QJP series special fountain pump is a fountain pump with higher efficiency developed by our factory. The motor core of the pump is made of high quality cold rolled silicon steel, which makes the pump have good magnetic permeability and will not produce heat when starting frequently. The two ends of the motor rotor are equipped with water-lubricated alloy copper sleeves instead of ball bearings, thus avoiding the problem of easy rust of ball bearings and burnout of motor due to lack of oil. 0JP series pump is also equipped with a variety of intelligent functions, such as over-temperature protection, anti-dry burning protection, etc., to ensure the safe operation of the pump. The pump is suitable for fountain decoration in landscape engineering, square, garden and other different occasions, providing users with efficient and reliable pumping solutions.
1, usambazaji wa nguvu: awamu ya tatu AC 380V (uvumilivu + / - 5%), 50HZ (uvumilivu + / - 1%).
2, ubora wa maji:
(1) water temperature is not higher than 20 °C;
(2) maudhui ya uchafu thabiti (uwiano wa wingi) si kubwa kuliko 0.01%;
(3) PH thamani (pH) 6.5-8.5;
(4) maudhui ya sulfidi hidrojeni si kubwa kuliko 1.5mg/L;
(5) Maudhui ya ioni ya kloridi si zaidi ya 400mg/L.
3, motor imefungwa au maji kujazwa muundo wa mvua, kabla ya kutumia submersible motor cavity lazima kamili ya maji safi, ili kuzuia uongo kamili, na kisha kaza sindano ya maji, bolts hewa kutolewa, vinginevyo hairuhusiwi kutumia.
4, pampu inayoweza kuzama lazima iingizwe kabisa ndani ya maji, kina cha kupiga mbizi sio zaidi ya 70m, pampu ya chini ya maji kutoka chini ya kisima sio chini ya 3m.
5, mtiririko wa maji vizuri wanapaswa kuwa na uwezo wa kukidhi submersible pato maji pato na operesheni ya kuendelea, submersible pato pato maji inapaswa kudhibitiwa saa 0.7-1.2 mara kati yake lilipimwa.
6, kisima lazima sawa, pampu submersible haiwezi kutumika au kutupwa, wima tu matumizi.
7, pampu submersible lazima kuendana na cable kulingana na mahitaji, na kifaa nje overload ulinzi.
8, pampu ni marufuku madhubuti bila maji hakuna mzigo mashine mtihani
Mfano | Mtiririko (m3/h) | Kichwa (m) |
Kasi ya mzunguko (badilisha / uhakika) |
Pampu ya maji(%) | Kituo kipenyo (mm) |
Inatumika vizuri kipenyo(mm) |
Imekadiriwa nguvu (KW) |
Imekadiriwa voltage (V) |
Imekadiriwa sasa (A) |
Ufanisi (%) | power factorcosφ | Kitengo Ukubwa wa juu wa radial(mm) |
Toa maoni | |||||||||
150QJ5-100 | 5 | 100 | 2850 | 58 | 40 | 150 | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ5-150 | 5 | 150 | 2850 | 58 | 40 | 150 hapo juu | 4 | 380 | 10.25 | 75.0 | 0.79 | 143 | ||||||||||
150QJ5-200 | 200 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ5-250 | 250 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ5-300 | 300 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ10-50 | 10 | 50 | 2850 | 63 | 50 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ10-66 | 66 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ10-78 | 78 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ10-84 | 84 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ10-91 | 91 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ10-100 | 100 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ10-128 | 128 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ10-150 | 150 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ10-200 | 200 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ10-250 | 250 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ10-300 | 300 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ15-33 | 15 | 33 | 2850 | 63 | 50 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ15-42 | 42 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ15-50 | 50 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ15-60 | 60 | 5.5 | 13.74 | 76 | 0.8 | |||||||||||||||||
