Mounting bracket of pipe temperature sensing device and air conditioner
By designing the installation bracket for the tube temperature sensing device, the clamping parts and the compression structure are used to achieve rapid clamping, solving the problems of traditional installation complexity and welding hazards, and achieving the effect of simplifying installation and stable connection.
Patent Information
- Application Number
- CN202422542562.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The installation process of traditional pipe temperature sensing devices is complicated and requires professional welding, which takes a long time and inconsistent welding quality, which affects the performance and environmental health of the device.
A mounting bracket for a tube temperature sensing device is designed to achieve rapid clamping through the clamping part and the clamping position, and a tightening structure is used to ensure a firm coordination between the temperature sensing device and the mounting position to avoid welding.
It simplifies the installation process, saves time, improves installation efficiency, ensures the stability and safety of the temperature sensing device, and reduces the harm to the environment and personnel's health.
Smart Images

Figure CN223258350U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air-conditioning equipment, in particular to a mounting bracket of a pipe temperature sensing device and an air conditioner. Background Art
[0002] Pipe temperature sensors are an essential component of air conditioning system piping. Their primary function is to monitor pipe temperature changes in real time and provide feedback to control components. Based on this temperature information, the control components adjust cooling or heating parameters accordingly, achieving variable frequency control and improving the energy efficiency and comfort of the air conditioning system.
[0003] Traditional pipe temperature sensors typically consist of three parts: a temperature sensing sleeve, a temperature sensing insert, and a temperature sensing bulb. During assembly, workers first weld the temperature sensing sleeve to the designated location on the pipeline, then insert the temperature sensing insert. Finally, they assemble the temperature sensing bulb and complete the wiring management and tying. This process is not only complex but also requires specialized welders, consuming significant labor and time.
[0004] Furthermore, due to the complexity of welding operations, inconsistent welding quality can lead to unstable temperature sensing device performance, affecting the overall performance of the air conditioning system. Furthermore, the harmful gases and fumes that may be generated during welding can pose potential hazards to the environment and the health of operators.
[0005] Therefore, it is necessary to improve the installation method of the existing pipe temperature sensing device to overcome the defects of the existing technology. Utility Model Content
[0006] In order to overcome the problems existing in the related art, one of the purposes of the present invention is to provide a mounting bracket for a pipe temperature sensing device, which can be clamped on the pipe of the air conditioner, and then the temperature sensing device can be installed in the mounting position, so as to realize the rapid installation of the air conditioner pipe temperature sensing device on the pipe, which can save the installation time of the pipe temperature sensing device and improve the installation efficiency; and the clamping structure can make the fit between the temperature sensing device and the mounting position firm, ensuring that the temperature sensing device can work stably for a long time.
[0007] A mounting bracket for a pipe temperature sensing device, comprising:
[0008] A main body, a clamping piece is provided on one side of the main body, and a clamping position is provided on the clamping piece;
[0009] The main body is provided with an installation position for installing a temperature sensing device, and a pressing structure is provided in the installation position, and the pressing structure protrudes from the surface of the installation position.
[0010] Specifically, the main body is designed to be compact and sturdy to ensure the overall stability and durability of the bracket. A clamp is provided on one side of the main body. The main function of this clamp is to firmly clamp the air conditioning pipe. The snap-in position on the clamp matches the shape and size of the air conditioning pipe, allowing the bracket to be quickly and easily snapped onto the pipe without the need for complex welding or screw fixation, thereby greatly simplifying the installation process. The main body also has a mounting position for the temperature sensor. The design of this mounting position needs to take into account the installation requirements of the temperature sensor to ensure that the temperature sensor can be securely and accurately installed on the bracket; for example, the inner wall structure of the mounting position needs to be compatible with the outer wall of the temperature sensor. More preferably, a clamping structure is provided in the mounting position. The clamping structure protrudes from the surface of the mounting position. After the temperature sensor is installed, the clamping structure can press the temperature sensor tightly against the mounting position through its own structure, thereby ensuring a secure fit between the temperature sensor and the mounting position and preventing it from loosening or falling off during installation or use.
[0011] In actual applications, the clamping parts and the snap-in position design of the bracket can be adjusted and adapted according to different models of air-conditioning pipes, so that the bracket can be widely used in various models of air-conditioning equipment.
[0012] In a preferred technical solution of the present invention, the length direction of the installation position is arranged along the length direction of the main body, and the length direction of the pressing structure is arranged along the length of the installation position.
