Concave type high-temperature-resistant corrosion-resistant anti-burst heatable brick bed panel
By using a ceramic grooved main panel and a honeycomb skeleton structure, combined with a highly corrosion-resistant ceramic coating and sealing strips, the problems of easy deformation and corrosion of the incinerator kang surface are solved, achieving the effects of high temperature resistance, explosion prevention, and rapid maintenance.
Patent Information
- Application Number
- CN202520545175.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-26
AI Technical Summary
Existing incinerator surfaces are prone to deformation and cracking at high temperatures, leading to structural failure and even explosions in severe cases. They are also easily corroded by acidic/alkaline substances produced by the burning of remains, resulting in a short service life. Traditional replacement methods are costly and time-consuming.
The main panel with a ceramic groove and a honeycomb skeleton are used to disperse thermal stress. Combined with a highly corrosion-resistant ceramic coating and sealing strips, it blocks the penetration of corrosive media. Modular partial replacement is achieved through mortise and tenon joint design, and high-temperature resistant bolts are used for fixing.
It effectively prevents the kang (heated brick bed) panel from cracking due to high temperatures, extends its service life, reduces the risk of corrosion, supports quick partial replacement, and reduces maintenance costs.
Smart Images

Figure CN223954166U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to incineration equipment technical field, especially a concave high temperature resistant corrosion resistant anti -bursting floor panel. BACKGROUND
[0002] Crematorium incinerator is a kind of equipment specially used for cremation, mainly used to burn the body into ashes. It is usually composed of furnace body, combustion chamber, flue system and other parts, which can completely burn the body by high temperature, reduce the volume of the body and convert it into ashes. The body will be placed in the furnace, and the body will be burned by high temperature (usually between 800 to 1000 DEG C) combustion. The temperature in the furnace can completely consume the soft tissue of the body, leaving only the skeleton part. After further processing, the skeleton will become fine ash. Smoke purification: during the cremation process, some smoke and harmful gases will be produced, so the incinerator is usually equipped with a smoke purification system. This system can remove harmful gases by high temperature combustion, filtration and desulfurization, etc. to ensure that the discharged gas meets the environmental protection standard. Cooling and ash handling: after burning, the skeleton in the furnace will be cooled down and crushed, and finally fine ash will be obtained. These ashes will be collected and handed over to the family. Crematorium incinerator is usually a highly automated equipment, which can efficiently and safely complete the burning task. Its design requires high temperature, high load operation, and has environmental protection and safety protection functions. With the improvement of social environmental protection requirements, modern crematorium incinerator not only pays attention to the burning effect, but also pays more attention to waste gas emission and energy saving and environmental protection.
[0003] However, the existing incinerator fire floor often encounters the following problems in use:
[0004] Ordinary concrete floor is easy to deform and crack in high temperature of incinerator for a long time, resulting in structural failure, and even explosion in serious cases. When it needs to be replaced, the traditional welding or integral structure needs to be replaced as a whole, which is high in cost and time consuming, and the acid / base substances produced by the body burning corrode the metal or concrete surface, shortening the service life. UTILITY MODEL CONTENT
[0005] The utility model discloses a recess formula high temperature -resistant corrosion -resistant anti -bursting floor panel of furnace, to effectively solve the problem that the ordinary concrete furnace surface of prior art mentioned in background technique is easy to deform, crack in high temperature of incinerator long -term exposure, leads to structural failure, and even will produce burst when serious. When need to replace, the traditional welding or integral structure damage needs to replace as a whole, and the cost is high and time -consuming, and the acid / alkaline substance of the body combustion corrodes the surface of metal or concrete, and the service life is shortened. The recess main panel of ceramic material (temperature resistance > 1200 DEG C) + honeycomb framework of the utility model design disperses thermal stress, avoids partial overheating burst. And high corrosion -resistant ceramic coating (such as alumina ceramic) + sealing batten isolation joint, block corrosion medium penetration. Once local damage appears, the modular design of mortise and tenon joint + high temperature resistant bolt supports local quick dismounting replacement.
[0006] In order to realize the above-mentioned purpose, the technical scheme adopted by the utility model is:
[0007] A recess formula high temperature -resistant corrosion -resistant anti -bursting floor panel of furnace, comprising:
[0008] The furnace body includes a spliced furnace and a connecting furnace, the spliced furnace and the connecting furnace are inserted, the spliced furnace and the connecting furnace are arranged in a straight line, the connecting furnace is provided with two blocks, the first end of the two connecting furnaces is provided with an inserted tenon, and the last end of the two connecting furnaces is provided with a meshed mortise; the number of the inserted tenon and the meshed mortise corresponds;
[0009] The recess main panel is arranged on the furnace surface of the furnace body, and the recess main panel is connected with the furnace surface of the furnace body;
[0010] The sealing batten is sprayed on the joint between the recess main panel and the furnace surface of the furnace body;
[0011] The laminated framework is in the form of a honeycomb, and the laminated framework is arranged in the furnace body.
