Acoustic temperature measurement device

By coordinating the components of the acoustic temperature measurement device, the problem of hand burns for testing personnel in high-temperature environments has been solved, and automated temperature measurement has been achieved, making it suitable for high-temperature equipment such as boilers.

CN224398838UActive Publication Date: 2026-06-23SHENHUA GUONENG ENERGY GRP +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENHUA GUONENG ENERGY GRP
Filing Date
2025-07-07
Publication Date
2026-06-23

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Abstract

The present disclosure provides an acoustic wave temperature measurement device, wherein the device comprises an acoustic wave temperature measurement assembly, an adjusting assembly, an extension assembly, a fixing seat and a first telescopic rod; one end of the adjusting assembly is rotatably arranged in the connecting rod of the acoustic wave temperature measurement assembly, and the adjusting assembly and the acoustic wave temperature measurement assembly are arranged vertically, the other end of the adjusting assembly is fixedly arranged on the extension assembly, one side of the extension assembly is telescopically provided with the fixing seat, and the lower end of the fixing seat is provided with the first telescopic rod; the adjusting assembly is used for adjusting the height and horizontal orientation of the acoustic wave temperature measurement assembly; the extension assembly is used for adjusting the vertical orientation of the acoustic wave temperature measurement assembly; and the first telescopic rod is used for adjusting the height of the acoustic wave temperature measurement assembly.
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Description

Technical Field

[0001] This disclosure relates to the technical field of acoustic temperature measurement, and more specifically, to an acoustic temperature measurement device. Background Technology

[0002] Acoustic temperature measurement technology mainly utilizes the propagation speed of sound waves in a gaseous medium and the temperature of that gaseous medium to measure the temperature of the device being measured. Acoustic temperature measurement technology can be widely used in many fields, such as temperature measurement inside boilers in industrial production.

[0003] In related technologies, during the process of measuring the temperature inside a boiler, it is usually necessary for the testing personnel to insert the acoustic temperature measuring device deep into the boiler. Due to the high temperature inside the boiler, the testing personnel's hands are easily burned by the high temperature. Utility Model Content

[0004] This disclosure is made in view of the above-mentioned problems. This disclosure provides an acoustic temperature measuring device, comprising: an acoustic temperature measuring component, an adjusting component, an extending component, a fixing base, and a first telescopic rod; one end of the adjusting component is rotatably disposed inside the connecting rod of the acoustic temperature measuring component, and the adjusting component and the acoustic temperature measuring component are arranged perpendicularly; the other end of the adjusting component is fixedly disposed on the extending component; the fixing base is telescopically disposed on one side of the extending component; and the first telescopic rod is disposed at the lower end of the fixing base.

[0005] The adjustment component is used to adjust the height and horizontal orientation of the acoustic temperature measurement component.

[0006] The extension component is used to adjust the vertical orientation of the acoustic temperature measurement component;

[0007] The first telescopic rod is used to adjust the height of the acoustic temperature measurement component.

[0008] In one optional embodiment, a guide component is provided on the side of the fixing base connected to the extension component, and the fixing base and the extension component are fixedly connected by the guide component.

[0009] In one optional embodiment, the guide assembly includes a guide rod, a connecting block, and a circular block, and the fixed base has a rotating groove inside;

[0010] The connecting block is located on the side near the fixed base and is fixedly connected to the guide rod. One end of the circular block is connected to the rotating groove through a bearing, and the other end of the circular block passes through the connecting block and is fixedly connected to the guide rod. The guide rod is telescopically located inside the extension assembly.

[0011] In one optional embodiment, the guide rod has a threaded hole inside, and the threaded hole is fixedly disposed between the guide rod and the extension assembly.

[0012] In one optional embodiment, the extension component includes: a slide groove, a screw, and a sleeve; the slide groove is provided inside the sleeve, and the screw is threadedly connected to the threaded hole through the slide groove.

