CN221894739U - A device for filtering and reusing wastewater from sour plum soup processing - Google Patents
A device for filtering and reusing wastewater from sour plum soup processing Download PDFInfo
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技术领域Technical Field
本实用新型涉及酸梅汤加工技术领域,尤其涉及一种酸梅汤加工用废水过滤再利用装置。The utility model relates to the technical field of sour plum soup processing, in particular to a wastewater filtering and recycling device for sour plum soup processing.
背景技术Background Art
酸梅汤在夏天饮用能够清热解暑,是十分好喝的饮料,在酸梅汤加工过程中,会产生很多废水,酸梅汤加工厂会将废水直接送往污水处理场,不进行过滤再利用,浪费了废水资源。Drinking sour plum soup in summer can clear away heat and relieve summer heat, and it is a very delicious beverage. During the processing of sour plum soup, a lot of wastewater will be produced. The sour plum soup processing plant will send the wastewater directly to the sewage treatment plant without filtering and reusing it, thus wasting wastewater resources.
现通过过滤装置将酸梅汤加工中产生的废水进行颗粒物过滤,再添加净化剂进入废水中,对废水进行净化处理,保证废水能够再利用,用于冲刷地面,喷洒植被,使废水能够重复利用。The wastewater generated in the processing of sour plum soup is now filtered out of particles through a filtering device, and then a purifier is added into the wastewater to purify the wastewater to ensure that the wastewater can be reused for flushing the ground and spraying vegetation.
因此,有必要提供一种新的酸梅汤加工用废水过滤再利用装置解决上述技术问题。Therefore, it is necessary to provide a new sour plum soup processing wastewater filtering and recycling device to solve the above-mentioned technical problems.
实用新型内容Utility Model Content
为解决上述技术问题,本实用新型是提供一种酸梅汤加工用废水过滤再利用装置。In order to solve the above technical problems, the utility model provides a device for filtering and reusing waste water used in sour plum soup processing.
本实用新型提供的酸梅汤加工用废水过滤再利用装置包括:收集筒、净化筒、连接环和支撑座,所述收集筒下方设置有净化筒,所述收集筒表面固定连接有连接环,所述连接环表面固定连接有支撑座;过滤机构和搅拌机构,所述收集筒和净化筒中间设置有过滤机构,通过过滤机构的使用,过滤废水中的颗粒物杂质,所述净化筒内部转动安装有搅拌机构,通过搅拌机构的使用,将废水和净化剂混合,酸梅汤加工产生的废水进入收集筒内部,通过过滤机构过滤废水中的颗粒物杂质,废水再进入净化筒内部,通过搅拌机构配合净化剂对废水进行净化处理,连接环和支撑座对收集筒进行支撑。The utility model provides a device for filtering and reusing wastewater for sour plum soup processing, comprising: a collecting cylinder, a purification cylinder, a connecting ring and a supporting seat, wherein a purification cylinder is arranged below the collecting cylinder, a connecting ring is fixedly connected to the surface of the collecting cylinder, and a supporting seat is fixedly connected to the surface of the connecting ring; a filtering mechanism and a stirring mechanism, a filtering mechanism is arranged between the collecting cylinder and the purification cylinder, particulate impurities in the wastewater are filtered out by using the filtering mechanism, a stirring mechanism is rotatably installed inside the purification cylinder, wastewater and a purifying agent are mixed by using the stirring mechanism, wastewater generated by sour plum soup processing enters the collecting cylinder, particulate impurities in the wastewater are filtered out by the filtering mechanism, the wastewater then enters the purifying cylinder, the wastewater is purified by the stirring mechanism in combination with the purifying agent, and the connecting ring and the supporting seat support the collecting cylinder.
