Incineration hearth temperature measuring device
By connecting the assembly plate assembly with the incinerator flange, combined with the adjustment assembly and limiting rod, convenient displacement and fixed-point temperature measurement of the incinerator temperature measurement device are achieved, solving the problems of inconvenient operation and insufficient accuracy of the existing devices, and improving the temperature measurement efficiency and accuracy.
Patent Information
- Application Number
- CN202422416329.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing incinerator temperature measurement device is inconvenient to operate, the pushing spring is exhausted and the temperature measurement cannot be measured at a fixed point, which affects the temperature measurement accuracy and efficiency.
The assembly plate assembly is used to assemble the incinerator flange, and the temperature measuring rod is adjusted by sliding the adjustment component, combined with the limiting rod to fix it, and the dust is scraped to clean up the temperature measuring rod, so as to achieve convenient displacement and fixed-point temperature measurement of the temperature measuring rod.
It improves the convenience and accuracy of temperature measurement operation, reduces the operating force, ensures the stable positioning of the temperature measuring rod at the required position, and enhances the accuracy and sealing of temperature measurement.
Smart Images

Figure CN223271278U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of incinerator temperature measurement, in particular to an incinerator chamber temperature measuring device. Background Art
[0002] With the increasing frequency of human activities, urban waste disposal has become a critical issue facing urban development. Traditionally, landfills have primarily been used for urban waste disposal, but the problems associated with landfills are becoming increasingly prominent. First, landfills occupy large amounts of land, resulting in a waste of resources. Second, they can contaminate groundwater, posing significant safety risks. With the continuous advancement of technology, waste incineration has gradually gained widespread application. Incineration offers the advantages of complete harmlessness, significant volume and weight reduction, and easy resource recovery. Waste incineration primarily involves concentrating waste in a sealed incinerator for combustion. Numerous factors influence the incineration process, but the most important is the temperature distribution within the incinerator. High temperatures promote the drying rate of waste within the incinerator and the release of volatile components, thereby reducing the production of dioxins. However, due to the complex nature of waste and its dynamic composition, the temperature distribution during incineration is a dynamic process. The temperature distribution within the incinerator can reflect the combustion performance of waste and provide a reliable and important parameter for incineration optimization. Therefore, how to accurately measure the distribution of the temperature field in the furnace is of great significance for optimizing and controlling other influencing factors of the incinerator.
[0003] Announcement No. CN218724866U, a temperature measuring device for a waste incinerator, includes a cylinder, a temperature measuring rod is installed on one side of the interior of the cylinder, the temperature measuring rod passes through the opening of the cylinder and extends to the outside of the cylinder, a spring is installed inside the cylinder, the spring is sleeved on the outer wall of the temperature measuring rod, and a blocking disk is slidably installed on the outer wall of the end of the temperature measuring rod away from the cylinder. The sliding blocking disk can make the temperature measuring rod more convenient to extend into the interior of the furnace to measure the temperature at different positions, and then the spring can automatically reset the blocking disk after the temperature measurement is completed. During the reset process, the dust attached to the outer wall of the temperature measuring rod can be cleaned, so that the next temperature measurement will be more accurate.
[0004] The above-mentioned existing incinerator chamber temperature measuring device requires the user to push the spring to drive the temperature measuring rod to move when in use. This method is inconvenient to operate and it is more labor-intensive to push the spring. In addition, it is also impossible to position the temperature measuring rod at the desired position for fixed-point temperature measurement. In response to this problem, we propose an incinerator chamber temperature measuring device. Utility Model Content
[0005] An object of the present invention is to solve at least the above problems and to provide at least the advantages to be described below.
[0006] Another object of the present invention is to provide an incineration furnace temperature measuring device, which realizes more convenient and quick displacement adjustment of the temperature measuring rod and can fix the temperature measuring rod at a position for accurate temperature measurement.
