WO2022011964A1 - 一种生物基质传送装置 - Google Patents

一种生物基质传送装置 Download PDF

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Publication number
WO2022011964A1
WO2022011964A1 PCT/CN2020/136941 CN2020136941W WO2022011964A1 WO 2022011964 A1 WO2022011964 A1 WO 2022011964A1 CN 2020136941 W CN2020136941 W CN 2020136941W WO 2022011964 A1 WO2022011964 A1 WO 2022011964A1
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WIPO (PCT)
Prior art keywords
motor
conveying belt
tank
biological substrate
box
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PCT/CN2020/136941
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English (en)
French (fr)
Inventor
孙学花
熊海宇
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孙学花
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Application filed by 孙学花 filed Critical 孙学花
Publication of WO2022011964A1 publication Critical patent/WO2022011964A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/02Belt- or chain-engaging elements
    • B65G23/04Drums, rollers, or wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G45/00Lubricating, cleaning, or clearing devices
    • B65G45/10Cleaning devices
    • B65G45/12Cleaning devices comprising scrapers

Definitions

  • the utility model relates to the technical field of delivery devices, in particular to a biological matrix delivery device.
  • Microbial fertilizer also known as biological fertilizer, inoculant or bacterial manure, etc., refers to a type of fertilizer product that takes the life activities of microorganisms as the core and enables crops to obtain specific fertilizer effects.
  • microbial fertilizers and micro-fertilizers There are essential differences between microbial fertilizers and micro-fertilizers: the former is living life, while the latter is a mineral element.
  • Microorganisms are rich in resources, with various types and functions, and can be developed into fertilizers with different functions and uses.
  • microbial strains can be artificially selected and continuously purified and rejuvenated to improve their vitality, especially with the further development of biotechnology, it has become possible to obtain the desired strains by genetic engineering methods.
  • Patent No. CN210339224U discloses a transmission device, which includes a first transmission mechanism, a second transmission mechanism, a driving mechanism and an adjustment mechanism; the output ends of the driving mechanism are respectively connected with the first transmission mechanism and the second transmission mechanism, and the adjustment mechanism of the adjustment mechanism The ends are respectively connected with the first transmission mechanism and the second transmission mechanism; the driving mechanism drives the first transmission mechanism and the second transmission mechanism, and the first transmission mechanism and the second transmission mechanism transmit the product; the adjustment mechanism is used to adjust the first transmission mechanism The distance relative to the second transfer mechanism.
  • the distance between the first transmission mechanism and the second transmission mechanism is adjusted by the adjustment mechanism, so that the first transmission mechanism and the second transmission mechanism can cooperate to carry batteries of different sizes, which improves the compatibility of the transmission device with the conveyed products.
  • High versatility and high versatility when enterprises produce products of different sizes, it can reduce the cost of transformation of transmission lines for enterprises.
  • the above-mentioned conveying device has the following disadvantages in use: 1.
  • the above-mentioned conveying device cannot remove large impurities such as stones that may be doped in the biological matrix during use, which may affect the production and processing effect of the biological matrix.
  • the surface of the conveying belt may cause adhesion of the biological matrix, thereby affecting the transmission effect of the biological matrix.
  • the utility model provides a biological matrix conveying device, which aims to quickly scrape off the biological matrix adhering to the surface of the conveyor belt through the installed scraping box, thereby reducing the adhesion of the biological matrix on the surface of the conveyor belt to a certain extent. , can improve the use effect.
  • a biological matrix conveying device provided by the present invention includes a motor A and a conveying belt, a conveying belt is sleeved on the outside of the motor A, a moving wheel is fixedly connected to the bottom end of the conveying belt, and a stopper is inlaid and connected to the surface of the conveying belt.
  • a tank box is fixedly installed at one end of the conveyor belt
  • a motor B is fixedly installed inside the tank box
  • the output end of the motor B is fixedly connected with the input end of the connecting rod
  • one end of the connecting rod is clamped
  • the card slot is opened on one side of the screen plate of the filter frame
  • the two ends of the screen plate of the filter frame are slidably connected to the inside of the chute
  • the chute is opened on both sides of the slot box, so
  • the top of the tank box is provided with a filter material groove
  • the bottom end of the filter material groove is provided with a material guide groove
  • the two sides of the conveyor belt are fixedly connected with rubber baffles
  • one end of the conveyor belt is fixedly installed with a support rod.