[0012] The inserted tenon further comprises:
[0013] The inserted end is used for clamping into the meshed mortise;
[0014] The force applying surface is an inclined top surface arranged on the inserted end, and the insertion of the inclined force applying surface can increase the stress of the connection.
[0015] Further comprising:
[0016] The dowel is inserted into the joint of the inserted tenon and the meshed mortise.
[0017] The inserted tenon and the meshed mortise are in engagement.
[0018] The groove main panel is made of ceramic material.
[0019] The dowel is a high-temperature resistant bolt.
[0020] The material of the sealing strip is high-temperature resistant silica gel or ceramic fiber composite material.
[0021] The honeycomb structure of the laminated framework is composed of a plurality of groups of staggered arranged hexagonal units, and the unit wall thickness is 2-5 mm.
[0022] Compared with the prior art, the beneficial effects of the utility model are that the ceramic material groove main panel (temperature resistance > 1200 DEG C) + honeycomb framework of the utility model design disperses thermal stress, avoids local overheating and burst. And high corrosion-resistant ceramic coating (such as alumina ceramic) + sealing strip isolation joint, block the penetration of corrosive medium. Once local damage occurs, the modular design of mortise and tenon joint + high-temperature resistant bolt supports local quick disassembly and replacement. BRIEF DESCRIPTION OF DRAWINGS
[0023] The accompanying drawings are used to provide a further understanding of the utility model, and constitute a part of the specification, and are used to explain the utility model together with the specific embodiments of the utility model, and do not constitute the limitation to the utility model.
[0024] Figure 1 It is the overall appearance schematic view of the utility model.
[0025] Figure 2 It is the internal structure schematic view of the utility model.
[0026] Figure 3 It is the side sectional view of the utility model.
[0027] Figure 4 It is the insertion end schematic view of the utility model.
[0028] Marked number in the drawing: 1, kang body;101, spliced kang;102, connected kang;2, insertion tenon;3, engaged mortise;4, groove main panel;5, sealing strip;6, laminated framework;21, insertion end;22, force applying surface;7, dowel. DETAILED DESCRIPTION
[0029] The technical scheme in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.
[0030] In the description of the utility model, it is still necessary to point out that, unless there are definite provisions and limitations, the terms "arrange", "arrange", "connect", "connect" should be understood in a broad sense, for example, it can be fixedly connected, can be detachably connected, or integrally connected;It can be mechanically connected, or electrically connected;It can be directly connected, or indirectly connected through an intermediate medium, or it can be connected inside two elements.
[0031] As shown in Figures 1-4 The utility model provides a recess formula high temperature resistant corrosion -resistant anti -bursting floor panel, recess formula high temperature resistant corrosion -resistant anti -bursting floor panel, including: the body of a kang 1, spliced kang 101, connecting kang 102, inserting tenon 2, engaging mortise 3, recess main panel 4, sealing batten 5 and laminated framework 6.
[0032] The body of a kang 1 includes spliced kang 101 and connecting kang 102, and the spliced kang 101 is inserted with the connecting kang 102, and the spliced kang 101 and the connecting kang 102 are arranged in a straight line, and the connecting kang 102 is provided with two blocks, and the first ends of the two blocks of the connecting kang 102 are provided with the inserting tenon 2, and the ends of the two blocks of the connecting kang 102 are provided with the engaging mortise 3, and the number of the inserting tenon 2 and the engaging mortise 3 is corresponding;The appearance of the inserting tenon 2 and the engaging mortise 3 is engaged.The spliced kang 101 and the connecting kang 102 are connected through the structure of the inserting tenon 2 and the engaging mortise 3, so that the body of a kang 1 can be conveniently spliced and disassembled.The mortise and tenon structure not only provides stable connection, but also facilitates necessary maintenance or replacement of individual damaged parts during use.This design ensures the integrity and maintainability of the body of a kang 1, and enhances the stability of the spliced part.
[0033] In the utility model, the sealing batten 5 is sprayed at the joint of the recess main panel 4 and the body of a kang 1, and the purpose is to prevent leakage of smoke or other harmful substances during use.It ensures the tightness of the structure, helps to improve the safety of the body of a kang 1, avoids the diffusion of harmful gases in the combustion process, and protects the safety of the operating environment.
