CN219091280U - Rainwater quality-separating device - Google Patents

Rainwater quality-separating device Download PDF

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CN219091280U
CN219091280U CN202320178834.6U CN202320178834U CN219091280U CN 219091280 U CN219091280 U CN 219091280U CN 202320178834 U CN202320178834 U CN 202320178834U CN 219091280 U CN219091280 U CN 219091280U
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rainwater
pipe
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bevel gear
impurities
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邱松
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Xinjiang Jiapan Construction Engineering Co ltd
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Hubei Xiangyu Environmental Protection Technology Co ltd
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Abstract

本实用新型公开一种雨水分质分离装置,包括分离装置本体,所述分离装置本体包括雨水进入组件,所述雨水进入组件包括进管和导管,所述进管的底部安装有雨水排出组件,所述雨水排出组件包括出管和连管,所述导管的一端安装有杂质分离组件,所述杂质分离组件包括滤筒和卡套,所述滤筒的内侧安装有杂质清理组件,该雨水分质分离装置能够实时对雨水中的杂质进行过滤清除,防止杂质将排水管道堵塞,同时能够自动地将杂质进行清理收集,能够在雨量较少时,利用通过出管向下坠落的雨水为螺板的转动增加动力,保障杂质被有效清理,当雨水量较大时,利用螺板和扇叶的转动增加雨水排放的速度,保障雨水排放速度,适用于雨水的杂质分离工作使用。

Figure 202320178834

The utility model discloses a rainwater quality separation device, which comprises a separation device body, the separation device body includes a rainwater inlet assembly, the rainwater inlet assembly includes an inlet pipe and a conduit, and a rainwater discharge assembly is installed at the bottom of the inlet pipe. The rainwater drainage assembly includes an outlet pipe and a connecting pipe. An impurity separation assembly is installed at one end of the conduit. The impurity separation assembly includes a filter cartridge and a ferrule, and an impurity cleaning assembly is installed on the inside of the filter cartridge. The rainwater The mass separation device can filter and remove the impurities in the rainwater in real time to prevent the impurities from blocking the drainage pipes. At the same time, it can automatically clean and collect the impurities. When the rainfall is low, the rainwater falling through the outlet pipe can be used as the screw plate The rotation increases the power to ensure that impurities are effectively cleaned. When the amount of rainwater is large, the rotation of the screw and fan blades is used to increase the speed of rainwater discharge and ensure the speed of rainwater discharge. It is suitable for the separation of impurities in rainwater.

Figure 202320178834

Description

一种雨水分质分离装置A rainwater quality separation device

技术领域technical field

本实用新型涉及雨水分质分离设备技术领域,具体为一种雨水分质分离装置。The utility model relates to the technical field of rainwater quality separation equipment, in particular to a rainwater quality separation device.

