WO2022088201A1 - 一种顺流式生物肥料烘干机 - Google Patents

一种顺流式生物肥料烘干机 Download PDF

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Publication number
WO2022088201A1
WO2022088201A1 PCT/CN2020/126001 CN2020126001W WO2022088201A1 WO 2022088201 A1 WO2022088201 A1 WO 2022088201A1 CN 2020126001 W CN2020126001 W CN 2020126001W WO 2022088201 A1 WO2022088201 A1 WO 2022088201A1
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Prior art keywords
drying
pipe
barrel
drying barrel
air outlet
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PCT/CN2020/126001
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English (en)
French (fr)
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刘恩城
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山东百花生物集团有限公司
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Publication of WO2022088201A1 publication Critical patent/WO2022088201A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/001Handling, e.g. loading or unloading arrangements
    • F26B25/002Handling, e.g. loading or unloading arrangements for bulk goods
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B11/00Machines or apparatus for drying solid materials or objects with movement which is non-progressive
    • F26B11/12Machines or apparatus for drying solid materials or objects with movement which is non-progressive in stationary drums or other mainly-closed receptacles with moving stirring devices
    • F26B11/16Machines or apparatus for drying solid materials or objects with movement which is non-progressive in stationary drums or other mainly-closed receptacles with moving stirring devices the stirring device moving in a vertical or steeply-inclined plane
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/001Drying-air generating units, e.g. movable, independent of drying enclosure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/004Nozzle assemblies; Air knives; Air distributors; Blow boxes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/02Applications of driving mechanisms, not covered by another subclass