[0013] In this embodiment, the length direction of the mounting position extends along the length direction of the main body. This design enables the mounting position to better meet the installation requirements of temperature sensing devices of different lengths, providing greater installation flexibility and compatibility.
[0014] Furthermore, the internal clamping structure of the mounting area is designed to be consistent with the length of the mounting area. The clamping structure protrudes from the surface of the mounting area and extends along its length. This design enables the clamping structure to provide uniform clamping force across the entire length of the mounting area, ensuring close contact and a secure fit between the temperature sensor and the mounting area.
[0015] In a preferred technical solution of the present utility model, the pressing structure includes a limiting protrusion arranged on the wall surface of the installation position, and 1-3 limiting protrusions are arranged in the installation position;
[0016] The cross section of the limiting protrusion is semicircular or elliptical.
[0017] Providing one to three stopper protrusions within the mounting area minimizes installation complexity and reduces installation efficiency, while ensuring a tight fit between the temperature sensor and the mounting area. Furthermore, the stopper protrusions are designed with a semicircular or elliptical cross-section. This design not only allows the stopper protrusions to better adapt to the shape and size of the temperature sensor, providing greater installation compatibility and flexibility, but also effectively disperses the clamping force, preventing excessive pressure or damage to the temperature sensor.
[0018] In a preferred technical solution of the present invention, a guide opening is provided on one side of the engaging position, and the width of the guide opening gradually decreases along the direction from the periphery of the engaging position to the center of the engaging position.
[0019] The guide opening is designed to taper gradually from the periphery of the snap-in area toward its center. This design allows the refrigeration pipe to snap into the snap-in area more easily and smoothly during installation. The guide opening design not only improves installation convenience but also ensures a secure connection. As the width of the guide opening tapers, the refrigeration pipe is subjected to a gradually increasing clamping force as it snaps into the snap-in area, achieving a more secure connection.
[0020] In a preferred technical solution of the present utility model, the number of the clamping members is N on the main body, where N is a natural number greater than 1;
[0021] Each of the clamping members includes two clamping arms, which are arranged opposite to each other so that the clamping position is formed between the two clamping arms.
[0022] The multiple clamping elements allow the mounting bracket to be positioned appropriately based on actual needs, enhancing installation flexibility and adaptability. The combined action of these elements ensures stable mounting. The dual-arm design provides a stronger clamping force, ensuring the mounting bracket resists loosening or falling off during extended use.
[0023] In a preferred technical solution of the present invention, a first reinforcing rib is provided on one side of each of the clamping arms, and the first reinforcing rib is fixed on a side of the clamping arm away from the clamping position.
[0024] In actual applications, the length, position and number of the reinforcing ribs can be adjusted according to actual conditions to improve the structural strength of the clamping arm.
[0025] In a preferred technical solution of the present invention, rounded corners are provided at the edges of the clamping arms.
[0026] The rounded corners create a smoother edge when the clamping arm connects to the refrigeration pipe, reducing friction and collision with the pipe, thus preventing possible scratches or damage. This is crucial for protecting the integrity of the refrigeration pipe and improving the durability of the mounting bracket. The rounded corners also enhance the overall aesthetics of the mounting bracket. Compared to sharp edges, rounded corners are softer and smoother, creating a more comfortable and harmonious visual experience.
[0027] In a preferred technical solution of the present invention, a glue stealing hole is provided on the main body, and the glue stealing hole is provided through the main body.
[0028] Without compromising the structural strength and performance of the main body, the glue holes reduce plastic usage, thereby lowering production costs. Furthermore, the glue holes help prevent defects such as shrinkage and deformation of the mounting bracket during the injection molding process. Shrinkage occurs due to the volumetric contraction of the plastic during cooling, while deformation can be caused by factors such as injection pressure and temperature.
[0029] In one embodiment, the glue-stealing hole can also be used as a wiring hole for the temperature sensing device, making the wiring of the temperature sensing device more convenient.
[0030] In a preferred technical solution of the present invention, a plurality of second reinforcing ribs are further provided on the main body, and the plurality of second reinforcing ribs are arranged in parallel on the main body, and the axes of the second reinforcing ribs are perpendicular to the axis of the main body.