150QJ15-65 | 65 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ15-72 | 72 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ15-81 | 81 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ15-90 | 90 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ15-98 | 98 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ15-106 | 106 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ15-114 | 114 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ15-130 | 130 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ15-146 | 146 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ15-162 | 162 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ15-180 | 180 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ20-26 | 20 | 26 | 2850 | 64 | 50 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ20-33 | 33 | 3 | 7.9 | 74.0 | 0.78 | |||||||||||||||||
150QJ20-39 | 20 | 39 | 2850 | 64 | 50 | 150juu | 4 | 380 | 10.25 | 75.0 | 0.79 | 143 | ||||||||||
150QJ20-52 | 52 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ20-65 | 65 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ20-78 | 78 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ20-91 | 91 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ20-98 | 98 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ20-104 | 104 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ20-111 | 111 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ20-130 | 130 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ20-143 | 143 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ20-156 | 156 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ20-182 | 182 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ25-24 | 25 | 24 | 2850 | 64 | 65 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ25-32 | 32 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ25-40 | 40 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ25-48 | 48 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ25-56 | 56 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ25-64 | 64 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ25-72 | 72 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ25-77 | 77 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ25-84 | 84 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ25-96 | 96 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ25-104 | 104 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ25-110 | 110 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ25-120 | 120 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ25-128 | 128 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ25-136 | 136 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ25-154 | 154 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ32-18 | 32 | 18 | 2850 | 66 | 80 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ32-24 | 24 | 4 | 10.25 | 75.0 | 0.79 | |||||||||||||||||
150QJ32-30 | 30 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ32-36 | 36 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ32-42 | 32 | 42 | 2850 | 66 | 80 | 150juu | 7.5 | 380 | 18.5 | 77.0 | 0.8 | 143 | ||||||||||
150QJ32-54 | 54 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ32-66 | 66 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ32-72 | 72 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ32-84 | 84 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ32-90 | 90 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ32-96 | 96 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ32-114 | 114 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ40-16 | 40 | 16 | 2850 | 66 | 80 | 150juu | 3 | 380 | 7.9 | 74.0 | 0.78 | 143 | ||||||||||
150QJ40-24 | 24 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ40-30 | 30 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ40-40 | 40 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ40-48 | 48 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ40-56 | 56 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ40-64 | 64 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ40-72 | 72 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ40-80 | 80 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ40-96 | 96 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ50-16 | 50 | 16 | 2850 | 65 | 80 | 150juu | 4 | 380 | 10.25 | 75.0 | 0.79 | 143 | ||||||||||
150QJ50-22 | 22 | 5.5 | 13.74 | 76.0 | 0.8 | |||||||||||||||||
150QJ50-28 | 28 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ50-34 | 34 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ50-40 | 40 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ50-46 | 46 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ50-52 | 52 | 13 | 30.87 | 79.0 | 0.81 | |||||||||||||||||
