Environment-friendly, energy-saving and emission-reducing conveying device
Patent Information
- Application Number
- CN202521303138.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-06-24
AI Technical Summary
[0002]现在电厂、水泥厂等使用的输灰设备一般是刮板机、振动筛、斜管加振打等,这些设备使用耗电量大、备件更换费用高、噪音大等缺点,并且在输送时由于水泥粘性好很容易在输送管道内堆积,不方便工作人员操作使用
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Figure CN224740104U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an environmentally friendly, energy-saving, and emission-reducing conveying device, belonging to the technical field of cement conveying machinery and equipment. Background Technology
[0002] Currently, the ash conveying equipment used in power plants, cement plants, etc., is generally scraper conveyors, vibrating screens, inclined tubes with rappers, etc. These devices have disadvantages such as high power consumption, high cost of spare parts replacement, and high noise. In addition, cement is easy to accumulate in the conveying pipeline due to its good viscosity, which is inconvenient for workers to operate. Utility Model Content
[0003] The purpose of this utility model is to eliminate the need for scraper conveyors, vibrating screens, inclined pipes with rapping devices, and other similar equipment when transporting cement from a high place to a low place. This significantly reduces power consumption, noise, blockages, and spare parts replacement costs, while also offering advantages such as a low failure rate. It is also convenient for workers to operate. The technical solution is as follows: An environmentally friendly, energy-saving, and emission-reducing conveying device includes a protective outer cylinder 1, a rotating motor 2, a rotating gear 3, a transmission gear ring 4, a rotating drum 5, an ash discharge pipe 6, and an ash conveying pipe 7. The device is characterized in that: the rotating motor 2 is connected to the upper part of the inner side surface of the protective outer cylinder 1; the rotating gear 3 is connected to the center of the rotating end of the rotating motor 2; the transmission gear ring 4 is meshed and inserted into the middle of the side surface of the rotating gear 3; and the rotating drum 5 is rotatably inserted into the center of the inner side surface of the protective outer cylinder 1. A discharge pipe 6 is connected to the center of the lower surface of the rotating drum 5, and a conveying pipe 7 is connected to the center of the upper surface of the rotating drum 5. The protective outer cylinder 1 includes an outer tube 1-1, a thrust bearing 1-2, rollers 1-3, and support legs 1-4. A thrust bearing 1-2 is fixedly inserted into the upper part of the inner side surface of the outer tube 1-1. Rollers 1-3 are symmetrically connected to the upper and lower edges of the inner side surface of the outer tube 1-1. Support legs 1-4 are connected to the middle of the lower part of the outer side surface of the outer tube 1-1. The thrust bearing 1-2 is connected to the rollers 1-3. The moving gear ring 4 contacts the outer tube 1-1, which forms a 30° angle with the support leg 1-4. The rotating roller 5 includes a rotating tube 5-1, graphite packing 5-2, a flange 5-3, and bolts 5-4. Graphite packing 5-2 is wound around the lower edge of the outer surface of the rotating tube 5-1. The flange 5-3 is connected to the four edges of the upper surface of the rotating tube 5-1. The flange 5-3 and the rotating tube 5-1 are connected to each other by bolts 5-4. The transmission gear ring 4 is inserted into the outer surface of the rotating tube 5-1. On the surface, the roller 1-3 contacts the outer surface of the rotating pipe 5-1, which is I-shaped. The upper center of the ash discharge pipe 6 is provided with a flange 5-3 and is connected to each other by bolts 5-4. The lower edge of the outer surface of the ash conveying pipe 7 is wrapped with graphite packing 5-2. The inner diameter of the rotating pipe 5-1 is larger than the outer diameter of the ash conveying pipe 7, and the outer diameter of the rotating pipe 5-1 is smaller than the inner diameter of the ash discharge pipe 6. The ash discharge pipe 6 and the ash conveying pipe 7 are L-shaped.
[0004] The beneficial effects of this utility model are: when workers transport cement from a high place to a low place, there is no need to use equipment such as scraper conveyors, vibrating screens, inclined pipes and vibrators, which greatly reduces power consumption, noise, blockage and spare parts replacement costs and has a low failure rate, making it convenient for workers to operate and use. Attached Figure Description
[0005] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the protective outer cylinder 1 of this utility model; Figure 3 This is a schematic diagram of the rotating roller 5 of this utility model. Detailed Implementation
[0006] Reference Figure 1 Figure 2 Figure 3 The aforementioned environmentally friendly, energy-saving, and emission-reducing conveying device includes a protective outer cylinder 1, a rotating motor 2, a rotating gear 3, a transmission gear ring 4, a rotating drum 5, an ash discharge pipe 6, and an ash conveying pipe 7. Its characteristic is that: a rotating motor 2 is connected to the upper part of the inner side surface of the protective outer cylinder 1; a rotating gear 3 is connected to the center of the rotating end of the rotating motor 2; a transmission gear ring 4 is meshed and inserted into the middle of the side surface of the rotating gear 3; and a rotating drum 5 is rotatably inserted into the center of the inner side surface of the protective outer cylinder 1. A discharge pipe 6 is connected to the center of the lower surface of the cylinder 5, and a conveying pipe 7 is connected to the center of the upper surface of the rotating drum 5. The protective outer cylinder 1 includes an outer tube 1-1, a thrust bearing 1-2, rollers 1-3, and support legs 1-4. A thrust bearing 1-2 is fixedly inserted into the upper part of the inner side surface of the outer tube 1-1. Rollers 1-3 are symmetrically connected to the upper and lower edges of the inner side surface of the outer tube 1-1. Support legs 1-4 are connected to the middle of the lower part of the outer side surface of the outer tube 1-1. The thrust bearing 1-2 and the... The transmission gear ring 4 contacts the outer tube 1-1, which forms a 30° angle with the support leg 1-4. The rotating roller 5 includes a rotating tube 5-1, a graphite packing 5-2, a flange 5-3, and bolts 5-4. The graphite packing 5-2 is wound around the lower edge of the outer surface of the rotating tube 5-1. The flange 5-3 is connected to the four edges of the upper surface of the rotating tube 5-1. The flange 5-3 and the rotating tube 5-1 are connected to each other by bolts 5-4. The transmission gear ring 4 is inserted into the outer surface of the rotating tube 5-1. On the surface, the roller 1-3 contacts the outer surface of the rotating pipe 5-1, which is I-shaped. The upper center of the ash discharge pipe 6 is provided with a flange 5-3 and is connected to each other by bolts 5-4. The lower edge of the outer surface of the ash conveying pipe 7 is wrapped with graphite packing 5-2. The inner diameter of the rotating pipe 5-1 is larger than the outer diameter of the ash conveying pipe 7, and the outer diameter of the rotating pipe 5-1 is smaller than the inner diameter of the ash discharge pipe 6. The ash discharge pipe 6 and the ash conveying pipe 7 are L-shaped.