优选的,所述过滤机构包括第一防护壳、第一电机、传动板、过滤壳和过滤网,所述收集筒和净化筒远离支撑座的一侧设置有第一防护壳,所述第一防护壳内壁固定安装有第一电机,所述第一电机输出轴固定连接有传动板,所述传动板靠近收集筒和净化筒的一侧固定连接有过滤壳,所述过滤壳内壁固定连接有过滤网,启动第一防护壳内壁的第一电机,第一电机输出轴带动传动板转动,传动板控制过滤壳移至收集筒下方,过滤网过滤收集筒排出废水中的颗粒物杂质,第一电机再次转动,将过滤壳远离收集筒下方,方便处理颗粒物杂质。Preferably, the filtering mechanism includes a first protective shell, a first motor, a transmission plate, a filter shell and a filter screen. The first protective shell is provided on the side of the collecting cylinder and the purification cylinder away from the support seat. The first motor is fixedly installed on the inner wall of the first protective shell. The output shaft of the first motor is fixedly connected to the transmission plate. The side of the transmission plate close to the collecting cylinder and the purification cylinder is fixedly connected to the filter shell. The inner wall of the filter shell is fixedly connected to the filter screen. The first motor on the inner wall of the first protective shell is started, and the output shaft of the first motor drives the transmission plate to rotate. The transmission plate controls the filter shell to move to the bottom of the collecting cylinder, and the filter screen filters the collecting cylinder to discharge particulate impurities in the wastewater. The first motor rotates again to move the filter shell away from the bottom of the collecting cylinder to facilitate the treatment of particulate impurities.
优选的,所述过滤机构还包括环形槽和导向杆,所述第一防护壳顶部开设有环形槽,所述传动板下表面固定连接有导向杆,且导向杆在环形槽内壁滑动,在传动板转动过程中,导向杆在环形槽内壁转动,保证传动板转动过程中,不会发生晃动,提高了传动板转动的稳定性。Preferably, the filtering mechanism also includes an annular groove and a guide rod. An annular groove is opened on the top of the first protective shell. The guide rod is fixedly connected to the lower surface of the transmission plate, and the guide rod slides on the inner wall of the annular groove. During the rotation of the transmission plate, the guide rod rotates on the inner wall of the annular groove, ensuring that the transmission plate does not shake during the rotation, thereby improving the stability of the rotation of the transmission plate.
优选的,所述搅拌机构包括第二防护壳、第二电机、第一定位块、第二定位块和搅动杆,所述净化筒靠近支撑座的表面固定连接有第二防护壳,所述第二防护壳内壁固定安装有第二电机,且第二电机输出轴穿过净化筒表面圆孔进入净化筒内部,所述净化筒中心位置固定连接有第一定位块,所述第一定位块上方设置有第二定位块,且第二定位块两侧与净化筒内壁固定连接,所述第一定位块和第二定位块圆形孔内部转动连接有搅动杆,且搅动杆顶部与第二电机输出轴通过锥齿轮啮合连接,废水和净化剂进入净化筒内部后,启动第二防护壳内壁的第二电机,第二电机输出轴锥齿轮接触搅动杆顶部锥齿轮,带动搅动杆在第一定位块和第二定位块圆形孔内部转动,将废水和净化剂混合均匀。Preferably, the stirring mechanism includes a second protective shell, a second motor, a first positioning block, a second positioning block and a stirring rod, the second protective shell is fixedly connected to the surface of the purification cylinder close to the support seat, the second motor is fixedly installed on the inner wall of the second protective shell, and the output shaft of the second motor passes through the circular hole on the surface of the purification cylinder to enter the interior of the purification cylinder, the first positioning block is fixedly connected to the center position of the purification cylinder, the second positioning block is arranged above the first positioning block, and the two sides of the second positioning block are fixedly connected to the inner wall of the purification cylinder, the first positioning block and the second positioning block are rotatably connected inside the circular holes, and the top of the stirring rod is meshed with the output shaft of the second motor through a bevel gear, after the wastewater and the purifier enter the interior of the purification cylinder, the second motor on the inner wall of the second protective shell is started, the bevel gear of the second motor output shaft contacts the bevel gear at the top of the stirring rod, and drives the stirring rod to rotate inside the circular holes of the first positioning block and the second positioning block to mix the wastewater and the purifier evenly.