150QJ50-57 | 57 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ50-74 | 74 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ50-80 | 80 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ63-12 | 63 | 12 | 2850 | 60 | 80 | 150juu | 4 | 380 | 10.25 | 75.0 | 0.79 | 143 | ||||||||||
150QJ63-18 | 18 | 7.5 | 18.5 | 77.0 | 0.8 | |||||||||||||||||
150QJ63-30 | 30 | 9.2 | 22.12 | 78.0 | 0.81 | |||||||||||||||||
150QJ63-36 | 36 | 11 | 26.28 | 78.5 | 0.81 | |||||||||||||||||
150QJ63-42 | 63 | 42 | 2850 | 60 | 80 | 150juu | 13 | 380 | 30.87 | 79.0 | 0.81 | 143 | ||||||||||
150QJ63-48 | 48 | 15 | 35.62 | 79.0 | 0.81 | |||||||||||||||||
150QJ63-54 | 54 | 18.5 | 43.12 | 79.5 | 0.82 | |||||||||||||||||
150QJ15-220 | 15 | 220 | 2850 | 50 | 150juu | 18.5 | 380 | 43.12 | 143 | |||||||||||||
150QJ15-260 | 260 | 20 | 49.7 | |||||||||||||||||||
150QJ15-300 | 300 | 25 | 56.5 | |||||||||||||||||||
150QJ20-210 | 20 | 210 | 2850 | 50 | 150juu | 20 | 380 | 49.7 | 143 | |||||||||||||
150QJ20-240 | 240 | 25 | 56.5 | |||||||||||||||||||
150QJ20-290 | 290 | 30 | 66.6 | |||||||||||||||||||
150QJ25-175 | 25 | 175 | 2850 | 65 | 150juu | 20 | 49.7 | 143 | ||||||||||||||
150QJ25-200 | 200 | 30 | 66.6 | |||||||||||||||||||
150QJ25-290 | 290 | 37 | 82.1 | |||||||||||||||||||
150QJ32-120 | 32 | 120 | 2850 | 80 | 150juu | 20 | 380 | 49.7 | 143 | |||||||||||||
150QJ32-132 | 132 | 25 | 56.5 | |||||||||||||||||||
150QJ32-156 | 156 | 30 | 66.6 | |||||||||||||||||||
150QJ32-190 | 190 | 37 | 82.1 | |||||||||||||||||||
150QJ32-240 | 240 | 45 | 96.9 | |||||||||||||||||||
150QJ40-110 | 40 | 110 | 2850 | 80 | 150juu | 20 | 380 | 49.7 | 143 | |||||||||||||
150QJ40-121 | 121 | 25 | 56.5 | |||||||||||||||||||
150QJ40-143 | 143 | 30 | 66.6 | |||||||||||||||||||
150QJ40-176 | 176 | 37 | 82.1 | |||||||||||||||||||
150QJ40-220 | 220 | 45 | 96.9 | |||||||||||||||||||
150QJ50-100 | 50 | 100 | 2850 | 80 | 150juu | 20 | 380 | 49.7 | 143 | |||||||||||||
150QJ50-110 | 110 | 25 | 56.5 | |||||||||||||||||||
150QJ50-130 | 130 | 30 | 66.6 | |||||||||||||||||||
150QJ50-160 | 160 | 37 | 82.1 | |||||||||||||||||||
150QJ50-200 | 200 | 45 | 96.9 |
1, pampu inayoweza kuzamishwa vizuri ya pampu ya maji safi, inakataza kisima kipya, kusukuma mashapo na maji ya matope,
2, kisima maji pampu voltage daraja 380/50HZ, matumizi ya darasa nyingine voltage ya motors submersible haja ya kuwa umeboreshwa. Cable ya chini ya ardhi lazima itumie kebo ya kuzuia maji, lazima iwe na vifaa vya kuanzia, kama vile sanduku la usambazaji, kuanza sio tayari inapaswa kuwa na kazi ya kawaida ya ulinzi wa kina wa motor, kama vile ulinzi wa mzunguko mfupi wa overload, ulinzi wa awamu, ulinzi wa undervoltage, ulinzi wa kutuliza, ulinzi wa idling. , katika hali isiyo ya kawaida, kifaa cha ulinzi kinapaswa kuwa safari ya hatua kwa wakati.
3, ufungaji na matumizi ya pampu lazima reliably msingi, inakataza kushinikiza na kuvuta kubadili wakati mikono na miguu ni mvua, lazima kukatwa umeme kabla ya ufungaji na matengenezo ya pampu, pampu kutumia mahali pa kuanzisha " kuzuia mshtuko wa umeme" ishara dhahiri:
4, chini ya kisima au kabla ya ufungaji, cavity motor lazima kujazwa na maji distilled au yasiyo ya babuzi safi maji ya moto ya kuchemsha, kaza bolt / maji, pampu juu ya ardhi mtihani kukimbia, lazima kwa chumba pampu maji lubrication mpira. fani, kuanza papo hapo si zaidi ya sekunde, angalia ikiwa uendeshaji ni sawa na maelekezo ya uendeshaji. Wakati pampu imesimama, makini na usalama, kuzuia kuumia kupindua.
5, madhubuti kulingana na masharti ya kuinua pampu, mtiririko mbalimbali ya matumizi, ili kuzuia mtiririko wa chini au kuinua high kusukumia nguvu, kuzaa kutia na sehemu nyingine ya kuvaa, overload motor kuchomwa moto 6, baada ya pampu chini ya kisima; kipimo cha motor kwa upinzani wa insulation ya ardhi haipaswi kuwa chini ya 100M, baada ya kuanza kuchunguza voltage na sasa, angalia insulation ya vilima vya motor, iwe kulingana na mahitaji; pampu kuhifadhi joto eneo kama chini ya kiwango kufungia, lazima kavu motor cavity maji, kuzuia cavity motor maji barafu uharibifu unaosababishwa na joto la chini.
