Introducing the innovative QJP series fountain pump, a product of superior efficiency meticulously developed and researched by our factory. With a meticulously designed pump motor core crafted from premium cold rolled silicon steel, this fountain pump boasts exceptional magnetic conductivity, enabling seamless and heat-free starts. Unlike traditional fountain pumps, the 0JP series features motor rotor ends that utilize a unique water-lubricated alloy copper sleeve, replacing standard ball bearings. This innovative design not only mitigates issues of rust and wear caused by lack of oil but also ensures longevity and durability for the motor. Upgrade your fountain experience with the cutting-edge technology and superior performance of the QJP series fountain pump.
The product is a three-phase AC 380V (tolerance + / - 5%), 50HZ (tolerance + / - 1%) power supply, and has strict requirements for clean water: water temperature shall not exceed 20 °C; solid impurities content (mass ratio) shall not exceed 0.01%; PH value (pH) is 6.5-8.5; hydrogen sulfide content shall not exceed 1.5mg/L; chloride ion content shall not exceed 400mg/L. The product adopts a closed or water immersion structure motor, the submersible motor must be filled with clean water before use to prevent empty. In addition, the water can be used after filling and tightening the air release bolt. The submersible pump must be completely immersed in water to work, the diving depth shall not exceed 70m, and the distance between the bottom of the pump and the bottom of the well shall not be less than 3m. The well water flow should meet the water output and continuous operation requirements of the submersible pump, and the water output shall be controlled at 0.7-1.2 times of the rated flow. The well must be vertical, and the submersible pump can not be used horizontally, and it must be installed vertically. The submersible pump must match the cable as required and be equipped with external overload protection device. It is strictly prohibited to do no-load test without water.
Imodeli | Ukugeleza (m3/h) | Ikhanda (m) |
Isivinini sokuzungeza (shintsha/iphuzu) |
Iphampu yamanzi(%) | I-Outlet ububanzi (mm) |
Isebenza kahle ububanzi(mm) |
Ikaliwe amandla (KW) |
Ikaliwe i-voltage(V) |
Ikaliwe yamanje (A) |
Ukusebenza kahle (%) | power factorcosφ | Iyunithi Usayizi weRadial Maximu(mm) |
Phawula | |||||||||
135QJ5-34 | 5 | 34 | 2850 | 40 | 135ngenhla | 1.5 | 380 | 4.23 | 128 | |||||||||||||
135QJ5-51 | 51 | 2.2 | 6.03 | |||||||||||||||||||
135QJ5-68 | 68 | 3 | 8.01 | |||||||||||||||||||
135QJ5-85 | 85 | 4 | 10.53 | |||||||||||||||||||
135QJ5-102 | 102 | 5.5 | 14.1 | |||||||||||||||||||
135QJ5-119 | 119 | 5.5 | 14.1 | |||||||||||||||||||
135QJ5-240 | 240 | 11 | 26.28 | |||||||||||||||||||
135QJ5-280 | 5 | 280 | 2850 | 40 | 135ngenhla | 13 | 380 | 30.87 | 128 | |||||||||||||
135QJ5-320 | 320 | 15 | 35.62 | |||||||||||||||||||
135QJ10-24 | 10 | 24 | 2850 | 50 | 135ngenhla | 1.5 | 380 | 4.23 | 128 | |||||||||||||
135QJ10-32 | 32 | 2.2 | 6.03 | |||||||||||||||||||
135QJ10-48 | 48 | 3 | 8.01 | |||||||||||||||||||
135QJ10-56 | 56 | 4 | 10.53 | |||||||||||||||||||
135QJ10-72 | 72 | 5.5 | 14.1 | |||||||||||||||||||