Definitions

  • the invention relates to the technical field of fertilizer drying equipment, in particular to a downstream biological fertilizer dryer.
  • Compound fertilizer refers to the general term for compound fertilizers and mixed fertilizers, and refers to fertilizers containing two or more kinds of nutrients in the three elements of nitrogen, phosphorus and potassium, which can be made by chemical synthesis and mixing. The cost of packaging and transportation can reduce the number of fertilization.
  • the nutrient distribution formula can also be designed according to the local soil nutrient supply and the fertilizer demand characteristics of the target crops to produce special fertilizers.
  • When producing biological organic-inorganic compound fertilizers it is necessary to use a dryer to The fertilizer is dried. Most of the existing downstream biological organic-inorganic compound fertilizer dryers dry the fertilizer through the drying barrel. During the drying process, the fertilizer is easy to accumulate and adhere to the inner wall of the drying barrel, so that the fertilizer cannot be dried. Drying is uniform, and at the same time, when the existing downstream biological organic-inorganic compound fertilizer dryer is in use, the excess heat inside the drying barrel cannot be used, and the fertilizer cannot be pre-drying, so that the fertilizer is dried. of
  • the purpose of the present invention is to provide a downstream biological fertilizer dryer to solve the problems raised in the above background technology.
  • a downstream biological fertilizer dryer comprising a drying barrel, an air outlet pipe is installed on one side of the inside of the drying barrel, and the other side inside the drying barrel is installed
  • the drying pipe is communicated with the drying barrel, the top of the drying bin is provided with a feeding hopper, the drying pipe is communicated with the feeding hopper, the drying pipe is provided on the outside of the drying pipe, and the top of the air outlet pipe is provided with a feeding hopper.
  • a communication pipe A, and the end of the communication pipe A away from the air outlet pipe is communicated with the drying pipe
  • the output end of the air pump is equipped with a communication pipe B, and the end of the communication pipe B away from the air pump is communicated with the drying pipe
  • the drying barrel A material guide inclined plate B is installed on the side of the inner bottom close to the air pump, and a filter screen is installed on the top of the material guide inclined plate B, and an electric heating plate is installed on the side of the inner top of the drying barrel close to the air outlet pipe.
  • a control panel is installed on the top of one end of the barrel away from the motor, and the output end of the control panel is electrically connected to the electric heating plate, the air pump and the input end of the motor respectively through wires.
  • shock-absorbing feet are installed at the four corners of the bottom of the drying tub, and shock-absorbing pads are installed on the bottoms of the shock-absorbing feet.
  • a warehouse door is installed at the bottom of one end of the drying bucket close to the control panel, and a transparent window is provided on the outer side of the warehouse door.
  • a sealing cover is installed at the bottom of the discharge pipe.
  • the inside of the drying tube is evenly installed with a guide plate.
  • a material guide inclined plate A is installed on the side of the inner bottom of the drying barrel close to the air outlet pipe.
  • the downstream biological organic-inorganic compound fertilizer dryer is equipped with a scraper, a roller, a rotating shaft and a motor, and the motor drives the roller to rotate through the rotating shaft,
  • the fertilizer accumulated in the drying barrel is turned up by the scraping plate on the roller to avoid the accumulation of fertilizer and ensure that the fertilizer can be dried evenly.
  • the device is equipped with an air outlet pipe and a nozzle to be used together. The hot air blown from the nozzle can scrape the material. The fertilizer scraped by the plate is blown away, which increases the contact area between the fertilizer and the hot air, and improves the drying efficiency.
  • the air pump draws the hot air inside the drying barrel into the drying pipe through the connecting pipe B, which can increase the heat inside the drying pipe, and use the excess heat inside the drying barrel to pre-dry the fertilizer, which is beneficial to improve the drying efficiency of the fertilizer. efficiency.
  • FIG. 1 is a schematic cross-sectional front view of the present invention
  • FIG. 3 is a schematic top sectional view of the drying box of the present invention.
  • a downstream biological fertilizer dryer including a drying barrel 1, an air outlet 4 is installed on one side of the drying barrel 1, and the drying barrel 1
  • the air pump 16 is installed on the other side of the interior, and the model of the air pump 16 here is VCH1028.
  • the side of the air outlet pipe 4 close to the air pump 16 is evenly provided with a nozzle 5, and a motor 21 is installed in the middle of one end of the drying barrel 1.
  • the model of the motor 21 can be Y90S-2, and the output end of the motor 21 is installed with a rotating shaft 17, the rotating shaft 17 passes through the drying barrel 1 and extends to the inside of the drying barrel 1, and the outer side of the rotating shaft 17 is installed with a roller 15, the roller 15 A scraper 3 is evenly installed on the outer side of the drying bucket 1, a drying bin 8 is installed on the top of the drying bin 1, and a drying pipe 11 is installed inside the drying bin 8.
  • the drying tube 11 communicates with the drying bucket 1, and the top of the drying bin 8
  • the hopper 10 the drying pipe 11 is communicated with the feeding hopper 10
  • the drying pipe 9 is provided on the outside of the drying pipe 11
  • the communication pipe A7 is installed on the top of the air outlet pipe 4, and the end of the communication pipe A7 away from the air outlet pipe 4 is connected to the hopper 10.
  • the drying pipe 9 is communicated, the output end of the air pump 16 is provided with a communication pipe B13, and the end of the communication pipe B13 away from the air pump 16 is communicated with the drying pipe 9, and the side of the inner bottom of the drying barrel 1 close to the air pump 16 is installed with a material guide inclined plate B18, the filter screen 14 is installed on the top of the material guide inclined plate B18, the electric heating plate 6 is installed on the side of the inner top of the drying bucket 1 close to the air outlet 4, and the control panel 20 is installed on the top of the drying bucket 1 away from the motor 21. , the output end of the control panel 20 is electrically connected to the input end of the electric heating plate 6 , the air pump 16 and the motor 21 respectively through wires.
  • shock-absorbing feet are installed at the four corners of the bottom of the drying bucket 1, and shock-absorbing pads are installed at the bottom of the shock-absorbing feet, which is beneficial to improve the stability of the device.
  • the drying bucket 1 is close to the control panel 20.
  • a warehouse door is installed at the bottom, and a transparent window is arranged on the outer side of the warehouse door, which is convenient for repairing the inside of the drying barrel 1.
  • a sealing cover is installed at the bottom of the discharge pipe 19 to prevent the fertilizer from leaking out during the drying process, and the interior of the drying pipe 11 is uniform.
  • a guide plate 12 is installed. The guide plate 12 can delay the speed of fertilizer unloading and prolong the pre-drying time of the fertilizer.
  • a material guide inclined plate A2 is installed on the side of the inner bottom of the drying barrel 1 close to the air outlet 4, which is convenient for drying the barrel 1. Internal fertilizer discharge.
  • the scraper 3 on the outside of the roller 15 turns up the fertilizer accumulated in the drying cylinder 1, the hot air inside the drying pipe 9 enters the air outlet 4 through the communication pipe A7, and the nozzles on the air outlet 4 5. Blow out evenly, blow out the fertilizer scraped by the scraper 3, so that the fertilizer can be air-dried evenly, the fertilizer is blown onto the filter screen 14, and then falls off the filter screen 14, and slides again through the guide inclined plate B18 to the outlet.
  • the feeding tube 19 is turned up again by the scraper 3 for air drying. After drying, the electric heating plate 6, the air pump 16 and the motor 21 are turned off through the control panel 20, and the sealing cover on the feeding tube 19 is opened, and the fertilizer can be discharged from the discharge tube 19. Take out from the feed tube 19.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

