Incinerator slag container
A metal-made furnace slag container with a flow guide plate and drainage holes addresses the issues of plastic containers softening and igniting, ensuring structural integrity and multiple reuse cycles.
Patent Information
- Application Number
- CN202422000171.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing incinerator slag container is made of plastic, which is susceptible to high temperatures to soften or catch fire, has a short service life and poor load-bearing capacity, and cannot be recycled multiple times.
The container is made of metal material, with a deflector and a drain hole inside. The deflector is set inclined, with an angle between 1° and 5°, and the drain hole is set at intervals along the width direction of the side plate, combining the reinforced plate rib and standard forklift fork hole design.
Effectively avoid softening or ignition of the container, improve service life, and recycle multiple times. It has good structural stability, strong heat resistance, strong drainage capacity and high safety.
Smart Images

Figure CN223106046U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of solid waste recycling, and particularly relates to a container for holding incineration slag. Background Art
[0002] In the prior art, incineration slag is derived from the slag generated by the hazardous waste incineration process. After the hazardous waste is burned at a high temperature of 850 - 1000°C in a rotary kiln, the combustible harmful substances are fully burned, and the non-combustible substances are formed into molten slag after high-temperature combustion and fall into the slag scraper below the kiln tail through the kiln tail. The slag is cooled by the water in the slag scraper and then fished out of the water by the scraper of the slag scraper and falls into the container. Currently, the mainstream containers are ton bags and ton barrels. Although the slag is cooled by water, it is still at a relatively high temperature. In the prior art, the material of the container for holding the filtered slag is usually plastic. During use, the container is easily affected by high temperature, resulting in softening or even catching fire of the container, with a low safety factor, poor weight-bearing capacity, and inability to be recycled multiple times. Therefore, improvements are urgently needed now. Utility Model Content
[0003] This application aims to solve the technical problems in the prior art that the material of the container for holding the filtered slag is usually plastic. During the process of holding and transporting the filtered slag, the container is easily affected by high temperature, resulting in softening or even catching fire of the container, low service life, poor load-bearing capacity, low transportation efficiency, and inability to be recycled multiple times. A container for holding incineration slag is proposed.
[0004] This application adopts the following solution: A container for holding incineration slag includes a base and a housing member disposed on the base for accommodating high-temperature slag. The housing member includes a bottom plate disposed on the base and a plurality of side plates disposed on the bottom plate. The bottom plate and the plurality of side plates jointly enclose a housing cavity for accommodating high-temperature slag, and the material of the housing member is metal.
[0005] Furthermore, a flow guide plate is provided on the bottom plate, and the flow guide plate is used to guide the liquid in the housing cavity to the bottom of the housing cavity.
[0006] Furthermore, drainage holes are correspondingly provided on the side plates at positions corresponding to the bottom of the flow guide plate. The flow guide plate can guide the free liquid in the housing cavity to the drainage holes to discharge the free liquid in the housing cavity from the housing cavity.
[0007] Furthermore, the flow guide plate is inclined on the bottom plate, and an included angle A is provided between the bottom plate and the flow guide plate. The degree of the included angle A satisfies the following relationship: 1° ≤ included angle A ≤ 5°.
[0008] Furthermore, the flow guide plate is symmetrically arranged along the central axis of the bottom plate.
[0009] Furthermore, a reinforcing rib is provided at one end of the side plate away from the bottom plate. The reinforcing rib is vertically provided on the side plate and integrally formed with the side plate.
[0010] Furthermore, fixing buckles are provided on the reinforcing rib, and fixing holes are correspondingly provided at the positions of the base corresponding to the fixing buckles. The fixing buckles can be inserted into the fixing holes correspondingly.
[0011] Furthermore, a plurality of standard forklift fork teeth holes are provided along the circumferential direction of the base, and the forklift fork teeth can be inserted into the standard forklift fork teeth holes correspondingly to transport the base.
[0012] Compared with the prior art, the present application has the following beneficial effects:
[0013] The present application provides a container for containing incineration slag, which includes a base and a containing member provided on the base for containing high-temperature slag. The containing member includes a bottom plate provided on the base and several side plates provided on the bottom plate. The bottom plate and the several side plates jointly enclose a containing cavity for containing high-temperature slag. By setting the material of the containing member as metal and providing a flow guide plate and a liquid discharge hole in the containing member, the problem that the high-temperature slag softens or ignites the container can be effectively avoided, greatly improving the service life of the slag container, which can be recycled multiple times. By providing a flow guide plate and a liquid discharge hole in the containing cavity, the problem of water accumulation at the bottom of the containing cavity can be effectively avoided. It has the advantages of simple structure, good structural stability, good heat resistance effect, strong drainage ability, high weight-bearing capacity, high service life, and is convenient for popularization and implementation. Description of the Drawings
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for description in the embodiments will be briefly introduced below.