优选的,所述搅拌机构还包括矩形框和转动板,所述搅动杆六个搅拌杆表面对称固定连接有矩形框,所述矩形框内壁转动连接有转动板,搅动杆转动过程中,矩形框内壁的转动板接触废水后转动,辅助搅动杆进行混合加工。Preferably, the stirring mechanism also includes a rectangular frame and a rotating plate. The surfaces of the six stirring rods of the stirring rod are symmetrically fixedly connected with the rectangular frame. The inner wall of the rectangular frame is rotatably connected with the rotating plate. During the rotation of the stirring rod, the rotating plate on the inner wall of the rectangular frame contacts the wastewater and rotates to assist the stirring rod in mixing processing.
优选的,所述净化筒表面对称固定连接有第一管道和第二管道,第一管道方便水泵抽取净化后的废水,第二管道方便添加净化剂,如明矾。Preferably, a first pipe and a second pipe are symmetrically fixedly connected on the surface of the purification cylinder. The first pipe is convenient for a water pump to extract purified wastewater, and the second pipe is convenient for adding a purifier, such as alum.
优选的,所述收集筒表面固定连接有第三管道,所述收集筒内壁固定连接有第三防护壳,所述第三防护壳内壁固定安装有第三电机,所述第三电机输出轴固定连接有密封板,且密封板位于收集筒下料孔上方,所述收集筒下料孔下方对称固定连接有下料管,废水通过第三管道进入收集筒内部,启动第三防护壳内壁的第三电机,第三电机输出轴带动密封板转动,密封板远离收集筒下料孔,废水从下料管排出,第三电机输出轴接着转动,带动密封板移至下料孔上方,堵住下料孔。Preferably, a third pipe is fixedly connected to the surface of the collecting cylinder, a third protective shell is fixedly connected to the inner wall of the collecting cylinder, a third motor is fixedly installed on the inner wall of the third protective shell, a sealing plate is fixedly connected to the output shaft of the third motor, and the sealing plate is located above the discharge hole of the collecting cylinder, and a discharge pipe is symmetrically fixedly connected below the discharge hole of the collecting cylinder, wastewater enters the interior of the collecting cylinder through the third pipe, the third motor on the inner wall of the third protective shell is started, the output shaft of the third motor drives the sealing plate to rotate, the sealing plate moves away from the discharge hole of the collecting cylinder, the wastewater is discharged from the discharge pipe, and the output shaft of the third motor then rotates, driving the sealing plate to move above the discharge hole to block the discharge hole.
与相关技术相比较,本实用新型提供的酸梅汤加工用废水过滤再利用装置具有如下有益效果:Compared with the related art, the device for filtering and reusing wastewater for sour plum soup processing provided by the utility model has the following beneficial effects:
本实用新型提供酸梅汤加工用废水过滤再利用装置:The utility model provides a device for filtering and reusing wastewater used in sour plum soup processing:
1、通过安装过滤机构和搅拌机构,能够将酸梅汤加工产生的废水先进行颗粒物过滤,再进行净化剂混合处理,保证废水能够再利用,提高了废水资源的利用效率。1. By installing the filtering mechanism and the stirring mechanism, the wastewater generated by the sour plum soup processing can be first filtered for particulate matter and then mixed with the purifier to ensure that the wastewater can be reused, thereby improving the utilization efficiency of wastewater resources.
