KR100843304B1 - Water filtering apparatus with two-way flushing type screen - Google Patents

Water filtering apparatus with two-way flushing type screen Download PDF

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KR100843304B1
KR100843304B1 KR1020080025129A KR20080025129A KR100843304B1 KR 100843304 B1 KR100843304 B1 KR 100843304B1 KR 1020080025129 A KR1020080025129 A KR 1020080025129A KR 20080025129 A KR20080025129 A KR 20080025129A KR 100843304 B1 KR100843304 B1 KR 100843304B1
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South Korea
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tube
shaft
rear end
network
filtration
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KR1020080025129A
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Korean (ko)
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KR20080032059A (en
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우종삼
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주식회사 알피노필터링시스템
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/02Filters adapted for location in special places, e.g. pipe-lines, pumps, stop-cocks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/11Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with bag, cage, hose, tube, sleeve or like filtering elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/62Regenerating the filter material in the filter
    • B01D29/66Regenerating the filter material in the filter by flushing, e.g. counter-current air-bumps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D39/00Filtering material for liquid or gaseous fluids
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2201/00Apparatus for treatment of water, waste water or sewage
    • C02F2201/002Construction details of the apparatus
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2303/00Specific treatment goals
    • C02F2303/16Regeneration of sorbents, filters

Abstract

본 발명은 상수 및 하수처리장과 같은 수처리 시설과 중수도 시설 등에서 처리수내 포함되어 있는 고형 오염물을 제거하기 위하여 사용하는 여과장치에 관한 것으로, 원통형의 여과망 내부 및 외부에 여과망에 부착된 오염물을 제거하는 다수의 출입부를 설치함으로써, 여과장치 가동을 중단한 상태에서 별도의 역세(逆洗)를 실시히지 않고도 여과망의 자동 세척이 가능하도록 한 것이다.

본 발명을 통하여, 여과장치의 작동중에도 처리수의 차단이나 우회 없이 여과망 내주면 및 외주면의 세척이 가능해졌을 뿐 아니라, 원통형 여과망의 변형 및 파손을 방지하여 여과장치의 내구성을 확보하는 효과를 얻을 수 있다.

Figure R1020080025129

수처리, 여과, 여과망, 세척

The present invention relates to a filtration apparatus used to remove solid contaminants contained in treated water in water treatment facilities such as water and sewage treatment plants, and sewage treatment facilities, and removes contaminants attached to the filtration network inside and outside the cylindrical filtration network. By installing the entrance and exit of the filter unit, it is possible to automatically wash the filter net without performing a separate backwash in a state where the filtration device is stopped.

Through the present invention, it is possible to clean the inner and outer circumferential surfaces of the filtration network without blocking or bypassing the treated water even during the operation of the filtration device, and to prevent deformation and breakage of the cylindrical filtration network to obtain durability of the filtration device. have.

Figure R1020080025129

Water Treatment, Filtration, Filter Nets, Washing

Description

여과망 양면 세척식 수처리용 여과장치{Water filtering apparatus with two-way flushing type screen}Water filtering apparatus with two-way flushing type screen}

본 발명은 상수 및 하수처리장과 같은 수처리 시설과 중수도 시설 등에서 처리수내 포함되어 있는 고형 오염물을 제거하기 위하여 사용하는 여과장치에 관한 것으로, 원통형의 여과망 내부 및 외부에 여과망에 부착된 오염물을 제거하는 다수의 출입부를 설치함으로써, 여과장치 가동을 중단한 상태에서 별도의 역세(逆洗)를 실시히지 않고도 여과망의 자동 세척이 가능하도록 한 것이다.The present invention relates to a filtration apparatus used to remove solid contaminants contained in treated water in water treatment facilities such as water and sewage treatment plants, and sewage treatment facilities, and removes contaminants attached to the filtration network inside and outside the cylindrical filtration network. By installing the entrance and exit of the filter unit, it is possible to automatically wash the filter net without performing a separate backwash in a state where the filtration device is stopped.

하수 또는 상수처리에 있어서 처리수 내의 부유 고형 오염물은 침전이나 여과 등의 물리적 처리를 거쳐 제거하게 되는데, 이중 여과법의 경우 여과의 진행과정에서 오염물이 여과체에 누적 부착되므로, 정상적인 처리수의 흐름 방향과 반대의 흐름을 인위적으로 발생시킴으로써 여과망에 누적된 오염물을 세척하는 역세를 주기적으로 실시하게 된다.In sewage or water treatment, suspended solid contaminants in the treated water are removed through physical treatment such as sedimentation or filtration. In the case of double filtration, contaminants accumulate and adhere to the filter during the filtration process. By artificially generating a flow opposite to the above, the backwash is periodically performed to clean the contaminants accumulated in the filter network.

즉, 여과장치를 통과하는 처리수를 일시적으로 차단하거나 우회한 후, 여과 망을 역으로 통과하는 흐름을 강제로 발생시킴으로써 여과망에 침착된 오염물을 제거하게 되는데, 역세중에는 처리수를 차단 또는 우회하게 되므로 여과장치의 정상가동이 불가능하게 된다.In other words, by temporarily blocking or bypassing the treated water passing through the filtration device, by forcibly generating a flow through the filtration network to remove the contaminants deposited in the filtration network, to block or bypass the treated water during backwashing As a result, normal operation of the filtration device becomes impossible.