背景技术Background technique

为保障排雨管道的正常排雨工作,往往需要对雨水中的杂质可进行分离,避免杂质将排雨管道堵塞,减少城市内涝,专利申请号为CN201920049786.4的实用新型专利,公开了一种带有封闭式雨水口的雨水分质分离装置,有效解决了异味溢出、蚊虫滋生等现象,还可以避免一些小物品掉入雨水井,减少人们一些不必要的财产损失,节省了雨水利用的工程成本,增加了雨水收集后的价值,有利于雨水的收集与利用并且适合海绵城市的使用,具有结构简单、节能环保、维护方便、设计灵活、易于施工、运行方便、投资少、效益显著等优点,根据其公开的技术方案来看,现有的雨水分质分离设备在使用时,一方面,在将杂质进行分离工作时,容易造成过滤组件被堵塞,降低雨水的排放速度,同时杂质的出现具有不确定性,无法通过时间段进行完全分离,容易杂质堵塞排雨管道,另一方面,在利用雨水的流动做功进行过滤机构的清理工作时,容易造成雨水量较少导致杂质无法有效地被清理,或者雨水较多导致无法及时排放,导致城市内涝。In order to ensure the normal drainage work of the rain drainage pipes, it is often necessary to separate the impurities in the rainwater to avoid the impurities from blocking the rain drainage pipes and reduce urban waterlogging. The utility model patent with the patent application number CN201920049786.4 discloses a The rainwater separation device with closed rainwater outlet effectively solves the phenomenon of odor overflow, mosquito breeding, etc., and can also prevent some small items from falling into the rainwater well, reduce unnecessary property losses for people, and save rainwater utilization projects The cost increases the value of rainwater collection, which is conducive to the collection and utilization of rainwater and is suitable for the use of sponge cities. It has the advantages of simple structure, energy saving and environmental protection, convenient maintenance, flexible design, easy construction, convenient operation, less investment, and significant benefits. , according to the disclosed technical solution, when the existing rainwater quality separation equipment is in use, on the one hand, when the impurities are separated, it is easy to cause the filter assembly to be blocked, reduce the discharge speed of rainwater, and at the same time the appearance of impurities It is uncertain and cannot be completely separated through the time period, and it is easy for impurities to block the rain drainage pipe. On the other hand, when using the flow of rainwater to do work to clean the filter mechanism, it is easy to cause less rainwater and the impurities cannot be effectively absorbed. Clean up, or too much rainwater can not be discharged in time, resulting in urban waterlogging.

所以,如何设计一种雨水分质分离装置,成为我们当前要解决的问题。Therefore, how to design a rainwater quality separation device has become a problem we need to solve at present.

实用新型内容Utility model content

针对现有技术存在的不足,本实用新型目的是提供一种雨水分质分离装置,以解决上述背景技术中提出的问题,本实用新型设计合理,使用时较为方便,适用于雨水的杂质分离工作使用。Aiming at the deficiencies of the existing technology, the purpose of this utility model is to provide a rainwater quality separation device to solve the problems raised in the above-mentioned background technology. The utility model has a reasonable design, is more convenient to use, and is suitable for the separation of impurities in rainwater use.

为实现上述目的,本实用新型提供如下技术方案:一种雨水分质分离装置,包括分离装置本体,所述分离装置本体包括雨水进入组件,所述雨水进入组件包括进管和导管,所述进管的底部安装有雨水排出组件,所述雨水排出组件包括出管和连管,所述导管的一端安装有杂质分离组件,所述杂质分离组件包括滤筒和卡套,所述滤筒的内侧安装有杂质清理组件,所述杂质清理组件包括螺板和锥齿轮一,所述出管的内侧安装有联动组件,所述联动组件包括扇叶和锥齿轮二。In order to achieve the above purpose, the utility model provides the following technical solutions: a rainwater quality separation device, including a separation device body, the separation device body includes a rainwater inlet assembly, the rainwater inlet assembly includes an inlet pipe and a conduit, the inlet A rainwater drainage assembly is installed at the bottom of the pipe. The rainwater drainage assembly includes an outlet pipe and a connecting pipe. An impurity separation assembly is installed at one end of the conduit. The impurity separation assembly includes a filter cartridge and a ferrule. The inner side of the filter cartridge An impurity cleaning assembly is installed, and the impurity cleaning assembly includes a screw plate and a bevel gear 1, and a linkage assembly is installed on the inner side of the outlet pipe, and the linkage assembly includes a fan blade and a bevel gear 2.

进一步的,所述导管的一端焊接在进管的底端的一侧,所述导管与进管相连通,所述导管的另一端焊接在卡套的一端的顶部。Further, one end of the conduit is welded on one side of the bottom end of the inlet pipe, the conduit communicates with the inlet pipe, and the other end of the conduit is welded on the top of one end of the ferrule.

进一步的,所述滤筒焊接在卡套的内壁上,所述卡套的另一端焊接有箱体,所述箱体的顶部卡有箱盖。Further, the filter cartridge is welded on the inner wall of the ferrule, the other end of the ferrule is welded with a box, and the top of the box is stuck with a box cover.