[0007] In order to achieve the above purpose and some other purposes, the present invention adopts the following technical solutions:
[0008] A device for measuring the temperature of an incineration furnace chamber comprises: an assembly disk assembly, a temperature measuring assembly for measuring the temperature of the incineration furnace chamber being provided through the center of the assembly disk assembly, a scraping assembly for cleaning dust from the temperature measuring assembly being provided at the middle position of the outer wall of the assembly disk assembly, adjustment assemblies for driving the temperature measuring assembly to move forward and backward being provided on both sides of the outer wall of the assembly disk assembly, the adjustment assembly comprising a bracket, a slide groove being provided inside the bracket, a slider being provided inside the slide groove, and two sliders being connected together by a U-shaped push rod frame.
[0009] Preferably, grooves are provided on both sides of the upper surface of the push rod frame, a limit clamping rod is provided in the groove, and a cover plate is provided above the groove.
[0010] Preferably, the upper surface of the bracket is provided with a plurality of spaced-apart limiting holes, the inner bottom wall of the slide groove is provided with a plurality of spaced-apart card grooves, the outer wall of the slider is provided with a through hole, the limiting card rod passes through the limiting hole and the through hole, and extends into the card groove.
[0011] Preferably, both sides of the control end are installed in combination with an assembly rod and a push rod frame, one end of the control end is provided with a temperature measuring rod, and the output end of the temperature measuring rod is electrically connected to the input end of the control end, and the upper end of the control end is provided with a display screen, and the output end of the control end is electrically connected to the input end of the display screen.
[0012] Preferably, a mounting flange is provided at the rear end of the base, and a threaded mounting hole is provided at the middle position of the outer wall of the base.
[0013] Preferably, the scraping assembly includes an assembly block, the outer wall of the assembly block is provided with a combination thread matching the threaded assembly hole, a plurality of handles are annularly spaced apart on the outer wall of the assembly block, and a scraping sealing block is provided inside the assembly block.
[0014] The utility model has at least the following beneficial effects:
[0015] 1. Compared with the existing temperature measuring device of a garbage incinerator, this incinerator chamber temperature measuring device is assembled with the temperature measuring hole of the incinerator by means of a flange assembly through an assembling disc assembly. The temperature measuring assembly is inserted into the incinerator chamber through a temperature measuring rod to measure the temperature inside. The temperature measuring rod is driven to move back and forth by the adjusting assembly in a sliding adjustment manner. The position of the temperature measuring rod in the incinerator chamber is adjusted by displacement to measure the temperature at different positions. The sliding movement of the slider and the slide groove can save more effort and is more convenient for users to adjust. The provision of the scraping assembly can wipe the temperature measuring rod when it slides back and forth to remove dust on its surface, thereby indirectly improving the temperature measurement accuracy. The use of a push rod frame for connection can make it more convenient for users to grasp and push, and is more labor-saving. It solves the problem that the existing incinerator chamber temperature measuring device requires the user to push the spring to drive the temperature measuring rod to move when in use, which is inconvenient to operate and consumes more effort to push the spring.
[0016] 2. Compared with the existing temperature measuring device of the garbage incinerator, this incineration furnace temperature measuring device has the following advantages: after the temperature measuring rod is moved to the required position, the cover can be opened, the limit card rod can be taken out from the groove, the taken limit card rod can be aligned with the limit hole where the slider is located, and the limit card rod can be inserted downward to enter the limit hole, pass through the slider through the through hole, and extend into the card slot for engagement, so that the slider can be restricted and fixed in this position, thereby positioning the temperature measuring rod at a certain position, and accurately measuring the temperature of a certain area in the furnace can be carried out in a targeted manner, and the subsequent displacement adjustment is convenient, and the displacement can be made again by pulling the upper end of the limit card rod upward, and it can be stored and placed in the groove, which is convenient for users to use, and solves the problem that the existing temperature measuring device cannot position the temperature measuring rod at the required position for fixed-point temperature measurement.
[0017] 3. Compared with the existing waste incinerator temperature measuring device, this incinerator chamber temperature measuring device can fix the base to the required temperature measuring hole of the incinerator through the assembly flange, thereby improving stability and firmness. The threaded hole can be threadedly combined with the assembly block, so that the scraping assembly and the assembly disk assembly are detachable, which is convenient for users to perform separate disassembly and replacement operations. The setting of the turning handle can facilitate users to rotate the assembly block, so that users can rotate and remove the assembly block without the aid of external tools. The scraping sealing block is used to contact the temperature measuring rod. When the temperature measuring rod is displaced, the surface of the temperature measuring rod is scraped to remove dust and impurities on its surface, and it can also have a sealing effect, thereby improving the sealing performance of the area.