The pump part is mainly composed of pump shaft, impeller, flow guide housing, rubber bearing, check valve body (optional) and other parts. The motor part is mainly composed of base, pressure regulating diaphragm, thrust bearing, thrust plate, lower guide bearing seat, stator, rotor, upper guide bearing seat, sand discharging ring, water inlet section, lead cable and other parts. The main features of the product include: the motor is a water-filled wet submersible three-phase asynchronous motor, the motor cavity is filled with clear water for cooling the motor and lubricating the bearing, the pressure regulating diaphragm at the bottom of the motor is used to adjust the pressure difference caused by the heating of the motor. In order to prevent the sand in the well water from entering the motor, the upper end of the motor shaft extension is installed with two oil seals, and the sand discharging ring is installed to form a sand prevention structure. In order to avoid the pump shaft jumping when starting, the pump shaft is connected with the motor shaft through a coupling, and the thrust bearing is installed at the bottom of the motor. The lubrication of the motor and the pump bearing is water lubrication, and the stator winding of the motor uses high quality submersible motor wire with high insulation performance. The pump is designed by computer CAD, with simple structure and superior technical performance.

(1) Maandalizi kabla ya ufungaji:
1. Angalia ikiwa pampu inayoweza kuzama inakidhi masharti ya matumizi na upeo uliobainishwa kwenye mwongozo.
2. Kwa kutumia kipenyo kizito chenye kipenyo sawa na kipenyo cha juu zaidi cha nje cha pampu inayoweza kuzamishwa, pima ikiwa kipenyo cha ndani cha kisima kinaweza kutoshea pampu inayoweza kuzamishwa, na kupima kama kina cha kisima kinakidhi mahitaji ya usakinishaji.
3. Angalia kama kisima ni safi na kama maji ya kisima ni machafu. Kamwe usitumie pampu ya umeme inayoweza kuzama ili kuosha tope la pampu ya kisima na maji ya mchanga ili kuepuka uharibifu wa mapema wa pampu ya umeme inayoweza kuzamishwa.
4. Angalia ikiwa nafasi ya bani ya usakinishaji ya welhead inafaa na ikiwa inaweza kuhimili ubora wa kitengo kizima.
5. Angalia ikiwa vijenzi vya pampu inayoweza kuzamishwa vimekamilika na kusakinishwa ipasavyo kulingana na mchoro wa kusanyiko kwenye mwongozoOndoa skrini ya kichujio na uzungushe kiunganishi ili kuona kama kinazunguka kwa urahisi.
6. Fungua skrubu ya skrubu ya maji na ujaze tundu la moshi kwa maji safi, yasiyo na babuzi (kumbuka. hakikisha umeichuja), kisha kaza screw ya maji. Baada ya masaa 12 ya sindano ya maji, upinzani wa insulation ya motor haipaswi kuwa chini ya 150M Q inapopimwa na meza ya 500V ya kutikisa.
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
Mchoro wa mchakato wa wiring cable ni kama ifuatavyo:
8. Tumia multimeter ili uangalie ikiwa waya za awamu tatu zimeunganishwa na ikiwa upinzani wa DC ni takriban usawa.
9. Angalia ikiwa saketi na uwezo wa kibadilishaji umeme umejaa kupita kiasi, na kisha unganisha swichi ya ulinzi wa upakiaji au vifaa vya kuanzia. Tazama Jedwali la 2 kwa miundo mahususi, kisha Mimina ndoo ya maji kwenye pampu ya maji kutoka kwa pampu ya maji ili kulainisha fani za mpira kwenye pampu, na kisha uweke pampu ya umeme inayoweza kuzamishwa wima na thabiti. Anza (si zaidi ya sekunde moja) na uangalie ikiwa mwelekeo wa usukani unalingana na ishara ya usukani. Ikiwa sivyo, badilisha viunganishi vyovyote viwili vya kebo ya awamu ya tatu.Kisha sakinisha kichujio na ujiandae kwenda chini ya kisima. Ikiwa inatumiwa katika matukio maalum (kama vile mitaro, mifereji, mito, mabwawa, mabwawa, nk), pampu ya umeme lazima iwekwe chini kwa uhakika.
(2) Vifaa na zana za usakinishaji:
1. Jozi moja ya minyororo ya kuinua kwa zaidi ya tani mbili.
2. Tripod yenye urefu wa wima wa si chini ya mita nne.
3. Kamba mbili za kunyongwa (kamba za waya) zinazoweza kubeba uzito wa zaidi ya tani moja (zinaweza kubeba uzito wa seti kamili ya pampu za maji).