进一步的,所述箱体通过滤筒与导管相连通,所述螺板的一端卡在滤筒的内侧,所述螺板的另一端依次穿过导管和进管并延伸至进管的外侧。Further, the box communicates with the conduit through the filter cartridge, one end of the screw plate is stuck inside the filter cartridge, and the other end of the screw plate passes through the conduit and the inlet pipe in sequence and extends to the outside of the inlet pipe.

进一步的,所述连管的一端焊接在出管的顶端的一侧,所述连管的另一端焊接在卡套的一端的底部,所述卡套通过连管与出管相连通。Further, one end of the connecting pipe is welded to one side of the top of the outlet pipe, and the other end of the connecting pipe is welded to the bottom of one end of the ferrule, and the ferrule is connected to the outlet pipe through the connecting pipe.

进一步的,所述扇叶卡在出管的内侧,所述扇叶的中心处焊接有导杆,所述导杆的顶端穿过出管并延伸至出管的顶部。Further, the fan blade is stuck inside the outlet pipe, and a guide rod is welded at the center of the fan blade, and the top end of the guide rod passes through the outlet pipe and extends to the top of the outlet pipe.

进一步的,所述锥齿轮一焊接在螺板的另一端,所述锥齿轮二焊接在导杆的顶端,所述锥齿轮一与锥齿轮二垂直啮合。Further, the first bevel gear is welded to the other end of the screw plate, the second bevel gear is welded to the top of the guide rod, and the first bevel gear and the second bevel gear are vertically meshed.

进一步的,所述进管的底端的另一侧焊接有外罩,所述锥齿轮一和锥齿轮二均位于外罩的内侧。Further, the other side of the bottom end of the inlet pipe is welded with an outer cover, and the first bevel gear and the second bevel gear are located inside the outer cover.

有益效果:1.该雨水分质分离装置能够下雨时,实时对雨水中的杂质进行过滤清除,有效地避免杂质进入到排水管道的可能性,进而有效地防止杂质将排水管道堵塞,同时能够自动地将杂质进行清理收集,避免杂质堵塞滤筒,保障排雨效率。Beneficial effects: 1. The rainwater quality separation device can filter and remove the impurities in the rainwater in real time when it rains, effectively avoiding the possibility of impurities entering the drainage pipes, thereby effectively preventing the impurities from blocking the drainage pipes, and at the same time being able to Automatically clean and collect impurities to prevent impurities from clogging the filter cartridge and ensure rain drainage efficiency.

2.该雨水分质分离装置能够在雨量较少时,有效地利用通过出管向下坠落的雨水为螺板的转动增加动力,进而有效地保障杂质被有效清理,当雨水量较大时,能够有效地利用螺板和扇叶的转动增加雨水排放的速度,进而保障雨水排放速度,减少城市内涝。2. The rainwater quality separation device can effectively use the rainwater falling down through the outlet pipe to increase the power for the rotation of the screw plate when the amount of rain is small, thereby effectively ensuring that impurities are effectively cleaned. When the amount of rainwater is large, It can effectively use the rotation of the screw plate and the fan blade to increase the speed of rainwater discharge, thereby ensuring the speed of rainwater discharge and reducing urban waterlogging.

3.该雨水分质分离装置设计合理,使用时较为高效方便,适用于雨水的杂质分离工作使用。3. The design of the rainwater quality separation device is reasonable, and it is more efficient and convenient to use. It is suitable for the separation of impurities in rainwater.

附图说明Description of drawings

图1为本实用新型一种雨水分质分离装置的结构示意图;Fig. 1 is the structural representation of a kind of rainwater quality separation device of the utility model;

图2为本实用新型一种雨水分质分离装置的剖视图;Fig. 2 is a cross-sectional view of a rainwater quality separation device of the utility model;

图中:1、进管;2、导管;3、出管;4、连管;5、箱体;6、箱盖;7、卡套;8、滤筒;9、螺板;10、锥齿轮一;11、扇叶;12、导杆;13、锥齿轮二;14、外罩。In the figure: 1. Inlet pipe; 2. Conduit; 3. Outlet pipe; 4. Connecting pipe; 5. Box body; 6. Box cover; 7. Ferrule; 8. Filter cartridge; Gear one; 11, fan blade; 12, guide rod; 13, bevel gear two; 14, outer cover.

