This product adopts variable frequency winding design, ensuring the motor stable long-term conversion operation between 1HZ-50HZ. Its characteristics of energy saving and prolonged service life make it an ideal choice. Through this design, users can achieve efficient energy utilization while prolonging the service life of the product, which meets the modern society's demand for environmental protection and sustainable development. Whether for industrial production or home use, this product will bring users more convenient and efficient experience, becoming the leading choice in the industry.
This three-phase AC 380V (tolerance ± 5%), 50HZ (tolerance ± 1%) submersible pump is a reliable pump equipment, can be used in a variety of application scenarios. In terms of the use of conditions, to ensure good water quality, including water temperature is not higher than 20 °C, solid impurities content is not more than 0.01%, pH value is 6.5-8.5, hydrogen sulfide content is not more than 1.5mg / L, chloride ion content is not more than 400mg / L. The motor adopts a closed or water-filled wet structure, the inner cavity must be filled with clean water before use to prevent false filling. The pump must be completely immersed in water, and the immersion depth shall not exceed 70m, the distance from the bottom of the pump and the bottom of the well shall not be less than 3m. The water source shall meet the requirements of the pump inflow and continuous operation, the pump water control in the rated flow of 0.7-1.2 times. The well must be vertical, the pump can not be used horizontally or tilted, only vertical use. The pump must be equipped with cables and external overload protection device as required. It is strictly prohibited to dry turn the pump test. The design of the equipment is safe and reliable, meets the use of standards, is an indispensable ideal choice in all kinds of engineering projects and industrial applications.
Modail | Sruth (m3/h) | Ceann (m) |
Rotatingspeed(change/point) | Pumpa uisge (%) | Ar-a-mach trast-thomhas (mm) |
Gu math iomchaidh trast-thomhas (mm) |
Rangaichte power(KW) |
Rangaichte bholtaids (V) |
Rangaichte sruth (A) |
Èifeachdas motair (%) | cumhachd factorcosφ | Aonad Meud radial (mm) |
Facal | |||||||||
200QJ20-40 | 20 | 40 | 2850 | 66 | 50 | 200gu h-àrd | 4 | 380 | 10.1 | 76.0 | 0.79 | 184 | ||||||||||
200QJ20-54 | 54 | 5.5 | 13.6 | 77.0 | 0.8 | |||||||||||||||||
200QJ20-81 | 81 | 7.5 | 18.0 | 78.0 | 0.81 | |||||||||||||||||
200QJ20-93 | 93 | 9.2 | 21.7 | 78.5 | 0.82 | |||||||||||||||||
200QJ20-108 | 108 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ20-121 | 121 | 13 | 29.8 | 80.0 | 0.83 | |||||||||||||||||
200QJ20-148 | 148 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ20-175 | 175 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ20-202 | 202 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ20-243 | 243 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ20-270 | 270 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ20-360 | 360 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ20-442 | 442 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ25-28 | 25 | 28 | 2850 | 68 | 65 | 200gu h-àrd | 4 | 380 | 10.1 | 76.0 | 0.79 | 184 | ||||||||||
200QJ25-42 | 42 | 5.5 | 13.6 | 77.0 | 0.8 | |||||||||||||||||
200QJ25-56 | 56 | 7.5 | 18.0 | 78.0 | 0.81 | |||||||||||||||||
200QJ25-70 | 70 | 9.2 | 21.7 | 78.5 | 0.82 | |||||||||||||||||
200QJ25-98 | 98 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ25-112 | 25 | 112 | 2850 | 68 | 65 | 200gu h-àrd | 13 | 380 | 29.8 | 80.0 | 0.83 | 184 | ||||||||||
200QJ25-126 | 126 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ25-154 | 154 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ25-182 | 182 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ25-210 | 210 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ25-252 | 252 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ25-308 | 308 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ25-378 | 378 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ32-26 | 32 | 26 | 2850 | 70 | 80 | 200gu h-àrd | 4 | 380 | 10.1 | 76.0 | 0.79 | 184 | ||||||||||
200QJ32-39 | 39 | 5.5 | 13.6 | 77.0 | 0.8 | |||||||||||||||||
200QJ32-52 | 52 | 7.5 | 18.0 | 78.0 | 0.81 | |||||||||||||||||
200QJ32-65 | 65 | 9.2 | 21.7 | 78.5 | 0.82 | |||||||||||||||||
200QJ32-78 | 78 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ32-91 | 91 | 13 | 29.8 | 80.0 | 0.83 | |||||||||||||||||
200QJ32-104 | 104 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ32-130 | 130 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ32-143 | 143 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ32-169 | 169 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ32-195 | 195 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ32-247 | 247 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ32-299 | 299 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ40-26 | 40 | 26 | 2850 | 72 | 80 | 200gu h-àrd | 5.5 | 380 | 13.6 | 77.0 | 0.8 | 184 | ||||||||||
200QJ40-39 | 39 | 7.5 | 18.0 | 78.0 | 0.81 | |||||||||||||||||