4. Weka jozi mbili za clamps (splints).
5. Wrenches, nyundo, screwdrivers, zana za umeme na vyombo, nk.
(3) Ufungaji wa pampu ya umeme:
1. Mchoro wa ufungaji wa pampu ya umeme ya chini ya maji umeonyeshwa kwenye Mchoro 2. Vipimo maalum vya ufungaji vinaonyeshwa kwenye Jedwali la 3 "Orodha ya Vipimo vya Ufungaji wa Pumpu ya Umeme ya Submersible".
2. Pampu za umeme zinazozamishwa na kichwa chini ya mita 30 zinaweza kuinuliwa moja kwa moja kwenye kisima kwa kutumia mabomba na kamba za waya au kamba nyingine za katani ambazo zinaweza kubeba uzito kamili wa mashine nzima, mabomba ya maji, na maji katika mabomba.
3. Pampu zilizo na kichwa cha zaidi ya mita 30 hutumia mabomba ya chuma, na mlolongo wa ufungaji ni kama ifuatavyo:
①Tumia kibano kubana ncha ya juu ya sehemu ya pampu ya maji (motor na pampu ya maji vimeunganishwa kwa wakati huu), inua kwa mnyororo wa kuning'inia, na polepole uifunge ndani ya kisima hadi Weka bani kwenye kichwa cha kisima na uondoe. mnyororo wa kunyongwa.
② Tumia vibano vingine ili kubana bomba, linyanyue kwa mnyororo wa kuning'inia umbali wa sm 15 kutoka kwenye ubao, na uushushe polepole. Kati ya flange ya bomba na flange ya pampuWeka pedi ya mpira mahali pake na kaza bomba na pampu sawasawa na bolts, karanga na washers wa spring.
③ Inua pampu inayoweza kuzama kidogo, ondoa kibano kwenye ncha ya juu ya pampu ya maji, funga kebo kwa uthabiti kwenye bomba la maji kwa mkanda wa plastiki, na uifunge polepole chini hadi Kinano kiwekwe kwenye kisima.
④Tumia njia sawa kufunga mabomba yote ya maji kwenye kisima.
⑤Baada ya kebo ya kuongoza kuunganishwa kwenye swichi ya kudhibiti, inaunganishwa kwenye usambazaji wa umeme wa awamu tatu.
(4) Mambo ya kuzingatia wakati wa usakinishaji:
1. Ikiwa jambo la jamming linapatikana wakati wa mchakato wa kusukuma, pindua au kuvuta bomba la maji ili kuondokana na hatua ya jamming. Ikiwa hatua mbalimbali bado hazifanyi kazi, tafadhaliUsilazimishe pampu chini ili kuepuka uharibifu wa pampu ya umeme inayozama na kisima.
2. Wakati wa ufungaji, pedi ya mpira inapaswa kuwekwa kwenye flange ya kila bomba na kuimarishwa sawasawa.
3. Wakati pampu ya maji inaposhushwa ndani ya kisima, inapaswa kuwekwa katikati ya bomba la kisima ili kuzuia pampu kukimbia dhidi ya ukuta wa kisima kwa muda mrefu, na kusababisha pampu kutetemeka na motor kufagia na kuwaka. .
4. Tambua kina cha pampu ya maji hadi chini ya kisima kulingana na mchanga unaopita na hali ya silt ya kisima. Usizike pampu kwenye matope. Umbali kutoka kwa pampu ya maji hadi chini ya kisima kwa ujumla sio chini ya mita 3 (ona Mchoro 2).
5. Kina cha kuingilia maji cha pampu ya maji haipaswi kuwa chini ya mita 1-1.5 kutoka ngazi ya maji yenye nguvu hadi nodi ya ingizo la maji (ona Mchoro 2). Vinginevyo, fani za pampu za maji zinaweza kuharibiwa kwa urahisi.
6. Kuinua kwa pampu ya maji hawezi kuwa chini sana. Vinginevyo, vali ya lango inahitaji kusakinishwa kwenye bomba la maji la kisima ili kudhibiti mtiririko wa pampu kwenye sehemu iliyokadiriwa ya mtiririko ili kuzuia injini isijazwe na kuteketezwa kwa sababu ya viwango vikubwa vya mtiririko.
