Heating device for silicate production

By designing and installing components such as support members, expansion adjustment parts in the heating device for silicate production, real-time detection and compensation of the lining tiles are achieved, and the problems of collapse risk and low production efficiency caused by loose lining tiles in the prior art are solved, and safety and equipment life are improved.

CN120176423AActive Publication Date: 2025-06-20SHENYANG JUNMAO THERMAL INSULATION MATERIAL CO LTD
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Patent Information

Application Number
CN202510638080.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-06-20
Estimated Expiration
2045-05-19

AI Technical Summary

Technical Problem

The existing heating devices for silicate production are not convenient for real-time testing of loose lining tiles, resulting in high collapse risk, and are inconvenient for anti-collapse protection and tile gap compensation, affecting production safety and efficiency.

Method used

A heating device including mounting support, expansion adjuster, wall inspection, horizontal mixer, anti-collapse auxiliary and brick joint test piece is designed to enable real-time detection and compensation of the lining tiles through these components to ensure that the tiles are tightly fitted and prevent collapse.

Benefits of technology

By real-time detection of the fit and wear of the lining tiles, timely expansion compensation and wear repair are carried out, the risk of collapse is reduced, production safety and efficiency are improved, and equipment service life is extended.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a heating device for silicate production, and relates to the technical field of silicate heating. Comprising an installation supporting piece, an expansion adjusting piece is installed on the installation supporting piece, and a wall attaching inspection piece is installed on the installation supporting piece; the wall-attached inspection piece is used for testing the safety of the lining of the mounting support piece; a horizontal mixing piece is mounted on the mounting support piece; the horizontal mixing part is used for mixing silicate raw materials; an anti-sloughing auxiliary part is mounted on the horizontal mixing part; the device can be used for detecting the fitting degree of the lining tile and the inner side of the rotary kiln cylinder, the safety detection timeliness of the structure on the lining tile can be improved, prompt and adjustment can be carried out in time, and potential safety hazards are reduced; the problems that an existing heating device for silicate production is inconvenient to carry out anti-collapse protection and inconvenient to carry out non-stop tile clearance compensation work when tiles are loosened are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of silicate heating, and specifically to a heating device for silicate production. Background Art

[0002] In actual silicate manufacturing work, it is necessary to heat the raw materials through a reaction. Usually, a rotary kiln is used for heating treatment. The raw materials for silicate preparation are usually quartz sand, silica, etc. By adding auxiliary raw materials such as a flux and then heating, it can be achieved. Because the raw materials themselves are relatively heavy, they will cause wear to the inner lining of the rotary kiln. The inner lining of the rotary kiln is usually protected by fitting inner lining tiles or bricks. Currently, the heating device for silicate production is not convenient for real-time testing of the loosening of the inner lining tiles. If the inner lining tiles become loose, it is likely to cause collapse, resulting in economic losses. It is not convenient for anti-collapse protection, and it is also not convenient to assist in compensating the tile gap without stopping the machine when the tiles are loose. The safety performance is not good, and it will also delay production. At the same time, it is not convenient to perform wear repair work in real time after the tiles are worn. Long-term excessive wear is likely to leave silicate raw materials, causing problems such as overheating.

[0003] Therefore, we propose a heating device for silicate production. Summary of the Invention

[0004] The purpose of the present invention is to provide a heating device for silicate production to solve the problems in the above background art that the current heating device for silicate production is not convenient for anti-collapse protection and is also not convenient to assist in compensating the tile gap without stopping the machine when the tiles are loose.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A heating device for silicate production, including an installation support member, an expansion adjustment member is installed on the installation support member, and a wall attachment inspection member is installed on the installation support member; the wall attachment inspection member is used to test the safety of the inner lining of the installation support member; a horizontal mixing member is installed on the installation support member; the horizontal mixing member is used to mix silicate raw materials; an anti-collapse auxiliary member is installed on the horizontal mixing member; the anti-collapse auxiliary member is located above the inner side of the installation support member; a brick joint test member is installed on the side of the anti-collapse auxiliary member; the brick joint test member is used to test the damage of the inner wall of the installation support member; a discharging device is installed on the installation support member; the discharging device is used to discharge silicate raw materials; the installation support member includes: a rotary kiln barrel; the expansion adjustment member includes: expansion bolts, a row of expansion bolts is threadedly connected to the rotary kiln barrel, and a row of expansion bolts respectively pass through the side wall of the rotary kiln barrel; an internal hexagonal hole is provided on the expansion bolts.