200QJ40-52 | 52 | 9.2 | 21.7 | 78.5 | 0.82 | |||||||||||||||||
200QJ40-65 | 65 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ40-78 | 78 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ40-104 | 104 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ40-117 | 117 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ40-143 | 143 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ40-169 | 169 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ40-208 | 208 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ40-247 | 247 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ50-26 | 50 | 26 | 2850 | 74 | 80 | 200gu h-àrd | 5.5 | 380 | 13.6 | 77.0 | 0.8 | 184 | ||||||||||
200QJ50-39 | 39 | 9.2 | 21.7 | 78.5 | 0.82 | |||||||||||||||||
200QJ50-52 | 52 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ50-65 | 65 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ50-78 | 78 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ50-91 | 91 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ50-104 | 104 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ50-130 | 130 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ50-156 | 156 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ50-208 | 208 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ63-24 | 63 | 24 | 2850 | 74 | 80 | 200gu h-àrd | 7.5 | 380 | 18.0 | 78.0 | 0.81 | 184 | ||||||||||
200QJ63-36 | 36 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ63-60 | 60 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ63-72 | 72 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ63-84 | 84 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ63-96 | 96 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ63-120 | 120 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ63-144 | 144 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ80-22 | 80 | 22 | 2850 | 75 | 100 | 200gu h-àrd | 7.5 | 380 | 18.0 | 78.0 | 0.81 | 184 | ||||||||||
200QJ80-33 | 33 | 11 | 25.8 | 79.0 | 0.82 | |||||||||||||||||
200QJ80-44 | 44 | 15 | 33.9 | 81.0 | 0.83 | |||||||||||||||||
200QJ80-55 | 55 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ80-66 | 66 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ80-88 | 88 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ80-99 | 99 | 37 | 79.7 | 84.0 | 0.84 | |||||||||||||||||
200QJ80-121 | 121 | 45 | 96.9 | 84.0 | 0.84 | |||||||||||||||||
200QJ100-18 | 100 | 18 | 2850 | 75 | 100 | 200gu h-àrd | 9.2 | 380 | 21.7 | 78.5 | 0.82 | 184 | ||||||||||
200QJ100-27 | 27 | 13 | 29.8 | 80.0 | 0.83 | |||||||||||||||||
200QJ100-36 | 36 | 18.5 | 41.6 | 81.5 | 0.83 | |||||||||||||||||
200QJ100-45 | 45 | 22 | 48.2 | 82.5 | 0.84 | |||||||||||||||||
200QJ100-54 | 54 | 25 | 54.5 | 83.0 | 0.84 | |||||||||||||||||
200QJ100-63 | 63 | 30 | 65.4 | 83.0 | 0.84 | |||||||||||||||||
200QJ100-72 | 100 | 72 | 2850 | 75 | 100 | 200gu h-àrd | 37 | 380 | 79.7 | 84.0 | 0.84 | 184 | ||||||||||
200QJ100-90 | 90 | 45 | 96.9 | 84.0 | 0.84 |
This well submersible pump is designed for clean water. It is strictly prohibited to discharge sediment and mud in the newly drilled well. The voltage standard of the submersible pump is 380/50HZ. Other voltage levels of the submersible motor need to be customized. Underground cables must be waterproof and equipped with start-up equipment, such as distribution box, etc. Start-up equipment should have common motor comprehensive protection functions, such as short circuit overload protection, phase loss protection, undervoltage protection, grounding protection, idling protection, etc., so that the protection device can trip in time in case of abnormal conditions. The pump must be reliably grounded during installation and use. It is prohibited to push and pull the switch when hands and feet are wet. The power supply must be cut off before installation and maintenance of the pump. An obvious "anti-electric shock" sign must be set up where the pump is used. Before going down the well or installation, the inner cavity of the motor must be filled with distilled water or non-corrosive clean cold water, and the water / drain bolts must be tightened. When testing the pump on the ground, water must be injected into the pump chamber to lubricate the rubber bearings. The instantaneous start time shall not exceed one second to check whether the steering is correct, as indicated by the steering indicator. Pay attention to safety and ensure that the pump is erected to prevent overturning and causing injury. Strictly in accordance with the provisions of the pump lift and flow range of use, to prevent the pump with a large flow at low lift, or at high lift with a large pull, resulting in extreme wear of thrust bearings and other parts, the motor overload burnout. After the pump into the well, the need to measure the insulation resistance of the motor and the ground, not less than 100MΩ. After the start, regular observation of voltage and current, check whether the motor winding insulation meets the requirements of the provisions. If the temperature of the storage location is lower than 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.
