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.
Mionsamhail | Sreabhadh (m3/u) | Ceann (m) |
Rotatingspeed(change/point) | Caidéal Uisce(%) | Asraon trastomhas (mm) |
Infheidhme go maith trastomhas (mm) |
Rátáilte power(KW) |
Rátáilte voltas(V) |
Rátáilte sruth(A) |
Mótaréifeachtúlacht (%) | fachtóir cumhachta | Aonad Uasmhéid gathach(mm) |
Athmharc | |||||||||
200QJ20-40 | 20 | 40 | 2850 | 66 | 50 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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 | 200os cionn | 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.
Réamhrá gearr ar an struchtúr: tá cuid caidéil comhdhéanta den chuid is mó de seafta caidéil, impeller, bhlaosc atreoraithe, imthacaí rubair, comhlacht comhla seiceála (páirteanna roghnacha) agus comhpháirteanna eile. Tá an chuid mótair comhdhéanta den chuid is mó de bhonn, scannán a rialaíonn brú, imthacaí sá, pláta sá, suíochán treorach níos ísle, stator, rotor, suíochán treorach uachtarach, fáinne gaineamh, alt inlet uisce, cábla agus comhpháirteanna eile.
Áirítear ar phríomhghnéithe an táirge:
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, Chun an gaineamh san uisce tobair a chosc ó dhul isteach sa mhótar, tá dhá shéala ola feistithe ag ceann uachtarach an seafta mótair, agus tá fáinne gaineamh suiteáilte chun struchtúr coiscthe gaineamh a fhoirmiú.
3, D'fhonn cosc a chur ar an seafta caidéil ó bheith ag rith suas agus é ag tosú, tá an seafta caidéil agus an seafta mótair ceangailte trí chúpláil, agus tá imthacaí sá uachtair suiteáilte ag an gcuid íochtair den mhótar.
4, Is é lubrication an mhótair agus an imthacaí caidéil ná lubrication uisce.
5, Tá an foirceannadh stator mótair déanta as sreang foirceannadh mótair intumtha ardchaighdeáin, le feidhmíocht inslithe ard.
6, Tá an caidéal deartha ag ríomhaire CAD, le struchtúr simplí agus dea-fheidhmíocht theicniúil.

(1) Ullmhúchán roimh shuiteáil:
1. Seiceáil an gcomhlíonann an caidéal báite na coinníollacha úsáide agus an raon feidhme a shonraítear sa lámhleabhar.
2. Ag baint úsáide as obiect trom le trastomhas comhionann le trastomhas seachtrach uasta an chaidéil báite, tomhais an féidir le trastomhas inneldiameter an tobair an caidéal báite a fheistiú, agus tomhas an gcomhlíonann doimhneacht an tobair na ceanglais suiteála.
3. Seiceáil an bhfuil tolladh an tobair glan agus an bhfuil uisce an tobair suaite. Ná húsáid caidéal leictreach intumtha riamh chun láib agus gaineamh an chaidéil welor a ní chun damáiste roimh am a sheachaint don chaidéal leictreach intumtha.
4. Seiceáil an bhfuil suíomh an clamp suiteála welhead oiriúnach agus an féidir leis cáilíocht an aonaid iomláin a sheasamh
5. Seiceáil an bhfuil na comhpháirteanna caidéil báite críochnaithe agus suiteáilte i gceart de réir an léaráid tionóil sa lámhleabhar Bain an scáileán scagaire agus rothlaigh an cúpláil féachaint an rothlaíonn sé go solúbtha
6. Díscriú an scriú uisce agus líon an cuas mótair le huisce glan, neamhchreimneach (tabhair faoi deara. Bí cinnte é a chomhdú), ansin déan an scriú uisce níos doichte. Tar éis 12 uair an chloig d'instealladh uisce, níor chóir go mbeadh friotaíocht inslithe an mhótair níos lú ná 150M Q nuair a thomhaistear é le tábla croith 500V.
7. Comhpháirteach cábla, gearrtha as muinchille rubair 120mm ó thaobh amháin den chábla atá ag dul as oifig agus an cábla meaitseála le scian leictreoir ansin tuislithe fad na trí chroí-shreanga i gcruth céimnithe, craiceann croí copair 20mm, scrape an ocsaíd. ciseal ar an taobh amuigh den sreang copair le scian nó éadach gaineamh, agus cuir isteach an dá foircinn sreang ceangailte i palirs.Tar éis ceangail an ciseal go docht le sreang copar fíneáil, sádráil sé go maith agus go daingean, agus gaineamh ar bith. burrs ar an dromchla. Ansin, ar aghaidh chuig na trí alt, bain úsáid as téip inslithe polaistiréire chun iad a chuimilt go leathchruach ar feadh trí lasca. Fillte an dá cheann den chiseal fillte go docht le snáithe nyion, agus ansin úsáid modh leathchruachta chun an téip a chuimilt ar feadh trí shraith. Wrap an outellayer le ard-bhrú téip inslithe ar feadh trí shraith. Ar deireadh, fillte na trí shnáithe le chéile agus fillte arís agus arís eile ar feadh cúig sraitheanna le téip ardbhrú. Ní mór gach ciseal a bheith ceangailte go docht, agus ní mór na hailt interlayer a bheith daingean agus fimm chun uisce a chosc ó treá agus damáiste a dhéanamh don insliú, Tar éis timfhilleadh, soak in uisce ag teocht an tseomra de 20 'c ar feadh 12 uair an chloig, agus friotaíocht inslithe a thomhas le tábla chroitheadh. , nár chóir a bheith níos lú ná 100M Ω
Is é seo a leanas an léaráid próiseas sreangú cábla ceangailte:
8. Bain úsáid as multimeter chun a sheiceáil an bhfuil na sreanga trí chéim ceangailte agus an bhfuil an fhriotaíocht DC cothromaithe thart.
