Temperature-pressure-flow all-in-one machine structure
Through the design of the plug-in board and the bearing board, the temporary support guides and anti-detachment auxiliary parts are used to simplify the installation of the temperature-pressure flow integrated machine, solving the problem of inconvenient operation in the prior art, and improving the installation efficiency and connection reliability.
Patent Information
- Application Number
- CN202422369948.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-27
AI Technical Summary
When installing the existing temperature and pressure flow integrated machine, it is necessary to hold the case with both hands to align the bolt holes and tighten the bolts. It is especially inconvenient to operate when installing at high places, making it difficult to complete alone.
The plug-in plate and the support plate are designed, and the plug-in plate is guided to be inserted accurately through temporary support guides, and combined with anti-detachment auxiliary parts to ensure that the plug-in shaft cannot be disengaged, simplifying the installation process.
Reduces installation difficulty, ensures the firmness and reliability of the connection, is simple to operate and suitable for high-altitude installation, reducing labor demand.
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Figure CN223142296U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of temperature-pressure-flow integrated machines, and specifically to a structure of a temperature-pressure-flow integrated machine. Background Technique
[0002] The temperature-pressure-flow integrated machine is an instrument specifically used for flue gas emission monitoring, and it performs excellently especially in harsh environments such as high temperature, high humidity, and high dust. The temperature-pressure-flow integrated machine measures the flue gas flow rate through the Pitot tube method. The dynamic pressure, static pressure, and temperature of the flue gas are measured by using a Pitot tube, a pressure sensor, and a temperature sensor. These parameters have a certain proportional relationship with the measured flue gas flow rate, so that the flow rate of the flue gas can be quantitatively calculated. At the same time, the device can also measure the pressure, temperature, and flow rate of the flue gas in real time, which are key parameters for calculating the total amount of pollutants emitted in the CEMS (Continuous Emission Monitoring System for Stationary Pollution Sources).
[0003] The existing temperature-pressure-flow integrated machines usually fix and install the device at the installation location by bolts. Since there is a slender measuring tube on the front side of the temperature-pressure-flow integrated machine, extra care is needed during alignment installation. Usually, both hands are required to hold the machine shell to align with the bolt holes, and at this time, the bolt connection has not taken effect yet. The installer still needs to hold the machine case with one hand and use tools to tighten the bolts with the other hand, resulting in a very inconvenient installation process. Even two people are required to work together. Especially when installing the integrated machine at a high place, it becomes even more inconvenient and difficult to operate. Therefore, in view of the above problems, a structure of a temperature-pressure-flow integrated machine is proposed. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a structure of a temperature-pressure-flow integrated machine. When installing this temperature-pressure-flow integrated machine, the installation plate is installed at the designated position in advance, and then the installer holds the temperature-pressure-flow integrated device body and inserts the plug-in board into the receiving board. During this process, the temporary support guiding member can guide the plug-in board to accurately insert into the receiving board, reducing the operation difficulty of the worker. And after the plug-in board is inserted into the receiving board, the temporary support guiding member can play a temporary supporting role for the temperature-pressure-flow integrated device body, facilitating the worker to free both hands for subsequent operations. Then, only by operating the plug-in member to insert the plug-in shaft into the connection hole can the entire installation process be completed. At this time, the plug-in board cannot be separated from the receiving board, and under the action of the anti-disconnection auxiliary member, the plug-in shaft cannot be disengaged from the connection hole, thereby ensuring the firmness and reliability of the connection. And the entire installation process is simple to operate, solving the technical problem that the bolt connection installation method in the prior art makes the installation process very inconvenient, especially when installing at a high place, it is even more difficult to operate.
[0005] The technical solution adopted by the embodiment of the present application to solve its technical problem is:
[0006] A structure of a temperature-pressure-flow integrated machine, including a temperature-pressure-flow integrated device body, with a plug-in board at its front end, a mounting plate, which is installed on an existing building structure, and a receiving plate for clamping the plug-in board is installed thereon, a plug-in member, which is used to prevent the separation of the plug-in board and the receiving plate, a temporary support guide member, which is used to guide the plug-in board to be inserted into the receiving plate, and an anti-disengagement auxiliary member, which is used to prevent the plug-in member from disengaging. Among them, connection holes are provided on the upper and lower end faces of the plug-in board and the receiving plate. The plug-in member includes a plug-in shaft, which is inserted into the connection hole, and the top of the plug-in shaft is fixedly connected through a connecting plate.