[0006] Preferably, the installation support member further includes: a detection groove, a limiting ring, and a lining tile. Annular grooves are provided on both sides of the rotary kiln barrel; two convex rings for rolling on the supporting rollers are provided on the rotary kiln barrel; twenty-four rows of detection grooves are formed on the inner side of the rotary kiln barrel; twenty-four rows of lining tiles are installed against the inner wall of the rotary kiln barrel, and the twenty-four rows of lining tiles are mutually adhered; the outer sides of the twenty-four rows of lining tiles are respectively adhered to the inner side of the rotary kiln barrel; two limiting rings are fixedly installed on the inner side of the rotary kiln barrel, and the inner sides of the two limiting rings are adhered to the twenty-four rows of lining tiles.

[0007] Preferably, the expansion adjustment member includes: an expansion pull bar. A row of expansion bolts are respectively located between two lining tiles on the same side, and the inner sides of the lining tiles on both sides of a row of expansion bolts are respectively bevel structures; the bottoms of a row of expansion bolts are respectively rotatably installed with expansion pull bars, and the two sides of a row of expansion pull bars are respectively bevel structures; a row of expansion pull bars are respectively adhered to the inner bevel surfaces of two lining tiles on the same side; a row of expansion pull bars are respectively used to extrude a circle of lining tiles on the same side to fit together.

[0008] Preferably, the wall-attached inspection member includes: a wall-attached elastic piece and a power connection piece. The wall-attached elastic piece is fixedly installed in the detection groove; the wall-attached elastic piece is an elastic bending structure; a power connection piece is fixedly installed inside the detection groove; the wall-attached elastic piece elastically adheres to the lining tile on the same side, and the end of the wall-attached elastic piece is adhered to the power connection piece; the wall-attached elastic piece is used to detect the fitting degree between the lining tile and the inner side of the rotary kiln barrel.

[0009] Preferably, the horizontal mixing member includes: a horizontal holding arm, a connecting pipe, a discharge box, and a counterweight. There are two horizontal holding arms, and rollers are respectively provided at both ends of the two horizontal holding arms; the two horizontal holding arms respectively roll and adhere to the annular grooves on both sides of the rotary kiln barrel by the rollers at both ends; a connecting pipe is fixedly installed on the front horizontal holding arm; a discharge box is fixedly installed between the two horizontal holding arms, and the discharge box communicates with the connecting pipe; a row of notches are provided at the bottom of the discharge box; counterweights are respectively fixedly installed on the two horizontal holding arms; the two counterweights are used to vertically pull the two horizontal holding arms to keep horizontal; the connecting pipe is externally connected to an electric blower.

[0010] Preferably, the anti-collapse auxiliary member includes: a support arm and a connecting frame. Support arms are respectively fixedly installed on the two horizontal holding arms; a connecting frame is fixedly installed between the two support arms.

[0011] Preferably, the anti-collapse auxiliary member further includes: an arc-shaped baffle and a coating auxiliary plate. The arc-shaped baffle is fixedly installed on the two horizontal holding arms; the arc-shaped baffle is fixedly installed on the connecting frame; three rows of through grooves are provided on the arc-shaped baffle; a coating auxiliary plate is fixedly installed on the side of the arc-shaped baffle, and the coating auxiliary plate is obliquely installed; the coating auxiliary plate is in contact with the lining tile.

[0012] Preferably, the brick joint test piece includes a fixing plate and a fitting elastic sheet. The fixing plate is fixedly installed on the side of the arc-shaped baffle. A row of fitting elastic sheets is fixedly installed on the fixing plate, and a row of fitting elastic sheets respectively correspond to and fit a row of inner lining tiles on the same side. There is a gap between the row of fitting elastic sheets.

[0013] Preferably, the brick joint test piece further includes an electricity connection conducting sheet. A row of electricity connection conducting sheets is fixedly installed on the fixing plate. The row of electricity connection conducting sheets respectively fit a row of fitting elastic sheets.

