一种种子烘干机

By using a perforated drying drum and a support ring structure in the seed dryer, combined with a stirring rack to turn the seeds and hot air circulation, the problems of uneven seed heating and heat energy waste are solved, thereby improving the uniformity of seed drying and reducing energy consumption.

CN224517210UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-06-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing seed dryers have problems such as uneven heating caused by hot air acting directly on the seeds, and waste of heat energy due to the direct discharge of hot air after use.

Method used

Design a seed dryer that uses a perforated drying drum and a support ring structure. Hot air enters the drying drum through the holes and is turned over by a stirring rack. Combined with hot air circulation, this avoids direct contact between hot air and seeds, improves drying uniformity, and reduces energy consumption.

Benefits of technology

This method improves the uniformity of seed drying and reduces energy consumption, avoids waste caused by direct hot air discharge, and enhances the efficiency and energy-saving effect of seed drying.

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Abstract

本实用新型提供一种种子烘干机。所述种子烘干机包括:烘干框;带孔烘干桶,所述带孔烘干桶安装在烘干框的内部位于顶部的位置,所述烘干框的内部位于底部的位置安装有一个排料框,所述烘干框的正面靠近底部的位置安装有密封组件,所述烘干框的正面和背面均安装有进风框,两个所述进风框相背的一面均安装有分流管,所述烘干框的正面和背面均安装有伸缩组件,两个所述伸缩组件的伸缩端均安装有托环,所述烘干框的顶部安装有一个带有顶盖的进料框。本实用新型提供的种子烘干机,通过该设计利用热风为烘干框内部升温,配合带孔控干桶避免热风直接和种子大面积接触,提高烘干均匀度,同时热风循环使用降低烘干能耗。
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Claims

1. A seed dryer, characterized by include: Drying frame; A perforated drying drum is installed inside a drying frame at the top. A discharge frame is installed inside the drying frame at the bottom. A sealing component is installed on the front of the drying frame near the bottom. Air inlet frames are installed on both the front and back of the drying frame. Diverter pipes are installed on the opposite sides of the two air inlet frames. Telescopic components are installed on both the front and back of the drying frame. Support rings are installed at the telescopic ends of the two telescopic components. A feed frame with a top cover is installed on the top of the drying frame. An air inlet frame with a sealing cover is installed on the top of the top cover. A hot air device is installed on one side of a drying frame. The outlet of the hot air device is connected to a T-junction via a heating pipe. Both outlets of the T-junction are connected to connecting pipes. A recycling frame is installed on the back of the drying frame, and a recycling pipe is installed on the back of the recycling frame. A filter assembly is installed on the back of the drying frame, and a connecting pipe is installed on one side of the filter assembly. A drive assembly is installed on the other side of the drying frame, and multiple stirring racks are installed at the output end of the drive assembly via a rotating shaft.

2. The seed dryer of claim 1, wherein, The sealing assembly includes a limiting structure and a sealing structure, wherein the limiting structure is used to install the sealing structure at the opening on the front of the drying frame.

3. The seed dryer of claim 1, wherein, An operation panel is installed on one side of the drying frame, and a control box with a door is installed on the other side of the drying frame.

4. The seed dryer of claim 1, wherein, The telescopic assembly includes a telescopic component and two stabilizing bars that penetrate the drying frame to increase the stability and load-bearing capacity of the support ring.

5. The seed dryer of claim 1, wherein, The filtration assembly includes a filter box and an interception component, which is used to intercept dust in the recycled hot gas.

6. The seed dryer of claim 1, wherein, The drive assembly includes a mounting housing, a drive component, and an angle sensor. The mounting housing is used to mount the drive component that provides rotational driving force to the shaft.