一种顺流式生物肥料烘干机,包括干燥桶(1),干燥桶(1)内部的一侧安装有出风管(4),干燥桶(1)内部的另一侧安装有气泵(16),出风管(4)靠近气泵(16)的一侧均匀设置有喷嘴(5),干燥桶(1)内安装有辊筒(15),辊筒(15)的外侧均匀安装有刮料板(3),干燥桶(1)的顶部安装有干燥仓(8),干燥仓(8)的内部安装有干燥管(11),干燥仓(8)的顶部安装有进料斗(10),干燥管(11)的外侧设置有烘干管(9),出风管(4)与烘干管(9)连通,该烘干机能利用干燥桶(1)内部多余的热量对肥料进行预烘干处理,有利于提高肥料烘干的效率。

Description

一种顺流式生物肥料烘干机 技术领域
本发明涉及肥料烘干设备技术领域,具体为一种顺流式生物肥料烘干机。
背景技术
复混肥料,是指复合肥料和混合肥料的统称,指含有氮、磷、钾三要素中两种和两种以上养分标明量的肥料,可以通过化学合成和混配制成,这类肥料可节约包装和运输成本,减少施肥次数,也可根据当地土壤养分供应状况和目标作物需肥特性设计养分配方,生产专用型肥料,在生产生物型有机-无机复混肥料时,需要使用烘干机对肥料进行干燥,现有的顺流式生物型有机-无机复混肥料烘干机大多通过干燥桶对肥料进行烘干,烘干过程中,肥料容易堆积及附着于干燥桶内壁,使得肥料不能烘干均匀,同时,现有的顺流式生物型有机-无机复混肥料烘干机在使用时,干燥桶内部多余的热量不能得到利用,且不能对肥料进行预烘干处理,使得肥料烘干的效率较低。
发明内容
本发明的目的在于提供一种顺流式生物肥料烘干机,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种顺流式生物肥料烘干机,包括干燥桶,所述干燥桶内部的一侧安装有出风管,且干燥桶内部的另一侧安装有气泵,所述出风管靠近气泵的一侧均匀设置有喷嘴,所述干燥桶一端的中间位置处安装有电机,且电机的输出端安装有转轴,所述转轴穿过干燥桶并延伸至干燥桶的内部,且转轴的外侧安装有辊筒,所述辊筒的外侧均匀安装有刮料板,所述干燥桶的顶部安装有干燥仓,且干燥仓的内部安装有干燥管,所述干燥管与干燥桶连通,所述干燥仓的顶部安装有进料斗,所述干燥管与进料斗连通,所述干燥管的外侧设置有烘干管,所述出风管的顶部安装有连通管A,且连通管A远离出风管的一端与烘干管连通,所述气泵的 输出端安装有连通管B,且连通管B远离气泵的一端与烘干管连通,所述干燥桶内部底部靠近气泵的一侧安装有导料斜板B,且导料斜板B的顶部安装有滤网,所述干燥桶内部顶部靠近出风管的一侧安装有电加热板,所述干燥桶远离电机一端的顶部安装有控制面板,所述控制面板的输出端通过导线分别与电加热板、气泵和电机的输入端电性连接。
优选的,所述干燥桶底部的四角位置处皆安装有减震支脚,且减震支脚的底部皆安装有减震垫。
优选的,所述干燥桶靠近控制面板一端的底部安装有仓门,且仓门的外侧设置有透明窗口。
优选的,所述出料管的底部安装有密封盖。
优选的,所述干燥管的内部均匀安装有引料板。
优选的,所述干燥桶内部底部靠近出风管的一侧安装有导料斜板A。
与现有技术相比,本发明的有益效果是:该顺流式生物型有机-无机复混肥料烘干机安装有刮料板、辊筒、转轴和电机,电机通过转轴带动辊筒转动,通过辊筒上的刮料板将堆积在干燥桶内的肥料翻起,避免肥料堆积,确保肥料能够烘干均匀,且装置安装有出风管和喷嘴配合使用,喷嘴吹出的热风能将刮料板刮起的肥料吹散,增大肥料与热风的接触面积,提高烘干效率,同时,装置安装有干燥管,并在干燥管的内部均匀安装有引料板,在干燥管的外侧设置有烘干管,气泵通过连通管B将干燥桶内部的热风抽入烘干管内,能够提高干燥管内部的热量,利用干燥桶内部多余的热量对肥料进行预烘干处理,有利于提高肥料烘干的效率。