[0014] Preferably, the discharging device includes a discharging shell, a guiding sheet and an indicator light. The discharging shell is rotatably sleeved on the rotary kiln cylinder. There is a discharging port at the bottom of the discharging shell. There is a counterweight protrusion at the bottom of the discharging shell. A guiding sheet is fixedly installed inside the discharging shell, and the guiding sheet is located inside the limiting ring on the same side. There is a through hole on the discharging shell. Two indicator lights are fixedly installed on the discharging shell. The lamp beads in the fitting elastic sheet, the electricity connection conducting sheet and the upper indicator light are connected in series to a power supply. The lamp beads in the wall-attaching elastic sheet, the electricity connection sheet and the lower indicator light are connected in series to a power supply.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention adopts a wall-attaching inspection piece which can be used to detect the fitting degree between the inner lining tiles and the inner side of the rotary kiln cylinder, improve the timeliness of the safety inspection of the inner lining tiles of this structure, can give a prompt in time, make adjustments in time, reduce potential safety hazards. The expansion adjusting piece can timely carry out expansion compensation work when there are large gaps or hollowing in the inner lining tiles, improve the fitting tightness between a circle of inner lining tiles, compensate for the worn gaps, can carry out expansion fastening work without stopping the machine, can reduce the overall potential safety hazards, is simple to operate, does not affect the continuous heating work of this structure, and ensures the heating efficiency.

[0016] The horizontal mixing piece can be used to control the anti-collapse auxiliary piece to always be at the top inside the rotary kiln cylinder in real time, ensure that it can continuously prevent the collapse of the inner lining tiles, and at the same time, there is no occlusion on the surface of the lower inner lining tiles in real time. Even if the gap between the inner lining tiles is large, the arc-shaped baffle can be used for shielding and protection to ensure the safety of the structure in use. The application of the coating auxiliary plate facilitates the staff to simply repair the worn gaps inside the inner lining tiles and is convenient for coating caulking agents such as cement.

[0017] The brick joint test piece can be used to simply and intuitively detect the wear degree at the joint of the inner lining tiles, avoiding the situation where excessive wear goes undetected. It also facilitates the staff to make timely adjustments when excessive wear is found. By applying the auxiliary plate for seam filling, further wear can be avoided. This structure has simple and direct detection, can ensure the quality of the inner lining and the kiln body, improve the heating quality of silicate, and reduce the residue of silicate raw materials between the inner lining tiles. Description of the Drawings

[0018] Figure 1 Figure 1 is a schematic diagram of the overall structure of a heating device for silicate production according to the present invention; Figure 2 Figure 2 is a schematic diagram of the bottom structure of a heating device for silicate production according to the present invention; Figure 3 Figure 3 is a sectional view of the internal structure of a heating device for silicate production according to the present invention; Figure 4 Figure 4 is a sectional view of the installation support structure according to the present invention; Figure 5 Figure 5 is of the present invention Figure 4 Enlarged view of the structure in area C; Figure 6 Figure 6 is of the present invention Figure 3 Enlarged view of the structure in area D; Figure 7 Figure 7 is a schematic diagram of the horizontal mixing member structure according to the present invention; Figure 8 Figure 8 is a schematic diagram of the anti-collapse auxiliary member structure according to the present invention; Figure 9 Figure 9 is of the present invention Figure 4 Enlarged view of the structure in area E; Figure 10 Figure 10 is of the present invention Figure 4 Enlarged view of the structure in area F; Figure 11 Figure 11 is a schematic diagram of the discharging device structure according to the present invention.

[0019] In the figures: 1. Installation support member; 101. Rotary kiln barrel; 1011. Detection groove; 1012. Limiting ring; 102. Inner lining tile; 2. Expansion adjustment member; 201. Expansion bolt; 202. Expansion tie bar; 3. Wall attachment inspection member; 301. Wall attachment elastic piece; 302. Electric connection piece; 4. Horizontal mixing member; 401. Horizontal holding arm; 402. Connecting pipe; 403. Discharge box; 404. Counterweight; 5. Anti-collapse auxiliary member; 501. Support arm; 502. Connecting frame; 503. Arc-shaped baffle; 504. Smearing auxiliary plate; 6. Brick joint test piece; 601. Fixed plate; 602. Fitting elastic piece; 603. Electric connection conducting piece; 7. Discharging device; 701. Discharge shell; 7011. Guide piece; 702. Indicator light. Detailed Embodiment