  • One end of the strut is connected with a scraping box by interference.
  • a scraper is gap-connected on one side of the scraping box, and the scraper is made of plastic.
  • the number of the material blocking strips is multiple, and the material of the material blocking strips is a rubber material.
  • an inner cavity is opened inside the scraping box, springs are inlaid and connected in the inner cavity, and the number of the springs is multiple.
  • the input end of the motor A is electrically connected to an external power source
  • the input end of the motor B is electrically connected to the external power source
  • the utility model uses the installed tank.
  • the external power supply is turned on to make the motor A run.
  • the motor A drives the conveyor belt to transmit through the rotation of the internal motor.
  • the biological substrate to be transmitted is guided to the tank Above, then, turn on the external switch to make the motor B run, and the motor B drives the connecting rod.
  • There is a piston in the connecting rod cylinder that is in close contact with the inner wall of the cylinder.
  • the top of the piston is connected to a smooth and thick telescopic rod.
  • the lower end of the piston the upper end is full of hydraulic oil, when the hydraulic pump injects hydraulic oil into the lower end of the piston, the piston moves upward, the connecting rod extends, the piston moves downward, and the connecting rod shortens, which in turn makes the motor B drive the connecting rod to continuously extend and shorten, Driven by the connecting rod, the filter frame mesh plate is continuously moved back and forth in the chute, and then the impurities in the biological matrix on the surface of the filter frame mesh plate whose size is larger than the gap between the filter frame mesh plates are filtered in the filter frame mesh.
  • the surface of the plate can ensure a certain degree of purity inside the biological matrix, so as to prevent the processing effect of the biological matrix from being affected. effect occurs.
  • the biological matrix is filtered and then guided to the inside of the guide trough, settled to the surface of the conveyor belt, and then transferred to the conveyor belt through the retaining strip on the surface of the conveyor belt.
  • the top guides the biological matrix to a certain height.
  • the spring will generate a certain elastic force due to the pressure from the scraper, so that the spring can push the scraper from the scraper through the elastic force.
  • the inside of the inner cavity is pushed out, so that the scraper is pressed to the surface of the conveyor belt.
  • the biological matrix is scraped off by the scraper through the obstruction of the scraper, and is guided to the bottom side of the conveyor belt by gravity, and then It can effectively reduce the occurrence of biological matrix loss caused by the adhesion of biological matrix on the surface of the conveyor belt.
  • FIG. 1 is a schematic diagram of the overall structure of a biological matrix delivery device according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a tank box of a biological matrix conveying device according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a material retaining bar of a biological matrix conveying device according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a scraping box of a biological matrix conveying device according to an embodiment of the present invention.
  • a biological matrix delivery device according to an embodiment of the present invention will be described in detail below with reference to FIG. 1 to FIG. 4 .
  • a biological substrate conveying device provided by an embodiment of the present invention includes a motor A1 and a conveying belt 18 , the outer side of the motor A1 is sleeved with a conveying belt 18 , and the bottom end of the conveying belt 18 is fixed A moving wheel 5 is connected, the surface of the conveyor belt 18 is inlaid and connected with a material stopper 17, one end of the conveyor belt 18 is fixedly installed with a tank box 2, and a motor B6 is fixedly installed inside the tank box 2, and the motor B6
  • the output end of the connecting rod 7 is fixedly connected with the input end of the connecting rod 7, and one end of the connecting rod 7 is clamped inside the card slot 8, and the card slot 8 is opened on one side of the filter frame mesh plate 10, and the filter frame mesh Both ends of the plate 10 are slidably connected to the inside of the chute 11, the chute 11 is provided on both sides of the tank box 2, the top of the tank box 2 is provided with a filter material groove 9, and the bottom of the
  • the end is provided with a guide groove 12, the two sides of the conveyor belt 18 are fixedly connected with a rubber baffle 3, one end of the conveyor belt 18 is fixedly installed with a support rod 4, and one end of the support rod 4 is connected with a scraping box. 13.
  • the biological matrix adhering to the surface of the conveyor belt can be quickly scraped off, thereby reducing the adhesion of the biological matrix on the surface of the conveyor belt to a certain extent, and improving the use effect.
  • a scraper 16 is gap-connected on one side of the scraping box 13, and the scraper 16 is made of plastic. Scrape down.