[0007] Through the above structural form, the mounting plate is installed at the specified position in advance, and then the installer holds the temperature-pressure-flow integrated device body and aligns the plug-in board with the receiving plate and inserts it. During this process, the temporary support guide member can guide the plug-in board to be accurately inserted into the receiving plate, reducing the operation difficulty of the worker. And after the plug-in board is inserted into the receiving plate, the temporary support guide member can play a temporary supporting role for the temperature-pressure-flow integrated device body, facilitating the worker to free both hands for subsequent operations. Then, only need to operate the plug-in member to insert the plug-in shaft into the connection hole to complete the entire installation process. At this time, the plug-in board cannot be separated from the receiving plate, and under the action of the anti-disengagement auxiliary member, the plug-in shaft cannot be disengaged from the connection hole, thereby ensuring the firmness and reliability of the connection, and the entire installation process is simple to operate.
[0008] In a possible implementation manner, the temporary support guide member includes a guide cylinder fixedly installed on the plug-in board, and a support guide shaft fixedly installed on the receiving plate.
[0009] Through the above structural form, it can guide the installation of the plug-in board in a way that the guide cylinder slides outside the support guide shaft, so that it can be accurately inserted into the receiving plate to complete the installation.
[0010] In a possible implementation manner, the anti-disengagement auxiliary member includes a sliding rod, the bottom end of which passes through the connecting plate and is fixedly connected to the receiving plate, and a limiting end piece is fixedly connected to the top end thereof. At the same time, an anti-disengagement spring is sleeved outside the sliding rod, and both ends of the anti-disengagement spring abut against the limiting end piece and the connecting plate respectively.
[0011] Through the above structural form, when the connecting plate is not subjected to external force, the anti-disengagement spring can squeeze the connecting plate to make it closely fit the receiving plate, so that the plug-in shaft can be completely inserted into the connection hole, ensuring the reliability of the connection between the plug-in board and the receiving plate.
[0012] In a possible implementation manner, a hinge seat arranged in the center is fixedly provided on the upper end face of the connecting plate, and a Y-shaped handle is rotatably connected to the hinge seat.
[0013] Through the above-mentioned structural form, workers can pull up the plug-in shaft by pulling the Y-shaped handle, so that it is separated from the connecting hole on the plug-in plate, and then the plug-in plate and the docking plate can be separated from each other, which is convenient for the installation and disassembly of the temperature-pressure flow integrated equipment body.
[0014] In a possible implementation, side slots are provided on both sides of the Y-shaped handle, a clamping shaft is fixedly provided on the mounting plate at a position just above the side slots, and the side slots match the size of the clamping shaft.
[0015] With the above-mentioned structural form, when the Y-shaped handle is pulled up and connected to the clamping shaft through the side clamping groove, the plug-in shaft cannot move downward under the action of the anti-dropping spring. At this time, the plug-in plate and the receiving plate can be arbitrarily disengaged, which is convenient for workers to free their hands to complete other operations.
[0016] In a possible implementation, the plug board is provided with a plurality of matching holes connected with the guide cylinder, and the mouths of the matching holes are processed to form guide grooves sloping inwards.
[0017] Through the above-mentioned structural form, the opening of the matching hole provides the necessary structural basis for the insertion of the plug-in shaft, and the guide groove can play a guiding role, so as to facilitate the smooth insertion of the supporting guide shaft into the guide cylinder.
[0018] In a possible implementation, a clamping groove is provided in the middle of the receiving plate, and a clamping protrusion that can fit in the clamping groove is fixedly provided on the plug-in plate.
[0019] Through the above-mentioned structural form, the clamping area between the receiving plate and the plug-in plate can be increased by the concave-convex structure, thereby improving the firmness and stability of the clamping between the two.
[0020] In a possible implementation, a groove is provided at the bottom of the connecting hole on the receiving plate, a magnet sheet is embedded in the groove, and the plug-in shaft is an iron structure.
[0021] Through the above-mentioned structural form, when the plug-in shaft is fully inserted, the magnet sheet can be used to adsorb it, thereby further improving the anti-slip capability of the plug-in shaft.