[0031] The provision of secondary reinforcing ribs increases the rigidity and deformation resistance of the main body, allowing the mounting bracket to withstand greater external forces and pressures without deformation or damage during long-term use. This is crucial to ensuring the stability and reliability of the mounting bracket. Furthermore, the parallel placement of the secondary reinforcing ribs and their arrangement perpendicular to the main body axis optimize the force distribution within the mounting bracket. When subjected to external forces, these ribs effectively disperse and absorb the force, preventing damage caused by localized excessive stress. This design not only improves the overall strength of the mounting bracket but also extends its service life.
[0032] The second object of the present utility model is to provide an air conditioner, comprising a refrigeration system and a mounting bracket for the pipe temperature sensing device as described above;
[0033] A refrigeration pipeline is provided in the refrigeration system, and the mounting bracket of the pipe temperature sensing device is clamped on the refrigeration pipeline.
[0034] The refrigeration system of an air conditioner is its core component, responsible for generating and transferring heat and cold to meet user comfort needs. The refrigeration system is equipped with a complex network of refrigerant piping, which transports the refrigerant to the required locations and enables heat exchange. The mounting bracket for the pipe temperature sensor is clipped onto the refrigeration piping. This bracket offers advantages such as quick installation, stability, and wide applicability. By clipping the bracket onto the refrigeration piping, no additional welding or screwing is required, simplifying installation while ensuring a tight connection between the bracket and the piping.
[0035] In a preferred embodiment, the mounting bracket is clipped onto the refrigeration piping, making it easy to adjust its position and position it for accurate pipe temperature detection. This allows the temperature sensor to accurately sense the temperature of the refrigeration piping and feed this information back to the air conditioner's control system. Based on this temperature information, the control system fine-tunes the refrigeration system's operating parameters to ensure the air conditioner delivers the most suitable temperature and provides the best comfort experience.
[0036] The beneficial effects of the utility model are:
[0037] The utility model provides a mounting bracket for a pipe temperature sensor. The mounting bracket comprises a main body, a clamping member disposed on one side of the main body, and a snap-fitting position provided on the clamping member. The main body is provided with a mounting position for the temperature sensor, and the mounting position is provided with a pressing structure protruding from the surface of the mounting position. The pressing structure protruding from the surface of the mounting position can firmly press the temperature sensor against the mounting position after the temperature sensor is installed, thereby ensuring a secure fit between the temperature sensor and the mounting position and preventing loosening or falling off during installation or use. In practical application, the bracket is simple to use. First, the clamping member of the bracket is snapped onto the air conditioner pipe to ensure that the bracket is firmly fixed to the pipe. Then, the temperature sensor is installed in the mounting position of the bracket and the pressing structure is used to press the temperature sensor tightly. This completes the quick and secure installation of the pipe temperature sensor on the air conditioner pipe. The snap-fitting method allows the bracket to be quickly installed on the air conditioner pipe without the need for complex welding or screw fastening, thus significantly saving installation time. The design of the compression structure ensures a firm fit between the temperature sensing device and the installation position, and can ensure the stable operation of the temperature sensing device without loosening or falling off even during long-term use.
[0038] The present application also provides an air conditioner including the above-mentioned mounting bracket of the pipe temperature sensing device. The air conditioner simplifies the installation process of the temperature sensing device through the above-mentioned mounting bracket. The installation of the temperature sensing device does not require complicated welding or screw fixing processes, thereby greatly saving installation time. In addition, no welding operation is required, which can reduce health hazards to workers and reduce labor costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 This is a first perspective view of the mounting bracket of the pipe temperature sensing device provided in an embodiment of the present utility model;
[0040] Figure 2 This is a second perspective view of the mounting bracket of the pipe temperature sensing device provided in an embodiment of the present utility model;
[0041] Figure 3 is a schematic diagram of a clamping member provided in an embodiment of the present utility model;
[0042] Figure 4 is a schematic diagram of a partial structure of an air conditioner provided in an embodiment of the present utility model;
[0043] Figure 5 yes Figure 4 A partial enlarged view of point A in the middle;
[0044] Figure 6 It is a schematic diagram of the clamping member provided in Example 9 of the present utility model.
[0045] Reference numerals:
[0046] 1. Main body; 11. Second reinforcing rib; 12. Mounting position; 13. Glue-stealing hole; 2. Clamping piece; 21. Snap-on arm; 211. Rounded corner; 212. First reinforcing rib; 22. Snap-on position; 23. Guide port; 24. Rotating connection structure; 100. Refrigeration pipeline. DETAILED DESCRIPTION
[0047] The following describes preferred embodiments of the present invention in more detail with reference to the accompanying drawings. Although preferred embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to make the present invention more thorough and complete, and to fully convey the scope of the present invention to those skilled in the art.