Ro-ràdh goirid den structar: tha pàirt pumpa sa mhòr-chuid air a dhèanamh suas de chrann pumpa, impeller, slige gluasaid, giùlan rubair, bodhaig bhalbhaichean seic (pàirtean roghainneil) agus co-phàirtean eile. Tha pàirt motair sa mhòr-chuid air a dhèanamh suas de bhunait, film riaghlaidh cuideam, giùlan smeòrach, truinnsear smeòrach, cathair giùlain iùil nas ìsle, stator, rotor, cathair stiùiridh àrd, fàinne gainmhich, roinn inlet uisge, càball agus co-phàirtean eile.
Am measg prìomh fheartan an toraidh tha:
1.The motor is a water-filled wet submersible three-phase asynchronous motor, the motor cavity is full of clean water, used to cool the motor and lubricate the bearing, the pressure regulating film at the bottom of the motor is used to adjust the expansion and contraction pressure difference of the water inside the body caused by the change of the temperature rise of the motor.
2, Gus casg a chuir air a’ ghainmhich ann an uisge an tobair bho bhith a ’dol a-steach don motair, tha dà ròn ola aig ceann àrd a’ chrann motair, agus tha fàinne gainmhich air a chuir a-steach gus structar casg gainmhich a chruthachadh.
3, Gus casg a chuir air a ’chrann pumpa bho bhith a’ ruith suas nuair a thòisicheas e, tha an cas pumpa agus an cas motair ceangailte le ceangal, agus tha giùlan smeòrach àrd air a chuir a-steach aig pàirt ìosal an motair.
4, Is e lubrication an motair agus an giùlan pumpa lubrication uisge.
5, Tha an lùb stator motair air a dhèanamh de uèir lùbach motair àrd-inbheach, le coileanadh insulation àrd.
6, Tha am pumpa air a dhealbhadh le coimpiutair CAD, le structar sìmplidh agus deagh choileanadh teignigeach.

(1) Ag ullachadh mus stàladh:
1. Dèan cinnteach a bheil am pumpa fon uisge a’ coinneachadh ris na cumhaichean cleachdaidh agus an raon a tha air a shònrachadh san leabhar-làimhe.
2. A’ cleachdadh inneal trom le trast-thomhas co-ionann ris an trast-thomhas a-muigh as àirde den phump a tha fon uisge, tomhais an urrainn dha trast-thomhas a-staigh an tobair a bhith a’ freagairt air a’ phumpa fon uisge, agus tomhas a bheil doimhneachd an tobair a’ coinneachadh ri riatanasan an stàlaidh.
3. Dèan cinnteach a bheil toll an tobair glan agus a bheil uisge an tobair turbid. Na cleachd pumpa dealain fon uisge gu bràth gus poll pumpa welor agus uisge gainmhich a nighe gus milleadh ro-luath air a’ phump dealain fon uisge a sheachnadh.
4. Dèan cinnteach a bheil suidheachadh a’ chlamp stàlaidh welhead freagarrach agus an urrainn dha seasamh ri càileachd an aonaid gu lèir
5. Dèan cinnteach a bheil na pàirtean pumpa fon uisge coileanta agus air an stàladh ceart a rèir an diagram cruinneachaidh san leabhar-làimhe Thoir air falbh an scrion sìoltachain agus cuairteachadh a’ chàraid gus faicinn a bheil e a ’tionndadh gu sùbailte
6. Unscrew an sgriubha uisge agus lìon a’ chuas motair le uisge glan, neo-chreimneach (nota. bi cinnteach gun cuir thu a-steach e), agus an uairsin teannachadh an sgriubha uisge. Às deidh 12 uair de in-stealladh uisge, cha bu chòir an aghaidh insulation an motair a bhith nas ìsle na 150M Q nuair a thèid a thomhas le clàr crathadh 500V.