[0022] In summary, the utility model includes the following beneficial technical effects:
[0023] The installation plate is installed in the designated position in advance, and then the installer holds the temperature-pressure-flow integrated equipment body and inserts the plug-in board into the docking board. During this process, the temporary support guide can guide the plug-in board to be inserted into the docking board accurately, which reduces the difficulty of the worker's operation. After the plug-in board is inserted into the docking board, the temporary support guide can temporarily support the temperature-pressure-flow integrated equipment body, which is convenient for the worker to free his hands to perform other operations.
[0024] Subsequently, only the plug-in part needs to be operated to insert the plug-in shaft into the connection hole to complete the entire installation process. At this time, the plug-in board cannot be separated from the receiving board, and under the action of the anti-disconnection auxiliary part, the plug-in shaft cannot be disengaged from the connection hole, thereby ensuring the firmness and reliability of the connection, and the entire installation process is simple to operate. Brief Description of the Drawings
[0025] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. In the drawings:
[0026] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0027] Figure 2 is a schematic diagram of the installation structure of the present invention;
[0028] Figure 3 is a schematic diagram of the partial structure of the present invention;
[0029] Figure 4 is a schematic diagram of the plug-in board structure of the present invention.
[0030] In the figure: 1. Integrated temperature and pressure flow equipment body; 2. Plug-in board; 21. Matching hole; 22. Guide bevel; 23. Snap protrusion; 3. Installation disk; 4. Receiving board; 41. Snap groove; 5. Plug-in part; 51. Connection hole; 52. Magnet sheet; 501. Plug-in shaft; 502. Connecting plate; 6. Temporary support guide part; 61. Guide cylinder; 62. Support guide shaft; 7. Anti-disconnection auxiliary part; 71. Slide bar; 72. Limit end piece; 73. Anti-disconnection spring; 74. Hinge seat; 75. Y-shaped pull handle; 76. Side card slot; 77. Card shaft. Detailed Embodiment
[0031] The technical solutions in the embodiments of the present application are to solve the problems in the above-mentioned background technology, and the general idea is as follows:
[0032] As Figure 1 - Figure 3As shown in the figure, a temperature-pressure-flow integrated machine structure provided in this embodiment includes a temperature-pressure-flow integrated device body 1, with a plug-in board 2 provided at its front end, and a mounting disk 3, which is mounted on an existing building structure, and a receiving board 4 for clamping the plug-in board 2 is mounted thereon. A plug-in member 5 is used to prevent the plug-in board 2 from separating from the receiving board 4, and a temporary support guiding member 6 is used to guide the plug-in board 2 to be inserted into the receiving board 4. Through the above structural form, the mounting disk 3 is installed at a designated position in advance, and then the installer holds the temperature-pressure-flow integrated device body 1 and aligns the plug-in board 2 with the receiving board 4 and inserts it. During this process, the temporary support guiding member 6 can guide the plug-in board 2 to be accurately inserted into the receiving board 4, reducing the operation difficulty of the worker. And after the plug-in board 2 is inserted into the receiving board 4, the temporary support guiding member 6 can play a temporary supporting role for the temperature-pressure-flow integrated device body 1, facilitating the worker to free both hands for subsequent operations.
[0033] Wherein, connection holes 51 are opened on the upper and lower end faces of the plug-in board 2 and the receiving board 4. The plug-in member 5 includes a plug-in shaft 501, which is inserted into the connection hole 51. The top of the plug-in shaft 501 is fixedly connected through a connecting plate 502. After the plug-in board 2 is inserted into the receiving board 4, only by operating the plug-in member 5 to insert the plug-in shaft 501 into the connection hole 51 can the entire installation process be completed. At this time, the plug-in board 2 cannot be separated from the receiving board 4.
[0034] In addition, an anti-detachment auxiliary member 7 is also provided, which is used to prevent the plug-in member 5 from coming off. Under the action of the anti-detachment auxiliary member 7, the plug-in shaft 501 cannot come out of the connection hole 51, thereby ensuring the firmness and reliability of the connection, and the entire installation process is simple to operate.
[0035] As Figure 2 shown, the temporary support guiding member 6 includes a guiding cylinder 61 fixedly installed on the plug-in board 2 and a supporting guiding shaft 62 fixedly installed on the receiving board 4. Through the above structural form, it can guide the installation of the plug-in board 2 in a way that the guiding cylinder 61 slides outside the supporting guiding shaft 62, so that it can be accurately inserted into the receiving board 4 to complete the installation.