[0048] Pipe temperature sensors are an essential component of air conditioning system piping. Their primary function is to monitor pipe temperature changes in real time and provide feedback to control components. Based on this temperature information, the control components adjust cooling or heating parameters accordingly, achieving variable frequency control and improving the energy efficiency and comfort of the air conditioning system.
[0049] Traditional pipe temperature sensors typically consist of three parts: a temperature sensing sleeve, a temperature sensing insert, and a temperature sensing bulb. During assembly, workers first weld the temperature sensing sleeve to the designated location on the pipeline, then insert the temperature sensing insert. Finally, they assemble the temperature sensing bulb and complete the wiring management and tying. This process is not only complex but also requires specialized welders, consuming significant labor and time.
[0050] Furthermore, due to the complexity of welding operations, inconsistent welding quality can lead to unstable temperature sensing device performance, affecting the overall performance of the air conditioning system. Furthermore, the harmful gases and fumes that may be generated during welding can pose potential hazards to the environment and the health of operators.
[0051] Based on this, the present application provides a mounting bracket for a pipe temperature sensing device.
[0052] Example 1
[0053] like Figure 1-Figure 3 As shown, this embodiment provides a mounting bracket for a pipe temperature sensing device, comprising:
[0054] A main body 1, a clamping member 2 is provided on one side of the main body 1, and a clamping position 22 is provided on the clamping member 2;
[0055] The main body 1 is provided with an installation position 12 for installing a temperature sensing device. A pressing structure is provided in the installation position 12 , and the pressing structure protrudes from the surface of the installation position 12 .
[0056] Specifically, the main body 1 features a compact and robust design to ensure the overall stability and durability of the bracket. A clamping member 2 is provided on one side of the main body 1. Its primary function is to securely clamp the air conditioning piping. The snap-on positions 22 on the clamping member 2 match the shape and size of the air conditioning piping, allowing the bracket to be quickly and easily attached to the piping without the need for complex welding or screw fastening, greatly simplifying the installation process. The main body 1 also features a mounting position 12 for the temperature sensor. The design of this mounting position 12 must take into account the installation requirements of the temperature sensor, ensuring that it can be securely and accurately mounted on the bracket. For example, the inner wall structure of the mounting position 12 must mate with the outer wall of the temperature sensor. Preferably, a compression structure is provided within the mounting position 12. This structure, once installed, firmly presses the temperature sensor against the mounting position 12, ensuring a secure fit between the temperature sensor and the mounting position 12 and preventing it from loosening or falling off during installation or use.
[0057] In practical applications, the main body 1 of the bracket is designed as a sturdy injection-molded structure, ensuring sufficient strength and stability during use. The bracket's clamping member 2 and snap-in position 22 are designed to be adjustable and adaptable to different types of air conditioning pipes, making the bracket suitable for a wide range of air conditioning equipment models.
[0058] Example 2
[0059] This embodiment is improved on the basis of embodiment 1.
[0060] like Figure 1-Figure 3 As shown, in this embodiment, the length direction of the installation position 12 is set along the length direction of the main body 1, and the length direction of the pressing structure is set along the length of the installation position 12.
[0061] In this embodiment, the length direction of the mounting position 12 extends along the length direction of the main body 1. This design enables the mounting position 12 to better meet the installation requirements of temperature sensing devices of different lengths, providing greater installation flexibility and compatibility.
[0062] Furthermore, the compression structure within mounting position 12 is designed to be consistent with the length of mounting position 12. The compression structure protrudes from the surface of mounting position 12 and extends along its length. This design enables the compression structure to provide uniform compression force across the entire length of mounting position 12, ensuring close contact and a secure fit between the temperature sensing device and mounting position 12.
[0063] In a more preferred embodiment of this embodiment, the pressing structure includes a limiting protrusion provided on the wall surface of the installation position 12, and the limiting protrusion is provided in 1-3 rows in the installation position 12;
[0064] The cross section of the limiting protrusion is semicircular or elliptical.
[0065] Providing one to three stopper protrusions in mounting position 12 reduces complexity and compromises installation efficiency while ensuring a tight fit between the temperature sensing device and mounting position 12. Furthermore, the stopper protrusions are designed with a semicircular or elliptical cross-section. This design not only allows the stopper protrusions to better adapt to the shape and size of the temperature sensing device, providing greater installation compatibility and flexibility, but also effectively distributes the pressing force, preventing excessive pressure or damage to the temperature sensing device.
