微生物菌肥生产装置

By adopting a stepped conveying assembly and a dehumidification and preheating mechanism in the microbial fertilizer production device, the problem of uneven heat source contact during the drying process of microbial fertilizer is solved, achieving balanced contact and efficient drying, and improving the heat energy utilization rate.

CN224517298UActive Publication Date: 2026-07-17LANLING XIANXING TIANXIA AGRICULTURAL DEVELOPMENT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LANLING XIANXING TIANXIA AGRICULTURAL DEVELOPMENT CO LTD
Filing Date
2025-08-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

During the belt drying process of microbial fertilizer, the contact between the inside and outside of the microbial fertilizer and the heat source is uneven, resulting in the drying effect not meeting the technical requirements.

Method used

Multiple conveying components are arranged in a stepped manner to create a turning effect, ensuring that the microbial fertilizer is in even contact with the heat source during the conveying process. Combined with a dehumidification and preheating mechanism, the microbial fertilizer in the feed pipe is preheated to improve the heat energy utilization rate.

Benefits of technology

This achieves balanced contact between microbial fertilizer and heat source, improves drying effect, meets technical requirements, and increases the utilization rate of heat energy resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型提出一种微生物菌肥生产装置,包括:壳体、输料机构、加热机构和抽湿预热机构,其中,壳体的一侧连通有进料管,进料管上安装有集料槽,壳体的另一侧开设有出料口;输料机构包括多个输送组件和驱动组件,其中,多个输送组件呈阶梯式结构布置,一个输送组件的一端延伸至进料管的内部,且位于集料槽的下方,另一个输送组件的一端贯穿出料口;驱动组件安装在壳体的外壁上,驱动组件与多个输送组件相连;加热机构安装在壳体的内部。本实用新型实施例的微生物菌肥生产装置,通过阶梯式布置多个输送组件,在微生物菌肥的输送过程中形成一个翻料的效果,以保证其与热源接触均衡,使得烘干效果符合技术要求。
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Claims

1. A microbial fertilizer production device, characterized by, include: The structure comprises a shell (1), a material conveying mechanism (2), a heating mechanism (3), and a dehumidification and preheating mechanism (4), wherein, One side of the housing (1) is connected to a feed pipe (11), and a collection trough (12) is installed on the feed pipe (11). The other side of the housing (1) is provided with a discharge port (13). The material conveying mechanism (2) includes multiple conveying components (21) and a drive component (22), wherein, Multiple conveying components (21) are arranged in a stepped structure. One end of one conveying component (21) extends into the interior of the feed pipe (11) and is located below the collection trough (12). One end of another conveying component (21) passes through the discharge port (13). The drive assembly (22) is mounted on the outer wall of the housing (1), and the drive assembly (22) is connected to a plurality of the conveying assemblies (21); The heating mechanism (3) is installed inside the housing (1); The dehumidification and preheating mechanism (4) is installed on the housing (1). One end of the dehumidification and preheating mechanism (4) is connected to the housing (1), and the other end of the dehumidification and preheating mechanism (4) is arranged in the feed pipe (11).

2. The microbial inoculant production device of claim 1, wherein The dehumidification and preheating mechanism (4) includes a power unit (41), an exhaust fan (42), and a filter (43), wherein, The power assembly (41) is disposed on the housing (1), and the two ends of the power assembly (41) are respectively connected to the housing (1) and the feed pipe (11); The exhaust fan (42) is disposed inside the feed pipe (11) and is arranged near one end of the feed pipe (11); The filter screen (43) is disposed inside the feed pipe (11), the filter screen (43) is arranged at an angle, and the bottom of the filter screen (43) is attached to a conveying assembly (21).

3. The microbial inoculant production device of claim 2, wherein The power assembly (41) includes a pump body (411), an intake pipe (412), a solenoid valve (413), an exhaust pipe (414), and a splitter pipe (415), wherein, The pump body (411) is mounted on the housing (1); One end of the air intake pipe (412) is connected to the pump body (411) and the housing (1) respectively, and the solenoid valve (413) is installed on the air intake pipe (412); One end of the air outlet pipe (414) is connected to the pump body (411), the diversion pipe (415) is horizontally arranged inside the feed pipe (11), and one end of the air outlet pipe (414) is connected to the diversion pipe (415).

4. The microbial inoculant production device of claim 2, wherein The top of the filter screen (43) is pivotally connected to the feed pipe (11), and the bottom of the filter screen (43) is rotatably provided with a hexagonal roller (431), which is rolled on a conveying assembly (21).

5. The microbial inoculant production device of claim 1, wherein The drive assembly (22) includes a drive motor (221), a transmission component (222), and a linkage component (223), wherein, The driving motor (221) is installed on the shell (1), one end of multiple conveying assemblies (21) is connected through the linkage (223), and the output shaft of the driving motor (221) is connected with the linkage (223) through the transmission member (222).

6. The microbial inoculant production device of claim 1, wherein The inside of the shell (1) is provided with a temperature and humidity sensor (51).