A frame type construction waste improvement all-in-one machine

CN224687539UActive Publication Date: 2026-08-28FUJIAN SOUTHERN HIGHWAY MECHANICAL CO LTD +1
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Patent Information

Application Number
CN202522086847.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-08-28
Estimated Expiration
2035-09-28

AI Technical Summary

Technical Problem

这种模式导致渣土处置项目建设周期长、投产慢,难以满足急需处理的现场需求,也阻碍了其中有用建筑材料的有效回收

Benefits of technology

[0014] As described above, the frame-type integrated construction waste improvement machine provided by this utility model has all its components fixedly installed on the frame body. The low-level and high-level frame bodies are arranged at different heights to form an integrated module. The installation between the modules is reasonable, reducing the infrastructure construction of large-scale plants and the large-scale transfer and transportation of construction waste. The frame-type integrated construction waste improvement machine is equipped with a compact connection between the mixing host, aggregate feeding device, additive conveying device and discharge device, which shortens the material proportioning time. It can treat different types of construction waste, including slag and inorganic sludge. Depending on the specific needs of the disposal project, the entire integrated module can be directly hoisted and transported to the disposal site for operation, which has a rapid response capability and strong adaptability.

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Abstract

The utility model relates to the technical field of slag, sticky slag improvement device, specifically relates to a frame type's building slag improvement all -in -one. The frame type's building slag improvement all -in -one, the mixing host computer sets up on the low -level frame body, the aggregate feeding device and additive conveying device set up on the high -level frame body, the low -level frame body, high -level frame body are arranged in the fixed seat height, the discharge device includes the discharge belt conveyor, the mixing host computer one end is equipped with the feed inlet, the other end is equipped with the discharge port, the discharge belt conveyor one end sets up in the low -level frame body below with the mixing host computer connection, the other end extends out the frame body. The frame type's building slag improvement all -in -one forms an integrated whole module, reduces the infrastructure construction of large -scale factory building, reduces the large -scale change of slag transportation, the connecting mode between the device is compact, shortens the time of material proportioning, has the quick response ability, and the adaptability is strong.
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Description

Technical Field

[0001] This utility model relates to the technical field of improvement devices for construction waste materials such as slag, cohesive slag, and similar materials, and specifically to a frame-type integrated machine for improving construction waste. Background Technology

[0002] The negative impact of construction waste on social development and residents' lives is becoming increasingly prominent, driving the rapid development of its treatment industry. However, existing treatment methods for slag and inorganic sludge in construction solid waste generally lack unified standards and rely heavily on large-scale production lines in fixed areas. To address these issues, patent application number 202221569862.2 discloses a waste treatment system, including a recycling device and a waste gas collection device connected to the upper end of the recycling device. The waste gas collection device includes several powder collection bins, which are connected in parallel or in series, or a combination of both. The bottom of each powder collection bin is conical and equipped with an arch-breaking device to accelerate flow, while the top is equipped with a dust collector for dust removal. This approach results in long construction cycles and slow commissioning of slag disposal projects, making it difficult to meet urgent on-site needs and hindering the effective recovery of useful building materials. Therefore, this utility model provides a novel device to solve the above problems. Utility Model Content

[0003] This utility model provides a frame-type integrated machine for improving construction waste soil.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: A frame-type integrated machine for improving construction waste includes a frame body, a mixing host, an aggregate feeding device, an additive conveying device, and a discharge device, all mounted on the frame body. The frame body includes a low-level frame body, a high-level frame body, and a fixed base. The mixing host is mounted on the low-level frame body, and the aggregate feeding device and the additive conveying device are mounted on the high-level frame body. The low-level frame body and the high-level frame body are arranged at different heights on the fixed base. The discharge device includes a discharge belt conveyor. The mixing host has an inlet at one end and an outlet at the other end. One end of the discharge belt conveyor is located below the low-level frame body and connected to the mixing host body, while the other end extends out of the frame body.

[0005] Furthermore, the mixing unit is equipped with a metering sensor.

[0006] Furthermore, the aggregate feeding device is arranged above the feed inlet side of the mixing host.

[0007] Furthermore, the additive conveying device is arranged above the discharge port of the mixing host.