따라서, 상시가동 필요성이 있는 상수 및 하수처리장 등의 공공시설에서는 별도의 우회관로, 역방향 흐름을 발생시키기 위한 가압시설 및 예비 여과장치 등을 구비하여야 하는 문제점이 있었으며, 이로 인하여 수처리 시설의 설치 및 유지관리비용이 증대되는 심각한 문제점이 있었다.Therefore, in public facilities such as water and sewage treatment plants where there is a need for continuous operation, there is a problem that a separate bypass, a pressurization facility and a preliminary filtration device for generating a reverse flow, and the like have to be provided. There was a serious problem of increased maintenance costs.

이에, 도 1에서와 같이, 원통형의 여과망(20) 내부에, 외주면에 다수의 흡입봉(31)이 설치된 흡입관(30)을 설치하고, 이 흡입관(30)을 구동모터(40) 및 배출관(13)과 연결하여, 여과망(20)에 부착된 오염물(99)을 흡입 배출할 수 있도록 함으로써, 별도의 역세과정 없이도 여과장치 작동중에 여과망(20)의 자동 세척이 가능하도록 한 여과망 체척식 여과장치가 개발되어, 전술한 역세로 인하여 야기되는 문제점을 상당 수준 해결할 수 있었다.Thus, as shown in Figure 1, inside the cylindrical filter net 20, the suction pipe 30 provided with a plurality of suction rods 31 on the outer peripheral surface is installed, the suction pipe 30 to the drive motor 40 and the discharge pipe ( 13), by allowing the suction of the contaminants 99 attached to the filter network 20 to be sucked out, so that the filter network sieve filtering device to enable the automatic cleaning of the filter network 20 during the operation of the filter device without a separate backwashing process Has been developed, which has significantly solved the problems caused by the aforementioned back forces.

도 1은 종래 여과망 내주면 세척식 여과장치의 단계별 작동상태 대표단면도로서 도 1에 도시된 종래의 여과망 내주면 세척식 여과장치의 작동원리를 약술하면, 우선 유입구(11)를 통하여 유입된 여과대상 처리수는 원통형의 여과망(20)을 통과하면서 여과되어 유출구(12)를 통하여 배출되며, 여과망(20)에는 처리수에 포함되어 있던 고형 오염물(99)이 부착된다.1 is a schematic cross-sectional view illustrating a step-by-step operation state of a conventional filter net inner circumferential rinsing filtration device, the operation principle of the conventional filter net inner circumferential rinsing filtration device shown in FIG. 1, first, the treated water introduced through the inlet 11 Is filtered while passing through the cylindrical filter network 20 is discharged through the outlet 12, the solid contaminants 99 contained in the treated water is attached to the filter network (20).

여과망(20)에 고형 오염물(99)이 일정 수준 이상 부착되면 배출관(13)을 개방하여 흡입구(32), 흡입봉(31), 흡입관(30) 및 배출관(13)에 이르는 처리수의 흐 름을 발생시킴으로써 여과망(20) 내주면에 부착된 오염물(99)을 세척, 배출하게 되는데, 세척작용을 위한 처리수 흐름은 여과장치를 통과하는 처리수 자체의 유량에 의하여 발생시키거나 배출관(13)과 펌프 등의 유체기계를 연결하는 등 다양한 적용이 가능하다.When the solid contaminants 99 are attached to the filter network 20 by a predetermined level or more, the discharge pipe 13 is opened to flow the treated water to the intake port 32, the suction rod 31, the suction pipe 30, and the discharge pipe 13. By generating the to wash and discharge the contaminants 99 attached to the inner peripheral surface of the filtering network 20, the treatment water flow for the washing action is generated by the flow rate of the treatment water itself passing through the filtration device or the discharge pipe 13 and Various applications are possible, such as connecting fluid machines such as pumps.

여기서 다수의 흡입봉(31)이 연결된 흡입관(30)은 그 자체가 일종의 회전축으로서 구동모터(40)에 의하여 회전 및 축방향 왕복운동이 가능하도록 설치되어 여과망(20) 내주면 전반에 대한 세척이 가능하도록 구성된다.Here, the suction pipe 30 to which the plurality of suction rods 31 are connected is itself installed as a kind of rotation shaft to be rotated and axially reciprocated by the driving motor 40, thereby washing the entire inner circumferential surface of the filtering network 20. Is configured to.

한편, 이러한 여과망 내주면 세척식 여과장치는 전술한 바와 같이 원통형 여과망(20)의 내주면에 부착된 오염물(99)만을 제거할 수 있는 한계점이 있었는 바, 도 2에서와 같은 여과망 내, 외주면 세척식 여과장치가 개발되었다.On the other hand, such a filter net inner circumferential surface washing type filtration device has a limitation that can remove only the contaminants 99 attached to the inner circumferential surface of the cylindrical filter net 20, as described above, in the filter network as shown in Fig. The device was developed.