[0013] In one optional embodiment, the adjusting assembly includes a second telescopic rod and a rotating assembly;

[0014] The lower end of the second telescopic rod is fixedly connected to the sleeve, the upper end of the second telescopic rod is fixedly connected to the rotating assembly, and the upper end of the rotating assembly is fixedly connected to the acoustic temperature measuring assembly.

[0015] In one optional embodiment, a limiting component is provided on one side of the guide component, and a plurality of positioning blocks are provided on one side of the fixing seat. Each positioning block has a positioning hole inside, and the connecting block has a connecting hole inside. When the extension component and the fixing seat are in contact with each other, the limiting component passes through the connecting hole and the positioning hole, so that the adjusting component and the first telescopic rod are parallel or perpendicular to each other.

[0016] In one alternative embodiment, the limiting assembly includes a spring and a rod;

[0017] One end of the spring is fixedly connected to the connecting block, and the other end of the spring is sleeved on the outside of the insert rod.

[0018] In one optional embodiment, a ranging component is provided outside the acoustic temperature measuring component, and the ranging component is connected to the acoustic temperature measuring component through a ratchet assembly.

[0019] In one optional embodiment, a control component is provided on the outside of the first telescopic rod, and the control component is connected to the first telescopic rod via a damping shaft.

[0020] In this embodiment, the connecting rod of the acoustic temperature measuring component is rotatably connected to one end of the adjusting component, and the other end of the adjusting component is fixedly mounted on the extension component. The height and horizontal orientation of the acoustic temperature measuring component can be adjusted through the adjusting component. Moreover, a fixed seat is telescopically mounted on one side of the extension component, and a first telescopic rod is mounted on the lower end of the fixed seat. The vertical orientation of the acoustic temperature measuring component can be adjusted through the extension component, and the height of the acoustic temperature measuring component can be further adjusted through the first telescopic rod.

[0021] In the above embodiments, the height of the acoustic temperature measuring component can be controlled by adjusting the component and the first telescopic rod, the horizontal orientation of the acoustic temperature measuring component can be controlled by adjusting the component, and the vertical orientation of the acoustic temperature measuring component can be controlled by extending the component. Thus, the acoustic temperature measuring device proposed in this disclosure can be applied to various scenarios. Through the synergistic effect of the above components, the acoustic temperature measuring component can be inserted into the interior of the device to be measured to perform acoustic temperature measurement inside the device without the need for the testing personnel to manually insert the acoustic temperature measuring component into the device, thereby effectively avoiding the problem of the testing personnel's hands being burned by high temperature.

[0022] To make the above-mentioned objects, features and advantages of this disclosure more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description

[0023] To more clearly illustrate the technical solutions of the embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. These drawings are incorporated in and constitute a part of this specification. They illustrate embodiments conforming to this disclosure and, together with the specification, serve to explain the technical solutions of this disclosure. It should be understood that the following drawings only show some embodiments of this disclosure and should not be considered as limiting the scope. Those skilled in the art can obtain other related drawings based on these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of an acoustic temperature measuring device provided in an embodiment of the present disclosure;

[0025] Figure 2 A schematic diagram of an acoustic temperature measuring device for a rotating extension assembly provided in an embodiment of this disclosure;

[0026] Figure 3 This is a schematic diagram of a partial cross-section of an acoustic temperature measuring device provided in an embodiment of this disclosure;

[0027] Figure 4 An embodiment provided by this disclosure Figure 1 Enlarged diagram of point A in the middle.

[0028] Legend:

[0029] 1. Acoustic temperature measurement component; 201. Extension component; 2011. Screw; 2012. Sleeve; 2013. Slide groove; 202. Guide component; 2021. Guide rod; 2022. Connecting block; 2023. Threaded hole; 2024. Connecting hole; 2025. Round block; 203. Fixing base; 2031. Positioning block; 2032. Positioning hole; 2033. Rotating groove; 204. Limiting component; 2041. Spring; 2042. Insert rod; 205. First telescopic rod; 3. Distance measuring component; 4. Control component; 5. Adjustment component; 501. Second telescopic rod; 502. Rotating component. Detailed Implementation

[0030] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this disclosure, and not all of them. The components of the embodiments of this disclosure described and shown in the accompanying drawings can generally be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this disclosure provided in the accompanying drawings is not intended to limit the scope of the claimed disclosure, but merely represents selected embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the embodiments of this disclosure without inventive effort are within the scope of protection of this disclosure.