[0015] Figure 1 is the front view of a container for containing incineration slag of the present application;
[0016] Figure 2 is the present application Figure 1 The partial enlarged view of part A therein;
[0017] Figure 3 is the present application Figure 1 The partial enlarged view of part B therein;
[0018] Figure 4 is the side view of a container for containing incineration slag of the present application;
[0019] Figure 5 is the top view of a container for containing incineration slag of the present application. Detailed Embodiments
[0020] Combined with asFigures 1-5 As shown in Figures 1-5 , the present technical solution will be further described. An incineration slag container includes a base 1 and a container member 2 disposed on the base 1 for accommodating high-temperature slag. The container member 2 includes a bottom plate 20 disposed on the base 1 and a plurality of side plates 21 disposed on the bottom plate 20. The bottom plate 20 and the plurality of side plates 21 together enclose a container cavity 22 for accommodating high-temperature slag. The material of the container member 2 is metal.
[0021] The present application provides an incineration slag container, which includes a base and a container member disposed on the base for accommodating high-temperature slag. The container member includes a bottom plate disposed on the base and a plurality of side plates disposed on the bottom plate. The bottom plate and the plurality of side plates together enclose a container cavity for accommodating high-temperature slag. By setting the material of the container member as metal and providing a flow guide plate and a liquid discharge hole in the container member, the problems of softening the container or igniting the container by high-temperature slag can be effectively avoided, greatly improving the service life of the slag container, which can be recycled multiple times. By providing a flow guide plate and a liquid discharge hole in the container cavity, the problem of water accumulation at the bottom of the container cavity can be effectively avoided, having the advantages of simple structure, good structural stability, good heat resistance effect, strong drainage ability, high load-bearing capacity, high service life, and being convenient for popularization and implementation.
[0022] During the implementation of this embodiment, a flow guide plate 23 is provided on the bottom plate 20, and the flow guide plate 23 is used to guide the liquid in the container cavity 22 to the bottom of the container cavity 22.
[0023] During the actual implementation process, the container is made of cast iron, completely solving the problems of slag ignition and damaging the container by high temperature, and can be recycled multiple times. By providing the flow guide plate on the bottom plate, the cooling water attached to the slag after being cooled by the cooling water can be effectively guided to the bottom of the container cavity by the flow guide plate and discharged from the container cavity through the liquid discharge hole, effectively avoiding the problem of water accumulation at the bottom of the container cavity, reducing the impact on the environment, and improving the safety and operation convenience of slag filtration transportation.
[0024] During the implementation of this embodiment, a liquid discharge hole 24 is correspondingly provided at a position on the side plate 21 corresponding to the bottom of the flow guide plate 23. The flow guide plate 23 can guide the free liquid in the container cavity 22 to the liquid discharge hole 24 to discharge the free liquid in the container cavity 22 from the container cavity 22.
[0025] In the actual implementation process, a plurality of drain holes are provided at intervals along the width direction of the side plate. The ratio of the aperture of the drain hole to the height of the side plate is 1:20. By setting the drain holes at specific positions on the side plate and cooperating with the guiding function of the deflector plate, effective diversion and discharge of the free liquid inside the accommodating cavity are achieved, thereby improving the discharge efficiency of the cooling water attached to the high-temperature slag, reducing the liquid accumulation problem in the container, helping to keep the inside of the container clean and hygienic, and improving the service life and maintenance simplicity of the container.
[0026] During the implementation of this embodiment, the deflector plate 23 is inclined on the bottom plate 20, and an included angle A is provided between the bottom plate 20 and the deflector plate 23. The degree of the included angle A satisfies the following relationship: 1° ≤ included angle A ≤ 5°.
[0027] In the actual implementation process, the degree of the included angle A is 2°. By setting the degree of the included angle A to 2°, the inclined installation of the deflector plate on the bottom plate can effectively adjust the direction of liquid flow, thereby improving the processing efficiency of the free liquid in the accommodating cavity, reducing energy consumption, and reducing the energy loss caused by unstable fluid flow, and finally realizing the optimization and safe and efficient operation of fluid processing.
[0028] During the implementation of this embodiment, the deflector plate 23 is symmetrically arranged along the central axis of the bottom plate 20.
[0029] In the actual implementation process, by symmetrically arranging the deflector plate 23 along the central axis of the bottom plate 20, the flow efficiency of the fluid on the bottom plate can be effectively improved, avoiding the problem of uneven fluid distribution caused by asymmetry. At the same time, the symmetric arrangement is also beneficial to reducing the space occupied by the deflector plate, making the overall structure more compact, and further improving the space utilization efficiency of the accommodating cavity.