도 2에 도시된 바와 같이, 여과망 내, 외주면 세척식 여과장치에는 여과망(20) 내부의 흡입관(30) 뿐 아니라 여과망(20) 외부에도 외부흡입관(36), 외부흡입구(37) 등이 설치되어 여과망(20)의 내, 외부 동시세척이 가능하게 되었는데, 내부의 흡입관(30)과 외부흡입관(36)이 수리적(水理的)으로 연결되어 있고 외부흡입관(36)은 본체(10)에 고정되어 있는 구조로서 내부의 흡입관(30)과 외부흡입관(36)의 회전 및 왕복운동이 불가능하므로 여과망(20)의 상단에 중공축(21)을 형성하여 이를 스크류(34) 등과 연결하며 이 중공축(21)의 상부에는 통공(22)을 형성하고 내부에 흡입관(30)을 삽입함으로써, 흡입관(30) 및 외부흡입관(36)은 고정된 상태로 작동하지만, 여과망(20) 자체가 회전 및 축방향 왕복하게 되어 여과망(20) 내주면 및 외주면 전 지점이 세척될 수 있게 된다.As shown in Figure 2, in the filter net, the outer circumferential surface washing type filtration apparatus is provided with an external suction pipe 36, an external suction port 37, etc., as well as the suction pipe 30 inside the filtering net 20, the outside of the filtering net 20. Internal and external simultaneous washing of the filtering network 20 is possible, and the internal suction pipe 30 and the external suction pipe 36 are hydraulically connected, and the external suction pipe 36 is fixed to the main body 10. Since the internal suction pipe 30 and the external suction pipe 36 cannot be rotated and reciprocated, the hollow shaft 21 is formed at the upper end of the filtering network 20 to connect the screw 34 to the hollow shaft 21. By forming the through-hole 22 in the upper part of 21 and inserting the suction pipe 30 therein, the suction pipe 30 and the external suction pipe 36 operate in a fixed state, but the filtering net 20 itself is rotated and shafted. The reciprocating direction allows the entire inner and outer circumferential surfaces of the filtering network 20 to be cleaned.

즉, 여과망(20) 내부의 흡입관(30)으로 흡입된 오염물(99)은, 흡입관(30) 상단의 유출공(33)을 통하여 중공축(21) 내부로 유입된 후, 중공축(21) 상부의 통공(22)을 통하여 축하우징(15) 내부로 배출되며, 외부흡입관(36)을 통하여 흡입된 오염물(99)은 곧바로 축하우징(15)으로 유입되어 배출되게 된다.That is, the contaminants 99 sucked into the suction pipe 30 inside the filter net 20 flow into the hollow shaft 21 through the outlet hole 33 at the upper end of the suction pipe 30, and then the hollow shaft 21. It is discharged into the celebration housing 15 through the upper opening 22, the contaminants 99 sucked through the external suction pipe 36 is immediately introduced into the celebration housing 15 to be discharged.

이렇듯, 여과망(20) 내, 외주면 세척식 여과장치를 통하여 여과망(20)의 내, 외부 동시세척이 가능하게 되었으나, 망체(網體)라는 구조적 특성상 여과장치를 구성하는 타 부품에 비하여 강성이 낮을 수 밖에 없는 여과망(20) 자체가 회전 및 축방향 왕복을 반복하게 되어 여과망(20)이 변형되거나 파손되는 심각한 문제점이 있었다.As such, the internal and external simultaneous cleaning of the filtering network 20 is possible through the inner and outer rinsing filtration apparatus of the filtering network 20, but due to the structural characteristics of the mesh, the rigidity is lower than that of other components constituting the filtering apparatus. There is a serious problem that the filtering net 20 itself is repeatedly rotated and axial reciprocating to deform or break the filter net 20.

또한, 여과망(20)의 유입구(11) 측 단부는 최대한 통수단면을 확보하여야 하는 바, 별도의 회전축을 구성할 수 없으므로 여과망(20) 하단과 본체(10)와의 접촉면 수밀처리가 어려울 뿐 아니라 본체(10)와 접촉되는 여과망(20) 하단부가 쉽게 파손되는 심각한 문제점이 있었다.In addition, the inlet 11 side end portion of the filtering net 20 should secure the passage surface as much as possible, and thus it is not possible to form a separate rotating shaft, so that the contact surface between the lower end of the filtering net 20 and the main body 10 is not only difficult to be watertight. There was a serious problem that the lower end of the filter net 20 in contact with (10) easily broken.

본 발명은 전술한 문제점을 감안하여 창안한 것으로, 유입구(11)와 유출구(12)가 형성된 본체(10) 내부에 원통형 여과망(20)이 설치되어, 유입구(11)로 유입된 처리수가 여과망(20) 내부로 유입된 후 여과망(20)을 통과하며 오염물(99)이 제거되어 유출구(12)로 배출되되, 여과망(20)의 내부와 외부에는 다수의 출입부(80)가 설치되고 이들 출입부(80)는 본체(10) 외부와 연결되어 여과망(20) 내주면 및 외주면에 부착된 오염물(99)이 출입부(80)를 통하여 외부로 배출되는 수처리용 여과장치에 있어서, 본체(10)의 후단에는 후단판(60)이 결합되되, 후단판(60)에 는 본체(10) 내부로 돌출되고 중심부에 외관결합구(64)가 형성되며 연결관(17)이 연결된 격실(61)이 구성되고, 후방이 개방되고 선단에는 중심에 축관결합구(24)가 형성된 선단판(23)이 설치된 원통형 여과망(20)이 본체(10) 내부에 고정되어 설치되며, 여과망(20) 내부에는 외주면에 다수의 출입부(80)가 구성되고 후단부에 유통구(58)가 형성된 외관(50)이 설치되되, 외관(50)의 후단부가 격실(61)의 외관결합구(64)에 결합되고, 출입부(80)가 구성된 다수의 분기관(71)이 연결되고 선단부에 이송축(35)이 연결된 축관(70)이 여과망(20) 선단판(23)의 축관결합구(24)에 결합되되, 축관결합구(24)를 통과한 축관(70)은 외관(50)의 후단에 고정되어, 이송축(35)이 회전 및 축방향 왕복함에 따라 축관(70)과 외관(50)이 회전 및 왕복함을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치이다.The present invention was devised in view of the above-described problems, and the cylindrical filter net 20 is installed inside the main body 10 in which the inlet 11 and the outlet 12 are formed, and the treated water introduced into the inlet 11 is filtered. 20) After being introduced into the inside and passed through the filter network 20, the contaminants 99 are removed and discharged to the outlet 12, a plurality of entrances (80) inside and outside of the filter network 20 is installed and these The unit 80 is connected to the outside of the main body 10, the contaminant 99 attached to the inner circumferential surface and the outer circumferential surface of the filtering network 20 is discharged to the outside through the entrance portion 80, the main body 10, The rear end of the rear plate (60) is coupled, the rear end plate (60) is projected into the main body 10 and the outer coupling opening 64 is formed in the center and the compartment (61) connected to the connection pipe 17 is The cylindrical filter net 20 is configured, the rear end is opened and the front end plate 23 is provided with a front end plate 23 formed with a shaft coupling hole 24 at the front end thereof. 0) is fixedly installed in the inside, the inside of the filter net 20 is provided with a plurality of entrances 80 is formed on the outer peripheral surface and the distribution port 58 is formed on the rear end, the exterior 50 of The rear end portion is coupled to the outer coupling opening 64 of the compartment 61, a plurality of branch pipes 71 are formed, the entrance portion 80 is connected, the shaft tube 70 is connected to the feed shaft 35 is connected to the filter net ( 20) coupled to the shaft coupling member 24 of the tip plate 23, the shaft tube 70 passing through the shaft coupling member 24 is fixed to the rear end of the exterior 50, the feed shaft 35 is rotated and It is a filtration device for both sides washing water treatment system, characterized in that the shaft tube 70 and the appearance 50 rotates and reciprocates along the axial reciprocation.

