
Claims
1. A computer operating system for regulating hydraulic balance, comprising an execution body (1), a valve body (2), a connecting assembly (3) and a pipe (4), the top of the valve body (2) is connected with the bottom of the output end of the execution body (1), and the right end of the valve body (2) is connected with the left end of the pipe (4) through the connecting assembly (3), characterized in that, the execution body (1) is provided with a plurality of valve bodies (2) arranged in parallel, the valve bodies (2) are connected with the output end of the execution body (1) through a connecting assembly (3), and the right end of each valve body (2) is connected with the left end of the pipe (4) through a connecting assembly (3). The utility model also includes annular block (5), two groups of arc clamping plate (6), two groups of first clamping block (7), first annular plate (8), second annular plate (9), arc baffle (10), adjusting assembly and buffer mechanism, the outside right end of valve body (2) and annular block (5) inside link, the right end of annular block (5) and the left end of first annular plate (8) are close, and first annular plate (8) is packed with valve body (2) and pipeline (4) respectively, the right end of annular block (5) is connected with the left end of two groups of arc clamping plate (6) through adjusting assembly, one end of two groups of arc clamping plate (6) is connected with one group of first clamping block (7) respectively, and the other end is connected, the inside left end of first annular plate (8) is evenly provided with two groups of clamping groove, and the other end of two groups of first clamping block (7) is packed with the inside clamping groove of first annular plate (8) respectively, the right end of first annular plate (8) and the left end of second annular plate (9) are connected, and the inside of second annular plate (9) and the outside of pipeline (4) are packed, and the top of first annular plate (8) is connected with the bottom of arc baffle (10) through buffer mechanism.
2. A computer operating system for regulating hydraulic balance as claimed in claim 1, wherein, Adjusting assembly includes two groups of first screw rod (11) and two groups of first sliding block (12), the top and bottom of right end of annular block (5) are provided with a group of sliding groove respectively, two groups of first screw rod (11) two ends are rotatably connected with a group of annular block (5) sliding groove one end respectively, two groups of first sliding block (12) are connected with first screw rod (11) screw thread respectively, and two groups of first sliding block (12) are slidably connected with corresponding annular block (5) sliding groove respectively, the right end of two groups of first sliding block (12) is connected with the left end of a group of arc clamping plate (6) respectively.
3. A computer operating system for regulating hydraulic balance as claimed in claim 2, wherein, Buffer mechanism includes fixed block (13), connecting block (14) and telescopic assembly, the top of first annular plate (8) and the bottom of fixed block (13) are connected, the top of fixed block (13) is slidably packed with the bottom of connecting block (14) through telescopic assembly, and the top of connecting block (14) and the bottom of arc baffle (10) are connected.
4. A computer operating system for regulating hydraulic balance as claimed in claim 3 wherein, Telescopic assembly includes a plurality of groups of damping rod (15) and a plurality of groups of connecting spring (16), the top of fixed block (13) is provided with recess, the bottom of fixed block (13) recess is evenly connected with the bottom of a plurality of groups of damping rod (15), and the bottom of connecting block (14) is evenly connected with the top of a plurality of groups of damping rod (15), a plurality of groups of damping rod (15) outside are respectively provided with a group of connecting spring (16), and the bottom of connecting block (14) and the recess of fixed block (13) are slidably packed.
5. A computer operating system for regulating hydraulic balance as claimed in claim 4 wherein, It also includes two groups of rotating handle (17), one end of two groups of first screw rod (11) is connected through the one end of corresponding annular block (5) sliding groove and rotating handle (17) one end respectively.
6. A computer operating system for regulating hydraulic balance as claimed in claim 5 wherein, It also includes two groups of limiting block (18), the both ends of recess of fixed block (13) are provided with a group of sliding groove respectively, two groups of limiting block (18) are slidably connected with the group of sliding groove respectively, and the other end of one group of limiting block (18) is connected with the bottom of both ends of connecting block (14) respectively.
7. A computer operating system for regulating hydraulic balance as claimed in claim 6 wherein, It also includes two groups of handle (19), the front and rear ends of first annular plate (8) are connected with one end of a group of handle (19) respectively.