135QJ10-80 | 80 | 5.5 | 14.1 | |||||||||||||||||||
135QJ10-104 | 104 | 7.5 | 19.0 | |||||||||||||||||||
135QJ10-120 | 120 | 7.5 | 19.0 | |||||||||||||||||||
135QJ10-136 | 136 | 9.2 | 22.7 | |||||||||||||||||||
135QJ10-180 | 180 | 11 | 26.28 | |||||||||||||||||||
135QJ10-210 | 210 | 13 | 30.87 | |||||||||||||||||||
135QJ10-240 | 240 | 15 | 35.62 | |||||||||||||||||||
135QJ10-300 | 300 | 18.5 | 43.12 | |||||||||||||||||||
135QJ15-36 | 15 | 36 | 2850 | 50 | 135ngenhla | 2.2 | 380 | 6.03 | 128 | |||||||||||||
135QJ15-39 | 39 | 3 | 8.01 | |||||||||||||||||||
135QJ15-46 | 46 | 4 | 10.53 | |||||||||||||||||||
135QJ15-52 | 52 | 4 | 10.53 | |||||||||||||||||||
135QJ15-59 | 59 | 5.5 | 14.1 | |||||||||||||||||||
135QJ15-65 | 65 | 5.5 | 14.1 | |||||||||||||||||||
135QJ15-78 | 78 | 7.5 | 19.0 | |||||||||||||||||||
135QJ15-91 | 91 | 7.5 | 19.0 | |||||||||||||||||||
135QJ15-104 | 104 | 9.2 | 22.7 | |||||||||||||||||||
135QJ15-120 | 120 | 11 | 26.28 | |||||||||||||||||||
135QJ15-142 | 142 | 13 | 30.87 | |||||||||||||||||||
135QJ15-162 | 162 | 15 | 35.62 | |||||||||||||||||||
135QJ15-200 | 200 | 18.5 | 43.12 | |||||||||||||||||||
135QJ20-16 | 20 | 16 | 2850 | 50 | 135above | 2.2 | 380 | 6.03 | 128 | |||||||||||||
135QJ20-24 | 24 | 3 | 8.01 | |||||||||||||||||||
135QJ20-32 | 32 | 4 | 10.53 | |||||||||||||||||||
135QJ20-40 | 40 | 4 | 10.53 | |||||||||||||||||||
135QJ20-48 | 48 | 5.5 | 14.1 | |||||||||||||||||||
135QJ20-56 | 56 | 5.5 | 14.1 | |||||||||||||||||||
135QJ20-64 | 64 | 7.5 | 19.0 | |||||||||||||||||||
135QJ20-72 | 72 | 7.5 | 19.0 | |||||||||||||||||||
135QJ20-80135QJ20-100 | 80 | 9.2 | 22.7 | |||||||||||||||||||
100 | 11 | 26.28 | ||||||||||||||||||||
135QJ20-120 | 120 | 13 | 30.87 | |||||||||||||||||||
135QJ20-136 | 136 | 15 | 35.62 | |||||||||||||||||||
135QJ20-168135QJ25-12 | 168 | 18.5 | 43.12 | |||||||||||||||||||
25 | 12 | 2850 | 65 | 135ngenhla | 2.2 | 380 | 6.03 | 128 | ||||||||||||||
135QJ25-18 | 18 | 3 | 8.01 | |||||||||||||||||||
135QJ25-24 | 24 | 4 | 10.53 | |||||||||||||||||||
135QJ25-30 | 30 | 4 | 10.53 | |||||||||||||||||||
135QJ25-36 | 36 | 5.5 | 14.1 | |||||||||||||||||||
135QJ25-48 | 48 | 7.5 | 19.0 | |||||||||||||||||||
135QJ25-60 | 60 | 9.2 | 22.7 | |||||||||||||||||||
135QJ25-82 | 82 | 11 | 26.28 | |||||||||||||||||||
135QJ25-97 | 97 | 13 | 30.87 | |||||||||||||||||||
135QJ25-110 | 110 | 15 | 35.62 | |||||||||||||||||||
135QJ25-130 | 130 | 18.5 | 43.12 | |||||||||||||||||||
135QJ32-24 | 32 | 24 | 2850 | 80 | 135ngenhla | 4 | 380 | 10.53 | 128 | |||||||||||||
135QJ32-30 | 30 | 5.5 | 14.1 | |||||||||||||||||||
135QJ32-42 | 42 | 7.5 | 19.0 | |||||||||||||||||||
135QJ32-54 | 54 | 9.2 | 22.7 | |||||||||||||||||||
135QJ32-68 | 68 | 11 | 26.28 | |||||||||||||||||||
135QJ32-80 | 80 | 13 | 30.87 | |||||||||||||||||||
135QJ32-92 | 92 | 15 | 35.62 | |||||||||||||||||||
135QJ32-104 | 104 | 18.5 | 43.12 | |||||||||||||||||||
135QJ40-46 | 40 | 46 | 2850 | 80 | 135ngenhla | 11 | 380 | 26.28 | 128 | |||||||||||||
135QJ40-54 | 54 | 13 | 30.87 | |||||||||||||||||||
135QJ40-62 | 62 | 15 | 35.62 | |||||||||||||||||||
135QJ40-84 | 84 | 18.5 | 43.12 |