또한, 상기 후단판(60)에는 토출관(18)이 연결되고, 격실(61)은 토출관(18)과 유통구(58) 및 외관(50) 내부를 연결하는 전방측 격실(61a)과, 축관(70)내부 및 연결관(17)을 연결하는 후방측 격실(61b)로 격리 및 분할됨을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치이며, 상기 출입부(80)는 외주면에 환상돌부(82)가 형성되고 환상돌부(82) 하부에 스프링(85)이 결합되는 중심관(81)과, 중심관(81)의 하단부가 삽입되는 말단관(86)과, 내주면에 걸림턱(84)이 형성되고 중심관(81)에 결합되며 하단부가 말단관(86)의 상단부에 체결되는 외측관체(83)로 이루어짐을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치이다.In addition, a discharge tube 18 is connected to the rear end plate 60, and the compartment 61 includes a front side compartment 61a that connects the discharge tube 18, the distribution port 58, and the exterior 50. And, it is isolated and divided into the rear compartment (61b) for connecting the inner tube and the connecting pipe (17), characterized in that the filtering device for double-sided washing water treatment network, the entrance portion 80 is an annular protrusion on the outer peripheral surface A center tube 81 is formed and the spring 85 is coupled to the lower portion of the annular protrusion 82, a terminal tube 86 into which the lower end of the center tube 81 is inserted, and a locking jaw 84 on the inner circumferential surface thereof. ) Is formed and coupled to the center tube 81, and the lower end is composed of an outer tube (83) is fastened to the upper end of the end tube 86, the filtering network for both sides washing water treatment filtration device.

본 발명을 통하여, 여과장치의 작동중에도 처리수의 차단이나 우회 없이 여과망 내주면 및 외주면의 세척이 가능해졌을 뿐 아니라, 원통형 여과망의 변형 및 파손을 방지하여 여과장치의 내구성을 확보하는 효과를 얻을 수 있다.Through the present invention, it is possible to clean the inner and outer circumferential surfaces of the filtration network without blocking or bypassing the treated water even during the operation of the filtration device, and to prevent deformation and breakage of the cylindrical filtration network to obtain durability of the filtration device. have.

이로써, 여과시설의 설치 및 유지관리비용을 절감할 수 있으며, 여과망의 효율적인 관리를 통하여 처리수의 여과품질 또한 향상시키는 효과를 얻을 수 있다.As a result, it is possible to reduce the installation and maintenance costs of the filtration facility, and through the efficient management of the filtration network can also obtain the effect of improving the filtration quality of the treated water.

본 발명의 상세한 구성 및 작동원리를 첨부된 도면을 통하여 설명하면 다음과 같다.The detailed configuration and operation principle of the present invention will be described with reference to the accompanying drawings.

우선 도 3은 본 발명의 외관을 도시한 사시도로서, 동 도면을 통하여 알 수 있는 바와 같이, 본 발명은 유입구(11) 및 유출구(12)가 형성된 본체(10)와 본체(10) 양단에 각각 결합되어 본체(10)를 밀폐하는 후단판(60) 및 축하우징(15) 등으로 구성된다.First, Figure 3 is a perspective view showing the appearance of the present invention, as can be seen through the figure, the present invention is the main body 10 and the both ends of the main body 10, the inlet 11 and outlet 12 is formed, respectively Combination is composed of a rear end plate 60 and the conical housing 15, etc. to seal the main body 10.

도 4는 본 발명의 분해사시도로서, 본 발명의 후단판(60)에는 본체(10) 내부로 돌출되고 중심부에 외관결합구(64)가 형성된 격실(61)이 구성되고, 본체(10) 내부에는 축관(70), 외관(50) 및 여과망(20) 등이 설치되며, 각각의 구성요소는 대부분 관상(管狀) 또는 봉상(棒狀)의 부품으로 그 중심축이 동일선상에 위치하도록 설치된다.4 is an exploded perspective view of the present invention, the rear end plate 60 of the present invention comprises a compartment 61 which protrudes into the main body 10 and has an exterior coupling hole 64 formed at the center thereof, and the main body 10 inside. The shaft tube 70, the exterior 50, and the filtering net 20 is installed, each component is a tubular or rod-like part is installed so that the central axis is located on the same line. .

