WO2022036805A1 - 一种污水处理药物高效混合装置 - Google Patents

一种污水处理药物高效混合装置 Download PDF

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Publication number
WO2022036805A1
WO2022036805A1 PCT/CN2020/117691 CN2020117691W WO2022036805A1 WO 2022036805 A1 WO2022036805 A1 WO 2022036805A1 CN 2020117691 W CN2020117691 W CN 2020117691W WO 2022036805 A1 WO2022036805 A1 WO 2022036805A1
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WIPO (PCT)
Prior art keywords
dispersing
conveying
box
assembly
medicine
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PCT/CN2020/117691
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English (en)
French (fr)
Inventor
曾祥
王光娜
叶光明
陈虎
曾汉良
黄思敏
Original Assignee
广东美景环境科技有限公司
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Publication of WO2022036805A1 publication Critical patent/WO2022036805A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F35/00Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
    • B01F35/71Feed mechanisms
    • B01F35/717Feed mechanisms characterised by the means for feeding the components to the mixer
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/05Stirrers
    • B01F27/11Stirrers characterised by the configuration of the stirrers
    • B01F27/19Stirrers with two or more mixing elements mounted in sequence on the same axis
    • B01F27/191Stirrers with two or more mixing elements mounted in sequence on the same axis with similar elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F27/00Mixers with rotary stirring devices in fixed receptacles; Kneaders
    • B01F27/80Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis
    • B01F27/90Mixers with rotary stirring devices in fixed receptacles; Kneaders with stirrers rotating about a substantially vertical axis with paddles or arms 
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2101/00Mixing characterised by the nature of the mixed materials or by the application field
    • B01F2101/305Treatment of water, waste water or sewage

Definitions

  • the invention relates to the technical field of sewage treatment equipment, in particular to a high-efficiency mixing device for sewage treatment drugs.
  • the treated sewage is widely used in various fields such as construction, agriculture, transportation, energy, environmental protection, urban landscape, etc.
  • the sewage treatment drugs are sewage. Chemicals that must be used during processing.
  • the sewage treatment process is to remove various substances in the sewage through a variety of equipment. When removing these substances, the sewage treatment drugs should be used reasonably according to the water quality of the sewage, so that the sewage treatment can meet the national discharge standards.
  • the commonly used chemicals for sewage are: Flocculants, coagulants, phosphorus removal agents, pH adjusters, disinfectants, defoaming agents, and supplementary carbon sources, etc., these agents are generally solid powders, and they need to be fully integrated with water during sewage treatment.
  • the material properties of various agents are different. In order to avoid uneven fusion, layering and agglomeration of agents, blockage of the pump, and reduction of the reaction effect, it is necessary to fully integrate the added agents and carry out the properties of various agents. Uniform injection, the current drug injection required for drug mixing in sewage treatment is generally performed manually, and manual injection and mixing of drugs are prone to the problem of poor mixing effect of uneven drug delivery.
  • the object of the present invention is to provide a high-efficiency mixing device for sewage treatment drugs, so as to solve the problem that the drug injection required for the mixing of sewage treatment drugs in the prior art is generally performed manually.
  • the invention provides a high-efficiency medicine mixing device for sewage treatment, comprising a medicine mixing box and a feeding mechanism, the feeding mechanism is arranged on one side of the medicine mixing box, and a medicine feeding port is arranged on the side of the medicine mixing box, and the feeding The feeding end of the mechanism corresponds to the drug feeding port.
  • the feeding mechanism includes a drug containing component, a conveying component, a pouring component and a dispersing component.
  • the drug containing component is fixedly arranged on one side of the drug mixing box.
  • the component is fixedly arranged above the medicine mixing box, the pouring component is arranged on the conveying component, the medicine holding component is arranged corresponding to the working end of the pouring component, and the dispersing component is fixedly arranged on one side of the conveying component , the conveying assembly can drive the pouring assembly to carry out the conveying operation to the dispersing assembly, and the working end of the dispersing assembly is correspondingly arranged with the dosing port on the medicine mixing box.
  • the medicine holding assembly includes a storage box, a feeding port, a discharging port, a first electric push rod, a first push plate, a second electric push rod and a second push plate
  • the storage box is fixedly arranged
  • the feeding port is arranged on one side of the storage box
  • the outlet is arranged on one side of the top of the storage box
  • the outlet is opposite to the pouring assembly
  • the first electric push rod is arranged at the bottom of the storage box
  • the output end of the first electric push rod penetrates the bottom of the storage box
  • the first push plate is arranged at the working of the first electric push rod
  • the second electric push rod is arranged on the side of the storage box opposite to the discharge port, and the working end of the second electric push rod penetrates the side wall of the storage box and extends to the interior of the storage box
  • the second push plate is arranged at the working end of the second electric push rod.
  • the conveying assembly supports a base, a conveying slide rail, a conveying slide table, a conveying rack, a conveying table, a conveying motor and a conveying gear
  • the supporting base is fixedly arranged above the medicine mixing box
  • the conveying slide rail is fixedly arranged
  • one end of the conveying slide rail is fixedly connected to one side of the dispersing assembly
  • the conveying slide rail is provided with a moving groove
  • the conveying rack is arranged on one side of the conveying slide rail.
  • the conveying slide table is clamped in the moving groove of the conveying slide rail.
  • the conveying gear meshes with the conveying rack.
  • the pouring assembly includes a pouring base, a pouring box, a fixing block and an electric push rod, the pouring base is fixedly arranged on the conveying platform, the pouring box is hingedly arranged on the pouring base, and the fixing block is arranged on the pouring base.
  • the electric push rod is obliquely arranged on the pouring assembly and the fixing block, and the opening and closing cover assembly is arranged on the pouring box.
  • the dispersing assembly includes a dispersing outer box, a guide plate, a dispersing motor, a dispersing gear, a linkage gear, a first dispersing shaft, a second dispersing shaft, a first dispersing roller and a second dispersing roller.
  • the guide plate is obliquely arranged at the lower position of the dispersing outer box
  • the dispersing motor is fixedly arranged on one side of the dispersing outer box
  • the dispersing gear is arranged on the output shaft of the dispersing motor
  • the The linkage gear is meshed with the dispersing gear
  • the first dispersing shaft and the second dispersing shaft are rotated side by side on the dispersing outer box
  • the first dispersing shaft and the second dispersing shaft are arranged to rotate side by side.