[0008] Furthermore, the aggregate feeding device includes a feeding screen and a conveyor chain conveyor. The feeding screen is located above the feed inlet of the mixing host, and the conveyor chain conveyor is located between the feeding screen and the mixing host to receive the aggregate falling from the feeding screen and feed it into the mixing host.

[0009] Furthermore, the aggregate feeding device also includes a feeding observation mirror, which is positioned above the feed screen.

[0010] Furthermore, the additive conveying device includes a powder hopper, a powder metering sensor, and a conveying screw. The powder hopper has a powder outlet at its bottom, the powder metering sensor is located at the powder outlet of the powder hopper, and one end of the conveying screw is connected to the powder outlet and the other end is connected to the feed inlet of the mixing host.

[0011] Furthermore, the discharge device also includes a slag dispersing device, which includes a mounting frame, a rotating shaft, dispersing blades, and a driver. The mounting frame is fixedly connected to the discharge conveyor belt. The rotating shaft is mounted on the mounting frame and arranged along the width direction of the discharge conveyor belt. The dispersing blades are mounted on the rotating shaft. The driver is connected to the rotating shaft. When the driver drives the rotating shaft to rotate, the dispersing blades rotate synchronously.

[0012] Furthermore, it also includes an electrical control device, which is mounted on a fixed base and electrically connected to the mixing host, aggregate feeding device, additive conveying device, and discharge device.

[0013] Furthermore, the electrical control device is located below the high-level frame where the aggregate feeding device is installed.

[0014] As described above, the frame-type integrated construction waste improvement machine provided by this utility model has all its components fixedly installed on the frame body. The low-level and high-level frame bodies are arranged at different heights to form an integrated module. The installation between the modules is reasonable, reducing the infrastructure construction of large-scale plants and the large-scale transfer and transportation of construction waste. The frame-type integrated construction waste improvement machine is equipped with a compact connection between the mixing host, aggregate feeding device, additive conveying device and discharge device, which shortens the material proportioning time. It can treat different types of construction waste, including slag and inorganic sludge. Depending on the specific needs of the disposal project, the entire integrated module can be directly hoisted and transported to the disposal site for operation, which has a rapid response capability and strong adaptability. Attached Figure Description

[0015] Figure 1 A structural schematic diagram of a frame-type integrated construction waste soil improvement machine;

[0016] Figure 2 A schematic diagram of the additive conveying device for a frame-type integrated construction waste soil improvement machine;

[0017] Figure 3 This is a structural schematic diagram of a frame-type integrated construction waste soil improvement and discharge device. Detailed Implementation

[0018] The present invention will be further described below through specific embodiments.

[0019] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0020] Reference Figures 1 to 3 As shown, a frame-type integrated machine for improving construction waste includes a frame body 1, a mixing host 2 installed on the frame body 1, an aggregate feeding device 3, an additive conveying device 4, a discharge device 5, and an electrical control device 6.

[0021] The frame body 1 includes a low frame body 11, a high frame body 12, and a fixed base 13. The mixing host 2 is set on the low frame body 11, and the aggregate feeding device 3 and the additive conveying device 4 are set on the high frame body 11. The low frame body 11 and the high frame body 12 are arranged at different heights on the fixed base 13.

[0022] The mixing host 2 is set on the low frame 11. The mixing host 2 is an intermittent or continuous mixing host. One end of the mixing host 2 is provided with a feed inlet 21 and the other end is provided with a discharge outlet 22. The mixing host 2 is provided with a metering sensor 23.

[0023] The aggregate feeding device 3 is installed on the high-level frame 12. The aggregate feeding device 3 is arranged above the feed inlet 21 of the mixing host 2 and includes a feeding screen 31, a conveyor chain 32 and a feeding observation mirror 33. The feeding screen 31 is installed above the feed inlet 21 of the mixing host 2. The conveyor chain 32 is installed between the feeding screen 31 and the mixing host 2 and is used to receive the aggregate falling from the feeding screen 31 and feed it into the mixing host 2. The feeding observation mirror 33 is installed above the feeding screen 31.