본 발명의 여과망(20)은 외벽이 망체(網體)로 구성된 원통형 구성요소로서 선단에는 중심부에 축관결합구(24)가 형성된 선단판(23)이 결합되고, 후단에는 본 체(10)에 여과망(20)을 고정하기 위한 플랜지가 형성된다.The filter net 20 of the present invention is a cylindrical component consisting of a mesh of the outer wall is the front end is coupled to the front end plate 23 having a shaft coupling hole 24 is formed in the center, the rear end to the main body 10 A flange for fixing the filter net 20 is formed.

외관(50)의 후단부에는 유통구(58)가 형성되어 외관(50) 내, 외측간 소통이 가능하도록 하고 외관(50)의 외주면에는 다수의 출입부(80)가 설치된다.A distribution port 58 is formed at the rear end of the exterior 50 to enable communication between the exterior 50 and the exterior, and a plurality of entrances 80 are installed on the outer circumferential surface of the exterior 50.

축관(70)에는 다수의 절곡된 분기관(71)이 접합되고 이 분기관(71)에도 출입부(80)가 설치되며, 축관(70)의 선단에는 소정 구간 스크류(34)가 형성된 이송축(35)이 연결된다.A plurality of bent pipes 71 are joined to the shaft pipe 70, and the entrance part 80 is also installed at the branch pipe 71, and a feed shaft having a predetermined section screw 34 formed at the tip of the shaft pipe 70. 35 is connected.

격실(61), 외관(50), 여과망(20) 및 축관(70)은 도 5의 원내확대부 및 도 7에서와 같이, 유통구(58)가 형성된 외관(50)의 후단부가 격실(61)의 외관결합구(64)에 회전가능하되 수밀(水密)되도록 결합되고, 여과망(20)은 외관(50)과 동심으로 설치되며, 축관(70)은 여과망(20) 선단판(23)의 축관결합구(24)에 회전가능하고 수밀되도록 결합되되 그 후단이 외관(50)의 후단에 고정나사(59) 등을 통하여 고정되는 연결구조를 가진다.The compartment 61, the exterior 50, the filter net 20, and the shaft tube 70, the rear end of the exterior 50 in which the outlet port 58 is formed, as shown in FIG. Rotatable to the outer coupling (64) of () is coupled to be watertight (水密), the filtering net 20 is installed concentrically with the exterior 50, the shaft tube 70 of the end plate 23 of the filtering net (20) It is coupled to the shaft tube coupling sphere 24 so as to be rotatable and watertight, and a rear end thereof is connected to a rear end of the exterior 50 through a fixing screw 59 or the like.

즉, 도 5에서와 같이, 외주면에 다수의 출입부(80)가 설치된 외관(50)과, 역시 출입부(80)가 설치된 다수의 분기관(71)이 각각 여과망(20)의 내부와 외부에 위치하되 각각의 출입부(80)가 여과망(20)의 내, 외주면에 밀착 내지 인접하도록 설치되는 것이다.That is, as shown in FIG. 5, the exterior 50 having a plurality of entrances and exits 80 installed on the outer circumferential surface, and the branch pipes 71 having the entrances 80 also installed inside and outside of the filtering network 20, respectively. Located in the respective entrance portion 80 is to be installed close to or adjacent to the inner, outer peripheral surface of the filter net (20).

따라서 격실(61)과 연결된 연결관(17)이 개방되거나 연결관(17)에 펌프등의 유체기계로부터 흡입력이 인가되면, 여과망(20) 내측의 출입부(80)는 여과망(20) 내주면에 부착된 오염물(99)을 포집하여 외관(50), 유통구(58), 격실(61) 및 연결관(17)의 경로로 배출하며, 여과망(20) 외측의 출입부(80)는 여과망(20) 외주면에 부착된 오염물(99)을 포집하여 분기관(71), 축관(70), 격실(61) 및 연결관(17)의 경로로 배출하게 되는 것이다.Therefore, when the connecting pipe 17 connected to the compartment 61 is opened or a suction force is applied to the connecting pipe 17 from a fluid machine such as a pump, the entrance part 80 inside the filtering net 20 is connected to the inner peripheral surface of the filtering net 20. Collected contaminants 99 are collected and discharged through the path of the exterior 50, the distribution port 58, the compartment 61 and the connecting pipe 17, the entrance portion 80 outside the filtering network 20 is the filtering network ( 20) The pollutants 99 attached to the outer circumferential surface are collected and discharged through the paths of the branch pipes 71, the shaft pipes 70, the compartments 61, and the connection pipes 17.

한편, 도 5의 원내 확대부를 통하여 알 수 있는 바와 같이, 외관결합구(64) 및 축관결합구(24) 등 가동 연결지점에는 패킹(98)이 설치되어 수밀성을 확보하게 된다.On the other hand, as can be seen through the inward enlarged portion of Figure 5, the packing 98 is installed at the movable connection point, such as the external coupling port 64 and the shaft tube coupling port 24 to ensure the watertightness.