  • One end of the shaft penetrates the side wall of the outer box for breaking up, one end of the first breaking shaft is connected with the breaking gear, one end of the second breaking shaft is connected with the linkage gear, and the first breaking shaft is connected with the linkage gear.
  • the medicine mixing box is also provided with a water inlet pipe, a visual scale bar, an aeration pipe, a dosing pipe and an inspection port.
  • the water inlet pipe is arranged on one side of the medicine mixing box, and the water inlet pipe works.
  • the water inlet pipe is provided with a water inlet pipe filter
  • the medicine mixing box is provided with a vertical visual scale bar
  • the aeration pipe is arranged on one side of the medicine mixing box
  • one end of the aeration pipe runs through and extends to the inside of the medicine mixing box
  • an aeration regulating valve is arranged on the aeration pipe
  • the medicine adding pipe is arranged at the lower position of one side of the medicine mixing box
  • the front end of the drug adding pipe is provided with a Y-shaped filter
  • the inspection port is provided at the opening on one side of the drug mixing box.
  • the stirring device includes a stirring motor, a stirring shaft and a stirring blade, the stirring motor is arranged on the upper position of the medicine mixing box, the stirring shaft is rotatably arranged on the medicine mixing box, and the two ends of the stirring shaft are arranged on the medicine mixing box. Passing through the medicine mixing box, one end of the stirring shaft is connected with the output shaft of the stirring motor, the stirring blades are provided with two groups, and the two groups of the stirring blades are fixedly arranged on the stirring shaft.
  • the present invention is used for the automatic quantitative feeding operation of the medicine in the medicine mixing box through the setting of the feeding mechanism on the medicine mixing box, and the operation of manually feeding and mixing materials into the medicine mixing box is not required, which not only saves manpower, but also saves manpower.
  • the uniformity of medicine mixing is also improved, and the practicability is high.
  • the medicine-containing component in the feeding mechanism is arranged to place the medicine, and a certain amount of medicine is pushed into the pouring component through the medicine-containing component, and then the pouring component is carried out through the conveying component.
  • the automatic mobile conveying transports the medicine to the dispersing component.
  • the dumping component works to pour the medicine into the dispersing component. After breaking up, it enters the medicine mixing box from the medicine inlet, and finally completes the medicine mixing box. Mixing of drugs.
  • the present invention transports medicines in the storage box through the feeding port on the storage box, and then uses the storage box to contain the medicines, and drives the first push plate to move up and down through the operation of the first electric push rod.
  • the medicine is gradually lifted upwards according to the usage amount, and then the second push plate is driven by the operation of the second electric push rod to push a certain amount of medicine from the discharge port into the pouring component, so as to complete the medicine packing and quantitative push.
  • the present invention uses the support base to support the conveying slide rail, and then slides the conveying slide table and the conveying table to the front through the conveying slide rail, drives the conveying gear through the operation of the conveying motor, and drives the conveying gear to mesh with it through the setting of the conveying rack.
  • the conveying gear rotates, and the rotation of the conveying gear drives the conveying sliding table and the conveying table to slide forward to complete the delivery of the medicine.
  • the dumping box is placed on the dumping base through the setting of the dumping base, the medicines dropped from the medicine-containing component are received by the setting of the dumping box, the dumping box is pushed by the operation of the electric push rod, and the dumping box is pushed to the Tilt to push the medicine inside the dispersing assembly to complete the pouring of the medicine.
  • the opening of the dumping box can be closed by the operation of the switch cover assembly to prevent the medicine from flowing out, and it is also for better discharge of the medicine.
  • the adjustment motor works to drive the adjustment shaft to rotate synchronously. Rotation on each mounting seat drives the switch cover fixedly connected with the switch cover to perform switch adjustment.
  • Fig. 3 is the structural schematic diagram of the conveying assembly of the present invention.
  • Fig. 4 is the structural representation of the dispersing assembly of the present invention.
  • Fig. 5 is the partial structure schematic diagram 1 of the present invention.
  • Fig. 6 is the partial structure schematic diagram II of the present invention.
  • FIG. 7 is a schematic structural diagram of the medicine mixing box of the present invention.
  • the terms “installed”, “connected” and “connected” should be understood in a broad sense, unless otherwise expressly specified and limited, for example, it may be a fixed connection or a detachable connection Connection, or integral connection; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be internal communication between two elements.
  • installed should be understood in a broad sense, unless otherwise expressly specified and limited, for example, it may be a fixed connection or a detachable connection Connection, or integral connection; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be internal communication between two elements.
  • an embodiment of the present invention provides a high-efficiency drug mixing device for sewage treatment, including a drug mixing box 1 and a feeding mechanism 2 , and the feeding mechanism 2 is arranged on one side of the drug mixing box 1 , the medicine mixing box 1 is provided with a medicine feeding port 11, the feeding end of the feeding mechanism 2 corresponds to the drug feeding port 11, and the feeding mechanism 2 includes a medicine holding component 21, a conveying component 22, and a pouring component. 23 and a dispersing component 24, the medicine-containing component 21 is fixedly arranged on one side of the medicine mixing box 1, the conveying component 22 is fixedly arranged above the medicine mixing box 1, and the pouring component 23 is arranged on the conveying component.
  • the medicine holding assembly 21 is arranged corresponding to the working end of the pouring assembly 23
  • the dispersing assembly 24 is fixedly arranged on one side of the conveying assembly 22, and the conveying assembly 22 can drive the pouring assembly 23 to disperse.
  • the conveying operation is carried out at the component 24, and the working end of the dispersing component 24 is set correspondingly to the medicine feeding port 11 on the medicine mixing box 1.
  • the setting of the feeding mechanism 2 on the medicine mixing box 1 is used for The automatic quantitative feeding operation of the medicine in the medicine mixing box 1 does not require manual feeding and mixing operations into the medicine mixing box 1, which not only saves manpower, but also improves the uniformity of medicine mixing, and has high practicability.
