A raw coal bin distribution system
Patent Information
- Application Number
- CN202521332614.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-06-26
AI Technical Summary
[0005]本实用新型的目的在于提供一种原煤仓分配系统,以解决上述一旦煤炭在仓内结拱或堵塞,就需要人工清理,既费时又费力的问题
[0020]本实用新型动力件带动分散叶片对存料仓中的煤料进行转动离散,可以减少煤料堆积堵塞,影响煤料的上料效率,疏通组件在存料仓的内部上下运动,对存料仓内部的煤料进行上下疏松,使得存料仓内部的煤炭能够得到有效的搅拌和疏通,避免了煤料的结块和粘连,进一步确保了煤料的顺畅输送,由于该系统具有自动防堵和高效输送功能,大大减少了人工清理和维修的频率,从而降低了设备的维护成本。
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Figure CN224690899U_ABST
Abstract
Claims
1. A raw coal bunker distribution system, comprising a storage silo (1) for storing coal, a fixing frame (4) for supporting the storage silo (1), and a discharge port (12) disposed on one side of the lower end of the storage silo (1), characterized in that, Also includes: The conveying mechanism (2) is located at the lower end of the storage bin (1) and connected to the discharge port (12), and is used to convey coal to the discharge port (12). The anti-blocking mechanism (3) is installed on the storage bin (1) and located above the conveying mechanism (2) for clearing the coal inside the storage bin (1); The anti-blocking mechanism (3) includes: The power unit is located inside the storage bin (1); Dispersion blades (33) are disposed inside the storage bin (1) and connected to the power component, and are used to stir and clear the coal inside the storage bin (1); The unblocking component (34) is installed inside the storage bin (1) and is used to unblock the coal inside the storage bin (1) from top to bottom. The unblocking component (34) includes a drive member (341) symmetrically arranged on the storage bin (1), a lifting member (342) spaced apart on the drive member (341), a partition (13) arranged inside the storage bin (1) for installing the lifting member (342), and an unblocking member (343) arranged at the upper end of the lifting member (342). The drive unit (341) includes a third motor (3411) disposed outside the storage bin (1), a connecting shaft (3412) disposed at the power output end of the third motor (3411) and passing through the storage bin (1), and a rotating disk (3413) disposed on the side of the connecting shaft (3412) located inside the storage bin (1). The rotating disk (3413) is disposed between the dispersing blade (33) and the inner wall of the storage bin (1).
2. The raw coal bunker distribution system according to claim 1, characterized in that: The power unit includes a second motor (31) fixed to the outside of the storage bin (1) and a rotating shaft (32) disposed at the power output end of the second motor (31) and passing through the storage bin (1). The dispersing blades (33) are spaced apart on the rotating shaft (32).
3. The raw coal bunker distribution system according to claim 1, characterized in that: The lifting component (342) includes a mounting rod (3421) disposed on the rotating disk (3413), a rotating rod (3422) sleeved on the mounting rod (3421), and a connecting block (3423) disposed on the upper end of the rotating rod (3422). A fixing plate (34231) is disposed on the connecting block (3423). A plurality of unblocking components (343) are spaced apart on the upper end of the fixing plate (34231). The mounting rod (3421) is eccentrically disposed on the rotating disk (3413).
4. A raw coal bunker distribution system according to claim 3, characterized in that: The unblocking component (343) includes a lifting rod (3431) disposed on the upper end of the fixed plate (34231) and an unblocking plate (3432) disposed on the upper end of the lifting rod (3431). A guide ring (131) for guiding the lifting rod (3431) is provided on the partition plate (13). The shape of the unblocking plate (3432) corresponds to that of the partition plate (13).
5. A raw coal bunker distribution system according to claim 1, characterized in that: The lower end of the storage bin (1) is provided with a guide plate (11) inclined towards the side of the conveying mechanism (2). The conveying mechanism (2) includes a first motor (21) fixed to the outside of the storage bin (1), a conveying shaft (22) provided at the power output end of the first motor (21), and a conveying blade (23) sleeved on the conveying shaft (22) and located inside the storage bin (1). The conveying blade (23) abuts against the inner wall of the storage bin (1).