9. Seiceáil an bhfuil an ciorcad agus an cumas claochladáin ró-ualach, agus ansin an lasc cosanta ró-ualach nó an trealamh tosaigh a nascadh. Féach Tábla 2 le haghaidh samhlacha sonracha, agus ansin Doirt buicéad uisce isteach sa chaidéal uisce ón asraon caidéil uisce chun na imthacaí rubair a lubricadh sa chaidéal, agus ansin cuir an caidéal leictreach intumtha ina seasamh agus go seasta.Start (gan níos mó ná soicind amháin) agus seiceáil an bhfuil an treo stiúrtha comhsheasmhach leis an gcomhartha stiúrtha. Mura bhfuil, babhtáil aon dá chónaisc den chábla trí phas. Ansin shuiteáil an scagaire agus ullmhaigh tú chun dul síos ar an tobar. Má úsáidtear é in ócáidí speisialta (cosúil le díoga, díoga, aibhneacha, locháin, locháin, etc.), ní mór an caidéal leictreach a thalamh go hiontaofa.
(2) Trealamh agus uirlisí suiteála:
1. Péire amháin de slabhraí ardaithe ar feadh níos mó ná dhá tonna.
2. Tripod le airde ingearach nach lú ná ceithre mhéadar.
3. Dhá rópa crochta (rópaí sreang) ar féidir leo meáchan níos mó ná tonna amháin a iompróidh (is féidir meáchan sraith iomlán caidéil uisce a iompróidh).
4. Suiteáil dhá phéire teanntáin (splints).
5. Wrenches, casúir, scriúirí, uirlisí leictreacha agus ionstraimí, etc.
(3) Suiteáil caidéil leictreacha:
1. Taispeántar léaráid suiteála an chaidéil leictreacha intumtha i bhFíor 2. Taispeántar na toisí suiteála sonracha i dTábla 3 "Liosta Toisí Suiteála an Chaidéil Leictreach Intumtha".
2. Is féidir caidéil leictreacha báite le ceann níos lú ná 30 méadar a ardú go díreach isteach sa tobar ag baint úsáide as píobáin agus rópaí sreang nó rópaí cnáib eile ar féidir leo meáchan iomlán an mheaisín iomláin, píopaí uisce, agus uisce sna píopaí a iompar.
3. Úsáideann caidéil le ceann níos mó ná 30 méadar píopaí cruach, agus is é seo a leanas an t-ord suiteála:
① Bain úsáid as clamp chun ceann uachtarach an chaidéil uisce a chlampáil (tá an mótar agus an caidéal uisce ceangailte ag an am seo), ardaigh sé le slabhra crochta, agus ceangail go mall isteach sa tobar é go dtí go gcuirfidh tú an clamp ar cheann an tobair agus bain an slabhra crochta.
② Bain úsáid as péire teanntáin eile chun píopa a chlampáil, é a ardú le slabhra crochta 15 cm ar shiúl ón flange, agus é a ísliú go mall. Idir flange píopa agus flange caidéil Cuir an ceap rubair in áit agus déan an píopa agus an caidéal a dhéanamh níos doichte go cothrom le boltaí, cnónna agus leicneáin earraigh.
③ Ardaigh an caidéal báite beagán, bain an clamp ar thaobh uachtarach an chaidéil uisce, ceangail an cábla go daingean leis an bpíobán uisce le téip plaisteach, agus é a cheangal go mall síos go dtí go gcuirtear an clamp ag ceann an tobair.
④ Bain úsáid as an modh céanna chun na píopaí uisce go léir a cheangal isteach sa tobar.
⑤ Tar éis an cábla luaidhe-amach a bheith ceangailte leis an lasc rialaithe, tá sé ceangailte leis an soláthar cumhachta trí phas.
(4) Rudaí le tabhairt faoi deara le linn na suiteála:
1. Má aimsítear feiniméan jamming le linn an phróisis caidéalaithe, cas nó tarraing an píopa uisce chun an pointe jamming a shárú. Mura n-oibríonn bearta éagsúla fós, le do thoil Ná cuir an caidéal síos chun damáiste a sheachaint don chaidéal leictreach intumtha agus don tobar.