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Embodiment 1: Please refer to Figures 1 to 11 as shown in The present invention provides a technical solution: a heating device for silicate production, including an installation support member 1, an expansion adjustment member 2 is installed on the installation support member 1, and a wall attachment inspection member 3 is installed on the installation support member 1; the wall attachment inspection member 3 is used to test the safety of the inner lining of the installation support member 1; a horizontal mixing member 4 is installed on the installation support member 1; the horizontal mixing member 4 is used to mix silicate raw materials; an anti-collapse auxiliary member 5 is installed on the horizontal mixing member 4; the anti-collapse auxiliary member 5 is located above the inner side of the installation support member 1; a brick joint test member 6 is installed on the side of the anti-collapse auxiliary member 6; the brick joint test member 6 is used to test the damage of the inner wall of the installation support member 1; a discharging device 7 is installed on the installation support member 1; the discharging device 7 is used to discharge silicate raw materials; the installation support member 1 includes: a rotary kiln cylinder 101; the expansion adjustment member 2 includes: an expansion bolt 201, a row of expansion bolts 201 are threadedly connected to the rotary kiln cylinder 101, and a row of expansion bolts 201 respectively pass through the side wall of the rotary kiln cylinder 101; the expansion bolt 201 is provided with an internal hexagonal hole.

[0022] Among them, the installation support 1 further includes: a detection groove 1011, a limiting ring 1012, and a lining tile 102. Annular grooves are provided on both sides of the rotary kiln barrel 101; two convex rings for rolling on the supporting rollers are provided on the rotary kiln barrel 101; twenty-four rows of detection grooves 1011 are formed inside the rotary kiln barrel 101; twenty-four rows of lining tiles 102 are installed against the inner wall of the rotary kiln barrel 101, and the twenty-four rows of lining tiles 102 are mutually attached; the outer sides of the twenty-four rows of lining tiles 102 are respectively attached to the inside of the rotary kiln barrel 101; two limiting rings 1012 are fixedly installed inside the rotary kiln barrel 101, and the inner sides of the two limiting rings 1012 are attached to the twenty-four rows of lining tiles 102; the expansion adjustment member 2 includes: an expansion bar 202. A row of expansion bolts 201 are respectively located between two lining tiles 102 on the same side, and the inner sides of the lining tiles 102 on both sides of a row of expansion bolts 201 are respectively bevel structures; the bottoms of a row of expansion bolts 201 are respectively rotatably installed with expansion bars 202, and the two sides of a row of expansion bars 202 are respectively bevel structures; a row of expansion bars 202 are respectively attached to the inner bevel surfaces of two lining tiles 102 on the same side; a row of expansion bars 202 are respectively used to squeeze a circle of lining tiles 102 on the same side to fit together; by using the expansion adjustment member 2, expansion compensation work can be carried out in time when there are large gaps or hollowing in the lining tiles 102, the fitting tightness between a circle of lining tiles 102 can be improved, and the worn gaps can be compensated. The bricks at the places with worn gaps or hollowing are not tightly combined with the base layer, are easily affected by external forces and abrasion, thus accelerating the damage of the bricks. After long-term abrasion, more bricks may have hollowing and falling off, further shortening the overall service life of the rotary kiln. This structure is simple to operate. At the same time, this structure can carry out expansion fastening work without stopping the machine, which can reduce the overall safety hazard, is simple to operate, does not affect the continuous heating work of this structure, and ensures the heating efficiency. When the rotary kiln barrel 101 is driven to rotate by the supporting rollers, an inner hexagon wrench can be directly used to drive the expansion bolts 201 to rotate, drive the expansion bars 202, and use the bevels on both sides to squeeze the lining tiles 102 on both sides, so as to control the lining tiles 102 to move and squeeze towards both sides, promote a circle of lining tiles 102 to fit tightly, and also prevent collapse, and the operation is simple.

[0023] The wall-attached inspection piece 3 includes: a wall-attached elastic piece 301 and a power connection piece 302. The wall-attached elastic piece 301 is fixedly installed in the detection groove 1011; the wall-attached elastic piece 301 is an elastic bending structure; the power connection piece 302 is fixedly installed inside the detection groove 1011; the wall-attached elastic piece 301 elastically adheres to the inner lining tile 102 on the same side, and the end of the wall-attached elastic piece 301 adheres to the power connection piece 302; the wall-attached elastic piece 301 is used to detect the fitting degree between the inner lining tile 102 and the inner side of the rotary kiln barrel 101. The wall-attached inspection piece 3 can be used to detect the fitting degree between the inner lining tile 102 and the inner side of the rotary kiln barrel 101, which can improve the timeliness of the safety inspection of the inner lining tile 102 in this structure, can give a prompt in time, make adjustments in time, reduce potential safety hazards, and prevent the inner lining tile 102 from being hollow. The hollow brick layer may cause the flatness inside the rotary kiln to be damaged, thereby affecting the uniform heating and flow of the material and reducing the production efficiency. In addition, the hollow may also cause vibration and noise, interfering with the stable operation of the rotary kiln. This structure has a comprehensive detection and avoids omission, which is convenient for timely adjustment. Once the local inner lining tile 102 is hollow and no longer fits the rotary kiln barrel 101, at this time, the inner lining tile 102 no longer presses the wall-attached elastic piece 301 to adhere to the power connection piece 302, and the corresponding lamp bead of the indicator light 702 below can turn off to give a prompt.