Well submersible pump is a clean water pump, it is strictly prohibited to dig a new well to extract mud and silt. The voltage grade of the well pump is 380/50HZ, and the submersible motor with other voltage grades needs to be customized. Underground cables must be waterproof and must be equipped with starting equipment, such as distribution box, etc. Starting equipment should have common motor comprehensive protection functions, such as short circuit overload protection, phase loss protection, undervoltage protection, grounding protection and idling protection, etc. In abnormal cases, the protection device should be timely tripping. When installing and using the pump, the pump must be reliably grounded, and it is prohibited to push and pull the switch when the hands and feet are wet. Before installing and maintaining the pump, the power must be cut off, and the place where the pump is used must be clearly marked "anti-electric shock". Before going down the well or installing the pump, the motor must be filled with distilled water or clean cold water without corrosion, and the intake/drain bolts must be tightened. When testing the pump on the ground, water must be poured into the pump chamber to lubricate the rubber bearings. The instant start time should not exceed one second to check whether the direction is correct. When using the pump, the lift and flow range specified by the pump must be strictly followed to prevent the pump from having a large flow at low lift or a large pull at high lift, which will lead to serious wear and tear of the thrust bearing and other parts and components, and cause the motor to overload and burn out. After the pump is put into the well, the insulation resistance between the motor and the ground should be measured, which should not be less than 100MΩ. After the start, the voltage and current should be observed regularly, and the motor winding insulation should be checked to see if it meets the requirements; if the temperature of the pump storage location is below the freezing point, the water in the motor cavity should be drained to prevent the water in the motor cavity from freezing and damaging the motor due to low temperature.
Isethulo esifushane sesakhiwo: ingxenye yepompo yakhiwe ikakhulukazi i-pump shaft, i-impeller, igobolondo lokuphambukisa, i-rubber bear, hlola umzimba we-valve (izingxenye ozikhethela) nezinye izingxenye. , isihlalo esiphethe umhlahlandlela ophansi, i-stator, i-rotor, isihlalo esiphezulu somhlahlandlela, indandatho yesihlabathi, ingxenye yokungena kwamanzi, ikhebula nezinye izingxenye.
Izici eziyinhloko zomkhiqizo zihlanganisa:
I-1, I-motor iyi-motor egcwele amanzi emanzi e-submersible enezigaba ezintathu ze-asynchronous motor, i-motor cavity igcwele amanzi ahlanzekile, esetshenziselwa ukupholisa i-motor kanye nokugcoba i-bearing, ifilimu elawula ukucindezela phansi kwe-motor isetshenziselwa ukulungisa. ukunwetshwa kanye nomehluko wengcindezi yokufinyela kwamanzi ngaphakathi emzimbeni okubangelwa ukushintsha kokukhuphuka kwezinga lokushisa kwemoto.
I-2, Ukuze uvimbele isihlabathi esisemanzini omthombo ukuthi singangeni emotweni, indawo engaphezulu ye-motor shaft ifakwe izimpawu ezimbili zamafutha, futhi indandatho yesihlabathi ifakwe ukwakha isakhiwo sokuvimbela isihlabathi.