[0066] The cross-section of the limiting protrusion of the present application may also be other shapes, such as an arc shape.
[0067] Example 3
[0068] This embodiment is improved on the basis of embodiment 1.
[0069] like Figure 1-Figure 3 As shown, in this embodiment, a guide opening 23 is provided on one side of the engaging position 22 , and the width of the guide opening 23 gradually decreases along the direction from the periphery of the engaging position 22 to the center of the engaging position 22 .
[0070] The guide opening 23 is designed to gradually taper from the periphery of the engaging portion 22 toward its center. This design allows the refrigeration pipe 100 to be more easily and smoothly inserted into the engaging portion 22 during installation. The design of the guide opening 23 not only improves installation convenience but also ensures a secure connection. As the width of the guide opening 23 gradually decreases, the refrigeration pipe 100 is subjected to a gradually increasing clamping force when it is inserted into the engaging portion 22, achieving a more secure connection.
[0071] In one specific embodiment, the guide opening 23 begins at the periphery of the engagement position 22 and has a relatively large width. This design allows the refrigeration pipe 100 to more easily contact the guide opening 23 and begin the engagement process during installation. Starting from the beginning of the guide opening 23, the width of the guide opening 23 gradually decreases, forming the transition section of the guide opening 23. This transition section can be designed with a smooth curve or a gradually narrowing tapered structure to ensure a smooth transition of the refrigeration pipe 100 during the engagement process, avoiding excessive friction or resistance. The guide opening 23 terminates near the center of the engagement position 22 and has a relatively small width. When the refrigeration pipe 100 is fully engaged with the engagement position 22, the terminal end of the guide opening 23 plays a crucial role in securing the refrigeration pipe 100. As the width of the guide opening 23 gradually decreases, the refrigeration pipe 100 is subjected to a gradually increasing clamping force when it reaches the terminal end, thereby achieving a more secure engagement.
[0072] In actual applications, a rounded corner 211 is provided between the terminal end of the guide opening 23 and the engaging position 22 to reduce damage to the refrigeration pipeline 100 .
[0073] Example 4
[0074] This embodiment is improved on the basis of embodiment 1.
[0075] like Figure 1-Figure 3 As shown, in this embodiment, N clamping members 2 are provided on the main body 1, where N is a natural number greater than 1;
[0076] Each of the clamping members 2 includes two clamping arms 21 . The two clamping arms 21 are arranged opposite to each other, so that the clamping position 22 is formed between the two clamping arms 21 .
[0077] The design of multiple clamping members 2 allows the mounting bracket to be positioned appropriately for the desired engagement position 22, thereby enhancing installation flexibility and adaptability. The combined action of the multiple clamping members 2 ensures the stability of the mounting body 1. The design of the two engaging arms 21 provides a double-arm engagement structure with enhanced engagement force, ensuring that the mounting bracket will not loosen or fall off during long-term use.
[0078] In a specific embodiment, two clamping members 2 are provided on the main body 1, that is, N=2. The two clamping members 2 are respectively located on both sides of the main body 1 and are symmetrically distributed. Such a design not only improves the flexibility of installation, but also ensures the stability of the bracket during the installation process. The design of the clamping arm 21 adopts elastic material, so that it can produce a certain deformation during the clamping process, thereby increasing the tightness and stability of the clamping. The clamping arm 21 can be an integrally molded design with the main body 1, and the clamping position 22 is the space formed between the clamping arms 21, and its shape and size match the shape and size of the air-conditioning pipeline. When the air-conditioning pipeline is clamped into the clamping position 22, the clamping arm 21 will produce a certain deformation, clamping the pipeline tightly to prevent it from loosening or falling off during use.
[0079] Example 5
[0080] This embodiment is improved on the basis of embodiment 1.
[0081] like Figure 1-Figure 3 As shown, in this embodiment, a first reinforcing rib 212 is provided on one side of each of the clamping arms 21 , and the first reinforcing rib 212 is fixed on a side of the clamping arm 21 away from the clamping position 22 .
[0082] In actual applications, the length, position and number of the reinforcing ribs can be adjusted according to actual conditions to improve the structural strength of the clamping arm 21 .
[0083] In a more preferred embodiment of the present invention, a rounded corner 211 is provided at the edge of the clamping arm 21 .