  • the number of the material blocking bars 17 is multiple, and the material of the material blocking bars 17 is rubber material.
  • the installed material blocking bars can prevent the biological matrix from slipping off the surface of the conveyor belt.
  • the scraping box 13 is provided with an inner cavity 14 , and the inner cavity 14 is inlaid and connected with springs 15 .
  • the number of the springs 15 is multiple, and the installed springs can drive the The scraper is ejected from the interior of the lumen.
  • the input end of the motor A1 is electrically connected to the external power source, and the input end of the motor B6 is electrically connected to the external power source.
  • the embodiment of the present invention provides a biological matrix conveying device.
  • an external power supply is turned on to make the motor A1 run, and the motor A1 drives the conveyor belt 18 to convey through the rotation of the internal motor.
  • the lower and upper ends of the piston are filled with hydraulic oil.
  • the piston moves upward, the connecting rod extends, the piston moves downward, and the connecting rod 7 shortens, which in turn makes the motor B6 drive the connecting rod.
  • the rod 7 is continuously elongated and shortened, so that the filter frame mesh plate 10 is continuously moved back and forth inside the chute 11 under the driving of the connecting rod 7, and then the size of the inside of the biological matrix on the surface of the filter frame mesh plate 10 is larger than
  • the impurities in the gap of the filter frame mesh plate 10 are filtered on the surface of the filter frame mesh plate 0, so that the interior of the biological matrix can ensure a certain degree of purity and prevent the processing effect of the biological matrix from being affected.
  • the plate 10 is cleaned to prevent the occurrence of the situation that affects the filtering effect caused by the use of too long.
  • the biological matrix is filtered and then guided to the interior of the guide chute 12, it is settled to the surface of the conveyor belt 18, and then passes through the conveyor belt 18.
  • the retaining bar 17 on the surface is conveyed to the top of the conveyor belt 18 to guide the biological matrix to a certain height.
  • the spring 15 is subject to the pressure from the scraper 16. Then, a certain elastic force is generated, so that the spring 15 can push the scraper 16 out of the inner cavity 14 through the elastic force, so that the scraper 16 is pressed to the surface of the conveyor belt 18.
  • the biological matrix is blocked by the scraper 16.
  • the scraper 16 is scraped off and guided to the bottom side of the conveyor belt 18 by gravity, thereby effectively reducing the biological matrix loss caused by the adhesion of the biological matrix on the surface of the conveyor belt 18 .
  • the above-mentioned motor A1 is a common YTH type externally mounted electric drum model on the market
  • the motor B6 is a common DIY495 model on the market.
  • the present invention is a biological matrix transmission device, including a motor A1, a tank box 2, a rubber baffle 3, a support rod 4, a moving wheel 5, a motor B6, a connecting rod 7, a card slot 8, a filter material Slot 9, filter frame mesh plate 10, chute 11, material guide trough 12, scraper box 13, inner cavity 14, spring 15, scraper 16, material retaining bar 17, conveyor belt 18,
  • the above electrical components are all in the prior art Products, according to the needs of those skilled in the art, select, install and complete the debugging of the circuit to ensure that all electrical appliances can work normally.
  • the components are all common standard parts or components known to those skilled in the art. Those skilled in the art can learn from technical manuals or through routine experimental methods, and the applicant does not make specific limitations here.