附图说明
图1为本发明的主视剖视示意图;
图2为本发明的主视示意图;
图3为本发明的干燥箱俯视剖视示意图。
图中:1、干燥桶;2、导料斜板A;3、刮料板;4、出风管;5、喷嘴;6、电加热板;7、连通管A;8、干燥仓;9、烘干管;10、进料斗;11、干燥管;12、引料板;13、连通管B;14、滤网;15、辊筒;16、气泵;17、转轴;18、导料斜板B;19、出料管;20、控制面板;21、电机。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-3,本发明提供的一种实施例:一种顺流式生物肥料烘干机,包括干燥桶1,干燥桶1内部的一侧安装有出风管4,且干燥桶1内部的另一侧安装有气泵16,此处气泵16型号可为VCH1028,出风管4靠近气泵16的一侧均匀设置有喷嘴5,干燥桶1一端的中间位置处安装有电机21,此处电机21型号可为Y90S-2,且电机21的输出端安装有转轴17,转轴17穿过干燥桶1并延伸至干燥桶1的内部,且转轴17的外侧安装有辊筒15,辊筒15的外侧均匀安装有刮料板3,干燥桶1的顶部安装有干燥仓8,且干燥仓8的内部安装有干燥管11,干燥管11与干燥桶1连通,干燥仓8的顶部安装有进料斗10,干燥管11与进料斗10连通,干燥管11的外侧设置有烘干管9,出风管4的顶部安装有连通管A7,且连通管A7远离出风管4的一端与烘干管9连通,气泵16的输出端安装有连通管B13,且连通管B13远离气泵16的一端与烘干管9连通,干燥桶1内部底部靠近气泵16的一侧安装有导料斜板B18,且导料斜板B18的顶部安装有滤网14,干燥桶1内部顶部靠近出风管4的一侧安装有电加热板6,干燥桶1远离电机21一端的顶部安装有控制面板20,控制面板20的输出端通过导线分别与电加热板6、气泵16和电机21的输入端电性连接。
在本实施中:干燥桶1底部的四角位置处皆安装有减震支脚,且减震支脚的底部皆安装有减震垫,有利于提高装置的稳定性,干燥桶1靠近控制面板20一端的底部安装有仓门,且仓门的外侧设置有透明窗口,便于对干燥桶1内部进行检修,出料管19的底部安装有密封盖,防止肥料在干燥过程中漏出,干燥管11的内部均匀安装有引料板12,引料板12能够延缓肥料下料的速度,延长肥料的预烘干时间,干燥桶1内部底部靠近出风管4的一侧安装有导料斜板A2,便于干燥桶1内部的肥料出料。
工作原理:使用时,先将装置接通电源,通过进料斗10向干燥管11内加入适量的肥料,然后通过控制面板20启动电加热板6、气泵16和电机21,电加热板6加热提高干燥筒1内部的温度,气泵16将干燥桶1内部的热风通过连通管B13抽入烘干管9内,通过烘干管9将热量传导于干燥管11,从而提高干燥管11内部的温度,能够对肥料进行预烘干处理,引料板12能够延缓肥料下料的速度,延长肥料的预烘干时间,肥料通过干燥管11进入到干燥筒1内,电机21通过转轴17带动辊筒15转动,通过辊筒15外侧的刮料板3将堆积于干燥筒1内部的肥料翻起,烘干管9内部的热风通过连通管A7进入出风管4内,由出风管4上的喷嘴5均匀吹出,将刮料板3刮起的肥料吹散,使肥料能够风干均匀,肥料被吹至滤网14上,然后从滤网14上掉落,通过导料斜板B18重新滑动至出料管19,再次被刮料板3翻起进行风干,烘干结束后,通过控制面板20关闭电加热板6、气泵16和电机21,打开出料管19上的密封盖,肥料可从出料管19中取出。
尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (6)