[0024] Among them, the horizontal mixing member 4 includes: a horizontal holding arm 401, a connecting pipe 402, a discharge box 403, and a counterweight 404. There are two horizontal holding arms 401, and rollers are provided at both ends of the two horizontal holding arms 401. The two horizontal holding arms 401 are respectively and rollingly attached to the annular grooves on both sides of the rotary kiln cylinder 101 by the rollers at both ends. A connecting pipe 402 is fixedly installed on the front horizontal holding arm 401. A discharge box 403 is fixedly installed between the two horizontal holding arms 401, and the discharge box 403 communicates with the connecting pipe 402. A row of notches is provided at the bottom of the discharge box 403. Counterweights 404 are respectively and fixedly installed on the two horizontal holding arms 401. The two counterweights 404 are used to vertically pull the two horizontal holding arms 401 to keep horizontal. The connecting pipe 402 is externally connected to an electric blower. The anti-collapse auxiliary member 5 includes: a support arm 501 and a connecting frame 502. Support arms 501 are respectively and fixedly installed on the two horizontal holding arms 401. A connecting frame 502 is fixedly installed between the two support arms 501. The anti-collapse auxiliary member 5 further includes: an arc-shaped baffle 503 and a coating auxiliary plate 504. The arc-shaped baffle 503 is fixedly installed on the two horizontal holding arms 401. The arc-shaped baffle 503 is fixedly installed on the connecting frame 502. Three rows of through grooves are provided on the arc-shaped baffle 503. A coating auxiliary plate 504 is fixedly installed on the side of the arc-shaped baffle 503, and the coating auxiliary plate 504 is obliquely installed. The coating auxiliary plate 504 is in contact with the inner lining tile 102. The horizontal mixing member 4 can be used to control the anti-collapse auxiliary member 5 to always be at the inner top of the rotary kiln cylinder 101 in real time, ensuring that it can continuously prevent the inner lining tile 102 from collapsing, and at the same time, there is no blockage on the surface of the lower inner lining tile 102 in real time. Using the shape of the arc-shaped baffle 503, the situation of the inner lining tile 102 collapsing can be effectively avoided. Even if the gap between the inner lining tiles 102 is large, the arc-shaped baffle 503 can be used for shielding and protection to ensure the safety of the structure. Under the counterweight traction of the counterweight 404, the horizontal holding arm 401 rolls with reduced resistance on the rotary kiln cylinder 101 by the rollers on both sides and keeps horizontal in real time. At this time, under the support of the horizontal holding arm 401, the arc-shaped baffle 503 can always be under the upper inner lining tile 102 for protection. Even if the upper inner lining tile 102 falls, it will be blocked by the arc-shaped baffle 503. As the fallen inner lining tile 102 rotates, when the fallen inner lining tile 102 is not blocked by the arc-shaped baffle 503, at this time, the fallen inner lining tile 102 also moves to the lower half of the rotary kiln cylinder 101, and at this time, the inner lining tile 102 will not fall off due to the gravity, avoiding damage caused by the falling of the inner lining tile 102 and ensuring the safety of the structure. By using the coating auxiliary plate 504, it is more convenient for the staff to simply repair the internal wear gaps of the inner lining tile 102, facilitating the application of caulking agents such as cement. The structure is more reasonable, and the slurry can be filled into the gaps between the inner lining tiles 102 under the application and scraping of the coating auxiliary plate 504.