2、通过收集筒表面固定连接有第三管道,所述收集筒内壁固定连接有第三防护壳,所述第三防护壳内壁固定安装有第三电机,所述第三电机输出轴固定连接有密封板,且密封板位于收集筒下料孔上方,所述收集筒下料孔下方对称固定连接有下料管,废水通过第三管道进入收集筒内部,启动第三防护壳内壁的第三电机,第三电机输出轴带动密封板转动,密封板远离收集筒下料孔,废水从下料管排出,第三电机输出轴接着转动,带动密封板移至下料孔上方,堵住下料孔。2. A third pipe is fixedly connected to the surface of the collecting cylinder, a third protective shell is fixedly connected to the inner wall of the collecting cylinder, a third motor is fixedly installed on the inner wall of the third protective shell, a sealing plate is fixedly connected to the output shaft of the third motor, and the sealing plate is located above the discharge hole of the collecting cylinder, and a discharge pipe is symmetrically fixedly connected below the discharge hole of the collecting cylinder. Wastewater enters the collecting cylinder through the third pipe, and the third motor on the inner wall of the third protective shell is started. The output shaft of the third motor drives the sealing plate to rotate, and the sealing plate moves away from the discharge hole of the collecting cylinder. The wastewater is discharged from the discharge pipe, and the output shaft of the third motor then rotates to drive the sealing plate to move above the discharge hole to block the discharge hole.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本实用新型提供的整体结构示意图;FIG1 is a schematic diagram of the overall structure provided by the utility model;
图2为本实用新型提供的过滤机构结构示意图;FIG2 is a schematic diagram of the structure of the filtering mechanism provided by the utility model;
图3为本实用新型提供的搅拌机构位置示意图;FIG3 is a schematic diagram of the position of the stirring mechanism provided by the utility model;
图4为本实用新型提供的搅拌机构结构示意图;FIG4 is a schematic diagram of the structure of the stirring mechanism provided by the present invention;
图5为本实用新型提供的收集筒剖视示意图。FIG5 is a schematic cross-sectional view of the collecting tube provided by the present invention.
图中标号:1、收集筒;2、净化筒;3、连接环;4、支撑座;5、过滤机构;51、第一防护壳;52、第一电机;53、传动板;54、过滤壳;55、过滤网;56、环形槽;57、导向杆;6、搅拌机构;61、第二防护壳;62、第二电机;63、第一定位块;64、第二定位块;65、搅动杆;66、矩形框;67、转动板;7、第一管道;8、第二管道;9、第三管道;10、第三防护壳;11、第三电机;12、密封板;13、下料管。Numbers in the figure: 1. collecting cylinder; 2. purification cylinder; 3. connecting ring; 4. supporting seat; 5. filtering mechanism; 51. first protective shell; 52. first motor; 53. transmission plate; 54. filtering shell; 55. filtering net; 56. annular groove; 57. guide rod; 6. stirring mechanism; 61. second protective shell; 62. second motor; 63. first positioning block; 64. second positioning block; 65. stirring rod; 66. rectangular frame; 67. rotating plate; 7. first pipeline; 8. second pipeline; 9. third pipeline; 10. third protective shell; 11. third motor; 12. sealing plate; 13. feeding pipe.
具体实施方式DETAILED DESCRIPTION
下面结合附图和实施方式对本实用新型作进一步说明。The utility model is further described below in conjunction with the accompanying drawings and implementation modes.
请结合参阅图1、图2、图3、图4和图5,酸梅汤加工用废水过滤再利用装置包括:收集筒1、净化筒2、连接环3和支撑座4,所述收集筒1下方设置有净化筒2,所述收集筒1表面固定连接有连接环3,所述连接环3表面固定连接有支撑座4;过滤机构5和搅拌机构6,所述收集筒1和净化筒2中间设置有过滤机构5,通过过滤机构5的使用,过滤废水中的颗粒物杂质,所述净化筒2内部转动安装有搅拌机构6,通过搅拌机构6的使用,将废水和净化剂混合,酸梅汤加工产生的废水进入收集筒1内部,通过过滤机构5过滤废水中的颗粒物杂质,废水再进入净化筒2内部,通过搅拌机构6配合净化剂对废水进行净化处理,连接环3和支撑座4对收集筒1进行支撑。Please refer to Figures 1, 2, 3, 4 and 5. The device for filtering and reusing wastewater for sour plum soup processing includes: a collecting cylinder 1, a purification cylinder 2, a connecting ring 3 and a supporting seat 4. The purification cylinder 2 is arranged below the collecting cylinder 1, the connecting ring 3 is fixedly connected to the surface of the collecting cylinder 1, and the supporting seat 4 is fixedly connected to the surface of the connecting ring 3; a filtering mechanism 5 and a stirring mechanism 6. The filtering mechanism 5 is arranged between the collecting cylinder 1 and the purification cylinder 2. The particulate impurities in the wastewater are filtered out by using the filtering mechanism 5. The stirring mechanism 6 is rotatably installed inside the purification cylinder 2. The wastewater and the purifying agent are mixed by using the stirring mechanism 6. The wastewater generated by the sour plum soup processing enters the collecting cylinder 1, and the particulate impurities in the wastewater are filtered out by the filtering mechanism 5. The wastewater then enters the purifying cylinder 2, and the wastewater is purified by the stirring mechanism 6 in combination with the purifying agent. The connecting ring 3 and the supporting seat 4 support the collecting cylinder 1.