Abstract

一种生物基质传送装置,包括电机A(1)和传送带(18),电机A(1)的外侧套接有传送带(18),传送带(18)的底端固定连接有移动轮(5),传送带(18)的表面镶嵌连接有挡料条(17),传送带(18)的一端固定安装有槽箱(2),槽箱(2)的内部固定安装有电机B(6),电机B(6)的输出端固定连接有连杆(7)的输入端,连杆(7)的一端卡接在卡槽(8)的内部,卡槽(8)开设在过滤框网板(10)的一侧,过滤框网板(10)的两端滑动连接在滑槽(11)的内部,滑槽(11)开设在槽箱(2)的两侧,槽箱(2)的顶端开设有滤料槽(9),滤料槽(9)的底端开设有导料槽(12),传送带(18)的一端固定安装有支杆(4),支杆(4)的一端过盈连接有刮除箱(13)。该生物基质传送装置将生物基质内部掺杂的尺寸大于过滤框网板间隙的杂质过滤在过滤框网板的表面,进而能够使得生物基质的内部能够保证一定的纯净度,防止影响生物基质的加工效果;以及通过安装的刮除箱,能够快速的将粘附在传送带表面的生物基质刮除下来,进而能够在一定程度上减少生物基质在传送带表面的附着,能够提高使用效果。

Description

一种生物基质传送装置 技术领域
本实用新型涉及传送装置技术领域,尤其涉及一种生物基质传送装置。
背景技术
微生物肥料又称生物肥料、接种剂或菌肥(bacterial manure)等,是指以微生物的生命活动为核心,使农作物获得特定的肥料效应的一类肥料制品。微生物肥料和微肥有本质的区别:前者是活的生命,而后者是矿质元素。微生物资源丰富,种类和功能繁多,可以开发成不同功能、不同用途的肥料。而且微生物菌株可以经过人工选育并不断纯化、复壮以提高其活力,特别是随着生物技术的进一步发展,通过基因工程方法获得所需的菌株已成为可能。
专利号CN210339224U公布了一种传送装置,其包括第一传输机构、第二传输机构、驱动机构以及调节机构;驱动机构的输出端分别与第一传输机构以及第二传输机构连接,调节机构的调节端分别与第一传输机构以及第二传输机构连接;驱动机构驱动第一传输机构以及第二传输机构,第一传输机构以及第二传输机构对产品进行传送;调节机构用于调节第一传输机构相对于第二传输机构的距离。本申请通过调节机构对第一传输机构以及第二传输机构之间的距离调节,使得第一传输机构以及第二传输机构可以配合承载不同规格尺寸的电芯,提升了传送装置对传送产品的兼容性,通用性高,在企业生产不同尺寸的产品时,能为企业降低传输线的改造成本。
上述传送装置在使用时具有以下几个缺点:1、上述传送装置在使用时不能够将生物基质内部可能掺杂的石子等大型杂质去除,进而可能影响生物基质的生产加工效果。
2、上述传送装置在使用时传送带的表面可能会使得生物基质造成附着,进而影响了生物基质的传送效果。
实用新型内容
本实用新型提供一种生物基质传送装置,旨在通过安装的刮除箱,能够快速的将粘附在传送带表面的生物基质刮除下来,进而能够在一定程度上减少生物基质在传送带表面的附着,能够提高使用效果。
本实用新型提供的具体技术方案如下:
本实用新型提供的一种生物基质传送装置,包括电机A和传送带,所述电机A的外侧套接有传送带,所述传送带的底端固定连接有移动轮,所述传送带的表面镶嵌连接有挡料条,所述传送带的一端固定安装有槽箱,所述槽箱的内部固定安装有电机B,所述电机B的输出端固定连接有连杆的输入端,所述连杆的一端卡接在卡槽的内部,所述卡槽开设在过滤框网板的一侧,所述过滤框网板的两端滑动连接在滑槽的内部,所述滑槽开设在槽箱的两侧,所述槽箱的顶端开设有滤料槽,所述滤料槽的底端开设有导料槽,所述传送带的两侧固定连接有橡胶挡板,所述传送带的一端固定安装有支杆,所述支杆的一端过盈连接有刮除箱。
可选的,所述刮除箱的一侧间隙连接有刮板,所述刮板的材料为塑料。
可选的,所述挡料条的数量为多个,所述挡料条的材料为橡胶材料。
可选的,所述刮除箱的内部开设有内腔,所述内腔的内部镶嵌连接有弹簧,所述弹簧的数量为多个。
可选的,所述电机A的输入端与外部电源电性连接,所述电机B的输入端与外部电源电性连接。
本实用新型的有益效果如下:
一、本实用新型通过安装的槽箱,使用时,接通外部电源,使得电机A运转,电机A通过内部马达的旋转作用带动传送带传送,此时将需要传送的生物基质导送至槽箱的上方,随后,打开外部开关,使得电机B运转,电机B带动连杆,连杆缸筒内有一个与缸筒内壁紧密接触的活塞,活塞顶部连接一根又光又粗的伸缩杆,活塞下端,上端都充满了液压油,当液压泵向活塞下端注入液压油时,活塞向上运动,连杆伸出,活塞向下运动,连杆缩短,进而使得电机 B带动连杆不断的伸长缩短,使得过滤框网板在连杆的带动下,在滑槽的内部不断的来回移动,进而将过滤框网板表面的生物基质内部掺杂的尺寸大于过滤框网板间隙的杂质过滤在过滤框网板的表面,进而能够使得生物基质的内部能够保证一定的纯净度,防止影响生物基质的加工效果,当使用结束后,可以对过滤框网板进行清理,防止使用时间过长,造成的影响过滤效果的情况发生。
二、本实用新型通过安装的刮除箱,使用时,生物基质被过滤后被导送至导料槽的内部,被沉降至传送带的表面,随后通过传送带表面的挡料条被传送至传送带的顶端,,将生物基质导送至一定的高度,当传送带表面粘附的生物基质通过刮除箱时,弹簧由于受到来自刮板的压力进而产生一定的弹力,使得弹簧能够通过弹力将刮板从内腔的内部顶出,使得刮板挤压至传送带的表面,此时,生物基质通过刮板的阻碍作用被刮板刮除下来,通过重力作用被导送至传送带的底端一侧,进而能够有效减少生物基质在传送带表面由于粘附作用,引起的生物基质损耗的情况发生。
附图说明
图1为本实用新型实施例的一种生物基质传送装置的整体结构示意图;
图2为本实用新型实施例的一种生物基质传送装置的槽箱结构示意图;
图3为本实用新型实施例的一种生物基质传送装置的挡料条结构示意图;
图4为本实用新型实施例的一种生物基质传送装置的刮除箱结构示意图。
图中:1、电机A;2、槽箱;3、橡胶挡板;4、支杆;5、移动轮;6、电机B;7、连杆;8、卡槽;9、滤料槽;10、过滤框网板;11、滑槽;12、导料槽;13、刮除箱;14、内腔;15、弹簧;16、刮板;17、挡料条;18、传送带。
具体实施方式
为了使本实用新型的目的、技术方案和优点更加清楚,下面将结合附图对本实用新型作进一步的详细描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,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它实施例,都属于本实 用新型保护的范围。
下面将结合图1-图4对本实用新型实施例的一种生物基质传送装置进行详细的说明。
参考图1和图2所示,本实用新型实施例提供的一种生物基质传送装置,包括电机A1和传送带18,所述电机A1的外侧套接有传送带18,所述传送带18的底端固定连接有移动轮5,所述传送带18的表面镶嵌连接有挡料条17,所述传送带18的一端固定安装有槽箱2,所述槽箱2的内部固定安装有电机B6,所述电机B6的输出端固定连接有连杆7的输入端,所述连杆7的一端卡接在卡槽8的内部,所述卡槽8开设在过滤框网板10的一侧,所述过滤框网板10的两端滑动连接在滑槽11的内部,所述滑槽11开设在槽箱2的两侧,所述槽箱2的顶端开设有滤料槽9,所述滤料槽9的底端开设有导料槽12,所述传送带18的两侧固定连接有橡胶挡板3,所述传送带18的一端固定安装有支杆4,所述支杆4的一端过盈连接有刮除箱13,通过安装的刮除箱,能够快速的将粘附在传送带表面的生物基质刮除下来,进而能够在一定程度上减少生物基质在传送带表面的附着,能够提高使用效果。
参照图1和图4所示,所述刮除箱13的一侧间隙连接有刮板16,所述刮板16的材料为塑料,通过安装的刮板,能够将传送带表面粘附的生物基质刮除下来。
参照图3所示,所述挡料条17的数量为多个,所述挡料条17的材料为橡胶材料,通过安装的挡料条,能够防止生物基质从传送带的表面滑落。
参照图4所示,所述刮除箱13的内部开设有内腔14,所述内腔14的内部镶嵌连接有弹簧15,所述弹簧15的数量为多个,通过安装的弹簧,能够带动刮板从内腔的内部顶出。
参照图1和图2所示,所述电机A1的输入端与外部电源电性连接,所述电机B6的输入端与外部电源电性连接。