I-3, Ukuze uvimbele i-pump shaft ukuthi ingaqhubeki lapho iqala, i-pump shaft kanye ne-motor shaft ixhunywe ngokuhlanganisa, futhi i-top thrust bear ifakwe engxenyeni engezansi ye-motor.
4, Ukugcotshwa kwenjini kanye nephampu ephethe ukugcotshwa kwamanzi.
I-5, i-motor stator winding yenziwe ngocingo olusezingeni eliphezulu lwe-submersible motor winding, olusebenza kahle kakhulu.
6, Iphampu iklanywe yi-CAD yekhompyutha, enesakhiwo esilula nokusebenza okuhle kobuchwepheshe.

(1) Ukulungiselela ngaphambi kokufakwa:
1. Hlola ukuthi ingabe iphampu engaphansi kwamanzi iyahlangabezana yini nezimo zokusetshenziswa kanye nobubanzi obushiwo kubhukwana.
2. Usebenzisa i-obiect esindayo enobubanzi obulingana nobukhulu bedayamitha yangaphandle yephampu engaphansi kwamanzi, linganisa ukuthi i-inneldiameter yomthombo ingalingana nephampu engaphansi kwamanzi, futhi ulinganise ukuthi ukujula komthombo kuyahlangabezana yini nezidingo zokufakwa.
3. Hlola ukuthi umthombo uhlanzekile yini nokuthi amanzi omthombo anodaka. Ungalokothi usebenzise iphampu kagesi engaphansi kwamanzi ukugeza udaka lwepompo le-welor namanzi esihlabathi ukuze ugweme ukulimala ngaphambi kwesikhathi kwepompo kagesi engaphansi kwamanzi.
4. Hlola ukuthi indawo ye-welhead yokufaka i-welhead ifanelekile yini nokuthi ingakwazi yini ukumelana nekhwalithi yayo yonke iyunithi.
5. Hlola ukuthi izingxenye zepompo ezingaphansi kwamanzi ziphelele yini futhi zifakwe ngendlela efanele ngokomdwebo womhlangano osebhukwini Susa isikrini sokuhlunga bese uzungezisa ukuhlanganisa ukuze ubone ukuthi siyazungeza yini
6. Khipha isikulufu samanzi bese ugcwalisa imbobo yesithuthuthu ngamanzi ahlanzekile, angagqwali (qaphela. qiniseka ukuthi uyasigcwalisa), bese uqinisa isikrufu samanzi. Ngemuva kwamahora ayi-12 omjovo wamanzi, ukumelana nokufakwa kwenjini akufanele kube ngaphansi kuka-150M Q uma kulinganiswa netafula lokunyakazisa elingu-500V.
7. Cable joint, cut off a 120mm rubber sleeve from one end of the outgoing cable and the matching cable with an electrician's knifethen stagger the length of the three core wires in a stepped shape, peel off a 20mm copper core, scrape of the oxide layer on theoutside of the copper wire with a knife or sand cloth, and insert the two connected wire ends in palirs.After tying the layer tightly with fine copper wire, solder it thoroughly and firmly, and sand of any. burrs on the surface. Then, forthe three joints, use polyvester insulation tape to wrap them in a semi stacked manner for three lavers. Wrap the two ends of thewrapping layer tightywith nyion thread,and then use a semi stacked method to wrap the tape for three layers. Wrap the outellayer with high-pressure insulation tape for three layers. Finally, fold the threestrands together and repeatedly wrap them for fivelayers with high-pressure tape. Each layer must be tightly tied, and the interlayer joints must be tight and fimm to prevent water frompenetrating and damaging the insulation, After wrapping, soak in water at room temperature of 20 ’c for 12 hours, and measurethe insulation resistance with a shaking table, which should not be less than 100M Ω
Umdwebo wenqubo yokufaka izintambo zekhebula umi kanje:
8. Sebenzisa i-multimeter ukuze uhlole ukuthi izintambo zezigaba ezintathu zixhumekile yini nokuthi ukumelana ne-DC cishe kulinganiselwe.