实施例一:Embodiment 1:
在具体实施过程中,如图1和图2所示,所述过滤机构5包括第一防护壳51、第一电机52、传动板53、过滤壳54和过滤网55,所述收集筒1和净化筒2远离支撑座4的一侧设置有第一防护壳51,所述第一防护壳51内壁固定安装有第一电机52,所述第一电机52输出轴固定连接有传动板53,所述传动板53靠近收集筒1和净化筒2的一侧固定连接有过滤壳54,所述过滤壳54内壁固定连接有过滤网55,启动第一防护壳51内壁的第一电机52,第一电机52输出轴带动传动板53转动,传动板53控制过滤壳54移至收集筒1下方,过滤网55过滤收集筒1排出废水中的颗粒物杂质,第一电机52再次转动,将过滤壳54远离收集筒1下方,方便处理颗粒物杂质。In the specific implementation process, as shown in Figures 1 and 2, the filtering mechanism 5 includes a first protective shell 51, a first motor 52, a transmission plate 53, a filter shell 54 and a filter screen 55. The first protective shell 51 is provided on the side of the collecting cylinder 1 and the purification cylinder 2 away from the support seat 4, and the first motor 52 is fixedly installed on the inner wall of the first protective shell 51. The output shaft of the first motor 52 is fixedly connected with the transmission plate 53, and the side of the transmission plate 53 close to the collecting cylinder 1 and the purification cylinder 2 is fixedly connected with the filter shell 54, and the inner wall of the filter shell 54 is fixedly connected with the filter screen 55. The first motor 52 on the inner wall of the first protective shell 51 is started, and the output shaft of the first motor 52 drives the transmission plate 53 to rotate. The transmission plate 53 controls the filter shell 54 to move to the bottom of the collecting cylinder 1, and the filter screen 55 filters the particulate impurities in the wastewater discharged from the collecting cylinder 1. The first motor 52 rotates again to move the filter shell 54 away from the bottom of the collecting cylinder 1, so as to facilitate the treatment of particulate impurities.
参考图2所示,所述过滤机构5还包括环形槽56和导向杆57,所述第一防护壳51顶部开设有环形槽56,所述传动板53下表面固定连接有导向杆57,且导向杆57在环形槽56内壁滑动,在传动板53转动过程中,导向杆57在环形槽56内壁转动,保证传动板53转动过程中,不会发生晃动,提高了传动板53转动的稳定性。As shown in reference figure 2, the filtering mechanism 5 also includes an annular groove 56 and a guide rod 57. An annular groove 56 is opened on the top of the first protective shell 51, and the guide rod 57 is fixedly connected to the lower surface of the transmission plate 53, and the guide rod 57 slides on the inner wall of the annular groove 56. During the rotation of the transmission plate 53, the guide rod 57 rotates on the inner wall of the annular groove 56, ensuring that the transmission plate 53 does not shake during the rotation, thereby improving the stability of the rotation of the transmission plate 53.