[0036] As Figure 3 shown, the anti-detachment auxiliary member 7 includes a sliding rod 71, the bottom end of which passes through the connecting plate 502 and is fixedly connected to the receiving board 4, and a limiting end piece 72 is fixedly connected to the top end thereof. At the same time, an anti-detachment spring 73 is sleeved outside the sliding rod 71, and both ends of the anti-detachment spring 73 abut against the limiting end piece 72 and the connecting plate 502 respectively. Through the above structural form, when the connecting plate 502 is not subjected to an external force, the anti-detachment spring 73 can squeeze the connecting plate 502 to make it closely fit the receiving board 4, so that the plug-in shaft 501 can be completely inserted into the connection hole 51, ensuring the reliability of the connection between the plug-in board 2 and the receiving board 4.
[0037] In addition, a hinge seat 74 arranged in the center is fixedly provided on the upper end surface of the connecting plate 502. A Y-shaped handle 75 is rotatably connected to the hinge seat 74. With the above structural form, workers can pull up the insertion shaft 501 by pulling the Y-shaped handle 75, so that it is separated from the connection hole 51 on the insertion plate 2, and further the insertion plate 2 and the receiving plate 4 can be separated from each other, facilitating the installation and disassembly of the integrated temperature and pressure flow device body 1.
[0038] In the above structure, side card slots 76 are provided on both sides of the Y-shaped handle 75. A card shaft 77 is fixedly provided at a position directly above the side card slots 76 on the mounting plate 3, and the sizes of the side card slots 76 and the card shaft 77 match. With the above structural form, when the Y-shaped handle 75 is pulled up and it is clamped on the card shaft 77 through the side card slots 76, the insertion shaft 501 cannot move downward under the action of the anti-drop spring 73. At this time, the separation and combination between the insertion plate 2 and the receiving plate 4 can be carried out arbitrarily, facilitating workers to free their hands to complete other operations.
[0039] As Figure 4 shown, a number of cooperation holes 21 communicating with the guide cylinder 61 are provided on the insertion plate 2, and a guide bevel 22 sloping inward is formed at the mouth of the cooperation hole 21. With the above structural form, the opening of the cooperation hole 21 provides a necessary structural basis for the penetration of the insertion shaft 501, while the guide bevel 22 can play a guiding role, facilitating the smooth insertion of the supporting guide shaft 62 into the guide cylinder 61.
[0040] As Figure 2 、 Figure 4 shown, a clamping groove 41 is provided in the middle of the receiving plate 4. A clamping outer protrusion 23 that can fit with the clamping groove 41 is fixedly provided on the insertion plate 2. With the above structural form, the clamping area between the receiving plate 4 and the insertion plate 2 can be increased by the concave-convex structure, thereby improving the firmness and stability of the clamping between the two.
[0041] As Figure 3 shown, a groove is provided at the bottom of the connection hole 51 on the receiving plate 4, and a magnet sheet 52 is embedded therein. The insertion shaft 501 is made of iron. With the above structural form, when the insertion shaft 501 is completely inserted, the magnet sheet 52 can adsorb it, further improving the anti-drop ability of the insertion shaft 501.
[0042] The working principle and working process of the present utility model:
[0043] Install the installation disk 3 at a specified position in advance. Subsequently, the installer holds the body 1 of the integrated temperature and pressure flow device and inserts the plug-in board 2 into the receiving board 4 by aligning them. During this process, the temporary support and guiding member 6 can guide the plug-in board 2 to accurately insert into the receiving board 4, reducing the operation difficulty of the worker. Moreover, after the plug-in board 2 is inserted into the receiving board 4, the temporary support and guiding member 6 can play a temporary supporting role for the body 1 of the integrated temperature and pressure flow device, facilitating the worker to free both hands for other operations. At this time, the preliminary installation is completed.
[0044] Subsequently, operate the connector 5 to insert the plug-in shaft 501 into the connection hole 51 to complete the entire installation process. At this time, the plug-in board 2 cannot be separated from the receiving board 4, and under the action of the anti-separation auxiliary member 7, the plug-in shaft 501 cannot be disengaged from the connection hole 51.