[0084] The rounded corners 211 make the edges of the connecting arm 21 smoother when it is connected to the refrigeration pipe 100, reducing friction and collision with the refrigeration pipe 100, thereby avoiding possible scratches or damage. This is crucial for protecting the integrity of the refrigeration pipe 100 and improving the durability of the mounting bracket. The rounded corners 211 also enhance the overall aesthetics of the mounting bracket. Compared to sharp edges, the rounded corners 211 are softer and smoother, giving people a more comfortable visual experience. The radius of the rounded corners 211 should be determined according to the thickness and material of the connecting arm 21. Generally speaking, the radius of the rounded corners 211 should be large enough to make the edges of the connecting arm 21 smoother when it is connected to the refrigeration pipe 100, reducing friction and collision with the refrigeration pipe 100. At the same time, the radius of the rounded corners 211 should not be too large so as not to affect the overall structure and strength of the connecting arm 21.
[0085] Example 6
[0086] This embodiment is improved on the basis of embodiment 1.
[0087] like Figure 1-Figure 3 As shown, in this embodiment, a glue stealing hole 13 is provided on the main body 1 , and the glue stealing hole 13 is provided through the main body 1 .
[0088] Without compromising the structural strength and performance of the main body 1, the glue-tightening holes 13 reduce the amount of plastic used, thereby lowering production costs. Furthermore, the glue-tightening holes 13 help prevent defects such as shrinkage and deformation of the mounting bracket during the injection molding process. Shrinkage occurs due to the volumetric contraction of the plastic during cooling, while deformation can be caused by factors such as injection pressure and temperature.
[0089] In one embodiment, the glue-stealing hole 13 can also be used as a wiring hole for the temperature sensing device, making the wiring of the temperature sensing device more convenient. In actual application, the cross-section of the glue-stealing hole 13 can be circular or polygonal, and the axis of the glue-stealing hole 13 is set along the axis direction of the main body 1.
[0090] Example 7
[0091] This embodiment is improved on the basis of embodiment 1.
[0092] like Figure 1-Figure 3 As shown, in this embodiment, a plurality of second reinforcing ribs 11 are further provided on the main body 1 , and the plurality of second reinforcing ribs 11 are provided in parallel on the main body 1 , and the axes of the second reinforcing ribs 11 are perpendicular to the axis of the main body 1 .
[0093] The provision of the second reinforcing ribs 11 increases the rigidity and deformation resistance of the main body 1, allowing the mounting bracket to withstand greater external forces and pressures without deformation or damage during long-term use. This is crucial to ensuring the stability and reliability of the mounting bracket. Furthermore, the parallel arrangement of the second reinforcing ribs 11 and their arrangement perpendicular to the axis of the main body 1 also optimize the force distribution of the mounting bracket. When subjected to external forces, these ribs can effectively disperse and absorb the force, avoiding damage caused by localized excessive force. This design not only improves the overall strength of the mounting bracket but also extends its service life.
[0094] Example 8
[0095] like Figure 1-Figure 5 As shown, this embodiment provides an air conditioner, including a refrigeration system and a mounting bracket for the pipe temperature sensing device as described above;
[0096] The refrigeration system is provided with a refrigeration pipeline 100 , and the mounting bracket of the pipe temperature sensing device is clamped on the refrigeration pipeline 100 .
[0097] The refrigeration system of an air conditioner is its core component, responsible for generating and transferring heat and cold to meet user comfort needs. The refrigeration system is equipped with complex refrigerant piping 100, which transports the refrigerant to the required locations, enabling heat exchange. The mounting bracket for the pipe temperature sensor is clipped onto the refrigeration piping 100. This bracket offers advantages such as quick installation, stability, reliability, and wide applicability. By clipping the bracket onto the refrigeration piping 100, no additional welding or screwing is required, simplifying the installation process while ensuring a tight connection between the bracket and the piping.
[0098] In a preferred embodiment, the mounting bracket is clipped onto the refrigeration pipe 100, making it easy to adjust its position and position it for accurate pipe temperature detection. This allows the temperature sensor to accurately sense the temperature of the refrigeration pipe 100 and feed this information back to the air conditioner's control system. Based on this temperature information, the control system fine-tunes the refrigeration system's operating parameters to ensure the air conditioner outputs the most suitable temperature and provides the best comfort experience.