  • the medicine holding assembly 21 includes a storage box 211 , a feeding port 212 , a discharging port 213 , a first electric push rod 213 , a first push plate 214 , a second electric push rod 215 and a second push plate 216 ,
  • the storage box 211 is fixedly arranged on one side of the medicine mixing box 1
  • the feed port 212 is arranged on one side of the storage box 211
  • the discharge port 213 is arranged on the top of the storage box 211
  • the discharge port 213 corresponds to the pouring assembly 23
  • the first electric push rod 213 is arranged at the bottom of the storage box 211, and the output end of the first electric push rod 213 penetrates the storage box 211.
  • the first push plate 214 is arranged on the working end of the first electric push rod 213, and the second electric push rod 215 is arranged on the side of the material storage box 211 opposite to the discharge port 213 , the working end of the second electric push rod 215 penetrates the side wall of the storage box 211 and extends to the interior of the storage box 211, the second push plate 216 is arranged on the working end of the second electric push rod 215,
  • the feeding port 212 on the material box 211 is used to transport medicines in the material storage box 211, and then the medicine storage box 211 is used to contain the medicine, and the first electric push rod 213 is operated to drive the first push plate 214 to move up and down.
  • the medicine is gradually lifted upwards according to the usage amount, and then the second electric push rod 215 is operated to drive the second push plate 216 to push a certain amount of medicine from the discharge port 213 to the pouring component 23 to complete the medicine containing and quantitative push operations.
  • the conveying assembly 22 supports the base 221, the conveying slide rail 222, the conveying slide table 223, the conveying rack 224, the conveying table 225, the conveying motor 226 and the conveying gear 227, and the supporting base 221 is fixedly arranged in the medicine mixing box 1 above, the conveying slide rail 222 is fixedly arranged above the support base 221, one end of the conveying slide rail 222 is fixedly connected to one side of the dispersing assembly 24, and the conveying slide rail 222 is provided with a moving groove, so
  • the conveying rack 224 is arranged at an upper position on one side of the conveying slide rail 222 , the conveying slide table 223 is clamped in the moving groove of the conveying slide rail 222 , and the conveying table 225 is arranged on the conveying slide table 223 Above the conveying table 225, a conveying motor 226 is fixedly arranged, and the conveying gear 227 is fixedly arranged on the output shaft of the conveying motor 226.
  • the conveying gear 227 is engaged with the conveying rack (224), and passes through the support base 221 is used to support the conveying slide rail 222, and then the conveying slide table 223 and the conveying table 225 are slid to the front through the conveying slide rail 222, and the conveying gear 227 is driven by the operation of the conveying motor 226, and is driven by the setting of the conveying rack 224.
  • the conveying gear 227 rotates, and the conveying gear 227 rotates to drive the conveying slide table 223 and the conveying table 225 to slide forward to complete the conveying operation of the medicine.
  • the pouring assembly 23 includes a pouring base 231 , a pouring box 232 , a fixing block 233 and an electric push rod 234 , the pouring base 231 is fixedly arranged on the conveying platform 225 , and the pouring box 232 is hingedly arranged on the pouring base 231
  • the fixing block 233 is arranged on one side of the dumping box 232
  • the electric push rod 234 is obliquely arranged on the dumping assembly 23 and the fixing block 233
  • the switch cover 251 assembly 25 is arranged on the dumping box 232
  • the pouring box 232 is placed on the pouring base 231 through the setting of the pouring base 231 , the medicines dropped from the medicine holding assembly 21 are received by the setting of the pouring box 232 , and the pouring box 232 is pushed by the operation of the electric push rod 234 .
  • 232 is pushed to incline, so that the medicine can be pushed into the inside of the dispersing assembly 24 to complete the pour
  • the motor 254 is adjusted.
  • the work drives the adjusting shaft 252 to rotate synchronously, and the adjusting shaft 252 rotates on the two mounting bases 253 to drive the switch cover 251 fixedly connected thereto to perform switch adjustment.
  • the dispersing roller 248 and the second dispersing roller 249, the guide plate 242 is obliquely arranged at the lower position of the dispersing outer box 241, the setting of the guide plate 242 can make the dropped medicine slide into the dosing port 11, Enter the medicine mixing box 1 through the dosing port 11, the dispersing motor 243 is fixedly arranged on one side of the dispersing outer box 241, the dispersing gear 244 is arranged on the output shaft of the dispersing motor 243, and the linkage gear 245 meshes with the dispersing gear 244, the first dispersing shaft 246 and the second dispersing shaft 247 are rotated side by side on the dispersing outer box 241, and the first dispersing shaft 246 and the One end of the second dispersing shaft 247 penetrates the side wall of the dispersing outer box 241 , one end of the first dispersing shaft 246 is connected to the dispersing gear 244 , and one end of the second dispersing shaft 247 is linked with the The gears
  • the dispersing shaft 247 , the first dispersing roller 248 and the second dispersing roller 249 slide the medicine dropped from the pouring assembly 23 into the dosing port 11 through the setting of the guide plate 242 , and the dispersing gear is driven by the setting of the dispersing motor 243 244 rotates, the dispersing gear 244 rotates to drive the interlocking gear 245 that meshes with it to rotate, and the two gears rotate to drive the first dispersing roller 248 on the first dispersing shaft 246 and the second dispersing roller 247 on the second dispersing shaft 247
  • the roller 249 rotates to complete the dispersing operation of the medicine.
  • the medicine mixing box 1 is also provided with a water inlet pipe 12 , a visual scale bar 14 , an aeration pipe 15 , a medicine adding pipe 17 and an inspection port 19 .
  • the working end of the water inlet pipe 12 runs through and extends to the inside of the medicine mixing box 1.
  • the water inlet pipe 12 is provided with a water inlet pipe filter 13.
  • the filter at the front end of the water inlet pipe 12 can effectively prevent the water inlet pipe 12 from entering.
  • the impurities generated after the maintenance of the 12 water pipes enter the medicine mixing box 1, and the medicine mixing box 1 is provided with a visual scale bar 14, and the visual scale bar 14 can clearly record the actual usage amount of the medicine, and the next time The weight of the medicine when the medicine is dispensed.
  • the aeration pipe 15 is arranged at the lower position of one side of the medicine mixing box 1.
  • One end of the aeration pipe 15 penetrates and extends into the medicine mixing box 1.