[0031] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0032] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this utility model pertains.

[0033] Research has shown that acoustic temperature measurement technology primarily utilizes the propagation speed of sound waves in a gaseous medium and the temperature of that medium to measure the temperature of the device being measured. Acoustic temperature measurement technology can be widely applied in various fields, such as temperature measurement inside boilers in industrial production.

[0034] In related technologies, during the process of measuring the temperature inside a boiler, it is usually necessary for the testing personnel to insert the acoustic temperature measuring device deep into the boiler. Due to the high temperature inside the boiler, the testing personnel's hands are easily burned by the high temperature.

[0035] Based on the above research, this disclosure provides an acoustic temperature measurement device. In an embodiment of this disclosure, the interior of the connecting rod of the acoustic temperature measurement component is rotatably connected to one end of the adjusting component, and the other end of the adjusting component is fixedly mounted on the extension component. The height and horizontal orientation of the acoustic temperature measurement component can be adjusted through the adjusting component. Furthermore, a fixed seat is retractably mounted on one side of the extension component, and a first telescopic rod is mounted at the lower end of the fixed seat. The vertical orientation of the acoustic temperature measurement component can be adjusted through the extension component, and the height of the acoustic temperature measurement component can be further adjusted through the first telescopic rod.

[0036] In the above embodiments, the height of the acoustic temperature measuring component can be controlled by adjusting the component and the first telescopic rod, the horizontal orientation of the acoustic temperature measuring component can be controlled by adjusting the component, and the vertical orientation of the acoustic temperature measuring component can be controlled by extending the component. Thus, the acoustic temperature measuring device proposed in this disclosure can be applied to various scenarios. Through the synergistic effect of the above components, the acoustic temperature measuring component can be inserted into the interior of the device to be measured to perform acoustic temperature measurement inside the device without the need for the testing personnel to manually insert the acoustic temperature measuring component into the device, thereby effectively avoiding the problem of the testing personnel's hands being burned by high temperature.

[0037] See Figures 1 to 4 The diagram shown is a schematic of an acoustic temperature measuring device provided in an embodiment of this disclosure. The acoustic temperature measuring device includes: an acoustic temperature measuring component, an adjusting component, an extending component, a fixed base, and a first telescopic rod. One end of the adjusting component is rotatably disposed inside the connecting rod of the acoustic temperature measuring component, and the adjusting component and the acoustic temperature measuring component are arranged perpendicularly. The other end of the adjusting component is fixedly disposed on the extending component. The fixed base is telescopically disposed on one side of the extending component, and the first telescopic rod is disposed at the lower end of the fixed base.

[0038] The adjustment component is used to adjust the height and horizontal orientation of the acoustic temperature measurement component.

[0039] The extension component is used to adjust the vertical orientation of the acoustic temperature measurement component;

[0040] The first telescopic rod is used to adjust the height of the acoustic temperature measurement component.

[0041] Here, the adjustment component 5 includes a second telescopic rod 501 and a rotating component 502. Specifically, the height of the acoustic temperature measuring component 1 can be adjusted by the second telescopic rod 501, and the horizontal orientation of the acoustic temperature measuring component 1 can be adjusted by the rotating component 502. The extension component 201 includes a screw 2011, a sleeve 2012, and a slide 2013. The first telescopic rod 205 can be used to adjust the height of the acoustic temperature measuring component 1.

[0042] The first telescopic rod 205 and the second telescopic rod 501 can be configured as multi-stage electric telescopic rods, which can ensure that the telescopic rods can be extended to a long length. Moreover, the first telescopic rod 205 is fixedly connected to the lower end of the fixed base 203, and the fixed base 203 can be moved by the first telescopic rod 205.