본 발명의 축관(70)은 정지된 상태로 오염물(99)을 배출하는 것이 아니라 회전 및 축방향 왕복운동을 병행하게 되며, 따라서 축관(70)에 고정된 외관(50) 또한 회전 및 왕복운동을 하게 되므로 여과망(20)이 고정되어 있어도 여과망(20) 내, 외주면 전체에 대한 세척이 가능하다.The shaft tube 70 of the present invention does not discharge the contaminants 99 in a stationary state, but performs rotation and axial reciprocation in parallel. Therefore, the outer tube 50 fixed to the shaft tube 70 also rotates and reciprocates. Therefore, even if the filtering net 20 is fixed, it is possible to wash the entire outer peripheral surface of the filtering net 20.

이러한, 축관(70)의 회전 및 왕복 병행 운동이 가능하도록 하는 기계적 구성의 일 실시예가 도 5에 도시되어 있는 바, 이를 약술하면 다음과 같다.Such an embodiment of the mechanical configuration to enable the rotation and reciprocal parallel movement of the shaft tube 70 is shown in Figure 5, which outlines as follows.

구동모터(40)에 의하여 주동베벨기어(42)가 회전하면 이와 연결된 종동베벨기어(43)가 회전하고, 이송축(35)이 회전하게 된다.When the driven bevel gear 42 rotates by the drive motor 40, the driven bevel gear 43 connected thereto rotates, and the feed shaft 35 rotates.

여기서 종동베벨기어(43)와 결합되는 부분의 이송축(35)은 비원형(非圓形)단면으로 가공하고 축방향 이동이 가능하도록 결합함으로써, 이송축(35)의 하부 소정 구간에 형성된 스크류(34)가 축하우징(15)에 고정된 이송너트(16)에 결합되어 회전함에 따라, 이송축(35)이 회전 및 축방향 직선운동을 병행하게 되며, 그에 따라 축관(70) 및 외관(50)도 회전 및 왕복운동을 하게 된다.Here, the feed shaft 35 of the portion engaged with the driven bevel gear 43 is machined into a non-circular cross section and coupled to allow the axial movement, thereby forming a screw formed in the lower predetermined section of the feed shaft 35. As the 34 is rotated by being coupled to the feed nut 16 fixed to the celebratory housing 15, the feed shaft 35 rotates in parallel with the rotational and axial linear movements, and thus the shaft tube 70 and the appearance ( 50) rotates and reciprocates.

도 6은 본 발명의 외관(50) 및 축관(70) 격리형 실시예의 대표단면도로서, 동 실시예의 목적은 외관(50)과 축관(70)을 통한 유동경로의 격리, 즉 여과망(20) 내주면측 출입부(80)와 외주면측 출입부(80)를 각각 별도의 경로로 외부와 연결하는데 있다.FIG. 6 is a representative cross-sectional view of an exterior 50 and shaft 70 isolation embodiment of the present invention, the purpose of which is to isolate the flow path through the exterior 50 and shaft 70, ie, the inner circumferential surface of the filter network 20. FIG. The side entry portion 80 and the outer peripheral surface side entry portion 80 are connected to the outside in separate paths, respectively.

이러한 구성을 통하여 여과망(20) 내주면과 외주면에 대한 세척을 각각 별도로 또는 선택적으로 진행할 수 있을 뿐 아니라, 도 6에 도시된 바와 같이, 축관(70)과 외관(50) 중 어느 하나에 외부의 가압수단을 연결하여 수압 또는 압축공기를 인가함으로써 더욱 강력한 세척력을 확보할 수도 있다.Through this configuration, not only the washing process for the inner circumferential surface and the outer circumferential surface of the filtering network 20 can be performed separately or selectively, respectively, and as shown in FIG. 6, external pressure is applied to any one of the shaft tube 70 and the outer surface 50. By connecting the means to apply water pressure or compressed air it is possible to ensure a more powerful cleaning force.

축관(70)과 외관(50)의 격리는 격실(61)을 분할하고 각각의 분할된 격실(61a, 61b)에 별도의 관체를 설치하는 것으로 달성될 수 있는데, 도 6의 타원내 확대부에 구체적인 실시예가 도시되어 있다.Isolation of the shaft tube 70 and the exterior 50 can be achieved by dividing the compartment 61 and installing a separate tube in each of the divided compartments 61a and 61b. Specific embodiments are shown.

즉, 격실(61) 내부에 격벽(62)을 형성하되 이 격벽(62)이 축관(70)과 밀착되도록 구성하여 격실(61)을 전방측 격실(61a)과 후방측 격실(61b)로 분할하고, 전방측 격실(61a)과 외부를 연결하는 토출관(18)을 추가함으로써 여과망(20) 내주면측 출입부(80)와 외주면측 출입부(80)를 각각 별도의 경로로 외부와 연결할 수 있는 것이다.That is, the partition 62 is formed inside the compartment 61, but the partition 62 is configured to be in close contact with the shaft pipe 70 to divide the compartment 61 into the front compartment 61a and the rear compartment 61b. In addition, by adding a discharge pipe 18 connecting the front compartment 61a and the outside, the inner peripheral surface side entrance portion 80 and the outer peripheral surface side entrance portion 80 of the filtering network 20 can be connected to the outside in separate paths, respectively. It is.