  1. 一种顺流式生物肥料烘干机,包括干燥桶(1),其特征在于:所述干燥桶(1)内部的一侧安装有出风管(4),且干燥桶(1)内部的另一侧安装有气泵(16),所述出风管(4)靠近气泵(16)的一侧均匀设置有喷嘴(5),所述干燥桶(1)一端的中间位置处安装有电机(21),且电机(21)的输出端安装有转轴(17),所述转轴(17)穿过干燥桶(1)并延伸至干燥桶(1)的内部,且转轴(17)的外侧安装有辊筒(15),所述辊筒(15)的外侧均匀安装有刮料板(3),所述干燥桶(1)的顶部安装有干燥仓(8),且干燥仓(8)的内部安装有干燥管(11),所述干燥管(11)与干燥桶(1)连通,所述干燥仓(8)的顶部安装有进料斗(10),所述干燥管(11)与进料斗(10)连通,所述干燥管(11)的外侧设置有烘干管(9),所述出风管(4)的顶部安装有连通管A(7),且连通管A(7)远离出风管(4)的一端与烘干管(9)连通,所述气泵(16)的输出端安装有连通管B(13),且连通管B(13)远离气泵(16)的一端与烘干管(9)连通,所述干燥桶(1)内部底部靠近气泵(16)的一侧安装有导料斜板B(18),且导料斜板B(18)的顶部安装有滤网(14),所述干燥桶(1)内部顶部靠近出风管(4)的一侧安装有电加热板(6),所述干燥桶(1)远离电机(21)一端的顶部安装有控制面板(20),所述控制面板(20)的输出端通过导线分别与电加热板(6)、气泵(16)和电机(21)的输入端电性连接。
  2. 根据权利要求1所述的一种顺流式生物肥料烘干机,其特征在于:所述干燥桶(1)底部的四角位置处皆安装有减震支脚,且减震支脚的底部皆安装有减震垫。
  3. 根据权利要求1所述的一种顺流式生物肥料烘干机,其特征在于:所述干燥桶(1)靠近控制面板(20)一端的底部安装有仓门,且仓门的外侧设置有透明窗口。
  4. 根据权利要求1所述的一种顺流式生物肥料烘干机,其特征在于:所 述出料管(19)的底部安装有密封盖。
  5. 根据权利要求1所述的一种顺流式生物肥料烘干机,其特征在于:所述干燥管(11)的内部均匀安装有引料板(12)。
  6. 根据权利要求1所述的一种顺流式生物肥料烘干机,其特征在于:所述干燥桶(1)内部底部靠近出风管(4)的一侧安装有导料斜板A(2)。
PCT/CN2020/126001 2020-10-29 2020-11-02 一种顺流式生物肥料烘干机 WO2022088201A1 (zh)

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CN115077220A (zh) * 2022-07-26 2022-09-20 阳春市星宝坚果发展有限公司 一种用于坚果加工的快速烘干机

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CN114248372A (zh) * 2022-01-17 2022-03-29 福建景丰科技有限公司 一种锦纶废丝再生粒子分离干燥设备

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