本实用新型实施例提供一种生物基质传送装置,使用时,接通外部电源, 使得电机A1运转,电机A1通过内部马达的旋转作用带动传送带18传送,此时将需要传送的生物基质导送至槽箱2的上方,随后,打开外部开关,使得电机B6运转,电机B6带动连杆7,连杆7缸筒内有一个与缸筒内壁紧密接触的活塞,活塞顶部连接一根又光又粗的伸缩杆,活塞下端,上端都充满了液压油,当液压泵向活塞下端注入液压油时,活塞向上运动,连杆伸出,活塞向下运动,连杆7缩短,进而使得电机B6带动连杆7不断的伸长缩短,使得过滤框网板10在连杆7的带动下,在滑槽11的内部不断的来回移动,进而将过滤框网板10表面的生物基质内部掺杂的尺寸大于过滤框网板10间隙的杂质过滤在过滤框网板0的表面,进而能够使得生物基质的内部能够保证一定的纯净度,防止影响生物基质的加工效果,当使用结束后,可以对过滤框网板10进行清理,防止使用时间过长,造成的影响过滤效果的情况发生,当生物基质被过滤后被导送至导料槽12的内部时,被沉降至传送带18的表面,随后通过传送带18表面的挡料条17被传送至传送带18的顶端,将生物基质导送至一定的高度,当传送带18表面粘附的生物基质通过刮除箱13时,弹簧15由于受到来自刮板16的压力进而产生一定的弹力,使得弹簧15能够通过弹力将刮板16从内腔14的内部顶出,使得刮板16挤压至传送带18的表面,此时,生物基质通过刮板16的阻碍作用被刮板16刮除下来,通过重力作用被导送至传送带18的底端一侧,进而能够有效减少生物基质在传送带18表面由于粘附作用,引起的生物基质损耗的情况发生。
上述电机A1为市面上常见的YTH型外装式电动滚筒型号,电机B6为市面上常见的DIY495型号。
需要说明的是,本实用新型为一种生物基质传送装置,包括电机A1、槽箱2、橡胶挡板3、支杆4、移动轮5、电机B6、连杆7、卡槽8、滤料槽9、过滤框网板10、滑槽11、导料槽12、刮除箱13、内腔14、弹簧15、刮板16、挡料条17、传送带18,上述电器元件均为现有技术产品,由本领域技术人员根据使用的需要,选取、安装并完成电路的调试作业,确保各用电器均能正常工 作,部件均为通用标准件或本领域技术人员知晓的部件,其结构和原理都为本技术人员均可通过技术手册得知或通过常规实验方法获知,本申请人在这里不做具体限制。
显然,本领域的技术人员可以对本实用新型实施例进行各种改动和变型而不脱离本实用新型实施例的精神和范围。这样,倘若本实用新型实施例的这些修改和变型属于本实用新型权利要求及其等同技术的范围之内,则本实用新型也意图包含这些改动和变型在内。

Claims (5)

  1. 一种生物基质传送装置,包括电机A(1)和传送带(18),其特征在于,所述电机A(1)的外侧套接有传送带(18),所述传送带(18)的底端固定连接有移动轮(5),所述传送带(18)的表面镶嵌连接有挡料条(17),所述传送带(18)的一端固定安装有槽箱(2),所述槽箱(2)的内部固定安装有电机B(6),所述电机B(6)的输出端固定连接有连杆(7)的输入端,所述连杆(7)的一端卡接在卡槽(8)的内部,所述卡槽(8)开设在过滤框网板(10)的一侧,所述过滤框网板(10)的两端滑动连接在滑槽(11)的内部,所述滑槽(11)开设在槽箱(2)的两侧,所述槽箱(2)的顶端开设有滤料槽(9),所述滤料槽(9)的底端开设有导料槽(12),所述传送带(18)的两侧固定连接有橡胶挡板(3),所述传送带(18)的一端固定安装有支杆(4),所述支杆(4)的一端过盈连接有刮除箱(13)。
  2. 根据权利要求1所述的一种生物基质传送装置,其特征在于,所述刮除箱(13)的一侧间隙连接有刮板(16),所述刮板(16)的材料为塑料。
  3. 根据权利要求1所述的一种生物基质传送装置,其特征在于,所述挡料条(17)的数量为多个,所述挡料条(17)的材料为橡胶材料。
  4. 根据权利要求1所述的一种生物基质传送装置,其特征在于,所述刮除箱(13)的内部开设有内腔(14),所述内腔(14)的内部镶嵌连接有弹簧(15),所述弹簧(15)的数量为多个。
  5. 根据权利要求1所述的一种生物基质传送装置,其特征在于,所述电机A(1)的输入端与外部电源电性连接,所述电机B(6)的输入端与外部电源电性连接。
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