  • the pipe 15 is provided with an aeration regulating valve 16, the aeration regulating valve 16 can adjust the amount of aeration according to different properties to be remembered, and the dosing pipe 17 is arranged on the lower position of one side of the medicine mixing box 1
  • the front end of the medicine adding pipe 17 is provided with a Y-shaped filter 18, and the inspection port 19 is arranged at the opening of one side of the medicine mixing box 1, and the inspection port 19 is convenient for repairing when the device in the barrel fails.
  • the stirring device 3 includes a stirring motor 31 , a stirring shaft 32 and a stirring blade 33 , the stirring motor 31 is arranged above the medicine mixing box 1 , and the stirring shaft 32 is rotatably arranged on the medicine mixing box 1 .
  • the two ends of the stirring shaft 32 run through the medicine mixing box 1, one end of the stirring shaft 32 is connected with the output shaft of the stirring motor 31, the stirring blades 33 are provided with two groups, and the two groups of stirring The blade 33 is fixedly arranged on the stirring shaft 32.
  • the stirring shaft 32 on the output shaft is driven to rotate by the setting of the stirring motor 31, and the stirring blade 33 is driven to stir by the setting of the stirring shaft 32, and the stirring of the medicine is completed. mixing work.
  • the working principle of the present invention when the present invention is in use, the medicine is transported in the storage box 211 through the feeding port 212 on the storage box 211, and then used to contain the medicine through the storage box 211.
  • the operation of the rod 213 drives the first push plate 214 to move up and down, and the medicine is gradually lifted upward according to the usage amount, and then the second electric push rod 215 operates to drive the second push plate 216 to push a certain amount of medicine from the discharge port 213 to the pouring
  • the medicine is filled and quantitatively pushed, and the supporting base 221 is used to support the conveying slide rail 222, and then the conveying slide table 223 and the conveying stage 225 are slid to the front through the conveying slide rail 222, and the conveying gear is driven by the operation of the conveying motor 226.
  • the setting of the conveying rack 224 drives the conveying gear 227 meshing with it to rotate, and the conveying gear 227 rotates to drive the conveying slide table 223 and the conveying table 225 to slide forward to complete the delivery of the medicine. It is provided to install the first dispersing shaft 246, the second dispersing shaft 247, the first dispersing roller 248 and the second dispersing roller 249, and the medicine falling from the pouring assembly 23 is slid into the medicine feeding port through the setting of the guide plate 242 11.