参考图3和图4所示,所述搅拌机构6包括第二防护壳61、第二电机62、第一定位块63、第二定位块64和搅动杆65,所述净化筒2靠近支撑座4的表面固定连接有第二防护壳61,所述第二防护壳61内壁固定安装有第二电机62,且第二电机62输出轴穿过净化筒2表面圆孔进入净化筒2内部,所述净化筒2中心位置固定连接有第一定位块63,所述第一定位块63上方设置有第二定位块64,且第二定位块64两侧与净化筒2内壁固定连接,所述第一定位块63和第二定位块64圆形孔内部转动连接有搅动杆65,且搅动杆65顶部与第二电机62输出轴通过锥齿轮啮合连接,废水和净化剂进入净化筒2内部后,启动第二防护壳61内壁的第二电机62,第二电机62输出轴锥齿轮接触搅动杆65顶部锥齿轮,带动搅动杆65在第一定位块63和第二定位块64圆形孔内部转动,将废水和净化剂混合均匀。Referring to Figures 3 and 4, the stirring mechanism 6 includes a second protective shell 61, a second motor 62, a first positioning block 63, a second positioning block 64 and a stirring rod 65. The surface of the purification cylinder 2 close to the support seat 4 is fixedly connected with the second protective shell 61, the inner wall of the second protective shell 61 is fixedly installed with the second motor 62, and the output shaft of the second motor 62 passes through the circular hole on the surface of the purification cylinder 2 and enters the interior of the purification cylinder 2. The center position of the purification cylinder 2 is fixedly connected with the first positioning block 63, and the second positioning block 64 is arranged above the first positioning block 63, and the second positioning block 64 is arranged above the first positioning block 63. The two sides of the two positioning blocks 64 are fixedly connected to the inner wall of the purification cylinder 2. The circular holes of the first positioning block 63 and the second positioning block 64 are rotatably connected with a stirring rod 65, and the top of the stirring rod 65 is meshed with the output shaft of the second motor 62 through a bevel gear. After the wastewater and the purifier enter the purification cylinder 2, the second motor 62 on the inner wall of the second protective shell 61 is started, and the bevel gear of the output shaft of the second motor 62 contacts the bevel gear at the top of the stirring rod 65, driving the stirring rod 65 to rotate inside the circular holes of the first positioning block 63 and the second positioning block 64 to mix the wastewater and the purifier evenly.
参考图4所示,所述搅拌机构6还包括矩形框66和转动板67,所述搅动杆65六个搅拌杆表面对称固定连接有矩形框66,所述矩形框66内壁转动连接有转动板67,搅动杆65转动过程中,矩形框66内壁的转动板67接触废水后转动,辅助搅动杆65进行混合加工。As shown in reference figure 4, the stirring mechanism 6 also includes a rectangular frame 66 and a rotating plate 67. The six stirring rod surfaces of the stirring rod 65 are symmetrically fixedly connected with the rectangular frame 66. The inner wall of the rectangular frame 66 is rotatably connected with the rotating plate 67. During the rotation of the stirring rod 65, the rotating plate 67 on the inner wall of the rectangular frame 66 rotates after contacting the wastewater to assist the stirring rod 65 in mixing processing.
参考图3所示,所述净化筒2表面对称固定连接有第一管道7和第二管道8,第一管道7方便水泵抽取净化后的废水,第二管道8方便添加净化剂,如明矾。As shown in reference figure 3, the surface of the purification cylinder 2 is symmetrically fixedly connected with a first pipe 7 and a second pipe 8. The first pipe 7 is convenient for a water pump to extract purified wastewater, and the second pipe 8 is convenient for adding a purifier, such as alum.