7. Wakati pampu ya maji inapoendesha, pato la maji linapaswa kuendelea na hata, sasa inapaswa kuwa imara (chini ya hali ya kazi iliyopimwa, kwa ujumla si zaidi ya 10% ya sasa iliyopimwa), na haipaswi kuwa na vibration au kelele. Ikiwa kuna hali isiyo ya kawaida, mashine inapaswa kusimamishwa ili kujua sababu na kuiondoa.
8. Wakati wa kufunga, makini na mpangilio wa waya wa kutuliza motor (angalia Mchoro 2). Wakati bomba la maji ni bomba la chuma, liongoze kutoka kwenye kisima cha kisima; wakati bomba la maji ni bomba la plastiki, liongoze kutoka kwa alama ya kutuliza pampu ya umeme.
When the submersible pump is installed, recheck the insulation resistance and three-phase connectivity of the switch, and check whether there is any error in the connection between the instrument and the starting equipment. If there is no problem, you can start the test machine. After starting, observe whether the indication reading of each instrument is correct. If the rated voltage and current specified on the nameplate are exceeded, observe whether the pump has any noise or vibration. If everything is normal, you can put into operation. After the first start of the pump for four hours, it should be closed and the thermal insulation resistance of the motor should be quickly tested. Its value should not be less than 0.5 megaohm. After stopping the pump, it should be restarted after a five-minute interval to prevent the water column in the pipeline from completely reversing, resulting in the motor burning due to excessive current. After the pump is put into normal operation, in order to prolong its service life, it is necessary to check regularly whether the supply voltage, working current and insulation resistance are normal. If the following conditions are found, the machine should be shut down immediately to eliminate the fault:
1.the current exceeds 20% under the rated working conditions.
2.the dynamic water level drops to the inlet section, resulting in intermittent drainage.
3.the submersible pump vibrates violently or emits huge noise.
4.the supply voltage is lower than 340 volts.
5.a fuse is blown out.
6.the water pipe is damaged.
7.the thermal insulation resistance of the motor to the ground is less than 0.5 megaohm.
When disassembling the unit:
1.lock the cable, take off the pipeline part, and remove the line protection plate.
2.unscrew the drain bolt, empty all the water in the motor chamber.
3.remove the filter, loosen the screw on the coupling fixed motor shaft.
4.unscrew the bolt connecting the water inlet section and the motor, and separate the pump and the motor (pay attention to the leveling unit 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, guide housing, rotor, impeller. Check the valve body. When removing the impeller, use special tools to loosen the conical sleeve fixed on the impeller. In the process of disassembly and assembly, avoid bending the pump shaft and damaging various parts.
6.the disassembly process of the motor is: (see Figure 1) put the motor on the platform, remove the nut, base, shaft head lock nut, thrust plate, key, lower guide rail, support seat, and tie rod bolt from the bottom of the motor in order, and then take out the rotor (be careful not to damage the wiring harness), and finally remove the connecting part and the upper guide rail bearing seat. When assembling the unit: before assembly, rust and dirt on each part should be cleaned and sealant coated on each mating surface and fastener, then assembled in reverse order of disassembly (motor shaft movement after assembly is about 1 mm), after assembly, coupling should be flexible, then put on the filter for testing. Each submersible pump running for one year, or if the running time is less than one year but has been immersed for two years, it must be disassembled and inspected according to Article 5 to replace worn parts.
1, kuweka maji katika cavity motor (hasa katika majira ya baridi ili kuzuia motor kutoka kufungia), na kufunga cable vizuri.
2, store in an indoor room without corrosive substances and gases, with a temperature below 40 °C.
3, matumizi ya muda mrefu lazima makini na kuzuia kutu ya pampu submersible.
- Msukumo
- Sleeve ya shimoni
- Sleeve ya shimoni ya mpira
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Pete ya kuziba
01 Unywaji wa maji ya kisima kirefu
02 Ugavi wa maji wa hali ya juu
03 usambazaji wa maji wa mlima
04 maji ya mnara
05 Umwagiliaji wa kilimo
06 umwagiliaji wa bustani
07 ulaji wa maji ya mto
08 maji ya nyumbani