전술한 바와 같이, 축관(70)과 외관(50)은 외관(50) 후단부의 고정나사(59)를 통하여 고정되는 구조로서, 고정위치를 조정할 수 있으므로 도 6에 도시된 바와 같이, 축관(70)의 분기관(71)에 설치된 출입부(80)와 외관(50)에 설치된 출입부(80) 위치가 일치하도록 조정하고, 어느 한 쪽의 출입부(80)에 압축공기, 외부 용수 또는 자체 처리수 등을 인가하고 다른 쪽 출입부(80)를 통하여 오염물(99)을 흡입하게되면 강력한 세척효과을 얻을 수 있다.As described above, the shaft tube 70 and the outer tube 50 is a structure that is fixed through the fixing screw 59 of the rear end of the outer tube 50, and the fixing position can be adjusted, as shown in FIG. Adjust the position of the entrance and exit unit 80 installed in the branch pipe 71 and the entrance and exit unit 80 installed in the exterior 50 to be equal to each other, and pressurized air, external water, or itself to either entrance unit 80. Applying the treated water and the like and inhaling the contaminants 99 through the other entrance portion 80 can obtain a strong washing effect.

한편, 도 7 및 도 8은 본 발명의 출입부(80)를 상세히 도시한 도면으로서, 동 도면에서와 같이, 출입부(80)에 스프링(85) 등의 탄성체를 내장하여 출입부(80)가 여과망(20)에 밀착될 수 있도록 함으로써 세척효과를 제고할 수 있다.On the other hand, Figure 7 and Figure 8 is a view showing in detail the entry and exit portion 80 of the present invention, as shown in the figure, the entry and exit portion 80 by embedding an elastic body such as a spring (85) in the entry portion 80 It is possible to enhance the washing effect by allowing it to be in close contact with the filter net (20).

도시된 실시예에서 출입부(80)는 중심관(81), 외측관체(83), 스프링(85) 및 말단관(86)으로 구성되는데, 중심관(81) 외주면에는 외측으로 돌출된 환상돌부(環狀突部)(82)가 형성되고 그 하부에 스프링(85)이 결합되어 중심관(81)에 스프링(85)의 탄성력이 항시 외측으로 작용하며, 외측관체(83) 내주면에는 걸림턱(84)이 형성되어 환상돌부(82)가 걸림턱(84)에 결합되며 중심관(81)이 이탈되는 것을 방지하게 된다.In the illustrated embodiment, the entrance portion 80 is composed of a central tube 81, an outer tube 83, a spring 85 and a terminal tube 86, the outer circumferential surface of the central tube 81 protruding outwardly (82) 82 is formed and the spring 85 is coupled to the lower portion of the center tube 81, the elastic force of the spring 85 is always acting outward, the locking jaw on the inner peripheral surface of the outer tube (83) The 84 is formed so that the annular protrusion 82 is coupled to the locking projection 84 to prevent the center tube 81 from being separated.

따라서 도 8에서와 같이, 출입부(80)가 여과망(20) 표면을 따라 공전함에 따라 중심관(81)이 말단관(86) 내부로 삽입과 돌출을 반복하면서 여과망(20)에 밀착하게 되는 것이다.Therefore, as shown in FIG. 8, as the entrance part 80 revolves along the surface of the filter net 20, the central tube 81 is in close contact with the filter net 20 while repeatedly inserting and projecting into the end tube 86. will be.

도 1은 종래 여과망 내주면 세척식 여과장치의 단계별 작동상태 대표단면도Figure 1 is a representative cross-sectional view of the operation state of the conventional filter network inner circumferential washing filter

도 2는 종래 여과망 내, 외주면 세척식 여과장치의 부분절단 사시도Figure 2 is a partial cutaway perspective view of the conventional filter, the outer circumferential surface type washing filter

도 3은 본 발명의 사시도3 is a perspective view of the present invention

도 4는 본 발명의 분해사시도4 is an exploded perspective view of the present invention

도 5는 본 발명의 대표단면도5 is a representative cross-sectional view of the present invention.

도 6은 본 발명의 외관 및 축관 격리형 실시예의 대표단면도Figure 6 is a representative cross-sectional view of the appearance and shaft isolated embodiment of the present invention.

도 7은 본 발명의 요부 발췌 사시도7 is a perspective view of the main portion excerpt of the present invention

도 8은 본 발명의 출입부 작동상태 대표단면도Figure 8 is a representative cross-sectional view of the entrance operation state of the present invention

<도면의 주요부분에 대한 부호설명><Code Description of Main Parts of Drawing>

10 : 본체10: main body

11 : 유입구11: inlet

12 : 유출구12: outlet

13 : 배출관13: discharge pipe

15 : 축하우징(軸housing)15: congratulations

16 : 이송너트16: Transfer Nut

17 : 연결관17 connector

18 : 토출관18: discharge tube

20 : 여과망20: filter network

21 : 중공축21: hollow shaft

22 : 통공22: through-hole

23 : 선단판23: tip plate

24 : 축관결합구24: shaft coupling port

30 : 흡입관30: suction pipe

31 : 흡입봉31: suction rod

32 : 흡입구32: suction port

33 : 유출공33: outflow hole

34 : 스크류34: screw

35 : 이송축35: feed shaft

36 : 외부흡입관36: external suction pipe

37 : 외부흡입구37: outside suction port

40 : 구동모터40: drive motor

42 : 주동베벨기어42: main bevel gear

43 : 종동베벨기어43: driven bevel gear

50 : 외관50: appearance

58 : 유통구58: distribution port

59 : 고정나사59: set screw

60 : 후단판60: rear end plate

61 : 격실61: compartment

62 : 격벽62: bulkhead

64 : 외관결합구64: appearance combination

70 : 축관70: shaft

71 : 분기관71: branch pipe

80 : 출입부80: entrance

81 : 중심관81: center tube

82 : 환상돌부82: annular protrusion

83 : 외측관체83: outer tube

84 : 걸림턱84: jamming jaw

85 : 스프링85: spring

86 : 말단관86: terminal tube

98 : 패킹98: packing

99 : 오염물99: contaminants

Claims (3)