9. Hlola ukuthi umthamo wesekethe kanye ne-transformer ugcwele ngokweqile, bese uxhuma iswishi yokuvikela ukulayisha ngokweqile noma okokusebenza kokuqala. Bheka Ithebula 2 ukuze uthole amamodeli athile, bese uThela ibhakede lamanzi empompini yamanzi usuka endaweni yepompo yamanzi ukuze ugcobe amabheringi erabha epompo, bese ubeka iphampu kagesi engaphansi kwamanzi iqonde futhi inganyakazi.Qala (ingabi ngaphezu komzuzwana owodwa) futhi uhlole ukuthi isiqondiso sokuqondisa siyahambisana yini nophawu lokuqondisa. Uma kungenjalo, shintsha noma yiziphi izixhumi ezimbili zekhebula lezigaba ezintathu.Bese ufaka isihlungi bese ulungiselela ukwehla ngomthombo. Uma isetshenziswa ngezikhathi ezikhethekile (njengemisele, imisele, imifula, amachibi, amachibi, njll.), iphampu kagesi kufanele ibekwe phansi ngendlela enokwethenjelwa.
(2)Imishini yokufaka namathuluzi:
1. Ipheya elilodwa lamaketango okuphakamisa amathani angaphezu kwamabili.
2. I-tripod enobude obuqondile obungekho ngaphansi kwamamitha amane.
3. Izintambo ezimbili ezilengayo (izintambo zocingo) ezingathwala isisindo esingaphezu kwethani elilodwa (zingathwala isisindo sesethi ephelele yamaphampu amanzi).
4. Faka amapheya amabili ezinsimbi (ama-splint).
5. Izikele, izando, izikulufu, amathuluzi kagesi nezinsimbi, njll.
(3)Ukufakwa kwephampu kagesi:
1. Umdwebo wokufakwa kwephampu kagesi engaphansi kwamanzi uboniswa kuMfanekiso 2. Ubukhulu obuthile bokufaka buboniswa kuThebula lesi-3 "Uhlu Lobukhulu Bokufakwa Kwephampu Kagesi Engaphansi".
2. Amaphampu kagesi angaphansi kwamanzi anekhanda elingaphansi kwamamitha angu-30 angaphakanyiselwa ngqo emthonjeni kusetshenziswa amapayipi nezintambo zocingo noma ezinye izintambo ze-hemp ezingathwala isisindo esigcwele sawo wonke umshini, amapayipi amanzi, namanzi emapayipini.
3. Amaphampu anekhanda elingaphezu kwamamitha angu-30 asebenzisa amapayipi ensimbi, futhi ukulandelana kokufakwayo kungokulandelayo:
①Sebenzisa i-clamp ukuze ubambe ingxenye engenhla yengxenye yepompo yamanzi (injini nepompo yamanzi kuxhunyiwe ngalesi sikhathi), yiphakamise ngeketango elilengayo, bese uyibopha kancane kancane emthonjeni uze ufake i-clamp ekhanda lomthombo bese ukhipha iketango elilengayo.
② Sebenzisa amanye ama-clamp ukuze ubambe ipayipi, uliphakamise ngeketango elilengayo eliqhele ngamasentimitha angu-15 ukusuka ku-flange, bese ulehlisa kancane. Phakathi kwe-flange yepayipi ne-pump flangeFaka iphedi yenjoloba endaweni bese uqinisa ipayipi bese umpompa ngokulinganayo ngamabhawodi, amantongomane namawasha asentwasahlobo.
③ Phakamisa iphampu engaphansi kwamanzi kancane, khipha intambo engxenyeni engenhla yepompo yamanzi, bopha intambo ngokuqinile epayipini lamanzi ngetheyiphu yepulasitiki, bese uyibopha kancane kancane kuze kube yilapho I-clamp ibekwe emthonjeni.