7. Ceangal càball, gearradh dheth muinchill rubair 120mm bho aon cheann den chàball a tha a’ dol a-mach agus an càball maidsidh le sgian an dealain an uairsin cuir fad nan trì prìomh uèirichean ann an cumadh ceum air cheum, thoir air falbh cridhe copair 20mm, sgrìob an ocsaid còmhdach air taobh a-muigh na h-uèir copar le sgian no clò gainmhich, agus cuir a-steach an dà cheann uèir ceangailte ann am palirs.An dèidh a bhith a 'ceangal an t-sreath gu teann le uèir copar mìn, sèididh e gu mionaideach agus gu daingeann, agus gainmheach sam bith. burrs air an uachdar. An uairsin, a-mach air na trì joints, cleachd teip insulation polyvester gus am pasgadh ann an dòigh leth-chruach airson trì lòchrain. Paisg dà cheann an t-sreath còmhdaich gu teann le snàithlean nyion, agus an uairsin cleachd dòigh leth-chruach gus an teip a phasgadh airson trì sreathan. Còmhdaich an còmhdach a-muigh le teip insulation le cuideam àrd airson trì sreathan. Mu dheireadh, paisg na trì sreathan ri chèile agus paisg iad a-rithist airson còig sreathan le teip le cuideam àrd. Feumaidh gach còmhdach a bhith air a cheangal gu teann, agus feumaidh na joints interlayer a bhith teann agus fmm gus casg a chuir air uisge bho bhith a ’drùidheadh agus a’ dèanamh cron air an insulation, Às deidh a bhith air a phasgadh, bog ann an uisge aig teòthachd an t-seòmair 20 ° c airson 12 uair, agus tomhas an aghaidh insulation le bòrd crathadh. , nach bu chòir a bhith nas lugha na 100M Ω
Tha an diagram pròiseas sreangadh càball ceangailte mar a leanas:
8. Cleachd multimeter gus dèanamh cinnteach a bheil na h-uèirichean trì-ìrean ceangailte agus a bheil an aghaidh DC timcheall air cothromach.
9. Dèan cinnteach a bheil cus luchd air a’ chuairt agus comas an cruth-atharrachaidh, agus an uairsin ceangail an tionndadh dìon cus cuideim no an uidheamachd tòiseachaidh. Faic Clàr 2 airson modalan sònraichte, agus an uairsin dòirt bucaid uisge a-steach don phump uisge bhon ionad pumpa uisge gus na giùlan rubair a lubricadh anns a’ phump, agus an uairsin cuir am pumpa dealain fon uisge gu dìreach agus gu seasmhach.Start (gun a bhith nas fhaide na aon diog). agus dèan cinnteach a bheil an stiùireadh stiùiridh co-chòrdail ris an t-soidhne stiùiridh. Mura h-eil, suaip dà cheangail den chàball trì-ìre.Then stàlaich an criathrag agus ullaich airson a dhol sìos an tobar. Ma thèid a chleachdadh aig amannan sònraichte (leithid dìgean, dìgean, aibhnichean, lochan, lòin, msaa), feumaidh am pumpa dealain a bhith air a chuir air bhonn gu h-earbsach.
(2) Uidheam agus innealan stàlaidh:
1. Aon phaidhir de shlabhraidhean togail airson barrachd air dà thunna.
2. Tripod le àirde dìreach nach eil nas lugha na ceithir meatairean.
3. Dà ròp crochte (ròpaichean uèir) as urrainn cuideam nas motha na aon tunna a ghiùlan (faodaidh cuideam seata iomlan de phumpaichean uisge a ghiùlan).
4. Stàlaich dà phaidhir de clamps (splints).
5. Wrenches, ùird, screwdrivers, innealan dealain agus ionnstramaidean, msaa.
(3) Stàladh pumpa dealain:
1. Tha an diagram stàlaidh den phump dealain submersible air a shealltainn ann am Figear 2. Tha na tomhasan stàlaidh sònraichte air an sealltainn ann an Clàr 3 "Liosta de mheudan stàlaidh a' phump dealain fon uisge".
2. Faodar pumpaichean dealain fon uisge le ceann nas lugha na 30 meatair a thogail gu dìreach a-steach don tobar le bhith a’ cleachdadh phìoban agus ròpaichean uèir no ròpannan hemp eile as urrainn làn chuideam an inneil gu lèir, pìoban uisge, agus uisge anns na pìoban a ghiùlan.