[0025] Embodiment 2. On the basis of Embodiment 1, the brick joint test piece 6 includes: a fixing plate 601 and a fitting elastic piece 602. The fixing plate 601 is fixedly installed on the side of the arc-shaped baffle 503; a row of fitting elastic pieces 602 are fixedly installed on the fixing plate 601, and a row of fitting elastic pieces 602 respectively correspond to and are in contact with a row of inner lining tiles 102 on the same side; there is a gap between a row of fitting elastic pieces 602; the brick joint test piece 6 further includes: an electricity connection conducting piece 603. A row of electricity connection conducting pieces 603 are fixedly installed on the fixing plate 601; a row of electricity connection conducting pieces 603 respectively adhere to a row of fitting elastic pieces 602; the discharging device 7 includes: a discharging shell 701, a guiding piece 7011 and an indicator light 702. The discharging shell 701 is rotatably sleeved on the rotary kiln barrel 101; a discharging port is provided at the bottom of the discharging shell 701; a weight protrusion is provided at the bottom of the discharging shell 701; a guiding piece 7011 is fixedly installed inside the discharging shell 701, and the guiding piece 7011 is located inside the limiting ring 1012 on the same side; a through hole is provided on the discharging shell 701; two indicator lights 702 are fixedly installed on the discharging shell 701; the lamp beads in the fitting elastic piece 602, the electricity connection conducting piece 603 and the upper indicator light 702 are connected in series to a power source; the wall-attaching elastic piece 301, the electricity connection piece 302 and the lamp beads in the lower indicator light 702 are connected in series to a power source. The brick joint test piece 6 can be used to simply and intuitively detect the wear degree at the joint of the inner lining tiles 102, avoiding the situation where excessive wear degree is not detected, and it is also convenient for the staff to make timely adjustments when excessive wear is found. By applying the auxiliary plate 504 to fill the joint, further wear is avoided. This structure has simple and direct detection, can ensure the quality of the inner lining, improve the heating quality of silicate, reduce the residue of silicate raw materials between the inner lining tiles 102. The wear at the edge of the brick will accelerate the overall damage of the refractory brick. Since the worn part is easily further eroded and peeled off, the service life of the refractory brick will be significantly shortened, and it needs to be replaced more frequently, increasing the maintenance cost. The wear at the edge of the brick will also cause the flatness inside the kiln body to be damaged. Under long-term wear, the kiln body is prone to deformation, such as an increase in ovality, further exacerbating the damage of the refractory brick. The wear at the edge of the brick will also affect the heat transfer and material flow inside the rotary kiln, resulting in a decrease in production efficiency. Once there is wear at the adjacent part of the inner lining tiles 102, at this time, the fitting elastic piece 602 will also elastically fit. Because the worn part is concave, at this time, the fitting elastic piece 602 can be separated from the electricity connection conducting piece 603, and the lamp bead corresponding to the upper indicator light 702 will go out to give a prompt.

[0026] Working principle of this embodiment: First, place the raised ring on the rotary kiln barrel 101 on the supporting rollers on the rotary kiln base to drive the rotation of the rotary kiln barrel 101. The rotary kiln barrel 101 is installed obliquely, and the tail is butted against the silicate raw material feed hopper. Once the local lining tile 102 is hollow and no longer fits the rotary kiln barrel 101, at this time, the lining tile 102 no longer presses the wall-attached elastic piece 301 against the power connection piece 302. The wall-attached elastic piece 301 will elastically fit the lining tile 102. At this time, the lamp beads corresponding to the indicator light 702 below can turn off to give a prompt. When the staff finds that the lining tile 102 is loose and hollow, when the rotary kiln barrel 101 is driven to rotate by the supporting rollers, an inner hexagon wrench can be directly used to drive the expansion bolt 201 to rotate, drive the expansion bar 202, and use the inclined surfaces on both sides to squeeze the lining tiles 102 on both sides, so as to control the lining tiles 102 to move and squeeze to both sides, promote the lining tiles 102 in a circle to fit tightly, and also prevent collapse. When the rotary kiln barrel 101 rotates, the rotary kiln barrel 101 can drive the lining tile 102 to rotate together. During the process, under the counterweight traction of the counterweight 404, the horizontal holding arm 401 uses the rollers on both sides to reduce resistance and roll on the rotary kiln barrel 101 and always maintains horizontal. At this time, under the support of the horizontal holding arm 401, the arc-shaped baffle 503 can always protect under the lining tile 102 above. Even if the lining tile 102 above falls, it will be blocked by the arc-shaped baffle 503. As the fallen lining tile 102 rotates, when the fallen lining tile 102 is not blocked by the arc-shaped baffle 503, at this time, the fallen lining tile 102 also moves to the lower half of the rotary kiln barrel 101. At this time, the lining tile 102 in the lower half of the rotary kiln barrel 101 will not fall off under the action of gravity, ensuring the safety of this structure. The connecting pipe 402 is externally connected to an electric blower to supply air to the discharge box 403 to accelerate the combustion of silicate. At the same time, this structure adopts a coating auxiliary plate 504, which can make it more convenient for the staff to simply repair the internal wear gaps of the lining tile 102, facilitate the application of caulking agents such as cement, and the structure is more reasonable. Place the mud or soil between the lining tile 102 and the coating auxiliary plate 504. With the characteristic of the rotary kiln barrel 101 being installed obliquely by itself, the mud can drain to the lower place. During the process, the rotation of the rotary kiln barrel 101 can drive the lining tile 102 to rotate, and the mud can be filled into the gaps between the lining tiles 102 under the scraping and leveling of the coating auxiliary plate 504;When the inner lining tile 102 rotates and moves, the fitting elastic piece 602 fits onto the surface of the inner lining tile 102 in real time. Once there is wear at the adjacent part of the inner lining tile 102, the fitting elastic piece 602 will also elastically fit at this time. Because the worn part is concave, the fitting elastic piece 602 can be separated from the power connection conducting piece 603 at this time, and the corresponding lamp bead of the indicator lamp 702 above will go out to give a prompt, facilitating the staff to make timely adjustments. A blowtorch is inserted into the through hole on the discharge shell 701 to spray fire. As the silicate material is heated, it can be discharged from the bottom of the discharge shell 701 under the guidance of the guiding piece 7011.;