  • the setting of the dispersing motor 243 drives the dispersing gear 244 to rotate, the dispersing gear 244 rotates to drive the interlocking gear 245 that meshes with it to rotate, and the two gears rotate to drive the first dispersing roller 248 on the first dispersing shaft 246 It rotates with the second dispersing roller 249 on the second dispersing shaft 247 to complete the dispersing of the medicine.
  • the stirring shaft 32 on the output shaft is driven to rotate by the setting of the stirring motor 31, and the stirring blade 33 is driven by the setting of the stirring shaft 32. Stirring is performed to complete the stirring of the drug.

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  • Chemical Kinetics & Catalysis (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

一种污水处理药物高效混合装置,包括药物混合箱(1)和投料机构(2),投料机构(2)设在药物混合箱(1)上的一侧,药物混合箱(1)上方设置有加药口(11),投料机构(2)包括盛药组件(21)、输送组件(22)、倾倒组件(23)和打散组件(24),盛药组件(21)设置在药物混合箱(1)上的一侧,输送组件(22)固定设置在药物混合箱(1)上方,倾倒组件(23)设置在输送组件(22)上,打散组件(24)固定设置在输送组件(22)的一侧,输送组件(22)可带动倾倒组件(23)向打散组件(24)处进行输送作业,打散组件(24)的工作端与药物混合箱(1)上的加药口(11)对应设置。

Description

一种污水处理药物高效混合装置 技术领域
本发明涉及污水处理设备技术领域,尤其是涉及一种污水处理药物高效混合装置。
背景技术
随着经济与科技的快速发展,在人们的生活和工作中会产生大量的污水,而随着可用水资源的减少,污水处理后再利用,成为一种必然趋势。为保障污水达标排放或达到再利用的水质要求,因此需要对污水进行处理,处理过后的污水被广泛用于建筑、农业、交通、能源、环保、城市景观等各个领域,污水处理药物则是污水处理过程中必须使用的化学药剂。污水处理过程是通过多种设备对污水中各种物质进行去除,在去除这些物质的时候要根据污水水质的情况合理使用污水处理药物,使得污水处理后符合国家排放标准,污水常用的药剂有:絮凝剂、助凝剂、除磷剂、PH值调整剂、消毒剂、消泡剂以及补充碳源等,这些药剂一般都是固体粉状,对污水处理进行时都需要通过与水进行充分融合使用,但是各种药剂的物料性质不一样,为了避免出现融合不均匀,出现药剂分层和结块的情况,造成泵的堵塞、降低反应效果,需要对加入药剂充分融合以及各类药剂属性进行匀速投放,现有的污水处理药物混合所需要的药物投放一般都是由人工进行投放作业,通过人工进行药物的投放混合容易出现投放不均匀药物混合的效果较差的问题。
实用新型内容
本发明的目的在于提供一种污水处理药物高效混合装置,以解决现有技术中污水处理药物混合所需要的药物投放一般都是由人工进行投放作业,通过人工进行药物的投放混合容易出现投放不均匀药物混合的效果较差的技术问题。
本发明提供一种污水处理药物高效混合装置,包括药物混合箱和投料机构,所述投料机构设置在药物混合箱上的一侧,所述药物混合箱方上设置有加药口,所述投料机构的投料端与所述加药口对应,所述投料机构包括盛药组件、输送组件、倾倒组件和打散组件,所述盛药组件固定设置在药物混合箱上的一侧,所述输送组件固定设置在药物混合箱上方,所述倾倒组件设置在所述输送组件上,所述盛药组件与所述倾倒组件的工作端对应设置,所述打散组件固定设置在输送组件的一侧,所述输送组件可带动倾倒组件向打散组件处进行输送作业,所述打散组件的工作端与药物混合箱上的加药口对应设置。
进一步的,所述盛药组件包括存料箱、进料口、出料口、第一电动推杆、第一推板、第二电动推杆和第二推板,所述存料箱固定设置在药物混合箱上的一侧,所述进料口设置在存料箱上的一侧,所述出料口设置在存料箱顶部的一侧,所述出料口与所述倾倒组件相对应,所述第一电动推杆设置在存料箱的底部,所述第一电动推杆的输出端贯穿所述存料箱底部,所述第一推板设置在第一电动推杆的工作端,所述第二电动推杆设置在存料箱上与所述出料口相对的一侧,所述第二电动推杆工作端贯穿存料箱的侧壁并延伸至存料箱的内部,所述第二推板设置在第二电动推杆的工作端。
进一步的,所述输送组件支撑底座、输送滑轨、输送滑台、输送齿条、输送台、输送电机和输送齿轮,所述支撑底座固定设置在药物混合箱上方,所述输送滑轨固定设置支撑底座的上方,所述输送滑轨的一端与所述打散组件一侧固定连接,所述输送滑轨内设有移动槽,所述所述输送齿条设置在输送滑轨的一侧的上方位置上,所述输送滑台卡设在输送滑轨的移动槽内,所述输送台设置在输送滑台的上方,所述输送台上固定设置有输送电机,所述输送齿轮固定设置在输送电机的输出轴上,所述输送齿轮与输送齿条相啮合。
进一步的,所述倾倒组件包括倾倒底座、倾倒箱、固定块和电动推杆,所述倾倒底座固定设置在输送台上,所述倾倒箱铰接设置在倾倒底座上,所 述固定块设置在倾倒箱的一侧,所述电动推杆倾斜设置在所述倾倒组件和固定块上,所述开关盖组件设置在倾倒箱上。
进一步的,所述倾倒箱上与所述打散组件相同的一侧设置有开关组件,所述开关盖组件包括开关盖、调节轴、安装座和调节电机,所述开关盖设在所述倾倒箱上,所述安装座设有两块,两块所述安装座对称固定设置在倾倒箱上,并且两块所述安装座分别位于倾倒箱口上的两侧,所述调节轴转动安装在两块所述安装座上,所述开关盖的一侧与所述调节轴固定连接,所述调节电机固定设置在一侧的安装座上。
进一步的,所述打散组件包括打散外箱、导向板、打散电机、打散齿轮、联动齿轮、第一打散轴、第二打散轴、第一打散辊和第二打散辊,所述导向板倾斜设置在打散外箱的下方位置,所述打散电机固定设置在打散外箱的一侧,所述打散齿轮设置在打散电机的输出轴上,所述联动齿轮与所述打散齿轮相啮合,所述第一打散轴与所述第二打散轴并排转动设置在打散外箱上,所述第一打散轴与所述第二打散轴的一端贯穿所述打散外箱的侧壁,所述第一打散轴的一端与打散齿轮相连接,所述第二打散轴的一端与联动齿轮相连接,所述第一打散辊固定设置在第一打散轴上,所述第二打散辊固定设置在第二打散轴上,所述第一打散轴上的第一打散辊与所述第二打散轴上的第二打散辊依次交错设置。
进一步的,所述药物混合箱上还设有进水管、可视刻度条、曝气管、加药管和检修口,所述进水管设置在药物混合箱的一侧,所述进水管的工作端贯穿延伸至药物混合箱的内部,所述进水管上设置有进水管过滤器,所述药物混合箱上设置有垂直的可视刻度条,所述曝气管设置在药物混合箱的一侧的下方位置上,所述曝气管的一端贯穿并延伸至药物混合箱内部,所述曝气管上设置有曝气调节阀,所述加药管设置在药物混合箱的一侧的下方位置上,所述加药管的前端设置有Y形过滤器,所述检修口设置在药物混合箱的一侧开口处。