具体实施方式Detailed ways

下面将结合本实用新型实施例中的附图,对本实用新型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他实施例,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. example. Based on the embodiments of the present utility model, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.

请参阅图1至图2,本实用新型提供一种技术方案:一种雨水分质分离装置,包括分离装置本体,所述分离装置本体包括雨水进入组件,所述雨水进入组件包括进管1和导管2,所述进管的底部安装有雨水排出组件,所述雨水排出组件包括出管3和连管4,所述导管2的一端安装有杂质分离组件,所述杂质分离组件包括滤筒8和卡套7,所述滤筒8的内侧安装有杂质清理组件,所述杂质清理组件包括螺板9和锥齿轮一10,所述出管3的内侧安装有联动组件,所述联动组件包括扇叶11和锥齿轮二13,所述导管2的一端焊接在进管1的底端的一侧,所述导管2与进管1相连通,所述导管2的另一端焊接在卡套7的一端的顶部,所述滤筒8焊接在卡套7的内壁上,所述卡套7的另一端焊接有箱体5,所述箱体5的顶部卡有箱盖6,能够在使用时,有效地将杂质从雨水内分离出来,并输送到箱体5的内侧进行收集,人员能够通过打开箱盖6将杂质进行清除,极大的减少排水管的清淤工作,减少人力消耗。Please refer to Figures 1 to 2, the utility model provides a technical solution: a rainwater quality separation device, including a separation device body, the separation device body includes a rainwater inlet assembly, and the rainwater inlet assembly includes an inlet pipe 1 and Conduit 2, a rainwater discharge assembly is installed at the bottom of the inlet pipe, the rainwater discharge assembly includes an outlet pipe 3 and a connecting pipe 4, and an impurity separation assembly is installed at one end of the conduit 2, and the impurity separation assembly includes a filter cartridge 8 and a ferrule 7, an impurity cleaning assembly is installed on the inside of the filter cartridge 8, the impurity cleaning assembly includes a screw plate 9 and a bevel gear 10, and a linkage assembly is installed on the inside of the outlet pipe 3, and the linkage assembly includes Fan blade 11 and bevel gear 2 13, one end of the conduit 2 is welded on one side of the bottom end of the inlet pipe 1, the conduit 2 communicates with the inlet pipe 1, and the other end of the conduit 2 is welded on the ferrule 7 The top of one end, the filter cartridge 8 is welded on the inner wall of the ferrule 7, the other end of the ferrule 7 is welded with a box body 5, and the top of the box body 5 is stuck with a box cover 6, which can be used, The impurities are effectively separated from the rainwater and transported to the inner side of the box body 5 for collection. Personnel can remove the impurities by opening the box cover 6, which greatly reduces the dredging work of the drain pipe and reduces manpower consumption.