2. Le linn na suiteála, ba chóir eochaircheap rubair a chur ar flange gach píopa agus é a cheangal go cothrom.
3. Nuair a íslítear an caidéal uisce isteach sa tobar, ba chóir é a chur i lár an phíobáin tobair chun an caidéal a chosc ó bheith ag rith i gcoinne bhalla an tobair ar feadh i bhfad, rud a fhágann go mbeidh an caidéal ag creathadh agus an mótar a scuabadh agus a dhó. .
4. Déan doimhneacht an chaidéil uisce go bun an tobair a chinneadh de réir coinníollacha sreafa gaineamh agus siolta an tobair. Ná cuir an caidéal sa láib. De ghnáth ní lú ná 3 mhéadar an fad ón gcaidéal uisce go bun an tobair (féach Fíor 2).
5. Níor cheart go mbeadh doimhneacht iontrála uisce an chaidéil uisce níos lú ná 1-1.5 méadar ón leibhéal uisce dinimiciúil go dtí an nód inlet uisce (féach Fíor 2). Seachas sin, féadfar damáiste a dhéanamh go héasca ar imthacaí an chaidéil uisce.
6. Ní féidir le hardaitheoir an chaidéil uisce a bheith ró-íseal. Seachas sin, is gá comhla geata a shuiteáil ar phíblíne uisce an tobair chun sreabhadh an chaidéil ag an bpointe sreafa rátáilte a rialú chun an mótar a chosc ó ró-ualach agus a dhó mar gheall ar rátaí sreafa móra.
7. Nuair a bhíonn an caidéal uisce ag rith, ba cheart go mbeadh an t-aschur uisce leanúnach agus fiú, ba cheart go mbeadh an sruth cobhsaí (faoi choinníollacha oibre rátáilte, go ginearálta gan níos mó ná 10% den sruth rátáilte), agus níor cheart go mbeadh aon chreathadh nó torann ann. Má tá aon neamhghnáchaíocht ann, ba chóir an meaisín a stopadh chun an chúis a fháil amach agus é a dhíchur.
8. Nuair a shuiteáil tú, tabhair aird ar shocrú na sreinge talún mótair (féach Fíor 2). Nuair is píopa cruach é an píopa uisce, déan é a threorú as clamp an tobair; nuair is píopa plaisteach an píopa uisce, é a threorú ó mharc talún an chaidéil leictreach.
- 1.Tar éis an caidéal báite a bheith suiteáilte, seiceáil an fhriotaíocht inslithe agus an seoladh trí chéim ón lasc arís, seiceáil an bhfuil an ionstraim agus nasc an trealaimh tosaithe mícheart, mura bhfuil aon fhadhb ann, is féidir an meaisín trialach a thosú, agus breathnaigh an bhfuil léamha táscaire na hionstraime níos mó ná an voltas rátáil agus an sruth atá sonraithe ar an ainmchlár tar éis an tús, agus breathnaigh an bhfuil feiniméan torainn agus creathadh ag an gcaidéal, agus a chur i ngníomh má tá gach rud gnáth.
- 2.Tar éis an caidéal a oibriú den chéad uair ar feadh ceithre huaire, ba chóir an mótar a dhúnadh síos chun an fhriotaíocht inslithe theirmigh a thástáil go tapa, agus níor chóir go mbeadh a luach níos lú ná 0.5 megaohm.
- 3. Tar éis an caidéal a dhúnadh, ba chóir é a thosú tar éis cúig nóiméad chun an colún uisce sa phíobán a chosc ó bheith ag athshreabhadh go hiomlán agus ag cruthú sruth mótair iomarcach agus sruthán amach.
- 4. Tar éis an caidéal a chur i ngnáthoibriú, d'fhonn a shaol seirbhíse a shíneadh, is gá a sheiceáil an bhfuil an voltas soláthair, an sruth oibre agus an fhriotaíocht inslithe gnáth go rialta. Má aimsítear na coinníollacha seo a leanas, ba cheart an caidéal a mhúchadh láithreach chun fabhtcheartú a dhéanamh.
- - Sa riocht rátáilte, tá an reatha níos mó ná 20%.
- - Titeann an leibhéal uisce dinimiciúil go dtí an t-alt inlet uisce, rud a fhágann uisce uaineach.
- - Tá creathadh nó torann trom ag an gcaidéal báite.
- - Tá an voltas soláthair níos ísle ná 340 volta.
- 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 an t-uisce amach sa chuas mótair (go háirithe sa gheimhreadh chun an mótar a chosc ó reo), agus an cábla a cheangal go maith.
2, stóráil i seomra faoi dhíon gan substaintí agus gáis creimneach, ag teocht faoi bhun 40 ° C.
3, ba chóir go fadtéarmach aird a thabhairt ar chosc meirge na caidéil báite.
- Impeallóir
- Muinchille seafta
- Muinchille seafta rubair
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Fáinne séalaithe
01 Iontógáil uisce domhain tobair
02 Soláthar uisce ard-ardú
03 soláthar uisce sléibhe
04 túr uisce
05 Uisciúcháin talmhaíochta
06 uisciúcháin gairdín
07 iontógáil uisce abhann
08 uisce tí