3. Bidh pumpaichean le ceann nas motha na 30 meatair a 'cleachdadh pìoban stàilinn, agus tha an sreath stàlaidh mar a leanas:
① Cleachd clamp gus ceann shuas pàirt a’ phump uisge a chlampadh (tha am pumpa motair is uisge air a cheangal aig an àm seo), tog e le slabhraidh crochte, agus ceangail gu slaodach a-steach don tobar gus an cuir thu an clamp air ceann an tobair agus thoir air falbh an slabhraidh crochte.
② Cleachd paidhir clamps eile gus pìob a chlampadh, tog e le slabhraidh crochte 15 cm air falbh bhon flange, agus lughdaich e gu slaodach. Eadar flange pìoba agus flange pumpa Cuir am pasgan rubair na àite agus teannachadh a’ phìob agus am pumpa gu cothromach le boltaichean, cnothan agus nigheadairean earraich.
③ Tog beagan am pumpa fon uisge, thoir air falbh an clamp air ceann shuas a’ phump uisge, ceangail an càball gu daingeann ris a’ phìob uisge le teip plastaig, agus ceangail sìos e gu slaodach gus an tèid an clamp a chuir aig ceann an tobair.
④ Cleachd an aon dòigh airson a h-uile pìob uisge a cheangal a-steach don tobar.
⑤ Às deidh don chàball luaidhe a bhith ceangailte ris an suidse smachd, tha e ceangailte ris an t-solar cumhachd trì ìrean.
(4) Rudan ri thoirt fa-near aig àm an stàlaidh:
1. Ma lorgar iongantas jamming tron phròiseas pumpaidh, tionndaidh no tarraing am pìob uisge gus faighinn thairis air a’ phuing jamming. Mura h-eil grunn cheumannan ag obair fhathast, feuch nach toir thu air a’ phump sìos gus milleadh a sheachnadh air a’ phump dealain fon uisge agus an tobar.
2. Rè an stàladh, bu chòir ceap rubair a chuir aig flange gach pìoba agus a theannachadh gu cothromach.
3. Nuair a thèid am pumpa uisge a leigeil a-steach don tobar, bu chòir a chuir ann am meadhan pìob an tobair gus casg a chuir air a ’phump bho bhith a’ ruith an-aghaidh balla an tobair airson ùine mhòr, ag adhbhrachadh gum bi am pumpa a ’crith agus an motair a’ sguabadh agus a losgadh .
4. Obraich a-mach doimhneachd a' phump uisge gu bonn an tobair a rèir suidheachadh gainmhich is eabar an tobair. Na cuir a-steach am pumpa san eabar. Mar as trice chan eil an astar bhon phump uisge gu bonn an tobair nas lugha na 3 meatairean (faic Figear 2).
5. Cha bu chòir doimhneachd inntrigidh uisge a’ phump uisge a bhith nas lugha na 1-1.5 meatairean bhon ìre uisge fiùghantach chun nód uisge a-steach (faic Figear 2). Rud eile, dh ’fhaodadh na giùlan pumpa uisge a bhith air am milleadh gu furasta.
6. Chan urrainn togail a' phump uisge a bhith ro ìosal. Rud eile, feumar bhalbhaichean geata a chuir a-steach air loidhne-phìoban uisge ceann an tobair gus smachd a chumail air sruthadh a’ phump aig a’ phuing sruthadh ìre gus casg a chuir air a’ motair a bhith air a luchdachadh cus agus a losgadh a-mach air sgàth ìrean sruth mòr.
7. Nuair a bhios am pumpa uisge a 'ruith, bu chòir an toradh uisge a bhith leantainneach agus eadhon, bu chòir an sruth a bhith seasmhach (fo chumhachan obrach comharraichte, mar as trice gun a bhith nas fhaide na 10% den t-sruth), agus cha bu chòir crith no fuaim a bhith ann. Ma tha ana-cainnt sam bith ann, bu chòir stad a chuir air an inneal gus faighinn a-mach an adhbhar agus cuir às dha.
8. Nuair a bhios tu a’ stàladh, thoir aire do shuidheachadh an uèir talmhainn motair (faic Figear 2). Nuair a tha am pìob uisge na phìob stàilinn, stiùir e bhon chlamp ceann tobair; nuair a tha am pìob uisge na phìob plastaig, stiùir e bho chomharra bunaiteach a’ phump dealain.