本实施例,所述箱体5通过滤筒8与导管2相连通,所述螺板9的一端卡在滤筒8的内侧,所述螺板9的另一端依次穿过导管2和进管1并延伸至进管1的外侧,所述连管4的一端焊接在出管3的顶端的一侧,所述连管4的另一端焊接在卡套7的一端的底部,所述卡套7通过连管4与出管3相连通,所述扇叶11卡在出管3的内侧,所述扇叶11的中心处焊接有导杆12,所述导杆12的顶端穿过出管3并延伸至出管3的顶部,所述锥齿轮一10焊接在螺板9的另一端,所述锥齿轮二13焊接在导杆12的顶端,所述锥齿轮一10与锥齿轮二13垂直啮合,所述进管1的底端的另一侧焊接有外罩14,所述锥齿轮一10和锥齿轮二13均位于外罩14的内侧,在下雨时,雨水连同杂质通过路面流到进管1的内侧,并通过导管2进入到滤筒8的内侧,雨水再重力的作用下穿过滤筒8落入到卡套7的底部,并通过连管4和出管3排入到排雨管道的内侧,杂质被过滤在滤筒8的内侧,当雨水较少时,使得雨水在导管2内的流动不足以推动螺板9将滤筒8内的杂质进行推动时,当雨水通过连管4进入到出管3的内侧时,雨水向下坠落推动扇叶11,使得扇叶11通过导杆12带动锥齿轮二13,锥齿轮二13通过锥齿轮一10带动螺板9转动,将滤筒8内的杂质进行推动,并输送到箱体5的内侧,当雨水的量较大时,使得雨水推动螺板9转动,螺板9通过锥齿轮一10带动锥齿轮二13转动,通过导杆12带动扇叶11对雨水的排出产生推力,进而使得设备内的雨水被抽出到排水管的内侧,一方面,能够实时对雨水中的杂质进行过滤清除,有效地避免杂质进入到排水管道的可能性,进而有效地防止杂质将排水管道堵塞,同时能够自动地将杂质进行清理收集,避免杂质堵塞滤筒8,另一方面,能够利用通过出管4向下坠落的雨水为螺板9的转动增加动力,进而有效地保障杂质被有效清理,或利用螺板9和扇叶11的转动增加雨水排放的速度,进而保障雨水排放速度,减少城市内涝。In this embodiment, the box body 5 communicates with the conduit 2 through the filter cartridge 8, one end of the screw plate 9 is stuck inside the filter cartridge 8, and the other end of the screw plate 9 passes through the conduit 2 and the inlet pipe in turn. 1 and extends to the outside of the inlet pipe 1, one end of the connecting pipe 4 is welded on one side of the top of the outlet pipe 3, the other end of the connecting pipe 4 is welded on the bottom of one end of the ferrule 7, and the ferrule 7 communicates with the outlet pipe 3 through the connecting pipe 4, the fan blade 11 is stuck on the inner side of the outlet pipe 3, a guide rod 12 is welded at the center of the fan blade 11, and the top end of the guide rod 12 passes through the outlet pipe 3 and extend to the top of the outlet pipe 3, the bevel gear one 10 is welded on the other end of the screw plate 9, the bevel gear two 13 is welded on the top of the guide rod 12, the bevel gear one 10 and the bevel gear two 13 Vertical meshing, the other side of the bottom end of the inlet pipe 1 is welded with an outer cover 14, the first bevel gear 10 and the second bevel gear 13 are located on the inner side of the outer cover 14, when it rains, rainwater and impurities flow to the inlet pipe through the road surface 1, and enters the inner side of the filter cartridge 8 through the conduit 2, and the rainwater passes through the filter cartridge 8 and falls to the bottom of the ferrule 7 under the action of gravity, and is discharged into the rain drainage pipe through the connecting pipe 4 and the outlet pipe 3 Impurities are filtered on the inner side of the filter cartridge 8. When there is less rainwater, the flow of rainwater in the conduit 2 is not enough to push the screw plate 9 to push the impurities in the filter cartridge 8. When the rainwater passes through the connecting pipe 4 When entering the inner side of the outlet pipe 3, the rainwater falls downwards and pushes the fan blade 11, so that the fan blade 11 drives the bevel gear 2 13 through the guide rod 12, and the bevel gear 2 13 drives the screw plate 9 to rotate through the bevel gear 10, and the filter cartridge Impurities in 8 are pushed and transported to the inner side of box body 5. When the amount of rainwater is large, the rainwater pushes the screw plate 9 to rotate, and the screw plate 9 drives the bevel gear 2 13 to rotate through the bevel gear 10. 12 Drive the fan blade 11 to generate thrust for the discharge of rainwater, and then the rainwater in the equipment is pumped out to the inside of the drain pipe. On the one hand, it can filter and remove impurities in the rainwater in real time, effectively avoiding the possibility of impurities entering the drain pipe In turn, it can effectively prevent impurities from blocking the drainage pipe, and at the same time, it can automatically clean and collect the impurities to prevent the impurities from blocking the filter cartridge 8. On the other hand, the rainwater falling down through the outlet pipe 4 can be used as the rotation of the screw plate 9. Increase the power to effectively ensure that impurities are effectively cleaned, or use the rotation of the screw plate 9 and the fan blade 11 to increase the speed of rainwater discharge, thereby ensuring the speed of rainwater discharge and reducing urban waterlogging.