[0027] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0028] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A heating device for silicate production, comprising a mounting support (1), an expansion adjusting member (2) being mounted on the mounting support (1), characterized in that: The installation support (1) is provided with a wall-adherence inspection piece (3); the wall-adherence inspection piece (3) is used to test the safety of the inner lining of the installation support (1); A horizontal mixing element (4) is installed on the installation support (1); the horizontal mixing element (4) is used to mix silicate raw materials; An anti-collapse auxiliary component (5) is installed on the horizontal mixing component (4); the anti-collapse auxiliary component (5) is located above the inner side of the installation support component (1); A brick joint test piece (6) is installed on the side of the anti-collapse auxiliary piece (5); the brick joint test piece (6) is used to test the damage of the inner wall of the installation support (1); a discharge device (7) is installed on the installation support (1); the discharge device (7) is used to discharge silicate raw materials; The mounting support member (1) comprises: a rotary kiln barrel (101); the expansion adjusting member (2) comprises: expansion bolts (201); a row of expansion bolts (201) are threadedly connected to the rotary kiln barrel (101), and the row of expansion bolts (201) respectively pass through the side wall of the rotary kiln barrel (101); and the expansion bolts (201) are provided with hexagonal holes.

2. A heating device for silicate production according to claim 1, characterized in that: The mounting support (1) further comprises: a detection groove (1011), a limiting ring (1012) and lining tiles (102); annular grooves are provided on both sides of the rotary kiln barrel (101); the rotary kiln barrel (101) is provided with two raised rings for rolling on a supporting wheel; twenty-four rows of detection grooves (1011) are provided on the inner side of the rotary kiln barrel (101); twenty-four rows of lining tiles (102) are installed on the inner side of the rotary kiln barrel (101) against the wall, and the twenty-four rows of lining tiles (102) are attached to each other; the outer sides of the twenty-four rows of lining tiles (102) are respectively attached to the inner side of the rotary kiln barrel (101); two limiting rings (1012) are fixedly installed on the inner side of the rotary kiln barrel (101), and the inner sides of the two limiting rings (1012) are attached to the twenty-four rows of lining tiles (102).

3. A heating device for silicate production according to claim 2, characterized in that: The expansion adjusting member (2) comprises: an expansion strip (202); a row of the expansion bolts (201) are respectively located between two lining tiles (102) on the same side, and the inner sides of the lining tiles (102) on both sides of the row of expansion bolts (201) are inclined structures; expansion strips (202) are rotatably mounted on the bottom of a row of expansion bolts (201), and both sides of the row of expansion strips (202) are inclined structures; a row of the expansion strips (202) are respectively attached to the inner inclined surfaces of two lining tiles (102) on the same side; and a row of the expansion strips (202) are respectively used to squeeze a circle of lining tiles (102) on the same side to fit them together.