[0030] During the implementation of this embodiment, a reinforcing rib 25 is provided at one end of the side plate 21 away from the bottom plate 20. The reinforcing rib 25 is vertically arranged on the side plate 21, and the reinforcing rib 25 is integrally formed with the side plate 21.
[0031] In the actual implementation process, the reinforcing rib plate is prepared by bending the whole plate of the side plate, which plays a role in horizontal and vertical support, and can effectively improve the strength and durability of the container structure, ensuring the stable and reliable operation of the container during use.
[0032] During the implementation of this embodiment, a fixing buckle 26 is provided on the reinforcing rib 25, and a fixing hole is correspondingly provided at the position of the base 1 corresponding to the fixing buckle 26, and the fixing buckle 26 can be correspondingly inserted into the fixing hole.
[0033] In the actual implementation process, by setting fixed buckles on the reinforcing ribs of the container, with the unique upper and lower buckles and tray design of the container, stacking can be carried out between multiple containers, thereby increasing the storage capacity. Moreover, the size and shape are designed according to the characteristics of the feeding equipment and logistics equipment of the cement co-disposal slag pretreatment module, improving the versatility of the container.
[0034] During the implementation of this embodiment, a plurality of standard forklift fork holes 3 are provided along the circumferential direction of the base 1, and the forklift forks can be inserted into the standard forklift fork holes 3 to transport the base 1.
[0035] The present application provides a container for incineration slag, which includes a base and a containing member provided on the base for containing high-temperature slag. The containing member includes a bottom plate provided on the base and several side plates provided on the bottom plate. The bottom plate and the several side plates together enclose a containing cavity for containing high-temperature slag. By setting the material of the containing member as metal and providing a flow guide plate and a drain hole in the containing member, the problem that the high-temperature slag softens or ignites the container can be effectively avoided, greatly improving the service life of the slag container, which can be recycled multiple times. By providing a flow guide plate and a drain hole in the containing cavity, the problem of water accumulation at the bottom of the containing cavity can be effectively avoided. It has the advantages of simple structure, good structural stability, good heat resistance effect, strong drainage capacity, high weight-bearing capacity, high service life, and is convenient for popularization and implementation.
[0036] The above are only the embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. An incineration furnace slag container, characterized in that, It includes a base (1) and a container (2) provided on the base (1) for accommodating high-temperature slag. The container (2) includes a bottom plate (20) provided on the base (1) and a plurality of side plates (21) provided on the bottom plate (20). The bottom plate (20) and the plurality of side plates (21) jointly enclose a containing cavity (22) for accommodating high-temperature slag, and the material of the container (2) is metal.
2. The incinerator slag container according to claim 1, characterized in that, A flow guide plate (23) is provided on the bottom plate (20) for guiding the liquid in the containing cavity (22) to the bottom of the containing cavity (22).
3. A container for holding incineration furnace slag according to claim 2, characterized in that, A drain hole (24) is correspondingly provided at a position on the side plate (21) corresponding to the bottom of the flow guide plate (23). The flow guide plate (23) can guide the free liquid in the containing cavity (22) to the drain hole (24) to discharge the free liquid in the containing cavity (22) from the containing cavity (22).
4. A container for holding incineration furnace slag according to claim 2, characterized in that, The flow guide plate (23) is inclined on the bottom plate (20), and an included angle A is provided between the bottom plate (20) and the flow guide plate (23). The degree of the included angle A satisfies the following relationship: 1° ≤ included angle A ≤ 5°.
5. A container for holding incineration slag according to claim 2, characterized in that, The flow guide plate (23) is symmetrically arranged along the central axis of the bottom plate (20).
6. A container for holding incineration furnace slag according to claim 1, characterized in that, A reinforcing rib (25) is provided at one end of the side plate (21) far from the bottom plate (20). The reinforcing rib (25) is vertically provided on the side plate (21), and the reinforcing rib (25) is integrally formed with the side plate (21).
7. A container for storing incineration slag according to claim 6, characterized in that A fixing buckle (26) is provided on the reinforcing rib (25), and a fixing hole is correspondingly provided on the base (1) at a position corresponding to the fixing buckle (26). The fixing buckle (26) can be inserted into the fixing hole.
8. A container for holding incineration furnace slag according to claim 1, characterized in that, A plurality of standard forklift fork teeth holes (3) are provided on the base (1) along its circumference. Forklift fork teeth can be inserted into the standard forklift fork teeth holes (3) to transport the base (1).