该雨水分质分离装置在下雨时,雨水连同杂质通过路面流到进管1的内侧,并通过导管2进入到滤筒8的内侧,雨水再重力的作用下穿过滤筒8落入到卡套7的底部,并通过连管4和出管3排入到排雨管道的内侧,杂质被过滤在滤筒8的内侧,当雨水较少时,使得雨水在导管2内的流动不足以推动螺板9将滤筒8内的杂质进行推动时,当雨水通过连管4进入到出管3的内侧时,雨水向下坠落推动扇叶11,使得扇叶11通过导杆12带动锥齿轮二13,锥齿轮二13通过锥齿轮一10带动螺板9转动,将滤筒8内的杂质进行推动,并输送到箱体5的内侧,当雨水的量较大时,使得雨水推动螺板9转动,螺板9通过锥齿轮一10带动锥齿轮二13转动,通过导杆12带动扇叶11对雨水的排出产生推力,进而使得设备内的雨水被抽出到排水管的内侧,一方面,能够实时对雨水中的杂质进行过滤清除,有效地避免杂质进入到排水管道的可能性,进而有效地防止杂质将排水管道堵塞,同时能够自动地将杂质进行清理收集,避免杂质堵塞滤筒8,另一方面,能够利用通过出管4向下坠落的雨水为螺板9的转动增加动力,进而有效地保障杂质被有效清理,或利用螺板9和扇叶11的转动增加雨水排放的速度,进而保障雨水排放速度,减少城市内涝。When the rainwater quality separation device is raining, rainwater and impurities flow to the inner side of the inlet pipe 1 through the road surface, and enter the inner side of the filter cartridge 8 through the conduit 2, and the rainwater passes through the filter cartridge 8 and falls into the ferrule under the action of gravity 7, and is discharged into the inner side of the rain drainage pipe through the connecting pipe 4 and the outlet pipe 3, and the impurities are filtered on the inner side of the filter cartridge 8. When the rainwater is less, the flow of rainwater in the pipe 2 is not enough to push the screw When the plate 9 pushes the impurities in the filter cartridge 8, when the rainwater enters the inner side of the outlet pipe 3 through the connecting pipe 4, the rainwater falls down and pushes the fan blade 11, so that the fan blade 11 drives the bevel gear 2 13 through the guide rod 12 , the second bevel gear 13 drives the screw plate 9 to rotate through the bevel gear one 10, pushes the impurities in the filter cartridge 8, and transports them to the inside of the box body 5, when the amount of rainwater is large, the rainwater pushes the screw plate 9 to rotate , the screw plate 9 drives the bevel gear 2 13 to rotate through the bevel gear 10, and drives the fan blade 11 to generate thrust for the discharge of rainwater through the guide rod 12, so that the rainwater in the equipment is drawn out to the inside of the drain pipe. On the one hand, it can be real-time Filter and remove the impurities in the rainwater, effectively avoid the possibility of impurities entering the drainage pipes, and then effectively prevent the impurities from blocking the drainage pipes, and at the same time automatically clean and collect the impurities to prevent the impurities from clogging the filter cartridge 8, another On the one hand, the rainwater falling down through the outlet pipe 4 can be used to increase the power for the rotation of the screw plate 9, thereby effectively ensuring that impurities are effectively cleaned, or using the rotation of the screw plate 9 and the fan blade 11 to increase the speed of rainwater discharge, thereby ensuring Rainwater discharge speed, reduce urban waterlogging.