[0018] Other advantages, objectives and features of the present invention will be reflected in part through the following description, and in part will be understood by those skilled in the art through research and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a three-dimensional diagram of the overall structure of the utility model;
[0020] Figure 2 This is a schematic structural diagram of the assembly tray assembly of the utility model;
[0021] Figure 3 This is a schematic structural diagram of the scraping component of the present utility model;
[0022] Figure 4 This is a schematic diagram of the structure of the adjustment component of the utility model;
[0023] Figure 5 This is a schematic diagram of the temperature measurement component structure of the present utility model. DETAILED DESCRIPTION
[0024] The present invention is described in detail below with reference to the accompanying drawings so that those skilled in the art can implement the invention accordingly after reading the description.
[0025] like Figure 1-5 As shown, an incineration furnace temperature measuring device includes: an assembly disk assembly 1, a temperature measuring assembly 4 for measuring the incineration furnace temperature is provided through the center of the assembly disk assembly 1, a scraping assembly 2 for cleaning dust from the temperature measuring assembly 4 is provided at the middle position of the outer wall of the assembly disk assembly 1, and adjustment assemblies 3 for driving the temperature measuring assembly 4 to move forward and backward are provided on both sides of the outer wall of the assembly disk assembly 1;
[0026] The adjustment assembly 3 includes a bracket 301 , a slide groove 302 is provided inside the bracket 301 , a slider 303 is provided inside the slide groove 302 , and the two sliders 303 are connected together by a U-shaped push rod frame 306 .
[0027] In the above scheme, the assembly disc assembly is assembled with the temperature measuring hole of the incinerator in a flange assembly manner, and the temperature measuring assembly is inserted into the incinerator chamber through the temperature measuring rod to measure the temperature inside. The adjustment assembly is used to slide and adjust the temperature rod to move back and forth. The position of the temperature measuring rod in the incinerator chamber is adjusted by displacement to measure the temperature at different positions. The sliding movement of the slider and the slide groove can save more effort and is more convenient for users to adjust. The setting of the scraping assembly can wipe the temperature rod when it slides back and forth to remove dust on its surface, thereby indirectly improving the temperature measurement accuracy. The push rod frame is used for connection, which can be more convenient for users to grasp and push, and save more effort.
[0028] In a preferred embodiment, grooves are provided on both sides of the upper surface of the push rod frame 306, and a limiting clamping rod 308 is provided in the groove. A cover plate 307 is provided above the groove. A plurality of spaced limiting holes 304 are provided on the upper surface of the bracket 301, a plurality of spaced clamping grooves 305 are provided on the inner bottom wall of the slide 302, and a through hole is provided on the outer wall of the slider 303. The limiting clamping rod 308 passes through the limiting hole 304 and the through hole through the slider 303 and extends into the clamping groove 305.
[0029] In the above scheme, after the temperature measuring rod is moved to the required position, the cover can be opened, the limit card rod can be taken out from the groove, the taken out limit card rod can be aligned with the limit hole where the slider is located, and the limit card rod can be inserted downward to enter the limit hole, pass through the slider through the through hole, and extend into the card slot for engagement, so that the slider can be restricted and fixed in this position, thereby achieving the effect of positioning the temperature measuring rod at a certain position, and can accurately measure the temperature of a certain area in the furnace, and the subsequent displacement and adjustment are convenient, and the limit card rod can be moved again by pulling the upper end of the limit card rod upward, and it can be stored and placed in the groove for user convenience.
[0030] In a preferred embodiment, the temperature measuring component 4 includes a control end 401, both sides of which are assembled and installed with the push rod frame 306 through an assembly rod 404, a temperature measuring rod 402 is provided at one end of the control end 401, and the output end of the temperature measuring rod 402 is electrically connected to the input end of the control end 401, a display screen 403 is provided at the upper end of the control end 401, and the output end of the control end 401 is electrically connected to the input end of the display screen 403.