[0024] The additive conveying device 4 is mounted on the high-level frame 12 and is arranged above the discharge port 22 of the mixing host 2. It includes a powder hopper 41, a powder metering sensor 42, and a conveying screw 43. The powder hopper 41 has a powder outlet 411 at the bottom. The powder metering sensor 42 is located at the powder outlet 411 of the powder hopper 41. One end of the conveying screw 43 is connected to the powder outlet 411 and the other end is connected to the feed port 21 of the mixing host 2. The conveying screw 43 is used to convey the powder in the powder hopper 41 to the mixing host 2. The additive conveying device 4 includes two sets arranged symmetrically, which are used for the storage and conveying of solidified powder and additives, respectively.

[0025] The discharge device 5 includes a discharge belt conveyor 51 and a slag dispersing device 52. One end of the discharge belt conveyor 51 is located below the low frame 11 and connected to the discharge port 22 of the mixing host 2 for receiving materials. The other end extends out of the frame 1 and is connected to the slag dispersing device 52. The slag dispersing device 52 includes a mounting frame 521, a rotating shaft 522, dispersing blades 523, and a driver 524. The mounting frame 53 is fixedly connected to the discharge belt conveyor 51. The rotating shaft 522 is mounted on the mounting frame 52 and arranged along the width direction of the discharge belt conveyor 51. The dispersing blades 523 are located on the rotating shaft 522. The driver 524 is connected to the rotating shaft 522. When the driver 524 drives the rotating shaft 522 to rotate, the dispersing blades 523 rotate synchronously to disperse the materials falling from the discharge belt conveyor 51.

[0026] The electrical control device 6 is mounted on the fixed base 13. The electrical control device 6 is arranged below the high frame body 12 where the aggregate feeding device 3 is installed. The electrical control device 6 is electrically connected to the mixing host 2, the aggregate feeding device 3, the additive conveying device 4, and the discharge device 5.

[0027] Reference Figures 1 to 3 As shown, when the above-mentioned frame-type integrated construction waste soil improvement machine is working, construction waste soil, cohesive waste soil and similar materials enter the feeding screen 31. During the feeding process, the excavator driver can observe through the feeding observation window 33. After being screened by the feeding screen 31, the material is conveyed by the conveyor chain conveyor 32 and directly enters the mixing host 2 from the feeding port 21. The host metering sensor 23 on the mixing host 2 starts to measure the amount of material fed and feeds it back to the electrical control device 6 to record the metering parameters.

[0028] The solidified powder and additives are stored in the powder hopper 41 respectively. The electronic control device 6 controls the opening of the conveying screw 43. The electronic control device 6 obtains the conveying amount of solidified powder and additives by using the metering parameters fed back by the host metering sensor 23 through the set ratio. When the conveying amount of solidified powder and additives reaches the preset value, the conveying screw 43 is turned off.

[0029] The mixing host 4 mixes according to the program. After the mixing is completed, the material is discharged from the discharge port 22 and picked up by the discharge belt conveyor 51 and transported to the slag and soil dispersing device 52. The driver 524 of the dispersing device 52 drives the rotating shaft 522 to rotate, and the dispersing blades 523 rotate synchronously to disperse the material falling from the discharge belt conveyor 51 and separate the slag and soil.

[0030] As can be seen from the above description of the present invention, compared with the prior art, the frame-type integrated construction waste soil improvement machine provided by the present invention has all components fixedly installed on the frame body 1. The low-level frame body 11 and the high-level frame body 12 arranged at different heights form an integrated module. The installation between the modules is reasonable, which reduces the infrastructure construction of large-scale factories and reduces the large-scale transfer and transportation of waste soil.

[0031] The frame-type integrated construction waste soil improvement machine is equipped with a compact connection between the mixing host 2, aggregate feeding device 3, additive conveying device 4 and discharge device 5, which shortens the material proportioning time. It can treat slag and inorganic sludge in different construction solid wastes. Depending on the specific needs of the disposal project, the entire integrated module can be directly hoisted and transported to the disposal site for operation. It has a fast response capability and strong adaptability.

[0032] The above are only some specific embodiments of this utility model, but the design concept of this utility model is not limited thereto. Any non-substantial modifications made to this utility model using this concept shall be considered as an infringement of the protection scope of this utility model.

Citation Information

Patent Citations

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