- 1. Às deidh a’ phump submersible a chuir a-steach, thoir sùil air an aghaidh insulation agus an giùlan trì-ìrean bhon suidse a-rithist, dèan cinnteach a bheil an ionnstramaid agus ceangal an uidheamachd tòiseachaidh ceàrr, mura h-eil duilgheadas ann, faodar an inneal deuchainn a thòiseachadh, agus faic a bheil leughaidhean comharran an ionnstramaid a’ dol thairis air a’ bholtaids ìre agus an t-sruth a tha air a shònrachadh air a’ chlàr-ainm às deidh an tòiseachadh, agus thoir an aire a bheil fuaim is crith aig a’ phump, agus cuir an gnìomh ma tha a h-uile càil àbhaisteach.
- 2. Às deidh a’ chiad obrachadh den phump airson ceithir uairean a thìde, bu chòir an motair a dhùnadh sìos gus deuchainn a dhèanamh air an aghaidh insulation teirmeach gu sgiobalta, agus cha bu chòir a luach a bhith nas ìsle na 0.5 megaohm.
- 3. Às deidh am pumpa a dhùnadh, bu chòir a thòiseachadh às deidh còig mionaidean gus casg a chuir air a’ cholbh uisge sa phìob bho bhith air ath-shruthadh gu tur agus ag adhbhrachadh cus sruth motair agus losgadh.
- 4. Às deidh don phump a bhith air a chuir a-steach gu obrachadh àbhaisteach, gus a bheatha seirbheis a leudachadh, feumar dèanamh cinnteach a bheil bholtachd solair, sruth-obrach agus strì an aghaidh insulation àbhaisteach gu cunbhalach. Ma lorgar na cumhaichean a leanas, bu chòir am pumpa a dhùnadh sìos sa bhad gus fuasgladh fhaighinn air duilgheadasan.
- - Anns an t-suidheachadh comharraichte, tha an sruth nas àirde na 20%.
- - Bidh an ìre uisge fiùghantach a’ tuiteam chun roinn uisge a-steach, ag adhbhrachadh uisge eadar-amail.
- - Tha fìor chrith no fuaim aig a’ phump a tha fon uisge.
- - Tha an bholtadh solair nas ìsle na 340 volts.
- 5.A fuse is burned out.
- 6.The water supply pipe is damaged.
- 7.The motor's thermal insulation resistance is lower than 0.5 megaohm.
- Unit disassembly:
- 1.Untie the cable tie, remove the pipeline part, and remove the wire plate.
- 2.screw down the water bolt, put the water in the motor chamber.
- 3.remove the filter, loose the fixed screw on the coupling to fix the motor shaft.
- 4.screw down the bolt connecting the water inlet section with the motor, and separate the pump from the motor (pay attention to the unit cushion when separating, to prevent the bending of the pump shaft)
- 5.the disassembly sequence of the pump is: (see figure 1) water inlet section, impeller, diversion shell, impeller...... check valve body, when removing the impeller, use special tools to loosen the conical sleeve of the fixed impeller first, and avoid bending and bruising the pump shaft in the process of disassembly.
- 6.the disassembly process of the motor is: (see figure 1) place the motor on the platform, and remove the nuts, base, shaft head locking nut, thrust plate, key, lower guide bearing seat and double head bolt from the bottom of the motor in turn, and then take out the rotor (pay attention not to damage the wire package) and finally remove the connecting section and upper guide bearing seat.
- 7.unit assembly: before assembly, the rust and dirt of the parts should be cleaned, and the mating surface and fasteners coated with sealant, and then assembled in the opposite order of disassembly (the motor shaft moves up and down after assembly for about one millimeter), after assembly, the coupling should be flexible, and then the filter screen test machine. Submersible pumps shall be taken out of the well for dismantling and maintenance according to Article 5 after a year of operation, or less than a year of operation but two years of diving time, and the worn parts shall be replaced.
1, cuir a-mach an uisge anns a’ chuas motair (gu sònraichte sa gheamhradh gus casg a chuir air an motair bho reothadh), agus ceangail an càball gu math.
2, stòradh ann an seòmar a-staigh às aonais stuthan creimneach agus gasaichean, le teòthachd nas ìsle na 40 ° C.
3, bu chòir cleachdadh fad-ùine aire a thoirt do chasg meirge bho phumpaichean fon uisge.
- Impeller
- Muinchille shaft
- Muinchill rubair
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Cearcall ròin
01 Tobar uisge domhainn
02 Solar uisge àrd
03 solar uisge beinne
04 tùr uisge
05 Uisgeachadh àiteachais
06 uisgeachadh gàrraidh
07 toirt a-steach uisge aibhne
08 uisge dachaigheil