[0099] Example 9
[0100] like Figures 1-6 As shown, this embodiment provides a mounting bracket for a pipe temperature sensing device, comprising:
[0101] A main body 1, a clamping member 2 is provided on one side of the main body 1, and a clamping position 22 is provided on the clamping member 2;
[0102] The main body 1 is provided with an installation position 12 for installing a temperature sensing device. A pressing structure is provided in the installation position 12 , and the pressing structure protrudes from the surface of the installation position 12 .
[0103] In this embodiment, N clamping members 2 are provided on the main body 1, where N is a natural number greater than 1;
[0104] Each of the clamping members 2 includes two clamping arms 21 . The two clamping arms 21 are arranged opposite to each other, so that the clamping position 22 is formed between the two clamping arms 21 .
[0105] In this embodiment, a rotating connection structure 24 is provided between the clamping member 2 and the main body 1. This design allows the clamping member 2 to rotate within a certain range, thereby more flexibly adapting to the installation of refrigeration pipes with different directions.
[0106] The rotation connection structure 24 of the present application includes a rotation shaft and a mounting seat. The rotation shaft is fixed to one side of the main body 1, the mounting seat is pivotally connected to the rotation shaft, and the clamping member 2 is fixed to the mounting seat. In order to prevent the clamping member 2 from excessively deflecting during the rotation process, this embodiment also provides a limiting structure in the rotation connection structure. The limiting structure can be a protrusion provided on the rotation shaft, or a slot provided on the edge of the rotation hole, etc. When the clamping member 2 rotates to a certain angle, the limiting structure will play a limiting role, ensuring that the clamping member 2 can be stably maintained in the desired position. The limiting structure can also be a damping structure.
[0107] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.
[0108] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A mounting bracket for a pipe temperature sensing device, characterized in that: include: A main body (1), a clamping member (2) is provided on one side of the main body (1), and a clamping position (22) is provided on the clamping member (2); The main body (1) is provided with an installation position (12) for installing a temperature sensing device, and a pressing structure is provided in the installation position (12), and the pressing structure protrudes from the surface of the installation position (12).
2. The mounting bracket for the pipe temperature sensing device according to claim 1, characterized in that: The length direction of the installation position (12) is arranged along the length direction of the main body (1), and the length direction of the pressing structure is arranged along the length of the installation position (12).
3. The mounting bracket for the pipe temperature sensing device according to claim 1 or 2, characterized in that: The pressing structure comprises a limiting protrusion arranged on the wall surface of the installation position (12), and 1-3 limiting protrusions are arranged in the installation position (12); The cross section of the limiting protrusion is semicircular or elliptical.
4. The mounting bracket for the pipe temperature sensing device according to claim 1, characterized in that: A guide opening (23) is provided on one side of the engaging position (22), and the width of the guide opening (23) gradually decreases along the direction from the periphery of the engaging position (22) to the center of the engaging position (22).
5. The mounting bracket for the pipe temperature sensing device according to claim 4, characterized in that: N clamping members (2) are provided on the main body (1), wherein N is a natural number greater than 1; Each of the clamping members (2) comprises two clamping arms (21), and the two clamping arms (21) are arranged opposite to each other, so that the clamping position (22) is formed between the two clamping arms (21).
6. The mounting bracket for the pipe temperature sensing device according to claim 5, characterized in that: A first reinforcing rib (212) is provided on one side of each of the clamping arms (21), and the first reinforcing rib (212) is fixed on a side of the clamping arm (21) away from the clamping position (22).
7. The mounting bracket for the pipe temperature sensing device according to claim 5, characterized in that: A rounded corner (211) is provided at the edge of the clamping arm (21).
8. The mounting bracket for the pipe temperature sensing device according to claim 7, characterized in that: The main body (1) is provided with a glue stealing hole (13), and the glue stealing hole (13) is provided through the main body (1).
9. The mounting bracket for the pipe temperature sensing device according to claim 1 or 2, characterized in that: The main body (1) is also provided with a plurality of second reinforcing ribs (11), which are arranged in parallel on the main body (1), and the axes of the second reinforcing ribs (11) are perpendicular to the axis of the main body (1).
10. An air conditioner, characterized in that: comprising a refrigeration system and a mounting bracket for the pipe temperature sensing device according to any one of claims 1 to 9; A refrigeration pipeline (100) is provided in the refrigeration system, and a mounting bracket of the pipe temperature sensing device is clamped on the refrigeration pipeline (100).