进一步的,所述搅拌装置包括搅拌电机、搅拌轴和搅拌叶片,所述搅拌电机设置在药物混合箱的上方位置上,所述搅拌轴转动设置在药物混合箱上,所述搅拌轴的两端贯穿所述药物混合箱,所述搅拌轴的一端与所述搅拌电机的输出轴连接,所述搅拌叶片设置有两组,两组所述搅拌叶片固定设置在搅拌轴上。
与现有技术相比较,本发明的有益效果在于:
其一,本发明通过药物混合箱上投料机构的设置用来对药物混合箱内的药物进行自动化的定量投料作业,不需要人工手动向药物混合箱内部进行投料混合的作业,既节省了人力,又提高了药物混合的均匀性,实用性较高,投料机构中盛药组件的设置用来放置药物,通过盛药组件将一定量的药物推入倾倒组件中,再通过输送组件将倾倒组件进行自动化的移动输送,将药物输送到打散组件处,此时倾倒组件工作将药物倾倒至打散组件中打散打碎后从进药口处进入到药物混合箱内,最后通过药物混合箱完成对药物的混合。
其二,本发明通过存料箱上的进料口上存料箱内输送药物,再通过存料箱用来将药物进行盛装,通过第一电动推杆运作带动第一推板进行上下移动,将药物根据使用量逐渐向上抬升,再通过第二电动推杆运作带动第二推板将一定量的药物从出料口推送至倾倒组件内,完成药物盛装和定量推送。
其三,本发明通过支撑底座用来支撑输送滑轨,再通过输送滑轨将输送滑台与输送台滑至前方,通过输送电机运作带动输送齿轮,通过输送齿条的设置带动与之相啮合的输送齿轮转动,输送齿轮转动带动输送滑台与输送台向前滑动,完成对药物的输送。
其四,本发明通过倾倒底座的设置将倾倒箱放置在倾倒底座上,通过倾倒箱的设置将从盛药组件里落下的药物盛接,通过电动推杆运作推动倾倒箱,将倾倒箱推至倾斜,好将药物推至打散组件内部,完成对药物的倾倒。
其五,本发明通过开关盖组件工作可将倾倒箱口进行封闭作业,防止药剂流出,也是为了更好的排出药剂,当开关盖组件工作时调节电机工作带动 调节轴同步转动,调节轴在两个安装座上进行转动带动与其固定连接的开关盖进行开关调节。
其六,本发明通过打散外箱的设置来安装第一打散轴、第二打散轴、第一打散辊和第二打散辊,通过导向板的设置将从倾倒组件落下的药物滑进加药口,通过打散电机的设置带动打散齿轮转动,打散齿轮转动带动与其相啮合的联动齿轮转动,两个齿轮转动带动第一打散轴上的第一打散辊和第二打散轴上的第二打散辊转动,完成对药物的打散。
附图说明
为了更清楚地说明本发明具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本发明的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明的整体结构示意图;
图2为本发明盛药组件的结构示意图;
图3为本发明输送组件的结构示意图;
图4为本发明打散组件的结构示意图;
图5为本发明的局部结构示意图一;
图6为本发明的局部结构示意图二;
图7为本发明的药物混合箱结构示意图。
附图标记:
药物混合箱1,加药口11,进水管12,进水管过滤器13,可视刻度条14,曝气管15,曝气调节阀16,加药管17,Y形过滤器18,检修口19,投料机构2,盛药组件21,存料箱211,进料口212,出料口213,第一电动推杆213,第一推板214,第二电动推杆215,第二推板216,输送组件22,支撑底座221,输送滑轨222,输送滑台223,输送齿条224,输送台225,输 送电机226,输送齿轮227,倾倒组件23,倾倒底座231,倾倒箱232,固定块233,电动推杆234,打散组件24,打散外箱241,导向板242,打散电机243,打散齿轮244,联动齿轮245,第一打散轴246,第二打散轴247,第一打散辊248,第二打散辊249,开关盖组件25,开关盖251,调节轴252,安装座253,调节电机254,搅拌装置3,搅拌电机31,搅拌轴32,搅拌叶片33。
具体实施方式
下面将结合附图对本发明的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。
通常在此处附图中描述和显示出的本发明实施例的组件可以以各种不同的配置来布置和设计。因此,以下对在附图中提供的本发明的实施例的详细描述并非旨在限制要求保护的本发明的范围,而是仅仅表示本发明的选定实施例。
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。
在本发明的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对 于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
下面结合图1至图7所示,本发明实施例提供了一种污水处理药物高效混合装置,包括药物混合箱1和投料机构2,所述投料机构2设置在药物混合箱1上的一侧,所述药物混合箱1方上设置有加药口11,所述投料机构2的投料端与所述加药口11对应,所述投料机构2包括盛药组件21、输送组件22、倾倒组件23和打散组件24,所述盛药组件21固定设置在药物混合箱1上的一侧,所述输送组件22固定设置在药物混合箱1上方,所述倾倒组件23设置在所述输送组件22上,所述盛药组件21与所述倾倒组件23的工作端对应设置,所述打散组件24固定设置在输送组件22的一侧,所述输送组件22可带动倾倒组件23向打散组件24处进行输送作业,所述打散组件24的工作端与药物混合箱1上的加药口11对应设置,当需要对药物进行混合时,通过药物混合箱1上投料机构2的设置用来对药物混合箱1内的药物进行自动化的定量投料作业,不需要人工手动向药物混合箱1内部进行投料混合的作业,既节省了人力,又提高了药物混合的均匀性,实用性较高,投料机构2中盛药组件21的设置用来放置药物,通过盛药组件21将一定量的药物推入倾倒组件23中,再通过输送组件22将倾倒组件23进行自动化的移动输送,将药物输送到打散组件24处,此时倾倒组件23工作将药物倾倒至打散组件24中打散打碎后从进药口处进入到药物混合箱1内,最后通过药物混合箱1完成对药物的混合。
具体的,所述盛药组件21包括存料箱211、进料口212、出料口213、第一电动推杆213、第一推板214、第二电动推杆215和第二推板216,所述存料箱211固定设置在药物混合箱1上的一侧,所述进料口212设置在存料箱211上的一侧,所述出料口213设置在存料箱211顶部的一侧,所述出料口213与所述倾倒组件23相对应,所述第一电动推杆213设置在存料箱211的底部,所述第一电动推杆213的输出端贯穿所述存料箱211底部,所述第 一推板214设置在第一电动推杆213的工作端,所述第二电动推杆215设置在存料箱211上与所述出料口213相对的一侧,所述第二电动推杆215工作端贯穿存料箱211的侧壁并延伸至存料箱211的内部,所述第二推板216设置在第二电动推杆215的工作端,通过存料箱211上的进料口212上存料箱211内输送药物,再通过存料箱211用来将药物进行盛装,通过第一电动推杆213运作带动第一推板214进行上下移动,将药物根据使用量逐渐向上抬升,再通过第二电动推杆215运作带动第二推板216将一定量的药物从出料口213推送至倾倒组件23内,完成药物盛装和定量推送的作业。