[0031] In the above scheme, the temperature measuring rod can use a resistive temperature measuring element or an ultrasonic temperature measuring element. The resistive temperature measuring element is distributed on the temperature measuring rod body and is used to detect the temperature after insertion. The ultrasonic temperature measuring element is located at the end of the detection rod. After insertion, the internal temperature is measured by ultrasound. The temperature data obtained by the temperature measurement is fed back to the external control end, and the control end is then fed back to the display screen, so that the user can know the internal temperature changes by observing the display screen from the outside.
[0032] In a preferred embodiment, the assembly disk assembly 1 includes a base 101, a mounting flange 102 is provided at the rear end of the base 101, a threaded assembly hole 103 is provided at the middle position of the outer wall of the base 101, and the scraping assembly 2 includes an assembly block 201, a combination thread 202 matching the threaded assembly hole 103 is provided on the outer wall of the assembly block 201, a plurality of handles 203 are annularly spaced on the outer wall of the assembly block 201, and a scraping sealing block 204 is provided inside the assembly block 201.
[0033] In the above scheme, the base can be fixed to the temperature measuring hole of the required incinerator through the assembly flange, thereby improving stability and firmness. The threaded hole setting can be threadedly combined with the assembly block, so that the scraping assembly and the assembly disk assembly are detachable, which is convenient for users to perform separate disassembly and replacement operations. The setting of the turning handle can facilitate users to rotate the assembly block, so that users can remove the assembly block without the aid of external tools. The scraping sealing block is used to contact the temperature measuring rod. When the temperature measuring rod is displaced, the surface of the temperature measuring rod is scraped to remove dust and impurities on its surface, and it can also have a sealing effect, thereby improving the sealing performance of the area.
[0034] Although the embodiments of the present invention have been disclosed above, they are not limited to the applications listed in the description and implementation methods. They can be fully applied to various fields suitable for the present invention. For those familiar with this field, additional modifications can be easily implemented. Therefore, without departing from the general concept defined by the claims and the scope of equivalents, the present invention is not limited to the specific details and illustrations shown and described herein.
Claims
1. A device for measuring the temperature of an incineration furnace, wherein: include: An assembly disk assembly is provided, wherein a temperature measuring assembly for measuring the temperature of the incineration furnace is provided through the center of the assembly disk assembly, a scraping assembly for cleaning dust from the temperature measuring assembly is provided at the middle position of the outer wall of the assembly disk assembly, and adjustment assemblies for driving the temperature measuring assembly to move forward and backward are provided on both sides of the outer wall of the assembly disk assembly. The adjustment assembly includes a bracket, a slide groove is provided inside the bracket, a slider is provided inside the slide groove, and the two sliders are connected together by a U-shaped push rod frame.
2. The incineration furnace temperature measuring device according to claim 1, wherein: Grooves are provided on both sides of the upper surface of the push rod frame, and limit clamping rods are provided in the grooves. A cover plate is provided above the grooves.
3. The incineration furnace temperature measuring device according to claim 2, wherein: The upper surface of the bracket is provided with a plurality of spaced limiting holes, the inner bottom wall of the slide is provided with a plurality of spaced card slots, the outer wall of the slider is provided with a through hole, the limiting card rod passes through the limiting hole and the through hole, and extends into the card slot.
4. The incineration furnace temperature measuring device according to claim 1, wherein: The temperature measuring component includes a control end, both sides of which are assembled and installed by assembling rods and push rod frames, one end of the control end is provided with a temperature measuring rod, and the output end of the temperature measuring rod is electrically connected to the input end of the control end, the upper end of the control end is provided with a display screen, and the output end of the control end is electrically connected to the input end of the display screen.
5. The incineration furnace temperature measuring device according to claim 1, wherein: The assembly disk assembly comprises a base, a rear end of the base is provided with an assembly flange, and a threaded assembly hole is opened at the middle position of the outer wall of the base.
6. The incineration furnace temperature measuring device according to claim 5, wherein: The scraping assembly includes an assembly block, the outer wall of the assembly block is provided with a combination thread matching the threaded assembly hole, the outer wall of the assembly block is provided with a plurality of rotating handles distributed annularly at intervals, and a scraping sealing block is provided inside the assembly block.