유입구(11)와 유출구(12)가 형성된 본체(10) 내부에 원통형 여과망(20)이 설치되어, 유입구(11)로 유입된 처리수가 여과망(20) 내부로 유입된 후 여과망(20)을 통과하며 오염물(99)이 제거되어 유출구(12)로 배출되되, 여과망(20)의 내부와 외부에는 다수의 출입부(80)가 설치되고 이들 출입부(80)는 본체(10) 외부와 연결되어 여과망(20) 내주면 및 외주면에 부착된 오염물(99)이 출입부(80)를 통하여 외부로 배출되는 수처리용 여과장치에 있어서,The cylindrical filter net 20 is installed inside the main body 10 having the inlet 11 and the outlet 12 formed therein, and the treated water introduced into the inlet 11 passes through the filter net 20 after being introduced into the filter net 20. And contaminants 99 are removed and discharged to the outlet 12, a plurality of entrances (80) are installed inside and outside the filtering network 20, these entrances 80 are connected to the outside of the main body 10 In the filtering device for water treatment in which the contaminants 99 attached to the inner circumferential surface and the outer circumferential surface of the filtering network 20 are discharged to the outside through the entrance portion 80, 본체(10)의 후단에는 후단판(60)이 결합되되, 후단판(60)에는 본체(10) 내부로 돌출되고 중심부에 외관결합구(64)가 형성되며 연결관(17)이 연결된 격실(61)이 구성되고;The rear end of the main body 10 is coupled to the rear end plate 60, the rear end plate 60 is protruded into the main body 10, the exterior coupling port 64 is formed in the center and the connection pipe 17 is connected to the compartment ( 61) is configured; 후방이 개방되고 선단에는 중심에 축관결합구(24)가 형성된 선단판(23)이 설치된 원통형 여과망(20)이 본체(10) 내부에 고정되어 설치되며;A cylindrical filter net 20 having a rear end open and a front end plate 23 having a shaft coupling hole 24 formed at the front end thereof is fixedly installed in the main body 10; 여과망(20) 내부에는 외주면에 다수의 출입부(80)가 구성되고 후단부에 유통구(58)가 형성된 외관(50)이 설치되되, 외관(50)의 후단부가 격실(61)의 외관결합구(64)에 결합되고;Inside the filter net 20, a plurality of entrances 80 are formed on the outer circumferential surface and a distribution port 58 is formed at the rear end, and the rear end of the exterior 50 is coupled to the exterior of the compartment 61. Bound to sphere 64; 출입부(80)가 구성된 다수의 분기관(71)이 연결되고 선단부에 이송축(35)이 연결된 축관(70)이 여과망(20) 선단판(23)의 축관결합구(24)에 결합되되, 축관결합구(24)를 통과한 축관(70)은 외관(50)의 후단에 고정되어;A plurality of branch pipes 71 configured with an access unit 80 are connected, and a shaft pipe 70 having a feed shaft 35 connected to a distal end thereof is coupled to the shaft pipe coupling hole 24 of the filter plate 20 and the front end plate 23. , The shaft tube 70 passing through the shaft tube coupler 24 is fixed to the rear end of the appearance 50; 이송축(35)이 회전 및 축방향 왕복함에 따라 축관(70)과 외관(50)이 회전 및 왕복함을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치.Filtration network double-sided washing water filtering device, characterized in that the shaft tube 70 and the outer appearance (50) rotates and reciprocates as the feed shaft (35) rotates and axially reciprocates. 제1항에 있어서, 후단판(60)에는 토출관(18)이 연결되고;A discharge tube (18) is connected to the rear end plate (60); 격실(61)은 토출관(18)과 유통구(58) 및 외관(50) 내부를 연결하는 전방측 격실(61a)과, 축관(70)내부 및 연결관(17)을 연결하는 후방측 격실(61b)로 격리 및 분할됨을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치.The compartment 61 has a front compartment 61a connecting the discharge pipe 18, the distribution port 58, and the exterior 50, and a rear compartment connecting the inside of the shaft pipe 70 and the connection pipe 17. Filtering device for both sides washing water treatment, characterized in that the isolation and partitioning (61b). 제1항 또는 제2항에 있어서, 출입부(80)는 외주면에 환상돌부(82)가 형성되고 환상돌부(82) 하부에 스프링(85)이 결합되는 중심관(81)과;According to claim 1 or 2, the entrance portion 80 is formed with an annular projection (82) on the outer peripheral surface and the center tube (81) to which the spring (85) is coupled to the lower portion of the annular projection (82); 중심관(81)의 하단부가 삽입되는 말단관(86)과;A terminal tube 86 into which the lower end of the central tube 81 is inserted; 내주면에 걸림턱(84)이 형성되고 중심관(81)에 결합되며 하단부가 말단관(86)의 상단부에 체결되는 외측관체(83)로 이루어짐을 특징으로 하는 여과망 양면 세척식 수처리용 여과장치.Filtering device for washing on both sides of the filter network, characterized in that the locking jaw 84 is formed on the inner circumferential surface is coupled to the center tube 81, the lower end is composed of an outer tube (83) fastened to the upper end of the end tube (86).
KR1020080025129A 2008-03-18 2008-03-18 Water filtering apparatus with two-way flushing type screen KR100843304B1 (en)

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CN105909530A (en) * 2016-06-08 2016-08-31 江苏海阳化纤有限公司 Barrel pump

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CN105909530A (en) * 2016-06-08 2016-08-31 江苏海阳化纤有限公司 Barrel pump

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