[0045] The specific function of the anti-separation auxiliary member 7 is manifested as follows: when the connecting plate 502 is not subjected to an external force, the anti-separation spring 73 can squeeze the connecting plate 502 to make it closely fit the receiving board 4, so that the plug-in shaft 501 can be completely inserted into the connection hole 51, ensuring the reliability of the connection between the plug-in board 2 and the receiving board 4. In addition, the worker can pull up the plug-in shaft 501 by pulling the Y-shaped handle 75, so that it is separated from the connection hole 51 on the plug-in board 2, and then the plug-in board 2 and the receiving board 4 can be separated from each other, facilitating the installation and disassembly of the body 1 of the integrated temperature and pressure flow device. Moreover, when the Y-shaped handle 75 is pulled up and is clamped on the clamping shaft 77 through the side card slot 76, the plug-in shaft 501 cannot move downward under the action of the anti-separation spring 73. At this time, the separation and combination between the plug-in board 2 and the receiving board 4 can be carried out arbitrarily, facilitating the worker to free both hands to complete other operations.
[0046] In summary, the entire installation process of this device is simple to operate. At the same time, it can ensure the firmness and reliability of the connection, and can free the worker's hands multiple times during the installation process, improving the installation efficiency while reducing the difficulty of the installation operation.
[0047] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly explaining the present invention, rather than limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made on the basis of the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.
Claims
1. A structure of a temperature and pressure flow integrated machine, characterized in that Including: A combined temperature and pressure flow device body (1), with a plug-in board (2) provided at its front end; An installation disc (3), which is installed on an existing building structure, and a receiving board (4) for clamping the plug-in board (2) is installed thereon; A plug-in part (5) for preventing the separation of the plug-in board (2) and the receiving board (4); A temporary support and guiding part (6) for guiding the insertion of the plug-in board (2) into the receiving board (4); An anti-disengagement auxiliary part (7) for preventing the plug-in part (5) from disengaging; Among them, connection holes (51) are provided on both the upper and lower end faces of the plug-in board (2) and the receiving board (4). The plug-in part (5) includes a plug-in shaft (501) which is inserted into the connection hole (51), and the top of the plug-in shaft (501) is fixedly connected through a connecting plate (502).
2. The structure of a temperature and pressure flow integrated machine according to claim 1, wherein: The temporary support and guiding part (6) includes a guiding cylinder (61) fixedly installed on the plug-in board (2) and a supporting guiding shaft (62) fixedly installed on the receiving board (4).
3. The structure of a temperature and pressure flow integrated machine according to claim 1, wherein: The anti-disengagement auxiliary part (7) includes a sliding rod (71), the bottom end of which passes through the connecting plate (502) and is fixedly connected to the receiving board (4), and a limiting end piece (72) is fixedly connected to its top end. At the same time, an anti-disengagement spring (73) is sleeved outside the sliding rod (71), and both ends of the anti-disengagement spring (73) abut against the limiting end piece (72) and the connecting plate (502) respectively.
4. The structure of a temperature and pressure flow integrated machine according to claim 1, wherein: A hinge seat (74) arranged in the center is fixedly provided on the upper end face of the connecting plate (502), and a Y-shaped handle (75) is rotatably connected to the hinge seat (74).
5. The structure of a temperature and pressure flow integrated machine according to claim 4, characterized in that: Side card slots (76) are provided on both sides of the Y-shaped handle (75), and a card shaft (77) is fixedly provided at a position directly above the side card slots (76) on the installation disc (3), and the sizes of the side card slots (76) and the card shaft (77) match.
6. The structure of a temperature and pressure flow integrated machine according to claim 1, wherein: A number of cooperation holes (21) communicating with the guiding cylinder (61) are provided on the plug-in board (2), and a guiding bevel groove (22) sloping inward is formed at the mouth of the cooperation hole (21).
7. The structure of a temperature and pressure flow integrated machine according to claim 1, wherein: A clamping groove (41) is provided in the middle of the receiving board (4), and a clamping protrusion (23) capable of fitting with the clamping groove (41) is fixedly provided on the plug-in board (2).
8. The structure of a temperature and pressure flow integrated machine according to claim 1, characterized in that: A groove is provided at the bottom of the connection hole (51) on the receiving board (4), and a magnet sheet (52) is embedded therein. The plug-in shaft (501) is made of iron structure.