[0043] In this embodiment, one end of the adjusting component is rotatably disposed inside the acoustic temperature measuring component, and the adjusting component and the acoustic temperature measuring component are vertically arranged. This allows the adjusting component to drive the acoustic temperature measuring component to rotate horizontally, thereby adjusting the horizontal orientation of the acoustic temperature measuring component. Furthermore, the other end of the adjusting component is fixedly disposed on the extension component, ensuring that the extension component can stably drive the adjusting component to rotate vertically. This, in turn, allows the adjusting component to drive the acoustic temperature measuring component to rotate vertically, thereby adjusting the vertical orientation of the acoustic temperature measuring component. Since a fixed base is retractably disposed on one side of the extension component, the horizontal length between the extension component and the fixed base can also be adjusted to adjust the position of the acoustic temperature measuring component in the horizontal direction. The first telescopic rod and the second telescopic rod stably control the raising and lowering of the acoustic temperature measuring component to adjust its height.

[0044] In the above embodiments, the height of the acoustic temperature measuring component can be controlled by adjusting the component and the first telescopic rod, the horizontal orientation of the acoustic temperature measuring component can be controlled by adjusting the component, and the vertical orientation of the acoustic temperature measuring component can be controlled by extending the component. Thus, the acoustic temperature measuring device proposed in this disclosure can be applied to various scenarios. Through the synergistic effect of the above components, the acoustic temperature measuring component can be inserted into the interior of the device to be measured to perform acoustic temperature measurement inside the device without the need for the testing personnel to manually insert the acoustic temperature measuring component into the device, thereby effectively avoiding the problem of the testing personnel's hands being burned by high temperature.

[0045] In an optional embodiment, a guide component is provided on the side of the fixing base connected to the extension component, and the fixing base and the extension component are fixedly connected by the guide component.

[0046] like Figure 3 As shown, the fixed base 203 and the extension component 201 are fixedly connected by the guide component 202, which ensures that the guide component 202 can support the rotation of the extension component and drive the extension component 201 to perform circumferential movement.

[0047] In an optional embodiment, the guide assembly includes a guide rod, a connecting block, and a circular block, and the fixed base has a rotating groove inside;

[0048] The connecting block is located on the side near the fixed base and is fixedly connected to the guide rod. One end of the circular block is connected to the rotating groove through a bearing, and the other end of the circular block passes through the connecting block and is fixedly connected to the guide rod. The guide rod is telescopically located inside the extension assembly.

[0049] In the embodiments disclosed herein, such as Figures 1 to 4 As shown, the guide assembly 202 includes a guide rod 2021, a connecting block 2022, and a circular block 2025. The fixed base 203 has a rotating groove 2033 inside, which is circular in shape. The outer wall of one end of the circular block 2025 is connected to the rotating groove 2033 through a bearing. The other end of the circular block 2025 is fixedly connected to the guide rod 2021. One side of the guide rod 2021 is fixedly connected to the connecting block 2022. The circular block 2025 can pass through the connecting block 2022 and is connected to the guide rod 2021. Moreover, the outer wall of the guide rod 2021 is provided with an extension assembly 201, which can drive the extension assembly 201 to perform circumferential movement through the guide rod 2021.

[0050] In an optional embodiment, the guide rod has a threaded hole inside, and the threaded hole is fixedly disposed between the guide rod and the extension assembly.

[0051] In the embodiments disclosed herein, such as Figure 3 and Figure 4 As shown, the guide rod 2021 has a threaded hole 2023 inside, and the guide rod 2021 and the extension assembly 201 (i.e., screw 2011, sleeve 2012 and slide 2013) are fixedly connected through the threaded hole 2023.

[0052] In one optional embodiment, the extension assembly includes: a slide groove, a screw, and a sleeve; the slide groove is provided inside the sleeve, and the screw is threadedly connected to the threaded hole through the slide groove.