4. A heating device for silicate production according to claim 2, characterized in that: The wall-adhering inspection piece (3) comprises: a wall-adhering spring piece (301) and a power connection piece (302); the wall-adhering spring piece (301) is fixedly installed in the detection groove (1011); the wall-adhering spring piece (301) is an elastic bending structure; the power connection piece (302) is fixedly installed inside the detection groove (1011); the wall-adhering spring piece (301) elastically adheres to the inner lining tile (102) on the same side, and the end of the wall-adhering spring piece (301) adheres to the power connection piece (302); the wall-adhering spring piece (301) is used to detect the degree of adhesion between the inner lining tile (102) and the inner side of the rotary kiln tube (101).

5. A heating device for silicate production according to claim 4, characterized in that: The horizontal mixing element (4) comprises: a horizontal holding arm (401), a connecting pipe (402), a discharge box (403) and a counterweight (404). Two horizontal holding arms (401) are provided, and rollers are respectively provided at both ends of the two horizontal holding arms (401); the two horizontal holding arms (401) are respectively rolled and fitted in the annular grooves on both sides of the rotary kiln tube (101) by using the rollers at both ends; a connecting pipe (402) is fixedly installed on the front horizontal holding arm (401); a discharge box (403) is fixedly installed between the two horizontal holding arms (401), and the discharge box (403) is connected to the connecting pipe (402); a row of notches is provided at the bottom of the discharge box (403); counterweights (404) are respectively fixedly installed on the two horizontal holding arms (401); the two counterweights (404) are used to vertically pull the two horizontal holding arms (401) to keep them horizontal; and the connecting pipe (402) is externally connected to an electric fan.

6. A heating device for silicate production according to claim 5, characterized in that: The anti-collapse auxiliary component (5) comprises: a support arm (501) and a connecting frame (502); the support arms (501) are respectively fixedly mounted on the two horizontal retaining arms (401); and the connecting frame (502) is fixedly mounted between the two support arms (501).

7. A heating device for silicate production according to claim 6, characterized in that: The anti-collapse auxiliary component (5) further comprises: an arc-shaped baffle plate (503) and an application auxiliary plate (504), wherein the arc-shaped baffle plate (503) is fixedly mounted on the two horizontal retaining arms (401); the arc-shaped baffle plate (503) is fixedly mounted on the connecting frame (502); three rows of through grooves are provided on the arc-shaped baffle plate (503); a application auxiliary plate (504) is fixedly mounted on the side of the arc-shaped baffle plate (503), and the application auxiliary plate (504) is installed obliquely; and the application auxiliary plate (504) is in contact with the lining tile (102).

8. A heating device for silicate production according to claim 7, characterized in that: The brick joint test piece (6) comprises: a fixing plate (601) and a bonding spring sheet (602); the fixing plate (601) is fixedly mounted on the side of the arc-shaped baffle (503); a row of bonding spring sheets (602) is fixedly mounted on the fixing plate (601), and the row of bonding spring sheets (602) respectively corresponds to a row of lining tiles (102) on the same side; and intervals are provided between the rows of bonding spring sheets (602).

9. A heating device for silicate production according to claim 8, characterized in that: The brick joint test piece (6) further comprises: electrical connection conductive sheets (603); a row of electrical connection conductive sheets (603) is fixedly mounted on the fixing plate (601); and a row of electrical connection conductive sheets (603) is respectively bonded to a row of bonding spring sheets (602).

10. A heating device for silicate production according to claim 9, characterized in that: The discharge device (7) comprises: a discharge shell (701), a guide sheet (7011) and an indicator light (702), wherein the discharge shell (701) is rotatably sleeved on the rotary kiln drum (101); a discharge port is provided at the bottom of the discharge shell (701); a counterweight protrusion is provided at the bottom of the discharge shell (701); a guide sheet (7011) is fixedly mounted on the inner side of the discharge shell (701), and the guide sheet (7011) is located on the inner side of a limiting ring (1012) on the same side; a through hole is provided on the discharge shell (701); two indicator lights (702) are fixedly mounted on the discharge shell (701); the lamp beads in the attached spring sheet (602), the power connection conductive sheet (603) and the upper indicator light (702) are connected in series with a power supply; the lamp beads in the attached wall spring sheet (301), the power connection sheet (302) and the lower indicator light (702) are connected in series with a power supply.

Citation Information

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