④Sebenzisa indlela efanayo ukubopha wonke amapayipi amanzi emthonjeni.
⑤Ngemva kokuthi ikhebuli ephumayo ixhunywe kusiwishi sokulawula, ixhunywa ekunikezeni amandla kwezigaba ezintathu.
(4) Izinto okufanele uziqaphele ngesikhathi sokufakwa:
1. Uma i-jamming itholakala phakathi nenqubo yokumpompa, vula noma udonse ipayipi lamanzi ukuze unqobe indawo yokuma. Uma izinyathelo ezihlukahlukene zingasebenzi, sicelaUngaphoqeleli iphampu phansi ukuze ugweme ukulimala kwepompo kagesi engaphansi kwamanzi kanye nomthombo.
2. Ngesikhathi sokufakwa, i-rubber pad kufanele ibekwe ku-flange yepayipi ngayinye futhi iqiniswe ngokulinganayo.
3. Lapho iphampu yamanzi yehliselwa emthonjeni, kufanele ibekwe phakathi nepayipi lomthombo ukuze ivimbele ukuthi iphampu ingagijimi odongeni lomthombo isikhathi eside, okubangela ukuba iphampu inyakaze futhi injini ishanele futhi ishise. .
4. Thola ukujula kwepompo yamanzi ukuya phansi komthombo ngokwesihlabathi esigelezayo kanye nezimo zodaka lomthombo. Ungangcwabi iphampu odakeni. Ibanga ukusuka empompini ukuya phansi komthombo ngokuvamile alikho ngaphansi kwamamitha amathathu (bheka uMdwebo 2).
5. Ukujula kokungena kwamanzi kwephampu yamanzi kufanele kungabi ngaphansi kwamamitha angu-1-1.5 ukusuka ezingeni lamanzi aguquguqukayo kuya endaweni yokungena kwamanzi (bheka uMdwebo 2). Uma kungenjalo, ama-bearings epompo yamanzi angase alimale kalula.
6. Ukuphakanyiswa kwepompo yamanzi angeke kube phansi kakhulu. Uma kungenjalo, i-valve yesango idinga ukufakwa epayipini lamanzi elisemthonjeni ukuze kulawulwe ukugeleza kwepompo endaweni elinganiselwe yokugeleza ukuze kuvinjwe injini ukuthi ingagcwali kakhulu futhi ishiswe ngenxa yamazinga amakhulu okugeleza.
7. Lapho ipompo yamanzi isebenza, ukuphuma kwamanzi kufanele kuqhubeke futhi ngisho, okwamanje kufanele kuzinzile (ngaphansi kwezimo zokusebenza ezilinganiselwe, ngokuvamile kungabi ngaphezu kuka-10% wamanje olinganiselwe), futhi akufanele kube nokudlidliza noma umsindo. Uma kukhona okungahambi kahle, umshini kufanele umiswe ukuze kutholwe imbangela futhi kuqedwe.
8. Lapho ufaka, naka ukumiswa kocingo lwe-motor grounding wire (bheka Umfanekiso 2). Uma ipayipi lamanzi liyipayipi lensimbi, lihole kusukela ku-wellhead clamp; lapho ipayipi lamanzi liyipayipi lepulasitiki, lihole ukusuka endaweni yokubeka phansi yepompo kagesi.
- I-1.Ukufakwa kwepompo ye-submersible kuqediwe, hlola kabusha ukumelana nokufakwa kwe-insulation kanye nesigaba sesithathu sokuqhuba kusuka ekushintsheni, hlola ithuluzi bese uqala iphutha lokuxhumeka kwemishini, uma kungekho nkinga, ungaqala isilingo, ngemuva kokuqala kwethuluzi. okubonisa ukufundwa ukuthi kungaphezu kwe-nameplate eshiwo ukulinganisa kwe-voltage kanye neyamanje, bheka umsindo wepompo kanye nokwenzeka kokudlidliza, konke kujwayelekile kungafakwa ekusebenzeni.