[0053] like Figure 3 and Figure 4 As shown, the sleeve 2012 has a sliding groove 2013 inside. The sleeve 2012 and the sliding groove 2013 are rectangular in shape, and the sliding groove 2013 matches the guide rod 2021. The screw 2011 can drive the sleeve 2012 to slide along the outer wall of the guide rod 2021, which can prevent the sleeve from deflecting during the sliding process on the outer wall of the guide rod.

[0054] One side of the screw 2011 is rotatably connected to the sleeve 2012, and the outer wall of the screw 2011 matches the threaded hole 2023, so that when the screw 2011 is rotated, the screw 2011 can move along the threaded hole 2023.

[0055] In one alternative implementation, the adjusting assembly includes a second telescopic rod and a rotating assembly;

[0056] The lower end of the second telescopic rod is fixedly connected to the sleeve, the upper end of the second telescopic rod is fixedly connected to the rotating assembly, and the upper end of the rotating assembly is fixedly connected to the acoustic temperature measuring assembly.

[0057] In the embodiments disclosed herein, such as Figures 2 to 4 As shown, the lower end of the second telescopic rod 501 is fixedly connected to the sleeve 2012. The sleeve 2012 can drive the second telescopic rod 501 to move. At the same time, when the guide rod 2021 drives the sleeve 2012 to move in a circumferential direction, the sleeve 2012 can drive the second telescopic rod 501 to move in a circumferential direction.

[0058] In an optional embodiment, a limiting component is provided on one side of the guide component, and a plurality of positioning blocks are provided on one side of the fixing seat. Each positioning block has a positioning hole inside, and the connecting block has a connecting hole inside. When the extension component and the fixing seat are in contact with each other, the limiting component passes through the connecting hole and the positioning hole, so that the adjusting component and the first telescopic rod are parallel or perpendicular to each other.

[0059] like Figures 1 to 4 As shown, a limit component 204 is provided on one side of the guide component 202, and a positioning block 2031 is provided on one side of the fixing base 203. Multiple positioning blocks 2031 can be provided, and each positioning block 2031 has a positioning hole 2032 inside. Figure 4 As shown, there are three positioning blocks 2031 and three positioning holes 2032; the connecting block 2022 has a connecting hole 2024 inside, and the connecting hole 2024 and the positioning hole 2032 have the same size.

[0060] Since the connecting hole 2024 and the positioning hole 2032 are the same size, the insert rod 2042 mentioned later can slide inside the positioning hole 2032 and the connecting hole 2024, so that the second telescopic rod 501 can be controlled to face different directions by the insert rod 2042.

[0061] That is, when the extension component 201 and the fixed base 203 are in contact with each other, the limiting component 204 passes through the connecting hole 2024 and the positioning hole 2032, so that the adjusting component 5 and the first telescopic rod 205 are parallel or perpendicular to each other. Specifically, when the sleeve 2012 in the extension component 201 and the fixed base 203 are in contact with each other, the insertion rod 2042 in the limiting component 204 passes through the connecting hole 2024 and the positioning hole 2032, so that the adjusting component 5 and the first telescopic rod 205 are parallel or perpendicular to each other.

[0062] In one alternative implementation, the limiting assembly includes a spring and a rod;

[0063] One end of the spring is fixedly connected to the connecting block, and the other end of the spring is sleeved on the outside of the insert rod.

[0064] like Figure 2 and Figure 4 As shown, the two ends of the spring 2041 are fixedly connected to the connecting block 2022 and the insert rod 2042 respectively. One end of the spring 2041 is sleeved on the outer wall of the insert rod 2042, so that the spring 2041 can be stretched by the insert rod 2042.

[0065] Furthermore, the cross-sectional shape of the side of the insert 2042 near the connecting block 2022 is circular, and the size of this cross-section is the same as that of the connecting hole 2024 and the positioning hole 2032, which allows the insert 2042 to slide inside the positioning hole 2032 and the connecting hole 2024.