实施例二:Embodiment 2:
参考图5所示,所述收集筒1表面固定连接有第三管道9,所述收集筒1内壁固定连接有第三防护壳10,所述第三防护壳10内壁固定安装有第三电机11,所述第三电机11输出轴固定连接有密封板12,且密封板12位于收集筒1下料孔上方,所述收集筒1下料孔下方对称固定连接有下料管13,废水通过第三管道9进入收集筒1内部,启动第三防护壳10内壁的第三电机11,第三电机11输出轴带动密封板12转动,密封板12远离收集筒1下料孔,废水从下料管13排出,第三电机11输出轴接着转动,带动密封板12移至下料孔上方,堵住下料孔。As shown in Reference Figure 5, a third pipe 9 is fixedly connected to the surface of the collecting cylinder 1, a third protective shell 10 is fixedly connected to the inner wall of the collecting cylinder 1, a third motor 11 is fixedly installed on the inner wall of the third protective shell 10, and a sealing plate 12 is fixedly connected to the output shaft of the third motor 11, and the sealing plate 12 is located above the discharge hole of the collecting cylinder 1, and a discharge pipe 13 is symmetrically fixedly connected below the discharge hole of the collecting cylinder 1. Wastewater enters the collecting cylinder 1 through the third pipe 9, and the third motor 11 on the inner wall of the third protective shell 10 is started. The output shaft of the third motor 11 drives the sealing plate 12 to rotate, and the sealing plate 12 is away from the discharge hole of the collecting cylinder 1. The wastewater is discharged from the discharge pipe 13, and the output shaft of the third motor 11 then rotates, driving the sealing plate 12 to move above the discharge hole to block the discharge hole.
工作原理:本实用新型酸梅汤加工用废水过滤再利用装置在使用时,酸梅汤加工产生的废水进入收集筒1内部,通过过滤机构5过滤废水中的颗粒物杂质,启动第一防护壳51内壁的第一电机52,第一电机52输出轴带动传动板53转动,传动板53控制过滤壳54移至收集筒1下方,过滤网55过滤收集筒1排出废水中的颗粒物杂质,第一电机52再次转动,将过滤壳54远离收集筒1下方,方便处理颗粒物杂质,在传动板53转动过程中,导向杆57在环形槽56内壁转动,保证传动板53转动过程中,不会发生晃动,提高了传动板53转动的稳定性,废水再进入净化筒2内部,通过搅拌机构6配合净化剂对废水进行净化处理,废水和净化剂进入净化筒2内部后,启动第二防护壳61内壁的第二电机62,第二电机62输出轴锥齿轮接触搅动杆65顶部锥齿轮,带动搅动杆65在第一定位块63和第二定位块64圆形孔内部转动,将废水和净化剂混合均匀,搅动杆65转动过程中,矩形框66内壁的转动板67接触废水后转动,辅助搅动杆65进行混合加工,连接环3和支撑座4对收集筒1进行支撑。Working principle: When the utility model is used, the wastewater filtering and recycling device for sour plum soup processing, the wastewater generated by the sour plum soup processing enters the interior of the collecting tube 1, and the particulate impurities in the wastewater are filtered through the filtering mechanism 5, and the first motor 52 on the inner wall of the first protective shell 51 is started, and the output shaft of the first motor 52 drives the transmission plate 53 to rotate, and the transmission plate 53 controls the filter shell 54 to move to the bottom of the collecting tube 1, and the filter screen 55 filters the collecting tube 1 to discharge the particulate impurities in the wastewater, and the first motor 52 rotates again to move the filter shell 54 away from the bottom of the collecting tube 1, so as to facilitate the treatment of the particulate impurities. During the rotation of the transmission plate 53, the guide rod 57 rotates on the inner wall of the annular groove 56 to ensure the rotation process of the transmission plate 53 In the process, no shaking occurs, which improves the rotation stability of the transmission plate 53. The wastewater then enters the purification cylinder 2, and is purified by the stirring mechanism 6 in combination with the purifier. After the wastewater and the purifier enter the purification cylinder 2, the second motor 62 on the inner wall of the second protective shell 61 is started, and the bevel gear on the output shaft of the second motor 62 contacts the bevel gear on the top of the stirring rod 65, driving the stirring rod 65 to rotate inside the circular holes of the first positioning block 63 and the second positioning block 64, so as to evenly mix the wastewater and the purifier. During the rotation of the stirring rod 65, the rotating plate 67 on the inner wall of the rectangular frame 66 contacts the wastewater and rotates, assisting the stirring rod 65 in mixing processing, and the connecting ring 3 and the support seat 4 support the collecting cylinder 1.
以上仅为本实用新型的实施例,并非因此限制本实用新型的专利范围,凡是利用本实用新型说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本实用新型的专利保护范围内。The above are only embodiments of the present invention, and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
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