具体的,所述输送组件22支撑底座221、输送滑轨222、输送滑台223、输送齿条224、输送台225、输送电机226和输送齿轮227,所述支撑底座221固定设置在药物混合箱1上方,所述输送滑轨222固定设置支撑底座221的上方,所述输送滑轨222的一端与所述打散组件24一侧固定连接,所述输送滑轨222内设有移动槽,所述所述输送齿条224设置在输送滑轨222的一侧的上方位置上,所述输送滑台223卡设在输送滑轨222的移动槽内,所述输送台225设置在输送滑台223的上方,所述输送台225上固定设置有输送电机226,所述输送齿轮227固定设置在输送电机226的输出轴上,所述输送齿轮227与输送齿条(224)相啮合,通过支撑底座221用来支撑输送滑轨222,再通过输送滑轨222将输送滑台223与输送台225滑至前方,通过输送电机226运作带动输送齿轮227,通过输送齿条224的设置带动与之相啮合的输送齿轮227转动,输送齿轮227转动带动输送滑台223与输送台225向前滑动,完成对药物的输送作业。
具体的,所述倾倒组件23包括倾倒底座231、倾倒箱232、固定块233和电动推杆234,所述倾倒底座231固定设置在输送台225上,所述倾倒箱232铰接设置在倾倒底座231上,所述固定块233设置在倾倒箱232的一侧,所述电动推杆234倾斜设置在所述倾倒组件23和固定块233上,所述开关盖251组件25设置在倾倒箱232上,通过倾倒底座231的设置将倾倒箱232放 置在倾倒底座231上,通过倾倒箱232的设置将从盛药组件21里落下的药物盛接,通过电动推杆234运作推动倾倒箱232,将倾倒箱232推至倾斜,好将药物推至打散组件24内部,完成对药物的倾倒作业。
具体的,所述倾倒箱232上与所述打散组件24相同的一侧设置有开关盖251组件25,所述开关盖251组件25包括开关盖251、调节轴252、安装座253和调节电机254,所述开关盖251设在所述倾倒箱232上,所述安装座253设有两块,两块所述安装座253对称固定设置在倾倒箱232上,并且两块所述安装座253分别位于倾倒箱232口上的两侧,所述调节轴252转动安装在两块所述安装座253上,所述开关盖251的一侧与所述调节轴252固定连接,所述调节电机254固定设置在一侧的安装座253上,通过开关盖251组件25工作可将倾倒箱232口进行封闭作业,防止药剂流出,也是为了更好的排出药剂,当开关盖251组件25工作时调节电机254工作带动调节轴252同步转动,调节轴252在两个安装座253上进行转动带动与其固定连接的开关盖251进行开关调节。
具体的,所述打散组件24包括打散外箱241、导向板242、打散电机243、打散齿轮244、联动齿轮245、第一打散轴246、第二打散轴247、第一打散辊248和第二打散辊249,所述导向板242倾斜设置在打散外箱241的下方位置,所述通过导向板242的设置能够使掉落的药剂滑入加药口11,通过加药口11进入药物混合箱1,所述打散电机243固定设置在打散外箱241的一侧,所述打散齿轮244设置在打散电机243的输出轴上,所述联动齿轮245与所述打散齿轮244相啮合,所述第一打散轴246与所述第二打散轴247并排转动设置在打散外箱241上,所述第一打散轴246与所述第二打散轴247的一端贯穿所述打散外箱241的侧壁,所述第一打散轴246的一端与打散齿轮244相连接,所述第二打散轴247的一端与联动齿轮245相连接,所述第一打散辊248固定设置在第一打散轴246上,所述第二打散辊249固定设置在第二打散轴247上,所述第一打散轴246上的第一打散辊248与所述第二 打散轴247上的第二打散辊249依次交错设置,通过打散外箱241的设置来安装第一打散轴246、第二打散轴247、第一打散辊248和第二打散辊249,通过导向板242的设置将从倾倒组件23落下的药物滑进加药口11,通过打散电机243的设置带动打散齿轮244转动,打散齿轮244转动带动与其相啮合的联动齿轮245转动,两个齿轮转动带动第一打散轴246上的第一打散辊248和第二打散轴247上的第二打散辊249转动,完成对药物的打散作业。
具体的,所述药物混合箱1上还设有进水管12、可视刻度条14、曝气管15、加药管17和检修口19,所述进水管12设置在药物混合箱1的一侧,所述进水管12的工作端贯穿延伸至药物混合箱1的内部,所述进水管12上设置有进水管过滤器13,所述在进水管12的前端加过滤器能够有效的防止进水管12道维修后产生的杂质进入药物混合箱1内,所述药物混合箱1上设置有可视刻度条14,所述可视刻度条14能够清楚地记录药剂的实际使用量,以及下次配药量时药量的重量,所述曝气管15设置在药物混合箱1的一侧的下方位置上,所述曝气管15的一端贯穿并延伸至药物混合箱1内部,所述曝气管15上设置有曝气调节阀16,所述曝气调节阀16可根据要记得不同属性调节曝气量的大小,所述加药管17设置在药物混合箱1的一侧的下方位置上,所述加药管17的前端设置有Y形过滤器18,所述检修口19设置在药物混合箱1的一侧开口处,所述检修口19方便桶内装置出现故障时检修。
具体的,所述搅拌装置3包括搅拌电机31、搅拌轴32和搅拌叶片33,所述搅拌电机31设置在药物混合箱1的上方位置上,所述搅拌轴32转动设置在药物混合箱1上,所述搅拌轴32的两端贯穿所述药物混合箱1,所述搅拌轴32的一端与所述搅拌电机31的输出轴连接,所述搅拌叶片33设置有两组,两组所述搅拌叶片33固定设置在搅拌轴32上,当搅拌装置3工作时,通过搅拌电机31的设置带动输出轴上的搅拌轴32转动,通过搅拌轴32的设置带动搅拌叶片33进行搅拌,完成对药物的搅拌作业。
本发明的工作原理:本发明在使用时,通过存料箱211上的进料口212上存料箱211内输送药物,再通过存料箱211用来将药物进行盛装,通过第一电动推杆213运作带动第一推板214进行上下移动,将药物根据使用量逐渐向上抬升,再通过第二电动推杆215运作带动第二推板216将一定量的药物从出料口213推送至倾倒组件23内,完成药物盛装和定量推送,通过支撑底座221用来支撑输送滑轨222,再通过输送滑轨222将输送滑台223与输送台225滑至前方,通过输送电机226运作带动输送齿轮227,通过输送齿条224的设置带动与之相啮合的输送齿轮227转动,输送齿轮227转动带动输送滑台223与输送台225向前滑动,完成对药物的输送,通过打散外箱241的设置来安装第一打散轴246、第二打散轴247、第一打散辊248和第二打散辊249,通过导向板242的设置将从倾倒组件23落下的药物滑进加药口11,通过打散电机243的设置带动打散齿轮244转动,打散齿轮244转动带动与其相啮合的联动齿轮245转动,两个齿轮转动带动第一打散轴246上的第一打散辊248和第二打散轴247上的第二打散辊249转动,完成对药物的打散,通过搅拌电机31的设置带动输出轴上的搅拌轴32转动,通过搅拌轴32的设置带动搅拌叶片33进行搅拌,完成对药物的搅拌。