[0066] In one optional embodiment, a ranging component is provided outside the acoustic temperature measuring component, and the ranging component is connected to the acoustic temperature measuring component via a ratchet assembly.

[0067] like Figures 1 to 3 As shown, a ranging component 3 is provided on the outside of the acoustic temperature measuring component 1. The ranging component can be a laser rangefinder, so that the ranging component 3 can be connected to the acoustic temperature measuring component 1 through a ratchet assembly, thereby ensuring that the ranging component 3 can follow the movement of the acoustic temperature measuring component 1. Moreover, the orientation of the ranging component 3 can be adjusted to measure the moving distance of the acoustic temperature measuring component 1 when it moves in different directions.

[0068] In one optional embodiment, a control component is provided on the outside of the first telescopic rod, and the control component is connected to the first telescopic rod via a damping shaft.

[0069] like Figures 1 to 3 As shown, a control component 4 is provided on the outside of the first telescopic rod 205. The control component 4 is connected to the first telescopic rod 205 through a damping shaft to facilitate the adjustment of the angle of the control component 4. Moreover, the control component 4 can control the first telescopic rod 205, the second telescopic rod 501, the rotation component 502, the ranging component 3, and the acoustic temperature measuring component 1 respectively, thereby supporting the operation of the control component 4 by the inspection personnel, and also supporting the viewing and adjustment of the values ​​on the control screen on the control component 4.

[0070] When using the acoustic temperature measuring device disclosed herein, if the device to be measured is a heating furnace or heating cylinder, and the opening of the device to be measured is at the top, the operator can pull the insertion rod 2042 and rotate the sleeve 2012 to drive the guide rod 2021 to rotate. After adjusting to the appropriate position, the insertion rod 2042 can be released. Then, the screw 2011 can be rotated to drive the sleeve 2012 to move along the guide rod 2021. At this time, the acoustic temperature measuring component 1... Figure 3 As shown; and by controlling the first telescopic rod 205 upward through the control component 4, the acoustic temperature measuring component 1 is moved to a position beyond the top of the device to be measured, and the acoustic temperature measuring component 1 and the adjustment component are moved into the inside of the device to be measured. Thus, the acoustic temperature measuring component 1 can be driven into the inside of the device to be measured by the second telescopic rod 501 to measure the temperature, without the need for personnel to climb to the top of the device to be measured. At the same time, the distance that the acoustic temperature measuring component 1 moves downward can be known through the distance measuring component 3.

[0071] If the opening of the device to be measured is located on the side, the inspector can pull the insertion rod 2042 and rotate the sleeve 2012 to rotate the guide rod 2021, so that the insertion rod 2042 connects with the positioning block 2031 at the corresponding position, and adjusts it so that the first telescopic rod 205 is perpendicular to the second telescopic rod 501. Then, the inspector can hold the first telescopic rod 205 horizontally, control the movement of the first telescopic rod 205, and insert the second telescopic rod 501 and the acoustic temperature measuring component 1 into the device to be measured. Then, control the second telescopic rod 501 so that the second telescopic rod 501 moves the acoustic temperature measuring component to the top of the device to measure the temperature of the top of the device. Similarly, it is not necessary for the personnel to manually insert the acoustic temperature measuring component into the device, thus effectively avoiding the personnel's hands from being burned by high temperature.

[0072] If the temperature measuring device is at a high height, the testing personnel can adjust the acoustic temperature measuring component 1 to... Figure 1 As shown, the height of the acoustic temperature measuring component 1 is adjusted by the first telescopic rod 205 and the second telescopic rod 501, thereby facilitating temperature measurement of devices with relatively high heights.