[0007] In use, the operator first starts the rotating motor 2, which drives the rotating gear 3 to rotate. At the same time, the rotating gear 3 drives the transmission gear ring 4 to rotate, and the transmission gear ring 4 drives the rotating tube 5-1 on the rotating drum 5 to rotate inside the outer tube 1-1 on the protective outer cylinder 1. Meanwhile, the thrust bearing 1-2 contacts the rotating gear 3 to prevent the rotating tube 5-1 from moving downward. At the same time, the roller 1-3 supports the rotating tube 5-1 and reduces friction. Then, the operator injects cement into the rotating tube 5-1 through the ash conveying pipe 7. At the same time, the rotation of the rotating tube 5-1 mixes the cement and causes it to slide down. At the same time, the rotation of the rotating tube 5-1 prevents cement from accumulating inside the rotating tube 5-1. Finally, the cement is discharged through the ash discharge pipe 6.
[0008] During operation, the graphite packing 5-2 on the transfer pipe 5-1 cooperates with the flange 5-3 on the ash discharge pipe 6 to prevent cement leakage, and at the same time, the graphite packing 5-2 on the ash conveying pipe 7 cooperates with the flange 5-3 on the transfer pipe 5-1 to prevent cement leakage.
[0009] The right side of the graphite packing 5-1 contacts the inner surface of the flange 5-3 to form a seal.
[0010] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An environmentally friendly, energy-saving, and emission-reducing conveying device, comprising a protective outer cylinder (1), a rotating motor (2), a rotating gear (3), a transmission gear ring (4), a rotating drum (5), an ash discharge pipe (6), and an ash conveying pipe (7), characterized in that: A rotating motor (2) is connected above the inner side surface of the protective outer cylinder (1). A rotating gear (3) is connected to the center of the rotating end of the rotating motor (2). A transmission gear ring (4) is meshed and inserted in the middle of the side surface of the rotating gear (3). A rotating drum (5) is rotatably inserted in the center of the inner side surface of the protective outer cylinder (1). A dust discharge pipe (6) is connected to the center of the lower surface of the rotating drum (5). A dust conveying pipe (7) is connected to the center of the upper surface of the rotating drum (5).
2. The environment-friendly, energy-saving and emission-reducing conveying device according to claim 1, characterized in that: The protective outer cylinder (1) includes an outer tube (1-1), a thrust bearing (1-2), rollers (1-3), and a support leg (1-4). The thrust bearing (1-2) is fixedly inserted above the inner side surface of the outer tube (1-1). Rollers (1-3) are symmetrically connected to the upper and lower edges of the inner side surface of the outer tube (1-1). The support leg (1-4) is connected to the middle of the lower part of the outer side surface of the outer tube (1-1). The thrust bearing (1-2) is in contact with the transmission gear ring (4). The outer tube (1-1) and the support leg (1-4) form a 30° angle.
3. The environment-friendly, energy-saving and emission-reducing conveying device according to claim 2, characterized in that: The rotating drum (5) includes a rotating tube (5-1), a graphite packing (5-2), a flange (5-3), and bolts (5-4). The graphite packing (5-2) is wound around the lower edge of the outer surface of the rotating tube (5-1). The flange (5-3) is connected to the upper surface of the rotating tube (5-1) around its perimeter. The flange (5-3) and the rotating tube (5-1) are connected to each other by bolts (5-4). The transmission gear ring (4) is inserted into the outer surface of the rotating tube (5-1). The roller (1-3) is in contact with the outer surface of the rotating tube (5-1). The rotating tube (5-1) is in the shape of an I-beam.
4. The environmentally friendly, energy-saving, and emission-reducing conveying device according to claim 3, characterized in that: The ash discharge pipe (6) has a flange (5-3) at the center of its upper end and is connected to each other by bolts (5-4). The graphite packing (5-2) is wrapped around the lower edge of the outer surface of the ash conveying pipe (7). The inner diameter of the rotating pipe (5-1) is larger than the outer diameter of the ash conveying pipe (7), and the outer diameter of the rotating pipe (5-1) is smaller than the inner diameter of the ash discharge pipe (6). The ash discharge pipe (6) and the ash conveying pipe (7) are L-shaped.