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围。

Claims (8)

  1. 一种污水处理药物高效混合装置,其特征在于:包括药物混合箱(1)和投料机构(2),所述投料机构(2)设置在药物混合箱(1)上的一侧,所述药物混合箱(1)方上设置有加药口(11),所述投料机构(2)的投料端与所述加药口(11)对应,所述投料机构(2)包括盛药组件(21)、输送组件(22)、倾倒组件(23)和打散组件(24),所述盛药组件(21)固定设置在药物混合箱(1)上的一侧,所述输送组件(22)固定设置在药物混合箱(1)上方,所述倾倒组件(23)设置在所述输送组件(22)上,所述盛药组件(21)与所述倾倒组件(23)的工作端对应设置,所述打散组件(24)固定设置在输送组件(22)的一侧,所述输送组件(22)可带动倾倒组件(23)向打散组件(24)处进行输送作业,所述打散组件(24)的工作端与药物混合箱(1)上的加药口(11)对应设置。
  2. 根据权利要求1所述的一种污水处理药物高效混合装置,其特征在于:所述盛药组件(21)包括存料箱(211)、进料口(212)、出料口(213)、第一电动推杆(213)、第一推板(214)、第二电动推杆(215)和第二推板(216),所述存料箱(211)固定设置在药物混合箱(1)上的一侧,所述进料口(212)设置在存料箱(211)上的一侧,所述出料口(213)设置在存料箱(211)顶部的一侧,所述出料口(213)与所述倾倒组件(23)相对应,所述第一电动推杆(213)设置在存料箱(211)的底部,所述第一电动推杆(213)的输出端贯穿所述存料箱(211)底部,所述第一推板(214)设置在第一电动推杆(213)的工作端,所述第二电动推杆(215)设置在存料箱(211)上与所述出料口(213)相对的一侧,所述第二电动推杆(215)工作端贯穿存料箱(211)的侧壁并延伸至存料箱(211)的内部,所述第二推板(216)设置在第二电动推杆(215)的工作端。
  3. 根据权利要求2所述的一种污水处理药物高效混合装置,其特征在于:所述输送组件(22)支撑底座(221)、输送滑轨(222)、输送滑台(223)、输送齿条(224)、输送台(225)、输送电机(226)和输送齿轮(227),所述支撑底座(221)固定设置在药物混合箱(1)上方,所述输送滑轨(222)固定设置支撑底座(221)的上方,所述输送滑轨(222)的一端与所述打散组件(24)一侧固定连接,所述输送滑轨(222)内设有移动槽,所述所述输送齿条(224)设置在输送滑轨(222)的一侧的上方位置上,所述输送滑台(223)卡设在输送滑轨(222)的移动槽内,所述输送台(225)设置在输送滑台(223)的上方,所述输送台(225)上固定设置有输送电机(226),所述输送齿轮(227)固定设置在输送电机(226)的输出轴上,所述输送齿轮(227)与输送齿条(224)相啮合。
  4. 根据权利要求3所述的一种污水处理药物高效混合装置,其特征在于:所述倾倒组件(23)包括倾倒底座(231)、倾倒箱(232)、固定块(233)和电动推杆(234),所述倾倒底座(231)固定设置在输送台(225)上,所述倾倒箱(232)铰接设置在倾倒底座(231)上,所述固定块(233)设置在倾倒箱(232)的一侧,所述电动推杆(234)倾斜设置在所述倾倒组件(23)和固定块(233)上,所述开关盖(251)组件(25)设置在倾倒箱(232)上。
  5. 根据权利要求4所述的一种污水处理药物高效混合装置,其特征在于:所述倾倒箱(232)上与所述打散组件(24)相同的一侧设置有开关盖(251)组件(25),所述开关盖(251)组件(25)包括开关盖(251)、调节轴(252)、安装座(253)和调节电机(254),所述开关盖(251)设在所述倾倒箱(232)上,所述安装座(253)设有两块,两块所述安装座(253)对称固定设置在倾倒箱(232)上,并且两块所述安装座(253)分别位于倾倒箱(232)口上的两侧,所述调节轴(252)转动安装在两块所述安装座(253)上,所述开关盖(251)的一侧与所述调节轴(252) 固定连接,所述调节电机(254)固定设置在一侧的安装座(253)上。
  6. 根据权利要求5所述的一种污水处理药物高效混合装置,其特征在于:所述打散组件(24)包括打散外箱(241)、导向板(242)、打散电机(243)、打散齿轮(244)、联动齿轮(245)、第一打散轴(246)、第二打散轴(247)、第一打散辊(248)和第二打散辊(249),所述导向板(242)倾斜设置在打散外箱(241)的下方位置,所述打散电机(243)固定设置在打散外箱(241)的一侧,所述打散齿轮(244)设置在打散电机(243)的输出轴上,所述联动齿轮(245)与所述打散齿轮(244)相啮合,所述第一打散轴(246)与所述第二打散轴(247)并排转动设置在打散外箱(241)上,所述第一打散轴(246)与所述第二打散轴(247)的一端贯穿所述打散外箱(241)的侧壁,所述第一打散轴(246)的一端与打散齿轮(244)相连接,所述第二打散轴(247)的一端与联动齿轮(245)相连接,所述第一打散辊(248)固定设置在第一打散轴(246)上,所述第二打散辊(249)固定设置在第二打散轴(247)上,所述第一打散轴(246)上的第一打散辊(248)与所述第二打散轴(247)上的第二打散辊(249)依次交错设置。
  7. 根据权利要求6所述的一种污水处理药物高效混合装置,其特征在于:所述药物混合箱(1)上还设有进水管(12)、可视刻度条(14)、曝气管(15)、加药管(17)和检修口(19),所述进水管(12)设置在药物混合箱(1)的一侧,所述进水管(12)的工作端贯穿延伸至药物混合箱(1)的内部,所述进水管(12)上设置有进水管过滤器(13),所述药物混合箱(1)上设置有垂直的可视刻度条(14),所述曝气管(15)设置在药物混合箱(1)的一侧的下方位置上,所述曝气管(15)的一端贯穿并延伸至药物混合箱(1)内部,所述曝气管(15)上设置有曝气调节阀(16),所述加药管(17)设置在药物混合箱(1)的一侧的下方位置上,所述加药管(17)的前端设置有Y形过滤器(18),所述检修口(19) 设置在药物混合箱(1)的一侧开口处。
  8. 根据权利要求7所述的一种污水处理药物高效混合装置,其特征在于:所述搅拌装置(3)包括搅拌电机(31)、搅拌轴(32)和搅拌叶片(33),所述搅拌电机(31)设置在药物混合箱(1)的上方位置上,所述搅拌轴(32)转动设置在药物混合箱(1)上,所述搅拌轴(32)的两端贯穿所述药物混合箱(1),所述搅拌轴(32)的一端与所述搅拌电机(31)的输出轴连接,所述搅拌叶片(33)设置有两组,两组所述搅拌叶片(33)固定设置在搅拌轴(32)上。
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