- 2.Ukusebenza kokuqala kwepompo amahora amane, kufanele kuvalwe ngokushesha ukuhlola ukumelana nokushisa kwe-motor, inani akufanele libe ngaphansi kuka-0.5 megaohm.
- 3.Ngemva kokuvalwa kwephampu, kufanele kuqalwe ngemuva kwesikhawu semizuzu emihlanu, ukuvimbela ikholomu yamanzi epayipini ingenayo i-reflux ngokuphelele ebangelwa amandla amanje amaningi kanye nokutubeka.
- I-4.Ngemva kwepompo ekusebenzeni okujwayelekile, ukuze kunwetshwe impilo yayo yesevisi, ukuhlola i-voltage yokuhlinzeka, ukusebenza kwamanje kanye nokumelana nokufakwa kwe-insulation kuvamile, uma kutholakala isimo esilandelayo, kufanele kuvaliwe ngokushesha ukuxazulula izinkinga.
- - esimweni esilinganiselwe, okwamanje kungaphezu kuka-20%.
- - Izinga lamanzi aguquguqukayo esigabeni sokungena kwamanzi, okubangela amanzi ngezikhathi ezithile.
- - iphampu engaphansi kwamanzi ukudlidliza noma umsindo oqinile.
- - I-voltage yokuhlinzeka ingaphansi kuka-340 volts.
- - i-fuse yashisa isigaba.
- - ukulimala kwepayipi lamanzi.
- - Injini yokumelana nokushisa okushisayo ingaphansi kuka-0.5 megaohm.
- 5. Ukuhlukaniswa kweyunithi:
- (1)untie cable tether, remove the pipeline part, remove the wire plate.
- (2)screw down the water bolt, put out the motor cavity water.
- (3)remove the filter, loosening the coupling fixed motor shaft fixed screw.
- (4)screw down the inlet joint and motor bolt, the pump and motor separate (separation attention will unit mat flat, prevent the pump shaft bending)
- (5)pump disassembly sequence is: (see figure 1) inlet joint, impeller, diversion shell, impeller...... check valve body, dismantle the impeller with special tools will first fix the conical sleeve loosening, the disassembly process to avoid the pump shaft bending and each bump.
- (6)motor disassembly process is: (see figure 1) the motor placed on the platform, from the bottom of the motor in turn removed double head bolt (pull rod bolt) on the nut, base, shaft head lock nut, thrust plate, key, lower guide bearing seat, double head bolt, and then take out the rotor (pay attention not to damage the wire package) finally removed the connecting section and upper guide bearing seat.
- (7)unit assembly: before assembly should be the parts of the rust, dirt clean, each mating surface and fastener coated with sealant, and then in turn according to the reverse sequence of disassembly assembly (after assembly motor shaft up and down momentum is about one millimeter), after assembly, the coupling should be flexible, and then the filter screen test machine.
- 6.submersible pump every operation for a year, or less than a year of operation but the submersible time has reached two years, should be proposed in accordance with the fifth paragraph of the well to be dismantled and repaired, replace the worn parts.
This product is a brand new submersible pump, suitable for a variety of occasions for pump work needs. In order to ensure the long-term use and stable performance of the product, the user needs to clean the water in the motor cavity of the pump after use (especially in winter to prevent the motor from freezing), coil up and tie the cable, and then store the product in an environment free of corrosive substances and gases, with the temperature kept below 40 °C in the room. In addition, if the submersible pump is not used for a long time, special attention should be paid to prevent rust to protect the service life of the product. This submersible pump will provide users with convenient and efficient pump solutions to ensure the safe and stable operation of the pump equipment.
- Impeller
- Umkhono we-shaft
- Umkhono we-rubber shaft
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Indandatho yokuvala
01 Ukuphuza amanzi omthombo ojulile
02 Ukuhlinzekwa kwamanzi asezingeni eliphezulu
03 amanzi asezintabeni
04 amanzi ombhoshongo
05 Ukuchelela kwezolimo
06 ukuchelela engadini
07 amanzi omfula
08 amanzi asekhaya