[0073] As can be seen from the above description, the technical solution disclosed herein has the following advantages:

[0074] The height of the acoustic temperature measuring component can be controlled by adjusting the component and the first telescopic rod. The horizontal orientation of the acoustic temperature measuring component can be controlled by adjusting the component, and the vertical orientation of the acoustic temperature measuring component can be controlled by extending the component. Thus, the acoustic temperature measuring device proposed in this disclosure can be applied to various scenarios. Through the synergistic effect of the above components, the acoustic temperature measuring component can be inserted into the interior of the device to be measured to perform acoustic temperature measurement inside the device without the need for the testing personnel to manually insert the acoustic temperature measuring component into the device. This effectively avoids the problem of the testing personnel's hands being burned by high temperature.

[0075] Those skilled in the art will readily understand that, based on the embodiments provided in this disclosure, the disclosed apparatus can be implemented in other ways. The apparatus embodiments described above are merely illustrative, and in actual implementation, there may be other classification methods.

[0076] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. An acoustic temperature measuring device, characterized in that, include: The acoustic temperature measuring component includes an adjustment component, an extension component, a fixed base, and a first telescopic rod. One end of the adjustment component is rotatably disposed inside the connecting rod of the acoustic temperature measuring component, and the adjustment component and the acoustic temperature measuring component are arranged perpendicularly. The other end of the adjustment component is fixedly disposed on the extension component. The fixed base is telescopically disposed on one side of the extension component, and the first telescopic rod is disposed at the lower end of the fixed base. The adjustment component is used to adjust the height and horizontal orientation of the acoustic temperature measurement component. The extension component is used to adjust the vertical orientation of the acoustic temperature measurement component; The first telescopic rod is used to adjust the height of the acoustic temperature measurement component.

2. The acoustic temperature measuring device according to claim 1, characterized in that, A guide component is provided on the side of the fixed base that is connected to the extension component, and the fixed base and the extension component are fixedly connected by the guide component.

3. The acoustic temperature measuring device according to claim 2, characterized in that, The guide assembly includes a guide rod, a connecting block, and a circular block, and the fixed base has a rotating groove inside; The connecting block is located on the side near the fixed base and is fixedly connected to the guide rod. One end of the circular block is connected to the rotating groove through a bearing, and the other end of the circular block passes through the connecting block and is fixedly connected to the guide rod. The guide rod is telescopically located inside the extension assembly.

4. The acoustic temperature measuring device according to claim 3, characterized in that, The guide rod has a threaded hole inside, and the threaded hole is fixedly connected between the guide rod and the extension assembly.

5. The acoustic temperature measuring device according to claim 4, characterized in that, The extension assembly includes: a slide groove, a screw, and a sleeve; the slide groove is provided inside the sleeve, and the screw is threadedly connected to the threaded hole through the slide groove.

6. The acoustic temperature measuring device according to claim 5, characterized in that, The adjustment assembly includes a second telescopic rod and a rotating assembly; The lower end of the second telescopic rod is fixedly connected to the sleeve, the upper end of the second telescopic rod is fixedly connected to the rotating assembly, and the upper end of the rotating assembly is fixedly connected to the acoustic temperature measuring assembly.

7. The acoustic temperature measuring device according to claim 3, characterized in that, A limiting component is provided on one side of the guide component, and a plurality of positioning blocks are provided on one side of the fixed base. Each positioning block has a positioning hole inside, and the connecting block has a connecting hole inside. When the extension component and the fixed base are in contact with each other, the limiting component passes through the connecting hole and the positioning hole, so that the adjusting component and the first telescopic rod are parallel or perpendicular to each other.

8. The acoustic temperature measuring device according to claim 7, characterized in that, The limiting assembly includes a spring and a plug rod; One end of the spring is fixedly connected to the connecting block, and the other end of the spring is sleeved on the outside of the insert rod.

9. The acoustic temperature measuring device according to claim 1, characterized in that, A ranging component is provided on the outside of the acoustic temperature measuring component, and the ranging component is connected to the acoustic temperature measuring component through a ratchet assembly.

10. The acoustic temperature measuring device according to claim 1, characterized in that, A control component is provided on the outside of the first telescopic rod, and the control component is connected to the first telescopic rod through a damping shaft.