[0034] In the utility model, the honeycomb framework is designed for the inside of the body of a kang 1, provides multidirectional support, and the purpose is to disperse the thermal stress generated during use of the body of a kang 1.The dispersion of thermal stress can effectively reduce the risk of bursting, prolong the service life of the floor panel, and enhance the overall structural strength and stability.The honeycomb structure of the laminated framework 6 is composed of a plurality of hexagonal units arranged alternately, and the unit wall thickness is 2-5mm
[0035] The utility model discloses a recessed high-temperature-resistant and corrosion-resistant anti-bursting kang panel, which comprises a recessed main panel, a sealing strip and a lamination skeleton. The recessed main panel is provided on the kang surface of a kang body, and is connected with the kang surface of the kang body. The recessed main panel is made of ceramic material. The sealing strip is sprayed on the joint between the recessed main panel and the kang surface of the kang body. The sealing strip is made of high-temperature-resistant silica gel or ceramic fiber composite material. The lamination skeleton is in a honeycomb shape and is arranged in the kang body.
[0036] In the utility model, the plug-in tenon 2 further comprises a plug-in end 21 for clamping into the engaging mortise 3, and a force application surface 22 is arranged obliquely on the top surface of the plug-in end 21. The plug-in of the oblique force application surface 22 can increase the stress of the connection. The oblique force application surface 22 of the plug-in end 21 helps to improve the firmness of the plug-in part and increase the stress of the connection, thereby ensuring the stability of the spliced kang 101 and the connected kang 102. This design ensures that the connection part will not loosen or be damaged when subjected to external stress such as high temperature, thereby maintaining the structural integrity of the entire kang panel.
[0037] It should be noted that the utility model discloses a recessed high-temperature-resistant and corrosion-resistant anti-bursting kang panel. When in use, the fire kang is pushed into the incinerator, and the incinerator starts to burn the remains on the kang surface. During the burning process, the kang panel is designed as a multi-layer structure, and the recessed main panel 4 in the inner layer is made of ceramic material, which can effectively prevent the kang surface from being damaged by high temperature and also help to retain and conduct heat. The outer kang body 1 uses a high-corrosion-resistant ceramic coating to prevent the human tissues of the remains from corroding the kang body 1. The spliced kang 101 and the connected kang 102 are embedded through the mortise and tenon structure and are fixed by high-temperature-resistant bolts, which can replace the damaged kang body 1 part when necessary. The sealing strip 5 filled in the joint between the inner and outer layers can prevent smoke leakage. The honeycomb-shaped skeleton provides multidirectional support, disperses thermal stress, and reduces the risk of bursting.
[0038] Although the embodiments of the utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A recessed high temperature resistant corrosion resistant anti-burst floor panel, characterized in that, Include: The body (1), the body (1) includes spliced kang (101) and connecting kang (102), the spliced kang (101) and the connecting kang (102) are inserted, the spliced kang (101) and the connecting kang (102) are in a straight line, the connecting kang (102) is provided with two blocks, the first end of two connecting kang (102) is provided with a joint tenon (2), the end of two connecting kang (102) is provided with a mesh mortise (3), the number of joint tenon (2) and mesh mortise (3) is corresponding; Groove main panel (4), the groove main panel (4) is opened in the kang surface of the kang body (1), the groove main panel (4) is connected with the kang surface of the kang body (1); Sealing strip (5), the sealing strip (5) is sprayed at the joint of the groove main panel (4) and the kang surface of the kang body (1); Stacked skeleton (6), the stacked skeleton (6) is in the form of honeycomb, the stacked skeleton (6) is built in the inside of the kang body (1).
2. A recessed high temperature resistant corrosion resistant anti-burst panel according to claim 1, characterized in that, The joint tenon (2) further comprises: Joint end (21), the joint end (21) is used for clamping into mesh mortise (3); Force surface (22), the force surface (22) is a top surface of the joint end (21) arranged obliquely, and the joint of the oblique force surface (22) can increase the stress of the connection.
3. A recessed high temperature resistant corrosion resistant anti-burst panel according to claim 1, wherein, Further comprising: Dowel (7), the dowel (7) is inserted into the joint of joint tenon (2) and mesh mortise (3).
4. A recessed high temperature resistant corrosion resistant anti-burst panel according to claim 1, wherein, The joint tenon (2) and mesh mortise (3) are engaged in shape.
5. A recessed high temperature resistant corrosion resistant anti-burst panel according to claim 1, wherein, The groove main panel (4) is of ceramic material.
6. A recessed high temperature resistant corrosion resistant anti-burst ceiling panel according to claim 3, wherein, The dowel (7) is a high temperature resistant bolt.
7. A recessed high temperature resistant corrosion resistant anti-burst ceiling panel according to claim 2, wherein, The material of the sealing strip (5) is high temperature resistant silica gel or ceramic fiber composite material.
8. A recessed high temperature resistant corrosion resistant anti-burst panel according to claim 2, wherein, The honeycomb structure of the stacked skeleton (6) is composed of a plurality of groups of hexagonal units staggered arrangement, and the unit wall thickness is 2-5mm.