此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。In addition, it should be understood that although this specification is described according to implementation modes, not each implementation mode only includes an independent technical solution, and this description in the specification is only for clarity, and those skilled in the art should take the specification as a whole , the technical solutions in the various embodiments can also be properly combined to form other implementations that can be understood by those skilled in the art.

Claims (8)

1. The utility model provides a rainwater divides matter separator, includes the separator body, the separator body includes rainwater entering subassembly, rainwater entering subassembly is including advancing pipe (1) and pipe (2), advance the bottom of pipe and install rainwater drainage assembly, rainwater drainage assembly includes exit tube (3) and connecting pipe (4), its characterized in that: impurity separation subassembly is installed to one end of pipe (2), impurity separation subassembly includes and strains a section of thick bamboo (8) and cutting ferrule (7), strain the inboard of section of thick bamboo (8) and install impurity clearance subassembly, impurity clearance subassembly includes spiral shell board (9) and bevel gear one (10), the inboard of exit tube (3) is installed the linkage subassembly, the linkage subassembly includes flabellum (11) and bevel gear two (13).
2. A rainwater quality separating apparatus as claimed in claim 1, wherein: one end of the guide pipe (2) is welded at one side of the bottom end of the inlet pipe (1), the guide pipe (2) is communicated with the inlet pipe (1), and the other end of the guide pipe (2) is welded at the top of one end of the clamping sleeve (7).
3. A rainwater quality separating apparatus as claimed in claim 2, wherein: the filter cartridge (8) is welded on the inner wall of the clamping sleeve (7), the other end of the clamping sleeve (7) is welded with the box body (5), and the top of the box body (5) is clamped with the box cover (6).
4. A rainwater quality separating apparatus as claimed in claim 3, wherein: the box (5) is communicated with the guide pipe (2) through the filter cylinder (8), one end of the screw plate (9) is clamped at the inner side of the filter cylinder (8), and the other end of the screw plate (9) sequentially penetrates through the guide pipe (2) and the inlet pipe (1) and extends to the outer side of the inlet pipe (1).
5. A rainwater quality separating apparatus as claimed in claim 4, wherein: one end of the connecting pipe (4) is welded on one side of the top end of the outlet pipe (3), the other end of the connecting pipe (4) is welded at the bottom of one end of the clamping sleeve (7), and the clamping sleeve (7) is communicated with the outlet pipe (3) through the connecting pipe (4).
6. A rainwater quality separating apparatus as claimed in claim 5, wherein: the fan blade (11) is clamped at the inner side of the outlet pipe (3), a guide rod (12) is welded at the center of the fan blade (11), and the top end of the guide rod (12) penetrates through the outlet pipe (3) and extends to the top of the outlet pipe (3).
7. A rainwater quality separating apparatus as claimed in claim 6, wherein: the first bevel gear (10) is welded at the other end of the screw plate (9), the second bevel gear (13) is welded at the top end of the guide rod (12), and the first bevel gear (10) is vertically meshed with the second bevel gear (13).
8. A rainwater quality separating apparatus as claimed in claim 7, wherein: an outer cover (14) is welded on the other side of the bottom end of the inlet pipe (1), and the first bevel gear (10) and the second bevel gear (13) are both positioned on the inner side of the outer cover (14).
CN202320178834.6U 2023-02-10 2023-02-10 Rainwater quality-separating device Withdrawn - After Issue CN219091280U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320178834.6U CN219091280U (en) 2023-02-10 2023-02-10 Rainwater quality-separating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320178834.6U CN219091280U (en) 2023-02-10 2023-02-10 Rainwater quality-separating device

Publications (1)

Publication Number Publication Date
CN219091280U true CN219091280U (en) 2023-05-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320178834.6U Withdrawn - After Issue CN219091280U (en) 2023-02-10 2023-02-10 Rainwater quality-separating device

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